Wu Zhicheng, Ma Ruitao, Ai Zhijun, Huan Xianhua, Wang Shujuan, Fan Wei, Zhang Qiaogen
State Key Laboratory of Electric Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China.
School of Electrical and Automation Engineering, Hefei University of Technology, Hefei 230009, China.
Rev Sci Instrum. 2024 Jul 1;95(7). doi: 10.1063/5.0211875.
Interfacial bonding between aramid fibers and epoxy resin is crucial for the mechanical properties of fiber-reinforced epoxy composites. Interfacial stress transfer between resin and fibers bridges microscopic and macroscopic properties. Using micro-Raman spectroscopy for in situ stress measurement offers insights into interface bonding through assessment of interfacial stress transfer characteristics. This study measures stress distribution on loaded microdroplet sample surfaces, analyzes stress transfer at the interface, and proposes an evaluation method using finite element analysis (FEA). The results show that interfacial stress along the fiber decreases from the droplet's edge to center, indicating stress transfer between the fiber and matrix, as evidenced by the stress-dependent Raman shift of aramid fiber. The interface modulus (Eif), derived from the FEA model, effectively reflects interface bonding, with droplet shape influence removed in evaluations. The agreement between the proposed method and the transverse fiber bundle test confirms its applicability. The method offers a direct, non-destructive, and shape-independent way to evaluate the interface of aramid/epoxy composites.
芳纶纤维与环氧树脂之间的界面结合对于纤维增强环氧树脂复合材料的力学性能至关重要。树脂与纤维之间的界面应力传递连接了微观和宏观性能。使用显微拉曼光谱进行原位应力测量,通过评估界面应力传递特性,可深入了解界面结合情况。本研究测量了加载微滴样品表面的应力分布,分析了界面处的应力传递,并提出了一种使用有限元分析(FEA)的评估方法。结果表明,沿纤维方向的界面应力从液滴边缘向中心逐渐减小,这表明纤维与基体之间存在应力传递,芳纶纤维的应力相关拉曼位移证明了这一点。从FEA模型得出的界面模量(Eif)有效地反映了界面结合情况,在评估中消除了液滴形状的影响。所提出的方法与横向纤维束试验之间的一致性证实了其适用性。该方法为评估芳纶/环氧树脂复合材料的界面提供了一种直接、无损且与形状无关的方式。