To survive in nature, animals adjust the characteristics of their legs or fins to adapt the motion to their environment. Inspired by the locomotion of animals, a study on the tunable stiffness and damping of a leg will help in the development of intelligent locomotion robots. In this paper we report on the development and experiment of a novel and simple robotic leg that can be adapted to the environment via a smart magnetorheological fluid (MRF). The robotic leg consists of a rotation MRF damper, a torsional spring, a \u27foot\u27 and a \u27leg\u27. The curved part of the \u27foot\u27 makes contact with the grounds while the other end is linked to an outer cylinder of the MRF damper with an inelastic cable. The variable force arm rising fr...
Research has shown that being able to vary the effective limb stiffness of legged robotics can aid i...
Abstract — The ability of biological locomotors to rapidly and stably traverse unstructured environm...
The article is about of research of the behavior of magnetorheological materials (MR), later it will...
Since animals can adjust the stiffness of their bodies and/or appendages to adapt to changing enviro...
Over the recent few decades, the evolving research-field of legged robotics has seen various mechani...
In an increasingly automated world, interest in the field of robotics is surging, with an exciting b...
Research has shown that leg stiffness of animals is an important characteristic in their locomotion....
The objective of this study was to evaluate the performance of a magnetorheological-fluid-based vari...
All-terrain robot locomotion is an active topic of research. Search and rescue maneuvers and explora...
Of the recent developments in legged robotics, compliance control of legs has potential to make a hu...
thesisLegs are found to be a better mode of locomotion than wheels when it comes to mobile robots tr...
In rough and highly unstructured terrain, legged locomotion exhibits remarkable capabilities when co...
The development of functional legged robots has encountered its limits in human-made actuation techn...
This dissertation presents work towards understanding the role of legs in loco- motion for robots wi...
Passively compliant legs have been instrumental in the de-velopment of dynamically running legged ro...
Research has shown that being able to vary the effective limb stiffness of legged robotics can aid i...
Abstract — The ability of biological locomotors to rapidly and stably traverse unstructured environm...
The article is about of research of the behavior of magnetorheological materials (MR), later it will...
Since animals can adjust the stiffness of their bodies and/or appendages to adapt to changing enviro...
Over the recent few decades, the evolving research-field of legged robotics has seen various mechani...
In an increasingly automated world, interest in the field of robotics is surging, with an exciting b...
Research has shown that leg stiffness of animals is an important characteristic in their locomotion....
The objective of this study was to evaluate the performance of a magnetorheological-fluid-based vari...
All-terrain robot locomotion is an active topic of research. Search and rescue maneuvers and explora...
Of the recent developments in legged robotics, compliance control of legs has potential to make a hu...
thesisLegs are found to be a better mode of locomotion than wheels when it comes to mobile robots tr...
In rough and highly unstructured terrain, legged locomotion exhibits remarkable capabilities when co...
The development of functional legged robots has encountered its limits in human-made actuation techn...
This dissertation presents work towards understanding the role of legs in loco- motion for robots wi...
Passively compliant legs have been instrumental in the de-velopment of dynamically running legged ro...
Research has shown that being able to vary the effective limb stiffness of legged robotics can aid i...
Abstract — The ability of biological locomotors to rapidly and stably traverse unstructured environm...
The article is about of research of the behavior of magnetorheological materials (MR), later it will...