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Evaluation of mechanical and electrochemical properties of laser surface modified Ti-6Al-4V for biomedical applications: in vitro study

机译:生物医学应用激光表面改性的Ti-6Al-4V的机械和电化学性能评估:体外研究

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摘要

The effect of Nd:YAG laser surface modification on the microtopography and physicochemical properties of Ti-6Al-4V alloy has been investigated with a view of biomedical applications. The surface roughness and hardness of laser treated samples at 140 J cm−2 were found to be 7±0·02 and 825 VHN respectively. The superior microhardness value can be attributed to grain refinement associated with laser melting and rapid solidification. The electrochemical property, mainly pitting corrosion resistance, has been carried out in Hank's salt balanced physiological solution using standard potentiodynamic polarisation testing. A higher corrosion potential of −0·21 V was achieved for laser treated samples. At the optimum of laser fluence (140 J cm−2), energy dispersive X-ray analysis showed about a 30% decrease in vanadium content. Contact angle measurements also indicated improved surface wettability (i.e. hydrophilicity) characteristics at 35°. Finally, cell culture studies provided a useful tool to investigate the morphology and cell cytotoxicity of the laser treated surfaces.
机译:从生物医学应用的角度研究了Nd:YAG激光表面改性对Ti-6Al-4V合金的微观形貌和理化性能的影响。经激光处理的样品在140 J cm -2 的表面粗糙度和硬度分别为7±0·02和825 VHN。优异的显微硬度值可归因于与激光熔化和快速凝固相关的晶粒细化。电化学性能,主要是抗点腐蚀性能,已在Hank盐平衡生理溶液中使用标准的电位极化测试进行了测试。激光处理过的样品的腐蚀电位更高,为-0.21V。在最佳激光通量(140 J cm −2 )下,能量色散X射线分析表明钒含量降低了约30%。接触角的测量还表明在35°时改善的表面润湿性(即亲水性)特性。最后,细胞培养研究为研究激光处理表面的形态和细胞毒性提供了有用的工具。

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