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Flex body analysis on the LCA of a Suspension

This project deals with the compliant analysis of a lower control arm of a suspension and studying the impact of considering a compliant analysis over a non-compliant analysis

  • MBD

duration
Duration :

1 month

projectfees
Project Fees :

INR 30,000

Benefits of this Project

This project deals with the compliant analysis of a lower control arm of a suspension and studying the impact of considering a compliant analysis over a non-compliant analysis

What will you do in this project?

Step 1 - Importing the necessary model files for the suspension system

Step-2: Creating a flex body for the lower control arm using FlexBodyPrep window

Step 3 - Conducting a static ride analysis on the updated suspension model

Step-4 :Post-processing the variation in the compliance, with respect to the vehicle parameters

In this project, you will work on a flex body simulation of a lower control arm

  • Import the necessary model files required for the simulation
  • Create a flex body of the lower control arm using the FlexBodyPrep window
  • Simulate a static ride analysis on the model
  • Study the variation in compliance with changes in the vehicle parameters while post-processing the results

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Showing 1 of 4 projects

Project Highlights

The project is a intermediate level project

You will be using ANSYS Workbench

showcase

Kinematic and Compliance Testing

Every vehicle suspension assembly undergoes rigorous testing in R&D to make sure that they have achieved the mathematical calculations in practical. For this to happen, a vehicle should be completely manufactures, if not atleast the chassis and the suspension assembly should be integrated in order to mount the vehicle on a K&C testrig, so that different test conditions can be executed. To avoid time consumption in  manufacturing, softwares help us do this in  a virtual environment and gives us results more or less similar to the actual experimental results. Kinematic testing is done whilst considering all the components involved are perfectly rigid in nature, this can also be called geometric solutions. But in real-life situation, there is something called compliance comes into play. Compliance testing can also be called force based solution, where all the components involved are considered to be flexible in nature, i.e they are considered to undergo deformation