5083 H116 aluminiumsplate av marinekvalitet gir enestående korrosjonsbestandighet i sjøvann, høyt styrke-til-vekt-forhold, og utmerket sveisbarhet for marine og offshore strukturer.
5083 H116 marine grade aluminium sheet stands as the definitive material for saltwater structural applications, combining the highest strength-to-weight ratio among non-heat-treatable alloys with exceptional corrosion resistance and cryogenic toughness.
This Al-Mg-Mn-Cr alloy delivers 305–385 MPa ultimate tensile strength while maintaining weldability and guaranteed immunity to intergranular corrosion through proprietary stabilization heat treatment.
The H116 temper specifically addresses the sensitization vulnerability inherent in high-magnesium aluminium alloys, controlling β-phase (Al₈Mg₅) precipitation to discrete, non-continuous morphologies that eliminate galvanic corrosion cells.
Følgelig, 5083 H116 achieves over 10,000 hours exposure in ASTM G85 salt spray without pitting, serves in LNG containment systems at -162°C without embrittlement, and carries classification society certifications from Lloyd’s Register, DNV GL, ABS, and Bureau Veritas for hull construction, overbygg, og trykkbeholdere.

5083 H116 Marine Grade Aluminum Plate
| Element | Spesifikasjon (vekt%) | Funksjonell rolle |
| Aluminium (Al) | Balansere (≥94.0%) | Grunnmatrise; korrosjonsbestandighet |
| Magnesium (Mg) | 4.0–4.9 | Primary strengthening; solid solution hardening |
| Mangan (Mn) | 0.40–1,0 | Kornforfining; Al₆(Mn,Fe) dispersoid formation |
| Krom (Cr) | 0.05–0.25 | Recrystallization control; grain boundary stabilization |
| Stryke (Fe) | ≤0,40 | Kontrollert urenhet; Al₃Fe phase limitation |
| Silisium (Og) | ≤0,40 | Kontrollert urenhet; Mg₂Si prevention |
| Sink (Zn) | ≤0,25 | Limitation; galvanic corrosion prevention |
| Titanium (Av) | 0.05–0.15 | Grain refinement in casting |
Tensile and Yield Characteristics (ASTM B928)
| Eiendom | 5083-H116 | 5083-O | 5083-H321 |
| Ultimativ strekkstyrke (MPa) | 305–385 | 270–345 | 305–385 |
| Yield Styrke 0.2% (MPa) | 215–305 | 115–200 | 215–305 |
| Forlengelse (%) | 10–16 | 16–22 | 10–16 |
| Elastisk modul (GPa) | 70.3 | 70.3 | 70.3 |
Fracture and Fatigue Performance
| Eiendom | Verdi | Testmetode |
| Plane Strain Fracture Toughness (K_IC) | 35–45 MPa√m | ASTM E399 |
| Utmattelsesstyrke (10⁷ cycles, R=0.1) | 110–130 MPa (glatt) | ASTM E466 |
| Utmattelsesstyrke (sveiset) | 70–90 MPa | ASTM E466 |
| Charpy V-Notch (longitudinal) | 25–35 J | ASTM E23 |
Cryogenic Properties
Unlike ferrous materials, 5083 H116 Marine Grade Aluminium Sheet shows no ductile-to-brittle transition. At -196°C (liquid nitrogen temperature):
These characteristics enable LNG containment membrane systems operating at -162°C, where material failure risks catastrophic cargo release.

