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Hastelloy C4 Bars

Hastelloy C4 Bars

Hastelloy C4 Bars is an alloy of Nickel, chromium, and molybdenum. This metal is renowned for its superior corrosion resistance in various environments and temperatures. Hastelloy C4 Bars have excellent stress rupture strength and oxidation resistance under high-temperature exposure. These bars contain between 2-3% Molybdenum, 14-17% Chromium, 1-2% Iron, 0.2%-0.5% Manganese and the rest is made up of Nickel, which gives it outstanding protection against hydrochloric acid attacks at any temperature and concentration levels.

Hastelloy C-4 bars are popular due to their exceptional corrosion resistance in oxidizing and reducing environments. In particular, they have excellent resistance to pitting, stress corrosion cracking, and various organic acids. Its alloying elements include molybdenum and chromium, which give it superior strength against chloride-containing chloride-containing atmospheres and high temperatures (up to 1300°F). This makes it perfect for nuclear power plants, chemical processing equipment, oil production apparatus and pollution control technology.

Hastelloy C4 Bars is an alloy of Nickel, chromium, and molybdenum. This metal is renowned for its superior corrosion resistance in various environments and temperatures. Hastelloy C4 Bars have excellent stress rupture strength and oxidation resistance under high-temperature exposure. These bars contain between 2-3% Molybdenum, 14-17% Chromium, 1-2% Iron, 0.2%-0.5% Manganese and the rest is made up of Nickel, which gives it outstanding protection against hydrochloric acid attacks at any temperature and concentration levels.

Hastelloy C-4 bars are popular due to their exceptional corrosion resistance in oxidizing and reducing environments. In particular, they have excellent resistance to pitting, stress corrosion cracking, and various organic acids. Its alloying elements include molybdenum and chromium, which give it superior strength against chloride-containing chloride-containing atmospheres and high temperatures (up to 1300°F). This makes it perfect for nuclear power plants, chemical processing equipment, oil production apparatus and pollution control technology.

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