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Interface interactions between porous titanium/tantalum coatings, produced by Selective Laser Melting (SLM), on a cobalt-chromium alloy

机译:通过选择性激光熔化(SLM)在钴铬合金上产生的多孔钛/钽涂层之间的界面相互作用

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摘要

Porous titanium and tantalum coatings were produced on cast cobalt-chromium alloy substrate plates (Co-28 Cr-6 Mo ASTM designation F75)) using the additive manufacturing process Selective Laser Melting (SLM). Both tantalum and titanium coatings where successfully produced, however, a poor interface bond was observed with the titanium coatings on the cobalt-chrome alloy. This was due to a eutectic reaction leading to the formation of a low melting point phase OTi(CoCr) which cracks during cooling, rather than the formation of titanium carbide, as previously reported. This cracking makes titanium an unsuitable material to coat cobalt-chromium alloys using SLMI. Tantalum coatings, however, showed considerably improved performance in terms of interface compatibility when compared to titanium and therefore a Co-Cr/Ta system would seem feasible for the manufacture of porous structured devices when a bi-material approach is required. This would allow the advantages of a highly biocompatible structured coating to be combined with the mechanical performance of a less biocompatible substrate. (c) 2008 Elsevier B.V. All rights reserved.
机译:使用增材制造工艺“选择性激光熔化”(SLM)在铸造的钴铬合金基体板上(Co-28 Cr-6 Mo ASTM名称为F75)生产了多孔的钛和钽涂层。钽和钛涂层均能成功生产,但是,钴铬合金上的钛涂层观察到不良的界面结合。这是由于共晶反应导致形成的低熔点相OTi(CoCr)在冷却过程中破裂,而不是如先前报道的那样形成碳化钛。这种开裂使钛成为不适合使用SLMI涂层钴铬合金的材料。然而,与钛相比,钽涂层在界面相容性方面显示出显着改善的性能,因此,当需要双材料方法时,Co-Cr / Ta体系对于制造多孔结构器件似乎是可行的。这将允许高度生物相容性的结构涂层的优点与生物相容性较低的基材的机械性能相结合。 (c)2008 Elsevier B.V.保留所有权利。

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