Lee Sung-Jun, Kim Chang-Lae
Department of Mechanical Engineering, Chosun University Gwangju 61452 Republic of Korea
RSC Adv. 2023 Nov 16;13(48):33595-33602. doi: 10.1039/d3ra06485a.
This research investigates the impact of surface structure on the friction and wear characteristics of silicone rubber used as a material for hydraulic rod seals. Various silicone rubber specimens with different surface structures were prepared, and their surface morphology, water contact angle, and surface roughness were compared. Friction tests were conducted using a reciprocating sliding method to evaluate the friction coefficient and wear characteristics. The results revealed that the silicone rubber specimens coated with silicone powder exhibited a significant increase in surface roughness. However, this increase was accompanied by a decrease in surface energy, leading to the absorption and dispersion of contact pressure and frictional stress, resulting in a friction-reducing effect. Consequently, the silicone rubber specimens coated with silicone powder demonstrated a friction coefficient more than 70% lower on average compared to bare silicone rubber, and exhibited minimal wear characteristics. The irregular microstructures formed on the surface of the silicone rubber are believed to contribute to these friction and wear improvements. Alterations in stress and contact behavior of bare silicone rubber and silicone powder-coated silicone rubber with pre-curing time during indentation and sliding movements were validated through finite element analysis. These findings provide valuable insights for enhancing the performance and durability of hydraulic rod seals made from silicone rubber. This research is expected to contribute to further studies aimed at improving hydraulic seal materials.
本研究调查了表面结构对用作液压杆密封材料的硅橡胶的摩擦和磨损特性的影响。制备了具有不同表面结构的各种硅橡胶试样,并比较了它们的表面形貌、水接触角和表面粗糙度。使用往复滑动法进行摩擦试验,以评估摩擦系数和磨损特性。结果表明,涂覆硅粉的硅橡胶试样表面粗糙度显著增加。然而,这种增加伴随着表面能的降低,导致接触压力和摩擦应力的吸收和分散,从而产生减摩效果。因此,与未涂覆的硅橡胶相比,涂覆硅粉的硅橡胶试样的摩擦系数平均降低了70%以上,并且磨损特性极小。据信,硅橡胶表面形成的不规则微观结构有助于改善这些摩擦和磨损性能。通过有限元分析验证了未涂覆硅橡胶和涂覆硅粉的硅橡胶在压痕和滑动过程中随预固化时间的应力和接触行为变化。这些发现为提高由硅橡胶制成的液压杆密封的性能和耐久性提供了有价值的见解。预计这项研究将有助于旨在改进液压密封材料的进一步研究。