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首页> 外文期刊>Journal of Applied Polymer Science >Molecular simulation on relationship between composition and microstructure of PP/PC blend
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Molecular simulation on relationship between composition and microstructure of PP/PC blend

机译:PP / PC共混物组成与微观结构关系的分子模拟

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Simulations based on molecular dynamics and mesodyn theories were used to investigate the compatibility, morphology evolution of polypropylene/ polycarbonate (PP/PC) blends, and the relationship between the composition and microstructure. Results of Flory-Huggins interaction parameters, integral structure factor, X-ray intensity, free-energy density, and order parameters all indicated that phase separations occurred in all PP/PC blend systems, and poor compatibility was exhibited for this polymer pair. The systems of PP/PC = 54/46, PP/PC = 31/69, and PP/PC = 18/82 showed stronger immiscibility and the faster separation process, while the systems of PP/PC = 82/18 and PP/PC = 5/95 showed less immiscibility and a slower separation process. Compared with the results of mechanical properties tests, the appearance of a cocontinuous structure obtained from simulation corresponds to the transition point of impact strength and tensile strength. After transition, the mechanical properties of the blends depended on the properties of the PC matrix, and the impact strength and tensile strength were both clearly enhanced. As the simulation steps increased, the morphology of PP/PC = 54/46 blend developed into a double-lamellar structure by coarsening of PC phase from initial homogeneous configuration. In addition, the compatibilizing effect of SEBS was also investigated at the microscale, and varying the content of PS block in SEBS has little effect on the morphology of blend.
机译:基于分子动力学和内消旋理论的模拟用于研究相容性,聚丙烯/聚碳酸酯(PP / PC)共混物的形态演变以及组成与微观结构之间的关系。 Flory-Huggins相互作用参数,积分结构因子,X射线强度,自由能密度和有序参数的结果均表明在所有PP / PC共混体系中均发生了相分离,并且该聚合物对的相容性较差。 PP / PC = 54/46,PP / PC = 31/69和PP / PC = 18/82的系统显示出更强的不混溶性和更快的分离过程,而PP / PC = 82/18和PP / PC PC = 5/95显示出较少的不溶混性和较慢的分离过程。与机械性能测试的结果相比,通过模拟获得的共连续结构的外观对应于冲击强度和拉伸强度的转变点。转变后,共混物的机械性能取决于PC基体的性能,并且冲击强度和拉伸强度均得到明显提高。随着模拟步骤的增加,PP / PC = 54/46共混物的形态通过从初始均相构型粗化PC相而发展为双层结构。此外,还从微观角度研究了SEBS的增容作用,并且改变SEBS中PS嵌段的含量对共混物的形态影响很小。

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