KR20170102989A - 고강도 냉연 박강판 및 그 제조 방법 - Google Patents
고강도 냉연 박강판 및 그 제조 방법 Download PDFInfo
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Abstract
질량% 로, C : 0.20 % 초과 0.45 % 이하, Si : 0.50 ∼ 2.50 %, Mn : 2.00 % 이상 3.50 % 미만과, 추가로 Ti : 0.005 ∼ 0.100 % 및 Nb : 0.005 ∼ 0.100 % 중에서 선택된 1 종 또는 2 종을 함유하는 조성의 강 소재에, 열간 압연과, 압하율 : 30 % 이상의 냉간 압연을 실시한 후, 추가로 800 ∼ 950 ℃ 의 온도역으로 가열한 후, 5 ℃/s 이상의 냉각 속도로 350 ∼ 500 ℃ 의 온도역의 냉각 정지 온도까지 냉각시켜, 마텐자이트상과 베이나이트상이 합계로 80 체적% 이상인 조직을 갖는 강판으로 한 후, 추가로 700 ∼ 840 ℃ 의 온도역으로 가열하고 유지한 후, 5 ∼ 50 ℃/s 의 냉각 속도로 350 ∼ 500 ℃ 의 온도역의 냉각 정지 온도까지 냉각시키고, 그 온도역에서 10 ∼ 1800 s 간 유지하는 공정을 실시한다. 이로써, 체적률로, 15 % 이상 70 % 이하의 페라이트상과, 15 % 초과 40 % 이하의 잔류 오스테나이트상과, 30 % 이하의 마텐자이트상을 함유하는 조직으로 하고, 잔류 오스테나이트상이, 평균 결정 입경 : 2.0 ㎛ 이하이고 애스펙트비가 2.0 이상인 침상 미세립으로 한다. 이로써, 제조 안정성이 우수하고, TS : 980 ㎫ 이상이며, 고연성 및 면내 이방성이 작은 고강도 냉연 박강판이 된다.
Description
Claims (6)
- 질량% 로, C : 0.20 % 초과 0.45 % 이하, Si : 0.50 ∼ 2.50 %, Mn : 2.00 % 이상 3.50 % 미만, P : 0.001 ∼ 0.100 %, S : 0.0200 % 이하, N : 0.0100 % 이하, Al : 0.01 ∼ 0.100 % 를 함유하고, 추가로, Ti : 0.005 ∼ 0.100 % 및 Nb : 0.005 ∼ 0.100 % 중에서 선택된 1 종 또는 2 종을 함유하고, 잔부 Fe 및 불가피적 불순물로 이루어지는 조성과, 체적률로, 15 % 이상 70 % 이하의 페라이트상과, 15 % 초과 40 % 이하의 잔류 오스테나이트상과, 잔부가 30 % 이하 (0 % 를 포함하지 않는다) 의 마텐자이트상, 혹은 추가로 10 % 이하 (0 % 를 포함한다) 의 펄라이트상 및/또는 탄화물로 이루어지는 조직을 갖고,
상기 잔류 오스테나이트상이, 평균 결정 입경 : 2.0 ㎛ 이하이며 또한 애스펙트비가 2.0 이상이고, 인장 강도 : 980 ㎫ 이상이고, 하기 (1) 식으로 정의되는 인장 강도의 면내 이방성 δTS 가 25 ㎫ 이하 및 하기 (2) 식으로 정의되는 전연신의 면내 이방성 δEl 이 10 % 이하인 고강도 냉연 박강판:
δTS = (TSL + TSC - 2 × TSD)/2 ‥‥ (1)
여기서, δTS : 인장 강도 TS 의 면내 이방성 (㎫), TSL : 압연 방향 (L 방향) 과 평행한 방향의 인장 강도 (㎫), TSC : 압연 방향에 수직인 방향 (C 방향) 의 인장 강도 (㎫), TSD : 압연 방향에 45°방향 (D 방향) 의 인장 강도 (㎫)
δEl = (ElL + ElC - 2 × ElD)/2 ‥‥ (2)
여기서, δEl : 전연신 El 의 면내 이방성 (%), ElL : 압연 방향 (L 방향) 과 평행한 방향의 전연신 (%), ElC : 압연 방향에 수직인 방향 (C 방향) 의 전연신 (%), ElD : 압연 방향에 45°방향 (D 방향) 의 전연신 (%). - 제 1 항에 있어서,
상기 조성에 더하여 추가로, 질량% 로, 하기 A 군 ∼ D 군 중에서 1 군 또는 2 군 이상을 함유하는 고강도 냉연 박강판:
A 군 : B : 0.0001 ∼ 0.0050 %, Cr : 0.05 ∼ 1.00 % 및 Cu : 0.05 ∼ 1.00 % 중에서 선택된 1 종 또는 2 종 이상,
B 군 : Sb : 0.002 ∼ 0.200 %, Sn : 0.002 ∼ 0.200 % 중에서 선택된 1 종 또는 2 종,
C 군 : Ta : 0.001 ∼ 0.100 %,
