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Shape Memory Characteristics of Ti-Ni Alloy Using Mechanically-Alloyed Powder

机译:机械合金化粉末Ti-Ni合金的形状记忆特性

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摘要

In this research, we investigated the fabrication conditions of Ti-Ni alloy powder by MA process and the shape memory characteristics of the sintered alloy by a pulse-current sintering equipment using mechanically alloyed powder (MA powder). The microstructure of the sintered alloy of the MA powder was more homogeneous than that of the alloy of the elemental powders. The application of the MA powder makes the width between transformation temperatures of the shape memory treated alloy of the MA powder became narrower, that is, it improves the temperature response of the compact. The tensile strength and elongation of the shape memory compact of the MA powder were approximately 780 MPa and 7.5 %, respectively. This is one of the superior tensile properties of SMA compact fabricated by powder metallurgy process. The superelastic behavior took place in the alloy of the MA powder. Thus, the MA process in short process time resulted in lower contamination of the MA powder and the application of the MA powder resulted in superior shape memory characteristics of the sintered alloy.
机译:在这项研究中,我们研究了通过MA工艺制备Ti-Ni合金粉末的条件以及使用机械合金化粉末(MA粉末)的脉冲电流烧结设备对烧结合金的形状记忆特性。 MA粉末的烧结合金的显微组织比元素粉末的合金的显微组织更均匀。 MA粉末的施加使得MA粉末的形状记忆处理的合金的相变温度之间的宽度变窄,即,其改善了成形体的温度响应。 MA粉末的形状记忆成形体的抗张强度和伸长率分别为约780MPa和7.5%。这是通过粉末冶金工艺制造的SMA压块的卓越拉伸性能之一。在MA粉末的合金中发生超弹性行为。因此,在短时间内的MA工艺导致MA粉末的污染降低,并且MA粉末的施用导致烧结合金的优异的形状记忆特性。

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