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Get technical grade hydrogen, nitrogen, argon, and carbon monoxide for your heat treating processes.
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Learn more about our heat treating gases and services we offer.
Heat treating is a group of industrial processes used to alter the physical and sometimes chemical properties of a material, most commonly metals. The goal is to enhance properties such as hardness, strength, ductility, and resistance to wear and corrosion.
Gases are used in heat treating processes to create controlled atmospheres that prevent oxidation, carburize or nitride the surface, and facilitate uniform heating and cooling. They help achieve desired material properties and improve the quality of the heat-treated parts.
Common gases used in heat treating include nitrogen (N₂), hydrogen (H₂), argon (Ar), and carbon-containing gases like methane (CH₄) and carbon monoxide (CO). These gases create specific atmospheres needed for various heat treating processes.
Nitrogen is used to create inert atmospheres that prevent oxidation and decarburization of metals during heat treating. It is also used in nitriding processes to harden the surface of the metal.
Hydrogen is used due to its high thermal conductivity and low density. It is often employed in high-performance cooling systems, particularly in power generation and aerospace applications.
Yes, argon is used to create inert atmospheres, especially for materials that are reactive at high temperatures. It is effective in preventing oxidation and maintaining the purity of the metal surface.
Benefits include improved control over the heating environment, prevention of oxidation and contamination, enhanced material properties, uniform heat distribution, and the ability to achieve specific surface treatments like carburizing and nitriding.
Safety considerations include proper handling and storage of gases, ensuring adequate ventilation, using appropriate personal protective equipment (PPE), and following safety protocols to prevent leaks, explosions, and accidental exposure to hazardous gases.
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Supporting propulsion, life support, cooling, and manufacturing processes for high-performance space missions.
Gases for welding, cutting, heating, and forming processes, ensuring high-quality metal fabrication.
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