D 군 : Ca : 0.0005 ∼ 0.0050 %, Mg : 0.0005 ∼ 0.0050 % 및 REM : 0.0005 ∼ 0.0050 % 중에서 선택된 1 종 또는 2 종 이상. - 제 1 항 또는 제 2 항에 있어서,
표면에, 용융 아연 도금층, 합금화 용융 아연 도금층, 혹은 전기 아연 도금층 중 어느 것을 갖는 고강도 냉연 박강판. - 강 소재에, 열간 압연 공정과, 산세 공정과, 냉간 압연 공정과, 어닐링 공정을 순차적으로 실시하여 냉연 박강판으로 함에 있어서,
상기 강 소재를, 질량% 로, C : 0.20 % 초과 0.45 % 이하, Si : 0.50 ∼ 2.50 %, Mn : 2.00 % 이상 3.50 % 미만, P : 0.001 ∼ 0.100 %, S : 0.0200 % 이하, N : 0.0100 % 이하, Al : 0.01 ∼ 0.100 % 를 함유하고, 추가로, Ti : 0.005 ∼ 0.100 % 및 Nb : 0.005 ∼ 0.100 % 중에서 선택된 1 종 또는 2 종을 함유하고, 잔부 Fe 및 불가피적 불순물로 이루어지는 조성을 갖는 강 소재로 하고,
상기 열간 압연 공정을, 상기 강 소재를 가열하여, 소정 판 두께의 열연판으로 하는 공정으로 하고,
상기 냉간 압연 공정을, 상기 열연판에 압하율 : 30 % 이상의 냉간 압연을 실시하여, 소정 판 두께의 박냉연판으로 하는 공정으로 하고,
상기 어닐링 공정을, 상기 박냉연판에, 어닐링 온도 : 800 ∼ 950 ℃ 의 온도역으로 가열한 후, 어닐링 온도로부터 냉각 정지 온도까지의 평균으로 5 ℃/s 이상의 냉각 속도로 350 ∼ 500 ℃ 의 온도역의 냉각 정지 온도까지 냉각시켜, 마텐자이트상과 베이나이트상의 합계가 체적률로 80 % 이상이 되는 조직의 박냉연 어닐링판으로 하는 제 1 단 어닐링 처리와, 그 박냉연 어닐링판에 추가로, 어닐링 온도 : 700 ∼ 840 ℃ 의 온도역으로 가열하고 그 온도역에서 10 ∼ 900 s 간 유지 한 후, 어닐링 온도로부터 냉각 정지 온도까지의 평균으로 5 ∼ 50 ℃/s 의 냉각 속도로 350 ∼ 500 ℃ 의 냉각 정지 온도역의 온도까지 냉각시키고, 그 냉각 정지 온도역에서 10 ∼ 1800 s 간 유지하는 제 2 단 어닐링 처리로 이루어지는 공정으로 하는 고강도 냉연 박강판의 제조 방법. - 제 4 항에 있어서,
상기 조성에 더하여 추가로, 질량% 로, 하기 A 군 ∼ D 군 중에서 1 군 또는 2 군 이상을 함유하는 고강도 냉연 박강판의 제조 방법:
A 군 : B : 0.0001 ∼ 0.0050 %, Cr : 0.05 ∼ 1.00 % 및 Cu : 0.05 ∼ 1.00 % 중에서 선택된 1 종 또는 2 종 이상,
B 군 : Sb : 0.002 ∼ 0.200 %, Sn : 0.002 ∼ 0.200 % 중에서 선택된 1 종 또는 2 종,
C 군 : Ta : 0.001 ∼ 0.100 %,
D 군 : Ca : 0.0005 ∼ 0.0050 %, Mg : 0.0005 ∼ 0.0050 % 및 REM : 0.0005 ∼ 0.0050 % 중에서 선택된 1 종 또는 2 종 이상. - 제 4 항 또는 제 5 항에 있어서,
상기 어닐링 공정의 상기 제 2 단 어닐링 처리에 이어서, 용융 아연 도금 처리, 혹은 용융 아연 도금 처리 및 합금화 처리, 또는 전기 아연 도금 처리를 실시하는 고강도 냉연 박강판의 제조 방법.
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| EP3228722A1 (en) | 2017-10-11 |
| KR101985123B1 (ko) | 2019-05-31 |
| US10626485B2 (en) | 2020-04-21 |
| EP3228722B1 (en) | 2019-03-20 |
| JP6237900B2 (ja) | 2017-11-29 |
| CN107250409A (zh) | 2017-10-13 |
| EP3228722A4 (en) | 2017-11-08 |
| US20180057916A1 (en) | 2018-03-01 |
| MX2017010539A (es) | 2017-12-14 |
| WO2016132680A1 (ja) | 2016-08-25 |
| CN107250409B (zh) | 2019-07-05 |
| JPWO2016132680A1 (ja) | 2017-04-27 |
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