Chapter 128 Establishment of the Engine Research Division
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With the exposure of Tiangong Laboratory by major media in the world, the reputation of Tiangong Laboratory and Dr. John Yang has become more and more influential around the world.
In particular, after the "Tiangong" pictures of moving atoms in the Tiangong Laboratory were reported and published in major newspapers and scientific magazines, the attention of European and American countries to nanotechnology has been raised to the level of national strategy.
Although many people from scientific research institutions from all over the world come to Tiangong Laboratory every day to visit, exchange and study, these things have not affected Yang Weiping's daily work.
As always, he immersed himself in the laboratory to work on technical research and development, leaving the external affairs to Bern Steve.
Qian Lao has been gone for almost a week.
Yang Weiping did not pay much attention to whether there was good news or bad news in China, and he now focused on the newly established engine research branch of Tiangong Laboratory, and issued an open recruitment proposal for scientific research workers in the four specialties of engine, machinery, smelting and materials to all countries in the world.
Four papers published in the journal Nature in a row have made the halo on Dr. John's head even brighter.
Now Tiangong Laboratory has set up an engine research division, which is undoubtedly to convey a message to the outside world, Tiangong Laboratory, to apply their advantages in nanotechnology and nanomaterials to the field of engine industry, engaged in special research and development.
The allure of this news is undoubtedly extremely great for the intelligence departments of the Soviet Union, the United States, Britain, France, and other military powers that are conducting research on third-generation fighter engines.
In the previous life, Yang Weiping, as the most authoritative power expert in China, was of course the strongest field in the research of fighter engines. However, even if he has worked for Rolls-Royce, Pratt & Whitney, and GM for nearly 20 years, he still can't master all the core secret technologies of Pratt & Whitney's and GM's fourth- and fifth-generation fighter engines.
After returning to China, he could only apply some of his research experience in turbines, turbofans, and turbojet engines in the United States and Britain to the air engines independently developed by Huaxia to improve and improve them.
For the first fighter engine launched by the engine research branch of Tiangong Laboratory, Yang Weiping also took great pains to choose what kind of bloodline;
Thousands of high-rise buildings are flat from the ground, and building an engine is much more complicated than a scanning microscope. After thinking about it, Yang Weiping finally decided to practice from the A murderer he was most familiar with.
The engine research division is different from other branches of Tiangong Laboratory, just a test platform, it is impossible to do 0 in the existing building of Tiangong Laboratory, therefore, Yang Weiping can only draw design drawings by himself, while arranging people not far from Tiangong Laboratory to acquire a relatively suitable ready-made machinery manufacturing plant for expansion.
This will be a fairly large system project, and it will not be able to compete overnight. To this end, Yang Weiping specially formulated a three-year plan for the engine division.
It is important to know that although Yang Weiping uses A as the prototype, all parts and components are basically updated in terms of material selection, and the vector ventrilogue technique design scheme has also been added.
To this end, the materials research branch of Tiangong Laboratory has begun to establish projects and tackle key problems in a series of materials such as resin matrix composites, ceramic matrix composites, ceramic matrix composites reinforced with carbon fiber, single crystal silver-based alloys, silver-based superalloys, single crystal alloy surface deposition thermal barrier coatings, powder high-temperature metallurgy, and superalloys with ceramic layers.
With a large number of senior researchers with strong professional abilities under his hands, Yang Weiping naturally felt much more relaxed, otherwise he would never have been able to launch so many research projects at once. …,