In-situ synthesis of TiC/Ti-6Al-4V-ELI composite by laser

P. Ramasobane, P. Mashinini, B. Masina
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引用次数: 1

Abstract

Titanium-based alloys are reported to offer up to 50% strength to weight ratio. These lands titanium-based alloys as a preferred material over steel and nickel-base super-alloys, where strength and stiffness are required. Regardless titanium-based alloys are prone to losing strength and stiffness at elevated temperature applications such as jet engines. This prompted a need for titanium matrix to be braced with a material with superior properties, such as ceramic. In-situ synthesis with laser metal deposition (LMD) of Ti-6Al-4V-ELI braced with discontinuous particulates of TiC resulted in improved hardness and microstructure. It is reported that an increase in the feed rate of TiC during the LMD process directly increases the hardness of the TiC/Ti-6Al-4V-ELI composite and refine the grain size of Ti-6Al-4V-ELI. Various fabrication methods and properties of Ti-6Al-4V are well documented in the literature. This paper focuses on the effect of TiC on the microstructure and hardness of Ti-6Al-4V-ELI.
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激光原位合成TiC/Ti-6Al-4V-ELI复合材料
据报道,钛基合金的强度重量比高达50%。在需要强度和刚度的地方,钛基合金比钢和镍基超级合金更受青睐。然而,钛基合金在高温应用(如喷气发动机)中容易失去强度和刚度。这促使人们需要用一种性能优越的材料(如陶瓷)来支撑钛基体。采用激光金属沉积(LMD)方法原位合成Ti-6Al-4V-ELI,使其具有不连续TiC颗粒,提高了硬度和显微组织。据报道,在LMD过程中,TiC进料速率的增加直接提高了TiC/Ti-6Al-4V-ELI复合材料的硬度,细化了Ti-6Al-4V-ELI的晶粒尺寸。Ti-6Al-4V的各种制备方法和性能在文献中有很好的记载。研究了TiC对Ti-6Al-4V-ELI显微组织和硬度的影响。
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