材料科学
热固性聚合物
接口(物质)
纳米技术
热塑性塑料
系统工程
纳米材料
仿生学
仿生材料
智能材料
复合数
建筑工程
持续性
使用寿命
机械工程
计算机科学
复合材料
制造工程
聚合物
碳纤维
热塑性复合材料
生命周期评估
弹性(材料科学)
耐久性
智能决策支持系统
再制造
可持续设计
作者
Qingping Sun,Mengjia Wang,Junshuai Wu,Xianbin Xia,Jingying Li,Yixin Guo,Haolong Liu,Wenxuan Qi,Tao Wu,Zhenqing Wang,Yingdong Song
标识
DOI:10.1002/adfm.202531947
摘要
ABSTRACT Motivated by the global carbon neutrality objective and the need for sustainable development, the advancement of materials exhibiting self‐healing properties, recyclability, and multifunctional integration has emerged as a prominent area of research. This paper systematically reviews recent advancements in third‐generation polymer Vitrimer and fiber reinforced Vitrimer‐based composites (V‐FRP), which exhibit both thermoplastic and thermosetting properties, focusing on structural design, performance optimization, and intelligent applications. Initially, the environmental aging mechanisms and failure behaviors of traditional fiber‐reinforced polymer composites under various coupled service conditions are analyzed. Subsequently, an in‐depth analysis of the design principles governing various dynamic covalent bonds within Vitrimer is presented. Furthermore, by leveraging molecular dynamics simulation and machine learning techniques, the structure–activity relationships are revealed, endowing the material with self‐repairing, reshaping, and recycling capabilities. The discussion also encompasses strategies aimed at improving the comprehensive performance of V‐FRP through nanomaterial reinforcement, interface self‐repair engineering, and multifunctional integration strategies. Finally, the challenges currently encountered by V‐FRP in large‐scale applications and sustainable recycling were summarized. Additionally, future research directions were proposed, offering theoretical support for the advancement of the next generation of high‐performance, long‐lasting, and adaptive composite materials.
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