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Optimization of Polyurethane Rigid Foams Co-Blown with Cyclopentane and Halogenated Olefin Blowing Agents

机译:用环戊烷和卤代烯烃发泡剂共吹吹塑聚氨酯刚性泡沫的优化

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Last year, the US Environmental Protection Agency (EPA) proposed a regulation on hydrofluorocarbons (HFCs) as blowing agents for use in rigid polyurethane insulation because of their high global warming potential (GWP). This regulation has recently been finalized, and for rigid polyurethane foam refrigerator insulation it will take effect beginning in 2020. When this occurs, those manufacturers currently using HFC 245fa or HFC 134a as blowing agents will need to find a substitute. Various candidates for these blowing agents have been proposed, and each has their own set of advantages and disadvantages which have been presented at previous CPI Conferences and are well known. Those manufacturers already using cyclopentane as a blowing agent will not be required to switch blowing agents, but they may still wish to explore alternatives. In this paper we will examine the properties of polyurethane foam co-blown with a blend of cyclopentane and halogenated olefin blowing agents. By looking at the theoretical behavior of the blowing agents inside the cells of the foam, we will show how using a blend of blowing agents can improve the thermal conductivity of the foam, especially at lower temperatures. Additionally, we will show that further optimization of the foam formulation for the blends of blowing agents can lead to even lower thermal conductivities of the foam.
机译:去年,美国环境保护署(EPA)提出了关于氢氟碳化物(HFCS)的条例作为发泡剂,因为它们的高全球变暖潜能值(GWP)的为硬质聚氨酯保温使用代理。这项规定最近已敲定,硬质聚氨酯泡沫保温冰箱将生效开始在2020年发生这种情况时,这些厂商目前使用HFC 245fa的或HFC 134a作发泡剂将需要找到替代品。这些发泡剂各候选人已经被提出,并且每个人都有自己的一套已提出了在以往CPI会议和众所周知的优点和缺点。这些制造商已经开始使用环戊烷作为发泡剂将无需切换发泡剂,但他们可能仍希望探索替代品。在本文中,我们将研究聚氨酯泡沫的性能共发泡与环戊烷的混合物和卤化烯烃发泡剂。通过观察泡沫细胞内的发泡剂的理论的行为,我们将展示如何使用发泡剂的共混物可以提高泡沫的导热性,尤其是在较低的温度。此外,我们将展示泡沫配方的发泡剂的共混物的进一步优化会导致甚至更低的泡沫的热导率。

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