Jamming of granular media has been shown to possess the property of stiffness variation, transitioning from a soft to a quasi-solid state depending on the packing density of the granules. Recently, a gradual stiffness change for bending has been reported by using compliant, cubic shaped granules. Here we demonstrate that the same method and material also exhibits a gradual stiffness change for compression. As a potential application of 'compliant jamming', a bio-inspired robotic platform with jamming membranes as end effectors is designed and tasked with climbing straight vertical shafts. First, the benefit of varying the bending stiffness is investigated in the climbing task by measuring the friction force that the end effectors are applyi...
Granular media near jamming exhibit fascinating properties, which can be harnessed to create jammed-...
We show how rigidity emerges in experiments of sheared two-dimensional frictional granular materials...
Context During minimally invasive procedures, most of the devices (endoscopes, catheters, guidewires...
We propose a novel, high degree of freedom variable stiff-ness joint for use in a miniature snake-li...
In robotics, controlling the stiffness of the joints that contribute to the robots' degree of freedo...
Soft robotics opened a new set of technological challenges in using soft materials to build robots. ...
Robots made of soft materials are demonstrating to be well suited in applications where dexterity an...
Changing the shape and the stiffness of a device in a dynamic and controlled way enables important a...
In the field of soft robotics, granular jamming is a newly adopted variable stiffness mechanism invo...
Compared with conventional robots that require some sort of safety measures in operation, compliant ...
peer reviewedThe use of granular jamming is proposed for designing structures with tunable rigidity ...
Abstract — The ability to selectively stiffen otherwise com-pliant soft actuators increases their ve...
© Springer Nature Switzerland AG 2019. In the last decade, soft robots demonstrated their distinctiv...
The granular media friction pad (GMFP) inspired by the biological smooth attachment pads of cockroac...
<p>This work investigates the usage of compliant universal grippers as a novel foot design for legge...
Granular media near jamming exhibit fascinating properties, which can be harnessed to create jammed-...
We show how rigidity emerges in experiments of sheared two-dimensional frictional granular materials...
Context During minimally invasive procedures, most of the devices (endoscopes, catheters, guidewires...
We propose a novel, high degree of freedom variable stiff-ness joint for use in a miniature snake-li...
In robotics, controlling the stiffness of the joints that contribute to the robots' degree of freedo...
Soft robotics opened a new set of technological challenges in using soft materials to build robots. ...
Robots made of soft materials are demonstrating to be well suited in applications where dexterity an...
Changing the shape and the stiffness of a device in a dynamic and controlled way enables important a...
In the field of soft robotics, granular jamming is a newly adopted variable stiffness mechanism invo...
Compared with conventional robots that require some sort of safety measures in operation, compliant ...
peer reviewedThe use of granular jamming is proposed for designing structures with tunable rigidity ...
Abstract — The ability to selectively stiffen otherwise com-pliant soft actuators increases their ve...
© Springer Nature Switzerland AG 2019. In the last decade, soft robots demonstrated their distinctiv...
The granular media friction pad (GMFP) inspired by the biological smooth attachment pads of cockroac...
<p>This work investigates the usage of compliant universal grippers as a novel foot design for legge...
Granular media near jamming exhibit fascinating properties, which can be harnessed to create jammed-...
We show how rigidity emerges in experiments of sheared two-dimensional frictional granular materials...
Context During minimally invasive procedures, most of the devices (endoscopes, catheters, guidewires...