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基于光聚合反应的三明治结构打印性能评估

Performance Evaluation of Sandwich Structures Printed by Vat Photopolymerization.

作者信息

Nath Shukantu Dev, Nilufar Sabrina

机构信息

School of Mechanical, Aerospace, and Materials Engineering, Southern Illinois University Carbondale, Carbondale, IL 62901, USA.

出版信息

Polymers (Basel). 2022 Apr 8;14(8):1513. doi: 10.3390/polym14081513.

Abstract

Additive manufacturing such as vat photopolymerization allows to fabricate intricate geometric structures than conventional manufacturing techniques. However, the manufacturing of lightweight sandwich structures with integrated core and facesheet is rarely fabricated using this process. In this study, photoactivatable liquid resin was used to fabricate sandwich structures with various intricate core topologies including the honeycomb, re-entrant honeycomb, diamond, and square by a vat photopolymerization technique. Uniaxial compression tests were performed to investigate the compressive modulus and strength of these lightweight structures. Sandwich cores with the diamond structure exhibited superior compressive and weight-saving properties whereas the re-entrant structures showed high energy absorption capacity. The fractured regions of the cellular cores were visualized by scanning electron microscopy. Elastoplastic finite element analyses showed the stress distribution of the sandwich structures under compressive loading, which are found to be in good agreement with the experimental results. Dynamic mechanical analysis was performed to compare the behavior of these structures under varying temperatures. All the sandwich structures exhibited more stable thermomechanical properties than the solid materials at elevated temperatures. The findings of this study offer insights into the superior structural and thermal properties of sandwich structures printed by a vat photopolymerization technique, which can benefit a wide range of engineering applications.

摘要

诸如光固化 3D 打印之类的增材制造技术能够制造出比传统制造技术更为复杂的几何结构。然而,采用这种工艺来制造具有集成芯材和面板的轻质夹层结构却很少见。在本研究中,通过光固化 3D 打印技术,使用可光活化的液态树脂制造了具有各种复杂芯材拓扑结构的夹层结构,包括蜂窝状、凹腔蜂窝状、菱形和方形。进行了单轴压缩试验,以研究这些轻质结构的压缩模量和强度。具有菱形结构的夹层芯材表现出卓越的抗压性能和减重特性,而凹腔结构则展现出高能量吸收能力。通过扫描电子显微镜观察了多孔芯材的断裂区域。弹塑性有限元分析显示了夹层结构在压缩载荷下的应力分布,结果发现与实验结果吻合良好。进行了动态力学分析,以比较这些结构在不同温度下的性能表现。在高温下,所有夹层结构都比实心材料表现出更稳定的热机械性能。本研究结果为光固化 3D 打印技术打印的夹层结构的卓越结构和热性能提供了见解,这可能有益于广泛的工程应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e893/9030529/8d0871e660f7/polymers-14-01513-g001.jpg

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