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首页> 外文期刊>Tribology letters >In Situ Lubrication of SU-8/Talc Composite with Base Oil (SN150) and Perfluoropolyether as Fillers
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In Situ Lubrication of SU-8/Talc Composite with Base Oil (SN150) and Perfluoropolyether as Fillers

机译:以基础油(SN150)和全氟聚醚为填充剂的SU-8 /滑石粉复合材料的原位润滑

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摘要

In this paper, pure SU-8 and SU-8/talc (30 wt%) composite were filled with two liquid lubricants, hydrocarbon base oil (SN150) and perfluoropolyether (PFPE) in different weight percentages (2, 10, 20 and 30 wt%). The composite coatings in the thickness range of similar to 150 mu m were prepared on glass substrate using spin-coater. Pure SU-8 and its self-lubricated composites were examined using pin-on-disk tribometer, 3D optical profilometer, optical microscope, micro-hardness tester, thermogravimetric analyzer and goniometer. From tribological tests, it was observed that the coefficient of friction reduced by similar to 9-10 times after adding lubricant fillers and the wear life was >4 x 10(5) cycles for the SU-8/talc (30 wt%) with 30 wt% PFPE at 6 N normal load and 0.28 m/s sliding speed compared with zero life for without PFPE. The corresponding specific wear rate was 6.4 x 10(-8) mm(3)/N-m. From surface characterization, it was observed that the surface changed from hydrophilic to hydrophobic in nature after adding PFPE, but SN150 oil-filled composite shows hydrophilic nature at higher wt%. The wear mechanism for SN150-filled composite was by delamination at high load and higher wt% of the liquid, whereas for PFPE-filled composite, it was of abrasive type. There were improvements in the elastic modulus, hardness and thermal decomposition temperature for SU-8 composites with liquid fillers over pure SU-8, and the benefit was more for composites that also contained 30 wt% of talc.
机译:在本文中,纯SU-8和SU-8 /滑石(30 wt%)复合材料填充了两种液体润滑剂,分别为重量百分比(2、10、20和30)的烃基油(SN150)和全氟聚醚(PFPE)。 wt%)。使用旋涂机在玻璃基板上制备厚度范围接近150微米的复合涂层。使用销盘式摩擦计,3D光学轮廓仪,光学显微镜,显微硬度测试仪,热重分析仪和测角仪检查了纯SU-8及其自润滑复合材料。从摩擦学测试中观察到,添加润滑剂填料后,SU-8 /滑石粉(30 wt%)的摩擦系数降低了约9-10倍,并且磨损寿命> 4 x 10(5)个循环。在6 N正常负载和0.28 m / s的滑动速度下,PFPE为30 wt%,而无PFPE的寿命为零。相应的比磨损率为6.4 x 10(-8)mm(3)/ N-m。通过表面表征,观察到在添加PFPE之后,表面本质上从亲水性变为疏水性,但是SN150油填充的复合物在较高wt%下显示出亲水性。填充SN150的复合材料的磨损机理是在高负荷和较高的液体重量百分比时分层,而填充PFPE的复合材料的磨损机理是磨料类型。带有液态填料的SU-8复合材料的弹性模量,硬度和热分解温度比纯SU-8有所改善,并且对于还包含30 wt%滑石粉的复合材料,其益处更大。

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