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In-situ cooling of adsorbed water to control cellular structure of polypropylene composite foam during CO 2 batch foaming process

机译:吸附水的原位冷却,控制聚丙烯复合泡沫的蜂窝结构:INM LOC =“柱”> 2 批量发泡过程

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摘要

The fixation stage of cellular structure during polymer foaming process is difficult to control due to difficult removing of internal heat, especially for crystalline polymers such as polypropylene (PP). In order to control cellular structure in the fixation stage, we established an universal method by introducing water as an in-situ internal cooling agent during the foaming process of PP. Particularly, hydrophilic fillers were added into the high melt flow index polypropylene (HMI-PP) with poor foaming ability to study the effect of adsorbed water on the foaming process of PP/filler composites during sc-CO2batch foaming process. Compared to pure HMI-PP, HMI-PP/hydrophilic filler composites showed increased adsorption amount for water and melt viscosity. The water within the composites played a key role in the foaming process, which not only served as a physical foaming agent to increase the volume expansion ratio of PP composite foam, but also showed the function of rapid cooling foam proved by thermal imaging technology. As a result, the presence of some hydrophilic fillers within HMI-PP matrix significantly improved the foaming properties of HMI-PP, including preventing internal bubble collapse and significantly increasing the volume expansion ratio of the foam. The applicability of this method was validated using other PP materials besides HMI-PP, including high molecular weight PP (HMW-PP), high melt strength PP (HMS-PP).
机译:在聚合物发泡过程中细胞结构的固定阶段由于难以去除内部热而难以控制,特别是对于诸如聚丙烯(PP)的结晶聚合物。为了控制固定阶段中的细胞结构,我们通过在PP的发泡过程中将水引入原位内冷却剂来建立一个通用方法。特别地,在高熔融流动指数聚丙烯(HMI-PP)中,具有差的发泡能力,在SC-CO2BATCH发泡过程中研究吸附水对PP /填料复合材料发泡过程的效果差。与纯HMI-PP相比,HMI-PP /亲水填料复合材料显示出水和熔融粘度的吸附量增加。复合材料内的水在发泡过程中起关键作用,其不仅用作物理发泡剂,以增加PP复合泡沫的体积膨胀率,而且还显示出通过热成像技术证明的快速冷却泡沫的功能。结果,在HMI-PP基质中存在一些亲水填料的存在显着改善了HMI-PP的发泡性能,包括预防内部气泡塌陷并显着增加泡沫的体积膨胀比。除了HMI-PP之外,使用其他PP材料验证了该方法的适用性,包括高分子量PP(HMW-PP),高熔体强度PP(HMS-PP)。

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