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Effects of crack tip blunting and residual stress on a warm pre-stressed crack specimen

机译:裂纹尖端钝化和残余应力对温暖预应力裂纹试样的影响

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摘要

Warm pre-stressing is a frequently used procedure for improving the load bearing capacity of cracked specimens through applying a preload in a temperature higher than the service temperature. Preloading a cracked specimen in upper shelf zone can produce a region of compressive residual stress around the crack tip. It can also blunt the crack tip after unloading. The crack tip blunting and the residual stress are two major mechanisms suggested for justifying the improvement in load bearing capacity of cracked specimens. In this paper finite element analysis and some theoretical models are used to study the effects of these two mechanisms. It is shown that both crack tip blunting and residual stress contribute in warm pre-stressing effects but it is the level of preload that determines which mechanism is more influential in the warm pre-stressing procedure. (c) 2005 Elsevier B.V. All rights reserved.
机译:温暖的预应力是通过在高于使用温度的温度下施加预载荷来提高破裂试样的承载能力的常用方法。在上层架子区域预加载破裂的样本会在破裂尖端周围产生压缩残余应力区域。卸载后,它也会使裂纹尖端变钝。裂纹尖端钝化和残余应力是证明裂纹试样承载能力提高的两个主要机理。在本文中,有限元分析和一些理论模型被用来研究这两种机制的影响。结果表明,裂纹尖端的钝化和残余应力均会影响预应力,但是预加载的水平决定了哪种机制在预应力过程中影响更大。 (c)2005 Elsevier B.V.保留所有权利。

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