CN103203369A - Plate shape control method of hot rolled high-strength thin strip steel - Google Patents

Plate shape control method of hot rolled high-strength thin strip steel Download PDF

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Publication number
CN103203369A
CN103203369A CN2013100981756A CN201310098175A CN103203369A CN 103203369 A CN103203369 A CN 103203369A CN 2013100981756 A CN2013100981756 A CN 2013100981756A CN 201310098175 A CN201310098175 A CN 201310098175A CN 103203369 A CN103203369 A CN 103203369A
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Prior art keywords
roll
plate shape
finishing mill
strip steel
shape
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Inventor
于斌
杨旭
郭宝安
何安瑞
张吉富
马荣材
任俊威
乔磊
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Angang Steel Co Ltd
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Angang Steel Co Ltd
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Abstract

The invention provides a plate shape control method of hot rolled high-strength thin strip steel. A work roll shifting mill is used as a finishing mill group; the adopted roll shape of a work roll is a cosine roll type curve; a varying contact supporting roll shape technology is adopted by the roll shape of a supporting roll; a high-frequency large-stroke roll shifting strategy is performed; the proportion convexity of the strip steel reaches a set target proportion convexity through front four finishing mills; a rear mill keeps a constant proportion convexity; the plate shape straightness target value is 0-5 IU; an edge masking technology is adopted by laminar cooling; and the strip steel rolling rhythm is controlled to be 135-145 s/roll. Through integral design of a plate shape control system of type configuration, roll shape design, process system, model control and the like, the problems of large fluctuation of the plate shape of the high-strength thin strip steel and uncontrolled composite wave shape in a rolling process are solved, and the straightness of the hot rolled high-strength thin strip steel can be controlled at a high standard level within 20 IU, so that the plate shape quality of the high-strength thin strip steel is greatly improved and the disqualification rate is reduced.

