A'/> Porosity elimination and heat treatment of diode laser-clad homogeneous coating on cast aluminum-copper alloy
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Porosity elimination and heat treatment of diode laser-clad homogeneous coating on cast aluminum-copper alloy

机译:铸铝 - 铜合金二极管激光包覆均匀涂层的孔隙率消除和热处理

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Abstract Laser cladding of homogeneous coating onto ZL205A substrate by using a high-power diode laser was investigated in order to repair casting defects of ZL205A aluminum alloy. Single and multi-layer laser cladding was carried out to optimize laser process parameters. Pores on the cross-sections of the laser-clad coatings were chain-like and distributing along the bottom of the molten pool. Lower powder feed rate and relatively higher laser power were helpful in eliminating porosity defects, and pores larger than 100μm in diameter were successfully eliminated by optimizing laser and material parameters. The microstructure of the laser-clad coating was columnar and columnar dendrite structures with reticular Al2Cu phase precipitating in the grain boundary. The microhardness of the laser-clad coating (about 75HV) was significantly lower than that of the substrate (about 152HV), and could be improved to about 134HV after suitable solution treatment afterward artificial aging treatment, which was helpful to the restoration of coatings' mechanical properties. Highlights
机译:<![cdata [ 抽象 通过使用高功率二极管激光研究通过使用高功率二极管激光将均匀涂层的激光包层覆盖以修复铸造ZL205A铝合金的缺陷。进行单层和多层激光覆层以优化激光工艺参数。激光包覆涂层的横截面上的孔被链状和沿熔池底部分布。降低粉末进料速率和相对较高的激光功率有助于消除孔隙率缺陷,通过优化激光和材料参数,成功地消除了直径大于100 μm的孔。激光包覆涂层的微观结构是柱状和柱状树枝状结构,具有网状Al 2> 2 Cu相位,在晶界中沉淀。激光包覆涂层的显微硬度(约75 hv)显着低于基材(约152 hv),和可以改善到约134 HV后,在适当的溶液处理后的后人工老化处理,这有助于恢复涂层的机械性能。 亮点

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