Multi-Body Simulation of Earthmoving Equipment using MotionView / MotionSolve

Size: px
Start display at page:

Download "Multi-Body Simulation of Earthmoving Equipment using MotionView / MotionSolve"

Transcription

1 Multi-Body Simulation of Earthmoving Equipment using MotionView / MotionSolve Amit Srivastava Manager Larsen & Toubro IES Knowledge City, NH8 Vadodara , India Gopikrishnan. M Assistant Manager Larsen & Toubro IES Knowledge City, NH8 Vadodara , India Abbreviations : MBD: Multi Body Dynamics Keywords : Multibody Simulation, MBD, Excaavtor, MotionView, MotionSolve Abstract Excavators are mobile machines that are moved by means of either crawler track or rubber-tired undercarriage. Excavator digs, elevates, swings and dumps material by the action of its mechanism, which consists of boom, arm, bucket and hydraulic cylinders. The design of various components of an excavator is complex due to the fact that the reaction forces, displacements and stresses vary with time throughout the full cycle of operation. Conventional methods of design in this case results in overdesigned models since the designer is forced to use a higher factor of safety due to lack of availability of data for full cycle of operation. However, Multi-Body Simulation in MotionView/MotionSolve facilitates system level kinematic and dynamic analysis of the whole excavator, making it possible to study the reaction forces and stress variation in every component of the system throughout the cycle of operation. It helps in predicting the maximum stress at each location during the cycle and thus offers a way to optimize the design. The scope of this paper is to simulate a full cycle of operation of a 30 ton excavator using Multi Body simulation capabilities of Altair MotionView/MotionSolve and compare the results with available test data. Pressures of hydraulic cylinders, Strokes of hydraulic cylinders, Bucket load and excavated mass of soil are applied as input. The full cycle of operation consists of three major phases, Digging, Swing and Dumping. By defining the component under study as a flexible body, it is possible to retrieve stress values at gauge locations used in actual testing, which can be used to calculate fatigue life of welds which is of utmost interest to the designer. Furthermore, it is possible to generate load cases for detailed static analysis from the reaction force output. The stress results at gauge locations are compared with both actual testing and static FEA by other commercial software. It is also worth noting that in the current simulation, many assumptions in similar previous simulations are updated with actual values from field tests, like bucket tip force. Introduction An excavator or earth moving machinery in general, is a very good example of a mechanical system which can be considered a multi body system. A multi body system consists of rigid bodies and ideal joints, which facilitates relative movement between individual components. The primary concern for designers in a multi body system is the reaction forces at these joints, which eventually leads to the design of individual components. Traditionally, analytical calculations are used to find out the reaction forces and other parameters related to a mechanical system. But this approach takes time and there is a limitation of the complexity of the mechanism under study. This is where computer simulation codes specifically designed for multi body dynamics come to the fore. 1

2 The advantage of computer simulations performed MBD simulation tools is that they allow one to predict the kinematic and dynamic behavior of all types of multi body systems in great detail during all the design stages from the first design concepts to the final prototypes. The analyst is interested in visualizing a whole set of successive responses of the multi body system, with a simulation of its behavior and operation over all the workspaces and over a certain period of time necessary to obtain a real-time response. MotionSolve is system level, multi-body solver that is based on the principles of mechanics. There are various programs available to simulate the kinematics of various real time applications. But the modeling and simulation tools in MotionSolve enable to create realistic, physics-based simulations of complex mechanical systems. The interesting part of MotionSolve is to help the designer to visualize the response of system for the complete operating cycle in all directions. MotionView is a graphical pre-processor to create complex models that can be solved using MotionSolve. Robust integration with popular Altair products such as HyperMesh is an added bonus. This paper focuses on the problem definition, solution and result correlation of a Hydraulic Excavator. The methodology used to approach the problem is explained in detail, and in the subsequent section, result correlation with experimental data is presented. Finally, the conclusions as derived and future scope of work are mentioned. Problem Definition The working cycle of an excavator consists of digging, swinging, dumping and swinging back to the initial position. The objective is to simulate the entire cycle of operation. A 30 ton hydraulic excavator is used for this particular study. Final output desired is the reaction forces at all joints and to evaluate the stresses at all gauge locations. Input available 1. 3D Geometry or mesh data of every link to be modeled in the assembly. 2. Mesh data of parts to be analyzed for stress (flexible body). 3. Pressure on cylinder side and piston side of all cylinders during cycle of operation. 4. Stroke of all cylinders during cycle of operation. 5. Swing motor rotational speed during cycle of operation. Output required 1. Reaction forces at each joint across the whole timeframe of analysis. 2. Load case generation for detailed FE Analysis. 3. Animation of action and reaction forces at all times. 4. Displacement and Stress plots of flexible link(s) of the assembly during the complete cycle. 5. Severe position based on stress levels at specified strain gauge locations. 6. Trace path of bucket tooth tip. 2

