首页> 外文会议>International Conference on Martensitic Transformations >TRANSMISSION ELECTRON MICROSCOPY OF ANTIPHASE BOUNDARY-LIKE STRUCTURE INDUCED BY DISPLACIVE TRANSFORMATION IN Ti-Pd SHAPE MEMORY ALLOY
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TRANSMISSION ELECTRON MICROSCOPY OF ANTIPHASE BOUNDARY-LIKE STRUCTURE INDUCED BY DISPLACIVE TRANSFORMATION IN Ti-Pd SHAPE MEMORY ALLOY

机译:Ti-Pd形状记忆合金中位移变换引起的反相​​边界状结构透射电子显微镜

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An antiphase boundary (APB)-like structure in the B19 martensite of Ti-Pd alloy has been investigated by transmission electron microscopy. High-resolution and high-angle annular dark-field scanning transmission electron microscopy images demonstrate the presence of an APB-like contrast along the (001) basal plane of the B 19 martensite. The contrast is not inherited from the APB with a displacement vector of the type R = (1/2)<111> in the B2 parent phase. In-situ heating observations indicate that the APB-like contrast disappears above A_f temperature. These facts suggest that the boundary is induced by the local heterogeneity of atomic movements during the martensitic transformation. Therefore, we have newly proposed that the APB-like structure in the B19 martensite is defined as the displacive transformation-induced APB.
机译:通过透射电子显微镜研究了Ti-Pd合金的B19马氏体中的反相边界(APB)的结构。高分辨率和高角度环形暗场扫描透射电子显微镜图像证明了沿着B19马氏体的(001)基础平面的APB样对比的存在。对比度不是从B2父阶段中的r =(1/2)<111>类型的位移载体的APB继承。原位加热观察表明,类似APB样对比度消失在A_F温度上方。这些事实表明,在马氏体转化期间原子运动的局部异质性引起了边界。因此,我们已经新提出了B19马氏体中的APB样结构被定义为位移变换诱导的APB。

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