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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Efficient Contact Modeling in Nonrigid Variation Simulation
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Efficient Contact Modeling in Nonrigid Variation Simulation

机译:非刚性变化仿真中的有效接触建模

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Virtual tools and methods are becoming increasingly important in order to predict the geometric outcome in early phases of the product realization process. Method of influence coefficients (MIC) in combination with Monte Carlo simulation (MCS) is a well-known technique that can be used in nonrigid variation simulation. In these simulations, contact modeling is important to ensure a correct result. Contact modeling simulates how mating surfaces are hindered from penetrating each other, giving rise to contact forces that contribute to the deformation of the parts when assembled and the final shape of the subassembly after springback. These contact forces have to be taken into consideration in each MCS-iteration. To secure reasonable response times, the calculation of the contact forces needs to be fast. In this paper, we formulate a quadratic programming (QP) problem to solve the contact problem. The case studies presented show that node-based contact modeling can be efficiently solved through QP.
机译:为了预测产品实现过程的早期阶段的几何结果,虚拟工具和方法变得越来越重要。影响系数(MIC)与蒙特卡洛模拟(MCS)相结合的方法是众所周知的技术,可用于非刚性变化模拟。在这些仿真中,接触建模对于确保正确的结果很重要。接触建模模拟了如何防止配合表面相互穿透,从而产生接触力,该接触力有助于组装时零件的变形以及回弹后子组件的最终形状。在每个MCS迭代中都必须考虑这些接触力。为了确保合理的响应时间,需要快速计算接触力。在本文中,我们制定了二次规划(QP)问题来解决接触问题。提出的案例研究表明,可以通过QP有效地解决基于节点的联系人建模。

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