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首页> 外文期刊>Polymer engineering and science >Nature of contact between polymer and mold in injection molding. Part II: Influence of mold deflection on pressure history and shrinkage
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Nature of contact between polymer and mold in injection molding. Part II: Influence of mold deflection on pressure history and shrinkage

机译:注塑过程中聚合物与模具之间接触的性质。第二部分:模具变形对压力历史和收缩的影响

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摘要

In injection molding of thermoplastic parts, high hold pressures are set during the packing phase to generate a post-filling, which compensates the shrinkage of polymer due to its cooling. The polymer pressure in mold cavity leads to a cavity deformation due to mold and machine compliance. Then, the Increase in cavity thickness can modify the post-filling and consequently the pressure history, the Volumetric shrinkage and the part mass. The first goal of this paper is to present a simple method to locally determine mold rigidities: over-packed slabs are injected and local deflections are determined from measurements of the local residual pressure, the local in-plane shrinkages and the plate thickness. In the studied plate mold, which can be considered as stiff compared to some industrial molds, a rigidity of more than 1 mu m/MPa has been measured close to the center of the plate. The second goal of this paper is to show the influence of mold deflection on dimensional properties. If the cavity thickness is small as for our 1-mm-thick plate mold, considering an infinitely rigid mold cannot do realistic predictions of polymer pressure history, volumetric shrinkages and part mass. Nevertheless, in-plane shrinkage seems to be less affected by mold deflection. It means that the additional polymer mass due to mold deflection is mainly distributed in the part thickness. [References: 18]
机译:在热塑性部件的注塑成型中,在填充阶段会设置较高的保压压力,以产生后填充,从而补偿聚合物由于冷却而产生的收缩。由于模具和机器的顺应性,模具型腔中的聚合物压力导致型腔变形。然后,腔体厚度的增加可以改变后填充,从而改变压力历史,体积收缩率和零件质量。本文的第一个目标是提供一种简单的方法来局部确定模具的刚度:注入过量填充的板坯,并通过测量局部残余压力,局部平面内收缩和板厚来确定局部挠度。在研究的平板模具中,与某些工业模具相比,该模具被认为是刚性的,在靠近平板中心处测得的刚度大于1μm / MPa。本文的第二个目标是显示模具变形对尺寸特性的影响。如果型腔厚度比我们1毫米厚的平板模具小,那么考虑使用无限刚性的模具就无法对聚合物的压力历史,体积收缩率和零件质量进行真实的预测。然而,面内收缩似乎受模具变形的影响较小。这意味着由于模具变形而产生的额外聚合物质量主要分布在零件厚度中。 [参考:18]

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