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用于建筑的具有高韧性和水激活凝固特性的柔性水泥纤维。

Flexible cement fibers with high toughness and water-activated setting behavior for construction.

作者信息

Zhu Kunkun, Liang Yaoting, Yuan Jingjing, Yu Hao, Jiang Liquan, Wang Jinfeng, Zhang Jinming, Zhang Jun, Song Dengpeng, Xia Liangjun, Zhang Xiaofang, Xu Weilin

机构信息

State Key Laboratory of New Textile Materials and Advanced Processing, Wuhan Textile University, Wuhan, China.

National Local Joint Laboratory for Advanced Textile Processing and Clean Production, Wuhan Textile University, Wuhan, China.

出版信息

Nat Commun. 2025 Jul 15;16(1):6529. doi: 10.1038/s41467-025-61855-2.

Abstract

Brittle fracture and facile crack initiation present significant challenges for the toughening and processing of cementitious composites. In this work, the continuous and large-scale fabrication of cement-based fiber is enabled by cellulose-assisted wet spinning strategy, during which cement grains are in-situ implanted into porous cellulose matrix. The subsequent hydration process induces the in-situ formation of a hard continuous network which interconnects with the flexible porous cellulose skeleton, leading an interpenetrating dual-network architecture formed within the resulting cellulose-supported cement-based (CSC) fibers. This architecture provides simultaneous mechanical strength and toughness. Moreover, the resulting CSC fibers exhibit hydration-enabled manufacturability and can be woven into fabrics. The CSC fiber fabric demonstrates high toughness and impact resistance, lightweight properties, low thermal conductivity, and great water-resistance, holding significant potential for applications in thermal insulation, seismic high-rise buildings, and durable construction materials.

摘要

脆性断裂和易引发裂纹给水泥基复合材料的增韧和加工带来了重大挑战。在这项工作中,通过纤维素辅助湿法纺丝策略实现了水泥基纤维的连续大规模制备,在此过程中,水泥颗粒原位植入到多孔纤维素基质中。随后的水化过程促使形成一个坚硬的连续网络,该网络与柔性多孔纤维素骨架相互连接,从而在所得的纤维素支撑水泥基(CSC)纤维中形成互穿双网络结构。这种结构同时提供了机械强度和韧性。此外,所得的CSC纤维表现出可通过水化实现的可加工性,并且可以编织成织物。CSC纤维织物具有高韧性、抗冲击性、轻质特性、低导热性和良好的防水性,在隔热、抗震高层建筑和耐用建筑材料等应用方面具有巨大潜力。

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