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French Door Open/Close Durability Evaluation by Multibody Dynamics Method

机译:法式门打开/关闭多体动力学方法的耐久性评估

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A method including Multi-Body Dynamics (MBD) and fatigue assessment process with modal approach was developed to predict Light Commercial Van (LCV) Rear French Doors open/close durability performance during early design stage to improve test detect ability. The nonlinear properties of joints, such as those on bolted housings or spot welds sheets and hem flange areas, can substantially influence the local and global results of a dynamic simulation. The Modal approach considers joint contact, by way of Joint Interface Modes (JIMs) by using Contact Subroutine (MAMBA) to co-simulate with MBD software to improve result quality. One of the main challenges is measuring the dynamic stiffness for the weather strip. A novel test method was used to measure the weather strip dynamic stiffness by conducting an "in-situ" test. For CAE simulation results, positive feedback was received from design and test engineers.
机译:开发了一种包括多体动力学(MBD)和具有模态方法的疲劳评估过程的方法,以预测光商用VAN(LCV)后方的法式门打开/关闭耐久性性能,以提高测试检测能力。关节的非线性性质,例如螺栓壳体或点焊接板和下摆法兰区域的关节,可以基本上影响动态模拟的局部和全局结果。模态方法通过使用联系子程序(MAMBA)通过联合接口模式(JIMS)进行关节接触,以通过MBD软件共模,以提高结果质量。主要挑战之一是测量气象条的动态刚度。通过进行“原位”测试,使用一种新型测试方法来测量天气条动态刚度。对于CAE仿真结果,从设计和测试工程师收到了正反馈。

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