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The influence of polyisocyanurate (PIR) facing on the heat transfer through the corners of insulated building partitions

机译:聚异氰脲酸酯(PIR)面对绝缘建筑隔板拐角对热传递的影响

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Prefabricated products made of polyisocyanurate (PIR) thermal insulation material covered with cardboard, plastic, aluminium or composite facings are used for thermal insulation of building envelopes. The facing of these products is selected according to their conditions of use, and the effect of the facing on the declared thermal properties of the product depend only on water vapor diffuse properties of the facing. However, at the corners of the building where these products are joined, facings can be in the direction of the heat flux movement and significantly increase heat transfer through the longitudinal thermal bridge formed in the corner of the building. After analysing the solutions for installation of PIR thermal insulation products on the walls and roof corners of buildings, calculations of the heat transfer coefficients of the linear thermal bridges were made, and the influence of various facings and different structural solutions on the heat transfer coefficient value of the thermal bridge was determined. Aluminium foil facing have the greatest influence, but other facings must also be considered. The structural solutions with the greatest increase in the heat transfer due to the effect of the facing were selected, and the influence to the thermal and air tightness properties of the structural solution when facing is removed were analysed, the stability of thermal properties of the thermal insulation material were analysed as well. Proposals for joining PIR thermal insulation products with heat-conductive facings in the corners of buildings were prepared.
机译:用纸板,塑料,铝或复合材料覆盖的多异氰脲酸酯(PIR)保温材料制成的预制产品用于建筑信封的保温。根据其使用条件选择这些产品的面对,并且面对面对产品的声明热性质的影响仅取决于面向的水蒸气漫射性质。然而,在这些产品连接的建筑物的角落处,面对可以在热通量运动的方向上,并且通过在建筑物的角落形成的纵向热桥显着增加热传递。在分析建筑物墙壁和屋顶角上安装PIR保温产品的解决方案后,制造了线性热桥的传热系数的计算,以及各个面的影响和不同的结构溶液对传热系数值的影响测定热桥。面向铝箔的影响最大,但也必须考虑其他面部。选择由于面向效果导致的传热增加的结构溶液,分析了在去除面向时,对结构溶液的热和空气密封性能的影响,热性能的稳定性分析绝缘材料。准备了在建筑物角落中加入PIR热绝缘产品的提案。

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