arXiv:2602.10688cs.RO2026-02被引 1

用3D打印磁性涂层实现胶囊机器人定向滚动,省下内部空间用于载药。

3D-Printed Anisotropic Soft Magnetic Coating for Directional Rolling of a Magnetically Actuated Capsule Robot

  • 用3D打印软磁涂层替代内部永磁体,实现轻量化驱动。
  • 在0.3mT磁场下稳定滚动,可爬7.5度斜坡、越5mm凸起。
  • 适合需要大腔体载药的内窥或靶向治疗场景。

胶囊机器人是微创诊断与治疗的有力工具,可用于胃肠镜检查、靶向给药和活检采样。传统磁控胶囊机器人在两端嵌入笨重永磁体,使可用腔体减少约10-20毫米,限制功能模块集成。本文提出一种紧凑型3D打印软胶囊机器人,采用磁性涂层替代内部磁体,实现薄壁结构下的运动能力,同时保持整个内腔为连续功能空间以容纳医疗载荷。柔性硅胶-磁性复合材料还提升了吞咽舒适性,即使胶囊尺寸略大亦可接受。磁静力仿真与实验证实,设计的NSSN/SNNS极性分布具有强各向异性,可产生可靠扭矩,实现稳定的双向滚动、全向转向、在7.5度斜面上攀爬及穿越5毫米突起。当磁场所达至少0.3 mT时,滚动运动可持续,对应本实验设置下有效驱动深度为30毫米。未来工作将优化材料成分、涂层厚度与磁极布局以增强输出力与耐久性;下一代基于机械臂的闭环反馈磁场发生器将解决非线性问题并拓展操控能力。这些进展旨在推动涂层式胶囊机器人迈向可靠临床应用,并拓展其在微创诊疗中的用途。

原文摘要 · Abstract (English)

Capsule robots are promising tools for minimally invasive diagnostics and therapy, with applications from gastrointestinal endoscopy to targeted drug delivery and biopsy sampling. Conventional magnetic capsule robots embed bulky permanent magnets at both ends, reducing the usable cavity by about 10-20 mm and limiting integration of functional modules. We propose a compact, 3D-printed soft capsule robot with a magnetic coating that replaces internal magnets, enabling locomotion via a thin, functional shell while preserving the entire interior cavity as a continuous volume for medical payloads. The compliant silicone-magnetic composite also improves swallowability, even with a slightly larger capsule size. Magnetostatic simulations and experiments confirm that programmed NSSN/SNNS pole distributions provide strong anisotropy and reliable torque generation, enabling stable bidirectional rolling, omnidirectional steering, climbing on 7.5 degree inclines, and traversal of 5 mm protrusions. Rolling motion is sustained when the magnetic field at the capsule reaches at least 0.3 mT, corresponding to an effective actuation depth of 30 mm in our setup. Future work will optimize material composition, coating thickness, and magnetic layouts to enhance force output and durability, while next-generation robotic-arm-based field generators with closed-loop feedback will address nonlinearities and expand maneuverability. Together, these advances aim to transition coating-based capsule robots toward reliable clinical deployment and broaden their applications in minimally invasive diagnostics and therapy.

胶囊机器人磁驱动3D打印软体机器人

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