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具有高设计自由度的增材制造柔性液态金属涂层自供电磁电传感器。

Additively Manufactured Flexible Liquid Metal-Coated Self-Powered Magnetoelectric Sensors with High Design Freedom.

作者信息

Wu Hongzhi, Luo Ruiying, Li Zhuofan, Tian Yujia, Yuan Jiayi, Su Bin, Zhou Kun, Yan Chunze, Shi Yusheng

机构信息

State Key Laboratory of Material Processing and Die and Mold Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology, Wuhan, Hubei, 430074, P. R. China.

School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.

出版信息

Adv Mater. 2024 Aug;36(34):e2307546. doi: 10.1002/adma.202307546. Epub 2023 Dec 31.

DOI:10.1002/adma.202307546
PMID:38145802
Abstract

Although additive manufacturing enables controllable structural design and customized performance for magnetoelectric sensors, their design and fabrication still require careful matching of the size and modulus between the magnetic and conductive components. Achieving magnetoelectric integration remains challenging, and the rigid coils limit the flexibility of the sensors. To overcome these obstacles, this study proposes a composite process combining selective laser sintering (SLS) and 3D transfer printing for fabricating flexible liquid metal-coated magnetoelectric sensors. The liquid metal forms a conformal conductive network on the SLS-printed magnetic lattice structure. Deformation of the structure alters the magnetic flux passing through it, thereby generating voltage. A reverse model segmentation and summation method is established to calculate the theoretical magnetic flux. The impact of the volume fraction, unit size, and height of the sensors on the voltage is studied, and optimization of these factors yields a maximum voltage of 45.6 µV. The sensor has excellent sensing performance with a sensitivity of 10.9 kPa and a minimum detection pressure of 0.1 kPa. The voltage can be generated through various external forces. This work presents a significant advancement in fabricating liquid metal-based magnetoelectric sensors by improving their structural flexibility, magnetoelectric integration, and design freedom.

摘要

尽管增材制造能够实现磁电传感器的可控结构设计和定制性能,但其设计和制造仍需要仔细匹配磁性和导电部件之间的尺寸和模量。实现磁电一体化仍然具有挑战性,并且刚性线圈限制了传感器的灵活性。为了克服这些障碍,本研究提出了一种将选择性激光烧结(SLS)和3D转移打印相结合的复合工艺,用于制造柔性液态金属包覆的磁电传感器。液态金属在SLS打印的磁性晶格结构上形成保形导电网络。结构的变形会改变通过它的磁通量,从而产生电压。建立了反向模型分割和求和方法来计算理论磁通量。研究了传感器的体积分数、单元尺寸和高度对电压的影响,对这些因素进行优化后可产生45.6 µV的最大电压。该传感器具有出色的传感性能,灵敏度为10.9 kPa,最小检测压力为0.1 kPa。可以通过各种外力产生电压。这项工作通过提高基于液态金属的磁电传感器的结构灵活性、磁电一体化和设计自由度,在制造方面取得了重大进展。

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