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首页> 外文期刊>Macromolecular chemistry and physics >Isothermal crystallization kinetics of poly(epsilon-caprolactone) with tetramethyl polycarbonate and poly(styrene-co-acrylonitrile) blends using broadband dielectric spectroscopy
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Isothermal crystallization kinetics of poly(epsilon-caprolactone) with tetramethyl polycarbonate and poly(styrene-co-acrylonitrile) blends using broadband dielectric spectroscopy

机译:聚ε-己内酯与四甲基聚碳酸酯和聚苯乙烯-丙烯腈共混物的等温结晶动力学

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Phase behavior and isothermal crystallization kinetics of poly(epsilon-caprolactone) (PCL) blends with tetramethyl polycarbonate (TMPC) and poly(styrene-co-acrylonitrile) with 27.5 wt.-% acrylonitrile content-have been investigated using broadband dielectric spectroscopy and differential scanning calorimeter. An LCST-type phase diagram has been observed for PCL/SAN blend while all the different blend compositions of PCL/TMPC were optically clear without any phase separation structure even at high temperatures up to 300 degrees C. The composition dependence of T(g)s for both blends has been well described by the Gordon-Taylor equation. The phase diagram of PCL/SAN was theoretically calculated using the Flory-Huggins equation considering that the interaction parameter is temperature and composition dependent. The equilibrium melting point of PCL depressed in the blend and the magnitude of the depression was found to be composition dependent. The interaction parameters of PCL with TMPC and SAN could not be calculated from the melting point depression based on Nishi-Wang approach. The isothermal crystallization kinetics of PCL and in different blends was also investigated as a function of crystallization temperature using broadband dielectric spectroscopy. For pure PCL the rate of crystallization was found to be crystallization temperature (T-c) dependent, i.e., the higher the T-c, the lower the crystallization rate. The crystallization kinetics of PCL/TMPC blend was much slower than that of PCL/SAN at a constant crystallization temperature. This behavior was attributed to the fact that PCL is highly interacted with TMPC than SAN and consequently the stronger the interaction the higher depression in the crystallization kinetics. It was also attributed to the different values of T-g of TMPC (191 degrees C) and SAN (100 degrees C); therefore, the tendency for crystallization decreases upon increasing the T-g of the amorphous component in the blend. The analysis of the isothermal crystallization kinetics was carried out using the theoretical approach of Avrami. The value of Avrami exponent was almost constant in the pure state and in the blends indicating that blending simply retarded the crystallization rate without affecting the crystallization mechanism. Dielectric constant, epsilon', of pure PCL, blends of PCL/TMPC = 80/20 and PCL/SAN = 80/20 as a function of crystallization time at 47 degrees C and 1 kHz.
机译:已使用宽带介电谱和差示法研究了聚ε-己内酯(PCL)与四甲基聚碳酸酯(TMPC)和丙烯腈含量为27.5%的聚苯乙烯-丙烯腈的共混物的相行为和等温结晶动力学扫描量热仪。已观察到PCL / SAN共混物的LCST型相图,而PCL / TMPC的所有不同共混物组成都是光学透明的,即使在高达300摄氏度的高温下也没有任何相分离结构。T(g)的成分依赖性两种混合物的s都已通过Gordon-Taylor方程很好地描述了。考虑到相互作用参数取决于温度和成分,理论上使用Flory-Huggins公式计算了PCL / SAN的相图。发现在共混物中降低的PCL的平衡熔点和降低的幅度取决于成分。无法通过基于Nishi-Wang方法的熔点降低来计算PCL与TMPC和SAN的相互作用参数。还使用宽带介电谱研究了PCL及其在不同共混物中的等温结晶动力学与结晶温度的关系。对于纯PCL,发现结晶速率取决于结晶温度(T-c),即T-c越高,结晶速率越低。在恒定的结晶温度下,PCL / TMPC共混物的结晶动力学要比PCL / SAN慢得多。此行为归因于PCL与TMPC的相互作用比SAN高,因此相互作用越强,结晶动力学的降低幅度就越大。它还归因于TMPC(191摄氏度)和SAN(100摄氏度)的T-g值不同;因此,随着共混物中无定形组分的T-g增加,结晶趋势降低。等温结晶动力学的分析是使用Avrami的理论方法进行的。在纯态和共混物中,Avrami指数的值几乎是恒定的,这表明共混仅延迟了结晶速率而没有影响结晶机理。纯PCL的介电常数epsilon是PCL / TMPC = 80/20和PCL / SAN = 80/20的混合物,它是在47摄氏度和1 kHz下结晶时间的函数。

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