Bøyetest av 5083 H116 Aluminium Sheet
| Eiendom | Verdi | Application Impact |
| Tetthet | 2.66 g/cm³ | 66% lettere enn stål; critical for stability |
| Smelteområde | 574–638°C | Welding parameter selection |
| Termisk ledningsevne | 120 M/(m·K) at 20°C | Heat dissipation in engine compartments |
| Koeffisient for termisk ekspansjon | 23.8×10⁻⁶/°C | Design allowance: 2.4 mm/m for 100°C ΔT |
| Elektrisk ledningsevne | 29% IACS | Cathodic protection current distribution |
| Spesifikk varme | 900 J/(kg·K) | Termiske masseberegninger |
Produksjon 5083 aluminiumsplate begins with vertical direct chill (DC) casting of 400–600 mm thick ingots. Critical process parameters include:
Grain Refinement: Titanium diboride (TiB₂) inoculation at 0.01–0.05% Ti and 0.005–0.01% B achieves ASTM 2–4 as-cast grain size (180–360 μm), preventing cast grain coarseness that would persist through subsequent thermomechanical processing.
Cooling Control: Water flow rates of 2.0–3.5 m³/min per meter of periphery extract heat at 100–200°C/min, preventing magnesium macrosegregation that would create property variations across final plate thickness.
Hydrogen Management: Degassing reduces hydrogen content to <0.15 ml/100g Al, eliminating porosity that nucleates corrosion and reduces fatigue strength.
Hot Rolling: Breakdown rolling at 400–500°C reduces 600 mm cast slabs to 6–12 mm intermediate gauge, achieving 95%+ reduction. This stage develops the crystallographic texture (cube component) that persists through cold working.
Kaldrulling: Room temperature reduction of 60–85% to final gauge (1.5–150 mm) introduces work hardening dislocations that elevate strength from 110 MPa (O-temperering) toward H116 targets.
Critical Thickness Effects: Tallerken <12 mm thick achieves uniform properties through-thickness. Thicker sections (>25 mm) exhibit centerline property reductions due to incomplete work penetration; specialized cross-rolling or heavy reduction schedules mitigate this.
The defining manufacturing stage for marine service creates H116 temper through:
Strekkherding: 15–20% cold reduction from O-temper establishes dislocation density and stored energy.
Stabilization: 343–371°C (650–700°F) for 2–4 hours precipitates β-phase (Al₈Mg₅) at grain boundaries in controlled morphology.
Microstructural Outcome: Discrete, spheroidized β-phase particles 0.5–2.0 μm diameter, spaced 5–20 μm apart, rather than continuous film networks. This distribution eliminates galvanic coupling between grain interiors and boundaries.
Quench Requirement: Rapid air cooling post-stabilization prevents over-aging and β-phase coarsening that would reduce strength and corrosion resistance.
Stretcher Leveling: 0.5–3.0% permanent elongation in tension eliminates residual stresses from rolling, achieving flatness of <10 I-units (ASTM B209) essential for automated hull panel assembly.
Overflatefinish: Møllefinish (som rullet, Ra 1.0–2.5 μm) suffices for most structural applications. Shot-blasting (Sa 2.5) prepares surfaces for adhesive bonding in sandwich constructions.
Ultrasonic Inspection: 100% scanning per ASTM B594 detects internal discontinuities (inneslutninger, lamineringer) >2 mm equivalent diameter in plate >15 mm tykk. Classification society rules mandate this for hull structural applications.

5083 H116 Marine Grade Aluminium Sheet for Ship
The H116 Stabilization Achievement:
På 2.66 g/cm³ tetthet, 5083 H116 marine grade aluminium sheet delivers specific strength (UTS/density) of 115–145 MPa·cm³/g, versus 55–70 for mild steel and 90–110 for 6061-T6. Dette 65% weight reduction versus steel enables:

Marine used 5083 Aluminiumsplate
The H116 temper certification eliminates the uncertainty of H321 material, where improper stabilization creates IGC vulnerability. Shipbuilders receive guaranteed performance rather than material-dependent risk.
| Eiendom | 5083-H116 | 6061-T6 | Stål |
| Welding processes | MEG, TIG, FSW, SAW | Begrenset (HAZ-mykning) | All conventional |
| Filler compatibility | 5183, 5356, 5556 | 4043, 5356 | Matching consumables |
| Joint efficiency | 70–80% | 50–60% | 85–100 % |
| HAZ-mykning | Moderat (30%) | Severe (50%) | Ingen |
5083 welds without preheat (unless <5°C ambient), requires no post-weld heat treatment, and maintains ductility in HAZ that prevents brittle fracture.
