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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Application of the finite element submodeling technique in a single point contact and wear problem
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Application of the finite element submodeling technique in a single point contact and wear problem

机译:有限元子模型技术在单点接触和磨损问题中的应用

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摘要

Finite element simulation is a powerful tool to study and predict the wear behavior of different mechanical systems. However, the high computational cost required to obtain accurate numerical solutions is a crucial aspect especially for large and complex models. The present study proposes a possible solution to overcome this limitation by exploiting the potentiality of the submodeling technique, whose application to wear problem is still rare in the literature. A global-local approach for wear analysis is presented and validated for a simple pin-on-disk wear test. In a preliminary step, different submodeling techniques were implemented and compared. They differed for the quantity (nodal forces and/or displacements) transferred from the global model to the local one. Numerical models have been developed in Ansys (R) mechanical APDL using its new wear simulation and mesh smoothing routines. Results suggest that the proposed strategy can significantly reduce the computational cost of finite element wear models. Some interesting points on the use of submodeling in contact problems are also discussed.
机译:有限元仿真是一种研究和预测不同机械系统的磨损行为的强大工具。然而,获得准确数字解决方案所需的高计算成本是特别适用于大型和复杂模型的关键方面。本研究提出了通过利用子陶瓷技术的潜力来克服这种限制的可能解决方案,其应用于佩戴问题的应用仍然很少见。为简单的磁盘磨损测试呈现并验证了一种全局局部磨损分析方法。在初步步骤中,实施并比较了不同的子曲线技术。它们与从全球模型转移到当地的数量(节点力和/或流离额)不同。使用其新的磨损仿真和网格平滑例程,在ANSYS(R)机械APDL中开发了数值模型。结果表明,拟议的策略可以显着降低有限元磨损模型的计算成本。还讨论了在接触问题中使用子模块的一些有趣点。

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