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Characteristics of TiNi Shape Memory Alloy Processed by Vacuum Plasma Spray

机译:真空等离子喷涂TiNi形状记忆合金的特性

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TiNi shape memory alloy has been used in many application fields due to its excellent shape memory effect (SME) and superelasticity (SE). However, it is difficult and costly to machine TiNi alloy into complex shapes due to its low ductility. To address this problem, one approach is near-net shape processing by vacuum plasma spraying (VPS). In this study, the transformation behavior, mechanical properties and microstructure of TiNi alloy processed by VPS method are studied. The as-sprayed and homogenized TiNi alloy exhibited compositional variations in the sample, though both samples exhibited a single TiNi phase with low transformation temperatures, below 170 K Aging the homogenized sample at 773 K for 18 ks led to an increase in the transformation temperature, resulting in good transformation behavior. Specifically, DSC measurement revealed clear transformation peaks due to Martensite, austenite and R-phase transitions. Compression testing of a sample aged at 773 K for 18 ks exhibited a good SME below M_f and superelasticity (SE) above A_f. The recoverable strain due to SME and SE were more than 2.4 % and 5.0%, respectively. TEM studies confirmed that aTi_3Ni_4 precipitate was formed by aging at 773 K for 18 ks
机译:TiNi形状记忆合金由于其出色的形状记忆效果(SME)和超弹性(SE)而已在许多应用领域中使用。然而,由于其低的延展性,将TiNi合金加工成复杂的形状既困难又昂贵。为了解决这个问题,一种方法是通过真空等离子体喷涂(VPS)进行近最终形状加工。研究了VPS法处理的TiNi合金的相变行为,力学性能和组织。喷涂和均质的TiNi合金在样品中表现出成分变化,尽管两个样品均表现出具有低相变温度(低于170 K)的单个TiNi相,但在773 K下将均质样品老化18 ks导致相变温度升高,导致良好的转换行为。具体而言,DSC测量显示由于马氏体,奥氏体和R相转变而产生的清晰的转变峰。在773 K下老化18 ks的样品的压缩测试显示出M_f以下的良好SME和A_f以上的超弹性(SE)。 SME和SE导致的可恢复应变分别超过2.4%和5.0%。 TEM研究证实,在773 K时效18 ks时会形成aTi_3Ni_4沉淀

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