The absence of ductile-to-brittle transition enables LNG containment at -162°C, where steel would require expensive nickel alloying or risk brittle fracture.
5083-H116 serves in Mark III and NO96 membrane containment systems for 170,000+ m³ LNG carriers.
Relative magnetic permeability μᵣ = 1.003 (paramagnetic) versus >1000 for steel enables:
| Cost Element | 5083-H116 | Stål (DH36) | Notater |
| Material cost ($/kg) | 4.5–6,0 | 0.8–1.2 | 4–5× premium |
| Fabrication labor | 0.7× steel | 1.0× | Faster welding, ingen belegg |
| Vedlikehold (30 år) | Minimal | 15–25% replacement | Steel requires recoating |
| Fuel (30 år) | 0.85× steel | 1.0× | Lightweight hull efficiency |
| Total lifecycle | 0.9–1.1× steel | 1.0× | Parity or advantage for high-speed craft |
High-Speed Craft: Skrog, dekk, and superstructures of ferries (35–50 knots), crew transfer vessels for offshore wind farms, and patrol boats. The weight-strength optimization enables planing hull designs impossible with steel construction.
LNG-bærere: Secondary barrier membranes (Mark III system: corrugated 5083-H116 waffle panels), primary barrier supports, and cargo containment system structural elements. Cryogenic toughness mandatory for -162°C service.
Mega-Yachts: Superstructure weight reduction (aluminum above main deck, steel below) lowers center of gravity, improving seakeeping and enabling larger superstructures within stability limits.
Mine Countermeasures Vessels (MCMV): Glass-reinforced plastic (GRP) hulls with 5083-H116 decks and superstructures combining non-magnetic signature with structural integrity.
Littoral Combat Ships: Aluminum trimaran hulls (USS Independence class) exploiting speed and shallow draft; 5083-H116 critical for welded structure fatigue resistance.
Submarine Rescue Vehicles: Pressure hulls to 600m depth; fracture toughness prevents catastrophic implosion from manufacturing defects or impact damage.
Living Quarters Modules: Lett, corrosion-resistant accommodation platforms; fire resistance superior to GRP alternatives.
Helicopter Decks: Friction-enhanced surfaces (alumina grit embedding) providing non-skid for aviation operations; corrosion resistance to aviation fuel and seawater.
Seawater Systems: Piping, heat exchanger tube sheets, and desalination plant components where copper alloys would suffer dealloying.
Research Submersibles: Deep-diving hulls (Alvin, Limiting Factor) utilizing 5083’s yield strength and damage tolerance for manned operations to 10,000+ meter.
Arctic Vessels: Ice-class hull plating; cryogenic toughness maintains integrity at -40°C air temperatures and ice impact loading.
Common standards and references that govern material selection, testing and documentation:
Procurement note: buyers should demand Mill Test Certificates (MTC-er), heat numbers, and certs indicating acceptance to the applicable class rules and temper.

