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Microstructural Characterization and Mechanical Behavior of NiTi Shape Memory Alloys Ultrasonic Joints Using Cu Interlayer

机译:铜中间层的NiTi形状记忆合金超声接头的显微组织表征和力学行为

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摘要

NiTi shape memory alloys (SMAs) are a class of functional materials which can be significantly deformed and recover their original shape via a reversible martensitic phase transformation. Developing effective joining techniques can expand the application of SMAs in the medical and engineering fields. In this study, ultrasonic spot welding (USW), a solid-state joining technique, was used to join NiTi sheets using a Cu interlayer in between the two joining sheets. The influence of USW process on the microstructural characteristics and mechanical behavior of the NiTi joints was investigated. Compared with conventional fusion welding techniques, no intermetallic compounds formed in the joints, which is extreme importance for this particular class of alloys. The joining mechanisms involve a combination of shear plastic deformation, mechanical interlocking and formation of micro-welds. A better bonding interface was obtained with higher welding energy levels, which contributed to a higher tensile load. An interfacial fracture mode occurred and the fracture surfaces exhibited both brittle and ductile-like characteristics with the existence of tear ridges and dimples. The fracture initiated at the weak region of the joint border and then propagated through it, leading to tearing of Cu foil at the fracture interface.
机译:NiTi形状记忆合金(SMA)是一类功能材料,可以通过可逆马氏体相变使其显着变形并恢复其原始形状。开发有效的连接技术可以扩大SMA在医学和工程领域的应用。在这项研究中,采用固态连接技术超声点焊(USW),通过在两个连接板之间使用Cu夹层来连接NiTi板。研究了USW工艺对NiTi接头组织和力学行为的影响。与传统的熔焊技术相比,在接头中没有形成金属间化合物,这对于这类特殊的合金极为重要。连接机制包括剪切塑性变形,机械互锁和微焊缝的形成。较高的焊接能级可获得更好的粘结界面,这有助于较高的拉伸载荷。出现界面断裂模式,并且断裂表面既具有脆性又具有延展性,并具有撕裂脊和凹痕。断裂始于关节边界的薄弱区域,然后通过它传播,导致断裂界面处的铜箔撕裂。

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