材料科学
摩擦学
复合材料
润滑
聚合物
热稳定性
聚酰亚胺
摩擦系数
粘度
芯(光纤)
工作(物理)
热的
摩擦系数
填料(材料)
图层(电子)
干润滑剂
炭黑
乙醚
沉积(地质)
摩擦改进剂
粘度指数
作者
Qingguang Bao,Xuemei Yan,Ning Wang,Ye Hu,Yi Dong,Shanshan Cheng,Nan Li,Xigao Jian
标识
DOI:10.1007/s42114-025-01542-4
摘要
In this study, hybrid boron nitride-nano silica solid self-lubricating filler (hBN-SiO₂) was prepared via in-situ growth method. Using lubricating oil containing hBN-SiO₂ as the core material and polyimide (PI) as the wall material, solid-liquid coupled self-lubricating microcapsules (OIL/hBN-SiO₂@PI) were fabricated. These capsules exhibit high core content (OIL content: 56 wt%) and excellent thermal stability (mass loss of only 9.8 wt% after constant temperature at 310 °C for 3 h). These microcapsules can notably improve the tribological performance of Polyphthalazinone Ether Ketone (PPEK). Specifically, for the PPEK-OIL/hBN-SiO₂@PI composite, the wear rate (ω = 1.70 × 10⁻¹⁵ m³/(N·m)) and friction coefficient (µ = 0.089) are reduced by 91.5% and 86.0% respectively. The interfacial friction region develops a stable transfer film owing to a distinctive “solid-liquid synergistic” lubrication mechanism. This work provides new insights for designing high-temperature-resistant solid-liquid coupled capsules and developing self-lubricating polymer composites.
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