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FOAMING POLYSTYRENE USING BLENDS OF HFC: SOLUBILITY AND PROCESSING BEHAVIOUR

机译:混合使用HFC发泡聚苯乙烯:溶解度和加工行为

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With the increasing concern over global climate change, there is a continuing need to develop and understand more environmentally acceptable blowing agents useful in the production of extruded polystyrene (XPS) foam for thermal insulation. Most manufacturing processes of extruded XPS foam insulation boards are currently based on HFC-134a (1,1,1,2-tetrafluoroethane). Neat HFC-134a has a relatively low solubility in polystyrene. This is translating into processing difficulties and inadequate foam properties. Extrusion operation must then be conducted at larger operating pressures and foams blown from neat HFC-134a have higher densities, very small cell size and significant open cell content. In addition, HFC-134a has a large global warming potential; approaches enabling to mitigate its environmental impact would be highly desirable. This paper investigates various blowing agent formulations based on mixtures of HFC-134a with HFC-32 (difluoromethane) or HFC-152a (1,1-difluoroethane). Investigations focused on the Theological (plasticization) and degassing (solubility) behaviour of the formulations, as measured on-line during foam extrusion. Rules of mixing for such blends of HFCs are proposed based on the relative contribution of each component to the overall processing behaviour.
机译:随着对全球气候变化的日益关注,持续需要开发和理解更环境可接受的发泡剂,该发泡剂可用于生产用于绝热的挤出聚苯乙烯(XPS)泡沫。目前,大多数挤塑XPS泡沫保温板的制造工艺都基于HFC-134a(1,1,1,2-四氟乙烷)。整洁的HFC-134a在聚苯乙烯中的溶解度较低。这转化为加工困难和泡沫性能不足。然后必须在较大的工作压力下进行挤出操作,并且从纯HFC-134a吹出的泡沫具有更高的密度,非常小的孔尺寸和显着的开孔含量。另外,HFC-134a具有很大的全球变暖潜能。能够减轻其环境影响的方法将是非常可取的。本文研究了基于HFC-134a与HFC-32(二氟甲烷)或HFC-152a(1,1-二氟乙烷)的混合物的各种发泡剂配方。研究集中于配方的流变(增塑)和脱气(溶解性)行为,这些行为是在泡沫挤出过程中在线测量的。根据每种成分对整体加工性能的相对贡献,提出了此类氢氟碳化合物混合物的混合规则。

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