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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Production of hard and lubricating surfaces on miniature components through micro-EDM process
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Production of hard and lubricating surfaces on miniature components through micro-EDM process

机译:通过微EDM工艺在微型组件上生产硬质和润滑表面

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摘要

The study acclaims the generation of hard, wear-resistant, and lubricating layer on Ti alloy using molybdenum disulfide (MoS2) powders mixed in dielectric (deionized water) using a brass tool electrode (diameter 800?μm) through the micro-electrical discharge process. The deposition rate, micro-hardness, recast layer, and surface roughness were studied for the surface generated through the process and correlated with the XRD, AFM, electron probe micro-analyzer, EDS analysis, and FESEM images. Results indicate that a higher voltage (60?V) and powder concentration (12?g/L) increase the material deposition rate in the form of intermetallic compounds deposited on the recast layer. The coated layer formed shows an increase in micro-hardness ranging from 426.42 to 714.25?HV, which is more when compared to the base material hardness of 417.61?HV. In addition to this, lower micro-cracks were seen at high powder concentration, voltage, and duty factor with improved surface quality. The pin-on-disc wear test of the coated samples was performed, and results indicated that the specific wear rate decreased with the increase in duty factor due to the formation of hard and wear-resistant intermetallic compounds as confirmed from the EDS and XRD plots.
机译:使用通过微电路放电工艺,使用二硫化钼(MOS2)在介电(去离子水)中混合的二硫化钼(MOS2)粉末的钼(MOS2)粉末来产生硬,耐磨和润滑层的产生。通过微电路电极(直径为800Ωμm) 。研究了通过该过程产生的表面和与XRD,AFM,电子探针微分析仪,EDS分析和FESEM图像相关的表面的沉积速率,微硬度,重置层和表面粗糙度。结果表明,较高的电压(60〜V)和粉末浓度(12Ωv / l)增加了沉积在重量层上的金属间化合物的形式的材料沉积速率。形成的涂层显示出在426.42至714.25〜714.25〜714.25℃的微型硬度增加。与417.61的基材硬度相比,更多。除此之外,在高粉末浓度,电压和占性因子中看到较低的微裂纹,具有改善的表面质量。进行涂覆样品的销盘型磨损试验,结果表明,由于耐涂层和XRD图所证实的耐磨性金属间化合物的形成,特定磨损随着占用金属化合物的增加而降低。

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