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Tribological Properties of Textured Cemented Carbide Surfaces of Different Wettability Produced by Pulse Laser

机译:脉冲激光产生不同润湿性的硬质合金硬质合金表面的摩擦学性能

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The microano textured cemented carbide surface of different wettability was produced by laser scanning and fluorinated treatment. The tribological properties of the un-textured, oleophobic and oleophilic microano textured surface were investigated experimentally including the effects of crank speed and contact pressure by a reciprocating friction and a wear tester. For all tested surfaces, the friction coefficient of the surface decreased as both the increasing crank speed and contact pressure increased. Compared to the un-textured surface, the friction coefficient of the microano textured surface was significantly decreased, being sensitive to the wettability of the surface. Besides, the tribological properties of the oleophobic microano textured surface were superior to the oleophilic microano textured surface under the same experimental conditions. The improvement in tribological properties of the oleophobic microano textured surface could be attributed to the low wettability, which was beneficial to rapid accumulation of the lubricating oil on the surface.
机译:通过激光扫描和氟化处理,制备了具有不同润湿性的微/纳米织构硬质合金表面。实验研究了无纹理,疏油和亲油的微/纳米纹理表面的摩擦学特性,包括曲柄速度和接触压力受往复摩擦和磨损测试仪的影响。对于所有测试的表面,随着增加的曲柄速度和接触压力的增加,表面的摩擦系数减小。与无纹理的表面相比,微/纳米纹理表面的摩擦系数显着降低,对表面的润湿性敏感。此外,在相同的实验条件下,疏油微/纳米织构表面的摩擦学性能优于亲油微/纳米织构表面。疏油微/纳米织构表面的摩擦学性能的改善可归因于低润湿性,这有利于润滑油在表面上的快速积聚。

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