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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Laser Autogenous Brazing of Biocompatible, Dissimilar Metals in Tubular Geometries
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Laser Autogenous Brazing of Biocompatible, Dissimilar Metals in Tubular Geometries

机译:激光自体钎焊在管状几何形状中的生物相容性,不同金属

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摘要

The successful joining of dissimilar metal tubes would enable the selective use of the unique properties exhibited by biocompatible materials such as stainless steel and shape memory materials, such as NiTi, to locally tailor the properties of implantable medical devices. The lack of robust joining processes for the dissimilar metal pairs found within these devices, however, is an obstacle to their development and manufacture. Traditional joining methods suffer from weak joints due to the formation of brittle intermetallics or use filler materials that are unsuitable for use within the human body. This study investigates a new process, Laser Autogenous Brazing, that utilizes a thermal accumulation mechanism to form joints between dissimilar metals without filler materials. This process has been shown to produce robust joints between wire specimens but requires additional considerations when applied to tubular parts. The strength, composition, and microstructure of the resultant joints between NiTi and stainless steel are investigated and the effects of laser parameters on the thermal profile and joining mechanism are studied through experiments and numerical simulations.
机译:不同的金属管的成功连接可以选择性地使用由生物相容性材料(如不锈钢和形状记忆材料)(例如NITI)展示的独特性能,以局部定制植入医疗装置的性质。然而,在这些装置中发现的不同金属对缺乏鲁棒连接过程是其开发和制造的障碍。由于脆性金属间质或使用不适合在人体内使用的填充材料,传统的加入方法患有弱的关节。本研究调查了一种新的方法,激光自生钎焊,它利用热累积机制,在没有填充材料的不相似金属之间形成关节。该过程已被证明在电线标本之间产生鲁棒的关节,而是在施加到管状部件时需要额外的考虑因素。研究了NITI和不锈钢之间所得关节的强度,组成和微观结构,并通过实验和数值模拟研究了激光参数对热曲线和连接机构的影响。

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