3 Methodology An excavator consists of many links and joints (Fig.1). The analyst has to segregate the mechanism into different links and decide what kind of joints these links are connected with. The procedure to set up the problem is explained as follows. All the links of the mechanism are imported and assembled with appropriate joints in MotionView11.0. The lower frame is grounded. Both geometry and mesh files can be imported for rigid body simulation, but in case of flexible bodies, mesh files are required. Input data that are available, are applied in the next step. This mainly consists of strokes of cylinders and rotation of swing motor with respect to time for the whole cycle of operation. Cylinder pressures are converted into forces and applied at respective bodies. Flexible bodies are imported by using the Flextools>flexprep environment in MotionView. Here, various parameters such as synthesis type, Interface node list are selected. Craig-Brampton method was used for this particular simulation. Then, the outputs that we require from the simulation are specified. Quasi static analysis is used for simulation taking into consideration the fact that this is not a problem involving high velocity or acceleration, which might call for transient dynamic approach. The next step is to solve the model in MotionSolve11.0. Output frequency is chosen as 10Hz. During the solution, solver calculated the DOF of mechanism and performed number of iterations to calculate equilibrium conditions at all time steps. The next section contains discussions on Results obtained. Fig.1 Various parts of an excavator Results & Discussions The output of the solver is post-processed using HyperView11.0. Reaction forces are generated at each joint due to application of cylinder displacements and pressures. Based on stress levels, severe position of both Arm and boom is found out as shown in Fig.2 and Fig.3 respectively. The reaction forces are plotted for magnitude and direction as shown in Fig.4 for this worst position of boom. These reaction forces can be used for further detailed FE analysis of boom. These reactions 3

4 are validated by plotting summation of forces acting on boom at all time steps, which suggested that the Boom is in equilibrium throughout the cycle. Another form of output provided by HyperView is the trace path of a point during the entire simulation. This helps in validating the mechanism and also helps in ascertaining the working space of the machine. Fig.5 shows the trace path generated at the bucket tip. Reaction forces and were also compared with Static FEA using another commercial FEA software and analytical calculations. The comparison of reaction forces at various joints are given in table1. Fig.2 Worst case position of Arm 4

5 Fig.3. Worst case position of Boom. Fig.4. Reaction forces visualized in HyperView 5

6 Fig.5. Trace path of Bucket Tip for entire cycle Joint Analytical (KN) FEA (Static) (KN) MBD (KN) C B F H J Table 1. Reaction forces comparison. Fig.6. Joints of an excavator 6

7 Stresses at gauge locations in Arm and Boom were extracted using Tensor plots in HyperView and compared with static FEA results from another commercial software, and field test values. Table 2 and table 3 give a sample result comparison, taken at a gauge location on Boom (gauge B1). Time (s) Field Test (MPa) MBD Result (MPa) Difference (%) Field Test (MPa) Table 2. Stress results comparison Field and MBD MBD (MPa) Static FEA (MPa) Difference (MBD- Field) (%) Difference (Static FEA- Field) (%) Table3. Stress results comparison Static FEA, field and MBD Stress variation at gauge locations in Arm and Boom throughout the cycle of operation was also studied. This was compared to Stress variation observed during actual Field testing. Fig.7 and Fig.8 shows variation of stress at gauge location A1 on Arm, in MBD and Actual field test respectively. Fig.7. Stress variation at Gauge location A1 MBD output 7

8 Fig.8. Stress variation at Gauge location A1 Field test output Benefits Summary Multi Body Simluation from HyperWorks helps the designer in many ways 1. Kinematic validation of mechanism in initial design phase. Animations, trace paths and other tools can be used to effectively validate design. 2. Iterations can be done very fast to reach the final kinematic design before proceeding to individual component design. 3. The output from multi body simulation (Reaction forces) can be used in detailed design of individual components. 4. Stress results of flexible bodies help in design iterations of individual components of the mechanism. 5. It is easy to identify the high stress locations on individual components during the entire cycle. 6. Weld fatigue life calculation for the entire cycle of operation can be done using stress output. Conclusions 1. Multi body Simulation using MotionSolve / MotionView is a very effective tool for kinematic design. The designer can carry out iterations on the mechanism to achieve desired results. 2. Prototype costs are considerably reduced by using Multi body simulation 3. The stress results on flexible bodies are satisfactorily matching the actual test results. These can be used as input for design changes to individual components of the mechanism. 4. The stress variation with actual tests and static FEA is about 20%, which may not be adequate for some applications, where higher accuracy is desired. 8

9 Future Plans Future scope is to consider more real world factors in the analysis and extending the application of flexible bodies since stress output is available across the timeframe of the entire cycle, unlike static FEA. 1. Currently the lower frame is fixed, while in actual scenario, it can move slightly. 2. Comparing transient dynamic analysis results with quasi-static analysis and hence conclude whether is cost effective considering the accuracy changes observed. 3. The bucket tooth experiences forces during soil excavation. Coupled Eulerian Lagrangian capabilities of Radioss can be used to find out the variation of Forces experienced by the bucket tip, and this can be used as input for Multibody simulation. This more closely resemble actual conditions. [1] HyperWorks11.0 User s Guide REFERENCES [2] Joseph Shigley, Gordon Pennock, John Uicker, Theory of Machines & Mechanisms Third Edition [3] Frankel Joe, Backhoe Kinematics & Dynamics, Georgia Institute of Technology, 20 August

Kinematic and Dynamic Analysis of Stephenson Six Bar Mechanism Using HyperWorks

Kinematic and Dynamic Analysis of Stephenson Six Bar Mechanism Using HyperWorks Kinematic and Dynamic Analysis of Stephenson Six Bar Mechanism Using HyperWorks Kailash Chaudhary Phd Scholar Malaviya National Institute of Technology,Jaipur JLN Marg, Jaipur - 302 017, India Dr. Himanshu

More information

Virtual Testing Methodology for TPL Lifting Capacity of Agricultural Tractor TPL

Virtual Testing Methodology for TPL Lifting Capacity of Agricultural Tractor TPL Virtual Testing Methodology for TPL Lifting Capacity of Agricultural Tractor TPL Dheeraj Pandey AM CAE International Tractors Limited Jalandhar Road, Hoshiarpur 146001 - India dheerajpandey@sonalika.com

