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The influence of cavity deformation on the shrinkage and warpage of an injection-molded part

机译:模腔变形对注塑件收缩和翘曲的影响

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As soon as the gate solidifies or the nozzle is closed, the amount of melt inside a cavity remains constant. At this moment, the cavity deformation affects the final product shape and size. A set of simulation procedures has been developed in this study to estimate the cavity deformation which arises during an injection-molding process. A mold-filling program was applied to calculate the molding variables. The estimated cavity pressure, temperature distribution, and clamping force were employed as the boundary conditions in the mold-deformation analysis. A structural analysis program was developed to predict the cavity deformation. Molding experiments were carried out for polymethyl methacrylate (PMMA) wedge-shaped parts. To verify the structural analysis, a strain gauge was installed on the sidewall of the mold. The measured strains agreed with the simulated results. A commercial simulation software package was also used to predict the shrinkage and warpage of injection-molded parts. Numerical results showed the improvement in predicting the shape and size of a final product by taking the cavity deformation into account. The influences of the packing pressure, mold temperature, or melt temperature on shrinkage and warpage were also investigated.
机译:浇口固化或喷嘴关闭后,型腔内部的熔体量将保持恒定。此时,型腔变形会影响最终产品的形状和尺寸。在这项研究中开发了一套模拟程序,以估计在注塑过程中出现的型腔变形。应用模具填充程序来计算成型变量。估计的型腔压力,温度分布和夹紧力被用作模具变形分析中的边界条件。开发了结构分析程序来预测空腔变形。进行了聚甲基丙烯酸甲酯(PMMA)楔形零件的成型实验。为了验证结构分析,将应变仪安装在模具的侧壁上。测得的应变与模拟结果一致。商业仿真软件包还用于预测注塑零件的收缩和翘曲。数值结果表明,通过考虑型腔变形,可以更好地预测最终产品的形状和尺寸。还研究了填充压力,模具温度或熔体温度对收缩和翘曲的影响。

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