钛合金激光熔覆研究进展

Salaminah Bonolo Boshoman, O. Fatoba, T. Jen
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引用次数: 1

摘要

多年来,钛和钛合金在生物医学、汽车、航空航天、海洋、能源和化学工业等许多行业的材料选择上有所增加。需求钛的主要原因是其性能组合性强;优异的耐腐蚀性、疲劳强度、低密度、生物相容性、高断裂韧性、易成形性。TiAl4V是最受欢迎的钛合金,不仅因为其优异的性能,而且因为它是迄今为止所有钛合金中研究最多的合金。这使合金具有很大的优势,因为它通过不同的加工技术不断地被研究,以获得更好和改进的性能。制造钛和钛合金的加工技术包括传统的、静止的和增材制造的方法。大量的研究表明,传统的方式浪费了时间、精力和材料,因此在过去的十年里,越来越多的投资转向了替代方式。本文综述了增材制造方法——激光熔覆。这是一种用于金属工具表面改性的技术,主要用于磨蚀和腐蚀性能要求的应用规范。遗憾的是,尽管钛具有优异的性能,但它也不是没有不足之处,在摩擦学相关行业中,钛在表面硬度、摩擦系数和磨损方面都没有保持良好的性能,这限制了钛的普及和应用。因此,对Ti6Al4V合金的强化进行持续的研究具有重要的意义。本文综述了为改善钛金属激光熔覆问题而进行的研究。对研究结果进行了回顾和总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser Cladding of Titanium Alloys: A Review
Over the years, titanium and titanium alloys have seen a rise in choice of material for many industries such as, biomedical, automotive, aerospace, marine, energy, and chemical industries. The main reason for the demand for titanium is its great combination of properties; excellent corrosion resistance, fatigue strength, low density, biocompatibility, high fracture toughness, and easy formability. TiAl4V is the most popular of the titanium alloys not only because of its excellent properties but also because it is by far the most studied alloy of all the titanium alloys. This gives the alloy a great advantage as it is continuously investigated through different processing techniques for better and improved performance. Processing techniques for the fabrication of titanium and titanium alloys include both conventional, still and additive manufacturing methods. Plenty research shows that conventional ways result in wasted time, energy and material hence more and more investment has gone into alternative ways over the past decade. The paper reviews the additive manufacturing method, laser cladding. This is a technique employed for surface modification of metallic tools which is mainly used when abrasive and corrosive behaviour is the required specification for application. Unfortunately, despite its excellent exhibition of properties, titanium is not without shortfalls, in the tribology-related industry, titanium fails to uphold good performance for surface hardness, friction coefficient and wear which limits their popularity and application. For this reason, the continual research and investigation for the enhancement of Ti6Al4V alloy is of great importance. This review is a collection of investigations that have been attempted with the objective of improving the problems of the titanium metals through laser cladding. The findings are reviewed and summarized.
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