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使用聚二甲基硅氧烷粉末添加剂提高润滑剂的摩擦学性能。

Enhancement of tribological performance of lubricants using polydimethylsiloxane powder additives.

作者信息

Lee Sung-Jun, Segu Dawit Zenebe, Kim Chang-Lae

机构信息

Department of Mechanical Engineering, Chosun University Gwangju 61452 Republic of Korea

出版信息

RSC Adv. 2024 Sep 30;14(42):31047-31056. doi: 10.1039/d4ra05164e. eCollection 2024 Sep 24.

Abstract

This study explored the potential enhancement of lubrication performance by incorporating polydimethylsiloxane (PDMS) powder as a lubricant additive. The PDMS powder was successfully synthesized mechanical and thermal processes, exhibiting a particle size distribution with an average diameter of 39 μm. XRD and FTIR analyses confirmed the amorphous structure and chemical composition of the PDMS-based silicone rubber powder. XPS analysis provided evidence of increased crosslinking in the crosslinked PDMS powders, with shifts in binding energies and changes in elemental ratios, supporting enhanced Si-O-Si network formation. The addition of the powder to the Poly alpha Olefin (PAO)-based lubricating oil induced notable changes in the physicochemical properties, including viscosity and contact angle. Friction tests revealed that the introduction of silicone rubber powder did not compromise the friction behavior of the lubricating oil owing to the soft and deformable nature of the powder particles, which minimized direct metal-to-metal contact. A significant observation was the decreasing trend in the wear rate with increasing powder concentration, which reached a minimum at 2 wt%. This phenomenon is attributed to a synergistic combination of particle deformation, stress absorption/dispersion effects, and lubricating film formation. Optical microscopy analysis provided visual evidence supporting the low wear rate, with specimens containing 1 wt% and 2 wt% concentrations exhibiting narrow wear widths and reduced wear particle adhesion. Further augmentation of the wear resistance and durability is anticipated through the addition of silicone rubber curing agents, which are expected to bolster the mechanical strength and load-bearing capacity of PDMS powder particles while enhancing the stability of the lubricating film.

摘要

本研究探讨了通过添加聚二甲基硅氧烷(PDMS)粉末作为润滑添加剂来提高润滑性能的潜力。通过机械和热工艺成功合成了PDMS粉末,其粒径分布的平均直径为39μm。XRD和FTIR分析证实了基于PDMS的硅橡胶粉末的无定形结构和化学成分。XPS分析提供了交联PDMS粉末中交联增加的证据,结合能发生了变化,元素比例也发生了改变,这支持了Si-O-Si网络形成的增强。将该粉末添加到基于聚α烯烃(PAO)的润滑油中会引起理化性质的显著变化,包括粘度和接触角。摩擦试验表明,由于粉末颗粒的柔软性和可变形性,硅橡胶粉末的引入并未损害润滑油的摩擦性能,从而使金属与金属之间的直接接触降至最低。一个重要的观察结果是磨损率随粉末浓度增加呈下降趋势,在2 wt%时达到最低。这种现象归因于颗粒变形、应力吸收/分散效应和润滑膜形成的协同作用。光学显微镜分析提供了支持低磨损率的直观证据,含有1 wt%和2 wt%浓度的试样显示出较窄的磨损宽度和减少的磨损颗粒附着力。预计通过添加硅橡胶固化剂可进一步提高耐磨性和耐久性,这有望增强PDMS粉末颗粒的机械强度和承载能力,同时提高润滑膜的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec88/11440470/8d35b6271500/d4ra05164e-f1.jpg

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