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A study on fatigue crack growth behavior subjected to a single tensile overload: Part II. Transfer of stress concentration and its role in overload-induced transient crack growth

机译:单次拉伸过载作用下疲劳裂纹扩展行为研究:第二部分。应力集中的传递及其在过载引起的瞬态裂纹扩展中的作用

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摘要

The combined effects of overload-induced enlarged compressive residual stresses and crack tip blunting with secondary cracks are suggested to be responsible for the observed changes in the crack opening load and resultant post-overload transient crack growth behavior Lee SY, Liaw PK, Choo H, Rogge RB, Acta Mater 2010;59:485-94. In this article, in situ neutron diffraction experiments were performed to quantify the influence of the combined effects by investigating the internal-stress evolution at various locations away from the crack tip. In the overload-retardation period, stress concentration occurs in the crack blunting region (an overload point) until a maximum crack arrest load is reached. The stress concentration is then transferred from the blunting region to the propagating crack tip (following the overload), requiring a higher applied load, as the closed crack is gradually opened. The transfer phenomena of the stress concentration associated with a crack opening process account for the nonlinearity of strain response in the vicinity of the crack tip. The delaying action of stress concentration at the crack tip is understood in conjunction with the concept of a critical stress (i.e. the stress required to open the closed crack behind the crack tip).
机译:过载引起的扩大压缩残余应力和裂纹尖端钝化与次级裂纹的综合效应被认为是导致裂纹张开载荷变化和由此产生的过载后瞬态裂纹扩展行为的原因 [Lee SY, Liaw PK, Choo H, Rogge RB, Acta Mater 2010;59:485-94]. 本文通过原位中子衍射实验,研究了远离裂纹尖端不同位置的内应力演变,量化了联合效应的影响。在过载延迟期间,应力集中在裂纹钝化区域(过载点),直到达到最大止裂载荷。然后,应力集中从钝化区域转移到扩展的裂纹尖端(在过载之后),随着闭合裂纹逐渐打开,需要更高的施加载荷。与裂纹张开过程相关的应力集中传递现象解释了裂纹尖端附近应变响应的非线性。裂纹尖端应力集中的延迟作用与临界应力的概念(即打开裂纹尖端后面的闭合裂纹所需的应力)的概念相结合。

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