I have a little black hole

Chapter 213 New Robot Development Direction

After discussing other matters of the company with Tian Mingli for a while, Lei Tiantang returned to his office. During this time, he did not put down his knowledge of robots except for computer knowledge, although Kuafu had already given what he currently needs. The robots are done, but after all, this is the company's first generation of robots. The next generation of robots still needs to be prepared in advance. It is impossible for a generation of robots to be used for 5 years and 10 years.

And when he was studying new materials, he also had a new idea. Previously, the concept of nano-robots has been hyped internationally, but until now it is only a certain concept in the laboratory. Some laboratories can indeed produce trace amounts of nanometers. Robots, but basically do not have any practical value, because of imperfect functions, production conditions are too demanding, etc., nano robots want to be really early.

"Nano-robot" is an emerging technology of robot engineering. The development of nano-robot belongs to the category of "Molecular Nanotechnology (MNT)". It is based on molecular-level biological principles for design prototypes. "Functional molecular devices" operating in space.

The idea of ​​nanobiology is to apply biological principles on the nanoscale, discover new phenomena, and develop programmable molecular robots, also known as nanorobotics.The content involved can be summarized into the following four aspects:

1. Understand the fine structure of biological macromolecules and their relationship with functions on the nanometer scale.

2. Obtain life information on the nanometer scale, for example, use scanning tunneling microscope to obtain structural information of cell membrane and cell surface.

3. Development of nano-robots.Nanorobots are the most tempting content in nanobiology. The first generation of nanorobots is an organic combination of biological systems and mechanical systems. Such nanorobots can be injected into human blood vessels for health checks and disease treatment.It can also be used to repair human organs, perform cosmetic surgery, remove harmful DNA from genes, or install normal DNA in genes to make the body operate normally

.The second-generation nano-robot is directly assembled from atoms or molecules into a nano-scale molecular device with specific functions. The third-generation nano-robot will include a nano-computer, which is a device that can conduct human-machine dialogue.

4. Nanoscale adjustment to kill the mutated cancerous cells, through external laser guidance, accurate calculations to find cancerous cells with excessive radiation, using advanced biological cell lysis technology to dissolve possible diseased cells into chemical molecular elements, and through a specific sensor system After accurate verification, the cell components are successfully entered into healthy cells to complete the conversion between necrotic cells and successful healthy cells.

Of course, the mainstream scientists are basically concerned about the use of nano-robots in medicine, but Lei Tiantang feels that nano-robots can be used in any aspect in the future, and can open the door of any technology like a master key!

Nano robots can be used to construct a variety of structures, such as deformable cars, armor, weapons, daily necessities, etc. These complete or partial structures can be repaired by nano robots. Even if they are damaged, they can be absorbed by nano robots. Materials, and then self-replicate to give them a new look.

In particular, the maintenance ability of nano-robots is most valued by Lei Tiantang. It can repair damage to various materials by absorbing materials at a microscopic level. Such characteristics are even more important in space navigation. Know that a spaceship is in the universe. Sailing in China cannot be smooth sailing. You will always encounter asteroid impact, radiation corrosion, and wear of hull materials.

And it is impossible to carry various parts production equipment on the spacecraft to produce parts to maintain the spacecraft, and it is impossible to carry a lot of duplicate parts to ensure the maintenance of the spacecraft, so the future maintenance work on the spacecraft may only use 3D printed parts To replace, or use nano-robot to repair the damage of the parts to achieve the purpose of prolonging the use time of the parts.

Therefore, the research of nano-robots is imperative. Although as long as he designs nano-robots, he can use absolute fields to manufacture them, but in that sentence, the things he makes can only be personal behaviors. There is no problem, but it is impossible for you to make him mass-produce.

Therefore, Lei Tiantang can only carry out the research work of the first generation of nano robots. After all, the current scientific production equipment is still used to produce nano robots. The equipment problem is also one of the reasons that troubles him. Isn't the mouth gun scientist like a rogue?

Now some scientists do not consider whether they can be produced at all when designing certain models, but they are designed directly regardless of three seven twenty-one, and then thrown at that one. Anyway, I designed it. If it can’t be produced, then it’s not my problem. Now that it can’t be produced, it can still be produced. I’ve designed it and it is worthy of your investment. There are still a lot of people who hold such rogue ideas.

Another thing that bothers him is the safety issue. It is important to know that nano robots must use a large number of nano machines to perform any task, including copying themselves.

There may be millions of nanorobotics in the blood; trillions of nanorobotics may be needed at every toxic waste site, and the creation of a car may involve mobilizing tens of billions of nanorobotics to work simultaneously.However, no production line can produce such a huge number of nano-robots.

So the self-perfect replication function of nano-robots is a function they must have, but what happens if nano-robots forget to stop copying?

Without some built-in stop signals, the nanorobots forget to stop copying, and the possible consequences of such a disaster will be incalculable.Nanorobots replicate quickly in the human body and can cover normal tissues faster than cancer spreads; a crazy food-making robot can turn the entire biosphere of the earth into a giant cheese.

Such dangerous situations will definitely occur. After all, everyone knows their own ability to kill themselves. He needs to pay special attention to how to control these dangerous situations, otherwise the robots designed and manufactured by him will be used by people. Destruction or terrorist attacks, etc., is completely contrary to his original intention, so there are still ways to control them!