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Wear of Steel and Ti6Al4V Rollers in Vacuum

机译:真空钢和Ti6Al4V滚筒磨损

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This investigation was prompted by results of a qualification test of a mechanism to be used for the James Webb Space Telescope. Post-test inspections of the qualification test article revealed some loose wear debris and wear of the steel rollers and the mating Ti6AI4V surfaces. An engineering assessment of the design and observations from the tested qualification unit suggested that roller misalignment was a controlling factor. The wear phenomena were investigated using dedicated laboratory experiments. Tests were done using a vacuum roller rig for a range of roller misalignment angles. The wear in these tests was mainly adhesive wear. The measured wear rates were highly correlated to the misalignment angle. For all tests with some roller misalignment, the steel rollers lost mass while the titanium rollers gained mass indicating strong adhesion of the steel with the titanium alloy. Inspection of the rollers revealed that the adhesive wear was a two-way process as titanium alloy was found on the steel rollers and vice versa. The qualification test unit made use of 440F steel rollers in the annealed condition. Both annealed 440F steel rollers and hardened 440C rollers were tested in the vacuum roller rig to investigate possibility to reduce wear rates and the risk of loose debris formation. The 440F and 440C rollers had differing wear behaviors with significantly lesser wear rates for the 440C. For the test condition of zero roller misalignment, the adhesive wear rates were very low, but still some loose debris was formed.
机译:通过对詹姆斯韦伯太空望远镜的机制的资格测试的结果提示了这项调查。测试后检验鉴定试验文章揭示了一些松散的磨损碎片和钢辊和配合Ti6ai4V表面的磨损。从测试资格单元的设计和观察的工程评估表明滚子未对准是一个控制因素。使用专用实验室实验研究了磨损现象。使用真空辊子进行测试,用于一系列滚子未对准角度。这些测试中的磨损主要是粘合剂磨损。测量的磨损率与未对准角度高度相关。对于所有具有一些滚子未对准的测试,钢辊损失质量,而钛辊占据钢与钛合金的强粘附性。检查辊的检查显示,粘合剂磨损是双向过程,因为在钢辊上发现钛合金,反之亦然。资格测试单元在退火条件下采用440F钢辊。退火的440F钢辊和硬化的440C辊在真空辊子里测试,以研究减少磨损率和松散碎片形成的风险的可能性。 440F和440C辊具有不同的磨损行为,对于440℃具有显着较小的磨损率。对于零辊未对准的测试条件,粘合剂磨损率非常低,但仍然形成一些松散的碎片。

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