Aluminum alloy material and method for manufacturing double-zero foil by using same

A technology of aluminum alloy materials and manufacturing methods, which is applied in the field of aluminum alloy materials and its use in the manufacture of double-zero foils, can solve the problems of obvious color difference, rough foil surface, and difficulty in controlling the grain size of foil blanks, etc., to achieve enhanced hindering effect, surface The effect of fine quality and reduced number of pinholes

Inactive Publication Date: 2012-01-25
SNTO TECH GRP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

If 8079 cast-rolled billet is used to produce double-zero foil, the grain size of the foil billet is difficult to control, and the phenomenon of coarse grains on the surface is prone to occur, resulting in obvious stripes on the surface of the finished double-zero foil, rough foil surface, obvious color difference, and uneven gloss

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Composition and weight percentage of aluminum alloy material:

[0027] Si: 0.09%, Fe: 1.02%, Mn: 0.03%, Cu: 0.01%, Ti: 0.02%, Mg: 0.003%, Cr: 0.008%, Zn: 0.01%, and Al is the balance.

[0028] The method for manufacturing the double zero foil from the aluminum alloy material of embodiment 1, the steps are as follows:

[0029] 1., smelting, melting is carried out by the aluminum alloy of composition ratio described in embodiment 1;

[0030] ②, casting and rolling, the aluminum melt is cast and rolled into a cast-rolled plate with a thickness of 8.0mm by a twin-roller continuous casting and rolling method;

[0031] 3. cold rolling, the cast-rolled plate of step 2. gained is rolled to 4.5mm thick;

[0032] ④, intermediate annealing, the aluminum plate obtained in step ③ is annealed at 550°C, and the annealing time is 10h;

[0033] 5. Secondary cold rolling, the aluminum plate obtained in step 4. is continued to be rolled to a thickness of 0.6mm;

[0034] ⑥, seconda...

Embodiment 2

[0040] Composition and weight percentage of aluminum alloy material:

[0041] Si: 0.15%, Fe: 1.05%, Mn: 0.05%, Cu: 0.002%, Ti: 0.035%, Mg: 0.002%, Cr: 0.005%, Zn: 0.005%, and Al is the balance.

[0042] The method for manufacturing the double zero foil from the aluminum alloy material of embodiment 2, the steps are as follows:

[0043] 1., smelting, melting is carried out by the aluminum alloy of composition ratio described in embodiment 2;

[0044] ②, casting and rolling, the aluminum melt is cast and rolled into a cast-rolled plate with a thickness of 6.0mm by using a twin-roller continuous casting and rolling method;

[0045] 3. cold rolling, rolling the cast-rolled plate obtained in step 2. to a thickness of 3.0 mm;

[0046] ④, intermediate annealing, the aluminum plate obtained in step ③ is annealed at 500°C, and the annealing time is 5h;

[0047] 5. Secondary cold rolling, the aluminum plate obtained in step 4. is continued to be rolled to a thickness of 0.8mm;

...

Embodiment 3

[0054] Composition and weight percentage of aluminum alloy material:

[0055] Si: 0.13%, Fe: 0.97%, Mn: 0.04%, Cu: 0.007%, Ti: 0.025%, Mg: 0.004%, Cr: 0.001%, Zn: 0.006%, and Al is the balance.

[0056] The method for manufacturing the double zero foil from the aluminum alloy material of embodiment 3, the steps are as follows:

[0057] 1., smelting, melting is carried out by the aluminum alloy of composition ratio described in embodiment 3;

[0058] ②, casting and rolling, the aluminum melt is cast and rolled into a cast-rolled plate with a thickness of 7.5mm by using a twin-roller continuous casting and rolling method;

[0059] 3. cold rolling, the cast-rolled plate of step 2. gained is rolled to 2.5mm thick;

[0060] ④, intermediate annealing, the aluminum plate obtained in step ③ is annealed at 600°C, and the annealing time is 25h;

[0061] 5. Secondary cold rolling, the aluminum plate obtained in step 4. is continued to be rolled to a thickness of 0.4mm;

[0062] ⑥...

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Abstract

The invention discloses an aluminum alloy material and a method for manufacturing double-zero foil by using the same. The aluminum alloy material comprises the following components in percentage by weight: 0.09-0.15% of Si, 0.75-1.05% of Fe, 0.03-0.05% of Mn, 0.02-0.03% of Ti, not more than 0.01% of Cu, not more than 0.01% of Mg, not more than 0.01% of Cr, not more than 0.01% of Zn and the balance of Al. The aluminum alloy disclosed by the invention has small grain size, fine surface quality and high tensile strength; and the double-zero foil finished product produced from the aluminum alloy material has pinhole rate of less than 200/m<2>, the tensile strength of 85-100 MPa and the elongation of greater than 2.5%.

Description

[0001] technical field [0002] The invention relates to an alloy material, in particular to an aluminum alloy material and a method for manufacturing double-zero foil with it. Background technique [0003] Aluminum foil meets various needs of modern production in a wide range of fields with its unique properties. With the development of economy and technology, the requirements for the quality of aluminum foil are increasing day by day. It is hoped that the thickness of aluminum foil will be thinner, with fewer pinholes, and higher mechanical properties and surface quality. [0004] At present, most double-zero aluminum foils use 1235 alloy or 8079 alloy. Due to the low total element content of 1235 alloy, the mechanical properties of the finished double-zero foil are low, which cannot meet the production requirements of modern high-speed compound machines; while 8079 double-zero foil Due to its high mechanical properties, it meets the needs of high-speed composite machines...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C21/00C22F1/04C21D1/26B22D11/06
Inventor 蒙春标陈金灵
Owner SNTO TECH GRP
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