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State Key Laboratory of New Metal Materials, University of Science and Technology Beijing
State Key Laboratory of New Metals, University of Science and Technology Beijing enjoys a high reputation in the field of materials.

A number of world-class scientific research achievements have been achieved.

There is a lot of news about this laboratory in online search.

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The research of new metal materials in University of Science and Technology Beijing has reached the international advanced level.

(Reporter Ji Xiujun correspondent Chen Jie) China's new generation of aero-engine materials with independent intellectual property rights-high-temperature, high-performance and high-niobium titanium-aluminum alloy materials are about to enter the industrialization stage, which will make China's alloy materials technology occupy the world leading level. This is an exciting news recently from the State Key Laboratory of New Metal Materials, University of Science and Technology Beijing.

This technology will greatly improve the engine life of our fighter.

Science and Technology Daily: State Key Laboratory of New Metal Materials, University of Science and Technology Beijing, oriented by national demand.

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The American Journal of Applied Physics reported a research result of Professor Zhang Yong's research team in this laboratory. The research team has developed a solid solution alloy with compressive strength exceeding 3000 MPa through new methods, which is expected to be used in cutting-edge fields such as aviation and aerospace in the future, attracting the attention of the international materials industry. As a research highlight, Nature China also commented on this achievement.

In fact, this is just one of many achievements of the State Key Laboratory of New Metal Materials, University of Science and Technology Beijing. In the past few years, several research groups in this laboratory have made great achievements. For example, Professor Sun Zuqing and others systematically carried out research on the organization control, performance optimization, related mechanism and application of a new generation of carbon steel and high-strength low-alloy steel, and won the first prize of national scientific and technological progress in 2004. In 2007, the project "Production Technology and Product Development of Special Steel for High Performance Drill" hosted by Xie Jianxin won the second prize of National Science and Technology Progress Award. Kang Yonglin and others participated in the project "Research on microalloying technology of thin slab continuous casting and rolling and development of low-cost and high-performance microalloyed steel" and won the second prize of national scientific and technological progress in 2007. The research team represented by Chen Guoliang has successfully developed Nb-TiAl alloy with independent intellectual property rights at home and abroad for the first time, which has made original contributions to improving the oxidation resistance of niobium and the relationship between alloy phases.

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Guangming Daily: The State Key Laboratory of New Metal Materials of University of Science and Technology Beijing has attracted worldwide attention.

Author: Chen Jie reposted from: Guangming Daily hits: 3675 update time: 2008- 1-30 background color.

People may think that it is science fiction to let the metal-made deformation robot change into various shapes at will, or even fly away from the small gap under the door. However, modern technology tells us that in the near future, this "terminator" material will make human imagination come true. This is the "metallic glass" that scientists are developing. An experiment in the State Key Laboratory of New Metal Materials, University of Science and Technology Beijing, turned the research of this material to.

Reality has taken another step forward.

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Science Times: The research team of University of Science and Technology Beijing has made a breakthrough in nano-materials research. Single papers published in internationally renowned journals have been cited as many as 130 times.

The related papers published by the research team in the internationally renowned journal Chemical Physics Express were all cited in the top 50 in the five years from 2003 to 2007. He cited 130 times in a paper. The research team reported the growth mechanism of tetrapod-like zinc sulfide nanostructures in the internationally renowned journal Nanotechnology, which became the top 10% hot article in the first quarter after publication. The related papers published in the British Journal of Physics were rated as the top papers in 2006.

It is the only achievement of China researchers among the 22 outstanding research papers in this journal this year.

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