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- W2089492048 abstract "Polishing wear behavior of surface-modified Ti-6Al-4V was investigated using microindentation techniques. Wear rates of Ti-6Al-4V, polished with 3 μm diamond paste on cloth, varied by more than a factor of 100, depending on the ion beam treatment. C+ implantation into polished Ti-6Al-4V increased the wear resistance by a factor of about 70. C+-implanted layers, however, wore non-uniformly, with a disproportionate amount of mass lost at spots where the implanted layer was breached. In contrast, ion milling, which removed 0.5 μm of the polished surface layer, reduced the wear resistance by a factor of 2.5 initially; continued polishing through the next 0.2 μm of the surface brought a gradual rise in the wear resistance to the steady state value. Microindentation measurements indicated that the C+-implanted surfaces had 3 times the hardness and 4 times the elastic recovery of the polished surface, whereas ion-milled surfaces were 40% softer and had the same elastic recovery. The polishing behavior of metal-like layers therefore followed classical abrasive wear models, i.e. wear resistance proportional to surface hardness. A model for the non-uniform wear of polished Ti-6Al-4V surfaces, supported by microindentation hardness data, is described." @default.
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- W2089492048 date "1988-12-01" @default.
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- W2089492048 title "Polishing wear behavior and surface hardness of ion-beam-modified Ti-6Al-4V" @default.
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- W2089492048 doi "https://doi.org/10.1016/0257-8972(88)90180-6" @default.
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