材料科学
胶粘剂
粘弹性
蠕动
复合材料
阿累尼乌斯方程
扩散
湿度
相对湿度
粘接
联轴节(管道)
有限元法
压力(语言学)
瞬态(计算机编程)
材料性能
图层(电子)
热传导
耐久性
结构工程
温度测量
老化
作者
J. Z. Damm,Thomas Ummenhofer,Matthias Albiez,Gerson Meschut,Sascha Sander,Dominik Teutenberg,Fabian Kötz
标识
DOI:10.5445/ir/1000193448
摘要
Predicting the ageing behaviour of adhesively bonded joints is a key challenge in adhesive bonding technology and is essential for their broader use in steel construction. This paper presents a method for predicting the long-term performance of thick-layer adhesive bonds under hygro-thermo-mechanical (htm) stress. This approach is based on experimental investigations into the water absorption of the adhesive, which is recorded gravimetrically and described using Fickian´s diffusion model. Different temperature and humidity influences on the diffusion parameters are considered using an Arrhenius approach. The mechanical behaviour is analysed by means of quasi-static tests and systematic creep experiments different specimen geometries. Numerical modelling is based on an adhesive layer equivalent model that represents the linear viscoelastic behaviour and damage resulting from htm loading. Temperature and humidity influences are recorded via a time-temperature-water concentration shift, and the multi-axial nature of the failure is described via a comparative stress. Validation is performed using component-like specimens and transient FE simulations with LS-DYNA, which utilise the coupling of diffusion and heat conduction problems. The case study shows that the developed concept enables a reliable life prediction and thus contributes significantly to confidence in adhesive bonding technology.
科研通智能强力驱动
Strongly Powered by AbleSci AI