Booming Noise Analysis in a Passenger Car Using a Hybrid-Integrated Approach

Size: px
Start display at page:

Download "Booming Noise Analysis in a Passenger Car Using a Hybrid-Integrated Approach"

Transcription

1 SAE TECHNICAL PAPER SERIES Booming Noise Analysis in a Passenger Car Using a Hybrid-Integrated Approach Doo-Ho Lee Kookmin University Woo-Seok Hwang Taegu University Myeong-Eop Kim Korea Advanced Institute of Science and Technology SAE 2000 World Congress Detroit, Michigan March 6-9, Commonwealth Drive, Warrendale, PA U.S.A. Tel: (724) Fax: (724)

2 The appearance of this ISSN code at the bottom of this page indicates SAE s consent that copies of the paper may be made for personal or internal use of specific clients. This consent is given on the condition, however, that the copier pay a $7.00 per article copy fee through the Copyright Clearance Center, Inc. Operations Center, 222 Rosewood Drive, Danvers, MA for copying beyond that permitted by Sections 107 or 108 of the U.S. Copyright Law. This consent does not extend to other kinds of copying such as copying for general distribution, for advertising or promotional purposes, for creating new collective works, or for resale. SAE routinely stocks printed papers for a period of three years following date of publication. Direct your orders to SAE Customer Sales and Satisfaction Department. Quantity reprint rates can be obtained from the Customer Sales and Satisfaction Department. To request permission to reprint a technical paper or permission to use copyrighted SAE publications in other works, contact the SAE Publications Group. All SAE papers, standards, and selected books are abstracted and indexed in the Global Mobility Database No part of this publication may be reproduced in any form, in an electronic retrieval system or otherwise, without the prior written permission of the publisher. ISSN Copyright 2000 Society of Automotive Engineers, Inc. Positions and opinions advanced in this paper are those of the author(s) and not necessarily those of SAE. The author is solely responsible for the content of the paper. A process is available by which discussions will be printed with the paper if it is published in SAE Transactions. For permission to publish this paper in full or in part, contact the SAE Publications Group. Persons wishing to submit papers to be considered for presentation or publication through SAE should send the manuscript or a 300 word abstract of a proposed manuscript to: Secretary, Engineering Meetings Board, SAE. Printed in USA

3 Booming Noise Analysis in a Passenger Car Using a Hybrid-Integrated Approach Doo-Ho Lee Kookmin University Woo-Seok Hwang Taegu University Myeong-Eop Kim Korea Advanced Institute of Science and Technology Copyright 2000 Society of Automotive Engineers, Inc. ABSTRACT A hybrid-integrated approach is presented to analyze the structure-borne booming noise in a passenger car. We identify the critical noise transfer path from the engine to the target by the transfer path analysis. However, it does not give the answer for why the noise transfer function is so high at that path. Therefore, an integrated approach which applies the analysis tools systematically is presented. The running mode analysis gives us the operating motion of each component in the body structure. However, there is no evidence that the components that vibrate severely are the sources of this problem. The modal characteristics from the structural modal test enable us to describe the real motion of the body completely in terms of the structural modes. Similarly, the acoustic modal characteristics from the acoustic modal analysis describe the fundamental behavior of the cabin cavity. The introduction of the experimental running mode data of the structure to the acoustic finite element model makes the hybrid analysis possible. Through the structural and the acoustic modal analysis, we verify the mode that contributes to the booming noise. The panel contribution analysis points out the components that have the greatest influence on the booming noise. The modification of the body based on the results of the hybrid-integrated approach results in the great decrease of the noise level. INTRODUCTION In a passenger car, the NVH performance is one of the most important factors in determining the quality of a vehicle. Since a booming noise caused by the structural vibration is observed frequently, particular attention is paid to reduce the booming noise through the whole car development. The booming noise in the prototype stage can cause a severe problem in the program. Therefore, a systematic approach is needed to solve the booming noise problems effectively. In this paper, we investigate the low frequency booming noise in a passenger car with the experimental and the numerical approach. The experimental techniques include the structural modal analysis, the running mode analysis and the transfer path analysis. The numerical models for acoustic cavity and the experimental vibration data of the body are combined for the panel contribution analysis. The simultaneous applications of these methods identify the mechanism of the structure-borne noise for the complete vehicles accurately. In addition, the results give us very useful information for the design modifications. THE HYBRID-INTEGRATED APPROACH From the beginning of design stage, the design engineers pay much attention to improve the NVH performanace of a car. However, the body of a car is made of many beaded thin shells, which are welded or bolted to each other. Furthermore, there are a lot of melting sheets and various trims on the body. These make the numerical analysis limited tool although the numerical analysis is the most useful one in the early design stage. Since we cannot remove the NVH problems perfectly in the design stage, the booming noise can occur during the evaluation of a prototype vehicle. To tackle the booming noise problems in the prototype stage, there are many tools such as Transfer Path Analysis(TPA ) Running Mode Analysis(RMA) Structural Modal Analysis(SMA) 1

4 Acoustic Modal Analysis(AMA) Panel Contribution Analysis(PCA) Figure 1. Schematic diagram of the integrated approach The independent results of each method give us much valuable information for the problem. However, the information is not sufficient if only one of those is available. For example, the RMA can indicate which panels are vibrating severely. However, we can not conclude that those panels are the main source of the interior noise. Similarly the PCA can rank the panels according to their contribution to the noise but can not identify the noise transfer path or the structural modes in resonance. The insufficient information on the booming noise phenomenon may lead to some conclusions based on the engineering intuition. This may result in the misunderstanding of the phenomenon or the inefficient loop of trial-and-errors. The trial-and-errors in the prototype stage can cause a delay of the schedule. To avoid the possibility of the delay and to understand the booming noise problem in a vehicle completely, we should use the above mentioned tools systematically as shown in Figure 1. Only the complete understanding of dynamics can extract the optimal design modification for the booming noise and lead to the successful development of a high quality car. It is very difficult to represent the vibro-acoustic behaviors of the full vehicle by the numerical method due to the complex behavior of the fully trimmed body. On the contrary, the experimental techniques describe the structural behavior of the real vehicle effectively. However, the high cost of the prototype cars and the limited time for the evaluation is a huge obstacle for the experimental approaches. Fortunately, it is easy and accurate to describe the acoustic cavity of the car by the numerical method. Therefore, the combination of the experimental model of the structure and the numerical model of the cabin cavity gives an accurate result. We will show that the hybrid approach, which combines the test data with numerical data, is very useful. BOOMING NOISE ANALYSIS BY THE HYBRID- INTEGRATED APPROACH A booming noise is observed at around 1800 during the evaluation test of a prototype passenger car. The car is a mid-size sedan equipped with an inline 4-cylinder, 2- liter engine and an automatic transmission. After several preliminary tests, the noise is categorized as a structureborne noise excited by the explosion in the engine. To analyze the problem, the hybrid-integrated approach is suggested. Figure 2. main muffler first cross member engine center member submuffler subframe Selected paths for the TPA TRANSFER PATH ANALYSIS The transfer path analysis investigates the contribution of each path for the vibration/noise transfer from the sources to the targets. For the engine booming noise problem, the source is the vibration of the engine. And the target is the sound pressure level at the ear position of a passenger. The noise transfer paths are all the connection points between the engine side and the body side. There are three paths along the coordinate directions at each point in Figure 2. The transfer path analysis identifies the most critical path that transfers the engine vibration to the interior noise. The total interior noise is the sum of the contributions through each transfer path as follow[1] where ( P F ) P = Pi = Fi i P : total internal noise P i : internal noise transferred through i-th path F i : operating force at i-th path : vibro-acoustic transfer function at i-th path P F i 2

