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FOAMING POLYSTYRENE WITH A MIXTURE OF CO_2 AND ETHANOL

机译:混合有二氧化碳和乙醇的发泡聚苯乙烯

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摘要

Use of mixtures of blowing agents in thermoplastic foam extrusion has been an industrial practice for a long time. However it has gained renewed interest in the past few years due to the introduction of difficult-to-process alternative gases, targeted as potential replacement for the banned ozone-depleting blowing agents. Reasons for blending physical foaming agents (PFA) are numerous. The incentives may be economical, environmental or technical. With respect to that latter factor, blending suitable PFA's is often regarded as providing a better control of processing conditions. For example, a specific PFA could be selected for its inflation performance and blended with other co-blowing agents chosen for their stabilizing role. Although considerable amount of work has been done in that area, very little information has been disclosed in open literature. Carbon dioxide (CO_2) has been reported as an interesting candidate for low-density polystyrene (PS) foaming, although the required concentrations are associated with high processing pressure due to the low solubility of the gas. Thus stable processing conditions are difficult to achieve. This work studies the effect of blending CO_2 with ethanol (EtOH) as a co-blowing agent for PS foaming. Extrusion foaming performance of this mixture will be discussed, with respect to its solubility (i.e. degassing conditions) and rheological behavior. The function of each blowing agent during the process will be analyzed with respect to the plasticization, nucleation, expansion and stabilization phases. Attention will also be paid to the interaction involving the two PFA components.
机译:长期以来,在热塑性泡沫挤出中使用发泡剂混合物一直是工业实践。但是,由于引入了难以处理的替代气体,该气体在过去的几年中重新引起了人们的兴趣,目标是替代受禁的消耗臭氧层的发泡剂。混合物理发泡剂(PFA)的原因很多。激励措施可以是经济,环境或技术方面的。关于后一个因素,掺混合适的PFA通常被认为可以更好地控制加工条件。例如,可以选择特定的PFA来实现其充气性能,并与其他具有稳定作用的共发泡剂混合。尽管在该领域已经做了大量工作,但是公开文献中很少公开信息。据报道,二氧化碳(CO_2)是低密度聚苯乙烯(PS)发泡的有趣候选物,尽管由于气体的溶解度低,所需的浓度与高处理压力有关。因此,难以获得稳定的加工条件。这项工作研究了将CO_2与乙醇(EtOH)混合作为PS发泡的共发泡剂的效果。关于该混合物的溶解性(即脱气条件)和流变行为,将讨论该混合物的挤出发泡性能。将针对增塑,成核,膨胀和稳定化阶段分析过程中每种发泡剂的功能。也将注意涉及两个PFA组件的交互。

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