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GH36 Alloy is a nickel-based superalloy with high strength and excellent oxidation resistance at elevated temperatures

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GH36 Alloy is a nickel-based superalloy with high strength and excellent oxidation resistance at elevated temperatures

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Brand Name : Zhonggong Special Metallurgy

Model Number : GH36 Alloy

Place of Origin : China

MOQ : 100KG

Price : Price is negotiated based on the required specifications and quantity

Payment Terms : Payment Terms: Mainly T/T.. L/C, D/A, D/P,

Supply Ability : 5000 tons per month

Delivery Time : 5-8 working days, depending on the parameters required for negotiation

Packaging Details : Standard export packaging, or packaging as required

Density : ~8.9 g/cm³ (0.321 lb/in³)

Melting Point : ~1350-1450°C (2460-2640°F)

Tensile Strength : ~850 MPa (123 ksi)

Yield Strength : ~700 MPa (102 ksi)

Elongation : ~15%

Thermal Conductivity : ~14 W/m·K (8.4 BTU·in/hr·ft²·°F)

Modulus of Elasticity : ~210 GPa (30 x 10³ ksi)

Corrosion Resistance : Good oxidation and corrosion resistance at high temperatures

Applications : Aerospace, gas turbines, and high-temperature structural components

Certification : ISO Certificate

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GH36 Alloy is a high-performance nickel-based superalloy renowned for its exceptional mechanical properties and resistance to high-temperature environments. It is specifically designed to offer high strength and durability in demanding applications such as aerospace and industrial machinery.

Key Properties and Features:

  • High-Temperature Strength: GH36 Alloy maintains robust mechanical properties, including high tensile strength (~850 MPa or 123 ksi) and yield strength (~700 MPa or 102 ksi), at elevated temperatures up to approximately 1350-1450°C (2460-2640°F). This makes it suitable for components subjected to intense thermal stresses.

  • Oxidation and Corrosion Resistance: The alloy is highly resistant to oxidation and high-temperature corrosion, ensuring longevity and performance in harsh environments. This property is crucial for applications in gas turbines, jet engines, and other high-temperature systems where resistance to oxidative degradation is essential.

  • Mechanical Properties: GH36 exhibits good elongation (~15%), contributing to its ability to withstand mechanical stresses and deformation without failure. This feature is important for structural integrity and reliability in critical applications.

  • Thermal Conductivity: With a thermal conductivity of approximately 14 W/m·K (10 BTU·in/hr·ft²·°F), GH36 efficiently manages heat dissipation, which is beneficial for maintaining thermal stability in high-performance applications.

  • Applications: Commonly used in aerospace components, high-temperature gas turbines, and other industrial applications where high strength, oxidation resistance, and thermal stability are required. GH36's combination of properties makes it a preferred choice for environments demanding exceptional performance and reliability.

GH36 Alloy's high strength and resistance to extreme conditions make it a trusted material for advanced engineering applications, providing durability and reliability in critical components exposed to severe environments.

Here’s a composition table for GH36 Alloy:

Element Composition Range (%)
Nickel (Ni) 60.0 - 65.0
Chromium (Cr) 15.0 - 20.0
Cobalt (Co) 5.0 - 10.0
Molybdenum (Mo) 2.0 - 4.0
Iron (Fe) ≤ 6.0
Titanium (Ti) 1.0 - 2.0
Aluminum (Al) 1.0 - 2.0
Carbon (C) ≤ 0.10
Manganese (Mn) ≤ 0.5
Silicon (Si) ≤ 0.5
Sulfur (S) ≤ 0.01

These values provide general guidelines. For precise specifications or detailed applications, consult specific standards or suppliers.

GH36 Alloy is a nickel-based superalloy with high strength and excellent oxidation resistance at elevated temperatures


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high strength nickel based superalloy

      
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