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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Dynamic deformation for fracture properties of simulated weld heat affected zone of 9Cr-1Mo steel from instrumented impact tests
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Dynamic deformation for fracture properties of simulated weld heat affected zone of 9Cr-1Mo steel from instrumented impact tests

机译:9Cr-1Mo钢模拟焊接热影响区断裂性能的动态变形

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摘要

Dynamic deformation characteristics such as dynamic yield stress and dynamic strain hardening exponent along with dynamic elastic - plastic fracture toughness for the different microstructural regions of heat affected zone (HAZ) of a nuclear grade 9Cr-1Mo steel have been evaluated by instrumented Charpy tests. Isothermal heat treatment at different temperatures was used to simulate the different microstructural regions in the HAZ of this steel, namely the over tempered base metal, intereritical, fine prior austenitic grained martensitic, and coarse prior austenitic grained martensitic regions. Effects of interparticle spacing on the dynamic deformation and fracture properties have been studied. It has been observed that the dynamic yield stress and the dynamic fracture toughness follow power law relationships with the interparticle spacing whereas the strain hardening exponent follows a linear fit.
机译:通过仪器化的夏比测试,评估了核级9Cr-1Mo钢热影响区(HAZ)不同组织区域的动态变形特性,例如动态屈服应力和动态应变硬化指数,以及动态弹塑性断裂韧性。使用不同温度下的等温热处理来模拟该钢的热影响区中的不同显微组织区域,即回火的贱金属,间隙,先验奥氏体晶粒细马氏体区和先验奥氏体晶粒粗度马氏体区。研究了颗粒间距对动态变形和断裂性能的影响。已经观察到,动态屈服应力和动态断裂韧性遵循与颗粒间间距的幂律关系,而应变硬化指数遵循线性拟合。

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