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Investigation on Indentation Cracking-Based Approaches for Residual Stress Evaluation

机译:基于压痕裂纹的残余应力评估方法研究

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摘要

Vickers indentation fracture can be used to estimate equibiaxial residual stresses (RS) in brittle materials. Previous, conceptually-equal, analytical models were established on the assumptions that (i) the crack be of a semi-circular shape and (ii) that the shape not be affected by RS. A generalized analytical model that accounts for the crack shape and its change is presented. To assess these analytical models and to gain detailed insight into the crack evolution, an extended finite element (XFE) model is established. XFE analysis results show that the crack shape is generally not semi-circular and affected by RS and that tensile and compressive RS have different effects on the crack evolution. Parameter studies are performed to calibrate the generalized analytical model. Comparison of the results calculated by the analytical models with XFE results reveals the inaccuracy inherent in the previous analytical models, namely the neglect of (the change of) the crack aspect-ratio, in particular for tensile RS. Previous models should therefore be treated with caution and, if at all, used only for compressive RS. The generalized model, on the other hand, gives a more accurate description of the RS, but requires the crack depth.
机译:维氏压痕断裂可用于估算脆性材料中的等双轴残余应力(RS)。以前,在以下概念上建立了概念上相等的分析模型:(i)裂纹为半圆形,(ii)形状不受RS影响。提出了一种解释裂纹形状及其变化的广义分析模型。为了评估这些分析模型并深入了解裂纹扩展,建立了扩展有限元(XFE)模型。 XFE分析结果表明,裂纹形状通常不是半圆形,受RS影响,拉伸和压缩RS对裂纹的发展有不同的影响。进行参数研究以校准广义分析模型。将分析模型计算出的结果与XFE结果进行比较,可以发现先前分析模型固有的不准确性,即忽略(改变)裂缝纵横比,特别是对于拉伸RS。因此,应谨慎对待先前的模型,如果有的话,仅用于压缩RS。另一方面,广义模型给出了对RS的更精确描述,但需要裂纹深度。

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