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首页> 外文期刊>Tribology International >Tribological behavior and characterization analysis of modified nano-CeO2 filled oily diatomite/PVDF composites
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Tribological behavior and characterization analysis of modified nano-CeO2 filled oily diatomite/PVDF composites

机译:改性纳米CeO2填充油性硅藻土/ PVDF复合材料的摩擦学行为及表征分析

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摘要

By chemical modification and melt blending, lubricating oil containing two different morphologies of modified nano-CeO2(MN-CeO2) was injected into modified diatomite (M-DE) to investigate diverse impacts on the tribological properties and hardness of MN-CeO2/30 wt% oily diatomite (O-DE)/polyvinylidene fluoride (PVDF) composites. Compared with the O-DE/PVDF composites, the friction coefficient and wear rate of 0.5 wt% modified porous rod nano-CeO2 (MPRN)/O-DE/PVDF composites were reduced by 30.4% and 82.3%, respectively. The enhanced wear resistance was principally attributed to MN-CeO2 and lubricating oil stored in the porous structure of O-DE, while the MN-CeO2 directly blended in PVDF matrix could improve the crystallinity and shore hardness of the composites. Furthermore, the relevant bionic self-lubricating mechanisms and crystallization behaviors were also revealed in the paper.
机译:通过化学改性和熔融共混,将含有两种不同形态的改性纳米CeO2(MN-CeO2)的润滑油注入修饰的硅藻土(M-DE)中,以研究对MN-CeO2 / 30重量的摩擦学特性和硬度的不同影响 %油性硅藻土(O-DE)/聚偏二氟乙烯(PVDF)复合材料。 与O-DE / PVDF复合材料相比,0.5wt%改性多孔棒纳米CeO2(MPRN)/ O-DE / PVDF复合材料的摩擦系数和磨损率分别降低了30.4%和82.3%。 增强的耐磨性主要归因于Mn-CeO 2和储存在O-DE的多孔结构中的润滑油,而在PVDF基质中直接混合的Mn-CeO2可以改善复合材料的结晶度和肖氏硬度。 此外,在纸上还揭示了相关的仿生自润滑机制和结晶行为。

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