首页> 外文会议>ASME Pressure Vessels and Piping conference >THE COMBINED EFFECTS OF RESIDUAL STRESS AND WARM PRESTRESSING ON CLEAVAGE FRACTURE IN STEELS
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THE COMBINED EFFECTS OF RESIDUAL STRESS AND WARM PRESTRESSING ON CLEAVAGE FRACTURE IN STEELS

机译:残余应力和预应力对钢中劈裂断裂的综合影响

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Residual stresses (RS) appear in most engineering structures, either because they have been deliberately introduced or they are a by-product of the manufacturing process. Since RS play an important role in increasing and decreasing the possibility of failure, it is necessary that their effect on the integrity of the structure is understood. In the presence of RS, many components are subjected to a variety of prior loading histories. One such case is often associated with warm prestressing (WPS), where the component is subjected to some form of preloading at a temperature higher than operating conditions. The aim here was to explore how WPS, together with RS, might influence the subsequent fracture conditions for cleavage fracture. First, a model for WPS is reconsidered so that it could be used for Monte Carlo (MC) simulations of WPS. Results are compared with experimental data. The model is then adopted to consider the effects of long range residual stress created in fracture samples through an initial misfit. This is done by fitting the sample into a structure, with the new system subsequently being subjected to WPS conditions. The advantage of the system model is that it facilitates the systematic prediction of the interrelationship and interaction between the applied loads and the misfit (or residual) stresses. The results show that tensile RS act to enhance the effects of WPS, and the WPS cycle, in itself, can act to relax the initial residual stress.
机译:残余应力(RS)出现在大多数工程结构中,可能是由于故意引入残余应力,也可能是制造过程的副产品。由于RS在增加和减少失败可能性中起着重要作用,因此有必要了解它们对结构完整性的影响。在存在RS的情况下,许多组件都会经历各种先前的加载历史。一种这样的情况通常与温暖的预应力(WPS)有关,其中部件在高于工作条件的温度下经受某种形式的预加载。本文的目的是探讨WPS与RS一起如何影响卵裂断裂的后续断裂条件。首先,重新考虑了WPS的模型,以便可以将其用于WPS的蒙特卡罗(MC)仿真。将结果与实验数据进行比较。然后采用该模型来考虑由于初始失配而在裂缝样品中产生的长期残余应力的影响。这是通过将样品装配到结构中来完成的,新系统随后会受到WPS条件的影响。系统模型的优势在于,它有助于系统地预测所施加的载荷与失配(或残余)应力之间的相互关系和相互作用。结果表明,拉伸RS起到增强WPS的作用,而WPS循环本身可以起到放松初始残余应力的作用。

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