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首页> 外文期刊>Journal of Mechanical Science and Technology >Fluid-structure interaction model to predict deformation of mold cores in injection molding filling stage
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Fluid-structure interaction model to predict deformation of mold cores in injection molding filling stage

机译:流体结构相互作用模型预测注塑灌装阶段模具的变形

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摘要

In the present study, a numerical model of the injection molding filling stage was developed by combining non-Newtonian behavior, heat transfer, and thermo-elastic behavior in order to precisely predict mold deformation. In general, local deformation of an injection mold can be caused by two critical factors - elastic compression induced by the plastic melt and thermal expansion due to rapid heat transfer from the plastic melt. As severe mold deformation lowers the dimensional accuracy of the molded product or results in failure of the injection mold, the accurate prediction of mold deformation is critical to the design and manufacture of precision injection mold. In this regard, a numerical model considering the relevant physical behavior was developed and applied to a center-gated disc model. Both the melt flow behavior and effect of heat transfer inside the mold cavity were investigated, which subsequently revealed that the dominant influence is that of thermal expansion due to heat transfer.
机译:在本研究中,通过组合非牛顿行为,传热和热弹性行为来开发注射成型灌装阶段的数值模型,以便精确地预测模具变形。通常,注塑模具的局部变形可以是由塑料熔体和热膨胀引起的两个关键因素 - 由于塑料熔体的快速传递而引起的两个关键因素 - 弹性压缩引起。由于重度模塑变形降低了模塑产品的尺寸精度或导致注塑模具的失效,模具变形的精确预测对于精密注射模具的设计和制造至关重要。在这方面,考虑相关物理行为的数值模型是开发并应用于中心门控模型。研究了模腔内部的熔体流动行为和传热效果,随后揭示了主要影响是由于热传递引起的热膨胀。

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