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电活性三重形状复合材料的4D打印

4D Printing of Electroactive Triple-Shape Composites.

作者信息

Razzaq Muhammad Yasar, Gonzalez-Gutierrez Joamin, Farhan Muhammad, Das Rohan, Ruch David, Westermann Stephan, Schmidt Daniel F

机构信息

Department of Materials Research and Technology, Luxembourg Institute of Science and Technology, ZAE Robert Steichen, L-4940 Hautcharage, Luxembourg.

Institute of Active Polymers, Helmholtz-Zentrum Hereon, D-14513 Teltow, Germany.

出版信息

Polymers (Basel). 2023 Feb 7;15(4):832. doi: 10.3390/polym15040832.

Abstract

Triple-shape polymers can memorize two independent shapes during a controlled recovery process. This work reports the 4D printing of electro-active triple-shape composites based on thermoplastic blends. Composite blends comprising polyester urethane (PEU), polylactic acid (PLA), and multiwall carbon nanotubes (MWCNTs) as conductive fillers were prepared by conventional melt processing methods. Morphological analysis of the composites revealed a phase separated morphology with aggregates of MWCNTs uniformly dispersed in the blend. Thermal analysis showed two different transition temperatures based on the melting point of the crystallizable switching domain of the PEU (50 ± 1 °C) and the glass transition temperature of amorphous PLA (61 ± 1 °C). The composites were suitable for 3D printing by fused filament fabrication (FFF). 3D models based on single or multiple materials were printed to demonstrate and quantify the triple-shape effect. The resulting parts were subjected to resistive heating by passing electric current at different voltages. The printed demonstrators were programmed by a thermo-mechanical programming procedure and the triple-shape effect was realized by increasing the voltage in a stepwise fashion. The 3D printing of such electroactive composites paves the way for more complex shapes with defined geometries and novel methods for triggering shape memory, with potential applications in space, robotics, and actuation technologies.

摘要

三形状聚合物在可控的恢复过程中可以记忆两种独立的形状。这项工作报道了基于热塑性共混物的电活性三形状复合材料的4D打印。通过传统的熔融加工方法制备了包含聚酯聚氨酯(PEU)、聚乳酸(PLA)和作为导电填料的多壁碳纳米管(MWCNT)的复合共混物。复合材料的形态分析显示出一种相分离形态,其中MWCNT的聚集体均匀分散在共混物中。热分析表明基于PEU可结晶开关域的熔点(50±1°C)和无定形PLA的玻璃化转变温度(61±1°C)存在两个不同的转变温度。这些复合材料适用于通过熔丝制造(FFF)进行3D打印。打印了基于单一或多种材料的3D模型以演示和量化三形状效应。通过在不同电压下通过电流对所得部件进行电阻加热。通过热机械编程程序对打印的演示件进行编程,并通过逐步增加电压来实现三形状效应。这种电活性复合材料的3D打印为具有确定几何形状的更复杂形状以及触发形状记忆的新方法铺平了道路,在空间、机器人技术和驱动技术方面具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c17/9961650/a4b4dafc25ff/polymers-15-00832-g001.jpg

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