US2011277886A1PendingUtilityA1
Nitriding of niobium steel and product made thereby
Est. expiryFeb 20, 2030(~3.6 yrs left)· nominal 20-yr term from priority
Inventors:Yuxuan XieChen ZhuJulie M. CairneySimon P. RingerChris R. KillmoreFrank BarbaroJim Williams
C22C 38/06C22C 38/001C22C 38/02C23C 8/38C22C 38/12C23C 8/02C23C 8/26C22C 38/04C21D 8/02C21D 1/06C23C 8/50
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Claims
Abstract
A nitrided steel product or thin cast steel strip comprising, by weight, less than 0.25% carbon, between 0.20 and 2.0% manganese, between 0.05 and 0.50% silicon, less than 0.01% aluminum, niobium between 0.01 and about 0.20%, and between 0.01 and 0.075% nitrogen, and having a majority of the microstructure comprised of bainite and acicular ferrite, having more than 70% niobium in solid solution prior to nitriding and having yield strength between 650 MPa and 800 MPa and tensile strength between 750 MPa and 900 MPa.
Claims
exact text as granted — not AI-modified1 . A nitrided steel product comprising, by weight, less than 0.25% carbon, between 0.20 and 2.0% manganese, between 0.05 and 0.50% silicon, less than 0.01% aluminum, niobium between 0.01 and about 0.20%, and between 0.01 and 0.075% nitrogen, and having a majority of the microstructure comprised of bainite and acicular ferrite, having more than 70% niobium in solid solution prior to nitriding and having yield strength between 650 MPa and 800 MPa and tensile strength between 750 MPa and 900 MPa.
2 . The nitrided steel product as claimed in claim 1 where the niobium is less than 0.1%.
3 . The nitrided steel product as claimed in claim 1 where the nitrided steel product has yield strength of at least 40% greater than a similar steel composition without nitriding.
4 . The nitrided steel product as claimed in claim 1 where the nitrided steel product has tensile strength of at least 30% greater than a similar steel composition without nitriding.
5 . The nitrided steel product as claimed in claim 1 where the nitrogen is between 0.035 and 0.065%.
6 . The nitrided steel product as claimed in claim 1 where the nitrogen is between 0.045 and 0.065%.
7 . The nitrided steel product as claimed in claim 1 where the nitrided steel product has yield strength between 650 MPa and 750 MPa and tensile strength between 750 MPa and 850 MPa.
8 . The nitrided steel product as claimed in claim 1 where the nitrided steel product has a total elongation of less than 25% than a similar steel composition without nitriding.
9 . The nitrided steel product as claimed in claim 1 where the nitrided steel product has a total elongation of at least 1%.
10 . The nitrided steel product as claimed in claim 1 where the steel product has a total elongation of at least 6%.
11 . The nitrided steel product as claimed in claim 1 where the steel product has a total elongation of at least 10%.
12 . The nitrided steel product as claimed in claim 1 where the steel product is a thin cast steel strip of less than 3 millimeters in thickness.
13 . The nitrided steel product as claimed in claim 12 where the thin cast steel strip is hot rolled.
14 . The nitrided steel product as claimed in claim 12 where the thin cast steel strip is cold rolled.
15 . A method of preparing nitrided thin cast steel strip comprising the steps of:
assembling internally a cooled roll caster having laterally positioned casting rolls forming a nip between them, and forming a casting pool of molten steel supported on the casting rolls above the nip and confined adjacent the ends of the casting rolls by side dams, counter rotating the casting rolls to solidify metal shells on the casting rolls as the casting rolls move through the casting pool, and forming from the metal shells downwardly through the nip between the casting rolls a steel strip, and cooling the steel strip at a rate of at least 10° C. per second, coiling the cast strip and nitriding the steel strip to provide a composition comprising by weight, less than 0.25% carbon, between 0.20 and 2.0% manganese, between 0.05 and 0.50% silicon, less than 0.01% aluminum, between 0.01% and 0.20% niobium, and between 0.01 and 0.075% nitrogen, and having a majority of the microstructure comprised of bainite and acicular ferrite, having more than 70% niobium in solid solution prior to nitriding and having yield strength between 650 MPa and 800 MPa and tensile strength between 750 MPa and 900 MPa.
16 . The method of preparing nitrided thin cast steel strip as claimed in claim 16 where the steel strip as coiled may have fine oxide particles of silicon and iron distributed through the steel microstructure having an average particle size less than 50 nanometers.
17 . The method of preparing nitrided thin cast steel strip as claimed in claim 16 further comprising the steps of:
hot rolling the steel strip; and
coiling the hot rolled steel strip at a temperature between about 450 and 700° C.
18 . The method of preparing nitrided thin cast steel strip as claimed in claim 16 further comprising the steps of:
hot rolling the steel strip; and
coiling the hot rolled steel strip at a temperature less than 650° C.
19 . The method of preparing a nitrided thin cast steel strip as claimed in claim 16 where the nitriding process is selected from the group consisting of salt bath nitriding, gas nitriding, and plasma nitriding.Join the waitlist — get patent alerts
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