首页> 外文会议>13th International Conference on Textures of Materials Pt.1 Aug 26-30, 2002 Seoul, Korea >Microband Formation in an IF Steel during Cold Rolling at Low Strain Levels
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Microband Formation in an IF Steel during Cold Rolling at Low Strain Levels

机译:低应变水平冷轧过程中IF钢中的微带形成

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Microband formation in an IF steel during cold rolling at low strain levels (ε≤9.8 %) has been investigated by using TEM. The formation of microbands starts at small reductions (ε ~ 6.7 %), and microbands have habit planes running approximately parallel to {110} planes. In the specimen that was rolled to ε = 9.8 %, some grains contain one or two sets of microbands, while some are microband-free. The crystallographic measurement and deformation geometry calculation reveal that the habit plane of an observed microband has the largest Schmid factor; and when one <111> slip direction is intensively activated in this plane, one set of microbands is formed on this plane. Two sets of microbands form if two <111> slip directions are strongly and nearly equally activated. In the case of microband-free crystals, up to 7 slip systems have similar Schmid factors, are activated concurrently, and thus produce homogeneous deformation.
机译:使用TEM研究了IF钢在低应变水平(ε≤9.8%)的冷轧过程中的微带形成。微带的形成开始于小幅度的减小(ε〜6.7%),并且微带的习惯平面近似平行于{110}平面。在轧制到ε= 9.8%的样品中,一些晶粒包含一或两组微带,而有些则不含微带。晶体学测量和变形几何计算表明,观察到的微带的惯性面具有最大的施密德因子;当在该平面上强烈激活一个<111>滑动方向时,在该平面上形成一组微带。如果两个<111>滑移方向被强烈且几乎均等地激活,则会形成两组微带。在无微带晶体的情况下,多达7个滑移系统具有相似的Schmid因子,并同时被激活,因此产生均匀的变形。

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