首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Fractionated crystallization in immiscible POM/(PS/PPE)blends Part 1:effect of blend phase morphology and physical state of the amorphous matrix phase
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Fractionated crystallization in immiscible POM/(PS/PPE)blends Part 1:effect of blend phase morphology and physical state of the amorphous matrix phase

机译:不混溶的POM /(PS / PPE)混合物中的分步结晶混合物第1部分:混合相形态和非晶基质相物理状态的影响

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The fractionated crystallization behavior of POM in immiscible POM/(PS/PPE) blends has been investigated by Differential Scanning Calorimetry (DSC)and correlated to the blend phase morphology.By varying the PS/PPE composition, homogeneous amorphous phases with different glass transition temperatures, varing between 100 (T_(g,PS))and 215deg C(T_(g,PPE)),and melt-viscosities were obtained, without altering the interafcial tension of the blend system. As such, a model blend system has been created which allows to investigate both the influence of the blend phase morphology and of the physical state of the amorphous PS/PPE matrix, on the crystallization behavior of the minor POM phase.The difference between low viscosity/low viscosity and low viscosity/high viscosity blend systems with respect to the development of the phase morphology during melt-mixing is reflected in various aspects of the fractionated crystallization behavior. The onset composition of fractionated crystallization can be related to the center of the phase inversion region for all blend systems. Within the same blend type,the extent of homogeneous crystallization can be related to the blend phase morphology (i.e.the number of droplets per volume unit of the dispersed phase). However,comparing different blend types reveals that other factors, such as the physical state of the amorphous matrixphase, also play a role. Further, multiple crystallization peaks were observed and have been related to the width of the particle size distribution of the dispersed POM phase.
机译:通过差示扫描量热法(DSC)研究了不混溶的POM /(PS / PPE)共混物中POM的分级结晶行为,并将其与共混物相形态相关联。 ,在100(T_(g,PS))和215°C(T_(g,PPE))之间变化,获得了熔体粘度,而没有改变共混体系的界面张力。因此,已经建立了一个模型共混体系,可以研究共混相形态和无定形PS / PPE基质的物理状态对次要POM相结晶行为的影响。关于熔融混合过程中相形态发展的/低粘度和低粘度/高粘度共混体系反映在分级结晶行为的各个方面。对于所有共混体系,分级结晶的起始组成可能与相转化区的中心有关。在相同的共混物类型中,均匀结晶程度可能与共混物相形态有关(即每体积单位分散相的液滴数量)。但是,比较不同的共混物类型表明,其他因素(例如无定形基体相的物理状态)也起作用。此外,观察到多个结晶峰,并且与分散的POM相的粒径分布的宽度有关。

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