
Переведите тест Shake Hand with Vorscht - that's what engineers at University in Edinburgh are
saying. Recently they have devised this brand new robot. Vorscht's handshake is not the metallic, jaw-like clamp of the robots that are used on production lines in industry. It's a softer, gentler grasp, like gripping the trunk of an elephant, or even shaking hands with another person. Take a rigid plastic tube, rather like a vacuum cleaner hose. Close one end, and blow air in the other. The tube stretches slightly. The increased pressure inside the tube causes it to extend. Take three of these tubes and mount them side by side to from an assembly called an actuator. Increase the pressure in two of the tubes, and the actuator bends. Reduce the pressure and it straightens up again. That's how the fingers on Vorscht's hands bend when they grip your hand.

Ответы на вопрос

Возьмите жесткую пластиковую трубку ,как шланг пылесоса . Закройте один конец и пустите поток воздуха в другой. Труба немного будет тянуться. Повышенное давление внутри трубки приводит к его расширению . Возьмите эти три пробирки и положите их бок о бок , чтобы это призвало привод . Увеличьте давление в двух трубок и это выпрямит приспособление снова . Уменьшите давление и оно выпрямится снова. Вот как сжимаются пальцы на руках роботов Vorscht , когда они пожимает руку.



The engineers at the University of Edinburgh have recently developed a revolutionary robot called Vorscht, which boasts a unique and human-like handshake. Unlike the cold and rigid metallic grips of robots commonly used in industrial production lines, Vorscht's handshake offers a softer and gentler grasp, reminiscent of shaking hands with another person or gripping the trunk of an elephant.
To achieve this lifelike handshake, the engineers employed a clever mechanism inspired by the behavior of a plastic tube. Imagine taking a rigid plastic tube, similar to a vacuum cleaner hose, and closing one end. By blowing air into the other end, the tube stretches slightly due to the increased pressure inside. This increase in pressure causes the tube to extend.
Now, picture three of these plastic tubes mounted side by side to form an assembly known as an actuator. By manipulating the pressure within the tubes, the engineers can control the bending and straightening of the actuator. By increasing the pressure in two of the tubes, the actuator bends, mimicking the curling of fingers when gripping an object. Conversely, reducing the pressure causes the actuator to straighten up again, resembling the release of a grip.
This innovative design allows Vorscht's fingers to bend and flex just like a human hand when it shakes hands with someone. The result is an incredibly realistic and gentle handshake, providing a more natural and comfortable interaction between humans and robots.
The development of Vorscht's handshake is a significant step forward in creating robots that can seamlessly integrate into human environments, such as assisting in healthcare, interacting with individuals in social settings, or even collaborating with humans in industrial tasks. By emulating human-like movements, Vorscht opens up new possibilities for human-robot interaction, fostering a sense of trust and familiarity between the two.
The engineers at the University of Edinburgh have truly pushed the boundaries of robotics, creating a robot with a handshake that bridges the gap between man and machine. With Vorscht's revolutionary design, the future of human-robot collaboration looks promising, where robots can coexist harmoniously with humans, enhancing our lives in numerous ways.


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