Hastelloy X Plate
This material is globally recognized for its exceptional high-temperature strength,excellent fabricability,and outstanding oxidation resistance at temperatures up to 2200°F (1200°C).
Key Properties & Technical Specifications
- High-Temperature Performance:
Unlike traditional stainless steels,it retains high tensile,yield,and creep-rupture strength under extreme heat. - Environmental Resistance:
It is highly resistant to oxidizing,reducing,and neutral atmospheres,as well as stress-corrosion cracking,carburization,and nitriding. - Fabrication & Welding:
It is readily weldable and formable by both manual and automated methods,keeping its ductile traits even after thousands of hours of high-temperature service.

Applications of Hastelloy X Plate
- Jet engines
- Combustion chambers
- Transition ducts
- Afterburner liners
- Turbine exhaust
- Heating elements
- Chemical reactors
- Petrochemical retorts
- Catalyst grids
- Exhaust manifolds
Chemical Composition of Hastelloy X Plate
| Ni | Cr | Fe | Mo | Co | C | C | Mn | Si | Al, Ti, B, P, S |
|---|---|---|---|---|---|---|---|---|---|
| Equilíbrio | 20.5 – 23.0 | 17.0 – 20.0 | 8,0 – 10,0 | 0.50 – 2.50 | 0.20 – 1.0 | 0,05 – 0,15 | ≤ 1,0 | ≤ 1,0 | < 0.50 each |
Key Metallurgical Characteristics
- Solid-Solution Strengthening:
Hastelloy X does not rely on age-hardening or phase precipitation (like Gamma Prime in other superalloys) to gain strength.The large atomic radii of Molybdenum and Tungsten distort the Nickel matrix,structurally locking it against high-stress deformation up to 2200°F (1200°C). - Exceptional Carburization & Nitriding Resistance:
The high Chromium and Nickel content prevents carbon and nitrogen atoms from diffusing into the plate surface in furnace environments.This blocks internal structural embrittlement. - Post-Exposure Ductility:
After being exposed to critical soaking zones of 1200°F to 1600°F (650°C to 870°C) for over 16,000 continuous hours,the plate maintains excellent residual toughness and ductility.
Critical Processing Advice
- Forming & Workability:
Thanks to the high nickel percentage,the plate boasts exceptional cold-working capabilities.However,it work-hardens rapidly compared to carbon steels,requiring high-powered equipment. - Welding Parameters:
The chemical mix yields excellent weldability with a low susceptibility to hot cracking.It can be welded via TIG,MIG,or resistance welding methods using matching ERNiCrMo-2 filler metal.
Physical Properties of the Plate
- Density:
8,22 g/cm3 (0.297 lb/in3) - Melting Range:
2300°F – 2470°F (1260°C – 1355°C) - Magnetic Permeability:
Completely non-magnetic in the annealed condition.
