Processing method of aluminum flat ingot with ultra-high width-to-thickness ratio

A processing method and aluminum alloy technology, applied in metal processing equipment, equipment for feeding molten metal into molds, manufacturing tools, etc., can solve the problems of non-concentrated stress release of aluminum ingots, high scrap rate, and difficulties in casting and molding, etc. problems, achieve the effect of reducing the risk of cracks, improving market competitiveness, and shortening the crystallization time

Inactive Publication Date: 2019-10-18
重庆丰禾铝业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] For a long time, the 2A12 aluminum alloy has the difficulty of casting when the width-to-thickness ratio is ≥ 4
The reason is that due to the casting characteristics of this type of alloy, after the aluminum liquid is injected into the inner cavity of the mold, the aluminum liquid located in the middle of the mold inner cavity first contacts the large surface of the mold to cool, and the rest of the aluminum liquid flows towards the small surface of the mold frame. Gradually cooling during the flow process, the stress release of the cast aluminum ingot is not concentrated, resulting in cracks on the large surface and small surface of the cast ingot, the scrap rate remains high, and the alloy yield is only 65-70%, which is seriously reduced Enterprise benefit, dampen worker's enthusiasm

Method used

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  • Processing method of aluminum flat ingot with ultra-high width-to-thickness ratio
  • Processing method of aluminum flat ingot with ultra-high width-to-thickness ratio

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Example 1: Supply of 2A12 alloy to Southwest Aluminum (Group) Co., Ltd. on April 25, 2019, melting number 190 0271

[0027] Take the processing of aluminum alloy flat ingots in the flat ingot workshop of Chongqing Fenghe Aluminum Industry Co., Ltd. as an example. The processing method of ultra-high aspect ratio aluminum alloy flat ingot has the following steps:

[0028] A. 16558kg of raw materials (3467kg of original aluminum ingots, accounting for 20.94%, 12568kg of primary scrap, accounting for 75.90%; master alloy 526kg, accounting for 3.18%; because there is no secondary waste that meets the requirements on site, no secondary waste is put in ) Put into the smelting furnace for smelting, the smelting temperature is 736℃;

[0029] B. The flow channel of the outlet section of the aluminum liquid filter box and the flow channel of the splitter plate are sprayed with boron nitride paint;

[0030] C. Preheat the splitter plate and control the front end temperature of the splitte...

Embodiment 2

[0033] Example 2: Supply of 2A12 alloy to Southwest Aluminum (Group) Co., Ltd. on April 25, 2019, melting number 190 0272

[0034] Take the processing of aluminum alloy flat ingots in the flat ingot workshop of Chongqing Fenghe Aluminum Industry Co., Ltd. as an example. The processing method of ultra-high aspect ratio aluminum alloy flat ingot has the following steps:

[0035] A. 16050kg of raw materials (3468kg of raw aluminum ingots, accounting for 21.61%, 12054kg of primary scrap, accounting for 75.10%; master alloy 528kg, accounting for 3.29%; because there is no secondary waste that meets the requirements on site, no secondary waste is input ) Put into the smelting furnace for smelting, the smelting temperature is 744℃;

[0036] B. The flow channel of the outlet section of the aluminum liquid filter box and the flow channel of the splitter plate are sprayed with boron nitride paint;

[0037] C. Preheat the splitter plate and control the front end temperature of the splitter plat...

Embodiment 3

[0040] Example 3: Supply of 2A12 alloy to Southwest Aluminum (Group) Co., Ltd. on April 25, 2019, melting number 190 0273

[0041] Take the processing of aluminum alloy ingots in the flat ingot workshop of Chongqing Fenghe Aluminum Industry Co., Ltd. as an example.

[0042] A. 14984kg of raw materials (3013kg of original aluminum ingots, accounting for 20.11%, 8498.2kg of primary scrap, accounting for 56.72%; 476kg of master alloy, accounting for 3.18%; 2996.8kg of secondary scrap, accounting for 20%) into the melting furnace Smelting, the melting temperature is 743℃;

[0043] B. The flow channel of the outlet section of the aluminum liquid filter box and the flow channel of the splitter plate are sprayed with boron nitride paint;

[0044] C. Preheat the splitter plate and control the front end temperature of the splitter plate to be 695-705℃;

[0045] D. The molten aluminum flows out of the smelting furnace, and enters the inner cavity of the crystallizer through the aluminum liquid f...

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Abstract

The invention discloses a processing method of an aluminum flat ingot with ultra-high width-to-thickness ratio. The method comprises the step that A, raw materials are put into a smelting furnace to be smelted, wherein the weight percentage of an original aluminum ingot is greater than or equal to 20%, the weight percentage of secondary waste is less than or equal to 30%, and the smelting temperature is 735-745 DEG C; B, an outlet section flowing passage of an aluminum filtering box and a flow dividing disc flowing passage are sprayed with boron nitride coatings; C, the flow dividing disc is preheated for 20-30 minutes; D, the molten aluminum flows out from the smelting furnace and passes through the filtering box and the flow dividing disc, the temperature of the molten aluminum enteringthe front end of the flow dividing disc is 695-705 DEG C, the molten aluminum enters the inner cavity of a crystallizer, the cooling water pressure of the crystallizer is 0.025-0.045 MPa, and the aluminum flat ingot with ultra-high width-to-thickness ratio is obtained after cooling crystallizing. The method has the advantages that the operation is simple and convenient, the width-to-thickness ratio of the prepared aluminum alloy flat ingot is greater than 4.8, the yield rate is significantly improved to reach up to 78-83%, and the marketing competitiveness of the product is effectively improved.

Description

Technical field [0001] The invention relates to the field of aluminum processing, in particular to a method for processing an ultra-high aspect ratio aluminum alloy flat ingot. Background technique [0002] For a long time, 2A12 aluminum alloy has the problem of difficulty in casting and forming when the aspect ratio is ≥4. The reason is that due to the casting characteristics of this type of alloy, after the molten aluminum is injected into the cavity of the mold, the molten aluminum in the middle of the cavity of the mold first contacts the large surface of the mold to cool, and the remaining molten aluminum flows toward the small surface of the mold frame. It is gradually cooled during the flow process, and the stress release of the aluminum ingot obtained by casting is not concentrated, which causes the large surface of the cast ingot to be cracked and cracks on the small surface. The scrap rate remains high, and the alloy yield rate is only 65-70%, which is seriously reduced...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C1/02C22C21/00B22D7/00B22D43/00B22D35/04
CPCB22D7/00B22D35/04B22D43/004C22C1/026C22C21/00
Inventor 李作清
Owner 重庆丰禾铝业有限公司
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