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Influence of Process Parameters on the Microstructure, and Geometrical Characteristics of Laser Additive Manufactured (LAM) Titanium Alloy Composite Coatings

机译:工艺参数对运动添加剂(LAM)钛合金复合涂料的微观结构的影响和几何特征

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The study experimentally investigates the effects of Ytterbium Laser System process parameters on the resultant microstructure of Ti-6Al-4V grade 5 alloy and reinforcement powders. The deposition process was conducted employing a 3 kW (CW) Ytterbium Laser System (YLS-2000-TR) machine, coaxial to the reinforcement powder. The laser scanning speed and power were varied between the intervals of 0.8-1.0 m/min and 900-1000 W. All other parameters kept constant were the rate of gas flow, the spot diameter, and the rate of powder flow. Metallurgical studies were conducted where all the samples microstructure was characterized by employing Scanning Electron Microscopy (SEM) and Optical Microscopy (OM). The results showed that a minimum porosity was achieved at high laser power complemented with low powder feed rate. The microstructure formed was dominated by columnar grains and martensitic needle-like structures with a formation of beta phase. It was observed that the microstructure was influenced significantly by the two laser speed modes, and the laser power. The grain size and phase structure were influenced significantly by the laser power; increasing it had resulted in larger grains, and a coarser microstructure. The results also showed that the residual stresses of the optimized specimens were compressive.
机译:该研究通过实验研究了镱激光系统工艺参数对Ti-6Al-4V级合金和增强粉末的所得微观结构的影响。进行沉积工艺,采用3千瓦(CW)YTTerbium激光系统(YLS-2000-TR)机,对加强粉末同轴。在0.8-1.0 m / min的间隔和900-1000W之间的间隔之间变化激光扫描速度和功率。所有其他参数保持恒定是气体流动速率,光斑直径和粉末流量的速率。通过采用扫描电子显微镜(SEM)和光学显微镜(OM),进行冶金研究的特征在于所有样品微观结构。结果表明,在高激光功率互补的高激光功率下实现了最小孔隙率。形成的微观结构由柱状晶粒和马氏体针状结构以β相的形成为主。观察到微观结构由两个激光速度模式和激光功率显着影响。通过激光功率显着影响晶粒尺寸和相位结构;增加它导致较大的晶粒和较粗糙的微观结构。结果还表明,优化标本的残余应力是压缩的。

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