Description

The board-shape control method of the high-strength strip steel of a kind of hot rolling
Technical field
The invention belongs to the steel rolling process technical field, particularly the board-shape control method of the high-strength strip steel of a kind of hot rolling.
Background technology
So-called high strength strip steel refers to the high-strength strip steel of hot rolling of thickness≤2.0mm, yield strength 〉=550MPa.Because high strength strip steel has intensity height, in light weight, series of advantages such as material consumption is few, saving cost, be the economic class steel of a kind of " environmental protection ", sustainable development, therefore be widely used in the industry such as automobile, container at home and abroad.Yet, along with improving constantly of industrial automation level, though its thickness of high strength strip steel, width, structure property etc. can both satisfy user's demand, the problem that palette shape does not conform to but becomes increasingly conspicuous, particularly not controlled problems such as big (glacing flatness fluctuation range 124-310IU), compound shape wave of belt plate shape fluctuation, non-specification shape wave have become a big difficult point of plate shape control in the high strength strip steel rolling, and are seriously restricting the strip shape quality qualification rate of high-strength strip steel.
Summary of the invention
The object of the present invention is to provide the board-shape control method of the high-strength strip steel of a kind of hot rolling, namely by plat control systems such as type configuration, roll design, process system and control model being carried out the conformability design, solve in the operation of rolling not controlled problems such as high-strength strip steel plate shape fluctuation is big, compound shape wave, thereby effectively improve high-strength strip steel plate shape quality.
For this reason, the technical solution taked of the present invention is:
The board-shape control method of the high-strength strip steel of a kind of hot rolling is characterized in that, for the high-strength strip steel of the hot rolling of thickness≤2.0mm, yield strength 〉=550MPa, the concrete grammar of its plate shape control is:
1, the hot fine rolling unit is from first finishing mill F 1To last frame finishing mill F nAll adopting the work roll shifting milling train is WRS, and n is continuous hot-rolling mill frame sum;
2, working roller adopts the cosine roller curve, and its working roller curve equation is:
C w ( y ) = C 2 cos y s l w ÷ ÷ cos s 2 ÷ y ( l w 2 , l w 2 )
In the formula, C is the working roller amplitude, μ m; sBe cosine function cornerite variable; l wBe working roll barrel length, mm; Y is for being the axial coordinate of initial point with body of roll mid point;
Each frame finishing mill working roller designs according to the constant principle of band steel ratio convexity;
It is the VCR technology that the backing roll roll shape adopts change contact backing roll roll forming, and its backing roll roller curve equation is;
C b(y)=a 0+a 1*y+a 2*y 2+a 3*y 3+a 4*y 4+a 5*y 5+a 6*y 6
In the formula, a 0, a 1, a 2, a 3, a 4, a 5, a 6Be each time of backing roll roller curve coefficient; Y is for being the axial coordinate of initial point with the arbitrary end of the body of roll;
3, the big stroke roll shifting of high-frequency strategy is adopted in roll shifting, roll shifting step-length 10-15mm/ time, and roll shifting frequency 1-2 volume/time, roll shifting stroke 100-150mm;
4, reasonable distribution mill load, first finishing mill F 1With second finishing mill F 2Adopt and depress reduction ratio 49%-54%, the 3rd finishing mill F greatly 3To n-1 frame finishing mill F N-1Reduction ratio remains on 25-40%, last frame F nReduction ratio remains on 8-10%;
5, the control of plate shape is taked at F 1-F 4Finishing mill makes band steel ratio convexity reach target setting ratio convexity, at F 5-F nFinishing mill keeps constant proportion example convexity, and the assurance strip profile and flatness is controlled all the time in good area; And carry out work roll bending force feedback control according to actual measurement strip profile and flatness and convexity deviation signal, guarantee plate shape and rolling stability between poised state between frame and frame; Simultaneously, with the fluctuation of draught pressure, make bending roller force make corresponding compensatory adjustment, keep the carrying roll gap shape, avoid owing to rolling temperature, supplied materials varied in thickness cause the draught pressure fluctuation;
6, plate shape glacing flatness desired value span is at 0-5IU, with the influence of compensation temperature to belt plate shape;
7, the edge-masking technology is adopted in the laminar flow cooling, and the strip edge portion scope of blocking is 100-150mm;
8, the control of belt steel rolling rhythm is rolled up at 135-145s/.
Described seven finishing mill working roller parameters according to the constant principle design of band steel ratio convexity are as shown in table 1:
Seven finishing mill working rollers of table 1 parameter list
Figure BDA00002963169800031
As shown in table 2 for each each time of backing roll roller curve of seven finishing mills coefficient:
Each time of seven finishing mill backing rolls of table 2 roll shape parameter list
Figure BDA00002963169800032
Beneficial effect of the present invention is:
