Robotics & Machine Learning Daily News2024,Issue(Dec.2) :181-182.

Data from Huazhong University of Science and Technology Provide New Insights int o Robotics (An Esophagus-inspired Magneticdriven Soft Robot for Directional Tra nsport of Objects)

华中科技大学的数据为机器人学(一种基于食管的磁力驱动的物体定向移动软机器人)提供了新的见解

Robotics & Machine Learning Daily News2024,Issue(Dec.2) :181-182.

Data from Huazhong University of Science and Technology Provide New Insights int o Robotics (An Esophagus-inspired Magneticdriven Soft Robot for Directional Tra nsport of Objects)

华中科技大学的数据为机器人学(一种基于食管的磁力驱动的物体定向移动软机器人)提供了新的见解

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摘要

由一名新闻记者-机器人与机器学习日报的工作人员新闻编辑每日新闻-一项关于机器人的新研究现在已经开始。根据新闻报道来自中华人民共和国湖北,由NewsRx记者报道,研究称,“磁控”软机器人以其非接触操作、控制灵活、速度快等优点变形能力,经历了快速发展和广泛应用。然而,大多数现有的磁驱动软机器人都是二维平面实体结构,只能在二维平面结构中实现弯曲、扭曲和拉伸等形状变形。

Abstract

By a News Reporter-Staff News Editor at Robotics & Machine Learning DailyNews Daily News - A new study on Robotics is now availab le. According to news reporting originatingfrom Hubei, People’s Republic of Chi na, by NewsRx correspondents, research stated, “Magnetic-controlledsoft robots, owing to their advantages such as non-contact manipulation, flexible control, a nd rapiddeformability, have experienced rapid development and widespread applic ation. However, most of theexisting magnetically driven soft robots are solid o r two-dimensional planar structures, which can onlyachieve shape deformation su ch as bending, twisting, and stretching.”

Key words

Hubei/People’s Republic of China/Asia/Emerging Technologies/Machine Learning/Nano-robot/Robot/Robotics/Huazhong University of Science and Technology

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出版年

2024
Robotics & Machine Learning Daily News

Robotics & Machine Learning Daily News

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