Examples of using Soft robotics in English and their translations into Greek
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The research was published in Soft Robotics.
Soft robotics has“really come a long way over the past decade,” says study first author Daniel Preston.
The research is published in the journal Soft Robotics.
It's only recently that the field of soft robotics has developed to the point where we can actually build robots that can grasp these animals reliably and harmlessly.".
The innovation here is the interface with soft robotics.
Right now,“the field of soft robotics is attempting to augment or find new abilities,” says Robert Shepherd, a Cornell University soft roboticist who was not involved in the current study.
These robots have also created a branch of robotics, soft robotics.
Soft Robotics, a Cambridge, Ma.-based startup that's constructing robots from highly compliant materials, including grippers capable of handling fragile objects, is a prime example of this.
Such a material would definitely be a boon to industries like shoes,tires, soft robotics, and even electronics.
This material could be game-changing for industries like shoes,tires, soft robotics, and even electronics, decreasing manufacturing time while increasing product durability and longevity.
The key feature is that the robot can be folded or crushed and yet still continue to function and move,marking a breakthrough in soft robotics.
One of the most exciting uses of this technology could be in the advancement of soft robotics and allowing robots to"feel" their surroundings.
Soft Robotics: Soft Robotics is exactly what it says on the tin-the company manufactures robotic arms with soft grippers that can be used to gently handle delicate items like fruits and vegetables in processing facilities.
Our work could soon lead to printed displays that can easily be stretched to larger sizes,as well as wearable electronics and soft robotics applications.
This unique material could revolutionize a number of industries like soft robotics, tires, shoes, and also electronics, reducing the manufacturing time while simultaneously boosting the longevity and durability of products.
An inflatable vinyl robotic arm thathelped inspire Baymax's design, from the researchers in the new field of soft robotics at Carnegie Mellon University's Robotics Institute.
D printing and soft robotics technologies are now allowing the processes of design and iteration to happen on-site rather than in the lab, making it faster, easier, and cheaper to create solutions to existing problems.”.
We are now looking forward to leveraging these topological mechanical metamaterials for various applications, optimizing them, andcarving devices out of them for applications in soft robotics, prosthetics and energy harvesting.
It is hoped that this material could be a game-changer for industries such as shoes,tires, soft robotics and electronics sectors, decreasing manufacturing time while increasing product durability and longevity.
At the moment, most social robots express[their] internal state only by using facial expressions andgestures," the team wrote in a paper presented in April at the International Conference on Soft Robotics in Livorno, Italy.
One longstanding vision for the field of soft robotics has been to create robots that are entirely soft, but the struggle has always been in replacing rigid components like batteries and electronic controls with analogous soft systems and then putting it all together,” said Wood.
These nonreciprocal metamaterials can potentially be used to realize new types of mechanical devices, such as actuators(components of a machine that are responsible for moving or controlling a mechanism), and other devices that could improve energy absorption, conversion,and harvesting; soft robotics; and prosthetics.
Soft robotics has made leaps and bounds over the last decade as researchers around the world have experimented with different materials and designs to allow once rigid, jerky machines to bend and flex in ways that mimic and can interact more naturally with living organisms.
Soft robotics has succeeded in making leaps and bounds over the last decade as researchers from all over the world have experimented with different designs and materials to allow once rigid, jerky machines to bend and then flex in ways that imitate and interact in a more natural way with living organisms.