CN103526000A - Preparation method of low-carbon high-manganese oriented silicon steel sheet - Google Patents
Preparation method of low-carbon high-manganese oriented silicon steel sheet Download PDFInfo
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- CN103526000A CN103526000A CN201310417217.8A CN201310417217A CN103526000A CN 103526000 A CN103526000 A CN 103526000A CN 201310417217 A CN201310417217 A CN 201310417217A CN 103526000 A CN103526000 A CN 103526000A
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Abstract
The invention discloses a preparation method of a low-carbon high-manganese oriented silicon steel sheet. The silicon steel sheet comprises the following elemets in percentage by weight: at most 0.003% of C, 2.0-2.5% of Si, 1.6-2.2% of Mn, 0.008-0.014% of Als, 0.3-0.5% of Cu, 0.15-0.25% of Sb, 0.05-0.08% of Zr, 0.03-0.06% of Nb, 0.02-0.03% of Ti, 0.01-0.02% of Bi, 0.006-0.012% of Sr, 0.002-0.004% of B, 0.01-0.015% of La, 0.008-0.012% of Pr, 0.005-0.01% of Lu, at most 0.0025% of N, at most 0.05% of P, at most 0.005% of S and the balance of Fe. The C content is lowered, and the Mn content is enhanced, thereby improving the plasticity of the casting blank, hot-rolled plate and cold-rolled plate, reducing the cracks and ruptures formed in the processing, enhancing the yield, reducing the decarburization amount of recrystallization, lowering the consumption and enhancing the production efficiency.
Description
Technical field
The present invention relates to a kind of preparation method of low-carbon high-manganese oriented siliconized plate, belong to ferrous metal manufacture field.
Background technology
At present, oriented silicon steel is in process of production in order to effectively reduce finished product iron loss, process annealing temperature or finished products temperature while improving Hot Rolled Plate Normalizing temperature, secondary cold-rolling, but normalizing temperature or process annealing excess Temperature can cause steel plate excessively crisp, cold rolling performance worsens, lumber recovery reduces, and cost raises; Finished products excess Temperature not only to furnace equipment particularly furnace bottom roll etc. require very highly, and easily cause finished steel plate surface oxidation.
Summary of the invention
The object of the present invention is to provide that a kind of normalizing temperature, process annealing temperature and final high temperature anneal temperature are low, the preparation method of once cold rolling, iron loss is low, lumber recovery is high, surface quality is good, cost is low low-carbon high-manganese oriented siliconized plate.
The technical solution used in the present invention is as follows:
A kind of preparation method of low-carbon high-manganese oriented siliconized plate, it is characterized in that, comprise the following steps: according to clean steel process, smelt, controlling the molten steel ultimate constituent and weight percent is: C≤0.003, Si 2.0-2.5, Mn 1.6-2.2, Als 0.008-0.014, Cu 0.3-0.5, Sb 0.15-0.25, Zr 0.05-0.08, Nb 0.03-0.06, Ti 0.02-0.03, Bi 0.01-0.02, Sr 0.006-0.012, B 0.002-0.004, La 0.01-0.015, Pr 0.008-0.012, Lu 0.005-0.01, N≤0.0025, P≤0.05, S≤0.005, all the other are Fe, and continuous casting becomes base, strand is heated to 1150-1250 ℃, and insulation 0.5-1h, then carries out hot rolling, 820-860 ℃ of finish to gauge, 500-550 ℃ is batched, and after having batched, with 100-120 ℃/h, is cooled to 320-350 ℃, insulation 1-2h, then with 70-80 ℃/h, be cooled to 160-180 ℃, insulation 3-4h, air cooling is warming up to 240-280 ℃ with 80-100 ℃/h to room temperature, insulation 0.5-1h, then with 150-180 ℃/h, be warming up to 580-600 ℃, insulation 20-30min, with 90-110 ℃/h, be warming up to 820-860 ℃ again, insulation 3-5min, after pickling, carrying out cold rollingly, is the 25%N of-20~-25 ℃ at dew point by cold-reduced sheet
2+ 75%H
2in atmosphere, to be greater than the speed of 300 ℃/min, to be rapidly heated 910-930 ℃ and to carry out primary recrystallization annealing, annealing time is 1-2min, then with 200-250 ℃/h, be cooled to 420-460 ℃, insulation 0.5-1h, with 130-160 ℃/h, be cooled to 150-180 ℃ again, insulation 2-3h, air cooling to electrostatic method after room temperature is coated with Al
2o
3, at 75%N
2+ 25H
2in atmosphere, carry out secondary recrystallization annealing at 880-900 ℃ temperature, annealing time is 18-24h, then at 100%H
2in atmosphere, be warmed up to 950-1000 ℃ and purify annealing, annealing time 18-24h, air cooling, coating, finishing get product.
