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5052 aluminum plate/sheet h34 h32 for building metal

5052 aluminum sheet

The 5052 building industry aluminum sheet is highly resistant to corrosion. It is an alloy that contains 0.25 percent chromium and 2.5 percent magnesium. It’s widely used because of its formability and durability. It has high fatigue and medium static strength. It can be used in marine environments without worry of corrosion. This metal also has excellent thermal conductivity and low density, which is commonly found with other aluminum alloys. Its fatigue properties and endurance limit are excellent. The endurance limit is 125 MPa in an H34 temper and 115 MPa in an H32 temper.

5052 building industry aluminum sheet is one of the higher strength, non-heat-treatable alloys, which contains magnesium as its major alloying element, with small amounts of chromium, silicon, iron, copper, manganese and zinc. When annealed, alloy 5052 is stronger than the readily available 1100 and 3003 alloys, and stronger than most other 5000 series alloys. 5052 building industry aluminum sheet cannot be heat treated, but can be hot and cold worked.

the 5052 aluminum plate is an alloy that has been formed with a combination of metals, which include 0.25 percent chromium and 2.5 percent magnesium. It has great workability and is readily machinable and weldable. Its high fatigue strength and medium static strength, plus excellent corrosion resistance, make it popular for use in marine atmospheres. Like with other aluminum alloys, this grade of aluminum has excellent thermal conductivity. In order to harden this alloy, cold working should be used, since heat working can’t achieve this. It has excellent endurance limits and fatigue properties.

The 5052 aluminum alloy has high resistance when placed in conditions that are slightly alkaline. It has better marine resistance than 5005 alloys, which is why it’s frequently used for marine applications. The corrosion resistance of 5052 alloys comes from the protective surface oxide film it has. This has a rapid reaction that occurs when damage is sustained. This reaction is between oxygen and aluminum. However, when repair isn’t possible, the base metal can sustain rapid corrosion. It’s not recommended that this alloy be used with reducing media. To help make the protective film thicker, the alloy can be anodized.

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