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Optimization of Automated Crystal Orientation and Phase Mapping in TEM Applied to Ni-Ti All Round Shape Memory Alloy

机译:Ni-Ti全圆形记忆合金中TEM中自动晶体取向和相图的优化

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A new application which focuses on an artificial sphincter fabricated by Ni-Ti SMAs for human implantation is under investigation by applying the all-round shape memory effect with precise control of the phase transformation temperatures. In this study, a Ni51at.%-Ti alloy was fabricated by arc melting with fast solidification, followed by a proper strained aging which induces the two way shape memory effect needed for this particular application. Differential scanning calorimetry was used to investigate the thermal behavior and transmission electron microscopy was used for studying the microstructure of the alloys. With the latter the novel technique of automated crystal orientation microscopy is used and optimized to obtain phase and orientation mapping of the various structures.
机译:通过应用全面的形状记忆效应并精确控制相变温度,正在研究一种新的应用,该应用关注由Ni-Ti SMA制造的用于人工植入的人工括约肌。在这项研究中,Ni51at。%-Ti合金是通过电弧熔化和快速凝固制造的,然后进行适当的应变时效处理,从而引起该特定应用所需的双向形状记忆效应。差示扫描量热法用于研究热行为,透射电子显微镜用于研究合金的微观结构。对于后者,使用并优化了自动晶体取向显微镜的新技术以获得各种结构的相位和取向图。

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