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Simulation Studies on the Effect of Material Characteristics and Runners Layout Geometry on the Filling Imbalance in Geometrically Balanced Injection Molds

机译:材料特性和流道布局几何形状对几何平衡注射模填充不平衡影响的模拟研究

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摘要

Simulation studies were performed on filling imbalance in geometrically balanced injection molds. A special simulation procedure was applied to simulate properly the phenomenon, including inertia effects and 3D tetrahedron meshing as well as meshing of the nozzle. The phenomenon was investigated by simulation using several different runner systems at various thermo-rheological material parameters and process operating conditions. It has been observed that the Cross-WLF parameters, index flow, critical shear stress (relaxation time), and zero viscosity, as well as thermal diffusivity and heat transfer coefficient strongly affect the filling imbalance. The effect is substantially dependent on the runners’ layout geometry, as well as on the operating conditions, flow rate, and shear rate. The standard layout geometry and the corrected layout with circled element induce positive imbalance which means that inner cavities fills out faster, and it is opposite for the corrected layouts with one/two overturn elements which cause negative imbalance. Generally, for the standard layout geometry and the corrected layout with circled element, an effect of the zero shear rate viscosity η0 is positive (imbalance increases with an increase of viscosity), and an effect of the power law index n and the relaxation time λ is negative (imbalance decreases with an increase of index n and relaxation time λ). An effect of the thermal diffusivity α and heat transfer coefficient h is negative while an effect of the shear rate is positive. For the corrected layouts with one/two overturn elements, the results of simulations indicate opposite relationships. A novel optimization approach solving the filling imbalance problem and a novel concept of global modeling of injection molding process are also discussed.
机译:对几何平衡的注塑模具中的填充不平衡进行了仿真研究。应用了特殊的仿真程序来正确地模拟该现象,包括惯性效应和3D四面体啮合以及喷嘴的啮合。通过使用几种不同的流道系统在各种热流变材料参数和工艺操作条件下进行仿真,研究了该现象。已经观察到,Cross-WLF参数,指数流量,临界剪切应力(松弛时间)和零粘度以及热扩散率和热传递系数会严重影响填充不平衡。效果很大程度上取决于跑步者的布局几何形状,以及操作条件,流速和剪切速率。标准布局几何图形和带圆圈元素的校正布局会引起正不平衡,这意味着内部空腔的填充速度更快,而带有一个/两个翻转元素的校正布局则相反,从而导致负不平衡。通常,对于标准布局几何图形和带圆圈元素的校正布局,零剪切速率粘度η0的影响为正(不平衡度随粘度的增加而增加),幂律指数n和弛豫时间λ的影响是负数(随着指标n和弛豫时间λ的增加,不平衡减小)。热扩散率α和传热系数h的影响为负,而剪切速率的影响为正。对于具有一个/两个翻转元素的校正布局,模拟结果表明相反的关系。还讨论了解决填充不平衡问题的新颖优化方法和注塑过程全局建模的新颖概念。

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