5 The operating forces are the multiples of the dynamic stiffnesses of mounts and the relative displacements before and after the mounts. The direct method such as the impact hammer testing or the reciprocal method[2] gives us the vibro-acoustic transfer function from the path point to the target. Pa db Figure 3. Measured Caculated_total Path 5(vertical) Synthesized sound pressures by the TPA We measure the second order operational sound pressures and accelerations on the chassis dynamometer. The impact hammer test at each path point to each direction on the trimmed body gives us the vibro-acoustic transfer functions. During the measurement, the power train, the subframe and the muffler are disconnected completely to avoid the coupling to each other. The dynamic stiffnesses of the engine mounts and rubber elements are measured on an elastomer tester. Figure 3 shows the comparison between the measured sound pressure level and the summed one of the contributions through each path. The synthesized interior sound pressure level shows good agreement with the measured one around As shown in Figure 3, the connection point 5 in vertical direction has the largest contribution to the noise around The high contribution of this path results from the high level of the operating force and the vibro-acoustic transfer function in the range as shown in Figure 4. Actually, the FRF from the point 5 to the interior noise in the vertical direction has higher level than those from the other points by 6 to. RUNNING MODE ANALYSIS We identify the critical noise transfer path through the transfer path analysis. At around 1800, the noise transfer function of that critical path is higher than those of the other paths. However, we do not know why the noise transfer function is so high yet. Since the booming noise is a structureborne phenomenon, investigating the vibration of the structure during operation may give the answer. We can understand the structural behavior of the body during the operation by the running mode analysis. Someone calls it the operational deflection shape (ODS) analysis[3]. Through the analysis, we can visualize the motion of the body at any interested driving condition. Figure 5 shows a test set-up for the running mode analysis of the body. An accelerometer attached at the engine block generates a reference signal. It works as a reference for the phase calculation from the other accelerometers even though they are not measured simultaneously. Therefore, we can see the relative motion of the whole body. Figure 6 shows a geometric mesh for the running mode analysis. The second harmonic components of the accelerations to the crankshaft revolutions are picked up through the order tracking analysis. The total degrees of freedom for the acceleration measurements are Figure 7 shows the operational deflection shape at around 1800 as an example. Pre-am plifier Reference Accelerom eter Figure 5. HP VXI Front-end ENGINE Tachometer Lms CADA-X S/W Microphone Test set-up for the running mode analysis of the body Vibro-acoustic FRF Operating force Pa/N db 10 N Force, N Figure Hz Operational data at the path 5 in the vertical direction Figure 6. Test geometry for the running mode analysis 3

6 Figure 7. Operational deflection shape at around 1800 The components that vibrate severely are the first cross member, the subframe, the roof, the rear windshield, the doors, the floor, the parcel shelf, the tire well and the center member. The center member is not shown in Figure 7 because the deflection is too large compared to those of the others. We can assume that some components among those mentioned above cause the high interior sound pressure. The following analyses verify why those components move so much and whether they are related to the booming noise. EXPERIMENTAL STRUCTURAL MODAL ANALYSIS The structural modal analysis leads us to understand the dynamic characteristic of the full vehicle. Based on the modal parameters such as the modal frequencies, the modal vectors and the modal damping estimations, an arbitrary structure motion can be decomposed into the linear combination of the structural modes[4]. This characteristic enables us to describe the real motion of the vehicle completely in terms of the modal characteristics. We select the same geometry points of the running mode analysis shown in Figure 6 for the modal test. There are two electrodynamic exciters at the front and the rear sides in the vertical direction. They shake the body in the burst random patterns. The modal parameters are estimated from the FRF's at every measuring point using Lms Cada-X Modal Analysis module[5]. Table 1 contains the summary of the primary modes around the concerned frequency. Using the extracted modal parameters, we can decompose the motions from the running mode analysis into the linear combinations of the structural modes. There are the modal decomposition weighting factors normalized to maximum one in Table 1. The greatest contribution to the running mode of Figure 7 comes from the 65 Hz mode, which is shown in Figure 8. The motions of the roof and the doors are very similar in Figure 7 and 8. Table 1. Mode No Structural modes of the body Modal Frequency (Hz) Modal Coefficient* (%) Mode Shape Description Subframe Parcel Shelf Trunk Lid Rear Roof, Door Center Member Floor, Door, Roof Roof Center (*): Percentage ratios to maximum coefficient when the running mode decomposed Figure 8. Sturctural mode shape (65Hz) NUMERICAL ACOUSTIC MODAL ANALYSIS Since the booming noise is a vibro-acoustic phenomenon, the acoustic modes of cavity are very important. The numerical tools such as the finite element method or the boundary element method are very useful in the hybridintegrated approach, since they can model and analyze the internal cavity of the vehicle easily. We can combine the numerical cavity model with the experimentally measured body motions or the modal characteristic of the full vehicle. This hybrid approach makes the accurate and efficient analysis possible. The finite element analysis of the cavity model gives us the information regarding the characteristic of the cavity. There is an acoustic finite element model in Figure 9, and this model has 4762 solid elements. Since our concerned frequency range upto 200 Hz is relatively low, we use a 4

7 very simple model. Many detailed shapes of the cavity are simplified. The small holes of the parcel shelf connect the trunk space with the cabin cavity. The correlation of the numerical results with the experimental ones decide the equivalent size of the hole in the model. 4.0x10-3 Mode 1 Mode 2 3.0x10-3 Mode 3 Mode 4 Mode 5 2.0x x Figure 12. Mode participation factors Figure 9. Table 2. Mode No Finite element model of the cavity Acoustic modes of the cavity Freq. (Hz) Mode Shape Description Longitudinal mode by the trunk Longitudinal mode of the cabin Lateral mode of the cabin Lateral mode of the trunk nd longitudinal mode of the cabin Figure 10. The fundamental acoustic mode shapes: the longitudinal(78hz) and lateral(100hz) modes Pa db Measured FE model Figure 11. Interior noise calculated by the finite element model Table 2 shows the acoustic modes calculated by the finite element analysis using SYSNOISE software[6]. There are the fundamental mode shapes in Figure 10. The modal frequencies of the fundamental modes are much higher than the concerned frequency. Therefore, the booming is not from the resonance of the cavity with the excitation. It is the forced response by the engine excitation. To know the participation factors of each acoustic mode to the interior noise, we introduce the running mode data of the body to the acoustic finite element analysis. The acceleration data from the running mode analysis are converted to the velocity boundary conditions of the finite element model of the cavity. To obtain more realistic results, the impedances of the surface material of the trim parts are added to the finite element model as the boundary conditions. We measure the impedance of the surface material by the impedance tube method. The modal superposition method gives the frequency responses due to the vibrations of the body and the interior noise. Figure 11 shows that the interior noises from the numerical analysis and the experiments are very similar. There are the mode participation factors in Figure 12. Note that the 78Hz mode has the greatest influence on the interior noise from 1500 to This means that the pressure response in the cabin around 1800 will be more sensitive to the change of the front or the rear part panel velocity than that of the central part. PANEL CONTIRIBUTION ANALYSIS We have identified the operational deflection shape of the body and the dynamic characteristic of the body and the cavity. The interior sound pressure is related to the motion of the structure. And there are some components that vibrate a lot during the operation. The panel contribution analysis[7,8] will derive the information that verifies the relation of those results from the previous analysis. 5

