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Fibre laser nitriding of titanium and its alloy in open atmosphere for orthopaedic implant applications: Investigations on surface quality, microstructure and tribological properties

机译:钛及其合金在露天大气中的纤维激光渗氮用于整形外科植入物:表面质量,微观结构和摩擦学性能的研究

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摘要

Laser nitriding is known to be an effective method to improve the surface hardness and wear resistance of titaniumand its alloys. However, the process requires a gas chamber and this greatly limits the practicability fortreating orthopaedic implants which involve complex-shaped parts or curved surfaces, such as the tapered surfacein a femoral stemor the ball-shaped surface in a femoral head. To tackle this problem, a direct laser nitridingprocess in open atmosphere was performed on commercially pure titanium (grade 2, TiG2) and Ti6Al4V alloy(grade 5, TiG5) using a continuous-wave (CW) fibre laser. The effects of varying process parameters, for instancelaser power and nitrogen pressure on the surface quality, namely discolouration were quantified using ImageJanalysis. The optimised process parameters to produce the gold-coloured nitride surfaces were also identified:40W(laser power), 25mm/s (scanning speed), 1.5mm(standoff distance) and 5 bar (N2 pressure). Particularly,N2 pressure at 5 barwas found to be the threshold above which significant discolouration will occur. The surfacemorphology, composition, microstructure, micro-hardness, and tribological properties, particularly hydrodynamicsize distribution of wear debris, were carefully characterized and compared. The experimental resultsshowed that TiG2 and TiG5 reacted differently with the laser radiation at 1.06 μm wavelength in laser nitridingas evidenced by substantial differences in the microstructure, and surface colour and morphology. Furthermore,both friction andwear properties were strongly affected by the hardness and microstructure of titaniumsamplesand direct laser nitriding led to substantial improvements in their wear resistant properties. Between the twotypes of titanium samples, bare TiG2 showed higher friction forces and wear rates, but this trend was reversedafter laser nitriding treatments.
机译:已知激光氮化是提高钛及其合金的表面硬度和耐磨性的有效方法。然而,该方法需要气室,这极大地限制了对整形外科植入物进行治疗的实用性,该整形外科植入物涉及复杂形状的部分或弯曲的表面,例如股骨柄中的锥形表面或股骨头中的球形表面。为了解决这个问题,使用连续波(CW)光纤激光器在商业纯钛(等级2,TiG2)和Ti6Al4V合金(等级5,TiG5)上在露天气氛中进行了直接激光氮化工艺。使用ImageJanalysis量化了各种工艺参数(例如激光功率和氮气压力)对表面质量(即变色)的影响。还确定了产生金色氮化物表面的最佳工艺参数:40W(激光功率),25mm / s(扫描速度),1.5mm(对峙距离)和5 bar(N2压力)。特别地,发现在5巴的N 2压力是阈值,高于该阈值将发生明显的变色。仔细表征并比较了表面形态,组成,显微组织,显微硬度和摩擦学性能,特别是磨损碎片的流体动力学尺寸分布。实验结果表明,TiG2和TiG5在激光氮化中与1.06μm波长的激光辐射反应不同,这在微观结构,表面颜色和形态上存在明显差异。此外,钛样品的硬度和微观结构对摩擦和磨损性能都有很大的影响,直接激光氮化处理导致其耐磨性大大提高。在两种类型的钛样品之间,裸露的TiG2表现出较高的摩擦力和磨损率,但是在进行激光氮化处理后,这种趋势得以逆转。

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