Effects of cyclic ageing frequencies on the ageing and mechanical behaviour of adhesive materials: Experimental analysis and numerical study

IF 4 2区 工程技术 Q1 ENGINEERING, CIVIL
M. Moazzami , A. Akhavan-Safar , M.R. Ayatollahi , Johannes.A. Poulis , L.F.M. da Silva , S. Teixeira De Freitas
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引用次数: 0

Abstract

In marine structures adhesive joint structures are often exposed to cyclic conditioning where the ambient humidity changes cyclically during their service. Though some comprehensive studies on the aging of adhesives exist, these researches mainly focus on monotonic aging conditions where the adhesive joints are exposed to a wet condition continuously for a long time. However, the few investigations performed on the cyclic moisture absorption of adhesive materials show that the parameters obtained in monotonic aging conditions are not suitable for estimation of the aging behaviour of adhesive exposed to alternating humidity. An important question that can arise is whether or not this frequency affects the mechanical behaviour of adhesive joints under cyclic aging condition. In this investigation bulk dogbone and square samples were manufactured, subjected to cyclic aging conditions with four different aging frequencies and tested. The results show that the moisture diffusion constant of adhesives exposed to higher aging frequencies increase more than those exposed to lower aging frequency conditions. In addition, the moisture content only affects the degradation of strength and stiffness of the tested adhesives in different aging frequencies.

循环老化频率对粘合剂材料老化和机械性能的影响:实验分析和数值研究
在海洋结构中,粘合剂连接结构通常会暴露在循环条件下,在使用过程中环境湿度会发生周期性变化。虽然存在一些关于粘合剂老化的综合研究,但这些研究主要集中在单调老化条件下,即粘合剂接头长期持续暴露在潮湿环境中。然而,对粘合剂材料的循环吸湿性进行的少数研究表明,在单调老化条件下获得的参数并不适合用于估计暴露在交替湿度下的粘合剂的老化行为。一个可能出现的重要问题是,在循环老化条件下,这种频率是否会影响粘合剂接头的机械性能。在这项研究中,制造了散装狗骨形和方形样品,将其置于四种不同老化频率的循环老化条件下进行测试。结果表明,与暴露在较低老化频率条件下的粘合剂相比,暴露在较高老化频率条件下的粘合剂的水分扩散常数增加得更多。此外,在不同的老化频率下,水分含量只影响测试粘合剂的强度和刚度退化。
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来源期刊
Marine Structures
Marine Structures 工程技术-工程:海洋
CiteScore
8.70
自引率
7.70%
发文量
157
审稿时长
6.4 months
期刊介绍: This journal aims to provide a medium for presentation and discussion of the latest developments in research, design, fabrication and in-service experience relating to marine structures, i.e., all structures of steel, concrete, light alloy or composite construction having an interface with the sea, including ships, fixed and mobile offshore platforms, submarine and submersibles, pipelines, subsea systems for shallow and deep ocean operations and coastal structures such as piers.
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