The present invention is by carrying out the conformability design to plat control systems such as type configuration, roll design, process system and control models, solved the not controlled problem of high-strength strip steel plate shape big, the compound shape wave of fluctuation in the operation of rolling, make the high-strength strip steel of hot rolling glacing flatness can be controlled to 20IU with interior high standard level, thereby greatly improved high-strength strip steel plate shape quality, reduced disqualification rate.
Description of drawings
Fig. 1 is seven finishing mill technology arrangement schematic diagrames.
Among the figure: F 1, F 2, F 3, F 4, F 5, F 6, F 7Be respectively first, second, the 3rd, the 4th, the 5th, the 6th, the 7th finishing mill.1 is the band steel, and 2 is the plate profile instrument table, and 3 is the convexity instrument, 4 cooling facility for laminar flow that block for band edge portion, and 6 is plate shape automatic control system, 51,52,53,54,55,56,57 are respectively F 1, F 2, F 3, F 4, F 5, F 6, F 7Corresponding hydraulic bending roll.
The specific embodiment
Below, be that AS600MC, yield strength 600MPa, finished product thickness 2.0mm are example with seven rolling materials of mm finishing mill unit of hot continuous rolling 1580mm, the invention will be further described.
As seen from Figure 1, band steel 1 passes F successively 1, F 2, F 3, F 4, F 5, F 6, F 7After reaching plate profile instrument table 2, convexity instrument 3, again through having the cooling facility for laminar flow 4 of edge-masking, in the whole operation of rolling, plate shape automatic control system 6 is adjusted F according to belt plate shape control needs 1-F 7The hydraulic bending roll 51,52,53,54,55,56,57 of each rolling mill.
The elementary tactics of plate shape control of the present invention is, at F 1-F 4Make band steel ratio convexity reach target setting ratio convexity after four finishing mills are rolling, simultaneously at F 5-F 7Three finishing mills keep constant proportion example convexity substantially, with assurance target glacing flatness, thereby guarantee that strip profile and flatness is controlled in good area all the time in mm finishing mill unit.
F 1, F 2, F 3, F 4, F 5, F 6, F 7All adopt WRS(work roll shifting milling train), the working roller curve equation is:
C w ( y ) = C 2 cos y s l w ÷ ÷ cos s 2 ÷ y ( l w 2 , l w 2 )
Wherein, C is the working roller amplitude, μ m; sBe cosine function cornerite variable; l wBe working roll barrel length, mm; Y is for being the axial coordinate of initial point with body of roll mid point.
Working roller designs each frame working roller parameter such as table 3 according to the constant principle of each frame band steel ratio convexity:
Table 3 working roller parameter
Finishing mill F 1 F 2 F 3 F 4 F 5 F 6 F 7
C -170μm -170μm -120μm -90μm -75μm -70μm -65μm
s
Backing roll roller curve equation is:
C b(y)=a 0+a 1*y+a 2*y 2+a 3*y 3+a 4*y 4+a 5*y 5+a 6*y 6
Wherein, a 0, a 1, a 2, a ,, a 4, a 5, a 6Be each time of backing roll roller curve coefficient; Y is for being the axial coordinate of initial point with the arbitrary end of the body of roll.
For simplifying the grinding roller process management, improve grinding roller efficient, each finishing mill backing roll parameter value is identical, and its backing roll roll shape parameter sees Table 4.
Each time of table 4 backing roll roll shape parameter
Coefficient entry a 0 a 1 a 2 a 3 a 4 a 5 a 6
Parameter 0.00 2.784e-04 -9.389e-07 1.663e-09 -1.630e-12 8.384e-16 -1.768e-19
F 1-F 7The roll shifting strategy of seven finishing mills all adopts the roll shifting step-length 15mm/ time, roll shifting frequency 1 volume/time, roll shifting stroke 120mm.
The reasonable distribution mill load, F 1-F 7Reduction ratio distribute and to see Table 5.
Each frame reduction ratio of table 5 finish rolling distributes
Finishing mill F1 F2 F3 F4 F5 F6 F7
Reduction ratio 52% 49% 39% 37% 28% 17% 9%
Input board shape automatic control system 6, plate shape glacing flatness desired value is got 3IU, and the convexity desired value is got 55 μ m.Before band steel 1 did not enter F1, plate shape automatic control system 6 was finished the hydraulic bending roll power value of seven finishing mills of F1-F7 according to the processing parameter setting of band steel 1, thereby guaranteed band steel 1 head strip shape quality and wear band stability.After band steel 1 entered into each frame finishing mill, plate shape automatic control system 6 made the hydraulic bending roll 51,52,53,54,55,56,57 of each frame finishing mill make corresponding compensatory adjustment with some cycles with the fluctuation of draught pressure, keeps carrying roll gap shape.After band steel 1 passes plate profile instrument table 2, convexity instrument 3, strip profile and flatness and convexity deviation signal that plate shape automatic control system 6 detects according to plate profile instrument table 2, convexity instrument 3, regulate hydraulic bending roll 51,52,53,54,55,56,57 and carry out FEEDBACK CONTROL, thereby band steel 1 glacing flatness in mm finishing mill unit is controlled all the time in good area, guaranteed glacing flatness and the convexity desired value of band steel 1 total length.
Band steel 1 can enter into the cooling facility for laminar flow 4 that band edge portion blocks through after plate profile instrument table 2, the convexity instrument 3, and it is 120mm that length is blocked in the strip edge portion of the cooling facility for laminar flow 4 that band edge portion blocks; The control of band steel 1 rolling rhythm is rolled up at 140s/.Adopt the high-strength strip steel of AS600MC of the thickness 2.0mm of said method production, its glacing flatness can control to 12IU with interior high standard level.