Huawei Aluminium Sheet Warehouse
| Eiendom / criterion | 5083-H116 | 5086-H116 | 5052-H32 | 5456-H116 | 6061-T6 | Mild steel (f.eks., A36) |
| Material class | Al-Mg (5xxx) | Al-Mg (5xxx) | Al-Mg (5xxx) | Al-Mg (5xxx, higher Mg) | Al-Mg-Si (6xxx) | Fe-C |
| Tetthet (g·cm⁻³) | 2.66 | 2.66 | 2.68 | 2.67 | 2.70 | 7.85 |
| Yield Rp0.2 (MPa) | ≥215 (typ.) | ~215–265 | ~140–160 | ~250–280 | ~275 | ~250 |
| Tensile Rm (MPa) | 305–385 | ~300–350 | ~210–260 | ~340–380 | 310–350 | 400–550 |
| Forlengelse, EN (%) | ≥10–12 | ≥12 | 8–18 | ≥10–12 | ~8–12 | ~15–25 |
| Sveisbarhet (fabrikasjon) | Glimrende (MIG/TIG/FSW) | Glimrende | Glimrende | Bra – utmerket | Weldable but loses strength in HAZ; filler recommended | Glimrende |
| Sjøvann korrosjonsbestandighet | Glimrende (immersion & splash) | Glimrende (very close to 5083) | God (limited immersion use) | Glimrende; often superior to 5083 | Moderat (requires coatings) | Fattig (needs coatings/cathodic protection) |
| SCC (spenningskorrosjonssprekker) susceptibility | Lav (in H116) | Lav | Lav-moderat | Lav | Lav-moderat (environment dependent) | Lav (different mechanism) |
| Formbarhet / cold work | Veldig bra (esp. O) | Veldig bra | Glimrende (veldig duktil) | God | Rettferdig (6xxx stiff) | Moderat (ductile but heavy) |
| Fatigue performance | God (weld detail sensitive) | God | Moderat | Veldig bra | God (design dependent) | Glimrende (higher fatigue strength) |
| Typisk marin bruk | Hull plating, dekk, tanker, superstructure | Skrog, structural plates, highly similar to 5083 | Drivstofftanker, formed parts, interiors | Higher-strength hull plates, structural members | Rammer, beslag, structures where high static strength needed | Heavy hulls, where weight not critical, offshore structural members |
| Relativ materialkostnad | Medium | Medium | Lav–middels | Høyere (premium) | Middels – Høy | Lav (material cheap, lifecycle cost higher) |
| Recommendation summary | Prime choice for welded hull plating & underwater service | Alternative to 5083 with comparable marine performance | Use where formability and economy matter, not primary immersed hull | Use where higher plate strength is required and H116 processing requested | Use where heat-treatable strength needed and adequate corrosion protection applied | Use if weight is not a constraint and coating/cathodic protection is feasible |
Sourcing genuine, certified 5083-H116 is critical. En ledende global leverandør som Henan Huawei Aluminium Co., Ltd (HWALU) ensures this through a multi-layered quality assurance system.
5083 H116 marine grade aluminium sheet represents the culmination of sixty years of metallurgical development specifically targeting saltwater structural applications.
The alloy’s unique combination—305–385 MPa strength, guaranteed IGC immunity through H116 stabilization, cryogenic toughness to -196°C, and weldability without post-weld heat treatment—establishes it as the default material for weight-critical marine construction.
As the marine industry confronts decarbonization imperatives, 5083-H116 enables the lightweight, efficient vessels and offshore structures essential for reduced fuel consumption and extended range.
Classification society certifications from LR, DNV GL, ABS, and Bureau Veritas provide independent verification that material meets these critical demands.
Produsenter liker Henan Huawei Aluminium Co., Ltd translate these standards into certified product, supported by comprehensive testing and technical service that ensures structural integrity across decades of saltwater service.
Q1 — What does the H116 temper mean?
EN: H116 is a controlled temper applied to 5xxx alloys that ensures specific mechanical and corrosion resistance characteristics after fabrication and welding. Classification societies accept H116 for marine applications because it shows improved resistance to exfoliation and intergranular corrosion.
Q2 — Can 5083-H116 be used for the entire hull?
EN: Yes — many high-speed craft and leisure/commercial vessels use 5083 extensively for hull plating, but designers must account for fatigue, joining details and cathodic protection as appropriate.
Q3 — How much weight can a ship save by switching from steel to 5083?
EN: Savings vary with design; as a rule of thumb, aluminium structures can weigh roughly one-third of comparable steel structures by volume. I praksis, whole-vessel weight savings often range from several tons for small craft to tens or even ~100 t for larger vessels, depending on configuration.
Q4 — What welding method is best for 5083?
EN: MIG/GMAW and TIG/GTAW are common and reliable. Friction stir welding (FSW) provides excellent joint properties for plates where applicable. Control heat input and use correct filler alloys to maintain post-weld performance.
