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Statistical analysis and optimization of processing parameters in high-power direct diode laser cladding

机译:大功率直接二极管激光熔覆工艺参数的统计分析与优化

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High-power direct diode laser (HPDDL) offers a wide laser beam with a top-hat intensity distribution, making it an ideal tool for large-area cladding. In this study, a systemic study on the HPDDL cladding process was carried out by depositing Fe-based powder on ASTM A36 steel substrate. The effects of input processing parameters (laser power, powder feeding rate, carrier-gas flow rate, and stand-off distance) on the output responses (powder catchment efficiency, clad height, and clad width) were analyzed. The experimental matrix was designed, and a quadratic regression model was developed using a response surface methodology (RSM). Based on the developed model tested by the analysis of variance (ANOVA) method, the relationship between the output responses and the processing parameters were analyzed and discussed. The optimal parameters were identified by the desirability function in order to maximize the powder catchment efficiency, clad height, and clad width.
机译:高功率直接二极管激光器(HPDDL)提供了具有高强度分布的宽激光束,使其成为大面积熔覆的理想工具。在这项研究中,通过在ASTM A36钢基底上沉积铁基粉末,对HPDDL熔覆工艺进行了系统研究。分析了输入处理参数(激光功率,送粉速度,载气流速和隔离距离)对输出响应(粉末集水效率,包层高度和包层宽度)的影响。设计了实验矩阵,并使用响应面方法(RSM)开发了二次回归模型。基于通过方差分析(ANOVA)方法测试的已开发模型,分析并讨论了输出响应与处理参数之间的关系。为了获得最大的集粉效率,包层高度和包层宽度,可通过期望函数确定最佳参数。

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