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Aluminum Alloy 5052H32 Key Properties and Industrial Uses

2026-09-05

Tin tức công ty mới nhất về Aluminum Alloy 5052H32 Key Properties and Industrial Uses

In the realm of metal materials, aluminum alloy 5052-H32 (UNS A95052 / ISO AlMg2.5) stands out for its unique combination of excellent workability, good corrosion resistance, and moderate strength. This versatile material has demonstrated strong competitiveness across diverse industries including aerospace, automotive manufacturing, marine engineering, and consumer electronics.

Chemical Composition: The Foundation of Performance

The performance characteristics of 5052-H32 stem from its precisely balanced chemical composition. The alloy consists primarily of aluminum (Al) at 95.7% to 97.7%, providing its lightweight properties. Magnesium (Mg) content ranges from 2.2% to 2.8%, contributing significantly to strength enhancement and corrosion resistance.

Additional elements include chromium (Cr) at 0.15% to 0.35%, which improves strength and creep resistance. Strict limits are imposed on impurities: copper (Cu) ≤ 0.1%, iron (Fe) ≤ 0.4%, manganese (Mn) ≤ 0.1%, and zinc (Zn) ≤ 0.1%. Other individual impurities are capped at 0.05%, with total impurities not exceeding 0.15%.

Physical Properties: Lightweight and Thermally Efficient

5052-H32 exhibits typical aluminum alloy characteristics with several notable physical properties:

  • Density: Approximately 2.68 g/cm³ (0.0968 lb/in³), significantly lower than steel
  • Thermal Conductivity: 138 W/m·K (960 BTU-in/hr·ft²·°F) at 77°F (25°C)
  • Coefficient of Thermal Expansion: 23.8 µm/m-°C (13.2 µin/in-°F) at 68°F (20°C)
  • Specific Heat Capacity: Estimated at 0.88 J/g-°C (0.21 BTU/lb-°F)
  • Melting Range: 607°C to 649°C (1125°F to 1200°F)

Mechanical Performance: Strength and Durability

In the H32 temper (cold worked and stabilized), 5052-H32 achieves an optimal balance between strength and plasticity:

  • Ultimate Tensile Strength: 228 MPa (33,000 psi)
  • Tensile Yield Strength: 193 MPa (28,000 psi)
  • Elongation at Break: 12% (1.6 mm thickness) to 18% (12.7 mm diameter)
  • Modulus of Elasticity: 70.3 GPa (10,200 ksi)
  • Fatigue Strength: 117 MPa (17,000 psi) at 500 million cycles
  • Shear Strength: 138 MPa (20,000 psi)
  • Hardness: 60 Brinell, 83 Knoop, 68 Vickers

Electrical and Processing Characteristics

The alloy demonstrates:

  • Electrical Resistivity: 4.99 × 10⁻⁶ ohm-cm at 68°F (20°C)
  • Annealing Temperature: 343°C (650°F)
  • Hot-Working Temperature Range: 260°C to 510°C (500°F to 950°F)

Industrial Applications

5052-H32 serves critical functions across multiple sectors:

  • Aerospace: Interior structures and non-load-bearing components
  • Automotive: Body panels, fuel tanks, and piping systems
  • Marine Engineering: Hulls, decks, and offshore platform structures
  • Construction: Windows, doors, and decorative panels
  • Consumer Electronics: Laptop casings and smartphone frames
  • Industrial Equipment: Chemical storage tanks and heat exchangers

Performance Considerations

From an engineering perspective, 5052-H32 offers:

  • Superior cost-performance ratio compared to specialty alloys
  • Significant weight reduction potential for lightweight designs
  • Excellent cold workability for complex forming operations
  • Enhanced corrosion resistance in harsh environments
  • Balanced mechanical properties for structural applications

For critical engineering applications, verification with material suppliers is recommended to confirm specific batch properties and ensure compliance with design requirements.

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