1050 letlapa la aluminium

1050 Letlapa la aluminium le hlahisoa ka ho sebetsa 1050 aluminium. Mehato e khethehileng ea ts'ebetso e kenyelletsa ho qhibiliha le ho lahla, ho thetheha ho batang le ho bidika ho chesang, ho poma letlapa, phekolo ea holimo, tlhahlobo le ho paka, etc.

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1050 letlapa la aluminium

Nako ea morao:2023-04-04
    Boholo 4×8′,5×10′,48×96″, 1000x2000mm, kapa boholo bo hlophisitsoeng.
    Botenya 0.1-5mm
    Bophara ka 100mm, boholo ba 2600mm
    Khalefo O, H14, H16, H18, H19, H22, H24, H26, H28, H111, H112
    Thekenoloji ho chesa ho biditsoe ( DC ), ho thetheha ho batang ( CC ), lahla
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Ke eng 1050 aluminum sheet/plate?

Ke eng 1050 aluminum sheet grade?1050 Letlapa la aluminium le hlahisoa ka ho sebetsa 1050 aluminium. Mehato e khethehileng ea ts'ebetso e kenyelletsa ho qhibiliha le ho lahla, ho thetheha ho batang le ho bidika ho chesang, ho poma letlapa, phekolo ea holimo, tlhahlobo le ho paka, etc.

perfect 1050 aluminium sheet

Perfect 1050 letlapa la aluminium

1050 aluminum plate represents a specific alloy type of aluminum plate, regardless of size, botenya, annealing state.

1050 letlapa la aluminium, 10 represents the 1000 series pure aluminum sheet, 50 represents the aluminum content of 99.50%; the same 1060 represents the aluminum plate with an aluminum content of 99.60% in the 1000 series pure aluminum plate.

How to produce 1050 aluminum sheet/plate?

The production process of 1050 aluminum plate is very mature and can be produced in large quantities quickly, but the production process is relatively cumbersome, and each step has strict requirements on the quality of the product;

  • Raw material selection: select high-purity aluminum ingots as raw materials, and determine the specifications and purity grades of aluminum ingots as required.
  • Smelting and casting: heating the aluminum ingot to the melting point, and then pouring the molten aluminum into the mold for casting to obtain an aluminum slab.
  • Rough rolling: Continuously rolling the aluminum slab to a certain thickness and width, this step is usually called rough rolling.
  • Intermediate annealing: Annealing the rough-rolled aluminum plate to make it more uniform and reduce the stress in the plate.
  • Intermediate rolling: Intermediate rolling is performed on the aluminum sheet after intermediate annealing to achieve the desired thickness and size.
  • Sheet annealing: sheet annealing is performed on the aluminum plate to make it moderately hard and achieve the required mechanical properties and formability.
  • Sheet rolling: sheet rolling is performed on the annealed aluminum sheet to further precisely control its thickness and width.
  • Phekolo ea bokaholimo: cleaning, polishing, oxidation and other treatments are performed on the surface of the aluminum plate to achieve specific surface effects and functions.

Introduction to the performance of 1050 poleiti ea aluminium

1050 aluminum plate chemical composition

Motsoako oa lik'hemik'hale oa 1050 aluminium
Chemical Element Manganese (Mong) Tšepe (Fe) Koporo (Cu) Magnesium (Mg) Silicone (Le) Zinki (Zn) Titanium (Ea) Tse ding (Emong le emong) Aluminium (Al)
Hlahisa (%) 0.0 - 0.05 0.0 - 0.40 0.0 - 0.05 0.0 - 0.05 0.0 - 0.25 0.0 - 0.07 0.0 - 0.05 0.0 - 0.03 Ho leka-lekanya

