Synergism in Mechanical Properties of Polymer/Polymer Blends

M. Hara, J. Sauer
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引用次数: 46

Abstract

A wide range of physical and mechanical properties can be achieved in polymer/polymer blends by variation of such features as the molecular structure of the components, blend composition, morphology, and processing conditions [1–6]. If the two components of a binary blend are completely miscible at the molecular level, only a single phase will be present, and the glass transition temperature T g of the blend will lie between the respective T g's of the two components. This occurs, for example, in blends of polystyrene (PS) and poly (2, 6 dimethyl phenylene oxide) (PPO), for which the blend T g varies linearly with composition over the entire range [7]. The properties of such single-phase blends are reported to fall between those of the components and not to differ appreciably from values expected based on the simple rule of mixtures [2, 8]. On the other hand, if the two components of the blend are completely immiscible, two distinct phases will be present, each of which will have its own T g that is uninf...
聚合物/聚合物共混物力学性能的增效作用
通过改变组分的分子结构、共混物组成、形态和加工条件等特征,聚合物/聚合物共混物可以获得广泛的物理和机械性能[1-6]。如果二元共混物的两组分在分子水平上完全可混,则只存在一个单相,并且共混物的玻璃化转变温度tg将介于两组分的各自的tg之间。例如,这种情况发生在聚苯乙烯(PS)和聚(2,6二甲基苯乙烯氧化物)(PPO)的共混物中,其共混物tg在整个范围内随组成呈线性变化[7]。据报道,这种单相共混物的性能介于组分之间,与基于混合物简单规则的预测值没有明显差异[2,8]。另一方面,如果混合物的两种成分完全不混溶,则会出现两种不同的相,每种相都有自己的T。
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