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An approach to microstructure quantification in terms of impact properties of HSLA pipeline steels

机译:根据HSLA管线钢的冲击性能进行微观结构量化的方法

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摘要

Several thermo-mechanical controlled processing (TMCP) schedules of a modern pipeline steel were executed using a Laboratory mill to investigate both the TMCP parameters influence on the ductile properties and the microstructure and texture evolution during TMCP. Impact fracture toughness was evaluated by means of instrumented Charpy impact test and results were correlated with the metallurgical characterization of the steel via electron backscattered diffraction (EBSD) technique. It is shown that the ductile crack growth observed in the impact test experiments can be reasonably correlated with the Morphology Clustering (MC) and the Cleavage Morphology Clustering (CMC) parameters, which incorporate size, shape, and crystallographic texture features of microstructure elements. The mechanism of unfavorable texture formation during TMCP is explained by texture changes occurring between the end of finish rolling and the start of accelerated cooling.
机译:使用实验室轧机执行了几种现代管线钢的热机械控制处理(TMCP)计划,以研究TMCP参数对延性性能以及TMCP期间显微组织和织构演变的影响。冲击断裂韧性通过仪器化的夏比冲击试验进行评估,其结果与通过电子背散射衍射(EBSD)技术对钢的冶金特性进行关联。结果表明,在冲击试验中观察到的韧性裂纹扩展与形态学聚类(MC)和裂解形态聚类(CMC)参数具有合理的相关性,这些参数包含了微结构元素的尺寸,形状和晶体织构特征。 TMCP期间不利的织构形成的机理可以通过精轧结束和加速冷却开始之间发生的织构变化来解释。

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