COMPREHENSIVE TECHNICAL ANALYSIS AND DATASHEET OF ALUMINIUM 5052 FASTENERS
Aluminium 5052 (UNS A95052) is universally recognized throughout the metallurgical industry as the benchmark "Marine Grade" aluminium. By intentionally alloying the aluminium matrix with 2.2% to 2.8% Magnesium and a trace addition of Chromium, the metal achieves a unique combination of exceptional structural toughness, high fatigue strength, and near-total immunity to saltwater corrosion.
Unlike the 2000 or 7000 series aerospace alloys, 5052 is non-heat-treatable, relying instead on strain-hardening (cold working) to achieve its mechanical properties. What it lacks in extreme tensile strength, it vastly makes up for in its phenomenal weldability, excellent cold-heading formability, and resistance to alkaline and marine pitting. This makes Aluminium 5052 fasteners the undisputed choice for coastal architectural cladding, offshore marine enclosures, chemical pressure vessels, and transportation infrastructure where saltwater exposure is continuous and unforgiving.
■ Product Overview & Specifications
| Material Classification |
Non-Heat Treatable Magnesium-Aluminium Alloy (Marine Grade) |
| UNS Designation |
A95052 |
| Microstructure |
Alpha Solid Solution (Magnesium in Aluminium) |
| Magnetic State |
Completely Non-Magnetic |
| Density |
2.68 g/cm³ (0.097 lb/in³) |
| Size Range |
Metric: M3 to M36 | Imperial: #4 to 1-1/2" |
| Primary Attribute |
Supreme Saltwater Pitting Resistance & High Fatigue Strength |
■ Proprietary Datasheet Download (GATED)
📄
Aluminium 5052 Marine Grade — Complete Technical Datasheet
Contains detailed saltwater spray (ASTM B117) corrosion limits, TIG/MIG welding compatibility charts for fastener assemblies, and specific cold-heading parameters for custom rivets.
⬇ DOWNLOAD DATASHEET
■ MTC Integration Section
In demanding marine environments, ensuring the correct Magnesium-to-Chromium ratio is essential to preventing corrosive pitting. Ananka provides fully authenticated mill-level traceability for every shipment to guarantee the integrity of your coastal installations.
- EN 10204 Type 3.1: Validates the precise 2.2% - 2.8% Magnesium addition, limits trace Copper content to prevent galvanic micro-cells, and verifies the specific strain-hardened temper (e.g., H32 or H34).
- EN 10204 Type 3.2: Available upon request for highly regulated commercial shipbuilding, offshore oil & gas platforms, and municipal desalination projects requiring third-party testing oversight.
■ Chemical Composition
The 5052 alloy achieves its legendary marine resistance by severely restricting Copper (which causes galvanic pitting in seawater) and relying heavily on Magnesium. The small addition of Chromium works synergistically with the Magnesium to significantly boost the alloy's resistance to stress-corrosion cracking.
| Aluminium (Al) |
Magnesium (Mg) |
Chromium (Cr) |
Iron (Fe) |
Silicon (Si) |
Copper / Zinc |
| Balance (~97.2) |
2.20 – 2.80 |
0.15 – 0.35 |
0.40 Max |
0.25 Max |
0.10 Max (Each) |
■ Mechanical Properties
| Mechanical Property |
Typical Limits (H32 Temper / Strain Hardened & Stabilized) |
| Tensile Strength |
31,000 - 38,000 psi (210 - 260 MPa) |
| Yield Strength |
23,000 - 28,000 psi (160 - 195 MPa) |
| Elongation (in 2 inches) |
12% - 18% |
| Hardness (Brinell) |
60 - 65 HB |
■ Equivalent Grades & Designations
| Standard / System | Designation |
| ASTM Specifications | ASTM B316 (Rivet & Cold Heading Wire) |
| Common Trade Names | Marine Grade Aluminium, Alloy 5052, AlMg2.5 |
| European Equivalent | EN AW-5052 / AlMg2.5 (DIN 3.3523) |
| Military / Marine Std | QQ-A-430, MIL-DTL-430 |
■ Applications & Industries
- Marine & Offshore: Solid rivets and binding screws for boat hulls, saltwater desalination plant enclosures, and offshore rig control panels subjected to constant sea spray.
- Transportation Infrastructure: Custom fasteners for bus panelling, truck trailers, and highway signs requiring high fatigue resistance against constant wind buffeting and road vibration.
- Chemical & Processing: Sheet metal screws and structural fasteners for pressure vessels and storage tanks handling mildly caustic chemicals and high-humidity environments.
■ Compatible Fastener Assemblies
| Mating Bolts/Machine Screws | Internal Threads (Nuts) | Washers |
| 5052 Cold-Headed Screws & Rivets | 5052 or 6061 Hex Nuts | 5052 Flat Washers |
■ Torque & Installation Guidelines
While significantly stronger than 1100 series pure aluminium, 5052 is still a relatively soft metal compared to steel or 7075 aerospace aluminium. When installing threaded 5052 fasteners, strict torque control is required to prevent thread stripping. Furthermore, aluminium-on-aluminium joints are prone to galling; the use of dialectric anti-seize is recommended in critical marine assemblies.
| Nominal Diameter | Threads Per Inch (UNC) | Max Target Torque (in-lbs) | Max Target Torque (ft-lbs) |
| 1/4" | 20 | 40 - 45 | ~ 3.5 |
| 5/16" | 18 | 85 - 95 | ~ 7.5 |
| 3/8" | 16 | 140 - 160 | ~ 12.5 |
| 1/2" | 13 | 300 - 320 | ~ 26.0 |
■ Frequently Asked Questions
1. Why is 5052 called "Marine Grade"?
In standard aluminium alloys (like 2024 or 7075), the addition of Copper and Zinc creates high strength but also creates microscopic galvanic cells within the metal, causing rapid rusting (pitting) when exposed to saltwater. Aluminium 5052 utilizes Magnesium instead. The Magnesium-Aluminium matrix is incredibly stable in chloride-rich environments, forming a tenacious oxide layer that shields the metal from the corrosive effects of the ocean.
2. Can 5052 fasteners be heat-treated for extra strength?
No. The 5000-series aluminium alloys are strictly non-heat-treatable. They cannot be hardened by baking them in a furnace (precipitation hardening). The only way 5052 fasteners gain their structural strength is through "cold working"—the physical deformation of the metal during the cold-heading and thread-rolling manufacturing processes.
3. Is it safe to weld 5052 fasteners to an aluminium chassis?
Yes, absolutely. Unlike the 2000-series (which cracks) or the 7000-series (which loses its temper), Aluminium 5052 has outstanding weldability. It is routinely TIG and MIG welded in marine and transportation applications. Standard 5356 or 4043 filler rods are typically used when welding 5052 hardware to structural plates.