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Dynamic Analysis of Forces Generated on Inner Parts of a Double Offset Constant Velocity Universal Joint (DOJ): Non-Friction Analysis

机译:双偏移恒流通用接头内部产生力的动态分析(DOJ):非摩擦分析

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The Constant Velocity Joint (CVJ) is a very important element in the automotive drive train system. There are various types of CVJs, both "fixed" and "plunging." Each CVJ consists of several parts and these move in 3-dimensions as they rotate and transmit torque. Investigations of the motion and dynamic forces generated on these parts are important in the development of a CVJ. Various experimental methods for measuring the motion and forces of a CVJ were investigated. It is very difficult to measure these parameters directly. Because of advancements in computer technology, Computer Aided Engineering (CAE) offers major advantages to the design and development of the automotive industry. By using CAE, it is possible to correctly investigate the motion and forces generated on CVJ internal parts. This paper describes analytical results of dynamic forces that are generated on inner parts of a type of plunging CVJ called a Double Offset Joint (DOJ) using the ADAMS dynamic modeling software. ADAMS can solve non-linear multi-body dynamic problems. Therefore, an ADAMS model can include the assembly of multiple parts. In this analysis, contacts between inner parts assume the Hertzian contact theory and friction forces are not taken into consideration.
机译:恒定速度关节(CVJ)是汽车传动系系统中的一个非常重要的元素。有各种类型的cvjs,两个“固定”和“陷入困境”。每个CVJ都包括几个部件,并且这些部件在3维上移动,因为它们旋转和传递扭矩。对这些部件产生的运动和动态力的调查在CVJ的开发中是重要的。研究了用于测量CVJ的运动和力的各种实验方法。直接测量这些参数非常困难。由于计算机技术的进步,计算机辅助工程(CAE)为汽车行业的设计和开发提供了重大优势。通过使用CAE,可以正确研究CVJ内部部件上产生的运动和力。本文介绍了使用ADAMS动态建模软件在称为双重偏移接头(DOJ)的漏洞CVJ类型的内部内部产生的动态力的分析结果。亚当斯可以解决非线性多体动态问题。因此,ADAMS模型可以包括多个部件的组装。在该分析中,内部部件之间的触点假设赫斯氏接触理论和摩擦力不考虑。

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