CT Measurement Realization Process: The Need for Advanced Correction Methods

Size: px
Start display at page:

Download "CT Measurement Realization Process: The Need for Advanced Correction Methods"

Transcription

1 CT Measurement Realization Process: The Need for Advanced Correction Methods Crhistian R Baldo 1, Thiago L Fernandes 2, Gustavo D Donatelli 2, Gergely Szikszay-Molnar 3, Kostadin Doytchinov 3 1 Federal University of ABC, Santo André / SP, Brazil, crhistian.baldo@ufabc.edu.br More info about this article: 2 CERTI Foundation, Florianópolis / SC, Brazil, thf@certi.org.br, gd@certi.org.br 3 KOTEM Hungary Ltd., Budapest, Hungary, gergely.sz-molnar@kotem.com, kostadin@kotem.com Abstract Computed tomography use as a dimensional metrology technique has increased steadily, despite the fact that the uncertainty has been rarely determined and expressed in measurements of production parts. This perception may be attributed in part to a limited way of employing the uncertainty concept. From this perspective, the conceptual integration of the product (and measurement) realization process with the uncertainty approach is first emphazised in this paper. The reasoning behind it is to employ different methods for uncertainty evaluation in a rational sense, where the accuracy required to the uncertainty evaluation process drives the method selection. For critical measurement cases, which can be identified in the proposed concept, the need for advanced correction methods, using master part reference measurements for point-based compensation, is presented, tested and justified for GD&T characteristics. Keywords: metrology CT, uncertainty evaluation and traceability, master part, geometrical tolerance verification 1 Introduction Computed tomography (CT) for dimensional metrology has been gradually integrated into the industrial quality control loop; the possibility of fully inspecting complex-shaped objects without damaging them or imposing sensor accessibility restrictions for tiny or hidden features are key attributes of CT as a dimensional measurement technique. Typical design of metrology CT scanners comprises the X-ray cone-beam source at one end and the flat panel detector at the other end. Between them, a turntable for stepwise rotation of the test object is placed, which can be linearly moved along the magnification axis. CT relies on the attenuation of X-rays when propagating through the test object. For different beam directions, the intensity distribution of the remaining radiation is detected and stored as a grey-value image. The resulting planar images related to the complete test object rotation are mathematically processed to construct the voxel dataset. Posterior segmentation of the voxel dataset allows distinguish the object surfaces; finally, dimensional analyses can be performed. Because of the complex CT measurement chain, many influencing quantities and factors may affect the results of CT-based measurements. They may be related to the X-ray source (e.g. photon energy, focal spot size), detector (e.g. sensitivity, pixel size, exposure time), test object (e.g. material, geometry), kinematics (e.g. magnification axis and turntable accuracy), and image and mathematical further processing (e.g. image filtering, artifact reduction, surface determination, tolerance analysis) [1]. This complicated measurement error behavior has brought issues in assessing uncertainties and tracing CT measurement results back to the unit of length. Some authors have addressed: the difficulties in reporting the uncertainty associated with CT results [2], the use of the experimental method described in ISO to evaluate the uncertainty [3-6], the development of virtual CT simulation platforms to numerically compute the uncertainty [7], and the effect of varying specific CT influence factors on the measurement result [8-12]. In practice, however, uncertainty has been rarely determined and reported for measurements of production parts, which may be also explained by the restricted way of employing the uncertainty concept. In this sense, the conceptual integration of the product and measurement realization process with the CT uncertainty is outlined in this paper. The reasoning is to use different uncertainty evaluation techniques in a rational manner, where the estimated accuracy required to the uncertainty estimation drives the method selection. Within the proposed idea, the need for advanced correction methods, using master part reference measurements for point-based compensation, is presented, tested and justified for different types of GD&T callouts. 2 Measurement purpose Measurements may be applied to many distinct purposes and demand particular requirements in industries. From product concept approval to product launching, production measurements may be used for research and development (R&D) purposes, and not only for production purposes. Production-driven measurements require sufficient accuracy for checking product quality and need to be quick in order to not add production bottlenecks and simple for friendly operation. R&D-driven measurements are generally more time-consuming and complex, and their performance needs to be known and optimized in order to diminish measurement error impact on product characterization. Being measurement a sequence of interrelated processes, by analogy with the product development lifecycle, the expression measurement process realization could be coined and the following two macro activities defined: (a) measurement planning, which embodies strategic operations that may guide measurement equipment definition, 1

2 installation requirements, measuring protocol preparation, and should give rise to a solution capable of satisfying metrological and operational needs; (b) measurement execution, which involves measuring prototypes, first articles and production parts for tolerance compliance and/or manufacturing process control, and may induce measurement changes to correct errors verified in early phases. Considering the measurement process realization just outlined, to provide a useful uncertainty evaluation solution to the metrologist at least the following three conceptual dimensions should be taken into account: (a) uncertainty evaluation purpose, (b) measurement application criticality, and (c) measurement case singularity. The first relates to the phase of the product realization cycle; the second, to the phase of the measurement process realization cycle; the third, to the product or feature intrinsic value and the measurement process relative capability. Figure 1 depicts the idea described and indicates that the accuracy of a given uncertainty estimate, i.e., how close the estimated uncertainty is from the hypothetic true uncertainty value (true uncertainty defined in ISO , item 3.7), be evaluated considering the dimensions previously defined. It is worth mentioning that similar reasoning may be observed in subclause of ISO under the following terms: the effort devoted to determining and recording uncertainties of measurements should be commensurate with the importance of the measurement results to the quality of the product, and in the Guide to the Expression of Uncertainty in Measurement, GUM, subclause 3.4.1: a measurement can be modelled mathematically to the degree imposed by the required accuracy of the measurement. Based on Figure 1 one can infer that the accuracy expected to the uncertainty estimate in the measurement planning phase would be lower, since only general information would be likely available, that for a barely capable measurement process the uncertainty estimate should be more accurate, and so on. That means the best method for evaluating the uncertainty for a particular measuring scenario would not be necessarily a one-size-fits-all approach. Figure 1: Complete concept proposed from the measurement scenario to the accuracy required to CT uncertainty 2.1 Concept application for CT metrology The good X-ray penetrability into plastic samples makes CT particularly appropriate for checking injection-molded plastic parts, which demand e.g. linear tolerance interval of 0.2 mm (for lengths up to 6 mm) to 0.6 mm (for lengths up to 120 mm). This is a typical scenario in which lesser photon energy is necessary and smaller focal spot size is obtained, resulting in lower geometric unsharpness and sufficient accuracy for direct CT measurements (right side of Figure 1). For example, considering the findings of an exploratory study with modular test pieces made of POM, Baldo et al. [13] proposed an empirical error band of ± 0.03 mm that contains the biases for dimensional measurements influenced by edge detection (e.g. features of size). Later on, for other plastic parts with some degree of similarity, the authors observed that the estimated biases for each dimensional feature lay within the error band proposed [14-15]. This means that such a general uncertainty statement would be sufficient for situations where the accuracy expected to the measurement uncertainty would not be critical. On the other hand, metal parts manufactured through, for instance, investment casting, die casting, and laser sintering would demand more accurate dimensional measurements, even though the CT measurement capability could not be sufficient due to increased photon energy and focal spot size, severe beam hardening artifacts, ambiguous edge determination, etc. For measurement cases requiring more accurate measurements, the arrow of Figure 1 should be displaced to the left end, and the use of a point-based compensation approach introduced by Baldo et al. [16] for a single GD&T tolerance (flatness) would be a candidate for delivering the required level of accuracy. 2

