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Adjusting cell structure of polypropylene composite foams by controlling the size and dispersed state of NaCl particles during CO2 batch foaming process

机译:通过控制CO 2批量发泡过程中的NaCl颗粒的尺寸和分散状态来调节聚丙烯复合泡沫的细胞结构

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摘要

In this work, a novel method for regulating cellular structure of polypropylene (PP) foam under CO2 batch foaming with water as disperse medium was established by addition of hydrophilic fillers (Such as NaCl). The presence of NaCl increased adsorption amount of water in PP/NaCl composites. As a result, both CO2 and adsorbed water acts as blowing agents during CO2 batch foaming. Thus the dispersed state and size of NaCl particles directly affect the mixed state of two blowing agents (water and CO2) and the competition between two types of heterogeneous nucleation from NaCl particles and PP crystals during foaming, which are the fundamental reasons for the formation of the foamed materials with different cellular structures, such as isolated large cell surrounded by uniform small cell structure, bimodal cell structure and homogeneous cell structure. Another unexpected finding was that the water absorption of PP/NaCl composites increased with the decrease of NaCl particle size, which is beneficial to play the in-situ cooling effect and co-blowing agent of absorbed water to control the foaming behavior of PP, and avoid the damage of foam mechanical properties due to the high content of filler.
机译:在这项工作中,通过添加亲水填料(例如NaCl),建立了一种用水法调节在CO 2批量发泡下聚丙烯(PP)泡沫细胞结构的新方法。 NaCl的存在增加了PP / NaCl复合材料中的水的吸附量。结果,二氧化碳和吸附的水在CO 2批量发泡过程中起到发泡剂。因此,NaCl颗粒的分散状态和尺寸直接影响两个发泡剂(水和CO2)的混合状态,并且在发泡过程中,从NaCl颗粒和PP晶体的两种类型的异质成核之间的竞争,这是形成的根本原因具有不同细胞结构的发泡材料,例如均匀的小细胞围绕着均匀的小细胞结构,双峰细胞结构和均匀细胞结构。另一个意外发现是,PP / NaCl复合材料的吸水率随着NaCl粒度的降低而增加,这有利于发挥原位冷却效果和吸收水的共发泡剂来控制PP的发泡行为,以及由于填料的高含量,避免泡沫机械性能的损伤。

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