首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Processing of an ultrafine-grained titanium by high-pressure torsion: an evaluation of the wear properties with and without a TiN coating.
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Processing of an ultrafine-grained titanium by high-pressure torsion: an evaluation of the wear properties with and without a TiN coating.

机译:通过高压扭力加工超细晶粒钛:有和没有TiN涂层时的磨损性能评估。

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摘要

A commercial purity (CP) Grade 2 Ti was processed by high-pressure torsion (HPT) using an imposed pressure of 3.0GPa at room temperature. The HPT processing reduced the grain size from ~8.6 μm in the as-received state to ultra-fine grains (UFG) of ~130 nm after HPT. Tensile testing showed the HPT-processed Ti exhibited a good combination of high ultimate tensile strength (~940 MPa) and a reasonable elongation to failure (~23%). Physical vapour deposition was used to deposit TiN coatings, with a thickness of 2.5 μm, on Ti samples both with and without HPT processing. Scratch tests showed the TiN coating on UFG Ti had a critical failure load of ~22.5 N whereas the load was only ~12.7 N for the coarse-grained Ti. The difference is explained using a simple composite hardness model. Wear tests demonstrated an improved wear resistance of TiN coating when using UFG Ti as the substrate. The results suggest that CP Ti processed by HPT and subsequently coated with TiN provides a potentially important material for use in bio-implants.
机译:在室温下,通过施加3.0GPa的高压,通过高压扭转(HPT)处理工业级(CP)2级Ti。 HPT处理将晶粒尺寸从原样状态下的约8.6μm减小为HPT后的约130 nm的超细晶粒(UFG)。拉伸试验表明,经HPT处理的Ti表现出高极限抗拉强度(〜940 MPa)和合理的断裂伸长率(〜23%)的良好组合。物理气相沉积用于在经过和不经过HPT处理的Ti样品上沉积厚度为2.5μm的TiN涂层。划痕试验表明,UFG Ti上的TiN涂层的临界破坏载荷为〜22.5 N,而粗粒Ti的载荷仅为〜12.7N。使用简单的复合硬度模型来解释差异。磨损测试表明,使用UFG Ti作为基材时,TiN涂层的耐磨性得到了改善。结果表明,由HPT处理并随后涂覆TiN的CP Ti提供了用于生物植入物的潜在重要材料。

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