机器人学
执行机构
人工智能
计算机科学
工程类
控制工程
空格(标点符号)
机器人
夹持器
工业机器人
钥匙(锁)
机械臂
机械工程
工程制图
计算机视觉
控制理论(社会学)
控制系统
机械手
作者
Ion-Dan Sîrbu,Ubaldo Tosi,F. Bertolucci,Arianna Mazzotta,Virgilio Mattoli,Rocco Vertechy,Giacomo Moretti,D. Bortoluzzi,Marco Fontana
摘要
Actuating robotic systems in space is challenging, particularly due to the constraints of operating in vacuum. Conventional electromagnetic actuators suffer from heat dissipation and lubrication issues, while electrostatic alternatives, such as dielectric elastomer actuators, remain limited by poor reliability and the lack of space-qualified materials. We present a new class of electrostatic actuators that exploit the dielectric properties of vacuum, turning them from a limitation into an enabling feature. The devices employ multilayer thin-film polymeric structures with dielectric and conductive layers enclosing vacuum gaps. Under electrical activation, these gaps deform freely, generating zipping-like motions that produce actuation. We demonstrate bellow- and rhomboid-shaped architectures capable of delivering millimeter-range strokes over a broad frequency bandwidth.,The proposed actuators are made from standard space-grade polymers and are stackable, power-dense, direct-drive, and show negligible heating in vacuum. These characteristics highlight their strong potential as efficient and reliable solutions for future space robotics.
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