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High Strength Marine Grade Aluminum Plate 5083 For Ship Hull Plate

High Strength Marine Grade Aluminum Plate 5083 For Ship Hull Plate

Nom De La Marque: JERO
Numéro De Modèle: Je vous en prie.
Quantité Minimale De Commande: 8 tonnes
Prix: 2800-3200USD/TON
Conditions De Paiement: T/T, Western Union, MoneyGram, L/C
Capacité D'approvisionnement: 3300 TONNES PAR MOIS
Informations détaillées
Lieu d'origine:
Chine
Certification:
ABS CCS BV DNV LR IRIS IATF 16949
Taper:
Plaque d'aluminium 5083
Alliage:
5083
largeur:
800-4300 mm
Longueur:
1000 mm-38000 mm
Application:
Tôle de coque
Conditions commerciales:
FOB, EXW, CFR, CIF ETC
Détails d'emballage:
Packages d'exportation standard
Capacité d'approvisionnement:
3300 TONNES PAR MOIS
Mettre en évidence:

High Strength Aluminum Plate 5083

,

Marine Grade Aluminum Plate 5083

,

Marine Grade 5083 Aluminium Plate

Description du produit

 

 

High Strength Marine Grade 5083 Aluminum Alloy For Ship Hull Plate

 

 

5083 aluminum remains a top choice for ship hulls due to its marine-grade durability, weldability,

and lightweight properties. 

 

 

Typical Thickness

 

 

♦ Thin plates: 3–6 mm (small boats, non-critical areas).

 

♦ Medium plates: 6–12 mm (most commercial vessels, yachts).

 

♦ Thick plates: 12–25 mm (large ships, high-stress zones like keels).

 

 

Typical Tempers

 

 

H116/H321:

 

 

    H116: Optimized for stress corrosion resistance (ideal for marine environments).

 

    H321: Stabilized after hot rolling, balances strength and corrosion resistance.

 

 

O (Annealed): Superior formability but lower strength; requires post-weld heat treatment.

 

High Strength Marine Grade Aluminum Plate 5083 For Ship Hull Plate 0

 

 

Physical properties for 5083 aluminum alloy 

 

 

Property Value
Density 2650 kg/m3
Melting Point 570°C
Modulus of Elasticity 72 GPa
Electrical Resistivity 0.58 x 10-6 Ω.m
Thermal Conductivity 121 W/m.K
Thermal Expansion 25 x 10-6/K

 

 

Key Advantages

 

 

♦ Superior Cryogenic Performance:

 

  Retains high toughness at liquid hydrogen (-253°C) and oxygen (-183°C) temperatures without

  embrittlement.

 

 

♦ Fuel Compatibility:

 

  Resistant to aviation fuels (e.g., RP-1), hydrazine, and oxidizers (e.g., LOX).

 

 

♦ Low-Temperature Toughness: 

 

  No brittle fracture risk in Arctic/polar applications.

 

 

♦ Weldability:

 

   Compatible with TIG, laser, and friction stir welding (FSW), with weld joint efficiency ≥90%.

 

♦ Fatigue Resistance:

 

   Low crack propagation rate under cyclic loading, ideal for reusable spacecraft (e.g., rockets).