3 3 Point-based compensation approach GD&T evaluation programs have been introduced to dimensional metrology practice in recent years to deal with the methods divergence issue, term created by Brown [17], and consequently make tolerance verification consistent and nearly independent of metrology personnel decisions. In general, these programs use point clouds from test object measurements performed on any measurement device, merge the points with the corresponding nominal CAD model, and automatically evaluate the tolerance callouts in compliance with GD&T standards (e.g. ISO 1101 and/or ASME Y14.5). For CT metrology, the typical input data of standalone GD&T evaluation programs is the point cloud obtained from the detected surface after segmentation. The point-based compensation approach utilizes this extracted point cloud and relies on two foundations: 1. A measurement technology more accurate than CT, traceable to the SI unit of length, such as a conventional coordinate measuring machine (CMM) - labeled as R-CMS (Reference Coordinate Measuring System). This is a very important assumption, quite reasonable though considering that CMMs are appropriate for most GD&T-based inspection processes. 2. A consistent CT output - labeled as L-CT (Line Computed Tomography), i.e., with a constant measurement bias at each specific point location under repeatability conditions. Repeatability conditions mean keeping constant or under reasonable limits most of the influence quantities and factors summarized in the first section. The point-based compensation approach makes then possible separating the systematic effect stemming from the manufacturing process (e.g. difference between the nominal model and the actual part geometry, estimated from the calibrated master part) from imperfections of the measurement process, which are contained in the compensation vector created for each measurement point. Please refer to Baldo et al. [16] for a complete description of the four macro operations concerned with the method experimentally explored in this paper. 4 Experimental measurement design and results To study the point-based compensation approach effect on dimensional and geometrical tolerance verification, the prismatic part illustrated in Figure 2 was selected. The illustration exhibits the three datum planes and the tolerances assigned to some of the part geometries, which may metrologically profit from the proposed point-based compensation approach. Particularly for CTbased measurements, it is worth mentioning that the test part material is aluminum, featuring a nominal density of 2700 kg/m 3 and a body diagonal of approximately 100 mm. Two test parts were considered in the experimental investigation, one labelled lab part and the other, shop part. Figure 2: Illustrative image of the prismatic part indicating the assigned feature tolerances and the respective datums 4.1 Measurement setup The intrinsic characteristics of both test parts were first calibrated on a Carl Zeiss PRISMO ultra CMM housed in a temperaturecontrolled laboratory kept at (20.0 ± 0.5) C - the R-CMS. The R-CMS point clouds were thus generated in the scanning mode and the single point uncertainty estimated using the Virtual CMM software output and expert judgment. Data evaluation was entirely executed on KOTEM SmartProfile 5.0 analysis software using the reference point clouds, and least-squares method 3

4 chosen to associate ideal geometries (e.g. planes, cylinders) to the sampled points. The test parts were then scanned on a Carl Zeiss METROTOM 1500 CT - the L-CT, equipped with a 225 kev micro-focus X-ray tube and a 2048x2048 px flat panel detector. The metrology CT system is housed in a temperature-controlled room kept at (20 ± 2) C. To scan the test part, the magnification axis was positioned to project it using the maximum possible area of the flat panel detector with 1024x1024 px resolution (binning mode). The X-ray tube voltage was set high enough to avoid complete beam extinction (220 kev with a prefilter of 3 mm Cu), and the detector integration time set to a convenient value for improving accuracy (4 s). The source current was set to enhance image contrast and brightness (500 µa). This way, the spatial resolution remained limited by the focal spot size of 110 µm and not by the resulting voxel size of 146 µm. The number of angular steps was selected as about twice the number of pixels covered by the resulting shadow of the test part in the projection (1500 projections). L-CT built-in postprocessing beam hardening reduction function was enabled during reconstruction. To determine the surface from the voxel dataset of the mono-material part, the standard iso-50% threshold value was applied globally. The lab part was scanned three times and the shop part was scanned twice on the L-CT, both under repeatability conditions. 4.2 Experimental results The main outcomes of applying the point-based compensation approach are explored in this subsection for the tolerance types exhibited in Figure 2, namely: linear distances between features, features of size, flatness, hole axis location and hole cylindricity. Before running the point compensation, on the other hand, the R-CMS evaluation results for the tolerance callouts were generated using ca. n = 4000 (yellow) points sampled on the shop part, which are exhibited in Figure 3a, and the L-CT original dataset results with more than half a million (yellow) points were calculated, which are illustrated in Figure 3b (first measurement of the shop part). Figure 3: Point-based compensation approach flow applied to some tolerances: (a) R-CMS measurement results; (b) L-CT original measurement results; (c) L-CT filtered results; (d) L-CT filtered results after compensation 4

5 The lab part datasets obtained on the R-CMS and on the L-CT (three measurement cycles) were used to generate the point compensation vector as detailed by Baldo et al. [16]. The point-compensation algorithm correlates the very dense L-CT dataset with the R-CMS dataset by creating virtual circles of a given radius for each R-CMS point centered on it and by weighted averaging the L-CT points enclosed by the circle, filters out the uncorrelated points and calculates the difference between each L-CT mean point and the corresponding R-CMS point. The point compensation vector is produced (representing the L-CT taskspecific error for each single point), which embodies all the actual unknown systematic effects of the L-CT compared to the R- CMS. Figure 3c shows the L-CT results of the shop part (first measurement run) using the n paired (yellow) points before compensation. In Figure 3d, on the other hand, the L-CT results after applying the compensation vector to the n paired (yellow) points are presented. By comparing the L-CT original dataset (Figure 3b) with L-CT filtered results (Figure 3c) it is possible evidencing no significant loss of information after significantly reducing the point cloud density, which indicates alone an effective contribution of the proposed method as considerably less computational effort is required to handle the filtered point cloud. Table 1 summarizes the measurement results for L-CT after point reduction (L-CT-r) and the measurement results for L-CT after point compensation (L-CT-c) and evidences the biases for both scenarios against the reference values (bias 1 = L-CT-r R-CMS and bias 2 = L-CT-c R-CMS) and the normalized errors, En [18] (En 1 relates to bias 1 and En 2 relates to bias 2) taking into consideration the expanded measurement uncertainty U, which includes for features of size, linear distances and hole axis position also the temperature variation observed during CT scanning. One can observe in Table 1 that En 1 values (those related to the L-CT reduced dataset) were not satisfactory (most of them are larger than 1). After applying the compensation vector to the shop part datasets, good agreement could be evidenced between the R-CMS values and the L-CT values (En 2 values are less than 1 for all features under scrutiny). This perceptible accuracy improvement represents the major contribution of the proposed point-based compensation approach. Table 1: R-CMS, L-CT after point reduction and L-CT after point compensation values, biases and normalized errors characteristic R-CMS L-CT-r (after point reduction) L-CT-c (after point compensation) rep-1 rep-2 average range rep-1 rep-2 average range bias1 bias2 U En1 En2 diameter length distance hole cilindricity hole position flatness datum A flatness datum B flatness datum C The substantial reduction of the systematic deviations observed after merging homogeneous data (i.e., point clouds of R-CMS and L-CT) is a step forward in broadening the industrial application of CT, as the operational advantages of the technology can be extended to measurement cases originally not capable of providing the required accuracy. In fact, after applying the compensation vector, features of size and other dimensional and geometrical characteristics could be measured with an expanded uncertainty U down to 0.01 mm (k = 2). It is important to mention that this uncertainty value is valid as long as the lab test part used to create the point compensation vector remains representative of the CT measurement process. 5 Concluding remarks In this paper the conceptual integration of the product and measurement realization process with the uncertainty approach was delineated, which is in consonance with the tenets of the GUM. The concept was briefly explained for a practical case where the accuracy required to the uncertainty estimate was not critical, and then the point-based compensation approach was introduced and explored for cases where more accuracy would be needed to the uncertainty evaluation. The compensation approach relies on more accurate measurements performed e.g. on classical coordinate machines, which allows filtering intelligently the massive CT dataset to a reduced amount of points with no significant loss of information for dimensional metrology. By compensating this reduced CT dataset, the task-specific measurement accuracy can be enhanced and traceability to the SI unit of length can be guaranteed. In fact, from the experimental tests, a well-defined bias could be observed for the CT datasets - point compensation is thus worthy, but with a random variation that cannot be neglected in the uncertainty determination. Experimental findings have shown good agreement between R-CMS and L-CT datasets after R-CMS-based point reduction and compensation, which emulates the situation in which the actual feature shape remains stable over time. Nevertheless, whenever the surface signature is not resolved by the measurement technology (e.g. when evaluating voxel matrices of denser materials), a new compensation vector would be required whether the actual part shape has changed significantly (e.g. due to machine tool wear, changes in cutting conditions). For this, a new reference part would need to be defined and calibrated. Another possibility 5