Q5 — What documentation should a purchaser demand?
EN: Bruksprøvesertifikat (kjemisk + mekanisk), heat/coil traceability, classification society approval or acceptance evidence, WPS/PQR for welding, and test data for exfoliation/intergranular corrosion proving H116 acceptance.
5454-O aluminiumsirkel representerer 5454 aluminiumslegering O temperert aluminiumsirkel, tilhører 5000 serie aluminiumslegering.
Kontakt oss i dag for å lære mer om vår 5083 tilbud av aluminiumsspoler og hvordan vi kan møte dine spesifikke krav.
Oppdag marin karakter 5086 H116 aluminiumsplate er pålitelig i skipsbygging, offshore strukturer, og sjøvannsmiljøer for sin utmerkede korrosjonsbestandighet, sveisbarhet, og styrke.
Huawei Aluminium er av høy kvalitet 8079 produsent av aluminiumsfolie. Det har flere fordeler ved produksjon av 8079 aluminiumsfolie. Dens aluminiumsfolieprodukter er dypt elsket av kunder i inn- og utland.
5005 aluminiumsplate er en middels sterk aluminiumslegeringsplate, som kan nå middels og høy styrke ved kaldbearbeiding, og den har god formbarhet
040 Aluminiumsplate er en type aluminiumsplate som har en tykkelse på 0.04 tommer, som tilsvarer 1.016 millimeter. Det er et tynt og lett materiale
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Vi trenger en t111 aluminiumsplate. Vi ser etter kvart tomme ganger 4'x8' ark
Aluminium 5754 H111 หนา 8 mm กว้าง x ยาว : 4 x 6 fot
Hei, veldig bra, jeg ringer fra Iran, vi trenger 12 mikron gullfolie, 61 cm bred, ca 35 tusen meter per måned.
Kjære salgsteam, Jeg håper du har det bra. Vi ønsker å hente aluminiumsprodukter fra din bedrift og vil sette pris på å motta ditt beste tilbud for følgende: Aluminum Sheets Thickness: 2 mm, 3 mm, 4 mm, og 5 mm Please provide your available standard sheet sizes. Vennligst oppgi prisen per ark og prisen per metrisk tonn. Aluminum Coils Thickness: 2 mm, 3 mm, 4 mm, og 5 mm Please provide your available coil widths, standard spolevekter, og spesifikasjoner for indre diameter. Vennligst oppgi prisen per tonn. For både ark og spoler, vennligst ta med: Tilgjengelige legeringer (f.eks. 1050, 3003, 5052) Temper options Mill finish or other available surface finishes Minimum Order Quantity (MOQ) Production lead time Payment terms Please provide your quotation based on: CIF Jebel Ali Port, UAE (inkludert sjøfrakt), eller alternativt gi både FOB China og CIF Jebel Ali Port, UAE priser. Hvis tilgjengelig, send gjerne også: Product catalogue Mill Test Certificate (MTC) sample Photos of the products and packaging. Vi er interessert i å etablere et langsiktig forretningsforhold. Vårt første kjøpsvolum forventes å være 100+ metriske tonn, med potensiale for større og tilbakevendende bestillinger hvis din prissetting, kvalitet, og service oppfyller våre krav. Takk for at du tok deg tid. Vi ser frem til å motta tilbudet ditt og håper å bygge et vellykket langsiktig partnerskap. Med vennlig hilsen, Eng.Yousef
アルミハニカムパネルについてお聞きしたいのですが L1500×W700×厚みで曲げに対して200kgg耐えられるには厚みはどのくらいでしょうか ※簡単に言いますと約1000mmの側溝に渡して真ん中で200kg耐えられるかという事になります 又、Hvis et slikt produkt finnes, vekten、価格をおしえていただけますか 現在はコンパネ板を使用してますが腐ると折れてしまい人が側溝に落ちてけがをしてます 出来ましたらメールでお返事をいただけますか