More information

Static, Modal and Kinematic Analysis of Hydraulic Excavator

Static, Modal and Kinematic Analysis of Hydraulic Excavator Static, Modal and Kinematic Analysis of Hydraulic Excavator Anil Jadhav Abhijit Kulkarni Tamilnadu,India-632014 Vinayak Kulkarni Prof. Ravi. K Assistant professor Mechanical department Abstract Hydraulic

More information

International Journal of Scientific & Engineering Research, Volume 8, Issue 4, April-2017 ISSN

International Journal of Scientific & Engineering Research, Volume 8, Issue 4, April-2017 ISSN ISSN 2229-5518 1058 Finite Element Analysis of an Excavator Arm CAE Tool Asit Kumar Choudhary, Gian Bhushan Abstract: Background: Excavators are earth moving equipment and the main component for completing

More information

Using RecurDyn. Contents

Using RecurDyn. Contents Using RecurDyn Contents 1.0 Multibody Dynamics Overview... 2 2.0 Multibody Dynamics Applications... 3 3.0 What is RecurDyn and how is it different?... 4 4.0 Types of RecurDyn Analysis... 5 5.0 MBD Simulation

More information

8 Tutorial: The Slider Crank Mechanism

8 Tutorial: The Slider Crank Mechanism 8 Tutorial: The Slider Crank Mechanism Multi-Body Simulation With MotionView / MotionSolve 12.0 written by Dipl.-Ing. (FH) Markus Kriesch and Dipl.-Ing. (FH) André Wehr, Germany Note: Some MBD fundamentals

More information

Using Computer Aided Engineering Processes in Packaging Design Development

Using Computer Aided Engineering Processes in Packaging Design Development Using Computer Aided Engineering Processes in Packaging Design Development Jose Martinez, Miguel Angel Garcia Jose Luis Moreno Vicencio & Hugo Miranda Mabe, Mexico Mahesh Patel, Andrew Burkhalter, Eric

More information

DESIGN AND OPTIMIZATION OF EXCAVATOR

DESIGN AND OPTIMIZATION OF EXCAVATOR DESIGN AND OPTIMIZATION OF EXCAVATOR G.Ramesh 1, V.N.Krishnareddy 2, T. Ratnareddy 3 1,2 P.G. Student, Mechanical Engineering Dept., Chaitanya Bharathi Institute of Technology, Hyderabad- 75,AndraPradesh,India.

More information

Development of Backhoe Machine By 3-D Modelling using CAD Software and Verify the Structural Design By using Finite Element Method

Development of Backhoe Machine By 3-D Modelling using CAD Software and Verify the Structural Design By using Finite Element Method IJIRST International Journal for Innovative Research in Science & Technology Volume 2 Issue 1 June 2015 ISSN (online): 2349-6010 Development of Backhoe Machine By 3-D Modelling using CAD Software and Verify

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

International Engineering Research Journal

International Engineering Research Journal International Engineering Research Journal Finite Element Analysis and Optimization of Boom of Backhoe Loader Santosh U. Bhoomkar 1, D. H. Burande 2 1 PG Student, Mechanical Engineering, Sinhgad College

More information

Modeling and Event Based Simulation of an Earthmoving Digger Using SolidWorks Premium 2014.

Modeling and Event Based Simulation of an Earthmoving Digger Using SolidWorks Premium 2014. Modeling and Event Based Simulation of an Earthmoving Digger Using SolidWorks Premium 2014. B.C. Chukwudi, Ph.D. 1* ; H.E. Opara, Ph.D. 2 ; and M.B. Ogunedo, B.Eng, 1 1 Department of Mechanical Engineering,

More information

Multi-Disciplinary Design of an Aircraft Landing Gear with Altair HyperWorks

Multi-Disciplinary Design of an Aircraft Landing Gear with Altair HyperWorks Multi-Disciplinary Design of an Aircraft Landing Gear with Altair HyperWorks Altair Engineering, October 2008 Introduction Task: To design an aircraft landing gear that meets design requirements of several

More information

Simulating the Suspension Response of a High Performance Sports Car

Simulating the Suspension Response of a High Performance Sports Car Simulating the Suspension Response of a High Performance Sports Car Paul Burnham McLaren Automotive McLaren Technology Centre, Chertsey Road, Woking, Surrey, GU21 4YH paul.burnham@mclaren.com Abstract

More information

Crew Module Water Landing Simulation Methods Development for NASA

Crew Module Water Landing Simulation Methods Development for NASA Crew Module Water Landing Simulation Methods Development for NASA Mahesh Patel Engineering Manager, Altair ProductDesign Inc 38 Executive Park, Suite 200, Irvine, CA, 92614 4709, USA mahesh@altairpd.com

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

Rigid Dynamic Analysis in Workbench

Rigid Dynamic Analysis in Workbench Rigid Dynamic Analysis in Workbench 1-1 Introduction Rigid Dynamic Analysis: Calculates dynamic response of an assembly of rigid bodies. Can be used to study the kinematics of an assembly. Bodies are linked

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

Finite Element Analysis and Optimization of I.C. Engine Piston Using RADIOSS and OptiStruct

Finite Element Analysis and Optimization of I.C. Engine Piston Using RADIOSS and OptiStruct Finite Element Analysis and Optimization of I.C. Engine Piston Using RADIOSS and OptiStruct Vivek Zolekar Student M. Tech. Mechanical (CAD/CAM) SGGSIE&T Nanded - 431 606 Dr. L.N. Wankhade Professor Department

More information

Chapter 5 Modeling and Simulation of Mechanism

Chapter 5 Modeling and Simulation of Mechanism Chapter 5 Modeling and Simulation of Mechanism In the present study, KED analysis of four bar planar mechanism using MATLAB program and ANSYS software has been carried out. The analysis has also been carried

