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Chapter 390: The upgrade of rock breaking technology

To be precise, it is surface heat radiation method, which is a major discipline, which is subdivided into plasma rock breaking method, electron beam rock breaking method, laser rock breaking method, infrared rock breaking method, and hot melt rock breaking method (nuclear energy).

In the R&D center of the company's headquarters, Li Chuan and a group of R&D teams of broken rock technology gathered together. Most of the engineers here are young people, and the average age is only thirty years old.

This is a good thing, and young means they will be involved in their own field for a longer time, indicating that there are successors.

The disadvantage is that he is young, but that's nothing, because Li Chuan is in control, and he dares to activate young people because he is the only one.

At this time, Li Chuan said to a team of engineers: "About the 'electron beam rock breaking method', in the non-contact rock breaking method, focusing electron beam rock breaking is the easiest to achieve. The existing test results also show that any hard rock can be broken under the action of an electron beam. For rock breaking equipment such as electron beam, the hardness of the rock is insignificant..."

The electron beam rock breaking method is one of the commonly used rock breaking methods to develop Antarctic bases, and it can consume high-purity energy. With the energy core with small size and high energy storage as the support for long-term energy endurance, the electron beam rock breaking method is undoubtedly a very reliable technology with excellent operability and executability.

Li Chuan continued: "Compared with other traditional contact rock breaking methods, such as mechanical energy rock breaking methods, electron beams have higher power density and energy conversion rates. If my theory is not wrong, the conversion rate should be as high as 85%. You will know how much you need to use real experimental data, but I believe there will be no deviation too much. Moreover, the electron beam rock breaking method does not have the backlash problem of general mechanical methods."

"I have already formulated the following specific plans here. Everyone downloaded and copied a copy of the data and went back to study and discuss together. As soon as possible, our time is very precious, so I hope to enter the substantive stage as soon as possible." Speaking of this, Li Chuan came to the control panel next to him and started operating. During this period, he seemed focused and focused throughout the process.

Among this group of young professional engineers, there are many young female engineers. At this time, they also looked at Li Chuan who was focusing on her and became obsessed with admiration.

Li Chuan is almost three years old. The age stage of 25 and under 30 can be said to be the peak stage of a man. He is at this age stage. With the deposition and hardship of time, he has completely lost the only trace of youth on his body, not to mention that he has many halo expressions on his body.

All of this makes him more masculine!

Absolute male god!

Sure enough, a focused man is the most attractive!

A moment later, Li Chuan's eyes turned from the control panel to the large screen in the development room hall, and a demonstration video soon appeared, and said: "In the electron beam rock breaking method, the specific plan is to use an electronic gun separately for mining operations; use other mechanical equipment; use a long-arm electron gun for drilling, and use a long-arm electron gun to mine a thin layer of rock bed."

While speaking, Li Chuan turned around and looked at the team members who were downloading data packets, and said at the same time: "In addition, in the electron beam rock breaking method, in addition to the above-mentioned focusing electron beam method, there are pulsed electron beams, high-energy accelerators, etc., have the data packets been downloaded? Well, very good. You will discuss it yourself and then prepare to conduct a series of tests for focusing electron beams, pulsed electron beams, and high-energy accelerators excavation. The specific plan will be formulated for me to approve it."

Then, Li Chuan returned to the control room and operated for a while. The fully transparent tablet computer in the hands of all the team members immediately received a new data reception prompt, and also looked at Li Chuan. The latter said: "The geological structure of the Himalayas is complex, and the three sections of the middle, upper and northern sections need to be penetrated. Different geological strata and landform environments need to adopt appropriate technology according to local conditions, so we also need the plasma rock breaking method."

As he said that new three-dimensional demonstration animation information appeared on the big screen, as well as correspondingly perfect theoretical data formulas, etc. Li Chuan said: "Plasma rock breaking equipment should include power supplies, controllers, gas circuit systems and nozzles, etc., as shown in the picture. The plasma rock breaking method is used to perform secondary crushing of irregular rocks. Whether at home or abroad, its technology is relatively mature. The Institute of Mining, Siberian Branch of the former Soviet Academy of Sciences, has conducted many tests in granite, quartzite and sandstone."

"But due to changes in lithology and rock structure and cracks, there are often skews. This is fatal once such disclosure occurs in our projects. At present, many domestic and foreign use guides to improve this situation to a certain extent, but it still cannot fundamentally solve the problem. The main task of our technology upgrade and development is to solve this problem."

"The last excavation technology - laser rock breaking method." Li Chuan looked at the serious young team members, nodded, and then analyzed: "Laser rock breaking has been related research since the 1960s. Everyone should understand the main principles, which is to use the thermal action of lasers to break the rocks, and use the high-energy focused radiation emitted by the laser to cut deep and thin cuts on various hard rocks. Especially when digging hard rock tunnels, laser cutters are very economical. Of course, this superiority depends on the level of application and development of laser technology."

As he said that, Li Chuan signaled everyone to look at the big screen. The sketch above is a set of laser cutting device drawings with a large amount of theoretical data, including a plane rotation mirror, a focus mirror, a focus laser beam, a scattered beam laser and other applications.

"Okay, that's all. You have to take care of the excavation technology. You can follow the tasks according to your respective specialization modules and build test equipment and shaping equipment as soon as possible..." Li Chuan clapped his hands and said.

If nothing unexpected happens, this process will be completed in about half a year. As for why the research and development of emerging excavation technologies are so smooth, of course, Lichuan, the general manager of engineering and technology, has strong technical development capabilities.

In the following days, Li Chuan left the company headquarters again, and the R&D center initially started the development process. Leave the specific matters to the deputy to the general manager. If you encounter specific technical doubts, you can also call for guidance.

Li Chuan once again went to the front-line construction site. He would fly around the two places frequently for a long time in the future. The front-line also needed him. Li Chuan really wanted to be able to divide several clones at this time.
Chapter completed!
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