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Effects of Laser Remelting Process on Microstructure and Wear Behavior of WC Coating Sprayed by HVOF

机译:激光重熔过程对HVOF喷涂WC涂层微观结构和磨损行为的影响

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The wear of industrial and agricultural components and equipment represents a major factor of depreciation of capital and source of expenses with maintenance and replacement of mechanical components. As the wear is an essentially superficial phenomenon, involving the undesirable mechanical removal of surface materials, the solution studied in this work was to analyze the abrasive wear behavior of a surface coated with Tungsten Carbide (WC) sprayed by the thermal spray method by High Velocity Oxygen Fuel - HVOF on a SAE 1020 steel substrate. To improve the adhesion between the coating and substrate, to reduce the porosity present in the coating and to obtain better results in the abrasive wear test, a CO2 laser treatment with a power of 125 W was applied to the surface of the WC coating. The samples coated by HVOF and HVOF + CO2 laser treatment were characterized by Scanning Electron Microscopy (SEM) to evaluate the morphology and microstructure of the coating and interface, microhardness analysis, wear and roughness test were done. It was obtained as a result that the sample coated by the HVOF method showed a better performance in tests of microhardness, wear and roughness compared to the sample treated with the laser.
机译:工业和农业部件和设备的磨损代表了资本折旧的主要因素,以及维护和更换机械组件的费用来源。由于磨损是基本上浅表的现象,涉及表面材料的不希望的机械去除,在该工作中研究的溶液是通过高速喷射用热喷射方法喷涂的碳化钨(WC)的表面的磨料磨损行为SAE 1020钢基板上的氧气燃料 - HVOF。为了改善涂层和基材之间的粘附性,为了减少涂层中存在的孔隙率并在研磨磨损试验中获得更好的结果,施加电力为125W的CO 2激光处理。通过HVOF和HVOF + CO2激光处理涂覆的样品通过扫描电子显微镜(SEM)来评估涂层和界面的形态,微硬度分析,磨损和粗糙度试验。得到的结果是,与用激光处理的样品相比,通过HVOF方法涂覆的样品在微硬度,磨损和粗糙度的测试中表现出更好的性能。

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