Nitriding treatment method for steel component
Abstract
The invention is a nitriding treatment method for a steel component including at least two nitriding treatment steps, i.e., a first nitriding treatment step in which a nitriding treatment is performed to a steel component under a nitriding gas atmosphere of a first nitriding potential, and a second nitriding treatment step in which another nitriding treatment is performed to the steel component under another nitriding gas atmosphere of a second nitriding potential lower than the first nitriding potential, after the first nitriding treatment step. The first nitriding treatment step and the second nitriding treatment step is performed at a temperature within a range of 500° C. to 590° C. The first nitriding potential is a value within a range of 0.300 to 10.000. The second nitriding potential is a value within a range of 0.253 to 0.600.
Claims
exact text as granted — not AI-modified1 . A nitriding treatment method for a steel component, comprising at least two nitriding treatment steps, i.e.,
a first nitriding treatment step in which a nitriding treatment is performed to a steel component under a nitriding gas atmosphere of a first nitriding potential, and a second nitriding treatment step in which another nitriding treatment is performed to the steel component under another nitriding gas atmosphere of a second nitriding potential lower than the first nitriding potential, after the first nitriding treatment step, wherein the first nitriding treatment step is performed at a temperature within a range of 500° C. to 590° C., the second nitriding treatment step is also performed at a temperature within a range of 500° C. to 590° C., the first nitriding potential is a value within a range of 0.300 to 10.000, the second nitriding potential is a value within a range of 0.253 to 0.600, a nitride compound layer consisting of a γ′ phase, or an ε phase, or mixture of a γ′ phase and an ε phase, is generated during the first nitriding treatment step, and a γ′ phase is deposited in the nitride compound layer during the second nitriding treatment step.
2 . The nitriding treatment method according to claim 1 ,
the first nitriding treatment step and the second nitriding treatment step are performed in sequence in a same thermal processing furnace, which is a batch type of thermal processing furnace, three types of gases, which are an NH 3 gas, an AX gas and an N 2 gas, are used in the first nitriding treatment step, a nitriding potential during the first nitriding treatment step is controlled to be close to the first nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the three types of gases constant, two types of gases, which are an NH 3 gas and an AX gas, are used in the second nitriding treatment step, and a nitriding potential during the second nitriding treatment step is controlled to be close to the second nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the two types of gases constant.
3 . The nitriding treatment method according to claim 1 ,
the first nitriding treatment step and the second nitriding treatment step are performed in sequence in a same thermal processing furnace, which is a one-chamber type of thermal processing furnace, three type of gases, which are an NH 3 gas, an AX gas and an N 2 gas, are used in the first nitriding treatment step, a nitriding potential during the first nitriding treatment step is controlled to be close to the first nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the three types of gases constant, two types of gases, which are an NH 3 gas and an AX gas, are used in the second nitriding treatment step, and a nitriding potential during the second nitriding treatment step is controlled to be close to the second nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the two types of gases constant.
4 . The nitriding treatment method according to claim 1 ,
the first nitriding treatment step and the second nitriding treatment step are performed in sequence in a same thermal processing furnace, which is a batch type of thermal processing furnace, two types of gases, which are an NH 3 gas and an AX gas, are used in the first nitriding treatment step, a nitriding potential during the first nitriding treatment step is controlled to be close to the first nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the three types of gases constant, two types of gases, which are an NH 3 gas and an AX gas, are used in the second nitriding treatment step, and a nitriding potential during the second nitriding treatment step is controlled to be close to the second nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the two types of gases constant.
5 . The nitriding treatment method according to claim 1 ,
the first nitriding treatment step and the second nitriding treatment step are performed in sequence in a same thermal processing furnace, which is a one-chamber type of thermal processing furnace, two types of gases, which are an NH 3 gas and an AX gas, are used in the first nitriding treatment step, a nitriding potential during the first nitriding treatment step is controlled to be close to the first nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the three types of gases constant, two types of gases, which are an NH 3 gas and an AX gas, are used in the second nitriding treatment step, and a nitriding potential during the second nitriding treatment step is controlled to be close to the second nitriding potential by changing an introduction amount of each of the NH 3 gas and the AX gas while keeping a total introduction amount of the two types of gases constant.
6 . The nitriding treatment method according to claim 1 ,
the first nitriding treatment step and the second nitriding treatment step are performed in sequence in a same thermal processing furnace, which is a one-chamber type of thermal processing furnace, two types of gases, which are an NH 3 gas and an AX gas, are used in the first nitriding treatment step, a nitriding potential during the first nitriding treatment step is controlled to be close to the first nitriding potential by changing an introduction amount of one of the NH 3 gas and the AX gas while keeping an introduction amount of the other of the NH 3 gas and the AX gas constant, two types of gases, which are an NH 3 gas and an AX gas, are used in the second nitriding treatment step, and a nitriding potential during the second nitriding treatment step is controlled to be close to the second nitriding potential by changing an introduction amount of one of the NH 3 gas and the AX gas while keeping an introduction amount of the other of the NH 3 gas and the AX gas constant.
7 . The nitriding treatment method according to claim 1 ,
the first nitriding treatment step and the second nitriding treatment step are performed in sequence in a same thermal processing furnace, which is a one-chamber type of thermal processing furnace, three types of gases, which are an NH 3 gas, an AX gas and an N 2 gas, are used in the first nitriding treatment step, a nitriding potential during the first nitriding treatment step is controlled to be close to the first nitriding potential by changing an introduction amount of one of the NH 3 gas and the AX gas while keeping an introduction amount of the other of the NH 3 gas and the AX gas constant, two types of gases, which are an NH 3 gas and an AX gas, are used in the second nitriding treatment step, and a nitriding potential during the second nitriding treatment step is controlled to be close to the second nitriding potential by changing an introduction amount of one of the NH 3 gas and the AX gas while keeping an introduction amount of the other of the NH 3 gas and the AX gas constant.
8 . The nitriding treatment method according to claim 1 ,
wherein a time for which the first nitriding treatment step is performed is longer than a time for which the second nitriding treatment step is performed.
9 . The nitriding treatment method according to claim 2 ,
a time for which the first nitriding treatment step is performed is longer than a time for which the second nitriding treatment step is performed.
10 . The nitriding treatment method according to claim 3 ,
a time for which the first nitriding treatment step is performed is longer than a time for which the second nitriding treatment step is performed.
11 . The nitriding treatment method according to claim 4 ,
wherein a time for which the first nitriding treatment step is performed is longer than a time for which the second nitriding treatment step is performed.
12 . The nitriding treatment method according to claim 5 ,
wherein a time for which the first nitriding treatment step is performed is longer than a time for which the second nitriding treatment step is performed.
13 . The nitriding treatment method according to claim 6 ,
wherein a time for which the first nitriding treatment step is performed is longer than a time for which the second nitriding treatment step is performed.
14 . The nitriding treatment method according to claim 7 ,
wherein a time for which the first nitriding treatment step is performed is longer than a time for which the second nitriding treatment step is performed.Join the waitlist — get patent alerts
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