RESEARCH FOR FORMING POROUS STRUCTURES BASED ON PVC

I. Khristoforova, A. Khristoforov
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Abstract

In this work, we report on phase equilibrium in systems «plasticizer mix - blowing agent». Dioctiphthalate, butylbenzylphthalate and dicresyl phosphate were used as plasticizer, and simple oligoesters (ethylene glycol, diethylene glycol, triethylene glycol) served as a blowing agent. We conducted an experiment and built triple phase diagrams. Diphenylcresylphosphate proved to be fully compatible with diethylene and triethylene glycol, but not to the ethylene one. Triple systems «Butyl benzyl phthalate - Diphenylcresylphosphate - Simple oligoesters» turned out to be homogeneous for several created compounds. To achieve this for a triple system, the minimal quantity threshold is either 20% of triethylene glycol or 30% of diethylene. As for the case of dioctyl phthalate for second plasticizer, the minimal threshold for blowing agents is 70%. We constructed a device that allows to detect phase equilibrium for liquid systems. We devised several compounds and a technological proccess for creating porous PVC-based membranes using thermal molding. We selected such molding due to several advantages when compared to other methods for producing porous membranes, such as: required density, elasticity, open pores, and narrow pore size distribution. We managed to create several samples based on emulsion type PVC, butyl benzyl phthalate, diphenylcresyl phosphate, diethylene and triethylene glycol. During the phase inversion thermal process temperature should be around 180 degrees of celsium. Porous materials have the following properties: open porosity 38-44%, breaking strength 1.0 – 1.2 MРa, relative extension 43-63%, maximal pore size (2.3 – 2.8)·10-6 m, average pore size (0.5 – 1.1)·10-6 m.
聚氯乙烯成型多孔结构的研究
在这项工作中,我们报告了“增塑剂混合发泡剂”系统的相平衡。以邻苯二甲酸二辛酯、邻苯二甲酸丁苯酯和磷酸二重酯为增塑剂,以简单低聚酯(乙二醇、二甘醇、三甘醇)为发泡剂。我们做了一个实验,建立了三相图。二苯甲酰磷酸酯被证明与二乙烯和三甘醇完全相容,但与乙烯不相容。三个体系“邻苯二甲酸丁苯酯-磷酸二苯甲酯-简单低聚酯”被证明是均匀的几个创建的化合物。为了实现这一目标,对于一个三重系统,最小的数量阈值是20%的三甘醇或30%的二乙烯。对于第二增塑剂邻苯二甲酸二辛酯,发泡剂的最小阈值为70%。我们建造了一个可以检测液体系统相平衡的装置。我们设计了几种化合物和一种技术过程,用于使用热成型制造多孔pvc基膜。与其他生产多孔膜的方法相比,我们选择这种成型方法有几个优点,例如:所需的密度、弹性、开放的孔隙和狭窄的孔径分布。我们设法制造了几种基于乳液型PVC、邻苯二甲酸丁苯酯、磷酸二苯甲酰、二乙烯和三甘醇的样品。在相变热过程中,温度应在摄氏180度左右。多孔材料的孔隙率为38 ~ 44%,断裂强度1.0 ~ 1.2 MРa,相对延伸43 ~ 63%,最大孔径(2.3 ~ 2.8)·10 ~ 6m,平均孔径(0.5 ~ 1.1)·10 ~ 6m。
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