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基于激光定向能量沉积的钛镍基双金属形状记忆合金

TiNi-Based Bi-Metallic Shape-Memory Alloy by Laser-Directed Energy Deposition.

作者信息

Chen Yitao, Ortiz Rios Cesar, McLain Braden, Newkirk Joseph W, Liou Frank

机构信息

Department of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USA.

Department of Materials Science and Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USA.

出版信息

Materials (Basel). 2022 Jun 1;15(11):3945. doi: 10.3390/ma15113945.

Abstract

In this study, laser-directed energy deposition was applied to build a Ti-rich ternary Ti-Ni-Cu shape-memory alloy onto a TiNi shape-memory alloy substrate to realize the joining of the multifunctional bi-metallic shape-memory alloy structure. The cost-effective Ti, Ni, and Cu elemental powder blend was used for raw materials. Various material characterization approaches were applied to reveal different material properties in two sections. The as-fabricated Ti-Ni-Cu alloy microstructure has the TiNi phase as the matrix with TiNi secondary precipitates. The hardness shows no high values indicating that the major phase is not hard intermetallics. A bonding strength of 569.1 MPa was obtained by tensile testing, and digital image correlation reveals the different tensile responses of the two sections. Differential scanning calorimetry was used to measure the phase-transformation temperatures. The austenite finishing temperature of higher than 80 °C was measured for the Ti-Ni-Cu alloy section. For the TiNi substrate, the austenite finishing temperature was tested to be near 47 °C at the bottom and around 22 °C at the upper substrate region, which is due to the repeated laser scanning that acts as annealing on the substrate. Finally, the multiple shape-memory effect of two shape-memory alloy sides was tested and identified.

摘要

在本研究中,采用激光定向能量沉积技术在TiNi形状记忆合金基板上制备富Ti的三元Ti-Ni-Cu形状记忆合金,以实现多功能双金属形状记忆合金结构的连接。采用具有成本效益的Ti、Ni和Cu元素粉末混合物作为原材料。应用了各种材料表征方法来揭示两个部分的不同材料性能。制备的Ti-Ni-Cu合金微观结构以TiNi相为基体,伴有TiNi二次析出物。硬度值不高,表明主要相不是硬金属间化合物。通过拉伸试验获得了569.1 MPa的结合强度,数字图像相关分析揭示了两个部分不同的拉伸响应。采用差示扫描量热法测量相变温度。测得Ti-Ni-Cu合金部分的奥氏体终了温度高于80℃。对于TiNi基板,底部的奥氏体终了温度经测试接近47℃,基板上部区域约为22℃,这是由于重复的激光扫描对基板起到了退火作用。最后,对两个形状记忆合金面的多重形状记忆效应进行了测试和识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf4d/9182429/6baa0faafbf5/materials-15-03945-g001.jpg

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