8 Figure 13 shows the procedure used in the hybrid approach for the panel contribution analysis. The boundary element model in Figure 14 is the same with the envelope of the acoustic finite element model except for the double nodes in the corner points. The calculated interior sound pressure is very similar to the measured one in Figure 15. There are the velocity boundary conditions and the corresponding surface sound pressures around 1800 in Figure 16 and 17, respectively. The deflections of the several regions are large in Figure 16. However, the pattern of surface sound pressure is very similar to the first longitudinal cabin cavity mode, which governs the sound pressure around Figure 16. Velocity boundary conditions at around 1800 Figure 13. Procedure of the panel contribution analysis using the hybrid approach Figure 17. Surface sound pressure at around 1800 Figure 14. A boundary element model of the cavity Measured BE Model imag Floor 0-2 RH FR Door 0-3 FR W/Shield 0-4 LH FR Door 0-5 RR W/Shield 0-6 LH RR Door 0-7 Roof 0-8 RH RR Door 0-9 P/Shelf 0-10 Trunk 0 real 7 5 Pa db Figure 15. Calculated sound pressure by the BE model Figure 18. Panel contributions for the noise at around 1800 Figure 18 represents the calculated panel contributions to the interior noise around The contributions of the rear windshield and the roof are very dominant. The comparison of the structural vibration in Figure 16 and the results of panel contribution shows that the local deformation of rear roof makes most of the booming noise. 6

9 STRUCTURE MODIFICATION AND VALIDATION The followings are the summary of the results from the hybrid-integrated analysis. The vibration energy of the engine around 1800 transfers to the body mainly through the first cross member. That energy makes the connection area between the roof and the rear windscreen vibrates severely. The motion of this area generates the high pressure in the interior cavity. Based on the summary, we reinforce the first cross member and the rear roof rail to improve the booming noise problem. Figure 19 shows the results of the reinforcement. The reduction of the noise level is 3 to 6 db around The reinforcement changes the noise transfer function from the first cross member to the interior noise as shown in Figure 20. It means that the interior noise level is lowered due to the reduction of the peak level of the noise transfer function by the modifications. Pa db Figure 19. Sound pressures after the structural modifications Pa/N db Figure 20. Noise transfer functions after the structural modifications CONCLUSIONS Initial Member modification Roof modification Hz Initial Member modification Roof Modification A hybrid-integrated approach is presented to analyze the structure-borne booming noise in a passenger car. The conclusions from the analysis are as follows: The simultaneous applications of the analysis tools give us the accurate descriptions of the mechanism related to the booming noise. The analysis includes the transfer path analysis, the running mode analysis, the structural modal analysis, the acoustic modal analysis and the panel contribution analysis. The hybrid approach which combines the experimental data with the numerical model makes the accurate and efficient analysis possible. The numerical modeling of the trimmed body is not so easy to describe the acoustic response exactly. By using the experimental data of the structure as boundary conditions for the numerical acoustic analysis, the efficiency and the accuracy of the analysis improve very much. The modification of the body based on the results of the hybrid-integrated approach results in the decrease of the noise level. The hybrid-integrated approach is a very systematic and efficient one to solve the structure-borne noise problem in a passenger car. REFERENCES 1. T. Jee and Y.B. Choi, Transfer Path Analysis on the Passenger Car Interior Noise, J. of KSNVE, Vol. 9, No.1, pp.97~102,1999(in Korean). 2. P.J.G. Linden and M. Mantovani, The validity of Reciprocal Acoustic Transfer Function Measurements on Trucks for Pass-by Noise, Proceedings of INTERNOISE 96, pp. 2661~2666, K. Wyckaert and H.V.D. Auweraer, Operational Analysis, Transfer Path Analysis, Modal Analysis: Tools to Understand Road Noise Problems in Cars, Proceedings of the SAE Noise and Vibration Conference, pp. 139~143, W. Helen, S. Lammens and P. Sas, Modal Analysis Theory and Testing, Katholieke Universiteit Leuven, Lms International, CADA-X User s Manual: Modal Analysis, Numerical Integration Technology, SYSNOISE 5.3 User s Manual, W. Hendricx, Y.B. Choi, S.W. Ha and H.K. Lee, Experimental Body Panel Contribution Analysis for Road Induced Interior Noise of a Passenger Car, Proceedings of the SAE Noise and Vibration Conference, pp. 351~356, PJG Van der Linden and Ph Veret, Experimental Determination of Low Frequency Noise Contributions of Interior Vehicle Body Panels in Normal Operation, Proceedings of the SAE International Congress, pp. 61~66, L. Gielen, PJG Van der Linden and R. Deges, Identification, Quantification and Reduction of Structural-Borne Road Noise in a Mid-Size Passenger Car, Proceedings of the SAE International Congress, pp. 67~74,

Optimization to Reduce Automobile Cabin Noise

Optimization to Reduce Automobile Cabin Noise EngOpt 2008 - International Conference on Engineering Optimization Rio de Janeiro, Brazil, 01-05 June 2008. Optimization to Reduce Automobile Cabin Noise Harold Thomas, Dilip Mandal, and Narayanan Pagaldipti

More information

Development of MADYMO Models of Passenger Vehicles for Simulating Side Impact Crashes

Development of MADYMO Models of Passenger Vehicles for Simulating Side Impact Crashes SAE TECHNICAL PAPER SERIES 1999-01-2885 Development of MADYMO Models of Passenger Vehicles for Simulating Side Impact Crashes B. R. Deshpande, T. J. Gunasekar, V. Gupta and S. Jayaraman EASi S. M. Summers

More information

LMS Virtual.Lab Noise and Vibration

LMS Virtual.Lab Noise and Vibration LMS Virtual.Lab Noise and Vibration LMS Virtual.Lab Noise and Vibration From component to system-level noise and vibration prediction 2 LMS Virtual.Lab Noise and Vibration LMS Virtual.Lab Noise and Vibration

More information

26 SOUND AND VIBRATION/APRIL Figure 1. Components of a smart structures solution.

26 SOUND AND VIBRATION/APRIL Figure 1. Components of a smart structures solution. Virtual Prototyping for Sound Quality Design of Automobiles Herman Van der Auweraer and Karl Janssens, LMS International, Leuven, Belgium Leopoldo de Oliveira, Maira Da Silva and Wim Desmet, Katholieke

More information

inter.noise 2000 The 29th International Congress and Exhibition on Noise Control Engineering August 2000, Nice, FRANCE

inter.noise 2000 The 29th International Congress and Exhibition on Noise Control Engineering August 2000, Nice, FRANCE Copyright SFA - InterNoise 2000 1 inter.noise 2000 The 29th International Congress and Exhibition on Noise Control Engineering 27-30 August 2000, Nice, FRANCE I-INCE Classification: 7.6 CHARACTERIZING

More information

Receivers. Noise an Vibration Targets. Targets. Steering wheel Ear driver Passenger seat. Sound Perception. Exhaust tail Exhaust line

Receivers. Noise an Vibration Targets. Targets. Steering wheel Ear driver Passenger seat. Sound Perception. Exhaust tail Exhaust line Transfer Path Analysis Tool Finding airborne and structureborne sources contribution Unique coupling feature with (optional) VNoise FEMBEM solvers Vibroacoustic analysis and Simulation in the fields of:

More information

Simulation of a Virtual Compressor's Vibration

Simulation of a Virtual Compressor's Vibration Purdue University Purdue e-pubs International Compressor Engineering Conference School of Mechanical Engineering 2004 Simulation of a Virtual Compressor's Vibration Mirko Della Libera Alberto Pezzutto

More information

SEA Modeling and Validation of a Truck Cab for Sound Package Optimization

SEA Modeling and Validation of a Truck Cab for Sound Package Optimization SEA Modeling and Validation of a Truck Cab for Sound Package Optimization Yong Sok Jang a) Jong Young Kuk b) Jong Chan Park c) Commercial Vehicle CAE Research Lab, Hyundai Motor Company 150, Hyundaiyeonguso-ro,

More information

Squeak & Rattle Simulation A New Approach to Support the Complete Development Process of Interior Parts

Squeak & Rattle Simulation A New Approach to Support the Complete Development Process of Interior Parts VDI-Jahrbuch Berechnung Squeak & Rattle Simulation A New Approach to Support the Complete Development Process of Interior Parts Squeak & Rattle performance has become increasingly important regarding customer

More information

Ferreira, Tiago Pontificia Universidade Católioca de Minas Gerais

Ferreira, Tiago Pontificia Universidade Católioca de Minas Gerais 22nd International Congress of Mechanical Engineering (COBEM 2013) November 3-7, 2013, Ribeirão Preto, SP, Brazil Copyright 2013 by ABCM SENSITIVITY ANALYSIS OF NUMERICAL AND EXPERIMENTAL COMPARISON BY

More information

Modeling the Transmission Loss of Passthroughs in Sound Package using Foam Finite Elements

Modeling the Transmission Loss of Passthroughs in Sound Package using Foam Finite Elements Proceedings of 20 th International Congress on Acoustics, ICA 2010 23-27 August 2010, Sydney, Australia Modeling the Transmission Loss of Passthroughs in Sound Package using Foam Finite Elements Sascha

More information

Aero-Vibro Acoustics For Wind Noise Application. David Roche and Ashok Khondge ANSYS, Inc.

