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Influence of deposition strategy on the microstructure and fatigue properties of laser metal deposited Ti-6Al-4V powder on Ti-6Al-4V substrate

机译:沉积策略对在Ti-6Al-4V衬底上激光沉积金属Ti-6Al-4V粉末的组织和疲劳性能的影响

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摘要

Fatigue testing was conducted to investigate the potential of applying Laser Metal Deposition (LMD) as a repair method for Ti-6Al-4V aerospace components. Ti-6Al-4V powder was laser deposited on Ti-6Al-4V specimens with two different deposition strategies: a raster pattern with a continuous deposit (LMD-1) and a raster pattern deposit with an inter-track pause (LMD-2). The results showed fatigue lives of LMD-1 were higher when compared to LMD-2. This was mainly due to the high number of defects in LMD-2, mostly lack of fusion (LOF) defects. Despite the high number of defects, fracture surfaces for both LMD-1 and LMD-2 showed initiation to be from oxygen enriched inclusions, which could be related to contamination. This study shows the deposition strategy influences fatigue lives when laser depositing Ti-6Al-4V powder on Ti-6Al-4V substrate and there are possibilities of oxygen and nitrogen related inclusions that introduce brittle regions that are more detrimental to the fatigue performance than LOF defects or gas pores.
机译:进行了疲劳测试,以研究应用激光金属沉积(LMD)作为Ti-6Al-4V航空航天部件的修复方法的潜力。用两种不同的沉积策略将Ti-6Al-4V粉末激光沉积在Ti-6Al-4V样品上:具有连续沉积的光栅图案(LMD-1)和具有轨道间停顿的光栅图案沉积(LMD-2) 。结果表明,与LMD-2相比,LMD-1的疲劳寿命更长。这主要是由于LMD-2中的缺陷数量很多,主要是缺乏融合(LOF)缺陷。尽管缺陷数量很多,但LMD-1和LMD-2的断裂表面均始于富氧夹杂物,这可能与污染有关。这项研究表明,当在Ti-6Al-4V衬底上激光沉积Ti-6Al-4V粉末时,沉积策略会影响疲劳寿命,并且氧和氮相关的夹杂物可能会引入比LOF缺陷更不利于疲劳性能的脆性区域或气孔。

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