Incoloy 800HT Forgings

Nestled in the heart of Kinshasa, Sadiki Metals stands as a trusted partner for industry, specializing in the production of robust Incoloy 800HT forgings. We understand that demanding environments require materials of exceptional integrity, which is why our focus is on delivering components that offer unparalleled reliability. Our commitment goes beyond supply; we provide durable solutions forged to meet the specific challenges faced by sectors across Congo and beyond, ensuring your critical operations proceed with unwavering confidence.

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Incoloy 800HT Hot Forging

Incoloy 800HT Open Die Forging

Incoloy 800HT Closed Die Forging

Table of Contents

What is Incoloy 800HT Forgings?

The strength of Incoloy 800HT lies in its sophisticated composition, primarily nickel, chromium, and iron, carefully balanced with titanium and aluminum. This specific recipe gives the alloy its remarkable mechanical properties, including high tensile strength and outstanding creep-rupture resistance, especially under extreme temperatures. It’s this ability to maintain its structural integrity and resist oxidation even when the heat is on that makes it such a valuable material for the most challenging applications.

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Forgings

Incoloy 800HT Forgings Specification

Specifications ASTM B564 / ASME SB564, AMS 5766

Flat bar blocks up to 27″ width and 15,000 lbs.

Cylinders and sleeves up to 50″ maximum O.D. and 65″ maximum length

Discs and hubs up to 50″ diameter and 20,000 lbs.

Rolled, hand forged or mandrel forged rings up to 84″ maximum O.D. and 40″ maximum length

Rounds, shafts and step shafts up to 144″ maximum length and 20,000 lbs.

Chemical Compositions of Incoloy 800HT Forgings

Grade Ni Fe Cr Cu Ti Al C Mn S Si
Alloy 800HT 30.0-35.0 39.5 min 19.0-23.0 .75 max .25-.60 .85-1.20 .06-.10 max 1.5 max .015 max 1.0 max

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Incoloy 800HT Forgings Mechanical Properties

Density Melting Point Tensile Strength Yield Strength (0.2%Offset) Elongation
7.94 g/cm3 1350-1400 ℃ Psi – 75,000 , MPa -520 Psi – 30,000 , MPa – 205 30 – 35 %

Incoloy 800HT Forgings Physical Properties

Density 0.287 lb/in3 / 7.94 g/cm3
Melting Point 2475 – 2525 °F/ 1357 – 1385 °C
Specific Heat @ 70°F 0.11 Btu/lb•°F
Permeability @ 70°F Annealed 1.014 (200 Oersted)
Curie Temperature -115 °C/ -175 °F
Elastic Modulus 28.50 X 106 psi
Electrical Resistivity @ 70°F 595 ohm•circ mil/ft
Annealling Incoloy 800 983 – 1038 °C / 1800 – 1900 °F
Annealling Incoloy 800H / Ht 1147 – 1177°C / 2100 – 2150 °F
Quench Rapid Air / Water

Incoloy 800HT Forgings Equivalent Grades

STANDARD UNS WNR. AFNOR EN JIS BS GOST OR
Incoloy 800HT N08811 1.4959 X8NiCrAlTi32-21 NCF 800HT NA 15(HT) ЭИ670 XH32T

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Incoloy 800HT Forgings Types

DIN 1.4959 Incoloy Upset Forging
Incoloy 800HT Impression Die Drop Forging
Incoloy Alloy 800HT Press Forging
Incoloy 800HT Machined Hot Forgings
Incoloy 800HT Compression Forging
ASME SB564 Incoloy 800HT Forgings

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Frequently Asked Questions (FAQ)

To determine if Incoloy 800HT Forgings meet your specific needs, assess their high-temperature resistance, oxidation, and carburization properties against your application requirements. Consulting with a supplier for detailed material specifications and testing options can also ensure compatibility.

The ideal temperature range for forging Incoloy 800HT is between 2100°F (1149°C) and 2300°F (1260°C). This range ensures optimal workability, mechanical properties, and maintains the material's strength and resistance to oxidation.

Temperature control is crucial for maintaining the desired mechanical properties of forged Incoloy 800HT, as overheating or insufficient heating can lead to reduced strength and ductility. Proper temperature management ensures optimal grain structure, resistance to oxidation, and overall performance in high-temperature applications.

Incoloy 800HT Forgings Uses

The exceptional heat resistance of our Incoloy 800HT forgings makes them indispensable in sectors where failure is not an option. You’ll find them at the core of industrial heating systems, within the demanding environments of chemical processing plants, and deep in the earth with oil and gas extraction equipment. They are essential for constructing furnace components, heat exchangers, and reactor cores, performing reliably where ordinary materials would quickly succumb to the intense thermal and corrosive conditions.

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