Aero-Vibro Acoustics For Wind Noise Application. David Roche and Ashok Khondge ANSYS, Inc. Aero-Vibro Acoustics For Wind Noise Application David Roche and Ashok Khondge ANSYS, Inc. Outline 1. Wind Noise 2. Problem Description 3. Simulation Methodology 4. Results 5. Summary Thursday, October

More information

Abaqus Technology Brief. Sound Radiation Analysis of Automobile Engine Covers

Abaqus Technology Brief. Sound Radiation Analysis of Automobile Engine Covers Sound Radiation Analysis of Automobile Engine Covers Abaqus Technology Brief TB-06-COVER-2 Revised: April 2007. Summary A methodology to study the sound radiation of engine valve covers is presented. The

More information

Sizing Optimization for Industrial Applications

Sizing Optimization for Industrial Applications 11 th World Congress on Structural and Multidisciplinary Optimisation 07 th -12 th, June 2015, Sydney Australia Sizing Optimization for Industrial Applications Miguel A.A.S: Matos 1, Peter M. Clausen 2,

More information

IMPROVED METHODOLOGY FOR SQUEAK & RATTLE ANALYSIS WITH ABAQUS AND CORRELATION WITH TEST RESULTS

IMPROVED METHODOLOGY FOR SQUEAK & RATTLE ANALYSIS WITH ABAQUS AND CORRELATION WITH TEST RESULTS IMPROVED METHODOLOGY FOR SQUEAK & RATTLE ANALYSIS WITH ABAQUS AND CORRELATION WITH TEST RESULTS Eduard Caamaño, Inés Lama, Andreas Rousounelos, Jordi Viñas IDIADA Automotive Technology, Spain Abstract:

More information

APPLICATION ON AN UPDATED FINITE ELEMENT MODEL OF AN ENGINE IN THE AUTOMOTIVE INDUSTRY

APPLICATION ON AN UPDATED FINITE ELEMENT MODEL OF AN ENGINE IN THE AUTOMOTIVE INDUSTRY SISOM 2011 and Session of the Commission of Acoustics, Bucharest 25-26 May APPLICATION ON AN UPDATED FINITE ELEMENT MODEL OF AN ENGINE IN THE AUTOMOTIVE INDUSTRY Gabriel-Petru ANTON, Mihai PAVAL, Fabien

More information

Vehicle Cabin Noise from Turbulence Induced by Side-View Mirrors. Hua-Dong Yao, 2018/8/29 Chalmers University of Technology, Sweden

Vehicle Cabin Noise from Turbulence Induced by Side-View Mirrors. Hua-Dong Yao, 2018/8/29 Chalmers University of Technology, Sweden Vehicle Cabin Noise from Turbulence Induced by Side-View Mirrors Hua-Dong Yao, 2018/8/29 Chalmers University of Technology, Sweden An Important Cabin Noise Source Turbulence As the development of quiet

More information

CHAPTER 5 RANDOM VIBRATION TESTS ON DIP-PCB ASSEMBLY

CHAPTER 5 RANDOM VIBRATION TESTS ON DIP-PCB ASSEMBLY 117 CHAPTER 5 RANDOM VIBRATION TESTS ON DIP-PCB ASSEMBLY 5.1 INTRODUCTION Random vibration tests are usually specified as acceptance, screening and qualification tests by commercial, industrial, and military

More information

Introduction to Actran for Acoustics Radiation Analysis

Introduction to Actran for Acoustics Radiation Analysis Introduction to Actran for Acoustics Radiation Analysis November 21 st, 2012 Chanhee Jeong Agenda Introduction to Actran Acoustic Radiation Analysis with Actran Weakly Coupled Vibro-Acoustics Computational

More information

Modal Analysis of Exhaust System to Optimize Mounting Hanger Location

Modal Analysis of Exhaust System to Optimize Mounting Hanger Location Modal Analysis of Exhaust System to Optimize Mounting Hanger Location Chetan D. Gaonkar Assistant Professor, Mechanical Engineering Dpt., DBCE, Margao, Goa Abstract An exhaust system with a superior performance

More information

Reduction of squeal on laminated brake disc fastened with distributed contact pressure

Reduction of squeal on laminated brake disc fastened with distributed contact pressure Recent Researches in Engineering Mechanics, Urban & Naval Transportation and Tourism Reduction of squeal on laminated brake disc fastened with distributed contact pressure Y.KUBOTA, K.OKUBO, T.FUJII Mechanical

More information

A database framework for industrial vehicle body concept modelling

A database framework for industrial vehicle body concept modelling A database framework for industrial vehicle body concept modelling D. MUNDO 1, A. MARESSA 2, N. RIZZO 1, S. DONDERS 3, W. DESMET 2 1 Department of Mechanical Engineering, University of Calabria - 87036

More information

Concept design of Vehicle Structure for the purpose of. computing torsional and bending stiffness

Concept design of Vehicle Structure for the purpose of. computing torsional and bending stiffness Concept design of Vehicle Structure for the purpose of computing torsional and bending stiffness M.Mohseni Kabir 1, M.Izanloo 1, A.Khalkhali* 2 1. M.Sc. Automotive Simulation and Optimal Design Research

More information

Light Weighting of Body Structure for Drive-Away Structure-Borne Noise Targets

Light Weighting of Body Structure for Drive-Away Structure-Borne Noise Targets Light Weighting of Body Structure for Drive-Away Structure-Borne Noise Targets Bhaskar R Gangu Lead Engineer GMTCI ITPB Bangalore 560066 INDIA bhaskar.gangu@gm.com Varun Agarwal Technical Lead GMTCI ITPB

More information

Time-Domain Dynamic Analysis of Helical Gears with Reduced Housing Model

Time-Domain Dynamic Analysis of Helical Gears with Reduced Housing Model 2013-01-1898 Published 05/13/2013 Copyright 2013 SAE International doi:10.4271/2013-01-1898 saeaero.saejournals.org Time-Domain Dynamic Analysis of Helical Gears with Reduced Housing Model Vijaya Kumar

More information

Acoustic computation of a grommet in a small cabin using finite element analysis

Acoustic computation of a grommet in a small cabin using finite element analysis Acoustic computation of a grommet in a small cabin using finite element analysis M.GAROT a, F.CABRERA b, L.CHRETIEN b, N. MERLETTE a a. CEVAA, mail: m.garot@cevaa.com b. LEONI WIRING SYSTEMS Abstract:

More information

Lecture 32: Sysnoise and Structural Models Computational Acoustics, c V. Sparrow/PSU, 2000

Lecture 32: Sysnoise and Structural Models Computational Acoustics, c V. Sparrow/PSU, 2000 Lecture 32: Sysnoise and Structural Models Computational Acoustics, c V. Sparrow/PSU, 2000 References: - Sysnoise Rev. 5.4User s Manuals, LMS Numerical Technologies, Leuven, Belgium. - Sysnoise Rev. 5.4Examples

More information

IJREAS VOLUME 6, ISSUE 4 (April, 2016) (ISSN ) International Journal of Research in Engineering and Applied Sciences (IMPACT FACTOR 6.

