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Monel Alloy Bar
The chemical composition of the alloy is mainly composed of 30% Cu and 65% Ni with a small amount of Fe (1%-2%). Due to the difference in chemical composition, it can have a variety of alloy grades, but there is no significant difference in corrosion resistance between them. Monel400 alloy is more resistant to corrosion by reducing media than pure nickel, and more resistant to corrosion by oxidative media than pure copper.
Monel Alloy Pipe
The permeability of alloy 404 (measured at 27°F and a field strength of 0.5 Oersted) will not exceed 1.1. Since its low magnetic permeability is not significantly affected by machining and fabrication, this alloy is particularly suitable for electronic parts. In addition, most of the strength of the 404 alloy remains unchanged at the degassing temperature. Its thermal expansion characteristics are very close to those of many other alloys, allowing negligible deformation when firing clad metal tubes.
Monel Alloy Coil
MONEL K-500 alloy has corrosion resistance comparable to 400, but has higher mechanical strength and hardness. Has good thermal corrosion resistance and long-term tissue stability. Monel K500 alloy has the same corrosion resistance as Monel 400 in addition to its excellent mechanical properties such as high strength, corrosion resistance and non-magnetic properties.
Monel Alloy Plate
The chemical composition of the alloy is mainly composed of 30% Cu and 65% Ni with a small amount of Fe (1%-2%). Due to the difference in chemical composition, it can have a variety of alloy grades, but there is no significant difference in corrosion resistance between them. Monel401 alloy is more resistant to corrosion by reducing media than pure nickel, and more resistant to corrosion by oxidative media than pure copper.
Inconel Alloy Bar
Inconel 600 is both corrosion and high temperature resistant, strong and easy to process. Resists chloride ion stress corrosion cracking, sulfide and oxidizing media in high temperature environments. It has good corrosion resistance in organic acids such as formic acid, acetic acid and stearic acid, and moderate corrosion resistance in inorganic acids. Excellent corrosion resistance in high-purity water used in primary and secondary cycles in nuclear reactors.
Inconel Alloy Pipe
Inconel X-750 alloy is mainly a nickel-based superalloy with γ"[Ni3(Al, Ti, Nb)] phase for ageing strengthening. It has good corrosion resistance and oxidation resistance below 980 ℃, and has high corrosion resistance below 800 ℃. It has good relaxation resistance below 540°C, as well as good formability and welding performance. The alloy is mainly used for the manufacture of aero-engines that work below 800°C and require high strength.
Inconel Alloy Coil
The alloy has excellent corrosion resistance and creep properties in hot corrosion areas such as sulfurized environments, especially in oxidizing and carbonizing environments up to 1100°C cycles. These corrosion resistances combined with excellent mechanical properties make this alloy particularly suitable for high temperature applications. Good short-term and long-term mechanical properties at high temperatures up to 1100°C. Excellent carburization resistance and good weldability at high temperatures up to 1100°C.
Inconel Alloy Plate
Incoloy Alloy Bar
Incoloy 825 is a titanium-stabilized fully austenitic nickel-iron-chromium alloy with additions of copper and molybdenum. Incoloy 825 is a general purpose engineering alloy that is resistant to acid and alkali metal corrosion in both oxidizing and reducing environments. The high nickel content makes the alloy effective against stress corrosion cracking.
Incoloy Alloy Pipe
Incoloy 925 is a nickel-iron-chromium alloy with additions of molybdenum, copper, titanium, and aluminum. It offers excellent corrosion resistance in a wide range of environments, including sulfide and chloride-containing media. In addition to its corrosion resistance, Incoloy 925 exhibits high strength, good fatigue resistance, and exceptional toughness at both room and elevated temperatures. Its combination of properties makes it suitable for various applications in industries such as oil and gas, chemical processing, and marine engineering, where resistance to corrosion and mechanical integrity are critical requirements.
Incoloy Alloy Coil
The alloy has improved metallurgical stability compared to alloys in the 18% nickel range. Flue gas desulfurization units for phosphoric acid production, evaporators, heat exchangers, filters and mixers, sulfuric acid conveying units, condensers, fire suppression systems, seawater filtration systems, hydraulic and supply piping systems in the offshore industry, pulp systems, Salt evaporative condenser, power plant polluted cooling water pipeline system, reverse osmosis seawater desalination device, corrosive chemical transportation storage tank, halogen acid catalytic organic matter production equipment, etc.
Incoloy Alloy Plate
Aircraft and industrial gas turbines are subject to high levels of heat and pressure with temperatures up to 700°C in components such as turbine wheels and blades, frames and afterburner components. It is also used in fasteners for car engines.
Hastelloy Alloy Rod
Hastelloy G35 finds application in various industries where corrosion resistance and high-temperature performance are crucial.
Hastelloy Alloy Pipe
Hastelloy N finds application in various industries where corrosion resistance and high-temperature performance are essential.
Hastelloy Alloy Coil
Hastelloy S finds extensive application across industries requiring exceptional corrosion resistance and high-temperature performance. Commonly used in chemical processing, petrochemical, and power generation industries, it is employed in reactors, heat exchangers, and piping systems exposed to aggressive chemicals and elevated temperatures.
Hastelloy Alloy Plate
Hastelloy X is extensively used in high-temperature applications such as gas and aircraft turbine engines, industrial furnaces, and aerospace components due to its exceptional strength and oxidation resistance. Additionally, it finds utility in heat treatment fixtures, petrochemical equipment, and nuclear reactor components, showcasing its versatility across various industries where reliability in extreme conditions is paramount.
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