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Combined Effect of Textured Patterns and Graphene Flake Additives on Tribological Behavior under Boundary Lubrication

机译:边界润滑条件下织构图案和石墨烯薄片添加剂对摩擦学行为的综合影响

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摘要

A ball-on-plate wear test was employed to investigate the effectiveness of graphene (GP) nanoparticles dispersed in a synthetic-oil-based lubricant in reducing wear. The effect by area ratio of elliptically shaped dimple textures and elevated temperatures were also explored. Pure PAO4 based oil and a mixture of this oil with 0.01 wt% GP were compared as lubricants. At pit area ratio of 5%, GP-base oil effectively reduced friction and wear, especially at 60 and 100°C. Under pure PAO4 oil lubrication, the untextured surfaces gained low friction coefficients (COFs) and wear rates under 60 and 100°C. With increasing laser—texture area ratio, the COF and wear rate decreased at 25 and 150°C but increased at 60 and 100°C. Under the GP-based oil lubrication, the textured surface with 5% area ratio achieved the lowest COF among those of the area ratios tested at all test temperatures. Meanwhile, the textured surface with 20% area ratio obtained the highest COF among those of the area ratios. With the joint action of GP and texture, the textured surface with 10% area ratio exhibited the best anti-wear performance among all of the textured surfaces at all test temperatures.
机译:进行了板对板磨损试验,以研究分散在合成油基润滑剂中的石墨烯(GP)纳米颗粒在降低磨损方面的有效性。还探讨了椭圆形酒窝质地的面积比和高温的影响。比较了纯PAO4基油和这种油与0.01wt%GP的混合物作为润滑剂。在基坑面积比为5%的情况下,GP基础油可有效减少摩擦和磨损,尤其是在60和100°C的温度下。在纯PAO4油润滑下,未织构表面在60和100°C下获得较低的摩擦系数(COF)和磨损率。随着激光纹理面积比的增加,COF和磨损率在25和150°C时降低,但在60和100°C时提高。在基于GP的油润滑下,在所有测试温度下,具有5%面积比的纹理表面的COF最低。同时,具有20%面积比的纹理化表面获得了最高的COF。在GP和纹理的共同作用下,在所有测试温度下,具有10%面积比的纹理表面在所有纹理表面中均表现出最佳的抗磨性能。

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