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模具材料对注塑成型周期时间和翘曲的影响(取决于所加工的聚合物)。

Influence of the Mold Material on the Injection Molding Cycle Time and Warpage Depending on the Polymer Processed.

作者信息

Lucyshyn Thomas, Des Enffans d'Avernas Lara-Vanessa, Holzer Clemens

机构信息

Department of Polymer Engineering and Science, Polymer Processing, Montanuniversitaet Leoben, Otto Gloeckel-Strasse 2, 8700 Leoben, Austria.

出版信息

Polymers (Basel). 2021 Sep 21;13(18):3196. doi: 10.3390/polym13183196.

Abstract

The thermal properties of the mold influence the cooling situation in the injection molding process. While there are experimental studies investigating the influence of special mold materials, they are limited to few polymers. In this work, an extensive parameter study with the simulation software Autodesk Moldflow Insight was performed to analyze the influence of the polymer itself on the impact of the mold steel on cycle time and warpage. The investigated part was a box with two thickness variations. A conventional mold steel was compared with a steel grade featuring approximately double the thermal conductivity. Simulations were performed with 18 polymers covering the most common material families. The main finding of this study was that the influence of the higher mold conductivity on cycle time ranged from an almost negligible reduction (3%) up to a strong effect (24%), depending mainly on the used polymers, but also on the part thickness. For the cycle time reduction, a correlation was found, with the melt, mold and ejection temperature being the dominant influencing factors of the polymers. With this correlation, it was possible to estimate the potential of cycle time reduction for other polymers. The simulations also showed a positive influence of the higher mold thermal conductivity on part warpage.

摘要

模具的热性能会影响注塑成型过程中的冷却情况。虽然有一些实验研究探讨了特殊模具材料的影响,但这些研究仅限于少数几种聚合物。在这项工作中,使用模拟软件Autodesk Moldflow Insight进行了广泛的参数研究,以分析聚合物本身对模具钢对成型周期和翘曲影响的作用。所研究的部件是一个有两种厚度变化的盒子。将一种传统模具钢与一种热导率约为其两倍的钢种进行了比较。对涵盖最常见材料家族的18种聚合物进行了模拟。这项研究的主要发现是,较高的模具热导率对成型周期的影响范围从几乎可以忽略不计的降低(3%)到显著的效果(24%),这主要取决于所使用的聚合物,也取决于部件厚度。对于成型周期的缩短,发现了一种相关性,其中熔体、模具和顶出温度是聚合物的主要影响因素。通过这种相关性,可以估计其他聚合物缩短成型周期的潜力。模拟还表明,较高的模具热导率对部件翘曲有积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41f8/8472572/5a4478137c84/polymers-13-03196-g001.jpg

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