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Design and Manufacturing Considerations for Shockproof and Corrosion-Immune Superelastic Nickel-Titanium Bearings for a Space Station Application

机译:空间站应用中抗震和耐腐蚀的超弹性镍钛轴承的设计和制造注意事项

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An intermetallic nickel-titanium alloy, 60NiTi (60wt%Ni, 40wt%Ti), is a promising tribological material for space mechanisms. 60NiTi offers a broad combination of physical properties that make it unique among bearing materials. 60NiTi is hard, electrically conductive, highly corrosion resistant, readily machined prior to final heat treatment, easily lubricated and is non-magnetic. It also falls within the class of superelastic alloys and can elastically endure large strains (beyond 5%) making it highly resistant to excessive and unexpected (shock) loads. Key material properties and characteristics such as elastic modulus, tensile fracture sensitivity and residual stress behavior, however, differ from conventional alloys such as steel and this significantly affects bearing design and manufacturing. In this paper, the preliminary design and manufacture of ball bearings made from 60NiTi are considered for a highly corrosive, lightly loaded, low speed bearing application found inside the International Space Station's water recyling system The information presented is expected to help guide more widespread commercilization of this new technology into space mechanism and other applications.
机译:一种金属间镍钛合金60NiTi(60wt%Ni,40wt%Ti)是一种有前途的摩擦材料,可用于空间机理。 60NiTi提供了广泛的物理性能组合,使其在轴承材料中独树一帜。 60NiTi坚硬,导电,高度耐腐蚀,在最终热处理之前易于机械加工,易于润滑并且是非磁性的。它也属于超弹性合金范畴,并且可以弹性地承受较大的应变(超过5%),从而使其对过量和意外(冲击)载荷具有很高的抵抗力。但是,关键的材料特性和特性(例如弹性模量,拉伸断裂敏感性和残余应力行为)与常规合金(例如钢)不同,这会显着影响轴承的设计和制造。在本文中,由60NiTi制成的球轴承的初步设计和制造被认为是在国际空间站回水系统中发现的一种高腐蚀性,轻载,低速轴承应用。所提供的信息有望帮助指导更广泛的商用化。这项新技术进入了太空机制等应用领域。

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