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首页> 外文期刊>Transactions of the VSB - Technical University of Ostrava: Mechanical Series >Williams Expansion Terms and their Importance for Accurate Stress Field Description in Specimens with a Crack
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Williams Expansion Terms and their Importance for Accurate Stress Field Description in Specimens with a Crack

机译:Williams扩展项及其在带有裂纹的标本中准确应力场描述的重要性

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The paper deals with an analysis of the stress and displacement fields in various cracked speci- mens (loaded in mode I as well as in mode II). The main goal is to determine an accurate appro- ximation of the near-crack-tip fields which can be subsequently used e.g. in the case of quasi-brittle materials for estimation of the extent of a nonlinear zone at the crack tip in general, the fracture pro- cess zone in particular. Values of coefficients of the so-called higher-order terms of the power expan- sion by which the fields can be expressed are determined via regression from results of numerical si- mulations. The analysis is conducted using 2D numerical models and ANSYS FE computational system is employed. Various aspects regarding the description of the stress/displacement fields by means of the Williams expansion are discussed; especially the convergence of the coefficients of the first several terms of the series expansion, their absolute values and importance for an accurate stress approximation.
机译:本文分析了各种裂纹试样(在模式I和模式II下加载)的应力场和位移场。主要目标是确定近裂纹尖端场的精确近似值,随后可将其例如使用。对于准脆性材料,通常用于估计裂纹尖端的非线性区域的范围,尤其是断裂过程区域。通过数值模拟结果的回归,可以确定表示功率场的所谓幂次幂的高阶项的系数的值。使用2D数值模型进行分析,并使用ANSYS FE计算系统。讨论了有关通过Williams展开来描述应力/位移场的各个方面。尤其是级数展开的前几个项的系数的收敛性,它们的绝对值和对于精确应力逼近的重要性。

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