More information

Week 12 - Lecture Mechanical Event Simulation. ME Introduction to CAD/CAE Tools

Week 12 - Lecture Mechanical Event Simulation. ME Introduction to CAD/CAE Tools Week 12 - Lecture Mechanical Event Simulation Lecture Topics Mechanical Event Simulation Overview Additional Element Types Joint Component Description General Constraint Refresh Mesh Control Force Estimation

More information

Simulation-Based Design of Robotic Systems

Simulation-Based Design of Robotic Systems Simulation-Based Design of Robotic Systems Shadi Mohammad Munshi* & Erik Van Voorthuysen School of Mechanical and Manufacturing Engineering, The University of New South Wales, Sydney, NSW 2052 shadimunshi@hotmail.com,

More information

Crashbox Tutorial. In this tutorial the focus is on modeling a Formula Student Racecar Crashbox with HyperCrash 12.0

Crashbox Tutorial. In this tutorial the focus is on modeling a Formula Student Racecar Crashbox with HyperCrash 12.0 Crashbox Tutorial In this tutorial the focus is on modeling a Formula Student Racecar Crashbox with HyperCrash 12.0 (Written by Moritz Guenther, student at Altair Engineering GmbH) 1 HyperMesh* 1. Start

More information

Lesson 1: Introduction to Pro/MECHANICA Motion

Lesson 1: Introduction to Pro/MECHANICA Motion Lesson 1: Introduction to Pro/MECHANICA Motion 1.1 Overview of the Lesson The purpose of this lesson is to provide you with a brief overview of Pro/MECHANICA Motion, also called Motion in this book. Motion

More information

CHAPTER-10 DYNAMIC SIMULATION USING LS-DYNA

CHAPTER-10 DYNAMIC SIMULATION USING LS-DYNA DYNAMIC SIMULATION USING LS-DYNA CHAPTER-10 10.1 Introduction In the past few decades, the Finite Element Method (FEM) has been developed into a key indispensable technology in the modeling and simulation

More information

Design Verification Procedure (DVP) Load Case Analysis of Car Bonnet

Design Verification Procedure (DVP) Load Case Analysis of Car Bonnet Design Verification Procedure (DVP) Load Case Analysis of Car Bonnet Mahesha J 1, Prashanth A S 2 M.Tech Student, Machine Design, Dr. A.I.T, Bangalore, India 1 Asst. Professor, Department of Mechanical

More information

Application Of Multibody Dynamic Method (Mbd) And Mechanical Principle To The Cylinder Torque Calculation

Application Of Multibody Dynamic Method (Mbd) And Mechanical Principle To The Cylinder Torque Calculation Application Of Multibody Dynamic Method (Mbd) And Mechanical Principle To The Cylinder Torque Calculation Gwo-Chung Tsai Department Of Mechanical And Electro-Mechanical Engineering, National Ilan University

More information

UNDERSTANDING MOTION SIMULATION

UNDERSTANDING MOTION SIMULATION W H I T E P A P E R UNDERSTANDING MOTION SIMULATION Overview What is motion simulation? What problems can it solve? How can it benefit the product design process? This paper addresses some of these issues

More information

Understanding Motion Simulation

Understanding Motion Simulation white paper Understanding Motion Simulation inspiration SUMMARY What is motion simulation? What problems can it solve? How can it benefit the product design process? This paper addresses some of these

More information

PTC Newsletter January 14th, 2002

PTC  Newsletter January 14th, 2002 PTC Email Newsletter January 14th, 2002 PTC Product Focus: Pro/MECHANICA (Structure) Tip of the Week: Creating and using Rigid Connections Upcoming Events and Training Class Schedules PTC Product Focus:

More information

by Mahender Reddy Concept To Reality / Summer 2006

by Mahender Reddy Concept To Reality / Summer 2006 by Mahender Reddy Demand for higher extrusion rates, increased product quality and lower energy consumption have prompted plants to use various methods to determine optimum process conditions and die designs.

More information

System Level Cooling, Fatigue, and Durability. Co-Simulation. Stuart A. Walker, Ph.D.

System Level Cooling, Fatigue, and Durability. Co-Simulation. Stuart A. Walker, Ph.D. System Level Cooling, Fatigue, and Durability Analysis via Multiphysics Co-Simulation Stuart A. Walker, Ph.D. swalker@altair.com Outline Motivation Presentation of process Presentation of tools Presentation

More information

Modeling and Analysis of Honeycomb Impact Attenuator

Modeling and Analysis of Honeycomb Impact Attenuator Modeling and Analysis of Honeycomb Impact Attenuator Preprocessor : Altair HyperMesh 14.0 Solver : Altair RADIOSS Postprocessor : Altair HyperView 1 An impact attenuator is a structure used to decelerate

More information

Example 24 Spring-back

Example 24 Spring-back Example 24 Spring-back Summary The spring-back simulation of sheet metal bent into a hat-shape is studied. The problem is one of the famous tests from the Numisheet 93. As spring-back is generally a quasi-static

More information

Design Optimization of a Weather Radar Antenna using Finite Element Analysis (FEA) and Computational Fluid Dynamics (CFD)

Design Optimization of a Weather Radar Antenna using Finite Element Analysis (FEA) and Computational Fluid Dynamics (CFD) Design Optimization of a Weather Radar Antenna using Finite Element Analysis (FEA) and Computational Fluid Dynamics (CFD) Fernando Prevedello Regis Ataídes Nícolas Spogis Wagner Ortega Guedes Fabiano Armellini

