标签归档 杭州后花园论坛

The first gene platform of polymer materials in China was born, which is called "ChatGPT of polymer version".

The key bottleneck restricting the development of advanced equipment is to meet the requirements of advanced resin composite materials with high strength, high temperature resistance and light weight. At present, such a difficult problem is expected to be solved. The reporter learned from East China University of Science and Technology that the first domestic polymer material genome research and development platform (AI plus polymer software platform) developed by Professor Lin Jiaping’s team was recently released in Shanghai.

The software is called "polymer version of ChatGPT", which contains the first database of resin structure and properties and chemical reaction between groups in China. Users only need to input the resin structure, they can quickly obtain its mechanical, thermal and dielectric properties, and can also make performance prediction and high-throughput screening through this software, so as to develop high-performance polymers and their composites with faster efficiency and lower cost.

"The research and development of new materials has entered the era of intelligent manufacturing from the era of trial and error of scientists." Lin Jiaping introduced that in the past, it often took 2-3 years or even longer for a new material to go from design, experiment to productization. Now, relying on this "polymer virtual laboratory", R&D personnel can find the optimal solution of structural design and formula optimization only through 2-3 iterations, and the experimental time is greatly reduced. The team will join hands with the industry to promote the development of AI plus polymer research paradigm to the whole industry chain.

Powerful database and forecasting system lead the industry.

What are the highlights of the AI plus polymer software platform? Lin Jiaping introduced that as an important achievement in the cross field of AI and digital technology and polymer materials, a powerful database is an important support of the platform and can be described as the cornerstone of material genetic engineering. The first database of resin structure and properties and chemical reaction between groups established by the team in China contains nearly 150,000 performance data of more than 34,000 polymers and nearly 1.4 million chemical reaction data of 58,516 basic reaction templates.

It is worth mentioning that these data mainly rely on dozens of graduate students and undergraduates in the past three years, especially during the epidemic, to standardize, enter and store them one by one. Based on the database, the team created a machine learning prediction model for more than ten properties of polymers, and built a research and development platform for polymer materials genome, which has multiple functions such as data retrieval, performance prediction and formula optimization.

The reporter saw in the team’s live demonstration that when users use the AI plus polymer software platform to predict the performance of polymer materials, they only need to click "Draw Structure" first, input the drawn strings of epoxy resin and curing agent into the corresponding input boxes, and then click "Start Prediction". After a few seconds, the page will return to the performance prediction data of epoxy resin calculated in the background.

So, how does this software compare with foreign counterparts? For example, Gao Liang, one of the team members and a special researcher at East China University of Science and Technology, has similar software in the United States and Japan. However, in terms of database richness, prediction accuracy and functional diversity, AI plus polymer software platform is superior. "Our goal is to seize the opportunity of digital and artificial intelligence to change the new material industry, develop high-performance polymers and their composites with faster efficiency and lower cost, and realize the original innovation and intelligent manufacturing of polymer materials." Gao Liang said.

The research and development of new materials has entered the era of "intelligent manufacturing" from the era of experience "trial and error"

The development of AI plus polymer software platform can be described as a sword after ten years. It is reported that since 2011, Lin Jiaping’s team has seized the frontier field of material research-material genetic engineering to start related work.

With the cooperation of gene combination screening and AI tools, the team developed a series of advanced composite matrix resins. For example, the curing temperature is less than 300℃, the 5% thermal decomposition temperature is more than 650℃, and the glass transition temperature is more than 600℃. For another example, a new type of high-temperature resistant and high-toughness poly (alkynyl imide) resin is superior to polyimide in processability, heat resistance and interface properties, and its mechanical properties are equivalent to polyimide. Related new resins have been evaluated by many aerospace institutes for the performance of composite materials and components.

"The AI plus polymer software platform is like a polymer virtual laboratory. The virtual design of the platform and the method of high-throughput prediction will greatly improve the research and development efficiency." Lin Jiaping introduced that at present, the platform has been tried in more than ten enterprises such as Shanghai Huayi Group Resin Factory, Shanghai Aerospace Eighth Institute, Jinfei Carbon Fiber Technology and Jinshan Petrochemical Institute, and will be used to the public.

Author: Wu Jinjiao

Editor: Chu Shuting

Editor in charge: Fan Liping

Photo: East China University of Science and Technology

* The exclusive manuscript of Wenhui, please indicate the source.

