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T-scaling method for stress distribution scaling under small-scale yielding and its application to the prediction of fracture toughness temperature dependence

机译:小规模屈服下应力分布缩放的T-缩放方法及其应用于裂缝韧性温度依赖性的预测

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摘要

In this paper, a new method for scaling the crack-tip stress distribution under small-scale yielding conditions is proposed and named the T-scaling method. This method enables identification of the different stress distributions for materials with different tensile properties but identical load in terms of K or J. Then, by assuming that the temperature dependence of a material is represented by the stress-strain relationship temperature dependence, a method to predict the fracture load at an arbitrary temperature from the already known fracture load at a reference temperature is proposed. This method is combined with the T-scaling method and the knowledge that the "fracture stress for slip induced cleavage fracture is temperature independent." Once the fracture load is assumed, the fracture toughness J(c) at the temperature under consideration can be evaluated by running elastic-plastic finite element analysis. Finally, the above-mentioned framework for predicting the J(c) temperature dependence of a material in the ductile to-brittle temperature region was validated for 0.55% carbon steel JIS S55C and reactor pressure vessel steel A533B. The proposed framework seems to be able to solve the problem faced by the master curve in the relatively high temperature region by requiring only tensile tests. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种在小规模屈服条件下缩放裂纹尖端应力分布的新方法,并命名为T形缩放方法。该方法使得能够识别具有不同拉伸性能的材料的不同应力分布,但在K或J的方面相同的负载。然后,假设材料的温度依赖性由应力 - 应变关系温度依赖表示,一种方法提出了预测来自已经已知的裂缝负荷在参考温度下的任意温度处的断裂载荷。该方法与T形缩放方法结合,知识“滑移诱导的裂解裂缝的断裂应力是温度无关”。一旦假定断裂载荷,通过运行弹性塑料有限元分析,可以评估所考虑的温度的断裂韧性J(C)。最后,验证了用于预测延性到脆性温度区域中的j(c)的j(c)温度依赖性的框架,验证了0.55%碳钢JIS S55C和反应器压力容器钢A533b。所提出的框架似乎能够通过仅需要拉伸试验来解决相对高温区域中的主曲线面临的问题。 (c)2017 Elsevier Ltd.保留所有权利。

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