首页> 外文期刊>Journal of Macromolecular Science. Physics >Binary miscible blends of poly(methyl methacrylate)/poly(alpha-methyl styrene-co-acrylonitrile): II. Rheological behavior during phase-separation
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Binary miscible blends of poly(methyl methacrylate)/poly(alpha-methyl styrene-co-acrylonitrile): II. Rheological behavior during phase-separation

机译:聚(甲基丙烯酸甲酯)/聚(α-甲基苯乙烯-共-丙烯腈)的二元可混溶共混物:II.。相分离过程中的流变行为

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摘要

Rheological behavior of blends of poly(alpha-methylstyrene-co-acrylonitrile) (PalphaMSAN) and poly(methyl methacrylate) (PMMA) has been thoroughly investigated in the vicinity of the phase-separation temperatures. The characteristic rheological parameters of the blends, such as, dynamic shear moduli, G', G", and dynamic shear viscosity, eta* were found to be very sensitive to the phase change from one-phase to two-phase. A spinodal phase diagram was detected theologically using the theoretical approach of Ajji and Choplin. In addition, the correlation length, as a function of temperature, was also calculated for different blend compositions. The correlation length was found to increase drastically at the phase-separation temperature as a result of concentration fluctuations giving rise to an anomalous contribution to the viscoelastic properties. Furthermore, the time-resolved measurement of dynamic storage modulus (G') for the near-critical composition (PalphaMSAN/PMMA = 25/75) has been investigated as a function of temperature in the two-phase regime. The value of G' at constant temperature and shear rate (0.5 sec(-1)) was found to be unchanged in the one-phase regime. However, on the other hand, a decrease in the value of G' was observed with the beginning of spinodal decomposition. The magnitude of decrease in the value of G' was found to be temperature (quenching depth) dependent. The larger the value of the quenching depth, the larger the decrease in the magnitude of G' and the shorter the time required for the phase-separation process. Some of kinetic parameters of phase-separation, such as activation energy and rate constant, were calculated from the current method. [References: 51]
机译:聚(α-甲基苯乙烯-丙烯腈)(PalphaMSAN)和聚(甲基丙烯酸甲酯)(PMMA)的混合物的流变行为已在相分离温度附近进行了深入研究。发现共混物的特征流变参数,例如动态剪切模量G',G”和动态剪切粘度eta *对从一相到两相的相变非常敏感。使用Ajji和Choplin的理论方法从神学上检测了该图,此外,还计算了不同共混物组成的相关长度随温度的变化,发现相关长度在相分离温度下急剧增加。浓度波动对粘弹性的异常影响,此外,研究了近临界成分(PalphaMSAN / PMMA = 25/75)的动态储能模量(G')的时间分辨测量。两相状态下的温度函数,在恒定温度和剪切速率(0.5 sec(-1))下的G'值在一相状态下没有变化。 d,随着旋节线分解的开始,观察到G'值降低。发现G'值的减小幅度取决于温度(淬火深度)。淬火深度的值越大,G'的幅度的减小越大,并且相分离过程所需的时间越短。根据当前方法计算了一些相分离的动力学参数,例如活化能和速率常数。 [参考:51]

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