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◆ Polymers2026-09-16

Transfer-Film Stabilization by Reaction-Assisted GO/CNT/ZDMA/SiO2 Filler Networks in High-Temperature Rubber-Metal Sliding Contacts.

Deao Han, Xueru Zhong, Shuolei Wang, Yangkun Shao, Yongshuo Xing, Weihao Li, Zhanzhao Song, Feng Gong, Quanzhong Zhang, Chuansheng Wang, Deshang Han, Lin Wang

原始摘要(英文原文)· Original abstract
High-temperature rubber-metal sliding in internal mixers involves filler-network evolution, third-body generation and transfer-film formation. In this work, a reaction-assisted GO/CNT/ZDMA/SiO2 network was constructed through in situ formation of zinc dimethacrylate from ZnO/methacrylic acid, TESPT-mediated silanization of silica, and GO/CNT sheet-tube hybrid architecture. The key scientific contribution is the separation of mean friction from metal-wear suppression: the best wear resistance was obtained when the network maintained a continuous rubber/carbon-rich transfer film, not when the mean friction coefficient was lowest. At 3 phr GO with 3 phr CNT (C4), filler dispersion was more uniform, hard agglomerate release was suppressed, and metal wear volume reached 1.63 × 106 μm3 with a volume-loss rate of 8.92%. Excessive GO promoted stacking and secondary agglomeration, increasing third-body supply, transfer-film rupture and metal exposure. Because no inert-atmosphere, pH, XPS, Raman, electrochemical or residue-concentration tests were performed, chemical assistance is treated as a possible secondary contribution after film rupture rather than as a proven independent mechanism. The results identify transfer-film continuity and friction fluctuation as practical screening indicators for reactive rubber-metal contacts.
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Transfer-Film Stabilization by Reaction-Assisted GO/CNT/ZDMA/SiO2 Filler Networks in High-Temperature Rubber-Metal Sliding Contacts. — 科研速览 Science Skim