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Influence of the injection moulding parameters on the cellular structure and thermo-mechanical properties of ethylene-propylene block copolymer and PETG foams

机译:注塑参数对乙烯 - 丙烯嵌段共聚物和PETG泡沫细胞结构和热机械性能的影响

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Microcellular injection moulding technology is capable of producing lightweight polymeric products. Microcellular foams are characterised by cell densities in the order of 10~9-10~(15) cells per cm and cell sizes between 10-100 μm in diameter. The foam morphology is determined by the injection moulding parameters, and it has been observed that depending on the parameters variations, cell structure may exhibit substantial morphological differences through the entire section, along the melt flow direction of the injected part. Using a constant temperature profile and blowing agent dosage rate, variations of 3 key injection moulding parameters (mould temperature, injection speed and shot volume) were studied to analyse the effect on foam morphology and thermal mechanical properties of single ethylene-propylene block copolymer (EPBC) and poly(ethylene glycol-co-cyclohexane- 1,4- dimethanol therephthalate) (PETG) specimens.
机译:微孔注塑技术能够生产轻质聚合物产品。 微孔泡沫的特征在于每厘米10〜9-10〜(15)个细胞的细胞密度,电池尺寸在直径10-100μm之间。 通过注射成型参数确定泡沫形态,并且已经观察到,根据参数变化,细胞结构可以沿着注入部分的熔体流动方向表现出通过整个部分的实质形态差异。 使用恒定温度曲线和发泡剂剂量率,研究了3个关键注塑参数(模具温度,注射速度和射击体积)的变化,分析了对单乙烯 - 丙烯嵌段共聚物的泡沫形态和热力学性能的影响(EPBC )和聚(乙二醇 - 共环己烷-1,4-二甲醇,偏酸盐)(PETG)标本。

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