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Development of HFC blowing agents. Part II: Expanded polystyrene insulating boards

机译:开发HFC发泡剂。第二部分:发泡聚苯乙烯保温板

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The development of HFCs as blowing agents for rigid polyurethane foams has previously been reported((1)). In this second paper, it will be seen that the Montreal Protocol and its subsequent reviews have also presented a challenge for the extruded expanded polystyrene (XPS) foam industry. CFC-12 has long been the main blowing agent in that application due to its unique properties such as nonflammability, non-toxicity, low thermal conductivity and good processability. In developed countries, the rapid phase-out of CFC-12 was made possible due to the availability of HCFCs. HCFC-142b, pure or in blends with HCFC-22 or ethyl chloride, has now become the reference blowing agent for XPS insulating boards world-wide owing to its superior properties. This paper will discuss the current situation by providing some information about properties commonly found in laminated boards. A theoretical model is used to simulate their long term behaviour, especially thermal insulation. Using this theoretical model and available data, it is possible to gain an insight into foam performance that can be achieved by zero ozone depletion potential substitutes such as HFCs and carbon dioxide. HFC-134a appears to be the leading candidate particularly when the thermal insulation is needed. [References: 10]
机译:以前已经报道了将HFC作为硬质聚氨酯泡沫的发泡剂的开发((1))。在第二篇文章中,可以看到《蒙特利尔议定书》及其后续审查也对挤出发泡聚苯乙烯(XPS)泡沫工业提出了挑战。 CFC-12长期以来一直是该应用中的主要发泡剂,因为其独特的性能,例如不易燃,无毒,低导热性和良好的可加工性。在发达国家,由于有氟氯烃的存在,因此有可能迅速淘汰CFC-12。 HCFC-142b纯或与HCFC-22或氯乙烷混合使用,由于其优越的性能,现已成为全世界XPS绝缘板的参考发泡剂。本文将通过提供一些有关层压板常见特性的信息来讨论当前状况。使用理论模型来模拟它们的长期行为,尤其是热绝缘。使用此理论模型和可用数据,有可能深入了解可以通过零消耗臭氧层的潜在替代物(如HFC和二氧化碳)实现的泡沫性能。 HFC-134a似乎是主要的候选者,特别是在需要隔热的情况下。 [参考:10]

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