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Effects of Temperature and Loading Rate on the Mechanical Properties of a High Temperature Epoxy Adhesive

机译:温度和加载速率对高温环氧胶粘剂力学性能的影响

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摘要

The variation of the mechanical properties of adhesives with temperature and strain rate is one of the most important factors to consider when designing a bonded joint due to the polymeric nature of adhesives. It is well known that adhesive strength generally shows temperature dependence. Moreover, in many structural applications, the applied loads can be dynamic and the design of the joint requires the knowledge of the high loading rate mechanical behaviour of the adhesive. In this study, the combined effect of the temperature and test speed on the tensile properties of a high temperature epoxy adhesive was investigated. Tensile tests were performed at three different test speeds and various temperatures (room'temperature (RT) and high temperatures (100, 125 and 150°C)). The glass transition temperature (T_g) of the epoxy adhesive investigated is approximately 155°C. The ultimate tensile stress decreased linearly with temperature (T) while increased logarithmically with the loading rate, which is in the accord with the Airing's molecular activation model.
机译:由于粘合剂的聚合特性,在设计粘合接头时,粘合剂的机械性能随温度和应变率的变化是要考虑的最重要因素之一。众所周知,粘合强度通常显示出温度依赖性。此外,在许多结构应用中,所施加的载荷可能是动态的,并且接头的设计需要了解粘合剂的高载荷率机械性能。在这项研究中,研究了温度和测试速度对高温环氧胶粘剂拉伸性能的综合影响。在三种不同的测试速度和各种温度(室温(RT)和高温(100、125和150°C))下进行拉伸测试。研究的环氧粘合剂的玻璃化转变温度(T_g)约为155°C。极限拉伸应力随温度(T)呈线性下降,而随负载率呈对数增长,这与Airing的分子活化模型一致。

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