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Laser Cladding of WC onto Inconel 718 Super Alloy: Parametric Study and Physical Properties

机译:WC在Inconel 718超级合金上的激光熔覆:参数研究和物理性能

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摘要

Laser cladding of WC on Inconel 718 super alloy is studied in this research. Pre-placed WC powder is clad on Inconel 718 substrate using a pulsed Nd:YAG laser with various process parameters. Effects of pulsed laser and process parameters on the clad quality are investigated. In this study, laser average power, pulse width, focal distance, scanning speed and pre-placement factors are input parameters, while clad dilution, height, depth, porosity and number of cracks are outputs. Experimental results reveal that energy density of the laser beam is the most important factor, affecting the results of laser cladding process. It is observed that hard phases are formed on the Inconel 718 surface in situ by laser beam radiation and small changes are made in the substrate properties in a limited zone. Also, in surface laser cladding, 50% overlap between adjacent passes was found to have the best results. Results reveal that the optimum setting concluded in this study can be used efficiently in laser cladding process. Comparison of results obtained in this research with other conventional cladding methods shows that laser cladding can be used efficiently instead of other methods of cladding.
机译:本研究研究了WC在Inconel 718超级合金上的激光熔覆。使用脉冲Nd:YAG激光和各种工艺参数,将预先放置的WC粉覆盖在Inconel 718基板上。研究了脉冲激光和工艺参数对复合质量的影响。在这项研究中,激光平均功率,脉冲宽度,焦距,扫描速度和预放置因子是输入参数,而包层稀释度,高度,深度,孔隙率和裂纹数则是输出。实验结果表明,激光束的能量密度是影响激光熔覆工艺结果的最重要因素。观察到,硬相通过激光束辐射原位形成在Inconel 718表面上,并且在有限区域内对基板性能进行了很小的改变。而且,在表面激光熔覆中,发现相邻焊道之间的50%重叠具有最佳效果。结果表明,本研究得出的最佳设置可以有效地用于激光熔覆过程中。在这项研究中获得的结果与其他常规熔覆方法的比较表明,可以有效地使用激光熔覆代替其他熔覆方法。

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