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Carbon tank molecular imprinting Nanase Henan KELAIWEI products are recognized by the market

Carbon tank molecular imprinting Nanase Henan KELAIWEI products are recognized by the market
Release date:2020-07-24 Views:0

KELAIWEI Nano Carbon Material Co., Ltd. is mainly engaged in the research and development, production and sales of carbon nanotubes. It always puts the application of carbon nanotubes in the main direction of research and development, and guides the personnel of the research and development team according to the market demand, constantly optimize the production process and technology at present, the equipment breaks the technical blank in China, and owns completely independent intellectual property rights. The technology has applied for 106 related invention patents and 2 international PCT patents, which belongs to the mainstay in China, international advanced level, carbon tank molecular imprinting Nanase.

Henan KELAIWEI Nano Carbon Material Co., Ltd. is an international advanced manufacturer of research, development, design and production of high-end nano materials and process equipment. Our company respectively established Jiangxi KELAIWEI company and Henan KELAIWEI company. KELAIWEI company has completely independent intellectual property rights, focusing on high-end nanomaterials technology research and development, process design, equipment manufacturing, technical services and so on.

Henan KELAIWEI nano-carbon material company, relying on its profound technical deposits of high-end nano-materials, makes the company go to the fast lane of rapid development the year before last, KELAIWEI company spent 0.45 billion yuan to set up several nano-material production lines, which will achieve an annual production capacity of 300 capacity Improvement of tons of whisker-like carbon nanotube powder KELAIWEI company with advanced technology, 6S lean management, create word-of-mouth products for customers, carbon tank molecular imprinting nanases.

May Day 2020 is a special Labor Day. The staff of Henan KELAIWEI Nano Carbon Material Co., Ltd. should rest and work on duty under the protection of individual epidemic. KELAIWEI company delivers holiday comfort and welfare to all employees. Under the influence of the current epidemic situation, the economic situation is grim. KELAIWEI company insists on doing a good job in protection and actively reproduces to contribute to the economic development of our city.

Carbon nanotubes are very thin, and their known diameter can even be as small as 0.4 nanometers. If described by hair, then tens of thousands of carbon nanotubes can be as thick as a hair filament when discharged together, therefore, carbon nanotubes belong to lightweight materials, and Henan KELAIWEI Nano Carbon Materials Co., Ltd. is committed to its commercial mass production and application. The higher the purity of carbon nanotubes, the better the performance. Carbon nanotubes have become one of the important application materials in high-end manufacturing industry.

A brief introduction to the heating principle of graphene electrothermal film. First of all, graphene electrothermal film is a new material for processing and synthesis, which mainly passes through metal-carrying strips (common copper metal) between two layers of insulating polyester film. And graphene conductive ink with excellent conductivity is produced after hot pressing. Different from carbon fiber cables using irregular motion friction between atoms to make heating, graphene electric heating film generates heat by continuously releasing heat energy after carbon molecules that produce Brownian motion collide with each other.

After graphite treatment, the atomic arrangement in the material is more regular, and the thermal stability of the material is better. Through thermogravity analysis, it is concluded that the material below 800℃ has very good thermal stability, the thermoweightlessness rate is below 5%. Common carbon nanotubes have many defects in the growth process, at the same time, the crystallization degree is low, and the thermal stability of the materials is poor, generally, obvious oxidation will appear below 500℃, thermal weight loss rate is generally above 20%, and antioxidant capacity is poor.

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