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Microstructure and corrosion behavior of high power diode laser deposited Inconel 625 coatings

机译:大功率二极管激光沉积Inconel 625涂层的组织和腐蚀行为

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A series of experiments were performed to investigate the one-step laser cladding of Inconel 625 powder, injected off-axially onto mild steel substrates. The experiments were carried out using a 6 kW high power diode laser mounted to a six axis robot system. The rectangular shape of the delivering beam was focused to a spot size of 22 mm X 5 mm on the work piece. The powder feeding head, which consisted of a cyclone and flat nozzle, spread the powder stream to a spot size used. The coating samples were produced using different levels of powder feed rate (77―113 g/min), constant traveling speed of 400 mm/min, and laser power of 6 kW. Powder and laser-clad coating microstructures were studied by x-ray diffraction, scanning electron, and optical microscopy. The coating microstructure was found to consist of a directionally solidified single phase (highly alloyed Ni), face-centered cubic structure with a lattice parameter of 0.3596 nm. The corrosion resistance of the one-step laser-clad coatings was tested in 3.5 wt% NaCl using electrochemical methods. Laser-clad coating was compared with wrought Inconel 625 alloy, high-velocity oxy-fuel sprayed, and plasma transferred arc welded coatings. The corrosion resistance of laser-clad coatings was found to be equivalent to corresponding bulk material and superior to sprayed and welded coatings.
机译:进行了一系列实验,研究了Inconel 625粉末的单步激光熔覆,将其轴向离轴注入到低碳钢基材上。使用安装在六轴机器人系统上的6 kW大功率二极管激光器进行了实验。传送光束的矩形形状聚焦在工件上的光斑尺寸为22 mm X 5 mm。由旋风除尘器和扁平喷嘴组成的粉末进料头将粉末流散布到使用的斑点大小。使用不同水平的粉末进料速度(77-113 g / min),400 mm / min的恒定行进速度和6 kW的激光功率生产涂层样品。通过X射线衍射,扫描电子和光学显微镜研究了粉末和激光熔覆涂层的微观结构。发现涂层的微观结构由定向凝固的单相(高度合金化的Ni),面心立方结构和晶格参数为0.3596 nm组成。使用电化学方法在3.5 wt%NaCl中测试了一步激光熔覆涂层的耐腐蚀性。将激光熔覆涂层与变形的Inconel 625合金,高速氧燃料喷涂和等离子转移弧焊涂层进行了比较。发现激光熔覆涂层的耐腐蚀性与相应的块状材料相同,并且优于喷涂和焊接的涂层。

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