Beneficial effect of the present invention:
The present invention, by reducing the content of C, the content of raising Mn, not only can improve the plasticity of strand, hot-rolled sheet, cold-reduced sheet, reduces the crackle and the fracture that are processed to form, improve lumber recovery, can also reduce the decarburized amount of recrystallize, reduce and consume, enhance productivity; The feature that the present invention also utilizes La, Pr, Lu rare earth element to purify inclusion in steel reduces heat treatment process temperature, adopts lower normalizing temperature, process annealing temperature and finished products temperature can obtain the siliconized plate that iron loss is lower.
Embodiment
a kind of preparation method of low-carbon high-manganese oriented siliconized plate, comprise the following steps: according to clean steel process, smelt, controlling the molten steel ultimate constituent and weight percent is: C≤0.003, Si 2.0-2.5, Mn 1.6-2.2, Als 0.008-0.014, Cu 0.3-0.5, Sb 0.15-0.25, Zr 0.05-0.08, Nb 0.03-0.06, Ti 0.02-0.03, Bi 0.01-0.02, Sr 0.006-0.012, B 0.002-0.004, La 0.01-0.015, Pr 0.008-0.012, Lu 0.005-0.01, N≤0.0025, P≤0.05, S≤0.005, all the other are Fe, and continuous casting becomes base, strand is heated to 1200 ℃, and insulation 0.5h, then carries out hot rolling, 840 ℃ of finish to gauges, 520 ℃ are batched, and after having batched, with 120 ℃/h, are cooled to 320 ℃, insulation 2h, then with 80 ℃/h, be cooled to 160 ℃, insulation 4h, air cooling is warming up to 270 ℃ with 100 ℃/h to room temperature, insulation 0.5h, then with 160 ℃/h, be warming up to 600 ℃, insulation 20min, with 110 ℃/h, be warming up to 850 ℃ again, insulation 3min, after pickling, carrying out cold rollingly, is the 25%N of-25 ℃ at dew point by cold-reduced sheet
2+ 75%H
2in atmosphere, with the speed of 350 ℃/min, be rapidly heated 920 ℃ and carry out primary recrystallization annealing, annealing time is 2min, then with 240 ℃/h, is cooled to 430 ℃, insulation 1h, then be cooled to 160 ℃ with 150 ℃/h, and insulation 3h, air cooling to electrostatic method after room temperature is coated with Al
2o
3, at 75%N
2+ 25H
2in atmosphere, carry out secondary recrystallization annealing at 880 ℃ of temperature, annealing time is 24h, then at 100%H
2in atmosphere, be warmed up to 980 ℃ and purify annealing, annealing time 24h, air cooling, coating, finishing get product.
After testing, the magnetic of this siliconized plate is: B
10=1.924T, P
17/50=1.032W/kg.
