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首页> 外文期刊>Journal of Applied Polymer Science >Soft PVC foams: Study of the gelation, fusion, and foaming processes. I. Phthalate ester plasticizers
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Soft PVC foams: Study of the gelation, fusion, and foaming processes. I. Phthalate ester plasticizers

机译:软质PVC泡沫:研究胶凝,熔融和发泡过程。一,邻苯二甲酸酯增塑剂

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摘要

The use of foamed plastics gains more and more interest every day. Flexible poly(vinyl chloride) (PVC) foams have excellent mechanical properties and low price, thus their application is extensive. Foams are produced from plastisols, which are based on the suspension of the PVC resin in a plasticizer. Phthalates are the most used plasticizers in flexible PVC foam formation. In this study, we have studied the influence of the phthalate ester-type plasticizers on the foaming process and the quality of the foams obtained from the corresponding plastisols. For the plastisols prepared with the nine phthalate plasticizers considered, we have studied and discussed the complex and extensional viscosities; the thermal behavior (DSC) including the decomposition of the chemical blowing agent, and the foam production by rotational molding. In addition, we have characterized the foams obtained by thermomechanical analysis, density, and bubble size distribution. As expected, clear correlations have been obtained between the molecular weight and structure of the plasticizer with the rheological behavior of the plastisols. The knowledge of the gelation and fusion processes and evolution of the extensional viscosity of the plastisols combined with the study of the thermal decomposition of the blowing agent in each plastisol allows for better understanding of the complex dynamic behavior of these foaming systems.
机译:每天使用泡沫塑料越来越引起人们的兴趣。柔性聚氯乙烯(PVC)泡沫具有出色的机械性能和低廉的价格,因此其应用广泛。泡沫由增塑溶胶制成,增塑溶胶基于PVC树脂在增塑剂中的悬浮液。邻苯二甲酸酯是柔性PVC泡沫形成中最常用的增塑剂。在这项研究中,我们研究了邻苯二甲酸酯型增塑剂对发泡过程和从相应的增塑溶胶获得的泡沫质量的影响。对于考虑使用九种邻苯二甲酸酯类增塑剂制备的增塑溶胶,我们已经研究并讨论了复数粘度和拉伸粘度。热行为(DSC),包括化学发泡剂的分解,以及通过滚塑生产的泡沫。此外,我们还对通过热机械分析,密度和气泡尺寸分布获得的泡沫进行了表征。如所预期的,已经在增塑剂的分子量和结构与增塑溶胶的流变行为之间获得了明确的相关性。胶凝和融合过程的知识以及增塑溶胶的延伸粘度的演变,以及对每种增塑溶胶中发泡剂热分解的研究的结合,可以使人们更好地理解这些发泡系统的复杂动力学行为。

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