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Texture And Microstructure Of Ultra Low Carbon Steel Processed By Equal Channel Angular Extrusion

机译:等径角挤压超低碳钢的组织与组织

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摘要

Grain structure, texture, and mechanical behavior of ultra low carbon steel subjected to severe plastic deformation at room temperature via equal channel angular extrusion (ECAE) were studied. After one pass the grains were elongated in the shear direction, showing microbands at ±30° with respect to grain boundaries. The microbands confined a substructure oriented into (111) and (1 00) fibers, whose axis were at ≈ 70° with respect to the extrusion direction. After four passes using route A the original grain boundaries cannot be distinguished in the deformation-induced microstructure, and a strong fine microbands structure, oriented into <111> and <110> fibers lying at 45 and 10° from the extrusion direction, respectively, was formed. At room temperature the stress-strain curves of ECAE deformed materials exhibited softening. The tensile strength increased and the elongation fell below 10% with increasing number of passes. However, for annealed ECAE deformed materials the stress-strain curves showed work hardening while the elongation increased up to about ≈ 40-50%.
机译:研究了通过等通道角挤压(ECAE)在室温下经受严重塑性变形的超低碳钢的晶粒结构,织构和力学行为。经过一遍后,晶粒在剪切方向上伸长,相对于晶界在±30°处显示微带。这些微带限制了一个取向为(111)和(1 00)纤维的子结构,它们的轴相对于挤出方向为≈70°。经过路线A的四次通过之后,原始晶粒边界无法在形变诱导的微观结构中区分开,并且形成了坚固的细微带结构,分别定向为与挤出方向成45度和10度的<111>和<110>纤维,成立了。在室温下,ECAE变形材料的应力-应变曲线表现出软化。随着通过次数的增加,拉伸强度增加并且伸长率下降至10%以下。但是,对于退火的ECAE变形材料,应力-应变曲线显示出加工硬化,而伸长率增加了约40-50%。

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