More information

SIMULATION CAPABILITIES IN CREO

SIMULATION CAPABILITIES IN CREO SIMULATION CAPABILITIES IN CREO Enhance Your Product Design with Simulation & Using digital prototypes to understand how your designs perform in real-world conditions is vital to your product development

More information

CONTACT STATE AND STRESS ANALYSIS IN A KEY JOINT BY FEM

CONTACT STATE AND STRESS ANALYSIS IN A KEY JOINT BY FEM PERJODICA POLYTECHNICA SER. ME CH. ENG. VOL. 36, NO. 1, PP. -15-60 (1992) CONTACT STATE AND STRESS ANALYSIS IN A KEY JOINT BY FEM K. VARADI and D. M. VERGHESE Institute of Machine Design Technical University,

More information

FE-107 Experimental Validation

FE-107 Experimental Validation FE-107 Experimental Validation Has your finite element analysis (FEA) software been validated against real-world pressure vessel problems? FE-107 and other PRG software are continuously validated against

More information

Simulation of Overhead Crane Wire Ropes Utilizing LS-DYNA

Simulation of Overhead Crane Wire Ropes Utilizing LS-DYNA Simulation of Overhead Crane Wire Ropes Utilizing LS-DYNA Andrew Smyth, P.E. LPI, Inc., New York, NY, USA Abstract Overhead crane wire ropes utilized within manufacturing plants are subject to extensive

More information

Design and development of optimized sprocket for Track hoe

Design and development of optimized sprocket for Track hoe Design and development of optimized sprocket for Track hoe Mr. Laxmikant P.Sutar 1, Prof. Prashant.G. Karajagi 2, Prof. Rahul Kulkarni 3 1 PG Student, Siddhant College of Engineering, Pune, India 2 Assistant

More information

TOPOLOGY OPTIMIZATION OF WING RIBS IN CESSNA CITATION

TOPOLOGY OPTIMIZATION OF WING RIBS IN CESSNA CITATION TOPOLOGY OPTIMIZATION OF WING RIBS IN CESSNA CITATION [1],Sathiyavani S [2], Arun K K [3] 1,2 student, 3 Assistant professor Kumaraguru College of technology, Coimbatore Abstract Structural design optimization

More information

A MECHATRONIC APPROACH OF THE WINDSHIELD WIPER MECHANISMS

A MECHATRONIC APPROACH OF THE WINDSHIELD WIPER MECHANISMS A MECHATRONIC APPROACH OF THE WINDSHIELD WIPER MECHANISMS Alexandru Cătălin Transilvania University of Braşov calex@unitbv.ro Keywords: windshield wiper mechanism, dynamic simulation, control system, virtual

More information

CONSIDERATIONS REGARDING LINKAGES USED FOR SHAFTS COUPLING

CONSIDERATIONS REGARDING LINKAGES USED FOR SHAFTS COUPLING Mechanical Testing and Diagnosis ISSN 2247 9635, 2012 (II), Volume 4, 19-27 CONSIDERATIONS REGARDING LINKAGES USED FOR SHAFTS COUPLING Stelian ALACI, Florina Carmen CIORNEI, Constantin FILOTE, Luminiţa

More information

Example 12 - Jumping Bicycle

Example 12 - Jumping Bicycle Example 12 - Jumping Bicycle Summary The purpose of this example is to illustrate how to use the RADIOSS description when resolving a demonstration example. The particularities of the example can be summarized

More information

Fatigue of Welds in fe-safe. fe-safe 2017

Fatigue of Welds in fe-safe. fe-safe 2017 Fatigue of Welds in fe-safe fe-safe 2017 About this Course Course objectives Upon completion of this course you will be able to: Set up and run various weld fatigue analyses using fe-safe including Understand

More information

Analysis of ANSI W W 6x9-118,

Analysis of ANSI W W 6x9-118, Page 1 of 8 Analysis of ANSI W W 6x9-118,110236220472 Author: Analysis Created: Analysis Last Modified: Report Created: Introduction Administrator, 08:29:09, 08:29:09 09:26:02 Database: Z:\ENGENHARIA\ESTUDOS

More information

Analysis of Fluid-Structure Interaction Effects of Liquid-Filled Container under Drop Testing

Analysis of Fluid-Structure Interaction Effects of Liquid-Filled Container under Drop Testing Kasetsart J. (Nat. Sci.) 42 : 165-176 (2008) Analysis of Fluid-Structure Interaction Effects of Liquid-Filled Container under Drop Testing Chakrit Suvanjumrat*, Tumrong Puttapitukporn and Satjarthip Thusneyapan

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

Recent Approaches of CAD / CAE Product Development. Tools, Innovations, Collaborative Engineering.

Recent Approaches of CAD / CAE Product Development. Tools, Innovations, Collaborative Engineering. Recent Approaches of CAD / CAE Product Development. Tools, Innovations, Collaborative Engineering. Author: Dr.-Ing. Peter Binde Abstract: In this paper, the latest approaches in the field of CAD-CAE product

More information

Theory of Machines Course # 1

Theory of Machines Course # 1 Theory of Machines Course # 1 Ayman Nada Assistant Professor Jazan University, KSA. arobust@tedata.net.eg March 29, 2010 ii Sucess is not coming in a day 1 2 Chapter 1 INTRODUCTION 1.1 Introduction Mechanisms

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

RD-1070: Analysis of an Axi-symmetric Structure using RADIOSS

RD-1070: Analysis of an Axi-symmetric Structure using RADIOSS RADIOSS, MotionSolve, and OptiStruct RD-1070: Analysis of an Axi-symmetric Structure using RADIOSS In this tutorial, you will learn the method of modeling an axi- symmetry problem in RADIOSS. The figure