Claims (1)
1. the preparation method of a low-carbon high-manganese oriented siliconized plate, it is characterized in that, comprise the following steps: according to clean steel process, smelt, controlling the molten steel ultimate constituent and weight percent is: C≤0.003, Si 2.0-2.5, Mn 1.6-2.2, Als 0.008-0.014, Cu 0.3-0.5, Sb 0.15-0.25, Zr 0.05-0.08, Nb 0.03-0.06, Ti 0.02-0.03, Bi 0.01-0.02, Sr 0.006-0.012, B 0.002-0.004, La 0.01-0.015, Pr 0.008-0.012, Lu 0.005-0.01, N≤0.0025, P≤0.05, S≤0.005, all the other are Fe, and continuous casting becomes base, strand is heated to 1150-1250 ℃, and insulation 0.5-1h, then carries out hot rolling, 820-860 ℃ of finish to gauge, 500-550 ℃ is batched, and after having batched, with 100-120 ℃/h, is cooled to 320-350 ℃, insulation 1-2h, then with 70-80 ℃/h, be cooled to 160-180 ℃, insulation 3-4h, air cooling is warming up to 240-280 ℃ with 80-100 ℃/h to room temperature, insulation 0.5-1h, then with 150-180 ℃/h, be warming up to 580-600 ℃, insulation 20-30min, with 90-110 ℃/h, be warming up to 820-860 ℃ again, insulation 3-5min, after pickling, carrying out cold rollingly, is the 25%N of-20~-25 ℃ at dew point by cold-reduced sheet
2+ 75%H
2in atmosphere, to be greater than the speed of 300 ℃/min, to be rapidly heated 910-930 ℃ and to carry out primary recrystallization annealing, annealing time is 1-2min, then with 200-250 ℃/h, be cooled to 420-460 ℃, insulation 0.5-1h, with 130-160 ℃/h, be cooled to 150-180 ℃ again, insulation 2-3h, air cooling to electrostatic method after room temperature is coated with Al
2o
3, at 75%N
2+ 25H
2in atmosphere, carry out secondary recrystallization annealing at 880-900 ℃ temperature, annealing time is 18-24h, then at 100%H
2in atmosphere, be warmed up to 950-1000 ℃ and purify annealing, annealing time 18-24h, air cooling, coating, finishing get product.
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104217844A (en) * | 2014-09-03 | 2014-12-17 | 南阳市力矩软磁材料科技有限公司 | Silicon steel sheet with low iron loss, low noise, high magnetic flux and high laminating speed and preparation method thereof |
CN114134423A (en) * | 2021-12-02 | 2022-03-04 | 东北大学 | Ultrashort-flow rare earth oriented silicon steel and preparation method thereof |
CN118638989A (en) * | 2024-08-16 | 2024-09-13 | 鞍钢股份有限公司 | Method for realizing continuous annealing treatment of unoriented high-grade high-silicon thin strip |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1160915A (en) * | 1996-03-30 | 1997-10-01 | 川崎制铁株式会社 | Method for producing unidirectional silicon steel plate with excellent magnetic character |
CN1188811A (en) * | 1996-10-21 | 1998-07-29 | 川崎制铁株式会社 | Iron loss low, strain characteristic resistant and practical characteristic good grain orientation electromagnet steel plate and its manufacture method |
CN101180411A (en) * | 2005-05-23 | 2008-05-14 | 新日本制铁株式会社 | Grain oriented electromagnetic steel sheet having excellent film adhesion and process for producing the same |
CN102477483A (en) * | 2010-11-26 | 2012-05-30 | 宝山钢铁股份有限公司 | Method for producing oriented silicon steel with excellent magnetic property |
-
2013
- 2013-09-13 CN CN201310417217.8A patent/CN103526000A/en active Pending
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1160915A (en) * | 1996-03-30 | 1997-10-01 | 川崎制铁株式会社 | Method for producing unidirectional silicon steel plate with excellent magnetic character |
CN1188811A (en) * | 1996-10-21 | 1998-07-29 | 川崎制铁株式会社 | Iron loss low, strain characteristic resistant and practical characteristic good grain orientation electromagnet steel plate and its manufacture method |
CN101180411A (en) * | 2005-05-23 | 2008-05-14 | 新日本制铁株式会社 | Grain oriented electromagnetic steel sheet having excellent film adhesion and process for producing the same |
CN102477483A (en) * | 2010-11-26 | 2012-05-30 | 宝山钢铁股份有限公司 | Method for producing oriented silicon steel with excellent magnetic property |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104217844A (en) * | 2014-09-03 | 2014-12-17 | 南阳市力矩软磁材料科技有限公司 | Silicon steel sheet with low iron loss, low noise, high magnetic flux and high laminating speed and preparation method thereof |
CN114134423A (en) * | 2021-12-02 | 2022-03-04 | 东北大学 | Ultrashort-flow rare earth oriented silicon steel and preparation method thereof |
CN118638989A (en) * | 2024-08-16 | 2024-09-13 | 鞍钢股份有限公司 | Method for realizing continuous annealing treatment of unoriented high-grade high-silicon thin strip |
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Application publication date: 20140122 |