Claims (3)

1. the board-shape control method of the high-strength strip steel of hot rolling is characterized in that, for the high-strength strip steel of the hot rolling of thickness≤2.0mm, yield strength 〉=550MPa, the concrete grammar of its plate shape control is:
(1), the hot fine rolling unit is from first finishing mill F 1To last frame finishing mill F nAll adopting the work roll shifting milling train is WRS, and n is continuous hot-rolling mill frame sum;
(2), working roller adopts the cosine roller curve, its working roller curve equation is:
C w ( y ) = C 2 cos y s l w ÷ ÷ cos s 2 ÷ y ( l w 2 , l w 2 )
In the formula, C is the working roller amplitude, μ m; sBe cosine function cornerite variable; l wBe working roll barrel length, mm; Y is for being the axial coordinate of initial point with body of roll mid point;
Each frame finishing mill working roller designs according to the constant principle of band steel ratio convexity;
It is the VCR technology that the backing roll roll shape adopts change contact backing roll roll forming, and its backing roll roller curve equation is;
C b(y)=a 0+a 1*y+a 2*y 2+a 3*y 3+a 4*y 4+a 5*y 5+a 6*y 6
In the formula, a 0, a 1, a 2, a 3, a 4, a 5, a 6Be each time of backing roll roller curve coefficient; Y is for being the axial coordinate of initial point with the arbitrary end of the body of roll;
(3), roll shifting adopts the big stroke roll shifting of high-frequency strategy, roll shifting step-length 10-15mm/ time, roll shifting frequency 1-2 rolls up/time, roll shifting stroke 100-150mm;
(4), the reasonable distribution mill load, first finishing mill F 1With second finishing mill F 2Adopt and depress reduction ratio 49%-54%, the 3rd finishing mill F greatly 3To n-1 frame finishing mill F N-1Reduction ratio remains on 25-40%, last frame F nReduction ratio remains on 8-10%;
(5), the control of plate shape is taked at F 1-F 4Finishing mill makes band steel ratio convexity reach target setting ratio convexity, at F 5-F nFinishing mill keeps constant proportion example convexity, and the assurance strip profile and flatness is controlled all the time in good area; And carry out work roll bending force feedback control according to actual measurement strip profile and flatness and convexity deviation signal, guarantee plate shape and rolling stability between poised state between frame and frame; Simultaneously, with the fluctuation of draught pressure, make bending roller force make corresponding compensatory adjustment, keep the carrying roll gap shape, avoid owing to rolling temperature, supplied materials varied in thickness cause the draught pressure fluctuation;
(6), plate shape glacing flatness desired value span is at 0-5IU, with the influence of compensation temperature to belt plate shape;
(7), laminar flow cooling adopts the edge-masking technology, the strip edge portion scope of blocking is 100-150mm;
(8), the control of belt steel rolling rhythm is rolled up at 135-145s/.
2. the board-shape control method of the high-strength strip steel of hot rolling according to claim 1 is characterized in that, according to seven finishing mill working roller parameters such as the table 1 of the constant principle design of band steel ratio convexity:
Seven finishing mill working rollers of table 1 parameter list
Figure FDA00002963169700021
3. the board-shape control method of the high-strength strip steel of hot rolling according to claim 1 is characterized in that, seven finishing mills each each time of backing roll roller curve item coefficient such as tables 2:
Each time of seven finishing mill backing rolls of table 2 roll shape parameter list
Figure FDA00002963169700022
CN2013100981756A 2013-03-26 2013-03-26 Plate shape control method of hot rolled high-strength thin strip steel Pending CN103203369A (en)

