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利用微孔发泡工艺在聚合物上进行固态表面图案化

Solid-State Surface Patterning on Polymer Using the Microcellular Foaming Process.

作者信息

Kim Jaehoo, Kim Shin Won, Kweon Byung Chul, Kim Kwan Hoon, Cha Sung Woon

机构信息

Department of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea.

出版信息

Polymers (Basel). 2023 Feb 24;15(5):1153. doi: 10.3390/polym15051153.

Abstract

This study proposes a novel process that integrates the molding and patterning of solid-state polymers with the force generated from the volume expansion of the microcellular-foaming process (MCP) and the softening of solid-state polymers due to gas adsorption. The batch-foaming process, which is one of the MCPs, is a useful process that can cause thermal, acoustic, and electrical characteristic changes in polymer materials. However, its development is limited due to low productivity. A pattern was imprinted on the surface using a polymer gas mixture with a 3D-printed polymer mold. The process was controlled with changing weight gain by controlling saturation time. A scanning electron microscope (SEM) and confocal laser scanning microscopy were used to obtain the results. The maximum depth could be formed in the same manner as the mold geometry (sample depth: 208.7 μm; mold depth: 200 μm). Furthermore, the same pattern could be imprinted as a layer thickness of 3D printing (sample pattern gap and mold layer gap: 0.4 mm), and surface roughness was increased according to increase in the foaming ratio. This process can be used as a novel method to expand the limited applications of the batch-foaming process considering that MCPs can impart various high-value-added characteristics to polymers.

摘要

本研究提出了一种新颖的工艺,该工艺将固态聚合物的成型和图案化与微孔发泡工艺(MCP)的体积膨胀所产生的力以及由于气体吸附导致的固态聚合物软化相结合。间歇式发泡工艺作为MCP之一,是一种可使聚合物材料发生热、声学和电学特性变化的有用工艺。然而,由于生产率低下,其发展受到限制。使用带有3D打印聚合物模具的聚合物气体混合物在表面压印图案。通过控制饱和时间来控制重量增加,从而控制该工艺。使用扫描电子显微镜(SEM)和共聚焦激光扫描显微镜来获取结果。可以以与模具几何形状相同的方式形成最大深度(样品深度:208.7μm;模具深度:200μm)。此外,可以以3D打印的层厚压印相同的图案(样品图案间隙和模具层间隙:0.4mm),并且表面粗糙度随着发泡倍率的增加而增大。考虑到MCP可以赋予聚合物各种高附加值特性,该工艺可作为一种新颖的方法来扩展间歇式发泡工艺有限的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bea/10007601/baa052e2420f/polymers-15-01153-g001.jpg

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