首页> 外文会议>Laser Materials Processing Conference ICALEO '99 Pt.2, Nov 15-18, 1999, San Diego, CA USA >Laser Cladding with Continuous Ni-Al Bronze Wire Feeding for Repairing Marine Components
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Laser Cladding with Continuous Ni-Al Bronze Wire Feeding for Repairing Marine Components

机译:激光熔覆镍-铝青铜连续送丝修复船舶部件

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Laser cladding of a Ni-Al bronze layer on a bronze substrate has been investigated for repairing marine components. The laser cladding was conducted using a 3 kW cw CO_2 laser with simultaneous feeding of the Ni-Al bronze wire into the molten pool. The geometry and microstructure of the laser-clad layer depend on laser processing parameters. With optimized processing parameters, a relatively uniform and smooth clad layer is obtained. The microstructure of the laser-clad layer was studied with optical microscope and X-ray diffraction (XRD) techniques. The hardness of the clad layer is substantially higher than that of the substrate bronze. However, the hardness in the clad layer is significantly affected by the laser heat input as well as the substrate cooling effect. Experimental results show that the hardness in the laser-clad layer reduces with the increased heat input. Tensile residual stresses on the surface of the laser-clad layer were determined by using an XRD method. Electrochemical polarization testing in a 3.5% NaCl solution shows that the corrosion resistance of the laser-clad layer is similar to that of substrate bronze.
机译:已经研究了在青铜基体上激光熔覆镍铝青铜层以修复海洋组件的问题。激光熔覆是使用3 kW cw CO_2激光器进行的,同时将Ni-Al青铜线送入熔池中。激光熔覆层的几何形状和微观结构取决于激光加工参数。通过优化的加工参数,可以获得相对均匀且光滑的覆层。用光学显微镜和X射线衍射(XRD)技术研究了激光熔覆层的微观结构。覆盖层的硬度明显高于基底青铜的硬度。但是,熔覆层的硬度受到激光热输入以及基板冷却效果的显着影响。实验结果表明,随着热量输入的增加,激光熔覆层的硬度降低。通过使用XRD方法确定在激光熔覆层的表面上的拉伸残余应力。在3.5%NaCl溶液中进行电化学极化测试表明,激光熔覆层的耐蚀性与基底青铜的相似。

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