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◆ Polymer science & technology (Washington, D.C.)2026-09-22

Crab Leg-Inspired Poly(p‑phenylene benzobisoxazole) Hybrid Fibers for Boosting the Tribological Performance of UHMWPE Composites.

Yaodong Xiao, Qunchao Zhang, Liang Tian, Xiaoqing Ming, Robert K Y Li, Wei Wu

原始摘要(英文原文)· Original abstract
The performance of ultra-high-molecular-weight polyethylene (UHMWPE) is frequently limited by issues such as low strength and wear resistance. Inspired by the hierarchical structure of crab legs, this study develops a hybrid fiber filler designed to synergistically enhance the tribological and mechanical properties of UHMWPE composites. The filler (PBO@PDA@ZnO) architecture utilizes poly-(p-phenylene benzobisoxazole) (PBO) fibers as a rigid structural skeleton, employs polydopamine (PDA) as a functional intermediate layer, and incorporates uniformly loaded zinc oxide (ZnO) nanoparticles on the surface to create a "rigid skeleton-functional particle" system. The results indicate that the PBO@PDA@ZnO hybrid filler significantly optimizes both mechanical and tribological performance. Specifically, the UHMWPE composite reinforced with 1 wt % filler exhibits the best overall performance, with the elongation at break increasing from 650% to 850% while simultaneously improving tensile strength. Furthermore, under both low and high load conditions, the friction coefficient of the UHMWPE composite is all reduced by over 60%, and the wear rate is decreased by an order of magnitude, with the lowest value reaching 8.46 × 10-7 mm3/N·m. This superior performance is attributed to the synergistic effects of fiber reinforcement, stable transfer film formation, and the "micro-bearing" rolling effect of the ZnO nanoparticles. This study provides a biomimetic strategy for the fabrication of high-performance self-lubricating UHMWPE composites.
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Crab Leg-Inspired Poly(p‑phenylene benzobisoxazole) Hybrid Fibers for Boosting the Tribological Performance of UHMWPE Composites. — 科研速览 Science Skim