6 in this case would be including an additional uncertainty component to account for this effect, even though this solution would result in larger uncertainties. Last but not least, the point-based compensation approach described in this paper offers the potential to reduce the measurement uncertainty down to the level of the CT measurement process repeatability for features that can be calibrated on the R-CMS and measured on the L-CT systems using a particular operator-selected measuring protocol, thus keeping the advantages of the CT technology for dimensional metrology such as independence of measurement time to the amount of features. The application spectrum of CT for dimensional metrology therefore can be extended to situations that demand more accurate measurements (arrow to the left end of Figure 1), which would not be feasible for the original CT output. References [1] J.-P. Kruth, A. Weckenmann, S. Carmignato, R. Schmitt, M. Bartscher, L. De Chiffre, Computed tomography for dimensional metrology, CIRP Annals 60(2), [2] S. Carmignato, Accuracy of industrial computed tomography measurements: Experimental results from an international comparison, CIRP Annals - Manufacturing Technology 61, [3] M. Bartscher, M. Neukamm, U. Hilpert, U. Neuschaefer-Rube, F. Härtig, K. Kniel, K. Ehrig, A. Staude, J. Goebbels, Achieving traceability of industrial computed tomography, Key Engineering Materials, Vol. 437, [4] R. Schmitt, C. Niggermann, Uncertainty in measurement for X-ray computed tomography using calibrated work pieces, Measurement Science and Technology, Vol. 21, [5] P. Müller, J. Hiller, A. Cantatore, L. De Chiffre, Investigation of measuring strategies in computed tomography, New Technologies in Manufacturing, ISBN , [6] P. Müller, J. Hiller, Y. Dai, J.L. Andreasen, H.N. Hansen, L. De Chiffre, Estimation of measurement uncertainties in X- ray computed tomography metrology using the substitution method, CIRP Journal of Manufacturing Science and Technology, Vol. 7, pp , [7] J. Hiller, L.M. Reindl, A computer simulation platform for the estimation of measurement uncertainties in dimensional X-ray computed tomography, Measurement, Vol. 45, [8] P. Wenig, S. Kasperl, Examination of the measurement uncertainty on dimensional measurements by X-ray computed tomography, European Conference on Non-Destructive Testing (ECNDT), Berlin, Germany (Sep. 2006). [9] A. Weckenmann, P. Krämer, Assessment of measurement uncertainty caused in the preparation of measurements using computed tomography, IMEKO World Congress, Lisbon, Portugal (Sep. 2009). [10] K. Kiekens, F. Welkenhuyzen, Y. Tan, P. Bleys, A. Voet, W. Dewulf, J.P. Kruth, A test object for calibration and accuracy assessment in X-ray CT metrology, International Symposium on Measurement and Quality Control (ISMQC), Osaka, Japan (Sep. 2010). [11] W. Dewulf, Y. Tan, K. Kiekens, Sense and non-sense of beam hardening correction in CT metrology, CIRP Annals - Manufacturing Technology 61, [12] J. Schlecht, E. Ferley, S. Coughlin, S.D. Phillips, V.D. Lee, C.M. Shakarji, Evaluating CT for metrology: The influence of material thickness on measurements, European Conference on Non-Destructive Testing (ECNDT), Prague, Czech Republic (Oct. 2014). [13] C.R. Baldo, T.L. Fernandes, G.D. Donatelli, Experimental investigation of computed tomography dimensional capability using modular test artefacts IMEKO World Congress, Prague, Czech Republic (Aug./Sep. 2015). [14] C.R. Baldo, T.L. Fernandes, G.D. Donatelli, Experimental evaluation of the uncertainty associated with the result of feature-of-size measurements through computed tomography Journal of Physics: Conference Series , [15] C.R. Baldo, T.L. Fernandes, G.D. Donatelli, Exploratory analysis of voxel size effects on CT measurements of situation characteristics of type point-to-point distance Journal of Physics: Conference Series , [16] C.R. Baldo, T.L. Fernandes, G.D. Donatelli, K. Doytchinov, K. Vrantzaliev, Voxel dataset noise reduction algorithm based on CMM reference measurements for geometrical tolerance analysis of prismatic test pieces, Conference on Industrial Computed Tomography (ict), Wels, Austria (Feb. 2018). [17] C.W. Brown, Feature-based tolerancing for intelligent inspection process definition, Forum on Dimensional Tolerance and Metrology (Dearborn, MI, USA), [18] H.N. Hansen, L. De Chiffre, Nordic audit of coordinate measuring machines, EUROMET Project No 330, Nordic Industrial Fund Project No P93046, Final Report,

Voxel dataset noise reduction algorithm based on CMM reference measurements for geometrical tolerance analysis of prismatic test pieces

Voxel dataset noise reduction algorithm based on CMM reference measurements for geometrical tolerance analysis of prismatic test pieces Voxel dataset noise reduction algorithm based on CMM reference measurements for geometrical tolerance analysis of prismatic test pieces More info about this article: http://www.ndt.net/?id=21929 Crhistian

More information

Parameter Dependent Thresholding for Dimensional X-ray Computed Tomography

Parameter Dependent Thresholding for Dimensional X-ray Computed Tomography International Symposium on Digital Industrial Radiology and Computed Tomography - Poster 12 Parameter Dependent Thresholding for Dimensional X-ray Computed Tomography Kim KIEKENS *, Ye TAN *, Jean-Pierre

More information

Frequency-based method to optimize the number of projections for industrial computed tomography

Frequency-based method to optimize the number of projections for industrial computed tomography More Info at Open Access Database www.ndt.net/?id=18739 Frequency-based method to optimize the number of projections for industrial computed tomography Andrea Buratti 1, Soufian Ben Achour 1, Christopher

More information

INVESTIGATION OF MEASURING STRATEGIES IN COMPUTED TOMOGRAPHY

INVESTIGATION OF MEASURING STRATEGIES IN COMPUTED TOMOGRAPHY NEWTECH 2011 NEW TECHNOLOGIES IN MANUFACTURING ISBN 978-80-214-4267-2 INVESTIGATION OF MEASURING STRATEGIES IN COMPUTED TOMOGRAPHY Pavel Müller, Jochen Hiller, Angela Cantatore, Leonardo De Chiffre Technical

More information

THREE DIMENSIONAL INDUSTRIAL METROLOGY USING X-RAY COMPUTED TOMOGRAPHY ON COMPOSITE MATERIALS

THREE DIMENSIONAL INDUSTRIAL METROLOGY USING X-RAY COMPUTED TOMOGRAPHY ON COMPOSITE MATERIALS THREE DIMENSIONAL INDUSTRIAL METROLOGY USING X-RAY COMPUTED TOMOGRAPHY ON COMPOSITE MATERIALS A. Campos a*, A. Zorrilla a, F. Lasagni a a Materials & Processes dept., Center for Advanced Aerospace Technologies

More information

HIGH RESOLUTION COMPUTED TOMOGRAPHY FOR METROLOGY

HIGH RESOLUTION COMPUTED TOMOGRAPHY FOR METROLOGY HIGH RESOLUTION COMPUTED TOMOGRAPHY FOR METROLOGY David K. Lehmann 1, Kathleen Brockdorf 1 and Dirk Neuber 2 1 phoenix x-ray Systems + Services Inc. St. Petersburg, FL, USA 2 phoenix x-ray Systems + Services

