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首页> 外文期刊>Journal of Friction and Wear >Improving Abrasive Wear Resistance for Steel Hardox 400 by Electro-Spark Deposition
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Improving Abrasive Wear Resistance for Steel Hardox 400 by Electro-Spark Deposition

机译:通过电火花沉积改善钢硬摩400的磨料耐磨性

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摘要

The mechanical and tribological properties of the steel Hardox 400 after electro-spark deposition (ESD) using electrodes made of hard-alloy carbides T15K6 (79% WC + 15% TiC + 6% Co), WK6 (94% WC + 6% Co), and composite materials based on iron such as 12S2 (12% Ni + 2% Si + 15% Cr3C2 + 71% Fe), K4F (15% WK3 (97WC + 3 Co) + 4% Cr3C2 + 1% V + 80% Fe), and tungsten disilicide WSi2 (76.6% W; 23.4%Si) have been studied. The energy parameters (the energy of pulsed discharges, the amplitude and repetition rate thereof) and technological parameters (the type of processing electrode motion, vibration or vibration/rotation) for the ESD process, as well as the electrode composition at which the highest quality surface layers with high wear resistance is observed, have been optimized. The effect of the energy and technological parameters of the ESD process exerted on the properties of the coatings obtained has been determined. The studies have shown that coatings of WC-TiC-Co and WC-Co applied onto steel Hardox 400 exhibit a twofold decrease in abrasive wear. At the same time, it has been found that the wear resistance of composite coatings is sufficiently affected by the application modes (up to a 2.5-fold decrease in the wear level), and the coatings made of composites 12S2 and K4F are competitive with respect to coatings made of hard alloys based on tungsten carbides.
机译:用硬合金碳化物T15K6(79%WC + 15%TiC + 6%CO),WK6(94%WC + 6%CO)的电极后电火花沉积(ESD)在电火花沉积(ESD)之后的机械和摩擦学性能)和基于铁的复合材料,如12s2(12%Ni + 2%Si + 15%CR3C2 + 71%Fe),K4F(15%WK3(97wc + 3 CO)+ 4%CR3C2 + 1%V + 80获得%Fe)和钨过硅酸钨WSI2(76.6%W; 23.4%SI)。能量参数(脉冲放电的能量,其幅度和重复率)和用于ESD工艺的技术参数(处理电极运动,振动或振动/旋转的类型,以及最高质量的电极组合物观察到具有高耐磨性的表面层。施加对所得涂层性质的ESD过程的能量和技术参数的影响已经确定。该研究表明,施加在钢硬载物400上的WC-TiC-Co和WC-Co的涂层表现出磨料磨损的两倍降低。同时,已经发现,复合涂层的耐磨性受施加模式的影响(磨损水平的减小高达2.5倍),并且复合材料12S2和K4F制成的涂层具有竞争力基于碳化物的硬合金制成的涂层。

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