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Monte Carlo Simulations of the effects of warm pre-stress on the scatter in fracture toughness

机译:蒙特卡洛模拟热预应力对断裂韧性的影响

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Warm pre-stressing (WPS) is the process of subjecting a pre-cracked component to a load cycle at a temperature higher than subsequent operating temperatures. This process is widely acknowledged as being able to enhance the load to fracture, especially in ferritic steels which exhibit lower shelf cleavage fracture. A WPS model developed by Chell and co-workers is reformulated to create a method of undertaking Monte Carlo Simulations to study the effects of WPS on brittle fracture. This requires the development of solution domains that are governed by the relative sizes of plastic zones ahead of the crack tip during the load and temperature cycles. Using recent experimental data it is shown that accurate estimates of the toughness distributions, after WPS, can be obtained. The scatter observed in this data is also replicated using these simulations. However, the accuracy of WPS predictions may be limited by the sample size. This analysis shows that a sample size smaller than 7 reduces the reliability of the results significantly. The enhancement caused by WPS can also be influenced by the presence of an existing residual stress field. It is shown that tensile residual stresses enhance the WPS effect (caused by an increase in both the pre-load magnitude and the unloaded state load level), provided that they do not cause premature fracture during the pre-load phase. (C) 2014 Elsevier Ltd. All rights reserved.
机译:暖预应力(WPS)是使预破裂的组件在高于后续工作温度的温度下经受负载循环的过程。众所周知,该方法能够增加断裂载荷,特别是在表现出较低的货架断裂断裂的铁素体钢中。由Chell和他的同事开发的WPS模型被重新构造,以创建进行蒙特卡洛模拟的方法,以研究WPS对脆性断裂的影响。这就要求开发固溶区,该固溶区由在载荷和温度循环期间裂纹尖端之前的塑性区的相对大小决定。使用最新的实验数据表明,在WPS之后,可以获得韧性分布的准确估计值。使用这些模拟还可以复制在此数据中观察到的分散。但是,WPS预测的准确性可能受到样本大小的限制。该分析表明,小于7的样本量会大大降低结果的可靠性。由WPS引起的增强也会受到现有残余应力场的影响。结果表明,拉伸残余应力会增强WPS效果(由预载荷大小和空载状态载荷水平的增加引起),前提是它们不会在预载荷阶段引起过早断裂。 (C)2014 Elsevier Ltd.保留所有权利。

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