首页 /研究 /Miniature Soft Electromagnetic Actuators for Robotic Applications
MANIPULATION

Miniature Soft Electromagnetic Actuators for Robotic Applications

Thanh Nho, Thuc‐Quyen Nguyen, Yon Visell

发表年份
2018
引用次数
201

摘要

Abstract Electromagnetic actuators (EMAs) serve the majority of motion control needs in fields ranging from industrial robotics to automotive systems and biomedical devices, due to their unmatched combination of speed, precision, force, and scalability. This paper describes the design and fabrication of miniature soft EMAs that operate based on the Lorentz force principle. The actuators are fabricated from silicone polymer, liquid metal (LM) alloy (eutectic gallium indium, EGaIn), and magnetic (NdFeB) powder. They are small, intrinsically deformable, and can be fabricated using simple techniques. The central elements of the actuators are fine, 3D helical coil conductors, which are used as electromagnetic inductors. The coils are formed from stretchable filaments that are filled with a LM alloy. To achieve high power densities, the filaments themselves may be fabricated from colloids of EGaIn microdroplets in a silicone polymer matrix, allowing them to dissipate heat and accommodate high currents, and thus high forces. Millimeter‐scale cylindrical actuators are demonstrated for linear high frequency motion and articulated devices for bending motion. These actuators are applied in a vibrotactile feedback display and in a miniature soft robotic gripper.

关键词

Materials scienceActuatorSoft roboticsMechanical engineeringLorentz forceFabricationMicroactuatorArtificial muscleElectromagnetic coil3D printing

相关论文

查看 MANIPULATION 分类全部论文