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ALLOY800H/HT (Incoly800HT),Incoloy 800H (Alloy 800H, UNS N08810) Wire

Product Code : AL-Inco800H-NN-WI

Incoloy alloy is a range of superalloys produced by Special Metals Corporation. They are nickel-iron-chromium alloys that are used for applications that require high corrosion-resistant and high-temperature strength. Incoloy alloys are quite similar to Inconel alloys but their different composition makes some distinctions in their applications. Incoloy 800H is an iron-nickel-chromium alloy having the same basic composition as Incoloy 800, with significantly higher creep-rupture strength. The higher strength results from close control of carbon, aluminum, and titanium contents in conjunction with a high temp anneal. The 800H modification was to control carbon (0.05 to 0.10%) and grain size to (>ASTM 5) to optimize stress rupture properties. Incoloy 800H has further modifications to the combined titanium and aluminum levels (0.85 to 1.2%) to ensure optimum high-temperature properties. The alloy is dual-certified and combines the properties of both forms. The high nickel and chromium contents of Alloy800H/HT ensure excellent resistance to oxidation. The alloys are also very resistant to carburization, nitridation and oxidizing sulphur-bearing atmospheres. The protective oxide film which is formed is adherent in both static and cyclic conditions of heating and cooling, and resistance to carburization is enhanced when a thin film of oxide is formed on the alloy through pre-oxidation prior to service.

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Product Product Code Purity Size Contact Us
ALLOY800H Wire AL-Inco800H-NN-WI Customized Customized

Product Information

Incoloy alloy is a range of superalloys produced by Special Metals Corporation. They are nickel-iron-chromium alloys that are used for applications that require high corrosion-resistant and high-temperature strength. Incoloy alloys are quite similar to Inconel alloys but their different composition makes some distinctions in their applications. Incoloy 800H is an iron-nickel-chromium alloy having the same basic composition as Incoloy 800, with significantly higher creep-rupture strength. The higher strength results from close control of carbon, aluminum, and titanium contents in conjunction with a high temp anneal. The 800H modification was to control carbon (0.05 to 0.10%) and grain size to (>ASTM 5) to optimize stress rupture properties. Incoloy 800H has further modifications to the combined titanium and aluminum levels (0.85 to 1.2%) to ensure optimum high-temperature properties. The alloy is dual-certified and combines the properties of both forms. The high nickel and chromium contents of Alloy800H/HT ensure excellent resistance to oxidation. The alloys are also very resistant to carburization, nitridation and oxidizing sulphur-bearing atmospheres. The protective oxide film which is formed is adherent in both static and cyclic conditions of heating and cooling, and resistance to carburization is enhanced when a thin film of oxide is formed on the alloy through pre-oxidation prior to service.


Synonyms

ALLOY800H Wire Specification

Size:customized

Purity: customized

Per your request or drawing

We can customized as required

International Standard Comparison Chart


MaterialRound BarsPlates/SheetsPipe/Tube
SeamlessWelded
ASTMUNS
    N08810
UNS
    N08811
B408B409B407B163
ASMESB408SB409SB407SB163
JISNCF800HNCF800HTH4553G4901H4552
DIN1.48761.4959174601746017459


Mechanical properties


Yield   Strength(Mpa)Tensile   Strength(Mpa)Elongation(%)Hardness(HB)
ASTM Min Value17045030
Typical Values   at RT24555940140

Chemical composition


NiCrFeCMnSiCuPSAlTiAl+Ti
min30.019.0bal.0.060.50.2


0.300.30
max32.022.00.101.50.70.50.0150.0100.600.601.2

We can customized as required

Applications of Incoloy 800H Wire

Due to high strength during long periods of service and resistance to carburization and nitridation, ALLOY800Hhave found many applications in steam/hydrocarbon reforming for components such as: pigtails, headers/collectors/manifolds, transfer piping, catalyst tubes (in lowpressure processes) and quench-system piping.