IJREAS VOLUME 6, ISSUE 4 (April, 2016) (ISSN ) International Journal of Research in Engineering and Applied Sciences (IMPACT FACTOR 6. THICKNESS OPTIMIZATION OF CAR FRAME FOR STRENGTH Manoj Kumar Singh 1 R.Hussain Vali 2 P.Yagnasri 3 Associate Professor Assistant Professor Assistant Professor ABSTRACT Department of mechanical engineering,,

More information

Dynamic Analysis of Air Conditioner Compressor Mounting Bracket

Dynamic Analysis of Air Conditioner Compressor Mounting Bracket ISSN 2395-1621 Dynamic Analysis of Air Conditioner Compressor Mounting Bracket #1 Vyankatesh D. Pawade, #2 Pushkaraj D. Sonawane 1 vdpawade@gmail.com 2 pushkaraj.sonawane@mitpune.edu.in 1 Student ME Design,

More information

Acoustic Source Location in Vehicle Cabins and Free-field with Nearfield Acoustical Holography via Acoustic Arrays.

Acoustic Source Location in Vehicle Cabins and Free-field with Nearfield Acoustical Holography via Acoustic Arrays. Acoustic Source Location in Vehicle Cabins and Free-field with Nearfield Acoustical Holography via Acoustic Arrays. D.L.Hallman S.M. Dumbacher B.W. Libbey J.S. Bolton D.L. Brown M.J. Lally Herrick Laboratories

More information

A study on automation of modal analysis of a spindle system of machine tools using ANSYS

A study on automation of modal analysis of a spindle system of machine tools using ANSYS Journal of the Korea Academia-Industrial cooperation Society Vol. 16, No. 4 pp. 2338-2343, 2015 http://dx.doi.org/10.5762/kais.2015.16.4.2338 ISSN 1975-4701 / eissn 2288-4688 A study on automation of modal

More information

Tyre Modelling for NVH Engineering in ADAMS

Tyre Modelling for NVH Engineering in ADAMS Tyre Modelling for NVH Engineering in ADAMS Marc DUVERNIER, Patrice FRAYSSE, Viviane BOMBLAIN and Eric DORMEGNIE Michelin Tyre Company Manufacture Francaise des Pneumatiques Michelin 23, Place des Carmes

More information

Industrial finite element analysis: Evolution and current challenges. Keynote presentation at NAFEMS World Congress Crete, Greece June 16-19, 2009

Industrial finite element analysis: Evolution and current challenges. Keynote presentation at NAFEMS World Congress Crete, Greece June 16-19, 2009 Industrial finite element analysis: Evolution and current challenges Keynote presentation at NAFEMS World Congress Crete, Greece June 16-19, 2009 Dr. Chief Numerical Analyst Office of Architecture and

More information

Measuring a Geometry by Photogrammetry: Evaluation of the Approach in View of Experimental Modal Analysis on Automotive Structures

Measuring a Geometry by Photogrammetry: Evaluation of the Approach in View of Experimental Modal Analysis on Automotive Structures SAE TECHNICAL PAPER SERIES 2001-01-1473 Measuring a Geometry by Photogrammetry: Evaluation of the Approach in View of Experimental Modal Analysis on Automotive Structures Benoit Dierckx and Christophe

More information

Interactive auralization of powertrain sounds using measured and simulated excitation

Interactive auralization of powertrain sounds using measured and simulated excitation 7NVC-162 Interactive auralization of powertrain sounds using measured and simulated excitation Daniel Riemann and Roland Sottek HEAD acoustics GmbH, Herzogenrath, Germany Tadakazu Naritomi, Shin Kishita

More information

Modal Analysis on Cab Body-in-white of Heavy Commercial Vehicle

Modal Analysis on Cab Body-in-white of Heavy Commercial Vehicle Modal Analysis on Cab Body-in-white of Heavy Commercial Vehicle Guoyu Feng 1,2,a, Wenku Shi 1,b, Guangming Wu 1,c, Wei Yang 1,d 1 State Key Laboratory of Automobile Dynamic Simulation, Jilin University,

More information

CAE/CFD Application for Linear Compressor

CAE/CFD Application for Linear Compressor Purdue University Purdue e-pubs International Compressor Engineering Conference School of Mechanical Engineering 26 CAE/CFD Application for Linear Compressor Kwangha Suh LG Electronics Inc. Daenyoung Heo

More information

Modal Analysis of Intermediate Shaft Used in Automobile Gear Box

Modal Analysis of Intermediate Shaft Used in Automobile Gear Box Modal Analysis of Intermediate Shaft Used in Automobile Gear Box Mr. Shekhar Dive PG Student, Mechanical Engineering Department, Siddhant College of Engineering, University of Pune, Pune, Maharashtra,

More information

NOISE PROPAGATION FROM VIBRATING STRUCTURES

NOISE PROPAGATION FROM VIBRATING STRUCTURES NOISE PROPAGATION FROM VIBRATING STRUCTURES Abstract R. Helfrich, M. Spriegel (INTES GmbH, Germany) Noise and noise exposure are becoming more important in product development due to environmental legislation.

More information

Finite Element Simulation using SPH Particles as Loading on Typical Light Armoured Vehicles

Finite Element Simulation using SPH Particles as Loading on Typical Light Armoured Vehicles 10 th International LS-DYNA Users Conference Penetration / Blast Finite Element Simulation using SPH Particles as Loading on Typical Light Armoured Vehicles Geneviève Toussaint and Robert Durocher Defence

More information

Evaluation of Fabrication Errors on the Performance of Injection Molded Light Pipes (Waveguides)

Evaluation of Fabrication Errors on the Performance of Injection Molded Light Pipes (Waveguides) SAE TECHNICAL PAPER SERIES --86 Evaluation of Fabrication Errors on the Performance of Injection Molded Light Pipes (Waveguides) John Van Derlofske Transportation Lighting Group, Lighting Research Center,

More information

VIBROACOUSTIC MODEL VALIDATION FOR A CURVED HONEYCOMB COMPOSITE PANEL

VIBROACOUSTIC MODEL VALIDATION FOR A CURVED HONEYCOMB COMPOSITE PANEL VIBROACOUSTIC MODEL VALIDATION FOR A CURVED HONEYCOMB COMPOSITE PANEL AIAA-2001-1587 Ralph D. Buehrle and Jay H. Robinson ÿ NASA Langley Research Center, Hampton, Virginia and Ferdinand W. Grosveld Lockheed

More information

Active noise control at a moving location in a modally dense three-dimensional sound field using virtual sensing

Active noise control at a moving location in a modally dense three-dimensional sound field using virtual sensing Active noise control at a moving location in a modally dense three-dimensional sound field using virtual sensing D. J Moreau, B. S Cazzolato and A. C Zander The University of Adelaide, School of Mechanical

More information

COSMOS. Vehicle Suspension Analysis ---- SolidWorks Corporation. Introduction 1. Role of vehicle suspension 2. Motion analysis 2

COSMOS. Vehicle Suspension Analysis ---- SolidWorks Corporation. Introduction 1. Role of vehicle suspension 2. Motion analysis 2 ---- WHITE PAPER Vehicle Suspension Analysis CONTENTS Introduction 1 Role of vehicle suspension 2 Motion analysis 2 Motion analysis using COSMOSMotion 3 Real-life example 4-5 Exporting loads to COSMOSWorks

More information

ODS & Modal Testing Using a Transmissibility Chain

ODS & Modal Testing Using a Transmissibility Chain ODS & Modal Testing Using a Transmissibility Chain Brian Schwarz, Patrick McHargue, Mark Richardson Vibrant Technology, Inc. Centennial, CO Click here for the presentation ABSTRACT In this paper, we show

