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Polypropylene-dispersed domain as potential nucleating agent in PS and PMMA solid-state foaming

机译:聚丙烯分散域在PS和PMMA固态发泡中作为潜在的成核剂

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摘要

The potential of using dispersive domains in a polymer blend as a bubble nucleating agent was investigated by exploiting its high dispersibility in a matrix polymer in the molten state and its immiscibility in the solid state. In this experiments, polypropylene (PP) was used as the nucleating agent in polystyrene (PS) and poly(methyl methacrylate) (PMMA) foams at the weight fraction of 10, 20, and 30 wt %. PP creates highly dispersed domains in PS and PMMA matrices during the extrusion processing. The high diffusivity of the physical foaming agent, i.e., CO_2 in PP, and the high interfacial tension of PP with PS and PMMA could be beneficial for providing preferential bubble nucleation sites. The experimental results of the pressure quench solid-state foaming of PS/PP and PMMA/PP blends verified that the dispersed PP could successfully increase the cell density over 10~6 cells/cm ~3 for PS/PP and 10~7 cells/cm~3 for PMMA/PP blend and reduce the cell size to 24 μm for PS/PP and 9 μm for PMMA/PP blends foams. The higher interfacial tension between PP and the matrix polymer created a unique cell morphology where dispersed PP particles were trapped inside cells in the foam.
机译:通过利用其在熔融状态下在基体聚合物中的高分散性和在固态下的不混溶性,研究了在聚合物共混物中使用分散域作为气泡成核剂的潜力。在该实验中,聚丙烯(PP)用作聚苯乙烯(PS)和聚(甲基丙烯酸甲酯)(PMMA)泡沫中的成核剂,其重量分数为10、20和30 wt%。 PP在挤出过程中在PS和PMMA基质中产生高度分散的畴。物理发泡剂即PP中的CO_2的高扩散性以及PP与PS和PMMA的高界面张力可能有利于提供优先的气泡成核点。 PS / PP和PMMA / PP共混物的压力淬火固态发泡的实验结果证明,分散的PP可以成功地将PS / PP和10〜7孔/ cm的孔密度提高到10〜6孔/ cm〜3 PMMA / PP共混物为cm〜3,PS / PP的泡孔尺寸减小为24μm,PMMA / PP共混物的泡孔尺寸减小为9μm。 PP和基质聚合物之间较高的界面张力产生了独特的孔道形态,其中分散的PP粒子被困在泡沫的孔道内。

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