Zhang Peimian: To win the European genius, you must fight Wu Zun!

author /? Lonely shadow

Editor/? Knife horse
On October 21st, Zhang Peimian, "the strongest middle school student in China", will challenge the title of "the youngest kicking world champion in China" and face Canadian boxer Jonathan Dibella.
Recently, fighting fans were invited to attend the online press conference before the game, and interviewed Zhang Peimian, which also gave everyone a preliminary understanding of the game.
Fighting fan: "You are called a fighting genius by many boxing fans and the media. How do you evaluate this title? Which do you think is more important, talent or hard work? "
Zhang Peimian: "I think a talented fighter is 90% hard work plus 10% talent, which is more important than hard work."
Fighting fan: "You won the challenge right after playing two games, but your opponent is equal to parachuting down and playing the championship game directly. It can be seen that ONE recognizes his strength very much. What do you think about this?"
Zhang Peimian: "That’s his business, and it has nothing to do with me. No matter who ONE arranges for me, I will go all out."
Fighting fan: "How much do you know about this opponent? What do you think are his strengths and weaknesses?"
Zhang Peimian: "The opponent’s boxing skill is very good, and he is calm in the ring, which is very similar to my style. It’s just over when he goes up hard." “
Many people compare Zhang Peimian with Nasukawa Tianxin, a Japanese fighting genius. In the media interview, Zhang Peimian also said, "Don’t be Nasukawa Tianxin of China, but Zhang Peimian of China". He hoped that after winning the championship, he could invite Wu Zun to a duel, which was his initial goal.
Zhang Peimian has been playing games since he was in his teens. He has been known as the "strongest middle school student" as an adult player whose KO is taller than himself many times.
After signing the ONE championship, Zhang Peimian successively defeated ISKA world champion Josh Tona and veteran Zyklev, and successfully qualified for the world champion. He also hopes to get a golden belt and return home like Tang Kai.
When Zhang Peimian’s opponent made his debut in the ONE Championship, he competed with Zhang Peimian for the golden belt. After all, he was also a man with the aura of "genius fighter" on his head.
When DiBella was 2 years old, she practiced kicking and boxing under the guidance of her father. Then she entered the professional arena with a record of winning 20 games, and achieved a record of 10 wins and 1 loss in major competitions such as GLORY. DiBella is proficient in kicking, boxing and karate, playing as fiercely as Zhang Peimian, and also has a record of winning in boxing.
There are many similarities between Zhang Pei-mian and his opponent. Both of them are young and famous, young and energetic, both of them are fighting fighters, and they are fighting for a golden belt. Against this background, this competition is likely to become ONE of the most popular competitions of the ONE Championship in China this year.

What’s the use of quantum computers?

Quantum computers perform a series of large-scale and high-precision operations through quantum splitting and quantum patching.

Its floating-point operation performance is unmatched by the CPU of ordinary household computers. The large-scale operation mode of quantum computers is actually similar to the batch program of ordinary computers. Simply speaking, its operation mode is quantum splitting and high-speed quantum repair, but its accuracy and speed are beyond the reach of ordinary computers, so the cost is quite amazing.

At present, the only quantum computer is still in Microsoft’s hometown in Silicon Valley, and it is still in the experimental stage. It will be some time before it is put into use. Quantum computers are certainly not for us to play video games, because it’s like cutting paper with a laser cutter.

Its main applications are such as measuring the precise coordinates of stars, quickly calculating the volume of irregular three-dimensional figures, accurately controlling robots or artificial intelligence, etc., which require large-scale, high-precision and high-speed floating-point operations. But behind this series of difficult operations, there are terrible energy consumption, short service life and terrible heat.

If one ton of U-235 can provide 70 million watts of electricity in one day through the nuclear motor, but the electricity will be exhausted in just 10 days, of course, this is only the most conservative estimate; Imagine if a quantum computer works for about 4 hours a day, then its life span will be only 2 poor years. If it works for more than 6 hours, I’m afraid it won’t even work for 1 year, which is also the most conservative estimate. Assuming that the quantum computer has 70 degrees Celsius per hour, the chassis will reach 200 degrees within 2 hours, and I’m afraid the heat sink will be melted in 6 hours, which is only the most conservative estimate!

A computer based on quantum theory is a physical device that performs high-speed mathematical and logical operations, stores and processes quantum information according to the laws of quantum mechanics. The concept of quantum computer originated from the research of reversible computer. Quantum computers use quantum bits, which can be in multiple states at the same time, instead of only being in the binary state of 0 or 1 like traditional computers.