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Investigation on Foamed PP/Nano-CaCO3 Composites in a Combined in-Mold Decoration and Microcellular Injection Molding Process

机译:发泡PP /纳米CaCO3复合材料在模内装饰和微孔注射成型工艺中的研究

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摘要

A combined in-mold decoration and microcellular injection molding (IMD/MIM) method has been used in this paper. The foamed PPano-CaCO composites were prepared to investigate their mechanical properties, cellular structure, and surface quality. The content of nano-CaCO varied from 0 to 10 wt %. The results showed that nano-CaCO acted as a reinforcing phase and nucleating agent, which help to improve the mechanical properties of foamed composites. The cellular structure and mechanical properties were optimum when the nano-CaCO content was 6 wt %. In the vertical section, the cell size and density of transition layer on the film side was bigger than that on the non-film side. In the parallel section, the cell ratio of length to diameter of transition layer on the film side was smaller than that on the non-film side, and the cell tile angle was larger than that on the non-film side. With nano-CaCO content increasing, the surface quality showed a trend of decreasing first and then increasing.
机译:本文采用了模内装饰与微孔注射成型(IMD / MIM)相结合的方法。制备泡沫PP /纳米CaCO复合材料以研究其机械性能,孔结构和表面质量。纳米CaCO的含量为0至10重量%。结果表明,纳米CaCO充当增强相和成核剂,有助于改善泡沫复合材料的机械性能。当纳米CaCO含量为6wt%时,孔结构和机械性能最佳。在垂直部分,膜侧的过渡层的孔尺寸和密度大于非膜侧的过渡层的孔尺寸和密度。在平行部分中,膜侧上的过渡层的长度与直径的泡孔比小于非膜侧上的泡孔比,并且泡孔角大于非膜侧上的泡孔角。随着纳米CaCO含量的增加,表面质量呈现出先降低后升高的趋势。

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