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Surface modification of HVOF thermal sprayed WC–CoCr coatings by laser treatment

机译:通过激光处理对HVOF热喷涂WC–CoCr涂层进行表面改性

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摘要

In this work the affects of laser characteristics on microstructure and microhardness of high velocity oxygen fuel sprayed (HVOF) WC–CoCr coatings were investigated. The coating was deposited with a Sulzer Metco WokaJet™-400 kerosene fuel and the laser surface treatments were applied using CO2 laser with 10.6 μm wavelength. Large variations in surface properties were produced from variation in the laser processing parameters. In total, four levels of peak power (100, 200, 300 and 350 W), four levels of spot diameter (0.2, 0.4, 0.6 and 1 mm) and three levels of pulse repetition frequency (PRF) were investigated. An initial set of tests were followed by a more detailed 33 factorial design of experiments. Pulse repetition frequency and duty cycle were set in order to maintain the same overlap in the x and y directions for the raster scanned sample spot impact dimensions. Overlaps of 30% were used in the initial tests and 10% in the more detailed trials. The results have shown that care must be taken to keep the irradiance at a relatively low level compared to uncoated surfaces. High irradiance can in this case result in rough and porous surfaces. Lower levels of irradiance are shown to provide more uniform microstructures, reduced porosity and increased microhardness.
机译:在这项工作中,研究了激光特性对高速氧气喷涂(HVOF)WC-CoCr涂层的组织和显微硬度的影响。用Sulzer Metco WokaJet™-400煤油燃料沉积涂层,并使用波长为10.6μm的CO2激光进行激光表面处理。由激光加工参数的变化产生了表面性质的大变化。总共研究了四个级别的峰值功率(100、200、300和350 W),四个级别的光斑直径(0.2、0.4、0.6和1 mm)和三个级别的脉冲重复频率(PRF)。最初的一组测试之后,进行了更为详细的33阶乘设计实验。设置脉冲重复频率和占空比,以便在光栅扫描的样本点冲击尺寸上在x和y方向上保持相同的重叠。初始测试使用30%的重叠,更详细的试验中使用10%的重叠。结果表明,与未涂层表面相比,必须注意将辐照度保持在较低水平。在这种情况下,高辐照度会导致表面粗糙且多孔。较低的辐照度可提供更均匀的微观结构,降低的孔隙率和更高的显微硬度。

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