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The steady-state Archard adhesive wear problem revisited based on the phase field approach to fracture

机译:基于骨折的相位现场方法重新检测稳态的金属粘合剂磨损问题

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摘要

The problem of adhesive wear is herein investigated in relation to periodic asperity junction models in the framework of the Archard interpretation suggesting that wear debris formation is the result of asperity fracture. To this aim, the phase field model for fracture is exploited to simulate the crack pattern leading to debris formation in the asperity junction model. Based on dimensional analysis considerations, the effect of the size of the junction length, the lateral size of the asperity, and the amplitude of the re-entrant corner angles and defined by the junction geometry is examined in the parametric analysis. Results show that two failure modes are expected to occur, one with a crack nucleated at the re-entrant corner , and another with a crack nucleated at the re-entrant corner , depending on the dominant power of the stress-singularity at the two re-entrant corner tips. Steady-state adhesive wear, where the initial asperity junction geometry is reproduced after debris formation, is observed for asperity junctions with =45 degrees, almost independently of the lateral size of the asperity and of the horizontal projection of the junction length.
机译:本文研究了粘合剂磨损的问题在于建议磨损碎片形成的框架中的周期性粗糙接线模型,表明磨损碎片形成是粗糙骨折的结果。为此目的,利用裂缝的相场模型来模拟导致粗糙接线模型中的碎屑形成的裂纹图案。基于尺寸分析考虑,在参数分析中,检查了参数分析的连接长度的尺寸,横向尺寸的横向尺寸和再参与角角度的幅度和由结几何定义的幅度。结果表明,预期发生了两个故障模式,一个具有在再参赛角的裂缝中含有的裂缝,另一个在再参赛角在重新参赛者角度核心的裂缝,这取决于两个重复的应力奇点的主力 - 一个角落提示。稳态粘合剂磨损,其中在碎片形成后再现初始粗糙接合几何形状,观察到具有= 45度的粗糙连接,几乎独立于粗糙度的横向尺寸和结长的水平投影。

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