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首页> 外文期刊>Journal of Applied Polymer Science >Extensional viscosity measurements and characterization of poly (vinyl chloride-co-vinyl acetate) plastisols and foams
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Extensional viscosity measurements and characterization of poly (vinyl chloride-co-vinyl acetate) plastisols and foams

机译:拉伸粘度测量和聚(氯乙烯-乙酸乙烯酯共聚)塑料溶胶和泡沫的表征

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The foaming of PVC-VA [Poly (vinyl chloride-co-vinyl acetate)] plastisols is a complex combination of processes involving the simultaneous curing of the paste with the evolution of gases caused by the decomposition of the chemical blowing agent. The extensional viscosity is a fundamental characteristic of the material, responsible for the behavior of the system when undergoing the extensional stress produced by the released gases. Nevertheless, such changes have not been considered to the same extent as the complex viscosity evolution or the thermal processes suffered by PVC-VA plastisols. The objective of the present work is to study the extensional viscosity of the PVC-VA plastisols prepared with three plasticizers of similar structure, but with different curing and rheological behavior in order to investigate its influence on the quality of the foams obtained. Extensional viscosity measurements under forced prestretch conditions revealed that depending on the structure and consequently on the compatibility of the plasticizer used, each plastisol develops its properties and structure accordingly. DINCH plasticizer (Diisononyl cyclohexane-1,2-dicarboxylate presenting alicyclic ring) seems to be the less compatible compared with the other two studied (both presenting aromatic rings) according to its behavior during the curing and foaming processes and may not be able to withstand the pressure evolved by the released gases during the foaming process yielding foams of poorer quality.
机译:PVC-VA [聚(氯乙烯-乙酸乙烯酯共聚物)]增塑溶胶的发泡是多个复杂过程的组合,包括糊剂的同时固化以及由化学发泡剂分解引起的气体逸出。拉伸粘度是材料的基本特征,当经受由释放的气体产生的拉伸应力时,负责系统的行为。然而,尚未将这种变化视为与PVC-VA增塑溶胶的复杂粘度演变或热过程相同的程度。本工作的目的是研究用三种结构相似但固化和流变性能不同的增塑剂制备的PVC-VA增塑溶胶的扩展粘度,以研究其对所得泡沫质量的影响。在强制预拉伸条件下的拉伸粘度测量结果表明,根据结构以及所用增塑剂的相容性,每种增塑溶胶都会相应地发展其性能和结构。根据其在固化和发泡过程中的行为,DINCH增塑剂(带有环脂环的1,2-二异壬基环己二酸二脂环酯)似乎与其他两个研究对象(均带有芳环)相比,相容性较差,可能无法承受发泡过程中释放的气体释放出的压力会产生质量较差的泡沫。

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