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Foaming of an Immiscible Blend System Using Organic Liquids as Blowing Agents

机译:使用有机液体作为发泡剂的不混溶共混体系的发泡

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Foaming of blend systems is a promising approach to develop cellular materials with a set of desired properties. However, foaming of blend systems is not only a chance but also a challenge, as different polymers have to be foamed at the same foaming conditions. The best conditions during foaming are individual to each polymer and influence the obtained cellular structure. In immiscible polymer blends like poly(2,6-dimethyl-1,4-phenylene ether) (PPE) and poly(styrene-co-acrylonitrile) (SAN) the differences in glass-transition temperature (T_g) and viscosity are vast and can inhibit the foaming of the blend system. In order to minimize the above-mentioned difference in T_g and viscosity, one approach is to choose a blowing agent, which shows a selective solubility in one polymer phase, working as a selective plasticizer. The aim of the present study is to evaluate systematically the foaming behavior of immiscible PPE/SAN blend systems using ethanol and n-pentane as blowing agents. Mass uptake of ethanol and n-pentane in the PPE/SAN-blends as function of the blend composition is measured, offering a selective solubility of ethanol in SAN, while n-pentane shows a high affinity to PPE. The plasticizing effect on the blend phases PPE and SAN is theoretically estimated using the Chow-equation and the WLF-equation. After foaming the blowing agent saturated blend samples in an oil-bath at different temperatures, the density reduction and the cellular structures are analyzed and correlated to the blend morphology, the blowing agent solubility in the blend phase, the Theological properties and the glass transition temperature of the nonsaturated and saturated blend phases.
机译:共混体系的发泡是一种开发具有一系列所需性能的多孔材料的有前途的方法。但是,共混体系的发泡不仅是机遇,而且是挑战,因为必须在相同的发泡条件下发泡不同的聚合物。发泡过程中的最佳条件是每种聚合物所独有的,并影响获得的孔结构。在不溶混的聚合物共混物中,例如聚(2,6-二甲基-1,4-亚苯基醚)(PPE)和聚(苯乙烯-丙烯腈)(SAN),玻璃化转变温度(T_g)和粘度的差异很大,并且会抑制共混体系的起泡。为了最小化上述T_g和粘度的差异,一种方法是选择起选择性增塑剂作用的在一种聚合物相中显示出选择性溶解性的发泡剂。本研究的目的是系统评价使用乙醇和正戊烷作为发泡剂的不混溶的PPE / SAN共混体系的发泡行为。测量了PPE / SAN混合物中乙醇和正戊烷的质量吸收量(作为共混物的函数),从而提供了乙醇在SAN中的选择性溶解性,而正戊烷对PPE的亲和力很高。理论上,使用Chow方程和WLF方程估算了对共混相PPE和SAN的增塑作用。在不同温度下在油浴中将发泡剂饱和共混物样品发泡后,分析密度降低和孔结构,并将其与共混物形态,共混相中发泡剂的溶解度,流变学性质和玻璃化转变温度相关联不饱和和饱和共混相

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