硬磁软连续体的磁畴可重编程与优化设计

Reprogrammable magnetic domains and optimized design of a hard magnetic soft continuum

  • 摘要: 硬磁软材料是一种新型的磁驱动复合材料,其中硬磁软连续体具有响应快、变形大、生物安全性好的特点,在生物医疗,仿生,软体触手等领域获得了广泛的关注。然而,现有的硬磁软连续体通过脉冲磁场磁化,磁畴模式单一,难以满足复杂的变形需求,此外如何解决硬磁软连续体在复杂变形下的磁畴优化设计问题也是当前的重要挑战。针对该问题,本文开发了基于二氧化铬的硬磁软连续体,通过激光直写实现了复杂磁畴模式的可重构编程。而后针对不同变形需求的磁畴分段设计问题,对尺寸大小、磁粉含量和磁畴方向进行优化设计。最后针对多种变形需求进行磁畴的优化设计并通过实验进行验证,同时进行功能化展示。

     

    Abstract: Hard magnetic soft materials are a new type of magnetically driven composite materials, in which the hard magnetic soft continuum is characterized by fast response, large deformation, and good biosafety, and has gained wide attention in the fields of biomedicine, bionics, and soft body tentacles. However, the existing hard magnetic soft continuum is magnetized by pulsed magnetic field with a single magnetic domain mode, which is difficult to meet the demand of complex deformation, in addition, how to solve the problem of optimizing the design of magnetic domains of hard magnetic soft continuum under the complex deformation is also an important challenge nowadays. In order to address this problem, this paper developed a hard magnetic soft continuum based on chromium dioxide, and realized the reconfigurable programming of complex magnetic domain patterns through laser direct writing. Then, for the design issues of magnetic domain according to different deformation requirements, optimization design was carried out on dimensions, magnetic powder content, and magnetic domain orientation. Finally, the optimized design of magnetic domains for various deformation requirements was verified by experiments and demonstrated functionally.

     

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