Selective coaxial ink 3D printing for single-pass fabrication of smart elastomeric foam with embedded stretchable sensor

材料科学 制作 弹性体 墨水池 同轴 3D打印 智能材料 灵敏度(控制系统) 执行机构 复合材料 纳米技术 计算机科学 电子工程 工程类 病理 替代医学 医学 电信 人工智能
作者
Jiawen Xu,Xinghao Zhang,Yu Liu,Yang Zhang,Heng Yong Nie,Gaoyang Zhang,Wengen Gao
出处
期刊:Additive manufacturing [Elsevier]
卷期号:36: 101487-101487 被引量:23
标识
DOI:10.1016/j.addma.2020.101487
摘要

Cellular materials are playing a critical role in a vast number of smart applications. Latest advances in additive manufacturing have catalyzed the structural metaproperties of the cellular materials. However, a major challenge remains for straightforward and rapid fabrication of smart cellular foams with embedded sensors while minimizing negative impacts on their mechanical performances. In this work, a selective coaxial ink 3D printing method is disclosed for manufacturing a smart elastomer cellular foam at a single pass, with its capability of precisely assigning a core–shell fiber segment as a strain sensor inside the cellular structure. Mechanical test results on these core–shell fiber segments point out that higher sensitivity can be obtained upon tension rather than compression. Therefore, in consideration of the effects of cellular structure i.e. face centered tetragonal (FCT) and simple cubic (SC), it is revealed that the FCT structure outperforms with a much higher strain sensitivity. By assigning different number of cellular layers and tuning the line spacing inside the cellular structure, the mechanical effects with embedding the sensor in the smart foam are assessed and increasing the line spacing might increase the sensitivity but will degrade the repeatability. In final, the stretching performance of the smart foam is studied, and its application is demonstrated.
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