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A wear model based on cumulative cyclic plastic straining

机译:基于累积循环塑性应变的磨损模型

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摘要

Given the specific micro-structure of some steel grades, under tribological conditions the sub-surface material or sub-layers of sliding bodies are prone to cumulative cyclic plastic deformation, leading to the formation and emission of wear debris. In the present paper, a new wear model based on a cyclic ratchetting-type plastic deformation of subsurface material is proposed. It is considered that the debris is formed and the wear-loss occurs when the accumulated plastic deformation at sub-surface exceeds "a critical strain" or "rupture limit". The model takes into account the number of cycles or test duration, a characteristic thickness of the sub-layer dependent on tribological conditions and material properties, the shear rupture ductility and an average plastic strain increment. The average plastic strain increment is estimated by numerical simulation of pin-on-disc friction. A very close correlation is found between the predicted and experimental wear heights versus time and/or versus the number of cycles. The wear investigations were carried out on a high-temperature pin-on-disc tribometer under dry friction conditions. Experiments were performed under constant load, speed and disc temperature for different durations. The steel grade involved was a tempered martensitic tool steel X38CrMoV5 (AISI H11). Wear mechanisms were investigated by Scanning Electron Microscopy (SEM) observations in surface and cross-section.
机译:给定某些钢种的特定微观结构,在摩擦条件下,滑动体的表面下材料或亚层易于累积循环塑性变形,从而导致磨损碎屑的形成和散发。本文提出了一种基于地下材料周期性棘轮型塑性变形的磨损模型。当在子表面处累积的塑性变形超过“临界应变”或“断裂极限”时,认为形成了碎屑并且发生了磨损。该模型考虑了循环次数或测试持续时间,取决于摩擦学条件和材料特性的亚层特征厚度,剪切断裂延性和平均塑性应变增量。平均塑性应变增量是通过销盘摩擦的数值模拟估算的。发现预测的和实验的磨损高度与时间和/或循环次数之间具有非常密切的相关性。磨损研究是在干摩擦条件下在高温针盘式摩擦计上进行的。实验在恒定负载,速度和圆盘温度下进行了不同的持续时间。涉及的钢种是回火马氏体工具钢X38CrMoV5(AISI H11)。通过扫描电子显微镜(SEM)在表面和横截面上的观察研究了磨损机理。

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