碳/玻纤维混杂船体结构BVID损伤及剩余强度研究综述

Review of Barely Visible Impact Damage (BVID) and Residual Strength in Carbon/Glass Fiber Hybrid Ship Hull Structures

  • 摘要: 碳纤维/玻璃纤维混杂复合材料兼具高比模量与良好韧性,是船舶结构实现轻量化的关键材料。然而,其多相、异质特性导致结构的力学响应复杂,服役中易遭受低速冲击(如漂浮物碰撞等)而产生目视检查难以发现的几乎不可见损伤(Barely Visible Impact Damage, BVID),但其内部多伴随纤维断裂、基体开裂及分层,严重威胁船体结构的承载安全与可靠性。本文聚焦纤维混杂船体结构,针对BVID损伤的演化机理与含损伤结构的剩余强度评估两大核心难题,系统梳理国、内外在碳/玻纤维混杂效应、BVID损伤机理以及含损混杂结构剩余强度这三方面的研究进展。在此基础上,指出现有研究在载荷工况相对单一、环境因素缺失及船舶行业标准空白等方面的不足,明确船用碳/玻混杂复合材料结构在抗冲击设计与性能评估中亟待解决的关键问题,旨在为复合材料船舶的损伤容限设计、在役维护、老龄评估及维修决策等提供有益参考。

     

    Abstract: Carbon/glass fiber hybrid composites, which possess high specific modulus and good toughness, are a key material system for achieving lightweight in marine structures. However, their multi-phase and heterogeneous characteristics leads to complex mechanical responses, making them susceptible to barely visible impact damage (BVID) under low-velocity impacts (such as collisions with floating objects) during service, which is difficult to detect by visual inspection. Such damage typically involves internal fiber breakage, matrix cracking, and delamination, posing a serious threat to the load-bearing safety and service reliability of the structure. This paper focuses on the stiffened panels in ship structures and addresses two core challenges: the evolution mechanism of BVID and the assessment of the residual ultimate strength of structures with damage. It systematically reviews and comments on the research progress at home and abroad in three aspects: the hybrid effect of carbon/glass fibers, the characteristics of BVID, and the residual strength of damaged hybrid structures. Based on this, the shortcomings of existing research are identified, including the relatively limited range of load cases, the lack of consideration of environmental factors, and the absence of industry standards specific to shipbuilding. The key issues that urgently need to be addressed in the impact-resistant design and performance evaluation of marine carbon/glass fiber hybrid composite structures are clarified. The aim is to provide useful references for the damage tolerance design, in-service maintenance, aging assessment, and repair decision-making of composite ships.

     

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