More information

Design optimization of C Frame of Hydraulic Press Machine

Design optimization of C Frame of Hydraulic Press Machine IOSR Journal of Computer Engineering (IOSR-JCE) e-issn: 2278-0661,p-ISSN: 2278-8727 PP 79-89 www.iosrjournals.org Design optimization of C Frame of Hydraulic Press Machine Ameet B. Hatapakki 1, U D. Gulhane

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

CHAPTER 4 CFD AND FEA ANALYSIS OF DEEP DRAWING PROCESS

CHAPTER 4 CFD AND FEA ANALYSIS OF DEEP DRAWING PROCESS 54 CHAPTER 4 CFD AND FEA ANALYSIS OF DEEP DRAWING PROCESS 4.1 INTRODUCTION In Fluid assisted deep drawing process the punch moves in the fluid chamber, the pressure is generated in the fluid. This fluid

More information

Commercial Vehicle Powertrain Mount Selection Based on Static and Modal Analysis Using Altair Motion-Solve

Commercial Vehicle Powertrain Mount Selection Based on Static and Modal Analysis Using Altair Motion-Solve Commercial Vehicle Powertrain Mount Selection Based on Static and Modal Analysis Using Altair Motion-Solve E.Loganathan Divisional manager Ashok Leyland Limited Vallur Chennai-600103 India Loganathan.e@ashokleyland.com

More information

Principal Roll Structure Design Using Non-Linear Implicit Optimisation in Radioss

Principal Roll Structure Design Using Non-Linear Implicit Optimisation in Radioss Principal Roll Structure Design Using Non-Linear Implicit Optimisation in Radioss David Mylett, Dr. Simon Gardner Force India Formula One Team Ltd. Dadford Road, Silverstone, Northamptonshire, NN12 8TJ,

More information

Modeling, Simulation and Optimization Analysis on Steering Knuckle Component For Purpose of Weight Reduction

Modeling, Simulation and Optimization Analysis on Steering Knuckle Component For Purpose of Weight Reduction Modeling, Simulation and Optimization Analysis on Steering Knuckle Component For Purpose of Weight Reduction W. M. Wan Muhamad 1, E. Sujatmika 1, Hisham Hamid 1 and Faris Tarlochan 2 1 UniKL Malaysia France

More information

STATIC FINITE ELEMENT ANALYSIS AND VALIDATION OF N1 TYPE VEHICLE CHASSIS MEMBERS FOR BENDING PERFORMANCE

STATIC FINITE ELEMENT ANALYSIS AND VALIDATION OF N1 TYPE VEHICLE CHASSIS MEMBERS FOR BENDING PERFORMANCE STATIC FINITE ELEMENT ANALYSIS AND VALIDATION OF N1 TYPE VEHICLE CHASSIS MEMBERS FOR BENDING PERFORMANCE 1 CHINMAY POTDAR, 2 AMEY PISE, 3 AISHWARYA DUBEY, 4 SUSHRUT JADHAV 1, 3 TATA Technologies Limited,

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

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

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

AUTOMATED EXCAVATION PROCESS ANALYSIS FOR GIVEN TRAJECTORY AND SOIL PARAMETERS

AUTOMATED EXCAVATION PROCESS ANALYSIS FOR GIVEN TRAJECTORY AND SOIL PARAMETERS AUTOMATED EXCAVATION PROCESS ANALYSIS FOR GIVEN TRAJECTORY AND SOIL PARAMETERS Jarosław Kuśmierczyk Institute of Construction Machinery Engineering 84 Narbutta 02-524 Warsaw, Poland jkusmierczyk@simr.pw.edu.pl

More information

Simulation of AJWSP10033_FOLDED _ST_FR

Simulation of AJWSP10033_FOLDED _ST_FR Phone: 01922 453038 www.hyperon-simulation-and-cad-services.co.uk Simulation of AJWSP10033_FOLDED _ST_FR Date: 06 May 2017 Designer: Study name: AJWSP10033_FOLDED_STATIC Analysis type: Static Description

More information

SIMULATION CAPABILITIES IN CREO. Enhance Your Product Design with Simulation & Analysis

SIMULATION CAPABILITIES IN CREO. Enhance Your Product Design with Simulation & Analysis SIMULATION CAPABILITIES IN CREO Enhance Your Product Design with Simulation & Using digital prototypes to understand how your designs perform in real-world conditions is vital to your product development

More information

Offshore Platform Fluid Structure Interaction (FSI) Simulation

Offshore Platform Fluid Structure Interaction (FSI) Simulation Offshore Platform Fluid Structure Interaction (FSI) Simulation Ali Marzaban, CD-adapco Murthy Lakshmiraju, CD-adapco Nigel Richardson, CD-adapco Mike Henneke, CD-adapco Guangyu Wu, Chevron Pedro M. Vargas,

More information

2: Static analysis of a plate

2: Static analysis of a plate 2: Static analysis of a plate Topics covered Project description Using SolidWorks Simulation interface Linear static analysis with solid elements Finding reaction forces Controlling discretization errors

More information

Structural re-design of engine components

Structural re-design of engine components Structural re-design of engine components Product design cycle Design Development Testing Structural optimization Product knowledge Design freedom 2/18 Structural re-design of engine components Product

More information

Introduction to Engineering Analysis

Introduction to Engineering Analysis Chapter 1 Introduction to Engineering Analysis This chapter introduces you to the Stress Analysis and Dynamic Simulation environments. You learn how digital prototyping can be used to simulate your designs

More information

Exercise 9a - Analysis Setup and Loading

Exercise 9a - Analysis Setup and Loading Exercise 9a - Analysis Setup and Loading This exercise will focus on setting up a model for analysis. At the end of this exercise, you will run an analysis in OptiStruct. While this exercise is focused

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

Design Analysis Of Industrial Gear Box Casing.

