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Numerical implementation of dynamic contact analysis by a complementarity formulation and application to a valve-cotter system in motorcycle engines

机译:互补公式动态接触分析的数值实现及在摩托车发动机气门系统中的应用

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摘要

A numerical approach of dynamic contact analysis is presented and applied to the simulation of an axisymmetric valve-cotter system in a motorcycle engine. The contact and the Coulomb friction conditions are described exactly by linear complementarity relations, and discretized dynamic equations are derived. A Newton-type method is used to solve the resulting complementarity problems. This implementation has the advantage of not requiring any user-supplied parameter values to satisfy the contact and friction conditions, compared to penalty or other function-smoothing algorithms. Detailed histories of contact forces and contact status obtained show the applicability of this approach to complex frictional contact problems.
机译:提出了一种动态接触分析的数值方法,并将其应用于摩托车发动机轴对称气门系统的仿真。通过线性互补关系精确描述了接触和库仑摩擦条件,并推导了离散的动力学方程。牛顿型方法用于解决由此产生的互补性问题。与惩罚或其他平滑函数算法相比,该实现方案的优点是不需要任何用户提供的参数值来满足接触和摩擦条件。详细的接触力和接触状态的历史记录表明,该方法适用于复杂的摩擦接触问题。

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