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Long term thermal resistance of pentane blown polyisocyanurate laminate boards

机译:戊烷吹塑多异氰脲酸酯层压板的长期热阻

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The accurate estimation of the thermal performance of insulation products over their expected lifetime has been a recognized challenge for over twenty years.This is because the lifetime of such products is long (10-25 years),thermal aging is caused by the diffusion of a multitude of gases,and the insulation product is not homogeneous.Two classical approaches to accelerating diffusion controlled phenomena,namely aging at higher temperature and aging a thin slice have limitations when applied to insulation materials like polyisocyanurate (PIR) laminate board.Raising temperature does not change the diffusion coefficients of all the different gases involved in the aging process at the same rate.In the case of pentane blown PIR board,these gases are CO_2,air and the different pentane isomers used to blow the foam.Thin silicing of core foam and scaling techniques,such as those in the ASTM C 1303-00 procedure,do not account for the fact that PIR laminate boards are denser at the surface layer than in the core foam.
机译:在预期寿命上的绝缘产品热性能的准确估计已经是持续的挑战,超过二十多年。这是因为这种产品的寿命长(10-25岁),热老化是由A的扩散引起的多种气体,绝缘产品不是同质的。古典方法加速扩散控制现象,即在较高温度和老化时老化薄片在施加到多异氰脲酸盐(PIR)层压板等绝缘材料时具有限制以相同的速率改变涉及老化过程中所涉及的所有不同气体的扩散系数。在戊烷吹出的主板的情况下,这些气体是CO_2,空气和不同戊烷异构体用于吹泡沫。核心泡沫硅化和缩放技术,例如ASTM C 1303-00程序中的技术,不要考虑PIR层压板在表面层的密集而不是在核心泡沫中。

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