More information

INFLUENCE OF GEOMETRICAL MAGNIFICATION ON COMPUTED TOMOGRAPHY DIMENSIONAL MEASUREMENTS

INFLUENCE OF GEOMETRICAL MAGNIFICATION ON COMPUTED TOMOGRAPHY DIMENSIONAL MEASUREMENTS DOI: 10.2507/27th.daaam.proceedings.090 INFLUENCE OF GEOMETRICAL MAGNIFICATION ON COMPUTED TOMOGRAPHY DIMENSIONAL MEASUREMENTS Amalija Horvatić Novak, Biserka Runje, Danijel Butković This Publication has

More information

Investigation of the kinematic system of a 450 kv CT scanner and its influence on dimensional CT metrology applications

Investigation of the kinematic system of a 450 kv CT scanner and its influence on dimensional CT metrology applications Investigation of the kinematic system of a 450 kv CT scanner and its influence on dimensional CT metrology applications Frank Welkenhuyzen 1, Bart Boeckmans 1, Ye Tan 1,2, Kim Kiekens 1,2, Wim Dewulf 1,2,

More information

Computed Tomography & 3D Metrology Application of the VDI/VDE Directive 2630 and Optimization of the CT system

Computed Tomography & 3D Metrology Application of the VDI/VDE Directive 2630 and Optimization of the CT system Computed Tomography & 3D Metrology Application of the VDI/VDE Directive 2630 and Optimization of the CT system ECNDT 2014 Prague October 6-10, 2014 Dr. Eberhard Neuser Dr. Alexander Suppes Imagination

More information

Investigating the influence of workpiece placement on the uncertainty of measurements in industrial computed tomography

Investigating the influence of workpiece placement on the uncertainty of measurements in industrial computed tomography Investigating the influence of workpiece placement on the uncertainty of measurements in industrial computed tomography Natalia Grozmani 1, Andrea Buratti 1, Robert H. Schmitt 1 More info about this article:

More information

Industrial Computer Tomography for Dimensional Metrology: Overview of Influence Factors and Improvement Strategies

Industrial Computer Tomography for Dimensional Metrology: Overview of Influence Factors and Improvement Strategies 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 Industrial Computer Tomography for Dimensional Metrology: Overview of Influence Factors and

More information

Multi-spectral (W, Mo, Cu, and Ag) XCT measurements

Multi-spectral (W, Mo, Cu, and Ag) XCT measurements Multi-spectral (W, Mo, Cu, and Ag) XCT measurements Marko Katić 1, Damir Markučič 1, Gorana Baršić 1 Faculty of mechanical engineering and naval architecture, Ivana Lucica 5, Zagreb, Croatia, marko.katic@fsb.hr

More information

Coordinate Measuring Machines with Computed Tomography

Coordinate Measuring Machines with Computed Tomography Always a Step Ahead with Quality Coordinate Measuring Machines with Computed Tomography Multisensor Coordinate Measuring Machines with Computed Tomography Computed Tomography in Coordinate Measuring Machines

More information

More Info at Open Access Database

More Info at Open Access Database More Info at Open Access Database www.ndt.net/?id=18750 Abstract Enhancing the Accuracy of Computed Tomography Measurements using Data Filtering Alessandro Stolfi a, Maarja-Helena Kallasse b, Lorenzo Carli

More information

ASSESSMENT OF MEASUREMENT UNCERTAINTY CAUSED IN THE PREPARATION OF MEASUREMENTS USING COMPUTED TOMOGRAPHY

ASSESSMENT OF MEASUREMENT UNCERTAINTY CAUSED IN THE PREPARATION OF MEASUREMENTS USING COMPUTED TOMOGRAPHY XIX IMEKO World Congress Fundamental and Applied Metrology September 6 11, 2009, Lisbon, Portugal ASSESSMENT OF MEASUREMENT UNCERTAINTY CAUSED IN THE PREPARATION OF MEASUREMENTS USING COMPUTED TOMOGRAPHY

More information

On the impact of probing form error on form measurement in Computed Tomography

On the impact of probing form error on form measurement in Computed Tomography On the impact of probing form error on form measurement in Computed Tomography Jan Lasson Andreasen 1, Filippo Montanari 2, Leonardo De Chiffre 2 More info about this article: http://www.ndt.net/?id=23729

More information

Wieblinger Weg 92a, Heidelberg, Germany, Phone: , Fax: ;

Wieblinger Weg 92a, Heidelberg, Germany, Phone: , Fax: ; HOW INDUSTRIAL COMPUTER TOMOGRAPHY ACCELERATES PRODUCT DEVELOPMENT IN THE LIGHT METAL CASTING AND INJECTION MOULDING INDUSTRY. Christof REINHART 1, Christoph POLIWODA 1, Thomas GÜNTHER 1 1 Volume Graphics

More information

Developments in Dimensional Metrology in X-ray Computed Tomography at NPL

Developments in Dimensional Metrology in X-ray Computed Tomography at NPL Developments in Dimensional Metrology in X-ray Computed Tomography at NPL Wenjuan Sun and Stephen Brown 10 th May 2016 1 Possible factors influencing XCT measurements Components Influencing variables Possible

More information

Efficient 3D Crease Point Extraction from 2D Crease Pixels of Sinogram

Efficient 3D Crease Point Extraction from 2D Crease Pixels of Sinogram Efficient 3D Crease Point Extraction from 2D Crease Pixels of Sinogram Ryo Jinnouchi 1, Yutaka Ohtake 1, Hiromasa Suzuki 1, Yukie Nagai 1 1 The University of Tokyo, Japan, e-mail: {jinnouchi, yu-ohtake,

More information

An initial experimental study on the influence of beam hardening in X-ray CT for dimensional metrology

An initial experimental study on the influence of beam hardening in X-ray CT for dimensional metrology An initial experimental study on the influence of beam hardening in X-ray CT for dimensional metrology Joseph J. Lifton 1,2, Andrew A. Malcolm 2, John W. McBride 3 1 The University of Southampton, United

More information

Comparison of Probing Error in Dimensional Measurement by Means of 3D Computed Tomography with Circular and Helical Sampling

Comparison of Probing Error in Dimensional Measurement by Means of 3D Computed Tomography with Circular and Helical Sampling nd International Symposium on NDT in Aerospace - We..A. Comparison of Probing Error in Dimensional Measurement by Means of D Computed Tomography with Circular and Helical Sampling Jochen HILLER, Stefan

More information

How beam hardening influences the dimensional geometry in X-ray computed tomography

How beam hardening influences the dimensional geometry in X-ray computed tomography How beam hardening influences the dimensional geometry in X-ray computed tomography More info about this article: http://www.ndt.net/?id=20809 Hannah Corcoran 1, 2, Stephen Brown 2, Stuart Robson 1, Robert

More information

Investigation on the influence of image quality in X-ray CT metrology

Investigation on the influence of image quality in X-ray CT metrology Investigation on the influence of image quality in X-ray CT metrology Pavel Müller 1, Jochen Hiller 1, Angela Cantatore 1, Markus Bartscher 2, Leonardo De Chiffre 1 1 Technical University of Denmark, Department

More information

Registration concepts for the just-in-time artefact correction by means of virtual computed tomography

Registration concepts for the just-in-time artefact correction by means of virtual computed tomography DIR 2007 - International Symposium on Digital industrial Radiology and Computed Tomography, June 25-27, 2007, Lyon, France Registration concepts for the just-in-time artefact correction by means of virtual

More information

Use of reference objects for correction of measuring errors in X-ray computed tomography

Use of reference objects for correction of measuring errors in X-ray computed tomography Downloaded from orbit.dtu.dk on: Nov 19, 2018 Use of reference objects for correction of measuring errors in X-ray computed tomography Müller, Pavel Publication date: 2010 Document Version Publisher's

