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Pure carbon material carbon nanometre Henan KELAIWEI develops a variety of whisker carbon nanotubes application products

Pure carbon material carbon nanometre Henan KELAIWEI develops a variety of whisker carbon nanotubes application products
Release date:2020-12-10 Views:1

At present, there are four companies in the world that can carry out mass production of whisker carbon nanotubes, which are Japan SHOWA SENKO, Taiwan rijiang, US Applied Sciences and our company respectively. Among them, Japan has the largest production of SHOWA SENKO, up to about 500 tons. The technology and equipment of whisker carbon nanotubes developed by our company are at the same level as SHOWA SENKO. Only KELAIWEI company can produce mass production in China, and its technology belongs to international advanced, which is the mainstay in China.

"Technology is the mainstay, product performance is high, and service is satisfactory" is the business philosophy that the technical staff of Henan KELAIWEI Nano Carbon Material Co., Ltd insist on implementing in the development of more than 20 years. The R & D team of KELAIWEI, led by Professor Sun Xiaogang, the top domestic nanomaterials research expert, has applied for more than 100 patents and has 9 national property rights patents. KELAIWEI pursues promoting the leapfrog development of nanomaterials with technological progress.

KELAIWEI nano carbon material company has established Henan KELAIWEI Nano Carbon Material Co., Ltd. and Jiangxi KELAIWEI Nano Carbon Material Co., Ltd. KELAIWEI company continues to develop, expand investment and expand the scale of production and operation. KELAIWEI company invested 0.45 billion yuan to invest 13,000 square meters of factory area in Henan, and maintained deep cooperation with experts at home and abroad. Our company attaches great importance to the research and development and innovation of advanced technologies of nanomaterials.

Pure carbon material carbon nanometer, KELAIWEI company monthly happy enterprise construction plan and enterprise lean work inspection meeting will be held on schedule. At the meeting, KELAIWEI Company was required to strengthen internal communication, sharing and learning, make full use of preferential policies of science and technology, internal cost control, external cooperation, improve work efficiency and do a good job in daily sales, and pay attention to do a good job in the publicity and construction of the corporate image, at the same time, to quickly promote the development of the company's various work.

Henan KELAIWEI Nano Carbon Material Co., Ltd. has learned that the market prospect of carbon nanotube materials is very broad. Carbon nanotube materials have excellent conductivity, optical properties, high strength and high toughness (which can be 100 times that of steel). Therefore, carbon nanotube materials are widely used in automobile manufacturing, semiconductor product production, building template materials, battery manufacturing and other fields.

Pure carbon materials carbon nanometre, conductive agents are commonly used in the production and manufacture of lithium batteries, so what are the commonly used conductive agents for lithium batteries? After using the conductive agent, it is helpful to improve the battery capacity and prolong the service life of the battery. There is a large demand for lithium battery conductive agents, and there are also various conductive agents in the market. Generally, the heat conduction agents of lithium batteries are carbon black, carbon fiber and conductive graphite, which are traditionally used for a long time. In addition, a batch of new conductive agents have also appeared, such as carbon nanotubes (CNT), graphene, etc.

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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