Examples of using Soft robots in English and their translations into Chinese
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Soft robots could be safer.
New metallic material for flexible soft robots.
Each year, soft robots gain new abilities.
The researchers now want to use the model in real soft robots.
Soft robots have similar benefits in space travel.
Roboticists have designed soft robots that can heal themselves.
The researchers next plan to implement the model in real soft robots.
Self-healing soft robots are a significant engineering breakthrough.
Engineers at the University of California SanDiego have developed a way to build soft robots that are compact, portable and multifunctional.
Soft robots solve two huge problems with current robots, however.
This is a particular issue for soft robots, which are made of synthetic materials.
These soft robots start as flat sheets, then transform into precise shapes to perform tasks.
Once they're good and robust, soft robots of all kinds will infiltrate our lives.
Other soft robots are made of cheap rubbers or textiles, but the materials are just one important component.
This is a particular issue for soft robots, which are made of synthetic materials.
Soft robots are promising for providing safe, human-friendly contact; however, automation of such devices has been challenging.
During their experiments, the team built soft robots made entirely from rubbery polymers.
In the past, soft robots have been limited by the need to be attached to hard batteries.
The researchers demonstrated the material's usefulness on arange of products including shoe pads, soft robots, multiphase composites and electronic sensors.
We find the natural states of soft robots can be described very compactly in a low-dimensional description.
These soft robots don't yet incorporate artificial intelligence into their programming, and Paik says she's not an expert on the subject.
The researchers have built a number of different soft robots to demonstrate the numerous capabilities and resilience of their creation.
Soft robots are resilient and have the ability to adapt to some natural environments better than conventional robots made of rigid materials.
D printing is revolutionizing the production of lightweight structures, soft robots and flexible electronics, but the technology struggles with complex, multimaterial integration.
Soft robots with friction nano-generator skin also have the potential to help humans palpate, eliminating the discomfort of hard robots. .
One can easily envision soft robots being used to handle fragile objects such as crops, or even living beings.
Soft robots and soft electronics in general, aim to mimic biological tissues to make them more mechanically compliant for human-machine interactions.
The majority of soft robots today rely on external power and control, keeping them tethered to off-board systems or rigged with hard components.
Soft robots, and soft electronics in general, aim to mimic biological tissues to make them more mechanically compliant for human-machine interactions.