More information

Japan Foundry Society, Inc. Application of Recent X-ray CT Technology to Investment Casting field. Kouichi Inagaki ICC / IHI Corporation

Japan Foundry Society, Inc. Application of Recent X-ray CT Technology to Investment Casting field. Kouichi Inagaki ICC / IHI Corporation Japan Foundry Society, Inc. Application of Recent X-ray CT Technology to Investment Casting field Kouichi Inagaki ICC / IHI Corporation 13 th WORLD CONFERENCE ON INVESTMENT CASTING Paper: T3 Copyright

More information

Characterization of microshells experimented on Laser Megajoule using X-Ray tomography

Characterization of microshells experimented on Laser Megajoule using X-Ray tomography Characterization of microshells experimented on Laser Megajoule using X-Ray tomography More info about this article: http://www.ndt.net/?id=20881 Alexandre Choux, Lise Barnouin, Ludovic Reverdy, Marc Theobald

More information

Creating a Multi-material Probing Error Test for the Acceptance Testing of Dimensional Computed Tomography Systems

Creating a Multi-material Probing Error Test for the Acceptance Testing of Dimensional Computed Tomography Systems Creating a Multi-material Probing Error Test for the Acceptance Testing of Dimensional Computed Tomography Systems More info about this article: http://www.ndt.net/?id=20848 Fabricio Borges de Oliveira

More information

Traceable 3D X-Ray Measurements ZEISS METROTOM

Traceable 3D X-Ray Measurements ZEISS METROTOM 20 Traceable 3D X-Ray Measurements With a computer tomograph, you can successfully perform measuring and inspection jobs yourself with only one X-ray scan. The standard acceptance test, the precision engineering

More information

Simulation-based correction of systematic errors for CT measurements

Simulation-based correction of systematic errors for CT measurements Simulation-based correction of systematic errors for CT measurements Andreas Michael Müller 1, Florian Wohlgemuth 1, Tino Hausotte 1 1 Institute of Manufacturing Metrology, Friedrich-Alexander-Universität

More information

Novel evaluation method of low contrast resolution performance of dimensional X-ray CT

Novel evaluation method of low contrast resolution performance of dimensional X-ray CT More Info at Open Access Database www.ndt.net/?id=18754 Novel evaluation method of low contrast resolution performance of dimensional X-ray CT Makoto Abe 1, Hiroyuki Fujimoto 1, Osamu Sato 1, Kazuya Matsuzaki

More information

HIGH-SPEED THEE-DIMENSIONAL TOMOGRAPHIC IMAGING OF FRAGMENTS AND PRECISE STATISTICS FROM AN AUTOMATED ANALYSIS

HIGH-SPEED THEE-DIMENSIONAL TOMOGRAPHIC IMAGING OF FRAGMENTS AND PRECISE STATISTICS FROM AN AUTOMATED ANALYSIS 23 RD INTERNATIONAL SYMPOSIUM ON BALLISTICS TARRAGONA, SPAIN 16-20 APRIL 2007 HIGH-SPEED THEE-DIMENSIONAL TOMOGRAPHIC IMAGING OF FRAGMENTS AND PRECISE STATISTICS FROM AN AUTOMATED ANALYSIS P. Helberg 1,

More information

Digital Volume Correlation for Materials Characterization

Digital Volume Correlation for Materials Characterization 19 th World Conference on Non-Destructive Testing 2016 Digital Volume Correlation for Materials Characterization Enrico QUINTANA, Phillip REU, Edward JIMENEZ, Kyle THOMPSON, Sharlotte KRAMER Sandia National

More information

Evaluation strategies in CT scanning

Evaluation strategies in CT scanning Downloaded from orbit.dtu.dk on: Dec 20, 2017 Evaluation strategies in CT scanning Hiller, Jochen Publication date: 2012 Document Version Publisher's PDF, also known as Version of record Link back to DTU

More information

Experimental investigation of new multi-material gap reference standard for testing computed tomography systems

Experimental investigation of new multi-material gap reference standard for testing computed tomography systems More info about this article: http://www.ndt.net/?id=20837 Experimental investigation of new multi-material gap reference standard for testing computed tomography systems Petr Hermanek 1, Fabrício Borges

More information

Experimental accuracy assessment of different measuring sensors on workpieces with varying properties

Experimental accuracy assessment of different measuring sensors on workpieces with varying properties Experimental accuracy assessment of different measuring sensors on workpieces with varying properties Rauf Oezden 1,*, Metin Aclan 1 and Saliba Danho 2 1 Technical University of Cluj-Napoca, Ph.D. Stud.,

More information

The Virtual CMM a software tool for uncertainty evaluation practical application in an accredited calibration lab

The Virtual CMM a software tool for uncertainty evaluation practical application in an accredited calibration lab The Virtual CMM a software tool for uncertainty evaluation practical application in an accredited calibration lab Michael Trenk *, Matthias Franke **, Dr. Heinrich Schwenke ** * FEINMESS GmbH&Co. KG **

More information

Optiv CT160 Accurate measurement for every detail. Computed Tomography System

Optiv CT160 Accurate measurement for every detail. Computed Tomography System Optiv CT160 Accurate measurement for every detail Computed Tomography System Computed Tomography CT Technology. New prospects for metrology. Computed tomography (CT), a technology with unique advantages,

More information

Uncertainty Evaluation of Pore Analysis for Additively Manufactured Parts using Cross Sections

Uncertainty Evaluation of Pore Analysis for Additively Manufactured Parts using Cross Sections Uncertainty Evaluation of Pore Analysis for Additively Manufactured Parts using Cross Sections More info about this article: http://www.ndt.net/?id=23659 Abstract Leonard Schild 1, Manuel Fülling 1, Benjamin

More information

Advanced Computed Tomography System for the Inspection of Large Aluminium Car Bodies

Advanced Computed Tomography System for the Inspection of Large Aluminium Car Bodies ECNDT 2006 - Th.3.4.2 Advanced Computed Tomography System for the Inspection of Large Aluminium Car Bodies M. SIMON, I. TISEANU, C. SAUERWEIN Hans WÄLISCHMILLER, Meersburg, Germany M. SINDEL, M. BRODMANN,

More information

RELIABILITY OF PARAMETRIC ERROR ON CALIBRATION OF CMM

RELIABILITY OF PARAMETRIC ERROR ON CALIBRATION OF CMM RELIABILITY OF PARAMETRIC ERROR ON CALIBRATION OF CMM M. Abbe 1, K. Takamasu 2 and S. Ozono 2 1 Mitutoyo Corporation, 1-2-1, Sakato, Takatsu, Kawasaki, 213-12, Japan 2 The University of Tokyo, 7-3-1, Hongo,

More information

Comparison of Reconstruction Methods for Computed Tomography with Industrial Robots using Automatic Object Position Recognition

Comparison of Reconstruction Methods for Computed Tomography with Industrial Robots using Automatic Object Position Recognition 19 th World Conference on Non-Destructive Testing 2016 Comparison of Reconstruction Methods for Computed Tomography with Industrial Robots using Automatic Object Position Recognition Philipp KLEIN 1, Frank

More information

PERFORMANCE ASSESSMENT OF GEOMETRY MEASUREMENTS WITH MICRO-CT USING A DISMOUNTABLE WORK-PIECE-NEAR REFERENCE STANDARD

PERFORMANCE ASSESSMENT OF GEOMETRY MEASUREMENTS WITH MICRO-CT USING A DISMOUNTABLE WORK-PIECE-NEAR REFERENCE STANDARD PERFORMANCE ASSESSMENT OF GEOMETRY MEASUREMENTS WITH MICRO-CT USING A DISMOUNTABLE WORK-PIECE-NEAR REFERENCE STANDARD Markus BARTSCHER, Marko NEUKAMM, Marc KOCH, Ulrich NEUSCHAEFER-RUBE Physikalisch-Technische

