首页> 外文期刊>Journal of Microscopy >EBSD for analysing the twinning microstructure in fine-grained TWIP steels and its influence on work hardening.
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EBSD for analysing the twinning microstructure in fine-grained TWIP steels and its influence on work hardening.

机译:EBSD用于分析细晶粒TWIP钢的孪晶组织及其对加工硬化的影响。

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摘要

A 22 Mn-0.6 C twinning induced plasticity steel with an average grain size of 2.6 mum was deformed in tension at room temperature. The electron backscattered diffraction technique was used to characterize the twinning structure in relation with the local texture evolution. For nanoscale analysis, additional transmission electron microscopy analysis was performed. Nanotwins were activated in the largest grains from the beginning of the deformation. They interacted with a well-developed dislocation structure that induced detectable intragranular orientation variations. With increasing deformation, dense bundles of nanotwins preferentially developed in grains oriented close to the <111>//tensile direction fibre (promoted by the deformation) as well as medium to high angle sub-boundaries. These key features of the twinned microstructure were finally related to the remarkably high strain hardening, which evolved according to different stages.
机译:在室温下,平均晶粒尺寸为2.6微米的22 Mn-0.6 C孪晶感应塑性钢在拉伸过程中变形。电子背散射衍射技术被用来表征孪晶结构与局部织构的演化。对于纳米级分析,进行了额外的透射电子显微镜分析。从变形开始,纳米孪晶就以最大的晶粒被激活。他们与发达的位错结构相互作用,诱发了可检测的颗粒内取向变化。随着变形的增加,纳米孪晶的致密束优选在取向接近<111> //拉伸方向纤维(通过变形促进)以及中等至高角度子边界的晶粒中发展。孪生微观结构的这些关键特征最终与显着高的应变硬化有关,应变硬化根据不同的阶段而发展。

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