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首页> 外文期刊>Advances in building energy research >Thermal and sound insulation performance assessment of vacuum insulated composite insulation panels for building facades
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Thermal and sound insulation performance assessment of vacuum insulated composite insulation panels for building facades

机译:用于建筑物外墙真空绝缘综合绝缘板的热和隔音性能评估

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摘要

Composite insulation panels (CIPs) currently used in building facades require significant design changes, e.g. increased thickness to realize higher thermal and sound insulation performance. This study deals with the manufacturing and characterization of smart facade panels for achieving higher thermal and sound insulation dual characteristics in one panel without a significant increase in thickness. Prototype panels were manufactured using vacuum insulation core (VIC) combined with mass loaded vinyl (MLV) layers. Thermal transmission and weighted sound reduction index (R_w) was experimentally measured in the laboratory. The results were compared with a control panel made with extruded polystyrene (XPS) core. The VIC panel showed a 51% improvement in the centre of panel U-value compared to control XPS core panel of the same thickness. Integrating the two MLV layers inside of aluminium skins either side of the vacuum insulation panel led to 3 dB improvement in R_w from 32 to 35 dB which could be further improved by optimizing the MLV layer positioning in the CIP and better bonding between the MLV and the vacuum insulation panel. This shows that vacuum insulation core panels combined with MLV offers a solution to achieve smart building facade with excellent thermal and sound insulation performance.
机译:综合绝缘板(CIPS)目前用于建筑物外墙的综合设计需要显着的设计变化,例如,增加厚度以实现更高的热和隔音性能。该研究涉及智能外墙板的制造和表征,用于在一个面板中实现更高的热和隔音双重特性,而不会显着增加厚度。使用真空绝缘核(VIC)与质量负载乙烯基(MLV)层组合制造原型面板。在实验室中实验测量热传输和加权减速指数(R_W)。将结果与用挤出的聚苯乙烯(XPS)核制成的对照面板进行比较。与控制XPS核心面板相同的相同厚度的控制XPS U值,VIC面板在面板U值中显示51%。将两个MLV层与真空绝缘板的任一侧的两侧相加,从32到35 dB的R_W改善,这可以通过优化CIP中的MLV层定位和MLV和MLV之间更好地粘接来进一步提高。真空保温板。这表明真空绝缘芯板与MLV相结合,提供了实现智能建筑立面,具有出色的热和隔音性能的解决方案。

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