This paper presents the conceptual design and testing of a bio-inspired locomotion system activated through ionic-type conducting polymer actuators, which can operate both in dry and wet environments. The locomotion system is proposed for a mini autonomous crawling device for applications typified by pipe inspection, search, inspection and data gathering in confined spaces, which require mini-robotic systems. The locomotion system is based on the cilia, which has a simple planar bending motion. This type of motion can be provided by bending-type polymer actuators (one-end fixed and the other-end free cantilever beam). The actuators mounted on a printed circuit board and powered according to a gait design similar to the motion of biological ...
Biomimetic design based on inspiration from nature for solutions for engineering problems has been ...
Soft robotics with intrinsic mechanical compliancy and intelligence features is emerging and pushing...
To fulfill the insatiable demand for wearable technologies, ionic electroactive polymer actuators ha...
In this paper we present bio-inspired smart structures which exploit the actuation of flexible ionic...
Microrobots have powerful applications in biomedical and naval fields. They should have a compact st...
This paper presents an artificial locomotion servo-system for an insect like hexapod Bi...
This paper presents the electromechanical characterization of Nafion-Pt microlegs for the developmen...
Developing a highly integrated mesoscale (a few millimeter-centimeter) mechanism is dauntingly chall...
The purpose of this thesis was to research, select, and test an actuator mechanism for ultimate use ...
A Hopper was created to mimic a grasshopper\u27s catapulting kicking action. Electroactive polymers ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, February 20...
This thesis presents actuators used in autonomous microsystems. Characteristic for all actuators pre...
Herein we report on the synthesis of a bipedal hydrogel walker, based on N-isopropylacrylamide-co-ac...
It is often impractical or dangerous to send people to explore underwater environments. In these sit...
Electroactive polymer actuators, also known as artificial muscles, can operate both in wet and dry m...
Biomimetic design based on inspiration from nature for solutions for engineering problems has been ...
Soft robotics with intrinsic mechanical compliancy and intelligence features is emerging and pushing...
To fulfill the insatiable demand for wearable technologies, ionic electroactive polymer actuators ha...
In this paper we present bio-inspired smart structures which exploit the actuation of flexible ionic...
Microrobots have powerful applications in biomedical and naval fields. They should have a compact st...
This paper presents an artificial locomotion servo-system for an insect like hexapod Bi...
This paper presents the electromechanical characterization of Nafion-Pt microlegs for the developmen...
Developing a highly integrated mesoscale (a few millimeter-centimeter) mechanism is dauntingly chall...
The purpose of this thesis was to research, select, and test an actuator mechanism for ultimate use ...
A Hopper was created to mimic a grasshopper\u27s catapulting kicking action. Electroactive polymers ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, February 20...
This thesis presents actuators used in autonomous microsystems. Characteristic for all actuators pre...
Herein we report on the synthesis of a bipedal hydrogel walker, based on N-isopropylacrylamide-co-ac...
It is often impractical or dangerous to send people to explore underwater environments. In these sit...
Electroactive polymer actuators, also known as artificial muscles, can operate both in wet and dry m...
Biomimetic design based on inspiration from nature for solutions for engineering problems has been ...
Soft robotics with intrinsic mechanical compliancy and intelligence features is emerging and pushing...
To fulfill the insatiable demand for wearable technologies, ionic electroactive polymer actuators ha...