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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Effect of deformation twinning on microstructure and texture evolution during cold rolling of CP-titanium
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Effect of deformation twinning on microstructure and texture evolution during cold rolling of CP-titanium

机译:变形孪晶对CP钛冷轧组织和组织演变的影响

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摘要

The evolution of microstructure and texture during cold rolling of commercial-purity titanium (CP-Ti) was studied with particular reference to deformation twinning and dislocation slip. For low to intermediate deformation up to 40% in thickness reduction, the external strain was accommodated by slip and deformation twinning. In this stage, both compressive ({11 22} < 1123 > ) and tensile ({101 2} < 1011 > ) twins, as well as, secondary twins and tertiary twins were activated in the grains of favorable orientation, and this resulted in a heterogeneous microstructure in which grains were refined in local areas. For heavy deformation, between 60 and 90%, slip overrode twinning and shear bands developed. The crystal texture of deformed specimens was weakened by twinning but was strengthened by slip, resulting in a split-basal texture in heavily deformed specimens.
机译:研究了商业纯钛(CP-Ti)冷轧过程中的微观组织和织构的演变,特别是涉及形变孪晶和位错滑移。对于厚度减小到40%的中低变形,通过滑动和变形孪生来适应外部应变。在这个阶段,压缩双胞胎({11 22} <1123>)和拉伸双胞胎({101 2} <1011>)以及次生双胞胎和三生双胞胎都在取向良好的晶粒中被激活,这导致一种异质的微观结构,其中的晶粒在局部区域被精炼。对于60%到90%之间的大变形,出现了滑移超越孪生和剪切带。孪晶削弱了变形试样的晶体织构,而滑动则增强了晶体的晶体织构,从而在严重变形的试样中产生了分裂的基部织构。

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