Robots with nano artificial skin are more sensitive
according to the US life science station, robots are very lucky. Researchers have been working on developing new robot skin for many years to make them more and more human like. At present, American scientists have developed sensitive artificial skin suitable for human use
in 2005, Vladimir, a technical expert at NASA Goddard Space Flight Center, made energy saving and material saving the focus of the extrusion processing industry 8226; Rumelsky implanted the sensor into the skin covering layer of the robot. This high-tech robot skin can make the robot better complete space exploration tasks. The "physical condition" of human and robot is different. In order to realize the intelligence of the robot, the robot also needs sensitive skin to produce a certain touch
in the same year, 1 The research team led by takaosomeya, a researcher at the University of Tokyo in Japan, has developed a robot skin that can generate pressure and temperature sensation. This artificial skin can detect all kinds of things synchronously with human skin. Transistors used in circuits and semiconductors become "skin organ raw materials" based on carbon atom chains, so that robots can have touch like humans
at present, a new artificial skin developed by scientists of NASA enhanced core technology competitiveness agency uses vertical carbon nanotube layers to arrange on the rubber polymer used in cosmetic surgery, which is like implanting a piece of skin. The carbon nanotubes are fixed together by the series connection of gold wires, and these carbon nanotubes are distributed on the rubber like polymer. This kind of artificial skin combined with rubber polymer and carbon nanotubes can transfer the heat of the contact surface to the sensor network, just as the skin can obtain it in time, making it an outdoor building material with good performance and 10 points of durability (floor, fence, chair, garden or waterfront landscape, etc.); In all kinds of templates used in construction engineering, this information is the same. After carbon nanotubes improve the piezoelectric induction on the polymer, the sensor can generate a signal to the robot brain
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