Design Analysis Of Industrial Gear Box Casing. Design Analysis Of Industrial Gear Box Casing. Balasaheb Sahebrao Vikhe 1 1 Assistant Professor, Dept. of Mechanical Engineering, SVIT College Nasik, Maharashtra, India ---------------------------------------------------------------------***---------------------------------------------------------------------

More information

SimWise. 3D Dynamic Motion, and Stress Analysis. integrated with Alibre Design

SimWise. 3D Dynamic Motion, and Stress Analysis. integrated with Alibre Design SimWise 3D Dynamic Motion, and Stress Analysis integrated with Alibre Design SimWise 4D for Alibre Integrated Motion Simulation and Stress Analysis SimWise 4D is a software tool that allows the functional

More information

MULTIBODY DYNAMIC ANALYSIS AND SIMULATION OF ENGINE MODEL

MULTIBODY DYNAMIC ANALYSIS AND SIMULATION OF ENGINE MODEL MULTIBODY DYNAMIC ANALYSIS AND SIMULATION OF ENGINE MODEL Dr. S.C. Jaiswal Department of Mechanical Engineering Madan Mohan Malviya Engineering College, Gorakhpur, 273010, India E-mail: scjme@mmmec.net

More information

Revision of the SolidWorks Variable Pressure Simulation Tutorial J.E. Akin, Rice University, Mechanical Engineering. Introduction

Revision of the SolidWorks Variable Pressure Simulation Tutorial J.E. Akin, Rice University, Mechanical Engineering. Introduction Revision of the SolidWorks Variable Pressure Simulation Tutorial J.E. Akin, Rice University, Mechanical Engineering Introduction A SolidWorks simulation tutorial is just intended to illustrate where to

More information

ETMBA / F.Blume/ EHTC 2011 / /14/11/2011/ Eurocopter rights reserved

ETMBA / F.Blume/ EHTC 2011 / /14/11/2011/ Eurocopter rights reserved Multibody simulation of the power boosted control section of a medium sized helicopter EHTC, November 2011, Bonn Felix Blume, Eurocopter Deutschland GmbH Outline Introduction and basis information Motivation

More information

Tutorial 1: Welded Frame - Problem Description

Tutorial 1: Welded Frame - Problem Description Tutorial 1: Welded Frame - Problem Description Introduction In this first tutorial, we will analyse a simple frame: firstly as a welded frame, and secondly as a pin jointed truss. In each case, we will

More information

COSMOS. Understanding Motion Simulation ---- SolidWorks Corporation. Introduction 1. Motion simulation for mechanism analysis and synthesis 1-6

COSMOS. Understanding Motion Simulation ---- SolidWorks Corporation. Introduction 1. Motion simulation for mechanism analysis and synthesis 1-6 ---- WHITE PAPER Understanding Motion Simulation CONTENTS Introduction 1 Motion simulation for mechanism analysis and synthesis 1-6 Using motion simulation along with FEA 6-9 Motion simulation and test

More information

DYNAMIC MODELING OF WORKING SECTIONS OF GRASSLAND OVERSOWING MACHINE MSPD-2.5

DYNAMIC MODELING OF WORKING SECTIONS OF GRASSLAND OVERSOWING MACHINE MSPD-2.5 DYNAMIC MODELING OF WORKING SECTIONS OF GRASSLAND OVERSOWING MACHINE MSPD-2.5 Florin Loghin, Simion Popescu, Florean Rus Transilvania University of Brasov, Romania loghinflorin@unitbv.ro, simipop@unitbv.ro,

More information

ANSYS/LS-Dyna. Workbench Using. Steven Hale Senior Engineering Manager CAE Associates, Inc. June 13, CAE Associates

ANSYS/LS-Dyna. Workbench Using. Steven Hale Senior Engineering Manager CAE Associates, Inc. June 13, CAE Associates ANSYS/LS-Dyna Customization in Workbench Using ACT Steven Hale Senior Engineering Manager CAE Associates, Inc. June 13, 2013 2013 CAE Associates CAE Associates CAE Associates is an engineering services

More information

Explicit Dynamic Analysis of Bird Strike Simulations and Design Optimization of Composite Aircraft Structures

Explicit Dynamic Analysis of Bird Strike Simulations and Design Optimization of Composite Aircraft Structures Explicit Dynamic Analysis of Bird Strike Simulations and Design Optimization of Composite Aircraft Structures Manoj Susarla Jr Design Engineer Octants Engineering Innovations Dr no 12-3-25,Ayyevari street,

More information

Role of Kinematic Analysis in tuning the Dynamic Behavior of a Formula Car

Role of Kinematic Analysis in tuning the Dynamic Behavior of a Formula Car gopalax -International Journal of Technology And Engineering System(IJTES): Jan March 2011- Vol.2.No.3. Role of Kinematic Analysis in tuning the Dynamic Behavior of a Formula Car K. J. Prashanth 1, Ashish

More information

2008 International ANSYS Conference

2008 International ANSYS Conference 2008 International ANSYS Conference FEM AND FSI SIMULATIONS OF IMPACT LOADS ON GRP SUBSEA COMPOSITE COVERS Kjetil Rognlien, MSc Technical Consultant EDR AS, Norway 2008 ANSYS, Inc. All rights reserved.

More information

The new HyperMesh - Samcef interface.

