CN111534746A - Weather-resistant steel for wide 450 MPa-grade hot-rolled container and manufacturing method thereof - Google Patents

Weather-resistant steel for wide 450 MPa-grade hot-rolled container and manufacturing method thereof Download PDF

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CN111534746A
CN111534746A CN202010364083.8A CN202010364083A CN111534746A CN 111534746 A CN111534746 A CN 111534746A CN 202010364083 A CN202010364083 A CN 202010364083A CN 111534746 A CN111534746 A CN 111534746A
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steel
rolling
less
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CN111534746B (en
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刘志伟
张瑞琦
李江委
孙傲
郭晓宏
徐立家
王杰
高磊
乔磊
任俊威
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Angang Steel Co Ltd
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    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C38/00Ferrous alloys, e.g. steel alloys
    • C22C38/02Ferrous alloys, e.g. steel alloys containing silicon
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D8/00Modifying the physical properties by deformation combined with, or followed by, heat treatment
    • C21D8/02Modifying the physical properties by deformation combined with, or followed by, heat treatment during manufacturing of plates or strips
    • C21D8/0221Modifying the physical properties by deformation combined with, or followed by, heat treatment during manufacturing of plates or strips characterised by the working steps
    • C21D8/0226Hot rolling
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C38/00Ferrous alloys, e.g. steel alloys
    • C22C38/005Ferrous alloys, e.g. steel alloys containing rare earths, i.e. Sc, Y, Lanthanides
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C38/00Ferrous alloys, e.g. steel alloys
    • C22C38/04Ferrous alloys, e.g. steel alloys containing manganese
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C38/00Ferrous alloys, e.g. steel alloys
    • C22C38/06Ferrous alloys, e.g. steel alloys containing aluminium
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C38/00Ferrous alloys, e.g. steel alloys
    • C22C38/18Ferrous alloys, e.g. steel alloys containing chromium
    • C22C38/20Ferrous alloys, e.g. steel alloys containing chromium with copper
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C38/00Ferrous alloys, e.g. steel alloys
    • C22C38/18Ferrous alloys, e.g. steel alloys containing chromium
    • C22C38/28Ferrous alloys, e.g. steel alloys containing chromium with titanium or zirconium
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D2211/00Microstructure comprising significant phases
    • C21D2211/005Ferrite

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • Heat Treatment Of Sheet Steel (AREA)

Abstract

The invention discloses weather-resistant steel for a wide 450 MPa-level hot-rolled container and a manufacturing method thereof. The steel contains 0.048-0.065% of C, 0.61-0.70% of Si, 0.35-0.45% of Mn, 0.075-0.085% of P, less than or equal to 0.006% of S, less than or equal to 0.040% of Al, 0.20-0.29% of Cr, 0.11-0.19% of Cu, 0.035-0.050% of Ti, 0.010-0.025% of RE, less than or equal to 0.004% of N, and the balance of iron and inevitable impurities. The outlet temperature of the casting blank soaking section is 1278-1298 ℃, the heat preservation time of the soaking section is 23-37 min, and the total in-furnace time is less than or equal to 170 min; the outlet temperature of rough rolling is more than or equal to 1100 ℃, the initial rolling temperature of finish rolling is 1075-1093 ℃, the final rolling temperature of finish rolling is 915-938 ℃, the steel is cooled to 646-665 ℃ at the cooling speed of 31-41 ℃/s, coiling is carried out, the leveling force is 4500-5500 KN, and the roll bending force is 10-20 KN. The straightness of the steel strip is less than or equal to 3 mm/m. Has good corrosion resistance.

