KR20170052681A - 고탄소 강판 및 그 제조 방법 - Google Patents
고탄소 강판 및 그 제조 방법 Download PDFInfo
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Abstract
Description
도 2는, 페라이트의 미시적인 마찰 계수와 금형 또는 고탄소 강판에 흠집이 발생할 때까지의 프레스 횟수와의 관계를 도시하는 도면이다.
도 3a는, 미시적인 마찰 계수를 측정하기 전의 고탄소 강판의 표면을 나타내는 현미경 사진이다.
도 3b는, 미시적인 마찰 계수를 측정한 후의 고탄소 강판의 표면을 나타내는 현미경 사진이다.
도 4는, 열간 압연으로부터 냉각까지의 사이의 온도 변화를 도시하는 모식도이다.
도 5a는, 시점 tA에 있어서의 조직을 도시하는 모식도이다.
도 5b는, 시점 tB에 있어서의 조직을 도시하는 모식도이다.
도 5c는, 시점 tC에 있어서의 조직을 도시하는 모식도이다.
도 5d는, 시점 tD에 있어서의 조직을 도시하는 모식도이다.
도 5e는, 시점 tE에 있어서의 조직을 도시하는 모식도이다.
도 6a는, 슬래브 가열의 온도가 1150℃ 초과인 경우의 조직을 도시하는 도면이다.
도 6b는, 슬래브 가열의 온도가 1000℃ 미만인 경우의 조직을 도시하는 도면이다.
도 6c는, 어닐링의 유지 온도가 730℃ 미만인 경우의 조직을 도시하는 도면이다.
도 6d는, 어닐링의 유지 온도가 770℃ 초과인 경우 또는 어닐링의 유지 시간이 60 시간 초과인 경우의 조직을 도시하는 도면이다.
도 6e는, 어닐링의 유지 온도가 3 시간 미만인 경우의 조직을 도시하는 도면이다.
도 6f는, 냉각 속도가 1℃/hr 미만인 경우의 조직을 도시하는 도면이다.
도 6g는, 냉각 속도가 60℃/hr 초과인 경우의 조직을 도시하는 도면이다.
도 7은, 제1 실험 또는 제3 실험에 있어서의 실시예의 일부에 관한 페라이트의 미시적인 마찰 계수와 B 함유량의 관계를 도시하는 도면이다.
Claims (4)
- 질량%로,
C : 0.30% 내지 0.70%,
Si : 0.07% 내지 1.00%,
Mn : 0.20% 내지 3.00%,
Ti : 0.010% 내지 0.500%,
Cr : 0.01% 내지 1.50%,
B : 0.0004% 내지 0.0035%,
P : 0.025% 이하,
Al : 0.100% 이하,
S : 0.0100% 이하,
N : 0.010% 이하,
Cu : 0.500% 이하,
Nb : 0.000% 내지 0.500%,
Mo : 0.000% 내지 0.500%,
V : 0.000% 내지 0.500%,
W : 0.000% 내지 0.500%,
Ta : 0.000% 내지 0.500%,
Ni : 0.000% 내지 0.500%,
Mg : 0.000% 내지 0.500%,
Ca : 0.000% 내지 0.500%,
Y : 0.000% 내지 0.500%,
Zr : 0.000% 내지 0.500%,
La : 0.000% 내지 0.500%,
Ce : 0.000% 내지 0.500%, 또한
잔부 : Fe 및 불순물
로 나타나는 화학 조성을 갖고,
시멘타이트의 구상화율 : 80% 이상, 또한
시멘타이트의 평균 입경 : 0.3㎛ 내지 2.2㎛
로 나타나는 조직을 갖고,
표면에 있어서의 페라이트의 미시적인 마찰 계수가 0.5 미만인 것을 특징으로 하는, 고탄소 강판. - 제1항에 있어서, 상기 화학 조성에 있어서,
Nb : 0.001% 내지 0.500%,
Mo : 0.001% 내지 0.500%,
V : 0.001% 내지 0.500%,
W : 0.001% 내지 0.500%,
Ta : 0.001% 내지 0.500%,
Ni : 0.001% 내지 0.500%,
Mg : 0.001% 내지 0.500%,
Ca : 0.001% 내지 0.500%,
Y : 0.001% 내지 0.500%,
Zr : 0.001% 내지 0.500%,
La : 0.001% 내지 0.500%, 또는
Ce : 0.001% 내지 0.500%,
또는 이들의 임의의 조합이 성립되는 것을 특징으로 하는, 고탄소 강판. - 슬래브의 열간 압연을 행해서 열연 강판을 취득하는 공정과,
상기 열연 강판의 산 세정을 행하고,
상기 산 세정 후에, 상기 열연 강판의 어닐링을 행하는 공정을 갖고,
상기 슬래브는,
질량%로,
C : 0.30% 내지 0.70%,
Si : 0.07% 내지 1.00%,
Mn : 0.20% 내지 3.00%,
Ti : 0.010% 내지 0.500%,
Cr : 0.01% 내지 1.50%,
B : 0.0004% 내지 0.0035%,
P : 0.025% 이하,
Al : 0.100% 이하,
S : 0.0100% 이하,
N : 0.010% 이하,
Cu : 0.500% 이하,
Nb : 0.000% 내지 0.500%,
