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Hastelloy C276 Bright Bar with Oxidation Resistance and Polished Surface for Custom Cutting Applications

Сертификация ISO, ASTM, GB, DIN
Количество мин заказа 20 кг
Подробная информация о продукте
Модель №. C276 Форма Круглый
Техника Горячекатаный Обработка поверхности Яркий
Длина резка по заказу Процесс резка, полировка
Диаметр 5 - 350 мм Варианты поверхности яркий, черный
Содержание никеля Баланс содержание хромия 14,5 - 16,5%
Содержание молибдена 15,0 - 17,0% Предел прочности ≥690 МПа
Предел текучести ≥ 275 МПа Удлинение ≥40%
Температура оксидации До 1100°C
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Oxidation Resistance Hastelloy C276 Bar

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Polished Surface Nickel Alloy C276 Bar

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Custom Cutting Hastelloy C276 Solid Bar

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Характер продукции
Hastelloy C276 Bright Solid Bar
High-performance nickel-based alloy with oxidation resistance and polished surface for aerospace and petrochemical applications
Product Specifications
Diameter 5 - 350mm
Length Custom cutting as requested
Surface Bright, Black
Brand DELTA
Service Cutting, Polishing
MOQ 2 Kgs
Other Types Bar, strip, coil, pipe, sheet, plate, wire, etc.
Packing Wooden box
Loading Port Shanghai Port
Price Term EXW, FOB, CIF, CFR
Delivery Time Within 12 days
Product Overview
Hastelloy C276 bright solid bar is a high-performance nickel-based alloy product with outstanding properties. In the aerospace industry, components need to withstand extreme conditions such as high temperatures, high pressures, and strong corrosive media during flight. The excellent oxidation resistance ensures stability and safety of aerospace parts, reducing the risk of component failure caused by oxidation and corrosion.
In the petrochemical industry, where equipment is often exposed to various corrosive chemicals during oil and gas exploration, refining, and chemical production processes, the polished surface provides better corrosion resistance and reduces fluid resistance in pipelines, improving production efficiency.
Chemical Composition
Main Elements
  • Nickel (Ni): Base element providing excellent basic corrosion resistance and mechanical properties, ensuring stability at high temperatures
  • Chromium (Cr): 14.5% - 16.5% - Enhances corrosion resistance in oxidizing environments by forming a stable chromium-oxide film
  • Molybdenum (Mo): 15.0% - 17.0% - Improves corrosion resistance in reducing environments and enhances resistance to strong acids
Trace Elements
  • Iron (Fe): 4.0% - 7.0% - Added to reduce costs while maintaining excellent corrosion-resistant properties
  • Tungsten (W): 3.0% - 4.5% - Enhances corrosion resistance in chloride environments and increases strength and hardness
Chemical Composition Table
Element Content Range (%)
Nickel (Ni) Balance
Chromium (Cr) 14.5 - 16.5
Molybdenum (Mo) 15.0 - 17.0
Iron (Fe) 4.0 - 7.0
Tungsten (W) 3.0 - 4.5
Carbon (C) ≤0.08
Manganese (Mn) ≤1.0
Silicon (Si) ≤1.0
Phosphorus (P) ≤0.040
Mechanical Properties
Key Properties
  • Tensile Strength: ≥690 MPa - Withstands significant pulling forces without breaking
  • Yield Strength: ≥275 MPa - Resists excessive deformation during cold-working operations
  • Elongation: ≥40% - Excellent plasticity and toughness for complex geometries
Mechanical Properties Table
Mechanical Property Value (Annealed Condition)
Tensile Strength ≥690 MPa
Yield Strength ≥275 MPa
Elongation ≥40%
Standards Compliance
Standard Organization Standard Number Application Area
ASTM B574 Chemical composition and mechanical property control for nickel- and cobalt-based alloy seamless pipe, fittings, and flanges
ASTM B564 Quality control for forged or rolled nickel- and cobalt-based alloy bars and shapes
ASME SA-299 Requirements for Hastelloy C276 in pressure vessel applications
DIN/EN 2.4819 Comprehensive quality control in the European market
Equivalent Grades
Country/Region Equivalent Grade
United States UNS N10276
Germany W.Nr.2.4617 (NiMo16Cr15W)
France NC17D
Oxidation Resistance
Hastelloy C276 demonstrates excellent oxidation resistance through the formation of a dense chromium-oxide film that acts as a physical barrier against further oxygen diffusion. At 800°C in air-rich environments, weight gain due to oxidation is only about 0.01 g/cm² after 100 hours of continuous exposure.
This property ensures reliable performance in aerospace turbine engine parts operating at temperatures up to 900°C and in petrochemical high-temperature reactors, maintaining structural integrity and reducing maintenance requirements.
Polished Surface Benefits
Surface Treatment Processes
  • Mechanical Polishing: Uses abrasive materials and polishing wheels for general surface improvement
  • Electrolytic Polishing: Produces uniform, mirror-like finish without mechanical stresses
  • Chemical Polishing: Uses chemical solutions for complex geometries and moderate polish
Key Advantages
  • Enhanced Corrosion Resistance: Smooth surface reduces sites for corrosive substance accumulation
  • Improved Aesthetic Appeal: Professional appearance for visible components
  • Reduced Impurity Adhesion: Minimizes particle accumulation in pipelines and engine components
Industry Applications
Aerospace Applications
  • Turbine Engine Components: Withstands high rotational speeds and temperature gas flows up to 1000°C
  • Combustion Chamber Liners: Resists intense heat and corrosive combustion products
  • Exhaust Systems: Maintains structural integrity during thermal cycling and high-temperature exhaust gases
Petrochemical Applications
  • Pipelines: Resists corrosive fluids including sulfur-containing crude oil and chemical reagents
  • Valves: Withstands aggressive chemical environments in valve bodies, stems, and seats
  • Reactors: Maintains structural integrity under high-temperature and high-pressure chemical reactions
Conclusion
Hastelloy C276 bright solid bar offers a unique combination of properties including outstanding corrosion resistance, high-temperature strength, and excellent mechanical properties. Its adherence to international standards and versatile applications in aerospace and petrochemical industries make it a reliable choice for demanding environments where performance, safety, and longevity are critical.