More information

Modal Analysis of the Light Electric Sanitation Vehicle Frame

Modal Analysis of the Light Electric Sanitation Vehicle Frame GRD Journals- Global Research and Development Journal for Engineering Volume 3 Issue 10 September 2018 ISSN: 2455-5703 Modal Analysis of the Light Electric Sanitation Vehicle Frame Lv Shaobin PG Student

More information

Acoustic Prediction Made Practical: Process Time Reduction with Pre/SYSNOISE, a recent joint development by MSC & LMS ABSTRACT

Acoustic Prediction Made Practical: Process Time Reduction with Pre/SYSNOISE, a recent joint development by MSC & LMS ABSTRACT Acoustic Prediction Made Practical: Process Time Reduction with Pre/SYSNOISE, a recent joint development by MSC & LMS L. Cremers, O. Storrer and P. van Vooren LMS International NV Interleuvenlaan 70 B-3001

More information

LMS Virtual.Lab Correlation

LMS Virtual.Lab Correlation LMS Virtual.Lab Correlation LMS Virtual.Lab Correlation Systematic validation from the bottom up 2 LMS Virtual.Lab Correlation LMS Virtual.Lab Correlation 3 LMS Virtual.Lab Correlation Systematic validation

More information

This document is downloaded from the Digital Open Access Repository of VTT. VTT P.O. box 1000 FI VTT Finland

This document is downloaded from the Digital Open Access Repository of VTT. VTT  P.O. box 1000 FI VTT Finland This document is downloaded from the Digital Open Access Repository of VTT Title NOVI - Advanced functional solutions for Noise and Vibration reduction of machinery, Deliverable D2.5 & D2.8 Modelling tools

More information

KEYWORDS Non-parametric optimization, Parametric Optimization, Design of Experiments, Response Surface Modelling, Multidisciplinary Optimization

KEYWORDS Non-parametric optimization, Parametric Optimization, Design of Experiments, Response Surface Modelling, Multidisciplinary Optimization Session H2.5 OVERVIEW ON OPTIMIZATION METHODS Ioannis Nitsopoulos *, Boris Lauber FE-DESIGN GmbH, Germany KEYWORDS Non-parametric optimization, Parametric Optimization, Design of Experiments, Response

More information

1610. Optimization analysis on car interior structure noise based on particle swarm optimization and RBF model

1610. Optimization analysis on car interior structure noise based on particle swarm optimization and RBF model 1610. Optimization analysis on car interior structure noise based on particle swarm optimization and RBF model Yahui Wang North China University of Water Resources and Electric Power, Zhengzhou 450011,

More information

Performance and quality enhancement of automotive components by utilizing non-contact vibration measurements by Laser Doppler Vibrometry

Performance and quality enhancement of automotive components by utilizing non-contact vibration measurements by Laser Doppler Vibrometry Performance and quality enhancement of automotive components by utilizing non-contact vibration measurements by Laser Doppler Vibrometry By Martin Johansmann & Chris Chia 20.05.2016 www.polytec.com Polytec

More information

NVH optimization methodologies based on bead modification analysis in vehicle body design

NVH optimization methodologies based on bead modification analysis in vehicle body design NVH optimization methodologies based on bead modification analysis in vehicle body design A. Maressa 1, B. Pluymers 1, S. Donders 2, W. Desmet 1 1 K.U.Leuven, Department Mechanical Engineering, Division

More information

Virtual.Lab Empowering Engineering Innovation

Virtual.Lab Empowering Engineering Innovation LMS Virtual.Lab Acoustics Make Sound Engineering Decisions Faster LMS TM Virtual.Lab Empowering Engineering Innovation LMS Virtual.Lab, the Integrated Environment for Functional Performance Engineering

More information

COMPARISON OF THE MECHANICAL PROPERTIES OF DIFFERENT MODELS OF AUTOMOTIVE ENGINE MOUNTING

COMPARISON OF THE MECHANICAL PROPERTIES OF DIFFERENT MODELS OF AUTOMOTIVE ENGINE MOUNTING COMPARISON OF THE MECHANICAL PROPERTIES OF DIFFERENT MODELS OF AUTOMOTIVE ENGINE MOUNTING Haval Kamal Asker Mechanical Engineering, Faculty of Agriculture and Forestry, University of Duhok, Iraq E-Mail:

More information

Sound Transmission Loss predictions of aircraft panels: an update on recent technology evolutions

Sound Transmission Loss predictions of aircraft panels: an update on recent technology evolutions Sound Transmission Loss predictions of aircraft panels: an update on recent technology evolutions Koen De Langhe 1 ; Alexander Peiffer 2 ; Robin Boeykens 3 ; Clemens Moser 4 ; 1 SIEMENS PLM Software, Belgium

More information

About the Author. Acknowledgements

About the Author. Acknowledgements About the Author Dr. Paul Kurowski obtained his MSc and PhD in Applied Mechanics from Warsaw Technical University. He completed postdoctoral work at Kyoto University. Dr. Kurowski is an Assistant Professor

More information

Using Impulse Response Functions to Evaluate Baseball Bats

Using Impulse Response Functions to Evaluate Baseball Bats Using Impulse Response Functions to Evaluate aseball ats David L. Formenti David Ottman Mark H. Richardson lackhawk Technology, Inc. Hillerich & radsby o. Vibrant Technology, Inc Santa ruz, A Loomis, A

More information

FEA and Topology Optimization of an Engine Mounting Bracket

FEA and Topology Optimization of an Engine Mounting Bracket International Journal of Current Engineering and Technology E-ISSN 2277 4106, P-ISSN 2347 5161 2016 INPRESSCO, All Rights Reserved Available at http://inpressco.com/category/ijcet Research Article Sanket

More information

Topology Optimization of an Engine Bracket Under Harmonic Loads

Topology Optimization of an Engine Bracket Under Harmonic Loads Topology Optimization of an Engine Bracket Under Harmonic Loads R. Helfrich 1, A. Schünemann 1 1: INTES GmbH, Schulze-Delitzsch-Str. 16, 70565 Stuttgart, Germany, www.intes.de, info@intes.de Abstract:

More information

The Evaluation of Crashworthiness of Vehicles with Forming Effect

The Evaluation of Crashworthiness of Vehicles with Forming Effect 4 th European LS-DYNA Users Conference Crash / Automotive Applications I The Evaluation of Crashworthiness of Vehicles with Forming Effect Authors: Hyunsup Kim*, Sungoh Hong*, Seokgil Hong*, Hoon Huh**

More information

The Importance of Integrated Software Solutions in Troubleshooting Gear Whine

The Importance of Integrated Software Solutions in Troubleshooting Gear Whine The Importance of Integrated Software Solutions in Troubleshooting Gear Whine Paul Langlois NVH noise, vibration and harshness is a key issue in the design and development of modern transmission and driveline

More information

KU Leuven vibro-acoustics activities in an Industry 4.0 context

KU Leuven vibro-acoustics activities in an Industry 4.0 context KU Leuven vibro-acoustics activities in an Industry 4.0 context Wim Desmet KU Leuven Department of Mechanical Engineering Flanders Make - Virtual Department Mechatronics & Design overview KU Leuven team

More information

AIR FLOW CHARACTERISTICS FOR THE GEOMETRY MODIFICATION OF BELLOWS PIPE ON INTAKE SYSTEM OF AUTOMOBILE

AIR FLOW CHARACTERISTICS FOR THE GEOMETRY MODIFICATION OF BELLOWS PIPE ON INTAKE SYSTEM OF AUTOMOBILE International Journal of Mechanical Engineering and Technology (IJMET) Volume 9, Issue 5, May 2018, pp. 1064 1071, Article ID: IJMET_09_05_117 Available online at http://www.iaeme.com/ijmet/issues.asp?jtype=ijmet&vtype=9&itype=5

