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Interdiffusion behavior under a temperature gradient field in a poly(ethylene-co-hexene)/poly(ethylene-co-butene) system

机译:聚乙烯-己烯/聚乙烯-丁烯体系在温度梯度场下的互扩散行为

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We have investigated the interdiffusion of two dissimilar polymer species with different molecular masses, M-w, thus having different self-diffusion coefficients D*. A net mass flux across the interface and displacement of the original interface, Delta x, between the two polymer films are observed. The displacement of the original interface moves toward the side containing the faster moving polymer species. We also examine the effect of an in-plane stationary temperature gradient on the interdiffusion of two dissimilar polymer species. As the low M-w polymer species is in the region of high temperature under the thermal gradient temperature field, the interface between the two polymer films moves faster compared with the system with the low M-w polymer species in the cold region of the temperature gradient field. We suggest that the in-plane thermal gradient accelerates polymer migration through the enhancement in polymer diffusion along the direction of the temperature gradient due to the Soret effect. We also find that the interdiffusion of polymers depends on the composition in the blend system. For a statistical copolymer system of plastic poly(ethylene-co-hexene) (PEH) and elastic poly(ethylene-co-butene) (PEB), having technologically interesting plastic and elastic properties, the diffusion of the relatively slow diffusion species (PEH) increases with the increase of PEB composition. Under the thermal gradient field the net mass flux across the interface and the movement of original interface between two polymer films can be controlled by the direction of the temperature gradient and composition of the blend system.
机译:我们研究了具有不同分子量M-w的两种不同聚合物的互扩散,因此具有不同的自扩散系数D *。观察到整个界面上的净质量通量和两个聚合物薄膜之间原始界面的位移Delta x。原始界面的位移向包含移动速度更快的聚合物种类的一侧移动。我们还研究了平面内固定温度梯度对两种不同聚合物种类相互扩散的影响。由于低M-w聚合物物种在热梯度温度场下处于高温区域,因此与低M-w聚合物物种在温度梯度场的寒冷区域内的系统相比,两个聚合物薄膜之间的界面移动得更快。我们建议,由于Soret效应,面内热梯度通过沿温度梯度方向的聚合物扩散增强而加速了聚合物迁移。我们还发现,聚合物的相互扩散取决于共混体系中的组成。对于塑料聚(乙烯-共-己烯)(PEH)和弹性聚(乙烯-共-丁烯)(PEB)的统计共聚物系统,其具有技术上令人关注的塑性和弹性,相对较慢的扩散物质(PEH)的扩散)随PEB组成的增加而增加。在热梯度场下,可通过温度梯度的方向和共混体系的组成来控制界面上的净质量通量和两个聚合物膜之间原始界面的运动。

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