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美国麻省理工学院设计制造出一个由重复单元构成的可变形水下机器人。该小型机器人采用新型模块化系统,无需重新设计便可直接扩展尺寸。目前,大多数高密度材料在进行大尺寸应用时会产生一系列问题,而构成水下机器人系统的各单元大多是中空结构,具有低密度和高刚度特性,便于其尺寸扩展。相关研究结果发表在《Soft Robotics》杂志上。
High in a narrow, seawater-filled crevasse in the base of Antarctica’s largest ice shelf, cameras on the remotely operated Icefin underwater vehicle relayed a sudden change in scenery.
Imagine a world with precision medicine, where a swarm of microrobots delivers a payload of medicine directly to ailing cells. Or one where aerial or marine drones can collectively survey an area whil...
No two hearts beat alike. The size and shape of the the heart can vary from one person to the next. These differences can be particularly pronounced for people living with heart disease, as their hear...
First-of-their-kind observations beneath the floating shelf of a vulnerable Antarctic glacier reveal widespread cracks and crevasses where melting occurs more rapidly, contributing to the Florida-size...
2023年1月31日获悉,中国电力科学研究院有限公司在变电站无人机巡检领域主导发起的电气和电子工程师协会(IEEE)国际标准提案《变电站巡检无人机推荐使用方法》(Recommended Practice for Use of an Unmanned Aerial Vehicle for Substation Inspection)获批立项。这是世界首项变电站无人机巡检领域的国际标准。
Underwater structures that can change their shapes dynamically, the way fish do, push through water much more efficiently than conventional rigid hulls. But constructing deformable devices that can ch...
One of the virtues of untethered soft robots is their ability to mechanically adapt to their surroundings and tasks, making them ideal for a range of roles, from tightening bolts in a factory to condu...
在全球范围内提高病毒诊断和监测检测能力是流行病预防的关键。核酸扩增检测(NAATs)相比抗原抗体检测具有更优的灵敏度、特异性和快速部署能力。然而,当前基于 NAAT 的自动化检测平台无法灵活实现集成的液体处理、分析和自动反馈流程,并且它们的设备笨重、昂贵、试剂损耗大,需要繁琐的安装和维护要求,因此限制了其检测能力。
If robots are going to venture into remote environments that humans can’t reach, such as deep underwater or distant outer space, they won’t only require power and a means to get there. They’ll also ne...
Soft robots, or those made with materials like rubber, gels and cloth, have advantages over their harder, heavier counterparts, especially when it comes to tasks that require direct human interaction....
Controlling microscopic processes is inherently challenging. The everyday tools used to manipulate matter on the macroscale can’t simply be shrunk down to the size of cell, and even if they could, the...
Caregiving robots would be transformative for people with disabilities and their caretakers, but few research groups are working in this space. A new robotic simulation platform developed by Cornell r...
据最新一期《科学进展》杂志,美国北卡罗来纳州立大学的研究人员开发出了一种节能的软体机器人,它的游泳速度比以前的游泳软体机器人快4倍以上。这些机器人被称为“蝴蝶机器人”,因为它们的游泳动作类似于人类蝶泳时手臂的动作。
韩国机械与材料研究所宣布,它已开发出世界上第一个能够进行所有抓取动作的抓手,其灵感来自象鼻。具体来说,它是模仿大象用鼻尖捏住并捡起小物体,或通过象鼻深深吸入空气来抓住大物体。

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