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Evaluation of impacts of stress triaxiality on plastic deformability of RAFM steel using various types of tensile specimen

机译:使用不同类型的拉伸试样评估应力三轴性对RAFM钢塑性变形的影响

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A case study on a fusion blanket design such as DEMO indicated that there could be some sections with high stress triaxiality, a parameter to evaluate the magnitude of plastic constraint, in the case of plasma disruption or coolant loss accident. Therefore, it is necessary to accurately understand the ductility loss limit of structural material in order to conduct the structural design assessment of the irradiated and embrittled fusion reactor blanket. Tensile tests were conducted by using three kinds of tensile specimen shapes to investigate of the plastic deformability of F82H. From the results, the fracture ductility is lower as the stress triaxiality is higher. Voids of the interrupted RB1 specimen were observed along grain boundaries and expanded parallel to the tensile axis. That of interrupted R0.2 specimen was rounded shape compared with those of RB1. The fracture surface of RB1 and R0.2 specimens were observed the elongated dimples and the equiaxed dimples without so much elongation, respectively. It is considered that the decrease of plastic deformability for the notched specimen was caused by the process of voids formation and crack growth due to the effect of plastic constraint of the notch. (C) 2015 Elsevier B.V. All rights reserved.
机译:对诸如DEMO之类的熔合毯设计进行的案例研究表明,在等离子体破裂或冷却剂损失事故的情况下,可能存在一些具有高应力三轴性的截面,该参数是评估塑性约束大小的参数。因此,有必要准确地了解结构材料的延展性损失极限,以便对辐照和脆化的聚变反应堆橡皮布进行结构设计评估。通过使用三种拉伸试样形状进行拉伸试验,以研究F82H的塑性变形能力。从结果可知,随着应力三轴性变高,断裂延展性降低。沿晶界观察到中断的RB1标本的空隙,并平行于拉伸轴扩展。与RB1相比,R0.2中断的样品呈圆形。分别观察到RB1和R0.2试样的断裂表面是拉长的凹坑和等轴凹坑,没有那么大的伸长率。可以认为,缺口试样的塑性变形能力降低是由于缺口的塑性约束效应引起的空隙形成和裂纹扩展的过程所致。 (C)2015 Elsevier B.V.保留所有权利。

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