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Investigation of Micro-Hardness, Wear Resistance, and Defects of 316L Stainless Steel and TiC Composite Coating Fabricated by Laser Engineered Net Shaping

机译:通过激光工程网塑造制造的316L不锈钢和TIC复合涂层微硬度,耐磨性和缺陷的研究

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The influence of processing parameters in laser engineered net shaping (LENS) on the properties of 316L stainless steel and titanium carbide (TiC) composite coating was studied. The key processing parameters were laser power, scanning speed, TiC powder ratio, and powder feed rate. Mathematical models were developed to investigate the micro-hardness, wear volume, and defect area of the coating. The accuracy of the models was examined by analysis of variance and experimental validation. Results showed that micro-hardness was positively correlated with TiC powder ratio. Increasing TiC powder ratio could reduce the wear volume. In addition, the wear volume displayed an increase then decrease with increasing laser power and decreasing scanning speed. Both scanning speed and TiC powder ratio showed a recognizable impact on the defect area. Reducing the scanning speed and TiC powder ratio can effectively reduce the defect area. The targets for the processing parameters optimization were set to maximize micro-hardness, minimize wear volume, and defect area. The difference between the model prediction value and experimental validation result for micro-hardness, wear volume, and defect area were 0.46%, 4.54%, and 8.82%, respectively. These results provide guidance for the LENS processing parameters optimization in controlling and predicting of 316L/TiC composite coating properties.
机译:研究了加工参数对316L不锈钢和碳化钛(TIC)复合涂层的性能的影响。关键处理参数是激光功率,扫描速度,TIC粉末比和粉末进料速率。开发了数学模型以研究涂层的微硬度,磨损体积和缺陷区域。通过分析方差和实验验证来检查模型的准确性。结果表明,微硬度与TIC粉末比正相关。增加TIC粉末比可以降低磨损体积。另外,随着激光功率的增加和扫描速度降低,耐磨体积显示随后减小。扫描速度和TIC粉末比均对缺陷区域显示出可识别的影响。降低扫描速度和TIC粉末比可以有效地减少缺陷区域。处理参数优化的目标被设定为最大化微硬度,最小化磨损体积和缺陷区域。微硬度,磨损体积和缺陷面积的模型预测值和实验验证结果之间的差异分别为0.46%,4.54%和8.82%。这些结果为镜片处理参数提供了控制和预测316L / TIC复合涂层性能的指导。

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