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The effect of different materials joint in Vacuum Insulation Panels

机译:真空隔热板中不同材料接缝的影响

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摘要

During recent years the use of Vacuum Insulation Panels in buildings applications has been improved, because of their both higher performances and lower thickness compared to traditional insulation materials. These performances are due to the interior vacuum degree, which represent also the main problem connected with the applications of this technological solution in buildings constructions: to maintain the vacuum condition the panels are enclosed in an envelope layer, characterized by an higher thermal conductivity. Moreover they have to be assembled to each other or to additional different joint materials in practical building application, generating a thermal bridging effect. The aim of present work is to analyse the critical aspects related to this insulation technology for building application. An experimental campaign through heat flow meter apparatus was carried out with the purpose of assessing the decrease of performance due to the thermal bridges effects considering different joint materials in VIPs assemblies.
机译:近年来,由于与传统的隔热材料相比,真空隔热板具有更高的性能和更低的厚度,因此在建筑应用中的使用得到了改善。这些性能归因于内部真空度,这也代表了与该技术解决方案在建筑物中的应用相关的主要问题:为了保持真空状态,面板被封闭在一个具有较高导热性的包围层中。此外,在实际建筑应用中,它们必须彼此组装在一起或与其他不同的接缝材料组装在一起,从而产生热桥效应。当前工作的目的是分析与这种隔热技术在建筑应用中有关的关键方面。为了评估由于VIP组件中不同接头材料而产生的热桥效应而导致的性能下降,通过热流量计设备进行了一项实验。

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