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Effect of gas on the polymer temperature in external gas-assisted injection molding

机译:气体对外部气体辅助注塑成型聚合物温度的影响

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摘要

The introduction of gas is the principal difference between external gas-assisted injection molding (EGAIM) and conventional injection molding. In this study, the effects of gas thickness and gas delay time on polymer temperature were discussed. A modified one-dimensional transient heat conduction model of polymer was established to reveal the relationships between polymer temperature and gas thickness and gas delay time in EGAIM. The temperature histories of polymer were obtained by the simulation methods, including Moldflow and ANSYS, and were verified by comparing the experimental data to numerical simulation results. The effects of gas thickness and gas delay time on the temperature histories of polymer will be discussed in detail. The results showed that the polymer temperature is strongly affected by the heat preservation of gas, which in turn, increases with the increase of gas thickness and delay time. This paper provides quantitative methods and theoretical guidance for the study of the effects of gas on the polymer temperature in EGAIM.
机译:气体引入是外部气体辅助注射成型(egaim)和常规注塑成型之间的主要差异。在该研究中,讨论了气体厚度和气体延迟时间对聚合物温度的影响。建立了聚合物的改性一维瞬态导热模型,揭示了偶然的聚合物温度和气体厚度和气体延迟时间之间的关系。聚合物的温度历史通过模拟方法获得,包括模型和ANSYS,并通过将实验数据与数值模拟结果进行比较来验证。将详细讨论气体厚度和气体延迟时间对聚合物温度历史的影响。结果表明,聚合物温度受气体热量的影响,气体温度又随着气体厚度和延迟时间的增加而增加。本文提供了研究气体对偶然聚合物温度的影响的定量方法和理论指导。

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