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Predicting the geometric form of clad in laser cladding by powder using multiple regression analysis (MRA)

机译:使用多元回归分析(MRA)预测粉末中激光熔覆的几何形状

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摘要

Currently, laser cladding by powder (LCP) is an emergent non-traditional process of components repair with potential application in several industries. This paper presents a study to evaluate the effect of the processing parameters (laser power, scanning velocity and powder mass flow rate) under the geometric form of clad. A plan of experiments was established considering laser cladding by powder with prefixed processing parameters in substrate 100 Mn Cr W4 (DIN) steel plates. The objective was to establish a model using multiple regression analysis (MRA) between processing parameters and the form of single-cladding layer (clad height, clad width and depth penetration into the substrate). In addition, confirmation tests were performed to make a comparison with the foreseen results from the mentioned model. Finally, two industrial applications of components repair are presented.
机译:当前,粉末激光熔覆(LCP)是一种新兴的非传统的部件修复工艺,具有在多个行业中的潜在应用。本文提出了一种研究方法,以评估在包层的几何形式下加工参数(激光功率,扫描速度和粉末质量流量)的影响。制定了一个实验计划,其中考虑了在基底100 Mn Cr W4(DIN)钢板中采用带有预定加工参数的粉末进行激光熔覆。目的是在加工参数和单包层形式(包层高度,包层宽度和深度渗透到基材之间)之间使用多元回归分析(MRA)建立模型。此外,还进行了确认测试,以与上述模型的预期结果进行比较。最后,介绍了零件修复的两个工业应用。

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