首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Miscibility and phase behaviour of binary and ternary homoblends of poly(styrene-co-acrylic acid), poly(styrene-co-N,N-dimethylacrylamide) and poly(styrene-co-4-vinylpyridine)
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Miscibility and phase behaviour of binary and ternary homoblends of poly(styrene-co-acrylic acid), poly(styrene-co-N,N-dimethylacrylamide) and poly(styrene-co-4-vinylpyridine)

机译:聚(苯乙烯-co-丙烯酸),聚(苯乙烯-co-N,N-二甲基丙烯酰胺)和聚(苯乙烯-co-4-乙烯基吡啶)的二元和三元均混物的混溶性和相行为

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The miscibility and phase behaviour of binary and ternary homoblends prepared from poly(styrene-co-acrylic acid) (SAA14), poly(styrene-co-N,N-dimethylacrylamide) (SAD25) and poly(styrene-co-4-vinylpyridine) (S4VP15) were investigated by DSC. SAA14 is miscible with both S4VP15 and SAD25 and interacts more strongly with S4VP15 than with SAD25 as evidenced by comparing their compositional variation of glass transition temperatures (T-g). Positive and negative deviations from linear average line were respectively observed with the SAA14/S4VP15 and SAA14/SAD25 blends. Several conventional theoretical approaches were used to describe these T-g-composition behaviours. The one parameter Gordon-Taylor equation or the two parameters Kwei equation describe very well the behaviour of SAA14/S4VP15 system. However, the recent three parameters Brostow equation was needed to reproduce experimental T-g-composition for the SAA14/SAD25 system. Reasonable agreement with the experimental values are obtained for both systems when the fitting parameter free method developed by Coleman er al. is applied to predict the composition dependence of the glass transition temperature. The experimental phase diagram of the SAA14/S4VP15/SAD25 ternary polymer blend system presents an immiscibility region due to the unbalanced interactions among the three polymer pairs.
机译:由聚(苯乙烯-co-丙烯酸)(SAA14),聚(苯乙烯-co-N,N-二甲基丙烯酰胺)(SAD25)和聚(苯乙烯-co-4-乙烯基吡啶)制得的二元和三元均混物的混溶性和相行为)(S4VP15)由DSC调查。通过比较它们的玻璃化转变温度(T-g),可以证明SAA14与S4VP15和SAD25互溶,并且与S4VP15的相互作用比与SAD25的相互作用更强。使用SAA14 / S4VP15和SAA14 / SAD25共混物分别观察到线性平均线的正偏差和负偏差。几种常规的理论方法被用来描述这些T-g组成的行为。一个参数的Gordon-Taylor方程或两个参数的Kwei方程很好地描述了SAA14 / S4VP15系统的行为。但是,需要最近的三个参数Brostow方程来重现SAA14 / SAD25系统的实验T-g组成。当由Coleman等人开发的无拟合参数方法获得了两个系统的实验值的合理一致。用来预测玻璃化转变温度的成分依赖性。 SAA14 / S4VP15 / SAD25三元聚合物共混物系统的实验相图由于三个聚合物对之间的不平衡相互作用而呈现出不溶混区域。

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