More information

ScienceDirect. Vibration Response Prediction of the Printed Circuit Boards using Experimentally Validated Finite Element Model

ScienceDirect. Vibration Response Prediction of the Printed Circuit Boards using Experimentally Validated Finite Element Model Available online at www.sciencedirect.com ScienceDirect Procedia Engineering 144 (2016 ) 576 583 12th International Conference on Vibration Problems, ICOVP 2015 Vibration Response Prediction of the Printed

More information

Evaluation of SPC and BSS for indoor pass-by noise contribution analysis

Evaluation of SPC and BSS for indoor pass-by noise contribution analysis Evaluation of SPC and BSS for indoor pass-by noise contribution analysis A. Schuhmacher 1, E. Varricchio 2 1 Brüel & Kjaer Sound & Vibration Measurement A/S Skodsborgvej 307, DK-2850, Naerum, Denmark e-mail:

More information

A robust Trimmed Body modal model identification method enabling body stiffness characterization Bart Peeters, Theo Geluk, Mahmoud El-Kafafy

A robust Trimmed Body modal model identification method enabling body stiffness characterization Bart Peeters, Theo Geluk, Mahmoud El-Kafafy A robust Trimmed Body modal model identification method enabling body stiffness characterization Bart Peeters, Theo Geluk, Mahmoud El-Kafafy Theo Geluk Simcenter Symposium, October 18 th 2017 Realize innovation.

More information

Free-Free, Fixed or Other Test Boundary Conditions for the Best Modal Test?

Free-Free, Fixed or Other Test Boundary Conditions for the Best Modal Test? Free-Free, Fixed or Other Test Boundary Conditions for the Best Modal Test? S. Perinpanayagam and D. J. Ewins Vibration Engineering Centre Mechanical Engineering Department Imperial College of Science,

More information

Predicting and simulating noise Integrated vibro- and aero- acoustic approach

Predicting and simulating noise Integrated vibro- and aero- acoustic approach Predicting and simulating noise Integrated vibro- and aero- acoustic approach Simcenter 3D Acoustics Robin Boeykens Francois Iker Unrestricted Restricted Siemens AG AG 2017 2017 Realize innovation. Introducing

More information

Laser Vibrometry - See What Your Structure Sounds Like

Laser Vibrometry - See What Your Structure Sounds Like Laser Vibrometry - See What Your Structure Sounds Like Some Fundamentals: Roger Traynor EIS Sound Quality & Perception Workshop, Brunel University, June 8 th 2014 What is Sound? Sound & Noise Vibrations

More information

Sheet Metal Forming: Spring-back of hydro mechanical deep drawn parts

Sheet Metal Forming: Spring-back of hydro mechanical deep drawn parts 4 th European LS-DYNA Users Conference Metal Forming I Sheet Metal Forming: Spring-back of hydro mechanical deep drawn parts Authors: Jens Buchert, University of Applied Sciences, Aalen, Germany David

More information

Static And Modal Analysis Of Rotating Wheel Rim Using Ansys

Static And Modal Analysis Of Rotating Wheel Rim Using Ansys International Journal of Engineering Science Invention ISSN (Online): 2319 6734, ISSN (Print): 2319 6726 Volume 3 Issue 9 ǁ September 2014 ǁ PP.18-23 Static And Modal Analysis Of Rotating Wheel Rim Using

More information

Simulation of Curtain Airbag with Arbitrary. Eulerian- Lagrangian Method

Simulation of Curtain Airbag with Arbitrary. Eulerian- Lagrangian Method Simulation of Curtain Airbag with Arbitrary Eulerian- Lagrangian Method Dmitri Fokin, Eivind Dessarud Altair Engineering Claes Ljungqvist Saab Automobile AB Abstract: Computer simulation is a powerful

More information

An Approximate Method for Permuting Frame with Repeated Lattice Structure to Equivalent Beam

An Approximate Method for Permuting Frame with Repeated Lattice Structure to Equivalent Beam The Open Ocean Engineering Journal, 2011, 4, 55-59 55 Open Access An Approximate Method for Permuting Frame with Repeated Lattice Structure to Equivalent Beam H.I. Park a, * and C.G. Park b a Department

More information

Analyzing Elastomer Automotive Body Seals Using LS-DYNA

Analyzing Elastomer Automotive Body Seals Using LS-DYNA 7 th International LS-DYNA Users Conference Methods Development Analyzing Elastomer Automotive Body Seals Using LS-DYNA Linhuo Shi TG North America Corporation 95 Crooks Road Troy, MI 4884 Tel: (248) 28-7348

More information

The 32nd International Congress and Exposition on Noise Control Engineering Jeju International Convention Center, Seogwipo, Korea, August 25-28, 2003

The 32nd International Congress and Exposition on Noise Control Engineering Jeju International Convention Center, Seogwipo, Korea, August 25-28, 2003 The 32nd International Congress and Exposition on Noise Control Engineering Jeju International Convention Center, Seogwipo, Korea, August 25-28, 2003 [N996] Tyre/road noise modelling: the road from a tyre's

More information

Support Systems for Developing System Models

Support Systems for Developing System Models Support Systems for Developing System Models Hasan G. Pasha, Karan Kohli, Randall J. Allemang, David L. Brown and Allyn W. Phillips University of Cincinnati Structural Dynamics Research Lab (UC-SDRL),

More information

ACOUSTIC SIMULATION OF AN AUTOMOTIVE POWER STEERING COLUMN SYSTEM USING THE NOVEL H- MATRIX BEM SOLVER

ACOUSTIC SIMULATION OF AN AUTOMOTIVE POWER STEERING COLUMN SYSTEM USING THE NOVEL H- MATRIX BEM SOLVER The 21 st International Congress on Sound and Vibration 13-17 July, 2014, Beijing/China ACOUSTIC SIMULATION OF AN AUTOMOTIVE POWER STEERING COLUMN SYSTEM USING THE NOVEL H- MATRIX BEM SOLVER Martin Meyer,

More information

Modelling of Torsion Beam Rear Suspension by Using Multibody Method

Modelling of Torsion Beam Rear Suspension by Using Multibody Method Multibody System Dynamics 12: 303 316, 2004. C 2004 Kluwer Academic Publishers. Printed in the Netherlands. 303 Modelling of Torsion Beam Rear Suspension by Using Multibody Method G. FICHERA, M. LACAGNINA

More information

Purdue e-pubs. Purdue University. Jeongil Park Samsung Electronics Co. Nasir Bilal Purdue University. Douglas E. Adams Purdue University

Purdue e-pubs. Purdue University. Jeongil Park Samsung Electronics Co. Nasir Bilal Purdue University. Douglas E. Adams Purdue University Purdue University Purdue e-pubs International Compressor Engineering Conference School of Mechanical Engineering 26 Development of a Two-Dimensional Finite Element Model of a Suction Valve for Reduction

More information

PROCESS DEVELOPMENT FOR MULTI-DISCIPLINARY SPOT WELD OPTIMIZATION WITH CAX-LOCO, LS-OPT AND ANSA

PROCESS DEVELOPMENT FOR MULTI-DISCIPLINARY SPOT WELD OPTIMIZATION WITH CAX-LOCO, LS-OPT AND ANSA PROCESS DEVELOPMENT FOR MULTI-DISCIPLINARY SPOT WELD OPTIMIZATION WITH CAX-LOCO, LS-OPT AND ANSA 1 Dr. Gordon Geißler *, 2 Thomas Hahn 1 DYNAmore GmbH, Germany, 2 Audi AG, Germany KEYWORDS Connection Modelling,

More information

Designing Automotive Subsystems Using Virtual Manufacturing and Distributed Computing

Designing Automotive Subsystems Using Virtual Manufacturing and Distributed Computing SAE TECHNICAL PAPER SERIES 2008-01-0288 Designing Automotive Subsystems Using Virtual Manufacturing and Distributed Computing William Goodwin and Amar Bhatti General Motors Corporation Michael Jensen Synopsys,

More information

Modal Parameter Extraction Of a Heavy Structure Using Multi Input Multi Output (MIMO) Test.

