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FVPM simulation of scratching induced by a spherical indenter

机译:FVPM模拟球形压头引起的刮擦

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This article presents a single particle scratching simulation using the Finite Volume Particle Method(FVPM). FVPMis a variant of the well-known Smooth Particles Hydrodynamics method (SPH) which is locally conservative and consistent, what’s more it features advantages of mesh-free methods for handling moving interfaces and multi-scale interpolation. The test material is represented by overlapping particles and data exchanges occur through the interfaces. The indenter is modeled as a rigid sphere whose path is a straight horizontal line. The resulting surface topography as well as constraints and scratching efforts have been numerically studied. TheFVPMsimulation code assessed in this article has been found suitable for the scratching simulation based on a comparison with other results from the literature. The presented results suggest the possibility to simulate more complex surface finishing operations. Manufacturing processes based on abrasion material removal, such as the grinding process, will be considered in the future.
机译:本文介绍了使用有限体积粒子法(FVPM)进行的单个粒子刮擦模拟。 FVPMi是众所周知的“平滑粒子流体动力学方法”(SPH)的一种变体,它局部保守且一致,此外,它还具有用于处理移动界面和多尺度插值的无网格方法的优点。测试材料由重叠的粒子表示,并且通过接口进行数据交换。压头被建模为一个刚性球体,其路径是一条水平直线。已经对形成的表面形貌以及约束和刮擦效果进行了数值研究。根据与文献中其他结果的比较,发现本文评估的FVPM仿真代码适用于刮擦仿真。提出的结果表明有可能模拟更复杂的表面精加工操作。将来将考虑基于磨料去除的制造工艺。

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