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用于编程形状变形的磁刺激:四维打印综述、挑战与机遇

Magnetic Stimulation for Programmed Shape Morphing: Review of Four-Dimensional Printing, Challenges and Opportunities.

作者信息

Kortman Vera G, de Vries Ellen, Jovanova Jovana, Sakes Aimée

机构信息

Department of BioMechanical Engineering, Faculty of 3mE, Delft University of Technology, Delft, the Netherlands.

Department of Marine and Transport Technology, Faculty of 3mE, Delft University of Technology, Delft, the Netherlands.

出版信息

3D Print Addit Manuf. 2024 Jun 18;11(3):977-993. doi: 10.1089/3dp.2023.0198. eCollection 2024 Jun.

Abstract

In the field of Additive Manufacturing, four-dimensional (4D) printing has emerged as a promising technique to fabricate smart structures capable of undergoing shape morphing in response to specific stimuli. Magnetic stimulation offers a safe, remote, and rapid actuation mechanism for magnetically responsive structures. This review provides a comprehensive overview of the various strategies and manufacturing approaches employed in the development of magnetically stimulated shape morphing 4D-printed structures, based on an extensive literature search. The review explores the use of magnetic stimulation either individually or in combination with other stimuli. While most of the literature focuses on single-stimulus responsive structures, a few examples of multi-stimuli responsive structures are also presented. We investigate the influence of the orientation of magnetic particles in smart material composites, which can be either random or programmed during or after printing. Finally, the similarities and differences among the different strategies and their impact on the resulting shape-morphing behavior are analyzed. This systematic overview functions as a guide for readers in selecting a manufacturing approach to achieve a specific magnetically actuated shape-morphing effect.

摘要

在增材制造领域,四维(4D)打印已成为一种颇具前景的技术,用于制造能够响应特定刺激而发生形状变形的智能结构。磁刺激为磁响应结构提供了一种安全、远程且快速的驱动机制。基于广泛的文献检索,本综述全面概述了在开发磁刺激形状变形4D打印结构过程中所采用的各种策略和制造方法。该综述探讨了单独使用磁刺激或与其他刺激相结合的情况。虽然大多数文献关注单刺激响应结构,但也给出了一些多刺激响应结构的示例。我们研究了智能材料复合材料中磁性颗粒取向的影响,这些取向可以在打印过程中或之后随机设定或编程设定。最后,分析了不同策略之间的异同及其对最终形状变形行为的影响。这种系统的概述可为读者选择制造方法以实现特定的磁驱动形状变形效果提供指导。

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