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On the Invariance of Hardness at Vickers Indentation of Pre-Stressed Materials

机译:预应力材料的维氏压痕硬度的不变性

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The influence from residual surface stresses on global indentation properties, i.e., hardness and size of the contact area, have been studied quite frequently in recent years. A fundamental assumption when evaluating such tests is that the material hardness is independent of any residual stresses. This assumption has been verified in the case of cone indentation of classical Mises elastoplastic materials. However, a detailed investigation of this feature in the case of three-dimensional indentation, i.e., Vickers and Berkovic indentation, has not been presented previously. It is therefore the aim of the present study to remedy this shortcoming using finite element methods. The numerical results pertinent to Vickers indentation clearly show that the material hardness is independent of residual (or applied) stresses (also in case of three-dimensional indentation problems). The limitations of the validity of hardness invariance are also discussed in some detail.
机译:近年来,已经非常频繁地研究了残余表面应力对整体压痕性能的影响,即接触区域的硬度和尺寸。评估此类测试的基本假设是材料硬度与任何残余应力无关。在经典Mises弹塑性材料的锥形压痕的情况下,已经验证了该假设。但是,以前没有提出在三维压痕即维氏和贝氏压痕的情况下对该特征的详细研究。因此,本研究的目的是使用有限元方法来弥补这一缺点。与维氏压痕有关的数值结果清楚地表明,材料硬度与残余(或施加的)应力无关(在三维压痕问题的情况下)。还详细讨论了硬度不变性有效性的局限性。

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