Technology: breaking the hegemony that monopolizes the world

Chapter 1231 Teach You How to Make Bionic Robots (Third Shift)

"And makeup is not exclusive to women, it has no gender restrictions, men can wear makeup, and teenagers can also wear makeup.

However, our bionic skin does not have the biological structure of real skin after all, so it cannot be bionic in this respect. "

Hearing Gou Xun's words, Gu Qing shook his head.

"Since you want to do bionics, you should broaden your horizons a bit. Can you directly cultivate flesh and blood skin? Can you use mechanical bionics to mechanize and bionic every organ and part of the natural human body?"

Gou Xun heard this question, nodded, then shook his head again.

He handed Gu Qing a tablet, which was densely packed with cutting-edge research materials of several related disciplines.

And explained on the side: "When we were developing the robot carrier project for the virtual girlfriend, we were paying attention to the current bionic project.

As you said, the human body is indeed an extremely complex and precise instrument, and even many scientists believe in the existence of the Creator at the end of their academic studies, because only the special existence of the Creator can develop the special instrument of our human beings.

For example, our bones not only support the body and viscera, but also can carry out a wide range of exercises while bearing the load imposed by body movements.

Our project team verified the effectiveness of the mechanical design by using the connecting rod mechanism and the support of various motors and chips to drive the mechanism by using pneumatic artificial muscles similar to human muscles.

Since the movement of the robot is similar to that of the human musculoskeletal system, we simplified the translation between electromyographic signals and pneumatic artificial muscle control inputs…

Making robots that behave in a complex manner like humans is one of our main goals, and biomimetic design of engineered systems by mimicking biological systems is already a solution we pursue on every project.

However, the superficial skin of the human body cannot be solved by bionic methods at present. If we use nano-robots to make microscopically changing mobile bodies, then the weight, battery life, and chips of this bionic robot will exceed the limit.

..."

Although he didn't say it explicitly, Gou Xun's attitude has been clearly expressed.

It's not that everyone hasn't thought about bionics. After all, it's a bionic robot, a humanoid robot, and a real carrier of a virtual girlfriend, so it must be like a human being.

Gu Qing was not angry with this harsh answer, on the contrary, he was very calm.

There is no so-called relief, and there is nothing so-called as it should be. After teaching those academicians, when he faced everyone's opposition, doubts, and arguments, he basically had this expression.

Scanning the documents on the tablet and the current materials of the experimental project at a glance, while thinking about the structure of the bionic robot and the research and development of materials, he focused on the main person in charge of the virtual girlfriend project and said in an almost unscripted way: " The mechanical structure of the human musculoskeletal system obtained from the biomechanical literature compiled by your project team can indeed be easily transformed into the design of the corresponding mechanism of the musculoskeletal robot. Even this conversion and transformation process does not require you to complete it yourself. Intelligent AI program Tiangong can obtain no less than three overall humanoid bionic mechanical structure schemes through large-scale calculation comparisons and resource integration processing.

However, due to the complexity of the human body structure and the differences from the design of engineering machinery, it is very difficult to design a solution that conforms to all mechanical structure movements and human body movement patterns.

I've seen you research ways to develop mechanical musculoskeletons with complex mechanisms for hands, feet, necks, etc., and can realistically simulate the movement of re-bonded bones and joints.

The bionic mechanical prosthesis department has given you the quantitative data on the movement of various large bones and the qualitative data on muscle stretching/contraction, so this problem is not a difficult problem.

It can maintain a large amount of exercise and force transmission, while maintaining extremely high stability of the entire body and limbs.

This is the first important difficulty that your project team has overcome. After all, humanoid robots among bionic robots are almost several times more difficult than the mech project due to size and weight constraints. "

Hearing what Gu Qing said, the expressions on the faces of Gou Xun, Li Song and others changed a lot.

They did not expect that Mr. Gu, who has advanced research on intelligent AI, also has such a strong understanding of mechanical equipment, and even the depth of his cognition is no less than that of some R\u0026D personnel in the project.

Gu Qing didn't seem to see the strange eyes of these people. With a wave of his right hand, he posted a document and materials from some research laboratories at home and abroad on the public screen of the project team's laboratory.

"This is some musculoskeletal robots with complex mechanisms of organs and bones that have been developed at home and abroad.

Some of their designs use spherical simplified shapes to achieve bone-like surface contact, but this can only be a simple simulated movement. Once the strength and accuracy of the movement are achieved, it will immediately become a mechanical toy.

And this lab, they focused on the trade-off between bone contact state and shape imitation to achieve sufficient motion strength and stability.

However, this kind of rigid design allows complex control of the parts that execute the movement to complete the actions of imitating real people. It can only be ordinary jumping and walking, and it is impossible to complete dance, competitive sports and other events.

Your project team can have more exchanges and cooperation with the mecha project team. Although they rely on material strength and mechanical design to guarantee the strength and stability of the action, you can learn more about some concepts of bionic design.

After all, a bionic humanoid robot is just a separate project, and there is no requirement that the R\u0026D and design of the robot must be modeled on human beings.

We can imitate the expansion and contraction of the lobster's carapace, the strength of ants, and the hollow skeleton of birds, with the help of nano-robots, smart chips and polymer materials.

For example, for the skin, we might as well cultivate the skin directly, use the outer layer of the bionic robot as a petri dish, and fix the skin and superficial flesh and blood on the petri dish.

In addition, the device detachment of the bionic joint due to the intensity of exercise, this experimental problem, among the factors you consider, I personally think that it is mainly due to the lack of support from other soft tissues, just like our human body has ligaments, muscles and joint capsules, the bionic joint should also There is a similar organization, or there is other equipment support.

Keep your eyes far away, don't be entangled in the human body, but you should also look closer, and look for answers more on the human body. "

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