More information

CT for Industrial Metrology Accuracy and Structural Resolution of CT Dimensional Measurements

CT for Industrial Metrology Accuracy and Structural Resolution of CT Dimensional Measurements CT for Industrial Metrology Accuracy and Structural Resolution of CT Dimensional Measurements Simone Carmignato 1, Anna Pierobon 2, Paola Rampazzo 1, Matteo Parisatto 3, Enrico Savio 2 1 University of

More information

Case Studies in the Use of Computed Tomography for Non-Destructive Testing, Inspection and Measurement

Case Studies in the Use of Computed Tomography for Non-Destructive Testing, Inspection and Measurement SINCE2013 Singapore International NDT Conference & Exhibition 2013, 19-20 July 2013 Case Studies in the Use of Computed Tomography for Non-Destructive Testing, Inspection and Measurement Andrew A. MALCOLM,

More information

X-rays see all X-ray computed microtomography (µct) a novel technique available at CERN for material and metrological inspection

X-rays see all X-ray computed microtomography (µct) a novel technique available at CERN for material and metrological inspection X-rays see all X-ray computed microtomography (µct) a novel technique available at CERN for material and metrological inspection Mariusz Jedrychowski EN/MME-MM Introduction of new technique at CERN 12/12/2017

More information

AM INSPECTION / NDT: IS XCT THE SOLUTION?

AM INSPECTION / NDT: IS XCT THE SOLUTION? AM INSPECTION / NDT: IS XCT THE SOLUTION? Dr. Nick Brierley Principal Research Engineer Metrology & NDT Group nick.brierley@the-mtc.org April 2018 OUTLINE Challenges of AM post-build inspection XCT for

More information

Creating a Multi-Material Length Measurement Error Test for the Acceptance Testing of Dimensional Computed Tomography Systems

Creating a Multi-Material Length Measurement Error Test for the Acceptance Testing of Dimensional Computed Tomography Systems Creating a Multi-Material Length Measurement Error Test for the Acceptance Testing of Dimensional Computed Tomography Systems More info about this article: http://www.ndt.net/?id=20847 Fabrício Borges

More information

A new Concept for High-Speed atline and inlinect for up to 100% Mass Production Process Control

A new Concept for High-Speed atline and inlinect for up to 100% Mass Production Process Control 18th World Conference on Nondestructive Testing, 16-20 April 2012, Durban, South Africa A new Concept for High-Speed atline and inlinect for up to 100% Mass Production Process Control Oliver BRUNKE 1,

More information

A new Concept for High-Speed atline and inlinect for up to 100% Mass Production Process Control

A new Concept for High-Speed atline and inlinect for up to 100% Mass Production Process Control 6 th International Congress of Metrology, 06003 (203) DOI: 0.05/ metrology/20306003 C Owned by the authors, published by EDP Sciences, 203 A new Concept for High-Speed atline and inlinect for up to 00%

More information

Recognition and Measurement of Small Defects in ICT Testing

Recognition and Measurement of Small Defects in ICT Testing 19 th World Conference on Non-Destructive Testing 2016 Recognition and Measurement of Small Defects in ICT Testing Guo ZHIMIN, Ni PEIJUN, Zhang WEIGUO, Qi ZICHENG Inner Mongolia Metallic Materials Research

More information

COMPARISON OF ERROR MAPPING TECHNIQUES FOR COORDINATE MEASURING MACHINES USING THE PLATE METHOD AND LASER TRACER TECHNIQUE

COMPARISON OF ERROR MAPPING TECHNIQUES FOR COORDINATE MEASURING MACHINES USING THE PLATE METHOD AND LASER TRACER TECHNIQUE I IMEKO World Congress Fundamental and Applied Metrology September 6, 9, Lisbon, Portugal COMPARISON OF ERROR MAPPING TECHNIQUES FOR COORDINATE MEASURING MACHINES USING THE PLATE METHOD AND LASER TRACER

More information

A cone-beam CT geometry correction method based on intentional misalignments to render the projection images correctable

A cone-beam CT geometry correction method based on intentional misalignments to render the projection images correctable A cone-beam CT geometry correction method based on intentional misalignments to render the projection images correctable Felix Meli, Benjamin A. Bircher, Sarah Blankenberger, Alain Küng, Rudolf Thalmann

More information

Translational Computed Tomography: A New Data Acquisition Scheme

Translational Computed Tomography: A New Data Acquisition Scheme 2nd International Symposium on NDT in Aerospace 2010 - We.1.A.3 Translational Computed Tomography: A New Data Acquisition Scheme Theobald FUCHS 1, Tobias SCHÖN 2, Randolf HANKE 3 1 Fraunhofer Development

More information

Non-Destructive Failure Analysis and Measurement for Molded Devices and Complex Assemblies with X-ray CT and 3D Image Processing Techniques

Non-Destructive Failure Analysis and Measurement for Molded Devices and Complex Assemblies with X-ray CT and 3D Image Processing Techniques SINCE2013 Singapore International NDT Conference & Exhibition 2013, 19-20 July 2013 Non-Destructive Failure Analysis and Measurement for Molded Devices and Complex Assemblies with X-ray CT and 3D Image

More information

Distance measurements on inaccessible wires in plastic parts with X-ray computed tomography

Distance measurements on inaccessible wires in plastic parts with X-ray computed tomography Distance measurements on inaccessible wires in plastic parts with X-ray computed tomography More info about this article: http://www.ndt.net/?id=20814 Michael Reiter 1, Christian Gusenbauer 1, Johann Kastner

More information

MULTIPLE-SENSOR INTEGRATION FOR EFFICIENT REVERSE ENGINEERING OF GEOMETRY

MULTIPLE-SENSOR INTEGRATION FOR EFFICIENT REVERSE ENGINEERING OF GEOMETRY Proceedings of the 11 th International Conference on Manufacturing Research (ICMR2013) MULTIPLE-SENSOR INTEGRATION FOR EFFICIENT REVERSE ENGINEERING OF GEOMETRY Feng Li, Andrew Longstaff, Simon Fletcher,

More information

AN EVALUATION OF NON-CONTACT LASER SCANNER PERFORMANCE USING CALIBRATED ARTIFACTS

AN EVALUATION OF NON-CONTACT LASER SCANNER PERFORMANCE USING CALIBRATED ARTIFACTS AN EVALUATION OF NON-CONTACT LASER SCANNER PERFORMANCE USING CALIBRATED ARTIFACTS Michael Gomez, Colleen Vaccaro, Chase Maness, Connor Lawrence, Carson Murray, Luis Vargas, Greg Caskey, Chris Evans, and

More information

Thickness Measurement of Metal Plate Using CT Projection Images and Nominal Shape

Thickness Measurement of Metal Plate Using CT Projection Images and Nominal Shape Thickness Measurement of Metal Plate Using CT Projection Images and Nominal Shape Tasuku Ito 1, Yutaka Ohtake 1, Yukie Nagai 2, Hiromasa Suzuki 1 More info about this article: http://www.ndt.net/?id=23662

More information

ScienceDirect. Comparison of Different Method of Measurement Geometry using CMM, Optical Scanner and Computed Tomography 3D

ScienceDirect. Comparison of Different Method of Measurement Geometry using CMM, Optical Scanner and Computed Tomography 3D Available online at www.sciencedirect.com ScienceDirect Procedia Engineering 69 (2014 ) 255 262 24th DAAAM International Symposium on Intelligent Manufacturing and Automation, 2013 Comparison of Different

More information

Digital Laminography and Computed Tomography with 600 kv for Aerospace Applications

Digital Laminography and Computed Tomography with 600 kv for Aerospace Applications 4th International Symposium on NDT in Aerospace 2012 - Tu.3.A.1 Digital Laminography and Computed Tomography with 600 kv for Aerospace Applications Malte KURFISS 1, Gerd STRECKENBACH 2 1 YXLON International

