In this paper, we describe our research on bio-inspired locomotion systems using deformable structures and smart materials, concretely shape memory alloys (SMAs). These types of materials allow us to explore the possibility of building motor-less and gear-less robots. A swimming underwater fish-like robot has been developed whose movements are generated using SMAs. These actuators are suitable for bending the continuous backbone of the fish, which in turn causes a change in the curvature of the body. This type of structural arrangement is inspired by fish red muscles, which are mainly recruited during steady swimming for the bending of a flexible but nearly incompressible structure such as the fishbone. This paper reviews the design proce...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
Bio-inspired robotics focuses on the physics learned from animals in nature and applied to artificia...
In this paper, we describe our research on bio-inspired locomotion systems using deformable structur...
In this paper, we describe our research on bio-inspired locomotion systems using deformable structur...
In this paper, we describe our research on bio-inspired locomotion systems using deformable structur...
In this paper, we describe our current work on bio-inspired locomotion systems using smart materials...
In this paper, a shape memory alloy (SMA) actuated subcarangiform robotic fish has been demonstrated...
In this study, we present the construction of a wireless bionic soft robotic fish that has a silicon...
In this study, we present the construction of a wireless bionic soft robotic fish that has a silicon...
A flexible biomimetic fin propelled micro-robot fish is presented. Fish muscle and the musculature o...
This paper reports on design and fabrication of a novel soft fish robot. Application of soft actuato...
This paper reports on design and fabrication of a novel soft fish robot. Application of soft actuato...
This article presents the design, fabrication, and characterization of a soft biomimetic robotic fis...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
Bio-inspired robotics focuses on the physics learned from animals in nature and applied to artificia...
In this paper, we describe our research on bio-inspired locomotion systems using deformable structur...
In this paper, we describe our research on bio-inspired locomotion systems using deformable structur...
In this paper, we describe our research on bio-inspired locomotion systems using deformable structur...
In this paper, we describe our current work on bio-inspired locomotion systems using smart materials...
In this paper, a shape memory alloy (SMA) actuated subcarangiform robotic fish has been demonstrated...
In this study, we present the construction of a wireless bionic soft robotic fish that has a silicon...
In this study, we present the construction of a wireless bionic soft robotic fish that has a silicon...
A flexible biomimetic fin propelled micro-robot fish is presented. Fish muscle and the musculature o...
This paper reports on design and fabrication of a novel soft fish robot. Application of soft actuato...
This paper reports on design and fabrication of a novel soft fish robot. Application of soft actuato...
This article presents the design, fabrication, and characterization of a soft biomimetic robotic fis...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
Bio-inspired robotics focuses on the physics learned from animals in nature and applied to artificia...