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Enhancement of wear and corrosion resistance of beta titanium alloy by laser gas alloying with nitrogen

机译:用氮气激光合金化增强β钛合金的耐磨性和耐腐蚀性

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摘要

The relatively high elastic modulus coupled with the presence of toxic vanadium (V) in Ti6Al4V alloy has long been a concern in orthopaedic applications. To solve the problem, a variety of non-toxic and low modulus beta-titanium (beta-Ti) alloys have been developed. Among the beta-Ti alloy family, the quaternary Ti-Nb-Zr-Ta (TNZT) alloys have received the highest attention as a promising replacement for Ti6Al4V due to their lower elastic modulus and outstanding long term stability against corrosion in biological environments. However, the inferior wear resistance of TNZT is still a problem that must be resolved before commercialising in the orthopaedic market. In this work, a newly developed laser surface treatment technique was employed to improve the surface properties of Ti-35.3Nb-7.3Zr-5.7Ta alloy. The surface structure and composition of the laser-treated TNZT surface were examined by grazing incidence X-ray diffraction (GI-XRD) and X-ray photoelectron spectroscopy (XPS). The wear and corrosion resistance were evaluated by pin-on-plate sliding test and anodic polarisation test in Hanks’ solution. The experimental results were compared with the untreated (or base) TNZT material. The research findings showed that the laser surface treatment technique reported in this work can effectively improve the wear and corrosion resistance of TNZT.
机译:Ti6Al4V合金中相对较高的弹性模量以及有毒钒(V)的存在一直是整形外科应用中关注的问题。为了解决该问题,已经开发了多种无毒且低模量的β-钛(β-Ti)合金。在β-Ti合金家族中,四元Ti-Nb-Zr-Ta(TNZT)合金因其较低的弹性模量和出色的在生物环境中对腐蚀的长期稳定性而备受瞩目,有望替代Ti6Al4V。但是,在骨科市场上商业化之前,TNZT的劣质耐磨性仍然是一个必须解决的问题。在这项工作中,采用了新开发的激光表面处理技术来改善Ti-35.3Nb-7.3Zr-5.7Ta合金的表面性能。通过掠入射X射线衍射(GI-XRD)和X射线光电子能谱(XPS)检查了经激光处理的TNZT表面的表面结构和组成。通过Hanks溶液中的销钉板滑动测试和阳极极化测试评估了耐磨性和耐腐蚀性。将实验结果与未处理(或基础)的TNZT材料进行了比较。研究发现表明,这项工作中报道的激光表面处理技术可以有效地提高TNZT的耐磨性和耐腐蚀性。

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