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首页> 外文期刊>Tribology Transactions >Effect of Hot Extrusion on Electrical Tribological Behavior of Ag-Cu/MoS2 Composite under Air and Vacuum Conditions
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Effect of Hot Extrusion on Electrical Tribological Behavior of Ag-Cu/MoS2 Composite under Air and Vacuum Conditions

机译:热挤出对空气和真空条件下Ag-Cu / MOS2复合材料电气摩擦学行为的影响

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摘要

The different microstructures of silver-copper/molybdenum disulfide (Ag-Cu/MoS2) composites were manufactured by hot press and hot extrusion processes to investigate the electrical tribological behaviors of both the hot-pressed and hot-extruded composites under air and vacuum. The results showed that microstructures and properties of Ag-Cu/MoS2 composites were improved by hot extrusion, which decreased the wear rates rapidly in both air and vacuum. In air, hot extrusion could improve the transfer layer and tribofilm, resulting in a significant decrease in contact voltage drop, which goes from more than 70 mV in the hot-pressed composite to 30 mV at the hot-extruded composite. Under vacuum condition, some wear debris was melted on the worn surface and then transferred to the counterface to form the transfer layers, which led to the lower contact voltage drops under vacuum, about 6 mV in hot-pressed composites and 3 mV in hot-extruded composites. In addition, the severe adhesive and abrasive wear were attributed to the molten wear debris and transfer layer, resulting in a dramatic fluctuation in the friction coefficient in a vacuum.
机译:通过热压和热挤出工艺制造银 - 铜/钼二硫化银(Ag-Cu / MOS2)复合材料的不同微观结构,以研究空气和真空下热压和热挤出复合材料的电气摩擦学行为。结果表明,通过热挤出改善了Ag-Cu / MOS2复合材料的微观结构和性质,其在空气和真空中迅速降低了磨损率。在空气中,热挤出可以改善转移层和呋脱石,导致接触电压下降的显着降低,该电压降低,在热挤出的复合材料下热压复合材料中的大于70mV至30mV。在真空条件下,一些磨损碎片在磨损的表面上熔化,然后转移到配合面以形成转移层,其导致真空下降的较低接触电压,在热压复合材料中约6mV,热 - 挤出复合材料。此外,严重的粘合剂和磨料磨损归因于熔融磨损碎片和转移层,导致真空中的摩擦系数中的显着波动。

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