Hastelloy X Plate Standards & Equivalent Designations
| Hastelloy X / Alloy X (High-Temperature Superalloy) | |||||
|---|---|---|---|---|---|
| Padrão / Sistema | Designação Equivalente | Formulário do produto | GB (China) | GJB (Military) | GOST (Russia) |
| Padrão chinês | GH3536 (GH536 / GH36) | Plates, Sheets & Strips | GB/T 15007 | GJB 3317A | GOST 24982 |
| Russian / CIS Standard | KhN60VT / HN60VT (ХН60ВТ / ЭИ868) | Bars & Rods | GB/T 14994 | GJB 3165 | GOST 5632 |
| ISO Chemical Name | NiCr22Fe18Mo / NiCr21Fe18Mo9 | Seamless Pipes & Tubes | GB/T 15008 | GJB 2297 | GOST 14162 |
| UNS System | UNS N06002 | Welded Pipes & Tubes | – | – | – |
| Aviation / Aerospace | AMS 5536 / Werkstoff 2.4665 | Forgings & Rings | GB/T 14993 | GJB 3167 | – |
| European / ASTM Designation | ASTM B435 / EN NiCr22Fe18Mo | ||||
| Generic Trade Name | Hastelloy X, Alloy X, Inconel HX, Nicrofer 4722 | ||||
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Mechanical Properties of Hastelloy X Plate
Propriedades mecânicas em temperatura ambiente
| Propriedade mecânica | Typical Metric Value | Typical Imperial Value |
|---|---|---|
| Ultimate Tensile Strength | 785 MPa | 114,000 psi |
| Resistência ao escoamento (0,2% Offset) | 360 MPa | 52,000 psi |
| Elongation at Break (in 2 inches) | 43% | 43% |
| Hardness (Rockwell B) | 88 HRB | 88 HRB |
High-Temperature Tensile Properties
As a solid-solution strengthened superalloy,Hastelloy X is explicitly engineered to minimize thermal softening.The following data shows how its mechanical strength evolves under extreme heat:
- At 1200℉(650℃):
Yield Strength remains high at approximately 260 MPa,with an Ultimate Tensile Strength of 540 MPa. - At 1600℉(870℃):
Yield Strength holds at around 180 MPa,and UTS is 255 MPa. - At 2000℉(1095℃):
Even near its melting point,the plate retains a measurable UTS of about 60 MPa,resisting sudden catastrophic failure.
Creep and Stress-Rupture Behavior
In long-term engineering applications like gas turbines,creep (gradual deformation under constant thermal stress) is the primary structural threat.Hastelloy X plates demonstrate exceptional creep-rupture strength:
- 1500℉(815℃):A constant stress of 66 MPa is required to cause structural rupture at exactly 1,000 hours.
- 1800℉(980℃):The alloy can withstand a stress of 15 MPa for 1,000 hours before failure occurs.
Key Metallurgical & Mechanical Phenomena
- Excellent Thermal Fatigue Resistance:
The alloy withstands repeated,rapid heating and cooling cycles without thermal cracking or warping.This makes it ideal for gas turbine combustor liners. - Exceptional Post-Aging Ductility:
Unlike many cobalt- or iron-base superalloys that become extremely brittle after prolonged heating,Hastelloy X retains significant impact toughness and room-temperature ductility even after 10,000+ hours of service in the 1200℉ to 1600℉ range. - Módulo de elasticidade:
The Young’s Modulus drops from 205 MPa at room temperature to approximately 143 GPa at 1600℉,demonstrating its predictable, elastic load-bearing limits.
Fabrication Impacts on Mechanical Properties
- Reabilitação por esforço:
Because of its high nickel and chromium matrix,Hastelloy X work-hardens exceptionally fast during cold forming.Heavy-duty machine tools and steady feed rates are necessary to prevent localized brittleness. - Post-Weld Properties:
Welded joints utilizing matching filler metal (ERNiCrMo-2) retain up to 90 – 95% of the original base metal’s tensile strength without mandatory post-weld heat treatment,though a full solution anneal is recommended for maximum creep resistance.
Our Advantages in Manufacturing Hastelloy X Plate
Advanced Melting Technology
Precision Gauge Control
Optimized Heat Treatment
Rigorous Quality Assurance
FAQs About Hastelloy X Plate
Hastelloy X is a high-temperature superalloy designed to resist extreme thermal oxidation,carburization,and thermal shock in gas turbines and furnaces.
Hastelloy C276 is a corrosion-resistant alloy designed primarily to withstand aggressive aqueous chemicals,wet chlorine gas,acids,and pitting at low to moderate temperatures.
Sim.Due to its high nickel content,Hastelloy X possesses excellent ductility and can be formed using standard cold-working methods like bending, rolling,and drawing.However,because it work-hardens very rapidly,higher forming forces are required compared to standard carbon steel,and intermediate solution annealing may be necessary for severe deformations.
Contate-nos
- RM901 No.22 Tangjiaqiao Road Wenzhou China
- +86 577 8551 1171
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- https://www.kaysuns.com/