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Welding shape memory alloys with NdYAG lasers

机译:用NdYAG激光焊接形状记忆合金

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The demand of emerging joining techniques for shape memory alloys (SMA) has become of great importance, as their functional properties namely shape memory effect (SME) and superelasticity (SE) present unique solutions for state-of-the-art applications. Welding of SMAs is a challenge due to the risk of reduced mechanical performance after laser processing. The wider application of these alloys in various sectors as aerospace, medical or electronic industry is hindered by the limitations in its processing. The need to weld SMAs to other materials is pressing for applications in the above referred sectors. In dissimilar joints the need to understand materials behavior is even more challenging since base materials have different physical properties leading to different heat flow, convection processes and residual stress distribution. The chemical composition across the weld pool varies and intermetallic compounds are formed. Research detailing the effects of laser processing on NiTi is essential to overcome many of these challenges. The objectives of the current study are to analyze the effects of laser welding in the weld shape of both similar and dissimilar joints of NiTi to stainless steel and titanium alloys.
机译:对形状记忆合金(SMA)的新兴接合技术的需求已变得至关重要,因为它们的功能特性即形状记忆效应(SME)和超弹性(SE)为最新应用提供了独特的解决方案。由于激光加工后机械性能降低的风险,SMA的焊接是一项挑战。这些合金在加工过程中的局限性阻碍了它们在航空航天,医疗或电子工业等各个领域的广泛应用。对于将SMA焊接到其他材料上的需求对于在上述领域中的应用是迫切的。在不同的接头中,了解材料性能的需求甚至更具挑战性,因为基础材料具有不同的物理特性,从而导致不同的热流,对流过程和残余应力分布。整个熔池中的化学成分会发生变化,并形成金属间化合物。详尽研究激光加工对NiTi的影响对于克服许多挑战至关重要。当前研究的目的是分析激光焊接对NiTi与不锈钢和钛合金的相似和不相似接头的焊接形状的影响。

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