HuNan MTR New Material Technology Co.,Ltd
HuNan MTR New Material Technology Co.,Ltd
HuNan MTR New Material Technology Co.,Ltd

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ABOUT US

Hunan MTR New Material Technology Co., Ltd is a manufacturer of thermal field heat insulation materials of high temperature furnaces! By adhering to the corporate philosophy of concentration, focus and professionalism, this company is committed to the continuous development and application of thermal field insulation materials technology.

The main products of this company are the graphite hard felt, reinforced composite hard felt, multi-type composite hard felt, graphite felt, high-temperature carbon felt and other thermal field heat insulation materials. The hard felt series is featured by such advantages as rigidity, self-supporting, high strength, no staple fiber shedding and low thermal conductivity that are not possessed by traditional insulation materials, is more energy-saving, environmentally friendly and easy to assemble and disassemble, and provides convenience for maintenance, extending the service life of high-temperature furnaces.

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NEWS AND EVENTS

Composite hard felt is a new type of textile material with excellent wear resistance, compression resistance, and sound insulation performance, widely used in fields such as automobiles,...

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Carbon fiber hard felt is a composite material with excellent properties, including high strength, low density, and excellent wear resistance. It is widely used in fields such as aerospace,...

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Graphite felt is a new type of high-performance material with many differences compared to traditional materials. Below, a detailed comparison will be made between graphite felt and traditional...

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Carbon fiber hard felt is a type of hard felt made of high-strength and wear-resistant composite materials composed of carbon fibers, commonly used in various industrial fields. The special structure...

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From the production process of carbon fiber, it can be seen that carbon fiber is a structure similar to graphite crystals formed after high-temperature carbonization at 2000-3000 ℃ and graphitization...

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