Regardless of the type of gas, temperature control is flexible! A cryogenic nitrogen gas device that employs a direct cooling method.
The "Cryogenic Nitrogen Gas Device" can cool the temperature of gas using a special heat exchanger made with the thermally diffusive composite ceramic "CZ-80." It employs a direct cooling method that connects room temperature nitrogen gas extracted from the air through a pipeline to the device's ultra-low temperature (below -100°C) special heat exchanger, converting it into ultra-low temperature gas below -50°C. This device can be used continuously without the need to replace nitrogen gas cylinders in locations where liquid nitrogen cylinders are used. 【Features】 ■ Reduces the rise in friction heat during the polishing of hard materials and precision grinding, preventing shape changes due to heat. ■ Allows for detailed processing without oxidation and surface roughness by blowing cold gas during laser cutting. ■ When using ultra-low temperature coolant, a non-Freon type cryogenic nitrogen gas heat exchanger is manufactured. ■ Can conduct performance tests on the cold resistance of insulating materials and others down to around -100°C. *For more details, please refer to the related link page or feel free to contact us.
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【Other Features】 - Can be used continuously without the need to replace the liquid nitrogen cylinder. - Can dry-process materials such as glass, ceramic carbon materials, rubber, silicone, jewelry, and metals by blowing ultra-low temperature gas onto a freezing fixture (freezing chuck). - Allows for ultra-low temperature environment testing for materials research related to superconductivity by specifying the required temperature (up to -150°C). - When creating small frozen samples for research experiments, the gas flow rate can be specified within a range (3 to 50 L/min). *For more details, please refer to the related link page or feel free to contact us.
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Our company provides environmentally conscious products through the development of heat-related equipment utilizing composite ceramics. The new material we developed, "CZ-80," is an active material composed of ultra-thermal diffusion ceramic composites, featuring excellent properties such as "high thermal conductivity," "thermal expansion rate approaching zero," and "flexible design." We have contributed to the challenging requests of many companies with research institutions, manufacturing plants, and processing factories by providing products, OEM services, and components. Moving forward, we will continue to leverage the properties of "CZ-80" to fulfill the requests of companies that were previously unattainable.