More information

Application of 450 kv Computed Tomography to Engine Blocks with Steel Liners

Application of 450 kv Computed Tomography to Engine Blocks with Steel Liners Application of 450 kv Computed Tomography to Engine Blocks with Steel Liners Charles R. Smith, Kevin Holt BIR, Inc. Uwe Bischoff, Bernd Georgi, Ferdinand Hansen, Frank Jeltsch Volkswagen Commercial Vehicles

More information

Radiographic Simulator artist: Version 2

Radiographic Simulator artist: Version 2 18th World Conference on Nondestructive Testing, 16-20 April 2012, Durban, South Africa Radiographic Simulator artist: Version 2 Carsten Bellon 1, Andreas Deresch 1, Christian Gollwitzer 1, Gerd-Rüdiger

More information

Quality control phantoms and protocol for a tomography system

Quality control phantoms and protocol for a tomography system Quality control phantoms and protocol for a tomography system Lucía Franco 1 1 CT AIMEN, C/Relva 27A O Porriño Pontevedra, Spain, lfranco@aimen.es Abstract Tomography systems for non-destructive testing

More information

Arion: a realistic projection simulator for optimizing laboratory and industrial micro-ct

Arion: a realistic projection simulator for optimizing laboratory and industrial micro-ct Arion: a realistic projection simulator for optimizing laboratory and industrial micro-ct J. DHAENE* 1, E. PAUWELS 1, T. DE SCHRYVER 1, A. DE MUYNCK 1, M. DIERICK 1, L. VAN HOOREBEKE 1 1 UGCT Dept. Physics

More information

Multisensor Coordinate Measuring Machines ZEISS O-INSPECT

Multisensor Coordinate Measuring Machines ZEISS O-INSPECT Multisensor Coordinate Measuring Machines ZEISS O-INSPECT Having all the necessary options for reliable measurements. ZEISS O-INSPECT // RELIABILITY MADE BY ZEISS 2 The O-INSPECT multisensor measuring

More information

New Approach in Non- Contact 3D Free Form Scanning

New Approach in Non- Contact 3D Free Form Scanning New Approach in Non- Contact 3D Free Form Scanning Contents Abstract Industry Trends The solution A smart laser scanning system Implementation of the laser scanning probe in parts inspection Conclusion

More information

PARAMETERS INFLUENCING THE PRECISION OF SLM PRODUCTION

PARAMETERS INFLUENCING THE PRECISION OF SLM PRODUCTION PARAMETERS INFLUENCING THE PRECISION OF SLM PRODUCTION PETR KELLER, RADOMIR MENDRICKY Department of Manufacturing Systems and Automation, Technical University of Liberec, Liberec, Czech Republic DOI: 10.17973/MMSJ.2015_10_201540

More information

Design and performance characteristics of a Cone Beam CT system for Leksell Gamma Knife Icon

Design and performance characteristics of a Cone Beam CT system for Leksell Gamma Knife Icon Design and performance characteristics of a Cone Beam CT system for Leksell Gamma Knife Icon WHITE PAPER Introduction Introducing an image guidance system based on Cone Beam CT (CBCT) and a mask immobilization

More information

2. Combination of eddy current inspection and imaging analysis

2. Combination of eddy current inspection and imaging analysis 11th European Conference on Non-Destructive Testing (ECNDT 2014), October 6-10, 2014, Prague, Czech Republic Innovative Eddy Current Inspection on Lightweight Components More Info at Open Access Database

More information

Analysis of Combined Probing Measurement Error and Length Measurement Error Test for Acceptance Testing in Dimensional Computed Tomography

Analysis of Combined Probing Measurement Error and Length Measurement Error Test for Acceptance Testing in Dimensional Computed Tomography Digital Industrial Radiology and Computed Tomography (DIR 2015) 22-25 June 2015, Belgium, Ghent - www.ndt.net/app.dir2015 More Info at Open Access Database www.ndt.net/?id=18038 Analysis of Combined Probing

More information

Separation of CT Nominal-Actual Comparisons for Compensation of Plastic Injection Molds

Separation of CT Nominal-Actual Comparisons for Compensation of Plastic Injection Molds Separation of CT Nominal-Actual Comparisons for Compensation of Plastic Injection Molds Robert Schmitt 1, Christopher Isenberg 1 1 WZL of RWTH Aachen University, Steinbachstr. 19, 52074 Aachen, Germany,

More information

CT Systems and their standards

CT Systems and their standards CT Systems and their standards Stephen Brown Engineering Measurement 11 th April 2012 Industrial X-ray computed tomography: The future of co-ordinate metrology? Burleigh Court, Loughborough University

More information

A PRACTICAL ALGORITHM FOR RECONSTRUCTION FROM X-RAY

A PRACTICAL ALGORITHM FOR RECONSTRUCTION FROM X-RAY A PRACTICAL ALGORITHM FOR RECONSTRUCTION FROM X-RAY BACKSCATTER DATA Young S. Ham and C.F. Poranski Materials Chemistry Branch Naval Research Laboratory Washington DC 20375 E.C. Greenawald Geo-Centers,

More information

Adapted acquisition trajectory and iterative reconstruction for few-views CT inspection

Adapted acquisition trajectory and iterative reconstruction for few-views CT inspection Adapted acquisition trajectory and iterative reconstruction for few-views CT inspection Caroline Vienne 1, Marius Costin 1 More info about this article: http://www.ndt.net/?id=21917 1 CEA, LIST, Département

More information

ULTRASONIC TESTING AND FLAW CHARACTERIZATION. Alex KARPELSON Kinectrics Inc., Toronto, Canada

ULTRASONIC TESTING AND FLAW CHARACTERIZATION. Alex KARPELSON Kinectrics Inc., Toronto, Canada ULTRASONIC TESTING AND FLAW CHARACTERIZATION Alex KARPELSON Kinectrics Inc., Toronto, Canada 1. Introduction Ultrasonic Testing (UT) is a commonly used inspection method. Various techniques are employed

More information

A RADIAL WHITE LIGHT INTERFEROMETER FOR MEASUREMENT OF CYLINDRICAL GEOMETRIES

A RADIAL WHITE LIGHT INTERFEROMETER FOR MEASUREMENT OF CYLINDRICAL GEOMETRIES A RADIAL WHITE LIGHT INTERFEROMETER FOR MEASUREMENT OF CYLINDRICAL GEOMETRIES Andre R. Sousa 1 ; Armando Albertazzi 2 ; Alex Dal Pont 3 CEFET/SC Federal Center for Technological Education of Sta. Catarina

More information

Combining Analytical and Monte Carlo Modelling for Industrial Radiology

Combining Analytical and Monte Carlo Modelling for Industrial Radiology 19 th World Conference on Non-Destructive Testing 2016 Combining Analytical and Monte Carlo Modelling for Industrial Radiology Carsten BELLON, Gerd-Rüdiger JAENISCH, Andreas DERESCH BAM Bundesanstalt für

More information

MULTI-PURPOSE 3D COMPUTED TOMOGRAPHY SYSTEM

MULTI-PURPOSE 3D COMPUTED TOMOGRAPHY SYSTEM MULTI-PURPOSE 3D COMPUTED TOMOGRAPHY SYSTEM M. Simon, C. Sauerwein, I. Tiseanu, S. Burdairon Hans Wälischmiller GmbH Klingleweg 8, D-88709 Meersburg, Germany e-mail: ms@hwm.com ABSTRACT A new flexible

More information

INSPECTION OF THE TURBINE BLADES USING SCANNING TECHNIQUES

INSPECTION OF THE TURBINE BLADES USING SCANNING TECHNIQUES INSPECTION OF THE TURBINE BLADES USING SCANNING TECHNIQUES H. Nieciag, M. Traczynski and Z. Chuchro Department of Geometrical Quanities Metrology The Institute of Metal Cutting, 30-011 Cracow, Poland Abstract:

