Lu Jingjing, Cui Hongchao, Xu Jiahao, Zhang Jiajia, Li Zhenkun
School of Mechanical, Electronic and Control Engineering, Beijing Jiaotong Uninversity, Beijing, China.
Key Laboratory of Vehicle Advanced Manufacturing, Measuring and Control Technology (Beijing Jiaotong University), Ministry of Education, Beijing, China.
3D Print Addit Manuf. 2024 Jun 18;11(3):1025-1041. doi: 10.1089/3dp.2023.0125. eCollection 2024 Jun.
4D printing technology refers to the manufacturing of products using 3D printing techniques that are capable of changing shape or structure in response to external stimuli. Compared with traditional 3D printing, the additional dimension is manifested in the time dimension. Facilitated by the advancement of magnetic smart materials and 3D printing technology, magnetically controlled 4D printing technology has a wide range of application prospects in many fields such as medical treatment, electronic flexible devices, and industrial manufacturing. Magnetically controlled 4D printing technology is a new scientific research field in the 21st century, which includes but is not limited to the following disciplines: mechanics, materials, dynamics, physics, thermodynamics, and electromagnetism. It involves many fields and needs to be summarized systematically. First, this article introduces various magnetic intelligent materials, which are suitable for magnetically controlled 4D printing, and discusses their programmability. Second, regarding the printing process, the article introduces how to preset the material distribution as well as the research progress about the optimization of magnetically controlled 4D printing platforms and the distribution of magnetic field profiles. Third, the article also makes a brief introduction to the applications of magnetically controlled 4D printing technology in medical, electronic flexible devices, and industrial manufacturing fields.
4D打印技术是指利用3D打印技术制造能够响应外部刺激而改变形状或结构的产品。与传统3D打印相比,额外的维度体现在时间维度上。在磁性智能材料和3D打印技术进步的推动下,磁控4D打印技术在医疗、电子柔性器件、工业制造等诸多领域具有广泛的应用前景。磁控4D打印技术是21世纪的一个新的科研领域,它包括但不限于以下学科:力学、材料学、动力学、物理学、热力学和电磁学。它涉及多个领域,需要进行系统总结。首先,本文介绍了适用于磁控4D打印的各种磁性智能材料,并讨论了它们的可编程性。其次,关于打印过程,本文介绍了如何预设材料分布以及磁控4D打印平台优化和磁场分布的研究进展。第三,本文还简要介绍了磁控4D打印技术在医疗、电子柔性器件和工业制造领域的应用。