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Influence of plasma and cold spray deposited Ti Layers on high-cycle fatigue properties of Ti6Al4V substrates

机译:等离子和冷喷涂沉积Ti层对Ti6Al4V衬底高循环疲劳性能的影响

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This paper presents a summary of the research on the influence of plasma and cold spray deposition of bio-grade Ti powder on the high-cycle fatigue properties of Ti6Al4V substrates.Four sets of flat specimens (as-received, grit-blasted, plasma and cold sprayed) were prepared and subjected to cantilever-beam cyclic bend loading with a constant deflection of the free end.It was found that the grit-blasting procedure significantly increased the fatigue lives of the specimens compared to the as-received set (1.81. × increase). The deposition of the coatings onto grit-blasted specimens led to deterioration of fatigue properties. The average fatigue lives of the plasma sprayed and cold sprayed samples reached 1.16. × and 0.91. × of the as-received specimens, respectively.In order to understand the positive effect of the grit-blasting procedure and the adverse effect of the coatings deposition on fatigue lives, chemical analyses, fractographic analysis, microstructural investigations as well as layers elastic moduli estimation were carried out. It was found that the cold spray deposition retained the composition of the powder feedstock while a complete transformation of Ti into nitrides and oxides was detected in the plasma deposited layers. Owing to the different coating build-up principles and their respective different porosity levels, the moduli of the coatings were found to vary (7.2. GPa for plasma sprayed and 36.7. GPa for cold sprayed layers). The fatigue crack initiation sites and propagation directions in the plasma and cold sprayed specimens were found to differ substantially. Based on the obtained results, two explanations of the fatigue loading results are suggested in the paper.
机译:本文概述了生物级钛粉的等离子体和冷喷涂沉积对Ti6Al4V衬底的高周疲劳性能的影响的研究概况。四组扁平试样(按接收,喷砂处理,等离子体和进行冷喷涂),并在悬臂梁的周期性弯曲载荷下,使自由端保持恒定的挠度,发现喷砂工艺比原样(1.81)显着延长了样品的疲劳寿命。 ×增加)。涂层在喷砂试样上的沉积导致疲劳性能下降。等离子喷涂和冷喷涂样品的平均疲劳寿命达到1.16。 ×和0.91。为了分别了解喷砂处理的积极作用和涂层沉积对疲劳寿命的不利影响,化学分析,分形分析,显微组织研究以及层的弹性模量估计被执行。发现冷喷涂沉积保留了粉末原料的组成,而在等离子体沉积层中检测到Ti完全转变成氮化物和氧化物。由于不同的涂层堆积原理和各自不同的孔隙率水平,发现涂层的模量有所不同(等离子喷涂为7.2 GPa,冷喷涂层为36.7 GPa)。发现等离子和冷喷涂样品中的疲劳裂纹萌生部位和传播方向存在很大差异。根据获得的结果,本文对疲劳载荷结果提出了两种解释。

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