More information

A new concept for high-speed atline and inline CT for up to 100% mass production process control allowing both 3D metrology and failure analysis

A new concept for high-speed atline and inline CT for up to 100% mass production process control allowing both 3D metrology and failure analysis A new concept for high-speed atline and inline CT for up to 100% mass production process control allowing both 3D metrology and failure analysis Oliver Brunke 1, Ferdinand Hansen 2, Ingo Stuke 3, Friedrich

More information

Good practice guide for verification of area-scanning on-board metrology systems on machine tools

Good practice guide for verification of area-scanning on-board metrology systems on machine tools Good practice guide for verification of area-scanning on-board metrology systems on machine tools Vít Zelený, Ivana Linkeová, Jakub Sýkora, Pavel Skalník, Jaromír Hynek Czech Metrology Institute (CMI)

More information

Plane Wave Imaging Using Phased Array Arno Volker 1

Plane Wave Imaging Using Phased Array Arno Volker 1 11th European Conference on Non-Destructive Testing (ECNDT 2014), October 6-10, 2014, Prague, Czech Republic More Info at Open Access Database www.ndt.net/?id=16409 Plane Wave Imaging Using Phased Array

More information

Ch 22 Inspection Technologies

Ch 22 Inspection Technologies Ch 22 Inspection Technologies Sections: 1. Inspection Metrology 2. Contact vs. Noncontact Inspection Techniques 3. Conventional Measuring and Gaging Techniques 4. Coordinate Measuring Machines 5. Surface

More information

Geometric Accuracy Evaluation, DEM Generation and Validation for SPOT-5 Level 1B Stereo Scene

Geometric Accuracy Evaluation, DEM Generation and Validation for SPOT-5 Level 1B Stereo Scene Geometric Accuracy Evaluation, DEM Generation and Validation for SPOT-5 Level 1B Stereo Scene Buyuksalih, G.*, Oruc, M.*, Topan, H.*,.*, Jacobsen, K.** * Karaelmas University Zonguldak, Turkey **University

More information

Case Studies in Nondestructive Testing and Evaluation

Case Studies in Nondestructive Testing and Evaluation Case Studies in Nondestructive Testing and Evaluation 6 (2016) 79 92 More info about this article: http://www.ndt.net/?id=20771 Contents lists available at ScienceDirect Case Studies in Nondestructive

More information

Ultrasonic Multi-Skip Tomography for Pipe Inspection

Ultrasonic Multi-Skip Tomography for Pipe Inspection 18 th World Conference on Non destructive Testing, 16-2 April 212, Durban, South Africa Ultrasonic Multi-Skip Tomography for Pipe Inspection Arno VOLKER 1, Rik VOS 1 Alan HUNTER 1 1 TNO, Stieltjesweg 1,

More information

DUE to beam polychromacity in CT and the energy dependence

DUE to beam polychromacity in CT and the energy dependence 1 Empirical Water Precorrection for Cone-Beam Computed Tomography Katia Sourbelle, Marc Kachelrieß, Member, IEEE, and Willi A. Kalender Abstract We propose an algorithm to correct for the cupping artifact

More information

Multi-sensor measuring technology. O-INSPECT The best of optical and contact measuring technology for true 3D measurements.

Multi-sensor measuring technology. O-INSPECT The best of optical and contact measuring technology for true 3D measurements. Multi-sensor measuring technology O-INSPECT The best of optical and contact measuring technology for true 3D measurements. 2 // multifunctionality made BY CarL Zeiss The moment you realize that new requirements

More information

EMRP JRP IND62 TIM: Use of on-board metrology systems for area-scanning on machine tools

EMRP JRP IND62 TIM: Use of on-board metrology systems for area-scanning on machine tools EMRP JRP IND62 TIM: Use of on-board metrology systems for area-scanning on machine tools Author: Co-authors: doc. Ing. Vít Zelený, CSc. doc. Ing. Ivana Linkeová, Ph.D. Ing. Jakub Sýkora Pavel Skalník Jaromír

More information

Pipe Inspection with Digital Radiography

Pipe Inspection with Digital Radiography NDT INNOVATIVE COMPACT RUGGED Portable Digital Radiography Systems Pipe Inspection with Digital Radiography Railways www. NOVO-DR.com Pipe Inspection with Digital Radiography Digital Radiography or DR

More information

Good Practice guide to measure roundness on roller machines and to estimate their uncertainty

Good Practice guide to measure roundness on roller machines and to estimate their uncertainty Good Practice guide to measure roundness on roller machines and to estimate their uncertainty Björn Hemming, VTT Technical Research Centre of Finland Ltd, Finland Thomas Widmaier, Aalto University School

More information

INDUSTRIAL SYSTEM DEVELOPMENT FOR VOLUMETRIC INTEGRITY

INDUSTRIAL SYSTEM DEVELOPMENT FOR VOLUMETRIC INTEGRITY INDUSTRIAL SYSTEM DEVELOPMENT FOR VOLUMETRIC INTEGRITY VERIFICATION AND ANALYSIS M. L. Hsiao and J. W. Eberhard CR&D General Electric Company Schenectady, NY 12301 J. B. Ross Aircraft Engine - QTC General

More information

17th World Conference on Nondestructive Testing, Oct 2008, Shanghai, China

17th World Conference on Nondestructive Testing, Oct 2008, Shanghai, China 7th World Conference on Nondestructive Testing, 25-28 Oct 2008, Shanghai, China Image Registration Combining Digital Radiography and Computer-Tomography Image Data Frank HEROLD YXLON International X-Ray

More information

MCT225 HA Metrology CT

MCT225 HA Metrology CT MCT225 HA Metrology CT Absolute accuracy for inside metrology nikon metrology I vision beyond precision Today, manufacturers are seeking to reduce time-to-market, despite a greater variety of products

More information

Digital Image Processing

Digital Image Processing Digital Image Processing SPECIAL TOPICS CT IMAGES Hamid R. Rabiee Fall 2015 What is an image? 2 Are images only about visual concepts? We ve already seen that there are other kinds of image. In this lecture

More information

Simulation of Radiographic Testing for POD Assessment

Simulation of Radiographic Testing for POD Assessment 4th European-American Workshop on Reliability of NDE - Th.5.B.2 Simulation of Radiographic Testing for POD Assessment Gerd-Rüdiger JAENISCH, Carsten BELLON, Uwe EWERT, BAM, Berlin, Germany Abstract. Efficient

More information

ADS40 Calibration & Verification Process. Udo Tempelmann*, Ludger Hinsken**, Utz Recke*

ADS40 Calibration & Verification Process. Udo Tempelmann*, Ludger Hinsken**, Utz Recke* ADS40 Calibration & Verification Process Udo Tempelmann*, Ludger Hinsken**, Utz Recke* *Leica Geosystems GIS & Mapping GmbH, Switzerland **Ludger Hinsken, Author of ORIMA, Konstanz, Germany Keywords: ADS40,

More information

Impact of 3D Laser Data Resolution and Accuracy on Pipeline Dents Strain Analysis

Impact of 3D Laser Data Resolution and Accuracy on Pipeline Dents Strain Analysis More Info at Open Access Database www.ndt.net/?id=15137 Impact of 3D Laser Data Resolution and Accuracy on Pipeline Dents Strain Analysis Jean-Simon Fraser, Pierre-Hugues Allard Creaform, 5825 rue St-Georges,

More information

3D X-ray Microscopy Characterization. Metal Additively Manufactured Parts. Application Note

3D X-ray Microscopy Characterization. Metal Additively Manufactured Parts. Application Note 3D X-ray Microscopy Characterization Metal Additively Manufactured Parts Application Note 3D X-ray Microscopy Characterization Metal Additively Manufactured Parts Author: Luke Hunter ZEISS X-ray Microscopy

More information