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Microstructure and properties of Fe-based coatings on cutting pick surface formed by plasma jet surface metallurgy

机译:等离子流表面冶金法在截齿表面上铁基涂层的组织和性能

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The Fe-based composite coatings were produced on the attrition spot of cutting pick by plasma jet surface metallurgy, and metallurgical bonding was obtained between coating and substrate. The results show that the microstructure, microhardness, wear resistance and erode resistance of the coating are all evaluated. The coating has apparent characteristics of rapid and layered crystallization from planar crystal-cell/dendritic transition zone on the interface, to equiaxed crystal on the midst, to spike crystal on the surface. The microhardness gradually increases from the bottom to the top of the coating. The composite coating has better wear resistance and erode resistance compared to steel substrate.
机译:通过等离子流表面冶金法在截齿的磨损点上制备了铁基复合涂层,并在涂层和基体之间获得了冶金结合。结果表明,对涂层的显微组织,显微硬度,耐磨性和耐蚀性均进行了评估。该涂层具有明显的快速和分层结晶特性,从界面上的平面晶胞/树突过渡区到中间的等轴晶,再到表面的尖晶石。显微硬度从涂层的底部到顶部逐渐增加。与钢基材相比,该复合涂层具有更好的耐磨性和耐蚀性。

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