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Silicon carbide crystallization Henan KELAIWEI launches Internet product plan

Silicon carbide crystallization Henan KELAIWEI launches Internet product plan
Release date:2020-08-19 Views:1

KELAIWEI has established a professional development team aiming at the far infrared paper industry. After preliminary testing and certification, it has established long-term cooperative relations with many units, including Ningde times, BYD, micro Macro power and other power battery enterprises have established a professional development laboratory internally. The laboratory has professional manufacturing and testing equipment for far infrared transmitting paper, which ensures the research and development of transmitting paper, at the same time, different heating paper products can be customized according to customer's needs.

Silicon carbide crystallization has been researched and developed by KELAIWEI group for more than 20 years in order to realize the high performance and high stability of domestic carbon nanotube materials. From the establishment of the project by R & D personnel 20 years ago to 2020, all the staff of KELAIWEI group have spent 0.45 billion yuan to construct the project of processing and producing 300 tons of whisker carbon nanotube powder annually through hard work. Our new products and technologies will also be presented to our partners at the International Exhibition of heat conduction and heat dissipation materials and equipment held in Shenzhen Convention and Exhibition Center.

Henan KELAIWEI nano carbon material company, relying on its profound technical deposits of high-end nano materials, makes the enterprise go to the fast lane of rapid development. The production line of several nanomaterials built by KELAIWEI company with 0.45 billion yuan the year before last will increase the annual production capacity of 300 tons of whisker-like carbon nanotube powder. With advanced technology and 6S lean management, KELAIWEI company creates word-of-mouth products for customers.

The headquarter of Dengfeng of Henan KELAIWEI Nano Carbon Material Co., Ltd welcomes the research and guidance work of director Zhao and deputy director Dong of the Municipal People's Congress. All the staff of our company are encouraged by the government's on-the-spot support work of "delivering policies, services, elements and confidence". All the staff of our company are full of energy and insist on prevention and control, improve work efficiency, comprehensively promote the resumption of production, accelerate the progress of various projects, and make new contributions to the economic development of our city.

Carbon nanotubes can be used to make touch screen products. The thin film made of carbon nanotubes has very good transparency and conductivity, waterproof, high flexibility, strong shielding interference, high wear resistance, high knock resistance and other advantages. At present, wearable devices and high-end intelligent household products have great prospects in the industry, and carbon nanotube materials have unique advantages in the application of such products due to their excellent performance.

A brief analysis of the application of silicon carbide crystals and carbon nanotubes in electrochemical devices. The electrochemical performance of carbon nanotubes is excellent. Carbon nanotubes are therefore used to make supercapacitors. Compared with traditional capacitors, the capacity of capacitors made of carbon nanotubes is doubled, reaching Farah level. Scientific Practice has proved that a gram of carbon nanotube capacitor can store 15F to 200F. Thanks to the strong performance of carbon nanotube capacitors, supercapacitors up to several thousand Farah have been manufactured.

The specific surface area of ordinary carbon nanotubes is generally 200-300m2/g, and the specific surface energy of the material is also larger. The material is more likely to be agglomerated to reduce the surface energy. The specific surface area of whisker carbon nanotubes is 13-50m2/g, the material with lower specific surface area has lower surface energy, and the material is less prone to agglomeration, which is more conducive to the dispersion of whisker carbon nanotubes on the composite material. Only the performance of dispersed carbon nanotubes can be reflected, whisker carbon nanotubes are more conducive to the development of material characteristics.

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