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New advances on maskless electrochemical texturing (MECT) for tribological purposes

机译:用于摩擦学的无掩模电化学变形(MECT)的新进展

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Surface texturing can be applied to improve tribological performance of mechanical contacts, in particular in the case of lubricated systems. The purpose of this work was to improve an alternative method for surface texturing based on electrochemical dissolution without previous masking of the workpiece named maskless electrochemical texturing (MECT). Electrochemical dissolution combines high speed, good reproducibility and high cost-benefit ratio, which are important factors when an industrial application of surface texturing is pursued. The use of electrical discharge machining (EDM) for the manufacturing of the MECT tools enabled different microtexture patterns to be produced. The cathodic tool was an AISI 430 ferritic stainless steel plate containing a pattern of microholes and covered with an insulating paint layer. The effect of important parameters such as the gap between electrodes, the applied voltage and the texturing time were evaluated. Different texturing patterns containing dots, trace-dots and chevrons were successfully obtained using a NaCl solution electrolyte. Tribological tests textured surfaces under starved liquid lubrication showed friction and wear reduction, when compared with a smooth surface.
机译:表面纹理化可用于改善机械触点的摩擦学性能,尤其是在润滑系统的情况下。这项工作的目的是改进一种基于电化学溶解而无需事先掩盖工件的表面纹理化方法,称为无掩模电化学纹理化(MECT)。电化学溶解结合了高速,良好的重现性和高的成本效益比,这是追求表面纹理化的工业应用时的重要因素。通过使用放电加工(EDM)来制造MECT工具,可以生产出不同的微纹理图案。阴极工具是AISI 430铁素体不锈钢板,其中包含微孔图案并覆盖有绝缘漆层。评估了重要参数的影响,例如电极之间的间隙,施加的电压和纹理化时间。使用NaCl溶液电解质成功地获得了包含点,痕量点和V形的不同纹理图案。与光滑的表面相比,在饥饿的液体润滑条件下的摩擦表面纹理显示摩擦和磨损减少。

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