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Prediction of long-term creep behavior of epoxy adhesives for structural applications

机译:预测结构用环氧胶粘剂的长期蠕变行为

摘要

The mechanical property of polymeric materials changes over time, especially when they are subjected to long-term loading scenarios. To predict the time-dependent viscoelastic behaviors of epoxy-based adhesive materials, it is imperative that reliable accelerated tests be developed to determine their long-term performances under different exposed environments. A neat epoxy resin system and a commercial structural adhesive system for bonding aluminum substrates are investigated. A series of moisture diffusion tests have been performed for more than three months in order to understand the influence of the absorbed moisture on creep behavior. The material properties, such as elastic modulus and glass transition temperature, are also studied under different environmental conditions. The time-temperature superposition method produces a master curve allowing the long-term creep compliance to be estimated. The physics-based Coupling model is found to fit well the long-term creep master curve. The equivalence of the temperature and moisture effect on the creep compliance of the epoxy adhesives is also addressed. Finally, a methodology for predicting the long-term creep behavior of epoxy adhesives is proposed.
机译:聚合材料的机械性能会随时间而变化,尤其是在长期承受载荷的情况下。为了预测环氧树脂基粘合剂材料随时间变化的粘弹性行为,必须开发可靠的加速测试来确定其在不同暴露环境下的长期性能。研究了用于粘合铝基材的纯环氧树脂体系和商用结构胶体系。为了了解吸收的水分对蠕变行为的影响,已经进行了超过三个月的一系列水分扩散测试。还研究了在不同环境条件下的材料性能,例如弹性模量和玻璃化转变温度。时间-温度叠加方法会生成一条主曲线,从而可以估算长期蠕变柔量。发现基于物理的耦合模型非常适合长期蠕变主曲线。还解决了温度和湿度对环氧胶粘剂蠕变顺应性的影响。最后,提出了一种预测环氧胶粘剂长期蠕变行为的方法。

著录项

  • 作者

    Feng Chih-Wei;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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