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Novel nucleating agent-based technology resulting in low density rigid polyurethane foam for appliances with reduced energy consumption

机译:基于成核剂的新技术可生产出低密度的硬质聚氨酯泡沫,从而降低了设备的能耗

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摘要

Emulsion technology has proven to offer improvements to the performance of rigid polyurethane foam both in terms of general physical properties as well as for insulation performance. The presence of insoluble liquid materials generates a very fine celled structure leading to the above mentioned advantages. Earlier technological developments made in this direction made use of fully or highly fluorinated materials, an approach which became jeopardised because of the unfavourable environmental properties (especially the very high GWP) of this type of materials. A new approach has now been identified which via a similar process, results in polyurethane foam showing improved physical properties, but which doesn't offer negative environmental properties. The improved physical properties include a 10% reduction in minimum stable density in comparison to actual systems available in the market. This paper describes all aspects of this new approach, both in terms of its physical and environmental properties, as well as the final physical properties of the PU foam produced. The overall environmental impact of the different options identified using this approach also will be discussed. Several aspects of the effect of the emulsion technology on the general processing of the foam system will be highlighted. Sourcing, availability and cost impact of the new technology options will also be discussed.
机译:事实证明,乳液技术可以改善硬质聚氨酯泡沫塑料的总体物理性能以及绝缘性能。不溶性液体材料的存在产生非常细小的孔结构,从而导致上述优点。在此方向上的较早技术发展是使用全氟化或高氟化材料,由于这种材料的不利环境特性(尤其是全球升温潜能值很高),这种方法受到了危害。现在已经确定了一种新方法,该方法通过类似的过程可以使聚氨酯泡沫塑料显示出改善的物理性能,但不会带来负面的环境性能。与市场上可用的实际系统相比,改善的物理性能包括最小稳定密度降低10%。本文从物理和环境特性以及所生产的PU泡沫的最终物理特性方面描述了这种新方法的所有方面。还将讨论使用这种方法确定的不同选项对整体环境的影响。将重点介绍乳液技术对泡沫系统的一般加工的影响的几个方面。还将讨论新技术选件的采购,可用性和成本影响。

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