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An approach for Knoop and Vickers indentations to measure equi-biaxial residual stresses and material properties: A comprehensive comparison

机译:针对刀架测量的刀具凹口的方法,用于测量平等双轴残余应力和材料特性:全面比较

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摘要

A residual stress analysis is indispensable to anticipate engineering structure loading conditions. For this purpose, there are various methods, including indentation technique, a non-destructive test, which also enables us to measure material properties as well. Numerous studies have been conducted until now, but it is yet to be completed. Study of entire available methods indicates that any comprehensive rather simple method has not been presented yet to achieve material properties and residual stresses, simultaneously, without any insight observation using sharp indentation.In the current work, extensive experimental and numerical studies have been performed using Vickers and Knoop indentations to anticipate yield stress, work hardening exponent and equi-biaxial residual stresses of aluminum and steel samples simultaneously. First, a local estimation method was proposed to reach stress-free state parameters and then typical equations were suggested to obtain yield stress and work-hardening exponent through genetic algorithm. Based on the first step, several equations were offered for every state of tensile and compressive residual stresses and indenter types to measure residual stresses. Obtained results demonstrate how the Knoop indenter led to more accurate results than the Vickers. Moreover, the suggested method worked accurately and the results were in agreement with the experiments.
机译:残余应力分析是预期工程结构负载条件是必不可少的。为此目的,存在各种方法,包括压痕技术,非破坏性测试,也使我们也能测量材料特性。迄今为止已经进行了许多研究,但尚未完成。对整个可用方法的研究表明,任何全面相当简单的方法尚未介绍尚未达到材料特性和残留应力,同时没有使用尖锐缩进的任何见解观察。在当前的工作中,使用维氏实验和数值研究进行了广泛的实验和数值研究和Knoop凹口预期屈服应力,同时加工铝和钢样品的硬化指数和平等的双轴残余应力。首先,提出了一种局部估计方法以达到无应力状态参数,然后建议通过遗传算法获得典型方程以获得屈服应力和工作 - 硬化指数。基于第一步,为每个拉伸和压缩残余应力和压痕类型提供了几条方程,以测量残余应力。获得的结果证明了Knoop Indenter如何导致比维氏多功能更准确的结果。此外,建议的方法准确地工作,结果与实验一致。

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