The new HyperMesh - Samcef interface. The new HyperMesh - Samcef interface. Deployment and industrial applications at Eurocopter. Ronan PITOIS Dynamic systems dpt. Presentation plan Eurocopter overview Stress computation performed in Eurocopter

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

SimWise 4D. Integrated Motion and Stress Analysis

SimWise 4D. Integrated Motion and Stress Analysis SimWise 4D Integrated Motion and Stress Analysis SimWise 4D Integrated Motion Simulation and Stress Analysis SimWise 4D is a software tool that allows the functional performance of mechanical parts and

More information

Vehicle Load Area Division Wall Integrity during Frontal Crash

Vehicle Load Area Division Wall Integrity during Frontal Crash Vehicle Load Area Division Wall Integrity during Frontal Crash H. Türkmen TOFAS Türk Otomobil Fabrikasi A.S. Abstract : This study addresses design efforts of a vehicle load area division wall and the

More information

midas NFX 2017R1 Release Note

midas NFX 2017R1 Release Note Total Solution for True Analysis-driven Design midas NFX 2017R1 Release Note 1 midas NFX R E L E A S E N O T E 2 0 1 7 R 1 Major Improvements Midas NFX is an integrated finite element analysis program

More information

Numerical Simulation of Aircraft Seat Compliance Test using LS-DYNA Implicit Solver

Numerical Simulation of Aircraft Seat Compliance Test using LS-DYNA Implicit Solver Numerical Simulation of Aircraft Seat Compliance Test using LS-DYNA Implicit Solver Satish Pathy LSTC, Livermore, CA Thomas Borrvall DYNAmore Nordic AB, Linköping, Sweden Abstract With the possibility

More information

Influence of geometric imperfections on tapered roller bearings life and performance

Influence of geometric imperfections on tapered roller bearings life and performance Influence of geometric imperfections on tapered roller bearings life and performance Rodríguez R a, Calvo S a, Nadal I b and Santo Domingo S c a Computational Simulation Centre, Instituto Tecnológico de

More information

Simulation of the Effect of Draw Bead on Drawing Process of Panel Header using Altair Hyperform

Simulation of the Effect of Draw Bead on Drawing Process of Panel Header using Altair Hyperform Simulation of the Effect of Draw Bead on Drawing Process of Panel Header using Altair Hyperform Desai Ashutosh Valmik PG Student AISSMS COE PUNE 411001 desaiashutosh11@gmail.com Prof. P.V. Deshmukh Asst.

More information

Liebherr-Aerospace: Optical Metrology from GOM Accelerates Certification Tests for New Landing Gears

Liebherr-Aerospace: Optical Metrology from GOM Accelerates Certification Tests for New Landing Gears Application Note Liebherr-Aerospace: Optical Metrology from GOM Accelerates Certification Tests for New Landing Gears Location/Country: Lindenberg, Deutschland GOM system: ARAMIS GOM software: ARAMIS Professional

More information

Auto Spot Weld FE Connection Using TCL Script For Process Automation

Auto Spot Weld FE Connection Using TCL Script For Process Automation Auto Spot Weld FE Connection Using TCL Script For Process Automation Vishal Gole Technical lead-cae Vishal.G.Gole Sagar J Patel CAE engineer Sagar.J.Patel Pravinkumar Sonavane Technical lead-cae Pravinkumar.Sonavane

More information

Introduction to the Finite Element Method (3)

Introduction to the Finite Element Method (3) Introduction to the Finite Element Method (3) Petr Kabele Czech Technical University in Prague Faculty of Civil Engineering Czech Republic petr.kabele@fsv.cvut.cz people.fsv.cvut.cz/~pkabele 1 Outline

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

machine design, Vol.9(2017) No.1, ISSN pp

machine design, Vol.9(2017) No.1, ISSN pp machine design, Vol.9(2017) No.1, ISSN 1821-1259 pp. 29-34 Research paper DYNAMIC ANALYSIS AND PARAMETRIC OPTIMISATION OF THE CONNECTING ROD USING AUTODESK INVENTOR Vasile George CIOATĂ 1, * - Imre KISS

More information

FINITE ELEMENT ANALYSIS AND MULTIBODY DYNAMICS OF 6-DOF INDUSTRIAL ROBOT RAHUL ARORA & S. S. DHAMI

FINITE ELEMENT ANALYSIS AND MULTIBODY DYNAMICS OF 6-DOF INDUSTRIAL ROBOT RAHUL ARORA & S. S. DHAMI International Journal of Mechanical and Production Engineering Research and Development (IJMPERD) ISSN (P): 2249-6890; ISSN (E): 2249-8001 Vol. 7, Issue 5, Oct 2017, 1-12 TJPRC Pvt. Ltd. FINITE ELEMENT

More information

SOEM 024: Computer Aided Design. E. Rozos

SOEM 024: Computer Aided Design. E. Rozos SOEM 024: Computer Aided Design E. Rozos Lesson structure Construct 3D objects with revolving WCS UCS Master plotting Realism Geometrical analysis Stress analysis Kinematics dynamic simulation Revolve,

More information

LS-DYNA Model Compare in Visual-Environment

LS-DYNA Model Compare in Visual-Environment 11 th International LS-DYNA Users Conference Automotive (1) LS-DYNA Model Compare in Visual-Environment Shivakumara H. Shetty, Velayudham Ganesan, Milind Parab*, Sreedhar Kandagatla** ESI Group 32605,

More information

Development of Detailed AM50%ile Hybrid III Dummy FE Model

Development of Detailed AM50%ile Hybrid III Dummy FE Model Development of Detailed AM50%ile Hybrid III Dummy FE Model Presented at LS-DYNA Forum, 13 October 2011, Filderstadt (Stuttgart), Germany TOYOTA MOTOR CORPORATION Tatsuya KOMAMURA 1/21 CONTENTS 1. Background

More information