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105013833A (en) * 2015-06-30 2015-11-04 攀钢集团西昌钢钒有限公司 Strip shape control method for ultrathin cold-hardened strip steel
CN105868432A (en) * 2015-01-23 2016-08-17 鞍钢股份有限公司 Simple and convenient calculation method for roll shapes of working rolls of hot continuous rolling mills
CN108393357A (en) * 2018-04-11 2018-08-14 新疆八钢铁股份有限公司 A kind of milling method preventing steel bonding in Cutting guide
CN108500067A (en) * 2018-04-11 2018-09-07 攀钢集团攀枝花钢钒有限公司 The plate shape method of adjustment of hot-continuous-rolling strip steel
CN109174982A (en) * 2018-09-03 2019-01-11 中冶赛迪技术研究中心有限公司 A kind of corrugated edge cooling technique of the high temperature-proof deformation of member and device
CN109909307A (en) * 2019-03-06 2019-06-21 鞍钢股份有限公司 A method of control milling train high-strength steel steel plate template
CN111079240A (en) * 2019-12-30 2020-04-28 新疆八一钢铁股份有限公司 Working roll profile for controlling symmetrical plate shape defects
CN112828053A (en) * 2021-01-04 2021-05-25 宝钢湛江钢铁有限公司 Method for detecting full-length plate shape of cooled strip steel
CN112845584A (en) * 2021-01-05 2021-05-28 武汉钢铁有限公司 Method for effectively controlling longitudinal shearing, splitting and side bending of hot-rolled strip steel
CN113522967A (en) * 2021-06-25 2021-10-22 武汉钢铁有限公司 Control method for rolling 550 MPa-level wide-width thin-specification high-strength steel plate in short process
CN113664047A (en) * 2021-08-11 2021-11-19 山东钢铁集团日照有限公司 Production method for eliminating local high points of wide and thick hot rolling of cold-rolled material
CN117443931A (en) * 2023-12-22 2024-01-26 冶科金属有限公司 Austenitic stainless steel rolling equipment

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CN105868432B (en) * 2015-01-23 2019-02-26 鞍钢股份有限公司 A kind of simple calculating method of continuous hot-rolling mill working roller
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CN108500067B (en) * 2018-04-11 2020-02-04 攀钢集团攀枝花钢钒有限公司 Strip shape adjusting method for hot continuous rolling strip steel
CN108500067A (en) * 2018-04-11 2018-09-07 攀钢集团攀枝花钢钒有限公司 The plate shape method of adjustment of hot-continuous-rolling strip steel
CN108393357A (en) * 2018-04-11 2018-08-14 新疆八钢铁股份有限公司 A kind of milling method preventing steel bonding in Cutting guide
CN109174982A (en) * 2018-09-03 2019-01-11 中冶赛迪技术研究中心有限公司 A kind of corrugated edge cooling technique of the high temperature-proof deformation of member and device
CN109909307A (en) * 2019-03-06 2019-06-21 鞍钢股份有限公司 A method of control milling train high-strength steel steel plate template
CN111079240A (en) * 2019-12-30 2020-04-28 新疆八一钢铁股份有限公司 Working roll profile for controlling symmetrical plate shape defects
CN112828053A (en) * 2021-01-04 2021-05-25 宝钢湛江钢铁有限公司 Method for detecting full-length plate shape of cooled strip steel
CN112845584A (en) * 2021-01-05 2021-05-28 武汉钢铁有限公司 Method for effectively controlling longitudinal shearing, splitting and side bending of hot-rolled strip steel
CN113522967A (en) * 2021-06-25 2021-10-22 武汉钢铁有限公司 Control method for rolling 550 MPa-level wide-width thin-specification high-strength steel plate in short process
CN113664047A (en) * 2021-08-11 2021-11-19 山东钢铁集团日照有限公司 Production method for eliminating local high points of wide and thick hot rolling of cold-rolled material
CN117443931A (en) * 2023-12-22 2024-01-26 冶科金属有限公司 Austenitic stainless steel rolling equipment
CN117443931B (en) * 2023-12-22 2024-02-20 冶科金属有限公司 Austenitic stainless steel rolling equipment

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Application publication date: 20130717