Monster Factory Chapter 996: : Hot Neuron


The research and development of the bionic electric muscle was placed in the experimental workshop not far from the office.

Dragon Creek Beach Factory’s stalls are now very large, and cars are walking on Huanhai Avenue. Looking at Factory is like looking at a small city.

But the core of Factory has always been in that barren mountain surrounded on three sides.

Ye Qing's office is here, the Factory R&D center is here, and the underground base is also here.

Ye Qing walked into the test workshop, and the Master Craftsman, Metal Specialist, Electronic Envoy, and material masters who participated in this research have been waiting for a long time.

The technical information of the bionic electric muscle has been led by Ye Qing, one for each of the four monsters representative.

The term bionic electric muscle is not too unfamiliar in mechanical dynamics. The traditional hydraulic and pneumatic, and the most common bearing power, have almost been developed to the extreme. And these motivations are often tied to the cumbersomeness.

Engineers are eager to find a breakthrough movement pattern, such as a movement pattern that can independently and linearly contract like muscle fibers.

Only this kind of power mode can perfectly simulate the characteristics of human movement.

It can be widely used in robotics and medical fields.

Primary gimmick products related to bionic electric muscles come out every year, but these products are currently not commercialized.

For example, the gimmick "nylon muscle" developed by MIT can only move nylon muscles through special molding methods and thermal deformation principles.

It’s a bit of a memory material, using temperature to control the shrinkage of the material.

But its shortcomings are also obvious. The preferred material has a very low shrinkage cycle life, only tens of thousands of times. The force produced during contraction is very low, similar to that of patients with muscle weakness.

There is also poor controllability of the contraction angle, unable to complete the flexible motion děng děng|etc|wait of human fingers and trunk.

More expensive, such as bionic electric muscle materials made of various alloys.

Its contraction life has been improved, and its strength has increased, but the power core is actually the same.

Using motors, mechanisms such as pulleys and reels are transformed into linear contraction movements similar to muscles. The volume becomes heavier and the energy consumption will increase substantially.

The cost is high, and the bionics are also nondescript. The watchman robot series designed by Electric Crystal uses this kind of technology, and the merely imitates the more intelligent.

The Monster industry now has the most perfect bionic electric muscle technology.

This kind of bionic electric muscle is composed of artificial sports fibers with the thickness of a ballpoint pen.

Each movement fiber can independently complete the same bionic action as a human muscle.

Sports fibers can be stacked repeatedly or made more slender. Of course, if you do that, the cost will become very expensive.

One piece of Standard size sports fiber, first printed out a special structure tube by Biological Fiber Material.

The tube body must fit a high-tech product called [Thermal Neuron], which can convert electrical energy into heat. And like a human nerve, it freely controls each unit, releasing heat energy with different heat.

The thermal energy length of each unit can be accurate to five millimeters long, and the thermal conductivity between each other is also very low.

Speaking is very complicated and difficult to understand, if it is a popular image.

It is necessary to make a soft electric heating wire into a section of 5 mm or even a section of 2 mm. There will be different temperature changes, and the temperature difference will not be transmitted to each other.

The reason becomes simple.

But if you want to achieve it through technical means, I am afraid that it will be chased by the materials engineers.

They will chase and yell at the same time, "Come on, I will give you a debut question. How to make a glass of water so that one third is 50 degrees, one third is 70 degrees, and one third It's 100 degrees."

"I can't figure it out, I cut you down."

Thermal neuron technology is similar to a glass of water with several different temperature technical difficulties.

What key role can this technology play in the bionic electric muscle?

It can thermally deform the special Biological Fiber Material tube body through the dense thermal unit.

This is a precise and controllable thermal deformation. The deformation angle is precision, which far exceeds the range that human muscles can control.

Special biological materials, the contraction strength generated under thermal deformation, and the energy released by storage, far exceed the strength of human muscles of the same volume.

Biological materials and thermal neurons form an artificial movement fiber.

A large number of artificial sports fibers are superimposed on the ultra-light metal bone, which is highly similar to the human skeleton.

They constitute a complete artificial body. The contraction cycle life cannot be described by times, because it has a working life of more than five years under normal conditions.

According to the difference in the bone structure of the ultra-light metal, or the tongue without metal bone, countless ways of movement can be derived from this.

I don't know if it is a coincidence or the crystallization of Monster Factory technology.

When the bionic electric muscle is in motion, the thermal neurons generate heat and conduct it to the special biological material tube.

Its surface temperature feels like the temperature of human skin.

It, represented has unlimited possibilities.

……

"Hot neurons are more difficult. For Boss, you have to deploy 50 as Master Craftsman to produce device." Master Craftsman replied after reading the technical information.

"The ultra-light metal bone is very simple." Metal Specialist replied.

"The raw materials of the bio-fiber tube body are more difficult. It requires us to add more composites to the previous generation of Biological Fiber Material. We need to provide technical guidance for the cooperative biological Company~IndoMTL.com~ to obtain qualified raw materials." The material master answered like this.

"The electronic motion control system is very simple, because we don't need to program the programming." Electronic Envoy replied.

"Not difficult."

Ye Qing replied, "I have read the information carefully. Our difficulty is mainly that there is no special industrial device for large-scale production of thermal neurons."

"We have technical reserves for Biological Fiber Material, and we also have device."

"So, concentrate on solving the problem of device, which produces hot neurons on a large scale. It just so happens that Factory is going to implement the virtual Factory5.0 rectification upgrade, and many positions need to be suspended."

Ye Qing doesn't have too much worry between her eyebrows. Some techniques will feel unthinkable before breaking the window paper and shouting that it is impossible.

But with a whole set of technical information to pierce the window paper, it becomes reasonable.

How to make thermal neurons?

Science tells us that only with resistance can electricity be converted into heat.

Only metal is the best resistance material, but the heat energy converted by metal is uncontrollable. It needs to be hot and cold together.

So there is no need for the backward resistance heating method.

For more advanced ones, for example, why is it hot in the sun?

Because it emits light, the light contains electromagnetic energy.

So if a thermal unit on a thermal neuron is equivalent to a miniature electromagnetic wave generator, can it not be allowed to release precise and controllable different temperatures?

In an i7 processor smaller than a matchbox, 1.8 billion crystalloid tubes can be integrated.

Monster industry wants to integrate two hundred or even five hundred controllable micro-electromagnetic generators in a one-meter-long thermal neuron. Is it difficult?

It's difficult. From a mechanical processing point of view, it is more difficult than making i7 processors.

Of course, ~ is only produced by Monster industry with technology.


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