Modal Parameter Extraction Of a Heavy Structure Using Multi Input Multi Output (MIMO) Test. Modal Parameter Extraction Of a Heavy Structure sing Multi Input Multi Output (MIMO) Test. ARN SHARMA Assistant Professor, Department of ME, niversity of Petroleum & Energy Studies, Dehradun, India arsharm@gmail.com

More information

Finite Element Analysis and Experimental Validation of Lower Control Arm

Finite Element Analysis and Experimental Validation of Lower Control Arm Finite Element Analysis and Experimental Validation of Lower Control Arm 1 Miss. P. B. Patil, 2 Prof. M. V. Kharade 1 Assistant Professor at Vishweshwaraya Technical Campus Degree wing, Patgaon, Miraj

More information

Topology Optimization of Engine Structure of a Scooter Engine using OptiStruct

Topology Optimization of Engine Structure of a Scooter Engine using OptiStruct Topology Optimization of Engine Structure of a Scooter Engine using OptiStruct Vikas Kumar Agarwal Deputy Manager Mahindra Two Wheelers Ltd. MIDC Chinchwad Pune 411019 India Gyanendra Roy Senior Manager

More information

KINETICS Vibration Isolation Manual

KINETICS Vibration Isolation Manual The Pitfalls of Combining Internal & External Equipment Isolation Introduction: Almost all Make-up Air Units (MAU), Air Handling Units (AHU), and Rooftop Units (RTU) have internal spring-type isolation

More information

Newest Trends and Technologies for Aero- Acoustic Windtunnel testing Gert Sablon, Director Business Development, STS TEST

Newest Trends and Technologies for Aero- Acoustic Windtunnel testing Gert Sablon, Director Business Development, STS TEST Newest Trends and Technologies for Aero- Acoustic Windtunnel testing Gert Sablon, Director Business Development, STS TEST Realize innovation. Shift towards increased effort to reduce wind noise Shift in

More information

Idealization of Design Strip in ADAPT RC

Idealization of Design Strip in ADAPT RC ADAPT RC 2010 Tutorial Idealization of Design Strip in ADAPT RC Update: May 2010 Copyright ADAPT Corporation all rights reserved ADAPT RC 2010 Tutorial 1 Main Toolbar Menu Bar View Toolbar Structure View

More information

P R O D U C T D A T A

P R O D U C T D A T A P R O D U C T D A T A BK Connect Structural Dynamics BK Connect ODS Analysis Spectral and Time ODS Operating deflection shapes (ODS) analysis is used for determination of the vibration pattern of a structure

More information

Parametric Study of Engine Rigid Body Modes

Parametric Study of Engine Rigid Body Modes Parametric Study of Engine Rigid Body Modes Basem Alzahabi and Samir Nashef C. S. Mott Engineering and Science Center Dept. Mechanical Engineering Kettering University 17 West Third Avenue Flint, Michigan,

More information

FORCE BASED SQUEAK & RATTLE ASSESSMENT

FORCE BASED SQUEAK & RATTLE ASSESSMENT FORCE BASED SQUEAK & RATTLE ASSESSMENT 1 Patrick Sabiniarz, 2 Yassine Wardi *, 3 Mehrdad Moridnejad, 4 Jian Huang, 5 Thanassis Fokilidis, 2 Jens Weber * 1 ÅF, Sweden, 2 CEVT, Sweden, 3 VCC, Sweden, 4 GEELY,

More information

IMECE OPTIMAL DESIGN OF WORM GEAR SYSTEM USING IN CVVL FOR AUTOMOBILES

IMECE OPTIMAL DESIGN OF WORM GEAR SYSTEM USING IN CVVL FOR AUTOMOBILES Proceedings of ASME 2013 International Mechanical Engineering Congress & Exposition IMECE 2013 November 15-21, 2013, San Diego, CA, USA IMECE2013-63365 OPTIMAL DESIGN OF WORM GEAR SYSTEM USING IN CVVL

More information

PRODUCT DATA. PULSE Source Path Contribution Type 7798 using Frequency, Order and Time Domain SPC Methods. Uses and Features

PRODUCT DATA. PULSE Source Path Contribution Type 7798 using Frequency, Order and Time Domain SPC Methods. Uses and Features PRODUCT DATA PULSE Source Path Contribution Type 7798 using Frequency, Order and Time Domain SPC Methods In today s competitive automotive industry, it is crucial to quickly and accurately evaluate the

More information

Using Photo Modeling to Obtain the Modes of a Structure

Using Photo Modeling to Obtain the Modes of a Structure Using Photo Modeling to Obtain the Modes of a Structure Shawn and Mark Richardson, Vibrant Technology, Inc., Scotts Valley, California Photo modeling technology has progressed to the point where a dimensionally

More information

Comparative Analysis Of Vehicle Suspension System in Matlab-SIMULINK and MSc- ADAMS with the help of Quarter Car Model

Comparative Analysis Of Vehicle Suspension System in Matlab-SIMULINK and MSc- ADAMS with the help of Quarter Car Model Comparative Analysis Of Vehicle Suspension System in Matlab-SIMULINK and MSc- ADAMS with the help of Quarter Car Model S. J. Chikhale 1, Dr. S. P. Deshmukh 2 PG student, Dept. of Mechanical Engineering,

More information

Development of high performance casting analysis software by coupled parallel computation. *Sang Hyun CHO, Jeong Kil CHOI

Development of high performance casting analysis software by coupled parallel computation. *Sang Hyun CHO, Jeong Kil CHOI August 2007 Development of high performance casting analysis software by coupled parallel computation *Sang Hyun CHO, Jeong Kil CHOI (Center For e-design, Korea Institute of Industrial Technology, 994-32,

More information

Development of Lightweight Engine Mounting Cross Member

Development of Lightweight Engine Mounting Cross Member Development of Lightweight Engine Mounting Cross Member Nitin Babaso Bodhale Team Lead Tata Technologies Ltd Pimpri Pune-411018, India. nitin.bodhale@tatatechnologies.com Jayeshkumar Raghuvanshi Sr. Team

More information

Simulation of Automotive Fuel Tank Sloshing using Radioss

Simulation of Automotive Fuel Tank Sloshing using Radioss Simulation of Automotive Fuel Tank Sloshing using Radioss Prashant V. Kulkarni CAE Analyst Tata Motors. Pimpri, Pune - 411018, India Sanjay S. Patil Senior Manager Tata Motors. Pimpri, Pune - 411018, India

More information

17. SEISMIC ANALYSIS MODELING TO SATISFY BUILDING CODES

17. SEISMIC ANALYSIS MODELING TO SATISFY BUILDING CODES 17. SEISMIC ANALYSIS MODELING TO SATISFY BUILDING CODES The Current Building Codes Use the Terminology: Principal Direction without a Unique Definition 17.1 INTRODUCTION { XE "Building Codes" }Currently

More information

The Dynamic Response of an Euler-Bernoulli Beam on an Elastic Foundation by Finite Element Analysis using the Exact Stiffness Matrix

The Dynamic Response of an Euler-Bernoulli Beam on an Elastic Foundation by Finite Element Analysis using the Exact Stiffness Matrix Journal of Physics: Conference Series The Dynamic Response of an Euler-Bernoulli Beam on an Elastic Foundation by Finite Element Analysis using the Exact Stiffness Matrix To cite this article: Jeong Soo

More information