The agile and power-efficient locomotion of a water strider has inspired many water-walking devices. These bioinspired water strider robots generally adopt a DC motor to create a sculling trajectory of the driving leg. These robots are, thus, inevitably heavy with many supporting legs decreasing the velocity of the robots. There have only been a few attempts to employ smart materials despite their advantages of being lightweight and having high power densities. This paper proposes an artificial muscle-based water-walking robot capable of moving forward and turning with four degrees of freedom. A compliant amplified shape memory alloy actuator (CASA) used to amplify the strain of a shape memory alloy wire enables a wide sculling motion of th...
Microrobots have powerful applications in biomedical and naval fields. They should have a compact st...
It is often impractical or dangerous to send people to explore underwater environments. In these sit...
Soft robotics requires technologies that are capable of generating forces even though the bodies are...
Water Strider Robot (WSR) is a kind of bio‐ inspired micro robot that can stand and move on wa...
Water beetles are proficient drag-powered swimmers, with oar-like legs. Inspired by this mechanism, ...
Abstract We report recent efforts in the design and construction of water-walking machines inspired ...
Drag-based swimming is usually accompanied with the shape change of rowing appendages to generate as...
Biomechatronics is the integration of biological components with artificial devices, in which the bi...
A water beetle is skillful at drag-powered swimming by using its oar-like legs. Inspired by this mec...
Abstract—The superior speed and agility of water strider inspired researchers to design bionic robot...
In this study, an amphibious, remotely operated, soft biomimetic locomotive mechanism is presented t...
Abstract — This paper introduces a novel robot which can run on the surface of water in a manner sim...
Mobile robots are commonly used to perform tasks in underwater environments that are difficult for h...
Some aquatic insects can rapidly dash over the water surface by secreting chemical material that low...
Bio-actuators that use insect muscular tissue have attracted attention from researchers worldwide be...
Microrobots have powerful applications in biomedical and naval fields. They should have a compact st...
It is often impractical or dangerous to send people to explore underwater environments. In these sit...
Soft robotics requires technologies that are capable of generating forces even though the bodies are...
Water Strider Robot (WSR) is a kind of bio‐ inspired micro robot that can stand and move on wa...
Water beetles are proficient drag-powered swimmers, with oar-like legs. Inspired by this mechanism, ...
Abstract We report recent efforts in the design and construction of water-walking machines inspired ...
Drag-based swimming is usually accompanied with the shape change of rowing appendages to generate as...
Biomechatronics is the integration of biological components with artificial devices, in which the bi...
A water beetle is skillful at drag-powered swimming by using its oar-like legs. Inspired by this mec...
Abstract—The superior speed and agility of water strider inspired researchers to design bionic robot...
In this study, an amphibious, remotely operated, soft biomimetic locomotive mechanism is presented t...
Abstract — This paper introduces a novel robot which can run on the surface of water in a manner sim...
Mobile robots are commonly used to perform tasks in underwater environments that are difficult for h...
Some aquatic insects can rapidly dash over the water surface by secreting chemical material that low...
Bio-actuators that use insect muscular tissue have attracted attention from researchers worldwide be...
Microrobots have powerful applications in biomedical and naval fields. They should have a compact st...
It is often impractical or dangerous to send people to explore underwater environments. In these sit...
Soft robotics requires technologies that are capable of generating forces even though the bodies are...