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Case Study on Comparison of Joint Sealant Adhesive Properties Tested in Laboratory and In Situ

机译:实验室和原位测试的关节密封剂粘合性能比较的案例研究

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The main objective of this case study is to compare whether standardised test methods are able to reliably prognosticate the performance of joint sealants and adhesives after installation in a construction. The authors of the presented study believe that the existing testing procedures intended for the testing of bonded and sealed joints do not fully reflect the weather changes exterior surfaces have to withstand. Based on previous experiences, a unique geometry for testing samples was used for this purpose, allowing the testing of a so-called real joint. A group of test samples was subjected to two normalised test procedures that may influence the resulting behavior of the joint in the exterior. The second group of test samples was exposed to the external environment for a particular period. The results obtained from the tests show that the standardised methods are able to simulate an outdoor environment, however, only to a certain level. Unfortunately, these methods do not consider the possibility that the sealed or bonded joint might have already been damaged during the application itself. While the laboratory environment is clean and often dust-free, it is not possible to ensure the same conditions in-situ. Moreover, in some cases it was monitored that some of the selected sealants tested in an external environment aged rapidly compared to the ones cured and stored in the laboratory. In some cases, the difference between monitored failure modes for indoor and outdoor environment was substantial. The predominant type of sealant failure observed in-situ was adhesive, while mainly cohesive failure was monitored in the laboratory.
机译:本案例研究的主要目的是比较标准化的试验方法是否能够可靠地预测在构造后安装后接头密封剂和粘合剂的性能。本研究的作者认为,用于测试粘合和密封接头的现有测试程序并未完全反映天气变化外表面必须承受的外表。基于以前的经验,用于测试样品的独特几何形状用于此目的,允许测试所谓的真正关节。对一组试验样品进行两种归一化测试程序,其可能影响外部接头的所得行为。将第二组测试样品暴露于特定时期的外部环境。从测试中获得的结果表明,标准化方法能够模拟户外环境,但仅限于一定程度。不幸的是,这些方法不考虑密封或粘合接头在应用程序本身期间可能已经损坏的可能性。虽然实验室环境清洁并且通常无尘,但不可能确保原位的相同条件。此外,在某些情况下,它监测了与固化和储存在实验室的外部环境中测试的一些选定的密封剂在快速的外部环境中测试。在某些情况下,室内和室外环境的受监控失效模式之间的差异很大。原位观察到的密封剂衰竭的主要类型是粘合剂,而在实验室中主要监测粘性损伤。

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