 

Typical applications are:

• ethylene pyrolysis tubing in convection and radiant sections – resistance to carburization and good mechanical properties

• ethylene dichloride cracking tubes ? resistance to carburization and to dry hydrogen chloride and chlorine

• cracking tubes used in the production of acetic anhydride and ketene – high strength, resistance to both carburization and the formation of sigma phase

• components, e.g. heat exchangers, piping systems etc., in coal conversion plants

• steam generator tubing in helium cooled, high temperature reactor systems ? high strength, resistance to helium and to steam


Packing of Incoloy 800H Wire

Standard Packing:

Typical bulk packaging includes palletized plastic 5 gallon/25 kg. pails, fiber and steel drums to 1 ton super sacks in full container (FCL) or truck load (T/L) quantities. Research and sample quantities and hygroscopic, oxidizing or other air sensitive materials may be packaged under argon or vacuum. Solutions are packaged in polypropylene, plastic or glass jars up to palletized 440 gallon liquid totes Special package is available on request.

ATTs’Incoloy 800H Wire is carefully handled to minimize damage during storage and transportation and to preserve the quality of our products in their original condition.

Chemical Identifiers

Linear FormulaNi Cr Fe
MDL NumberMFCD01741927
EC No.N/A
Pubchem CID11571850
IUPAC Namechromium;   iron; nickel
SMILES[Cr].[Fe].[Ni]
InchI IdentifierInChI=1S/Cr.Fe.Ni
InchI KeyBIJOYKCOMBZXAE-UHFFFAOYSA-N

Incoloy refers to a range of superalloys now produced by the Special Metals Corporation (SMC) group of companies and created with a trademark by the Inco company in 1952. Originally Inco protected these alloys by patent. In 2000, the SMC published a 61-page document entitled "High-Performance Alloys for Resistance to Aqueous Corrosion" highlighting Incoloy, as well as Monel and Inconel products, and their use in fluid environments such as sulfuric acid, hydrochloric acid, hydrofluoric acid, phosphoric acid, nitric acid, other acids as well as freshwater environments.

Incoloy products are mostly chromium-based and mostly nickel-based, and designed for corrosion resistance as well as strength at high temperatures.

Incoloy alloys belong to the category of super austenitic stainless steels. One advantage is that Incoloy alloys do not have to be heat treated after welding to restore the corrosion resistance.

There are specific alloys for resistance to particular chemical attacks. For example, alloy 020 is designed to be resistant to sulphuric acid, and the DS Incoloy is to be used in heat-treating furnaces with reactive atmospheres and many heat cycles.

Incoloy 020 "exhibits excellent corrosion resistance in chemical environments that contain sulphuric acid, chlorides, phosphoric acid and nitric acid."

Incoloy 028 "is resistant to both acids and salts. The copper content makes it resistant to sulfuric acid."

Incoloy 330 "exhibits good strength at high temperatures and good resistance to oxidation and reduction environments."

Incoloy 800 "is capable of remaining stable and maintaining its austenitic structure even after long time exposures to high temperatures".

Incoloy 803 is designed for sulphur-rich environments.

Incoloy 825 is approved for use in heat exchanger tubes by ASTM B163, and approved for pressure vessel operating temperatures up to 525°C or up to 538°C. It "offers exceptional resistance to corrosion by sulphuric acid and phosphoric acid".

Incoloy 908 "has high tensile strength, fatigue crack growth resistance, good weldability, metallurgical stability and ductility, high fracture and impact toughness, [and] low coefficient of thermal expansion... [Its] resistance to oxygen embrittlement... allows hot fabrication without cracking."

Incoloy 907 "has high strength and low thermal expansion coefficient at temperatures up to 800°F."

Incoloy 945X is designed for chlorine-rich environments. Molybdenum adds crevice corrosion and pitting resistance to Incoloy 945.

Incoloy MA956 is made by a mechanical alloying rather than a bulk-melting process; it was studied for space reactor components in the JIMO project. It is difficult to weld and needs to be heated to 200C for forming processes. A special friction welding process has been developed for it.

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