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Effect of plasticity on nanoscale wear of third-body particles

机译:可塑性对三体颗粒纳米级磨损的影响

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摘要

Understanding third-body wear is difficult when the size of the third-body particle reaches nanoscale, because the plasticity produced at the nanoscale exhibits a size effect resulting from the dislocation plasticity in a finite volume. Through molecular dynamics simulations, we observed that dislocation plasticity induces two failure patterns of the third-body wear: brittle failure due to highly localized deformation in mildly compressive particles and ductile failure due to exfoliation-like deformation in severely compressed particles. During the wear process, the deformation of third-body particle shows better ductility as the particle size increases. Due to the highest dislocation plasticity, the wear volume reaches the maximum at the critical compressive strain of -13%. In addition, a size-independent wear rate is observed for the third-body wear.
机译:当第三体颗粒的尺寸达到纳米级时,很难理解第三体磨损,因为在纳米级产生的塑性表现出有限体积中位错塑性产生的尺寸效应。通过分子动力学模拟,我们观察到位错塑性导致第三体磨损的两种失效模式:轻度压缩颗粒高度局部化变形导致的脆性失效和严重压缩颗粒剥落状变形导致的延性失效。在磨损过程中,随着颗粒尺寸的增加,第三体颗粒的变形表现出更好的延展性。由于位错塑性最高,磨损体积在-13%的临界压缩应变下达到最大。此外,第三体的磨损率与尺寸无关。

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