The global most powerful information hub of high performance & advanced materials, innovative technologies

to market your brand and access to the global demand and supply markets

Chinese 0.12mm ultra-thin electronic information display glass manufacturer wins silicate technology innovation leader award from the American Ceramic Society Hay:B04ZCBB

A few days ago, the "Oscar Award" of the world glass industry, the American Ceramic Society Leadership Award for Silicate Technology Innovation, was settled.

Peng Shou, dean of the China ZCBB Special Glass Company , and the Chinese scientist who created the world's thinnest glass, won this "laurel", and thus became the first Chinese scientist to receive this honor in the world of glass technology.

The World's Highest Achievement Award for Individuals in the Silicate Field-Silicate Technology Innovation Leadership Award

On October 15, local time in the United States, the 120th Annual Meeting of the American Materials Science and Technology Conference and the American Ceramic Society was held in Columbus, Ohio. The chairman of the Advisory Committee of the International Glass Association, the director of the State Key Laboratory of Float Glass New Technology, China Peng Shou, Dean of ZCBB was awarded the "Silicon Technology Innovation Leadership Award".

The American Ceramic Society's "Silicate Technology Innovation Leadership Award" is selected every year by the American Ceramic Society worldwide and awarded to scientists who have made outstanding contributions to the advancement of scientific and technological advancement and cutting-edge technology development in the world's silicate field. The highest individual achievement award in the world silicate field.

The award was produced by a secret ballot of members of the American Ceramic Society. Only two people receive this award each year, one from the United States and the other from countries outside the United States. With many world-leading achievements in the field of glass innovation, especially in the field of ultra-thin electronic information display glass, Peng Shou was unanimously recognized by international peers, and was finally elected with a high vote. 2018 winners.


Glass is a non-metallic silicate material. Six months ago, the 0.12mm glass gained global attention and wonder once it was launched.

Peng Shou won this honor not only because of this piece of 0.12mm glass. Behind the honor is the achievement of China's glass technology innovation and independent intellectual property rights relative to the world's leading level, from "following", "following" to "leading" To cross.

Chinese scientists have won this international honor for the first time, creating a precedent for the first time that the award has been awarded to scientists in the field of glass technology since the establishment of the award, marking the world's full recognition and recognition of China's glass technology innovation and independent intellectual property rights.

Ultra-thin extreme challenge next step tackling 0.1 mm

It is understood that the ZCBB will also cooperate with high-end universities such as the Chinese University of Science and Technology, the Chinese Academy of Sciences, and the University of Science and Technology of China to carry out cooperative R & D and personnel training, cultivate more forward-looking and leading innovation results, and build China's first and world-leading Innovation platform.

At the same time, ZCBB will continue to break through ultra-thin extremes, focus on tackling 0.1-mm ultra-thin electronic touch glass, and create a "National Silicon-based New Materials Manufacturing Innovation Center."

Peng Shou said that in recent years, ZCBB has continued to accelerate its industrial layout in Anhui. the cumulative investment has exceeded 30 billion yuan, which has opened up the Chinese information display glass industry chain and solar photovoltaic glass industry. Chain, and follow a path of technological innovation, high-quality development, and supply-side structural reform.

In the manufacturing industry, ZCBB changed glass equipment from pure import to glass equipment export. The transformation and upgrade of Huainan Coal Machinery has made it a equipment manufacturing enterprise combining photovoltaic equipment, new energy equipment and coal mining equipment.

In addition to 0.12mm ultra-thin touch glass, ultra-thin high-aluminum cover glass was successfully rolled off in Bengbu in April this year. In addition, "8.5-generation TFT glass substrates with independent intellectual property rights will also be put into production in Anhui by the end of this year." Peng Shou said that at this point, the "four glasses" of the electronic information display industry have been mastered, "realizing China's use of information glass "Follow the run" to enter the "leading."

ZCBB has now become one of the domestic silicon-based new materials industries with the strongest technological innovation capabilities, the strongest results transformation capabilities, and the widest range of scientific research institutes. Its scientific research and innovation strength leads the country, not only mastering the field of silicon-based new materials. International first-class technology, developed a number of high-end products such as 0.12mm ultra-thin touch glass, TFT-LCD ultra-thin glass substrate, ultra-white photovoltaic glass, hollow glass microbeads, copper indium gallium selenium film battery, cadmium telluride film battery, etc. Breaking foreign monopolies, while also using the new technology of glass to develop smart agriculture.

In recent years, the scientific research and innovation achievements of BZCBB have been plentiful. The Bengbu Academy has 32 national, provincial and ministerial innovation platforms, and has undertaken 11 national 863, 973, and science and technology support projects, won 3 national science and technology progress awards, more than 90 provincial and ministerial science and technology achievement awards, and obtained more than 1,769 authorized patents.

Please check the message before sending