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Review 3D printing and additive manufacturing. 2024 Jun 18;11(3):977-993. doi: 10.1089/3dp.2023.0198 Q32.12025

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

磁控变形的程序化形状变化:四维打印挑战与机遇综述 翻译改进

Vera G Kortman  1  2, Ellen de Vries  1, Jovana Jovanova  2, Aimée Sakes  1

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作者单位

  • 1 Department of BioMechanical Engineering, Faculty of 3mE, Delft University of Technology, Delft, the Netherlands.
  • 2 Department of Marine and Transport Technology, Faculty of 3mE, Delft University of Technology, Delft, the Netherlands.
  • DOI: 10.1089/3dp.2023.0198 PMID: 39359596

    摘要 中英对照阅读

    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 magnet... ...点击完成人机验证后继续浏览

    在增材制造领域,四维(4D)打印作为一种有前景的技术已经出现,可以制造出能够响应特定刺激而发生形状变化的智能结构。磁性刺激为磁响应结构提供了安全、远程且快速的驱动机制。本综述基于广泛的文献搜索,对开发磁刺激形变4D打印结构的各种策略和制造方法进行了全面概述。该综述探讨了单独使用或结合其他刺激共同使用的磁性刺激的应用情况。尽管大多数文献关注的是单刺激响应结构,但也介绍了一些多刺激响应的实例。我们研究了智能材料复合物中磁颗粒取向的影响,这些取向可以是随机的也可以是在打印过程中或之后编程好的。最后,分析了不同策略之间的相似性和差异及其对形变行为的影响。这一系统性综述为读者选择实现特定磁驱动形变效果的制造方法提供了指导。

    关键词: 3D打印;4D打印;增材制造;磁性;形状变化;智能材料。

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    期刊名:3d printing and additive manufacturing

    缩写:3D PRINT ADDIT MANUF

    ISSN:2329-7662

    e-ISSN:2329-7670

    IF/分区:2.1/Q3

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