Mo : 0.000% 내지 0.500%,
V : 0.000% 내지 0.500%,
W : 0.000% 내지 0.500%,
Ta : 0.000% 내지 0.500%,
Ni : 0.000% 내지 0.500%,
Mg : 0.000% 내지 0.500%,
Ca : 0.000% 내지 0.500%,
Y : 0.000% 내지 0.500%,
Zr : 0.000% 내지 0.500%,
La : 0.000% 내지 0.500%,
Ce : 0.000% 내지 0.500%, 또한
잔부 : Fe 및 불순물
로 나타나는 화학 조성을 갖고,
상기 열간 압연을 행하는 공정에서는,
슬래브 가열의 온도를 1000℃ 이상 1150℃ 미만으로 하고,
마무리 압연의 온도를 830℃ 이상 950℃ 이하로 하고,
권취의 온도를 450℃ 이상 700℃ 이하로 하고,
상기 어닐링을 행하는 공정은,
상기 열연 강판을 730℃ 이상 770℃ 이하의 온도로 3 시간 이상 60 시간 이하 유지하는 공정과,
이어서, 상기 열연 강판을 1℃/hr 이상 60℃/hr 이하의 냉각 속도로 650℃까지 냉각하는 공정을 갖는 것을 특징으로 하는, 고탄소 강판의 제조 방법. - 제3항에 있어서, 상기 화학 조성에 있어서,
Nb : 0.001% 내지 0.500%,
Mo : 0.001% 내지 0.500%,
V : 0.001% 내지 0.500%,
W : 0.001% 내지 0.500%,
Ta : 0.001% 내지 0.500%,
Ni : 0.001% 내지 0.500%,
Mg : 0.001% 내지 0.500%,
Ca : 0.001% 내지 0.500%,
Y : 0.001% 내지 0.500%,
Zr : 0.001% 내지 0.500%,
La : 0.001% 내지 0.500%, 또는
Ce : 0.001% 내지 0.500%,
또는 이들의 임의의 조합이 성립되는 것을 특징으로 하는, 고탄소 강판의 제조 방법.
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| PCT/JP2014/077544 WO2016059701A1 (ja) | 2014-10-16 | 2014-10-16 | 高炭素鋼板及びその製造方法 |
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| CN112575242B (zh) * | 2019-09-27 | 2022-06-24 | 宝山钢铁股份有限公司 | 一种合金结构用钢及其制造方法 |
| JP2022059872A (ja) * | 2020-10-02 | 2022-04-14 | 日本製鉄株式会社 | 鋼材摺動部品及び鋼材摺動部品の製造方法 |
| EP4317484A4 (en) * | 2021-03-31 | 2025-08-13 | Jfe Steel Corp | COLD-ROLLED STEEL SHEET AND METHOD FOR MANUFACTURING COLD-ROLLED STEEL SHEET |
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- 2014-10-16 PL PL14903999T patent/PL3208357T3/pl unknown
- 2014-10-16 EP EP14903999.2A patent/EP3208357B1/en active Active
- 2014-10-16 CN CN201480082444.2A patent/CN107075625B/zh active Active
- 2014-10-16 US US15/513,130 patent/US20170306434A1/en not_active Abandoned
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| EP3208357A4 (en) | 2018-04-25 |
| EP3208357B1 (en) | 2020-05-13 |
| ES2807553T3 (es) | 2021-02-23 |
| WO2016059701A1 (ja) | 2016-04-21 |
| EP3208357A1 (en) | 2017-08-23 |
| JP6388034B2 (ja) | 2018-09-12 |
| MX2017004601A (es) | 2017-07-10 |
| US20170306434A1 (en) | 2017-10-26 |
| CN107075625A (zh) | 2017-08-18 |
| KR101919262B1 (ko) | 2018-11-15 |
| BR112017007275A2 (pt) | 2017-12-26 |
| CN107075625B (zh) | 2019-07-09 |
| PL3208357T3 (pl) | 2020-11-02 |
| JPWO2016059701A1 (ja) | 2017-08-03 |
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