增韧
材料科学
铆钉
复合材料
连接(主束)
机制(生物学)
接口(物质)
过程(计算)
结构工程
韧性
计算机科学
工程类
认识论
毛细管数
操作系统
哲学
毛细管作用
作者
Jian Wang,Lang Xiong,Zijun Ding,Chongyang Wang,Zhisong Li,Aidong Wang
摘要
ABSTRACT To enhance the riveting performance between aluminum alloy (Al) and continuous fiber reinforced thermoplastics (CFRTP), a new hot no‐rivet connection method, based on primary and secondary connection areas, was developed. This method draws from traditional metal riveting and stamping techniques. Specimens were prepared using a custom mold at a connection temperature of 255°C and a stroke of 3.3 mm. The connection areas were treated with grinding, phosphoric acid anodizing, aluminum powder, and the KH560 silane coupling agent to improve mechanical properties. The experimental results showed that joints created with this new method had better static mechanical performance. Specifically, the joint strength of polished aluminum laminate and thermoplastic CFRTP laminate improved by 301% compared to the untreated method. After multiple interface treatments, joint strength improved by 834%, with fracture failure occurring in the aluminum laminate. These findings demonstrate that the proposed hot no‐rivet connection method significantly improves joint reliability compared to traditional no‐rivet processes. The combination of mechanical locking and chemical bonding further enhances the mechanical properties of the Al/CFRTP joints.
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