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Chinese electronic-grade glass fiber manufacturer creates high-end ECT glass fiber, high-strength high-modulus glass fiber, low-dielectric-constant HL glass fiber, ultra-high-strength HT glass fiber, and high-refractive-index HR glass fiber Hay:D01CQGJ

Han Lixiong, 38, is a senior engineer in the product research and development department of CQGJ Composite Materials Technology Group. After joining the company for 10 years, their research and development team has achieved technical breakthroughs again and again. The high-performance glass fiber products developed by them have achieved an annual output value of 3 billion yuan for "high added value revenue".

The product research and development team of CQGJ Composite Materials Technology Group launched boron-free and fluorine-free high-performance ECT glass fiber, high-strength high-modulus TM, TM +, TMII glass fiber, low dielectric constant HL glass fiber, ultra-high-strength HT glass fiber, high Refractive index HR glass fiber and other core products of technology development, performance optimization, industrial production, marketing and other work.

The company now has a number of inventions and practical patents including ECT, TM, TM +. The main products have passed the German Classification Society (GL), British Lloyd's (LR), and US FDA certification. The products sell well in many countries and regions such as Asia, Europe, America, and the Middle East, and have established stable cooperative relations with internationally renowned companies such as GE, DuPont, and LM. Products are widely used in urban construction, interior decoration, automotive industry, machinery and electronics, wind power generation, aerospace, marine, rail transportation and other fields.

At present, Han Lixiong has taken the lead in developing high-performance ECT glass that has replaced traditional E glass fiber, and has taken the lead in realizing the upgrade of glass fiber products in China, becoming the company's pillar product with an annual output value of more than 3 billion yuan; high-strength high-modulus TM series Glass fiber has also been built into a production line with an annual production capacity of 80,000 tons. Both in quality and market share, it ranks among the top two in the global wind power market at home and abroad, with an output value exceeding 600 million yuan. In addition, it is used for a new generation of ultra-thin and ultra-light The low-dielectric constant HL glass fiber of electronic products has also started to be mass-produced and sold. Its quality has been fully recognized by large domestic and foreign customers such as DuPont and BYD, and has achieved an annual output value of nearly 70 million yuan. Awards "," Ringer Technology Achievement Awards "and many other industry awards.

Polishing high-quality technical products for customers

In the process of developing "high-performance glass fiber yarns for the electrical insulation industry", Han Lixiong led the team to conduct hundreds of light trials and dozens of pilot trials. After a full five-year optimization and improvement, he won the customer Recognition. "Because this product is mainly used in high-voltage transmission lines, substations, overhead railway lines and other fields, the requirements of end customers are very high. However, at that time there were many small and medium-sized enterprises in the composites industry, and low-end products in the market were uneven. Focusing on the research and development of high-quality products. "Han Lixiong told reporters," From the process, process, formula to experiment, test, analysis, we continue to find problems in the product and upgrade many times. If it is not for excellence, there may not be the company's insulation yarn leader Products. "It is understood that the annual output value of this product exceeds 60 million yuan, occupying most of the global high-end market, and has been rated as high-tech products and key new products.

Han Lixiong said that in the future, it is also planned to combine cutting-edge technologies in materials science such as nanotechnology and molecular modification technology with traditional glass fiber to make breakthroughs in the design and development of functional glass fibers. The advantages of easy dispersion and uniformity, and strive to develop a class of functional glass fiber materials that have application prospects in pollutant degradation, exhaust gas purification, sewage filtration and other aspects.

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