Mechanical behavior and failure mechanism study of CFRP laminate page-type adhesive joint
作者:Mo Yang, Jianan Xi, Hao Xuan, Yikun Wang, Wen Zhang · 发表于:Engineering Fracture Mechanics · 年份:2025 · DOI:10.1016/j.engfracmech.2025.110895 · 被引用次数:11 · 研究领域:Mechanical Behavior of Composites、Structural Behavior of Reinforced Concrete、Structural Load-Bearing Analysis
• A novel adhesive joint structure known as the page-type adhesive joint. • The adhesive layers and adherends layers can achieve strength balance during the tensile process. • The page-type joint has obvious advantages in tensile properties. The application of adhesive bonding is becoming increasingly prevalent in the automotive, marine, and aerospace industries, aimed at enhancing structural performance and reducing weight. The mechanical behavior of adhesively bonded composite joints is significantly influenced by the joint structure. This study introduces a novel adhesive joint structure, referred to as the page-type adhesive joint (PTAJ). A finite element analysis (FEA) model, employing the Hashin failure criterion and cohesive zone model, has been developed to investigate the mechanical behavior and failure mechanisms of the PTAJ. Additionally, tensile strength tests were conducted on PTAJs to validate the integrated FEA approach. The results indicate that the PTAJ experiences both cohesive damage and CFRP tearing damage under tensile load, with the ratio of these failure modes varying according to different lap lengths. Short joint lengths primarily fail in the adhesive layer, while longer joint lengths exhibit CFRP tearing damage as the predominant failure mode. Furthermore, the tensile strength of the single lap joints (SLJs) is compared with that of the PTAJs. The tensile strength of the PTAJs is over four times that of the SLJs across various lap lengths. The findin...