1050 thepa ea 'mele ea aluminium

1050 aluminium motsoako oa thepa ea 'mele
Thepa ea 'Mele Boleng
Botenya 2.71 g/cm³
Melting Point 650 °C
Katoloso ea Mocheso 24 x10^-6 /K
Modulus ea Elasticity 71 GPA
Thermal Conductivity 222 W/m.K
Ho hanyetsa Motlakase 0.0282 x10^-6 Ω .m

Mechini thepa ea 1050 poleiti ea aluminium

1050 aluminum plate has excellent mechanical properties, such as tensile strength, fana ka matla, elongation, etc., empa 1050 aluminum plates with different thicknesses and different tempering states correspond to different mechanical properties;

Alloy Temper Specified Matla a tšepe Ho hlahisa matla Elongation
Botenya(mm) (MPa) (MPa) (%)
1050-O/ 1050-H111 0.2-0.5mm 65-95 Min20 Min20
0.5-1.5mm Min22
1.5-3.0mm Min26
3.0-6.0mm Min29
6.0-12.5mm Min35
12.5-80.0mm
1050-H112 6.0-12.5mm Min75 Min30 Min20
12.5-80.0mm Min70 Min25
1050-H12 0.2-0.5mm 85-125 Min65 Min2
0.5-1.5mm Min4
1.5-3.0mm Min5
3.0-6.0mm Min7
6.0-12.5mm Min9
12.5-40.0mm
1050-H14 0.2-1.5mm 105-145 Min85 Min2
1.5-3.0mm Min4
3.0-6.0mm Min5
6.0-12.5mm Min6
12.5-25mm
1050-H16 0.2-0.5mm 120-160 Min100 Min1
0.5-1.5mm Min2
1.5-4.0mm Min3
1050-H18 0.2-0.5mm Min135 Min120 Min1
0.5-1.5mm Min140 Min2
1.5-3.0mm Min2
1050-H19 0.2-0.5mm Min155 Min140 Min1
0.5-1.5mm Min150 Min130
1.5-3.0mm
1050-H22 0.2-0.5mm 85-125 Min55 Min4
0.5-1.5mm Min5
1.5-3.0mm Min6
3.0-6.0mm Min11
6.0-12.5mm Min12
1050-H24 0.2-0.5mm 105-145 Min75 Min3
0.5-1.5mm Min4
1.5-3.0mm Min5
3.0-6.0mm Min8
6.0-12.5mm
1050-H26 0.2-0.5mm 120-160 Min90 Min2
0.5-1.5mm Min3
1.5-4.0mm Min4
1050-H28 0.2-0.5mm Min140 Min110 Min2
0.5-1.5mm
1.5-3.0mm Min3

1050 fektheri ea pampiri ea aluminium

As China’s leading 1050 moetsi oa pampiri ea aluminium, Huawei Aluminum has twenty years of experience in aluminum sheet production. We are also a 1050 aluminum sheet high quality manufacturer, able to provide high-quality services and high-quality products, and provide the best aluminum sheet prices.

What is the difference between 1050 le 1100 letlapa la aluminium?

1050 aluminum sheet vs 1100 letlapa la aluminium

The difference in alloy composition:

1050 letlapa la aluminium: 1050 aluminum is a pure aluminum alloy containing 99.5% aluminum and very small amounts of alloying elements. It is often referred to ascommercial pure” aluminium.

1100 Aluminium: 1100 aluminum is also a pure aluminum alloy with an aluminum content of 99.0% and very few alloying elements. Purity is similar to 1050 aluminium.

Aluminum sheet alloy characteristics:

Ka bobeli 1050 le 1100 lipoleiti tsa aluminium have excellent corrosion resistance, high thermal conductivity, and good electrical conductivity.
They are both soft and malleable, making them suitable for a variety of forming processes such as deep drawing, spinning and welding.

Common applications of aluminum sheet:

Due to their high corrosion resistance, these aluminum alloys are often used in applications that require exposure to moisture or corrosive environments. Common applications include: roofing and cladding materials, reflective panels and decorative items, chemical and food packaging.

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