Hu Ning, Shu Linsen, Zheng Xiangke, Deng Zhifeng, Cang Xinyu
School of Mechanical Engineering, Shaanxi University of Technology, Hanzhong, People's Republic of China.
Chinese Academy of Sciences, Xi'an Institute of Optics and Fine Mechanics, Xi'an, People's Republic of China.
Sci Prog. 2024 Apr-Jun;107(2):368504241242271. doi: 10.1177/00368504241242271.
In recent years, the adhesive technology has been widely used in the production of high-strength joins and precise positioning of various materials, such as metals, glass and composite materials. The adhesive technology has become a promising assembly process in the aerospace field due to its versatility, low creep and high damage tolerance. However, the reliability and predictability of adhesive bonding still require further development due to the complex operating conditions involved. Therefore, this article reviews and discusses the latest advances in aerospace adhesive technology, such as methods for improving bonding performance, bonding techniques (including joints structure and failure modes) and self-healing adhesive layers. Additionally, the current research results are summarised, and possible development trends and research directions in the field of adhesive bonding are prospected.
近年来,胶粘剂技术已广泛应用于高强度连接的生产以及金属、玻璃和复合材料等各种材料的精确定位。由于其多功能性、低蠕变性和高损伤容限,胶粘剂技术已成为航空航天领域一种很有前景的装配工艺。然而,由于涉及复杂的操作条件,胶粘剂粘结的可靠性和可预测性仍需进一步发展。因此,本文回顾并讨论了航空航天胶粘剂技术的最新进展,如提高粘结性能的方法、粘结技术(包括接头结构和失效模式)以及自愈合胶粘剂层。此外,总结了当前的研究成果,并展望了胶粘剂粘结领域可能的发展趋势和研究方向。