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Laser Cladding of Nickel-based Alloy Coatings on Copper Substrates

机译:铜基材上镍基合金涂层的激光熔覆

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The wear resistance of high-value copper components used in the metal casting, automotive, aerospace and electrical equipment industries can be improved by applying nickel (Ni)-based coatings through laser cladding. A high-power diode laser array providing continuous power levels up to 10 kilowatts with beam-shaping optics providing a rectangular focal region of various dimensions was used to deposit Ni-based alloy coatings with controlled thickness ranging from 0.3 mm to 1.6 mm in a single pass on copper (Cu) substrates. Slotted powder feeding plates with various discrete widths delivered uniform streams of powdered metal particles entrained in a carrier gas, matching the selected focal spot dimensions. To enhance laser beam coupling with the substrate and to avoid defects such as cracks, delamination and porosity, Cu substrates were preheated to a temperature of 300°C. The effect of heat input on microstructure of the cladding and extent of the heat-affected zone (HAZ) was evaluated using optical microscopy and scanning electron microscopy. Excessive heat input with longer interaction time increased dilution, porosity and expanded HAZ that significantly reduced the hardness of both the clad and the Cu substrates. Average microhardness of the Ni-C-B-Si-W alloy coating was 572 HV, which was almost 7 times greater than the hardness of the Cu substrate (84 HV).
机译:通过激光包层施加镍(Ni)的涂层,可以改善金属铸造,汽车,航空航天和电气设备行业的高价值铜部件的耐磨性。高功率二极管激光器阵列提供高达10千瓦的高功率二极管激光器阵列,其具有提供各种尺寸的矩形焦点区域的光束整形光学器件用于将具有控制厚度的Ni基合金涂层沉积在单个中的0.3mm至1.6mm。通过铜(Cu)基材。具有各种离散宽度的开槽粉末进给板递送夹带在载气中的均匀粉末状金属颗粒,匹配所选择的焦点尺寸。为了增强与基板的激光束联接并避免诸如裂缝,分层和孔隙率的缺陷,将Cu基板预热至300℃的温度。使用光学显微镜和扫描电子显微镜评估热量输入对热影响区(HAZ)的微包层和程度的影响。过量的热输入具有更长的相互作用时间增加稀释,孔隙率和膨胀HAZ,显着降低了包层和Cu基材的硬度。 Ni-C-B-Si-W合金涂层的平均微硬度为572HV,其几乎大于Cu衬底(84HV)的硬度的7倍。

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