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Phase behavior of supercritical CO2/styrene/poly(vinyl chloride) system and synthesis of polystyrene/poly(vinyl chloride) composites

机译:超临界CO2 /苯乙烯/聚氯乙烯体系的相行为和聚苯乙烯/聚氯乙烯复合材料的合成

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The phase behavior of the supercritical (SC) CO2/styrene/poly(vinyl chloride) (PVC) system was studied at 40 degrees C in the pressure range from 80 to 160 bar. The styrene concentration in the fluid phase ranged from 0 to 0.4 mol/L. The mass uptakes of styrene in PVC films before and after depressurization were obtained. A considerable amount of styrene in the films was carried out by CO2 in the venting process. When styrene contains 0.3 mol % initiator 2,2'-azobis(isobutyronitrile) (AIBN), the mass uptake is much higher than that in the absence of the initiator. The mass uptakes can be controlled by soaking time, pressure, and styrene concentration. PVC/polystyrene (PS) composites were prepared by the polymerization of styrene in PVC substrates. Scanning electron microscopy indicates that the original PVC gains are broken into the primary particles in the course of SC CO2 swelling at the low temperature of 40 degrees C, and the PVC primary particles force the PS particles to be well dispersed between them. The mechanical measurements show that the addition of PS not only can toughen brittle PVC but also can reinforce it in the PS content range from 0.074 to 0.24 g/g. [References: 19]
机译:在40摄氏度,压力80至160 bar的条件下研究了超临界(SC)CO2 /苯乙烯/聚氯乙烯(PVC)体系的相行为。液相中的苯乙烯浓度范围为0至0.4 mol / L。获得了减压前后PVC膜中苯乙烯的质量吸收率。薄膜中的大量苯乙烯是通过排气过程中的CO2进行的。当苯乙烯包含0.3摩尔%的引发剂2,2'-偶氮二(异丁腈)(AIBN)时,质量吸收比没有引发剂时要高得多。质量吸收可以通过浸泡时间,压力和苯乙烯浓度来控制。 PVC /聚苯乙烯(PS)复合材料是通过苯乙烯在PVC基材中的聚合反应制备的。扫描电子显微镜表明,原始的PVC增益在SC CO 2在40℃的低温下溶胀的过程中被分解成初级颗粒,并且PVC初级颗粒迫使PS颗粒良好地分散在它们之间。力学测量表明,添加PS不仅可以使脆性PVC增韧,而且可以在0.074至0.24 g / g的PS含量范围内对其进行增强。 [参考:19]

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