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Nanoscratching of iron: A molecular dynamics study of the influence of surface orientation and scratching direction

机译:铁的纳米划痕:表面取向和划痕方向影响的分子动力学研究

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Using molecular dynamics simulation we study scratching of Fe crystals by a hard repulsive tip. Three surface orientations - (100), (110), and (111) - are studied with two scratch directions in each case. We take care to analyze the projected normal and transverse contact areas properly to take the loss of contact of the tip to the substrate beneath it and its increased contact to the pile-up into account. We find that the form of the pile-up generated depends strongly on the surface orientation and scratch direction; this dependence is analyzed with the help of the dominant slip system in bcc Fe. The normal force to keep the tip at fixed depth and the transverse scratching force vary by only 15% between the different scratch systems investigated. The normal contact area decreases considerably during the initial stage of scratching as the trailing part of the tip loses contact with the substrate. The normal hardness shows similarly small variations between the different systems studied and is smaller than the hardness during the indentation process. The transverse contact area increases continuously during the scratch as the pile-up is generated. As a consequence the tangential hardness varies more strongly (by 26%) between the systems studied. For the (100)[011] scratch system we analyze the depth dependence of scratching. We find the friction coefficient to increase with scratch depth. The dependence of the normal and tangential hardness on depth are discussed with the help of the variation of the respective projected areas with depth. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用分子动力学模拟,我们研究了硬质排斥尖端对铁晶体的刮擦。研究了三个表面方向(100),(110)和(111),每种情况下都有两个刮擦方向。我们会仔细分析投影的法向和横向接触面积,以考虑到针尖与针尖下方的基材失去接触以及针尖与堆积物的接触增加的情况。我们发现产生的堆积形式在很大程度上取决于表面取向和刮擦方向。借助于密件抄送Fe中的主要滑移系统分析了这种依赖性。在研究的不同刮擦系统之间,将尖端保持在固定深度的法向力和横向刮擦力仅相差15%。在刮擦的初始阶段,由于尖端的尾部与基材失去接触,正常接触面积会大大减少。正常硬度在研究的不同系统之间显示出相似的小变化,并且比压痕过程中的硬度小。在产生划痕时,横向接触面积在刮擦过程中不断增加。结果,在所研究的系统之间,切向硬度变化更大(26%)。对于(100)[011]刮擦系统,我们分析了刮擦的深度依赖性。我们发现摩擦系数随着划痕深度的增加而增加。借助各个投影区域随深度的变化,讨论了法向和切向硬度对深度的依赖性。 (C)2015 Elsevier B.V.保留所有权利。

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