首页> 外文期刊>Journal of Cellular Plastics >HFC-245fa Spray Polyurethane Foam Systems Co-Blown with Water: A Quality, Cost Effective, Safe Substitute for HCFC-141b
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HFC-245fa Spray Polyurethane Foam Systems Co-Blown with Water: A Quality, Cost Effective, Safe Substitute for HCFC-141b

机译:HFC-245FA喷雾聚氨酯泡沫系统共用水:优质,成本效益,安全替代HCFC-141B

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The effective use of insulation is key to energy conservation. The effectiveness of insulation is dependent upon many factors. In the case of rigid foam insulation a key factor is the blowing agent used. Industry evaluations have shown that HFC-245fa produces foams with the highest insulation value of any HCFC-141b alternative-blowing agent in the construction market. Meeting the market needs is critical to the success of any new product. Today's insulation specifiers are not only concerned about energy savings but also cost. Chemical and manufacturing changes can have a significanteffect on product cost.The higher vapor pressure of HFC-245fa and its impact on packaging has also been a concern to the spray foam industry. This paper contains the latest results about the use of HFC-245fa foam systems co-blown with water, which meet the needs of the spray foam market. They are cost effective, produce foams with low k-factors, good physical properties, and can be stored and shipped in existing drumps. This will allow applicators and manufacturers to safely use existing equipment without significant modifications or safety concerns. HFC-245fa and water used as co-blowing agents provide a wide range of benefits in spray foam. Since less HFC-245fa is used, the vapor pressure is lower, and the cost of the system is reduced while improving the physical properties of the foam. There is however an increase in k-factor. We have determined also that the addition of low levels of #alpha#-methyl styrene to a spray foam polyol blend lowers the vapor pressure of the polyol blend an denhances the k-factor of the foams produced. This allows the user to optimize k-factor while lowering the cost. Data from laboratory evaluations of these blends are presented. This paper also includes a discussion of the cost of these blends from a chemical, manufacturing and performance perspective.We consider HFC-245fa/water co-blown spray foam to be a quality, cost effective and alternative to HCFC-141b blown foams in the future.
机译:有效使用绝缘是节能的关键。绝缘的有效性取决于许多因素。在刚性泡沫绝缘体的情况下,关键因子是使用的发泡剂。行业评估表明,HFC-245FA在建筑市场中产生具有任何HCFC-141B替代发泡剂的最高保温值的泡沫。满足市场需求对于任何新产品的成功至关重要。今天的绝缘规范不仅关注节能,而且成本。化学和制造变化可能对产品成本具有重要意义.HFC-245FA的较高蒸气压及其对包装的影响也是喷雾泡沫行业的关注。本文包含了关于使用与水合作的HFC-245FA泡沫系统的最新成果,这满足喷雾泡沫市场的需求。它们具有成本效益,产生具有低k因素,良好物理性质的泡沫,可以储存和运输在现有的块状。这将允许施用器和制造商安全使用现有设备,而无需重大修改或安全问题。用作共发电剂的HFC-245FA和水在喷雾泡沫中提供了广泛的益处。由于使用了较少的HFC-245FA,因此蒸气压低,并且系统的成本在改善泡沫的物理性质同时减少。然而,K因子有增加。我们已经确定了将低水平的#α#-methyl苯乙烯添加到喷雾泡沫多元醇共混物中,降低了多元醇共混物的蒸气压,该蒸气压力是制造的泡沫的K因子的Denhances。这允许用户在降低成本的同时优化K因子。提出了这些混合物的实验室评估的数据。本文还包括从化学,制造和性能视角下讨论这些混合物的成本。我们认为HFC-245FA /水共吹喷雾泡沫是一种质量,成本效益和替代HCFC-141B吹泡沫的替代品未来。

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