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Home> Products> High Temperature Sintering Furnace> Ceramic Sintering Furnace> Carbon ceramic PIP sintering furnace
Carbon ceramic PIP sintering furnace
Carbon ceramic PIP sintering furnace
Carbon ceramic PIP sintering furnace

Carbon ceramic PIP sintering furnace

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Carbon ceramic PIP sintering furnace equipment can be used to prepare carbon/carbon ceramic high-performance brake discs in automobiles, high-speed trains, tanks, airplanes, etc. The carbon ceramic PIP sintering furnace is a new type of high-temperature sintering equipment, mainly used for carbon-ceramic composites. Material sintering preparation process. Its sintering performance and effect are excellent, and it is widely used in aviation, aerospace, military industry, energy and other fields.

The PIP method is to dissolve or melt the organic polymer precursor, impregnate it into the fiber preform under the action of vacuum and air pressure, and then dry or cross-link and solidify it, and then undergo high-temperature sintering to pyrolyze and transform the organic polymer to prepare ceramics. matrix. Its preparation process temperature is low, and it can realize the forming of various large and complex carbon-ceramic composite materials. The prepared carbon-ceramic composite materials have excellent performance.


High Temperature Sintering Furnace Product Characteristics

1. The maximum working temperature of industrial Electric Furnace is 2300℃, and the common temperature is 2250℃.
2. Working atmosphere: air atmosphere, vacuum sintering or reducing atmosphere sintering (slight positive pressure)
3. Temperature measurement: thermocouple and far-infrared optical temperature measurement component form
4. Temperature control: program control and manual control; Temperature control accuracy: ±0.1℃
Our company provides a series of equipment for carbon ceramic preparation, and the corresponding equipment can be selected according to different process routes.

Basic process flow

1. Carbon fiber prefabricated matrix (embryo body) - high temperature cracking treatment - pressure impregnation (vacuum impregnation) - carbonization and sintering - mechanical processing - graphitization - ceramicization - subsequent processing
2. Carbon fiber prefabricated matrix (embryo body) - high temperature cracking treatment - chemical vapor deposition - mechanical processing - graphitization - ceramicization - subsequent processing


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