IP Library Granted Patent US 9,528,177
Granted Patent B2
US 9,528,177 · App. 13/628,808 · Granted Dec 27, 2016

Composition design and processing methods of high strength, high ductility, and high corrosion resistance FeMnAlC alloys

Inventor: Tzeng-Feng Liu (Hsinchu, TW)
Assignee: Apogean Metal Incorporation
C23C8/38C21D8/005C22C38/04C22C38/06C23C8/02C23C8/26
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Quick Facts
Patent No.
US 9,528,177
App. No.
13/628,808
Granted
Dec 27, 2016
Kind
B2
Abstract

A novel FeMnAlC alloy, comprising 23˜34 wt. % Mn, 6˜12 wt. % Al, and 1.4˜2.2 wt. % C with the balance being Fe, is disclosed. The as-quenched alloy contains an extremely high density of nano-sized (Fe,Mn) 3 AlC x carbides (κ′-carbides) formed within austenite matrix by spinodal decomposition during quenching. With almost equivalent elongation, the yield strength of the present alloys after aging is about 30% higher than that of the optimally aged FeMnAlC (C≦1.3 wt. %) alloy systems disclosed in prior arts. Moreover, the as-quenched alloy is directly nitrided at 450˜550° C., the resultant surface microhardness and corrosion resistance in 3.5% NaCl solution are far superior to those obtained previously for the optimally nitrided commercial alloy steels and stainless steels, presumably due to the formation of a nitrided layer consisting predominantly of AlN.

Claims (34)

1. A processing method for fabricating a wrought FeMnAlC alloy, the method comprising:

melting, casting, and then hot-working an alloy containing, by weight, 23 to 34 percent manganese (Mn), 6 to 12 percent aluminum (Al), 1.45 to 2.2 percent carbon (C), and balance essentially iron (Fe);

solution heat-treating said alloy at 980° C. to 1200° C. for 2 hours followed by quenching to room-temperature water or ice water; and

aging said alloy at 450° C. to 550° C.

2. A processing method for fabricating a wrought FeMnAlC alloy, the method comprising:

melting, casting, and then hot-working an alloy containing, by weight, 25 to 32 percent manganese (Mn), 7.0 to 10.5 percent aluminum (Al), 1.6 to 2.1 percent carbon (C), and balance essentially iron (Fe);

solution heat-treating said alloy at 980° C. to 1200° C. for 2 hours followed by quenching to room-temperature water or ice water; and

aging said alloy at 450° C. to 550° C.

3. A processing method for fabricating a wrought FeMnAlC alloy, the method comprising:

melting, casting, and then hot-working an alloy containing, by weight, 23 to 34 percent manganese (Mn), 6 to 12 percent aluminum (Al), 1.45 to 2.2 percent carbon (C), and balance essentially iron (Fe);

solution heat-treating said alloy at 980° C. to 1200° C. for 2 hours followed by quenching to room-temperature water or ice water; and

placing said alloy into a plasma nitriding chamber and conducting a plasma nitriding treatment at 450° C. to 550° C. to form a nitrided layer.

4. The processing method according to claim 3 , wherein the gas used for plasma nitriding treatment is consisted of 20 to 80% nitrogen and balance hydrogen, wherein the total pressure of the mixed gas in the nitriding chamber is 1 to 6 torr.

5. The processing method according to claim 3 , wherein said nitrided layer formed during nitriding treatment consists predominantly of FCC-structured AlN and traced amount of FCC-structured Fe 4 N, wherein FCC means Face-Centered Cubic.

6. A processing method for fabricating a wrought FeMnAlC alloy, the method comprising:

melting, casting, and then hot-working an alloy containing, by weight, 23 to 34 percent manganese (Mn), 6 to 12 percent aluminum (Al), 1.45 to 2.2 percent carbon (C), and balance essentially iron (Fe);

solution heat-treating said alloy at 980° C. to 1200° C. for 2 hours followed by quenching to room-temperature water or ice water; and

placing said alloy into a gas nitriding furnace and conducting a gas nitriding treatment at 450° C. to 550° C. to form a nitrided layer.

7. The processing method according to claim 6 , wherein the gas used for gas nitriding treatment is consisted of 20 to 80% ammonia and balance nitrogen.

8. The processing method according to claim 6 , wherein the gas used for gas nitriding treatment is consisted of 20 to 80% ammonia and balance nitrogen and hydrogen.

9. The processing method according to claim 6 , wherein said nitrided layer formed during nitriding treatment consists predominantly of FCC-structured AlN and traced amount of FCC-structured Fe 4 N, wherein FCC means Face-Centered Cubic.

10. A processing method for fabricating a wrought FeMnAlC alloy, the method comprising:

melting, casting, and then hot-working an alloy containing, by weight, 25 to 32 percent manganese (Mn), 7.0 to 10.5 percent aluminum (Al), 1.6 to 2.1 percent carbon (C), and balance essentially iron (Fe);

solution heat-treating said alloy at 980° C. to 1200° C. for 2 hours followed by quenching to room-temperature water or ice water; and

placing said alloy into a plasma nitriding chamber and conducting a plasma nitriding treatment at 450° C. to 550° C. to form a nitrided layer.

11. The processing method according to claim 10 , wherein the gas used for plasma nitriding treatment is consisted of 20 to 80% nitrogen and balance hydrogen, wherein the total pressure of the mixed gas in the nitriding chamber is 1 to 6 torr.

12. The processing method according to claim 10 , wherein said nitrided layer formed during nitriding treatment consists predominantly of FCC-structured AlN and traced amount of FCC-structured Fe 4 N, wherein FCC means Face-Centered Cubic.

13. A processing method for fabricating a wrought FeMnAlC alloy, the method comprising:

melting, casting, and then hot-working an alloy containing, by weight, 25 to 32 percent manganese (Mn), 7.0 to 10.5 percent aluminum (Al), 1.6 to 2.1 percent carbon (C), and balance essentially iron (Fe);

solution heat-treating said alloy at 980° C. to 1200° C. for 2 hours followed by quenching to room-temperature water or ice water; and

placing said alloy into a gas nitriding furnace and conducting a gas nitriding treatment at 450° C. to 550° C. to form a nitrided layer.

14. The processing method according to claim 13 , wherein the gas used for gas nitriding treatment is consisted of 20 to 80% ammonia and balance nitrogen.

15. The processing method according to claim 13 , wherein the gas used for gas nitriding treatment is consisted of 20 to 80% ammonia and balance nitrogen and hydrogen.

16. The processing method according to claim 13 , wherein said nitrided layer formed during nitriding treatment consists predominantly of FCC-structured MN and traced amount of FCC-structured Fe 4 N, wherein FCC means Face-Centered Cubic.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2014
From: NATIONAL CHIAO TUNG UNIVERSITY
To: APOGEAN METAL INCORPORATION
Reel/Frame 032044/0125 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2012
From: LIU, TZENG-FENG
To: NATIONAL CHIAO TUNG UNIVERSITY
Reel/Frame 029038/0846 →
Priority Claims (1)
TW 100135434 A · Sep 29, 2011 · national
Continuity (1)
Related Publication 20130081740A1 · Apr 4, 2013