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首页> 外文期刊>Journal of Applied Crystallography >Multiple twinning in pure hexagonal close-packed titanium
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Multiple twinning in pure hexagonal close-packed titanium

机译:纯六角形密堆积钛的多重孪晶

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Commercial pure titanium (T40) was deformed in channel die compression by means of the split-sample technique in order to study multiple twinning. Particular attention was paid to the twin variant presentation and selection during multiple twinning. All possible misorientations, corresponding to the multiple twins arising from the combination of the { } compression (C) twin, the { } tension twin (T1) and the { } tension twin (T2), were calculated with respect to the crystal basis of the matrix grain. All the multiple twin variants are partitioned into ten classes with the same crystallographically equivalent misorientation angle and axis. However, when the influence of twinning order is taken into account, the multiple twin variants are partitioned into 15 classes. Experimental results prove that the selection of twin variants (primary and secondary) is mainly governed by their macroscopic Schmid factor (SF). The normalized SF is more efficient at predicting variant selection. A twin formed in one grain can activate another twin in a neighbouring grain, provided that the angle between the two twinning planes does not exceed 20°.
机译:为了研究多重孪晶,通过分裂样品技术使商业纯钛(T40)在通道模头压缩中变形。在多重孪生期间,尤其要注意孪生变体的表现和选择。根据{}压缩(C)孪晶,{}拉伸孪晶(T1)和{}拉伸孪晶(T2)的组合计算出了与多个孪晶相对应的所有可能的取向错误。基质颗粒。所有多个孪生变体都被划分为十个类别,它们具有相同的晶体学等效取向角和轴。但是,考虑到孪生顺序的影响时,多个孪生变体被分为15类。实验结果证明,孪生变体(主要和次要)的选择主要受其宏观Schmid因子(SF)支配。标准化的SF在预测变体选择方面更有效。一个晶粒中形成的孪晶可以激活相邻晶粒中的另一个孪晶,但前提是两个孪晶面之间的角度不超过20°。

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