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Stainless Steel Rods/Grinding Rods
Austenitic Stainless Steel
Martensitic Stainless Steel
Sintered Hardening Steel
Duplex Stainless Steel
High-Temperature Alloys
Aluminum Plate Series


详情描述
GH3030 steel plate

Ingredient Analysis
The performance of GH3030 originates from its meticulously designed chemical composition:
Nickel-based matrix: The alloy is primarily composed of nickel, ensuring thermal strength and high plasticity below 800°C, allowing it to perform well in high-temperature environments.
Chrome, Titanium, Aluminum: Elements such as Chrome, Titanium, and Aluminum in the alloy enhance its corrosion and oxidation resistance, suitable for various high-temperature conditions.
Additional alloy elements: Moderate additions of molybdenum, manganese, silicon, etc., have balanced the alloy's overall properties, enhancing its heat and cold working performance.
Application Fields
GH3030 demonstrates versatile application value in high-temperature engineering.
Turbine Engine Parts: Primarily used for manufacturing combustion chamber components for turbine engines operating below 800°C, ensuring engine reliability in high-temperature working environments.
Chemical Equipment and Accessories: GH3030, with its superior hot and cold working properties, is used in the manufacturing of various chemical equipment and accessories, meeting the requirements of high-temperature industrial environments.
The relationship between composition and application fields
The composition design of GH3030 fully considers the requirements of high-temperature engineering. The nickel matrix ensures performance at high temperatures, while the added corrosion-resistant elements expand its range of applications. Additionally, the clever matching of alloy elements guarantees its reliable performance under extreme conditions such as high temperatures and corrosion.
Performance and Process Characteristics
Melting temperature range: 1374-1420°C, ensuring non-failure in high-temperature environments.
Density: ρ=8.4 g/cm³, ensuring lightweight application for alloys.
Microstructure: After solution heat treatment, it forms a single-phase austenitic structure, exhibiting good thermal properties.
Process performance: Excellent malleability, suitable for various processing techniques, making it easy to handle during manufacturing.
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