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FABRICATION OF POLYMER ORIGAMI-BASED V-TYPE FOLDED CORE

机译:基于聚合物折纸的V型折叠芯的制造

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The origami-based folded core has a broad prospect in applications. However, the fabrication difficulties limit its developments due to the complicate structures with multiple zigzags and fluctuations. In this study, several feasible methods to fabricate polymer origami-based folded core were proposed. Based on the analysis of folded structural features, the vacuum forming process of polymer V-type folded core was deeply investigated. Wall thickness distributions of the folded structure on polyvinyl chloride (PVC) and polyethylene terephthalate (PET) sheets were measured. The results showed that the wall thickness along the straight crease line presents a single peak distribution, while that along the zigzag one shows a dual peak distribution, and the wall thickness of the top zigzag crease line is more uniform and large than that of the bottom one. The mold temperature, polymer sheet temperature and material properties of polymer have great influence on product thickness. Vacuum forming is a feasible way to fabricate polymer origami-based folded core, and the high-quality fabrication of folded structure may be accomplished by designing more reasonable forming mold and selecting optical process parameters.
机译:基于折纸的折叠核心在应用中具有广阔的前景。然而,由于具有多个曲折和波动的混乱结构,制造难度限制了其由于具有复杂结构的发展。在该研究中,提出了几种制造聚合物折纸的折叠芯的可行方法。基于折叠结构特征的分析,深受聚合物V型折叠芯的真空形成过程。测定聚氯乙烯(PVC)和聚对苯二甲酸乙二醇酯(PET)片上的折叠结构的壁厚分布。结果表明,沿着直线折痕线的壁厚呈单个峰值分布,而沿Z字形的厚度显示出双峰分布,顶部锯齿形折痕线的壁厚比底部更均匀且大一。聚合物的模具温度,聚合物片温度和材料特性对产品厚度有很大影响。真空形成是制造基于聚合物折纸的折叠芯的可行方式,并且可以通过设计更合理的形成模具和选择光学工艺参数来实现折叠结构的高质量制造。

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