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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Surface slip markings of fatigue-tested materials hardened by precipitates: dislocation dynamics approach
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Surface slip markings of fatigue-tested materials hardened by precipitates: dislocation dynamics approach

机译:经沉淀物硬化的疲劳试验材料的表面滑移痕迹:位错动力学方法

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Fatigue simulations are performed by using the new parallel discrete dislocation dynamics code. The effects of particles (shearable or non-shearable) on the fatigue properties, e.g. the cyclic mechanical response and the surface markings, are presented. The simulated results are found to represent the features observed in the experiments well. Fatigue of materials containing both shearable and non-shearable particles (bimodal case) is also simulated. The Orowan loops accumulated around the non-shearable particles promote a dispersion of the slips by a local cross slip, and the fatigue features of the bimodal case are in between those of the shearable and the non-shearable particle case.
机译:通过使用新的平行离散位错动力学代码执行疲劳仿真。颗粒(可剪切或不可剪切)对疲劳性能的影响,例如介绍了循环机械响应和表面标记。发现模拟结果很好地代表了实验中观察到的特征。还模拟了同时包含可剪切和不可剪切颗粒的材料的疲劳(双峰情况)。聚集在不可剪切颗粒周围的Orowan环通过局部横向滑动促进了滑动的分散,并且双峰情况的疲劳特征介于可剪切和不可剪切颗粒情况之间。

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