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首页> 外文期刊>Journal of Architectural Engineering >Laboratory Tests for Assessing the Reliability and Durability of Innovative Cold-Glued 3D Glass Building Subcomponents
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Laboratory Tests for Assessing the Reliability and Durability of Innovative Cold-Glued 3D Glass Building Subcomponents

机译:评估创新冷藏3D玻璃建筑小组组件的可靠性和耐用性的实验室测试

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The paper shows the results of analyses of the behavior of an innovative subcomponent made of two glass shells and a plastic thermal belt interfaced with a resin-based adhesive, in order to define the plastic material-adhesive combination able to guarantee compliance with the requirements related to mechanical strength, thermoacoustic insulation, dimensional stability, material compatibility, and durability. Two different types of ultraviolet (UV)-curing adhesive were used to establish the best plastic-adhesive combination. A study of the mechanical behavior and the reliability over time of the bonded assembly was conducted by performing accelerated weathering tests and tensile tests on 30 specimens. The laboratory tests were performed using single-lap-joint specimens in accordance with the ASTM D1002, ASTM D3163, and ISO 4587:2003 standards. At the end of the accelerated weathering tests, it was possible to observe that the stress conditions simulated during the seasonal cycle inside the climatic chamber led some specimens to failure, without affecting others. To quantify, in real terms, the performance of the two analyzed adhesives over time, it is necessary to expose new specimens to the natural weathering effects induced by the environmental conditions for a duration of at least 1 year. Future studies would be useful for exposing new specimens to new seasonal cycles developed using the parameters of different climatic contexts than those used until now. This paper demonstrates the use of an innovative resin-based adhesive for gluing plastic and glass subcomponents together.
机译:本文显示了由两种玻璃壳制成的创新子组件的行为的分析结果和塑料热带与树脂粘合剂接口,以便定义能够保证符合相关要求的塑料材料粘合剂组合为了机械强度,热声绝缘,尺寸稳定性,材料兼容性和耐用性。两种不同类型的紫外线(UV)粘合剂用于建立最佳塑料粘合剂组合。通过在30个样本上进行加速的风化试验和拉伸试验来进行对粘合组件的机械行为的研究和随时间的可靠性。根据ASTM D1002,ASTM D3163和ISO 4587:2003标准使用单圈关节标本进行实验室测试。在加速的风化试验结束时,可以观察到在气候室内季节性循环期间模拟的应力条件导致一些试样失效,而不会影响他人。为了实际上,实际上,两种分析的粘合剂的性能随着时间的推移,有必要将新标本暴露于环境条件诱导的天然风化效果至少1年。未来的研究对于将新标本暴露于使用不同气候环境的参数而发展的新季节性循环的有用而不是直到现在地使用的新季节。本文展示了使用创新的树脂基粘合剂来粘合塑料和玻璃子组件。

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