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Effect of Gas-assisted-foaming Mechanism and Vent-area Design on Bubble-microstructure and Shrinkage of Polystyrene Foam-Injection Molding

机译:气体辅助发泡机理和通气区设计对聚苯乙烯泡沫注塑成型的气泡微观结构和收缩的影响

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This study investigates the effects of the vent-area on bubble-microstructure and shrinkage variation of gas-assisted foam-injection molding (GAFIM). The molding material is polystyrene (PS), and the gas foaming agent is nitrogen (N2). This study carried out the injection experiment with and without GAFIM to observe the molding characteristics of gas-filling pressure variation. In addition, the integration of vent-area volumes and cavity pressure measurement was developed to achieve foam growth and microstructure inside the sample to observe the effect of with and without vent-area on shrinkage variation and correlated pressure distribution near gate position during the filling process. The experimental results revealed that with the vent-area, the sample dimension shrinkage was relatively improved and the sample weight was reduced. On the other hand, the bubble-distribution increased with the changes in the volume of the vent-area and gas-filling pressure as the foam growth space increased.
机译:本研究研究了通气区对气体辅助泡沫注射成型(GAFIM)的气泡微观结构和收缩变化的影响。模塑材料是聚苯乙烯(PS),气体发泡剂是氮气(n 2 )。该研究进行了注射实验,无需加法艇,观察气填充压力变化的模塑特性。此外,开发了通风区体积和腔压力测量的集成,以实现样品内的泡沫生长和微观结构,以观察填充过程中栅极位置附近栅极位置附近的收缩变化和相关压力分布的泡沫生长和微观结构。实验结果表明,通过通气面积,样品尺寸收缩率相对提高,并降低了样品重量。另一方面,随着泡沫生长空间增加,气泡分布随着通风面积和气填充压力的体积的变化而增加。

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