IP Library Granted Patent US 11,739,405
Granted Patent B2
US 11,739,405 · App. 17/197,238 · Granted Aug 29, 2023

Production method of Al—Mg—Si series aluminum alloy forged product

Inventor: Takuya Arayama (Fukushima, JP)
Assignee: SHOWA DENKO K.K.
C22F1/043C22C21/02
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Quick Facts
Patent No.
US 11,739,405
App. No.
17/197,238
Granted
Aug 29, 2023
Kind
B2
Abstract

A method of producing an Al—Mg—Si-based aluminum alloy forged product, includes a solution heat treatment step of performing a solution heat treatment for heating the forged product obtained in the forging step at a temperature rising rate of 5.0° C./min or more from 20° C. to 500° C. and holding the forged product at 530° C. to 560° C. for 0.3 hours to 3 hours, a quench treatment step of quenching the forged product in a water tank by bringing an entire surface of the forged product into contact with quenching water within 5 seconds to 60 seconds after the solution heat treatment step for more than 5 minutes and not more than 40 minutes, and an aging treatment step of performing an aging treatment by heating the forged product after the quench treatment step at a temperature of 180° C. to 220° C. for 0.5 hours to 1.5 hours.

Claims (42)

1. A method of producing an Al—Mg—Si-based aluminum alloy forged product, comprising:

a molten metal forming step of obtaining a molten metal of a 6,000 series aluminum alloy;

a casting step of obtaining a casting by casting the molten metal obtained in the molten metal forming step;

a homogenization heat treatment step of performing a homogenization heat treatment for holding the casting obtained in the casting step at a temperature of 370° C. to 560° C. for 4 hours to 10 hours;

a forging step of obtaining a forged product by subjecting the casting after the homogenization heat treatment step to a forging process at a heating temperature of 450° C. to 560° C.;

a solution heat treatment step of performing a solution heat treatment for heating the forged product obtained in the forging step at a temperature rising rate of 5.0° C./min or more from 20° C. to 500° C. and holding the forged product at 530° C. to 560° C. for 0.3 hours to 3 hours;

a quench treatment step of quenching the forged product in a water tank containing quenching water by bringing an entire surface of the forged product into contact with the quenching water within 5 seconds to 60 seconds after the solution heat treatment step for more than 5 minutes and not more than 40 minutes; and

an aging treatment step of performing an aging treatment by heating the forged product after the quench treatment step at a temperature of 180° C. to 220° C. for 0.5 hours to 1.5 hours.

2. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the molten metal of the 6,000 series aluminum alloy consists of: Cu: 0.15 mass % to 1.0 mass %; Mg: 0.6 mass % to 1.15 mass %; Si: 0.95 mass % to 1.25 mass %; Mn: 0.4 mass % to 0.6 mass %; Fe: 0.2 mass % to 0.3 mass %; Cr: 0.11 mass % to 0.25 mass %; Ti: 0.012 mass % to 0.035 mass %; B: 0.0001 mass % to 0.03 mass %; Zn: 0.25 mass % or less; Zr: 0.05 mass % or less; and the balance being Al and inevitable impurities.

3. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 2 ,

wherein a content of the Zn is 0 mass %.

4. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 2 ,

wherein a content of Zr is 0 mass %.

5. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 3 ,

wherein a content of Zr is 0 mass %.

6. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the forged product is an automobile suspension member.

7. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 2 ,

wherein the forged product is an automobile suspension member.

8. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 3 ,

wherein the forged product is an automobile suspension member.

9. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 4 ,

wherein the forged product is an automobile suspension member.

10. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 5 ,

wherein the forged product is an automobile suspension member.

11. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water within 5 seconds to 60 seconds after the solution heat treatment step for more than 7 minutes and not more than 15 minutes.

12. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water within 5 seconds to 60 seconds after the solution heat treatment step for more than 7 minutes and not more than 10 minutes.

13. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water within 15 seconds to 60 seconds after the solution heat treatment step for more than 5 minutes and not more than 40 minutes.

14. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water within 15 seconds to 60 seconds after the solution heat treatment step for more than 7 minutes and not more than 15 minutes.

15. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water within 15 seconds to 60 seconds after the solution heat treatment step for more than 7 minutes and not more than 10 minutes.

16. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water 60 seconds after the solution heat treatment step for more than 5 minutes and not more than 40 minutes.

17. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water 60 seconds after the solution heat treatment step for more than 7 minutes and not more than 15 minutes.

18. The method of producing an Al—Mg—Si-based aluminum alloy forged product as recited in claim 1 ,

wherein the quench treatment step of quenching the forged product in a water tank containing quenching water is by bringing an entire surface of the forged product into contact with the quenching water 60 seconds after the solution heat treatment step for more than 7 minutes and not more than 10 minutes.

Assignments (3)
CHANGE OF ADDRESS Recorded Feb 14, 2024
From: RESONAC CORPORATION
To: RESONAC CORPORATION
Reel/Frame 066599/0037 →
CHANGE OF NAME Recorded Apr 18, 2023
From: SHOWA DENKO K.K.
To: RESONAC PACKAGING CORPORATION
Reel/Frame 064535/0265 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2021
From: ARAYAMA, TAKUYA
To: SHOWA DENKO K.K.
Reel/Frame 055887/0881 →
Priority Claims (1)
JP 2020-042002 · Mar 11, 2020 · national
Continuity (1)
Related Publication 20210301383A1 · Sep 30, 2021