Description

Weather-resistant steel for wide 450 MPa-grade hot-rolled container and manufacturing method thereof
Technical Field
The invention belongs to the field of container steel, and relates to weather-resistant steel with good flatness for a wide 450 MPa-level hot-rolled container.
Background
The traditional 20-foot and 40-foot common containers adopt SPA-H with 345 MPa-grade yield strength, and have low material strength and large consumption. In the field of container manufacturing, high-strength steel plates of 450-700 MPa are gradually popularized and applied in China at present. Compared with the common standard container steel, the high-strength steel plate can reduce weight by 15-40%, and greatly save transportation cost. Due to the special use of the container, the container has high requirements on the material of steel, has high strong plasticity except the requirement of good atmospheric corrosion resistance, and has good flatness after the steel strip is flattened, particularly for steel plates with high strength level and wide width, if the flatness is not good, the production and the manufacture of the container are seriously influenced.
Before the invention, the invention patent of 'a high-strength weather-resistant steel plate with 450MPa grade yield strength and a production method thereof' with the publication number of CN101824581B is based on CSP short-flow production process, is not suitable for conventional production line production, simultaneously contains Nb and Ni noble metals and has higher cost.
The invention discloses a CN103290331A steel plate with high strength and high corrosion resistance and yield strength of 450MPa and a production method thereof, which adds a medium content of alloy element Cr to ensure that the steel has excellent atmospheric corrosion resistance, and the atmospheric corrosion resistance is improved by more than one time compared with the traditional weathering steel. But the Cr content is 2.80-4.0%, the smelting difficulty is high, the production is difficult, and the alloy contains noble metals such as Nb, Ni and the like.
The invention discloses CN102925798A steel with 450MPa grade yield strength for parts of a railway wagon and a production method thereof, which adds Nb and V noble metal elements on the basis of C-Mn steel, and has no corrosion resistance although the yield strength reaches more than 450 MPa.
The invention mainly aims at the mechanical property and the application property of the product, and relates to less flatness control after the wide high-strength steel strip is flattened, and when the weather-resistant steel for the wide 450 MPa-level hot-rolled container is actually produced by adopting the conventional process, the problem of ship shape warpage after the strip steel is flattened is solved, the use of users is seriously influenced, and measures such as slow cooling in a slow cooling pit after rolling and the like have to be adopted by many enterprises, so that the production efficiency is greatly influenced. Therefore, how to obtain low-cost wide 450 MPa-level hot-rolled container weathering steel and good flatness control is one of the technical difficulties to be solved urgently in the field.
Disclosure of Invention
The invention provides weather-resistant steel for a wide 450 MPa-level hot-rolled container and a manufacturing method thereof, aiming at overcoming the defects that the weather-resistant strip steel for the 450 MPa-level hot-rolled container in the prior art has high cost and cannot be normally used by users due to warping after being opened and flattened, and solving the problems in the prior art. The steel plate has low cost, good atmospheric corrosion resistance, high strength and excellent forming performance, and in addition, the steel plate also has good flatness and is suitable for manufacturing lightweight containers.
The specific technical scheme is as follows:
the technical scheme is provided aiming at the technical problem of ship type warping protrusion in the production process of the steel for the wide 450 MPa-level container. The invention provides weather-resistant steel for a wide 450 MPa-level container and a manufacturing method thereof, wherein the weather-resistant steel comprises, by mass, 0.048-0.065% of C, 0.61-0.70% of Si, 0.35-0.45% of Mn, 0.075-0.085% of P, less than or equal to 0.006% of S, less than or equal to 0.040% of Al, 0.20-0.29% of Cr, 0.11-0.19% of Cu, 0.035-0.035% of Ti, 0.010-0.025% of RE, less than or equal to 0.004% of N, and the balance Fe and inevitable impurities.
The invention selects the above alloy element types and contents because:
c is a main strengthening element in the steel, can obviously improve the strength of the steel, is a main interstitial solid solution strengthening element, can form fine carbide TiC with Ti, and plays a role in precipitation strengthening. However, more C is detrimental to the welding, toughness and plasticity of the steel plate. The content of C in the invention is limited to 0.048-0.065%.
Si is an essential element for deoxidation in steel making, and has a solid solution strengthening effect when added to a certain content. The alpha-FeOOH can be refined by matching with elements such as Cu, Cr and the like, so that the overall corrosion rate of the steel is reduced. Meanwhile, the strength and the wear resistance of the steel can be improved. The high Si and the high P are used cooperatively, so that the oxidizability of heating at the temperature of 1200 ℃ or above can be obviously increased, the interfacial area and the unevenness of an iron sheet and a steel matrix are increased, and the copper diffusion is accelerated. The invention controls the range between 0.61 and 0.70 percent.
Mn plays a main role in steel in solid solution strengthening, increasing the strength of ferrite, and adjusting the strength of a steel sheet. The invention can obviously reduce the transformation temperature of austenite to ferrite, refine the microstructure of steel, and is an important strengthening and toughening element, but the hardenability is increased due to excessive Mn content, thereby causing the weldability and the toughness of a welding heat affected zone to be deteriorated, and simultaneously, considering the cost factor, the invention controls the content of the Mn content to be 0.35-0.45%.
P is an element effective for increasing strength and useful for improving weather resistance, but in the case of steel sheet production having high yield strength, embrittlement of the cast slab may occur, and weldability and formability may also deteriorate. The invention effectively inhibits the problem that the weathering steel without Ni is easy to crack by compositely adding high Si and high P, and effectively inhibits the P element from segregation at the grain boundary by adding the RE element, thereby improving the plasticity and toughness of the steel plate. The content of P in the invention is controlled to be 0.075-0.085%.
S is an impurity element in steel, so that the ductility and toughness and the welding performance are obviously reduced, and the performance is improved by controlling the lower S. The S in the steel is controlled to be less than or equal to 0.006 percent.
Al is the main deoxidizing element in the steel, and the addition of proper Al can refine grains and improve the performance of the steel. The content range of the Al is limited to be less than or equal to 0.040 percent.
Cr forms a compact oxide film on the surface of steel, and the passivation capability of the steel is improved. When added into steel together with Cu, the corrosion resistance effect is particularly obvious. In addition, the Cr element can remarkably improve the strength, hardness and wear resistance of the steel. The content range of the invention is limited to 0.20-0.29%.
Cu is the most important of the atmospheric corrosion resistant steel for improving the atmospheric corrosion resistance, plays a role of an active cathode, and can promote the steel to generate anodic passivation under certain conditions, thereby reducing the corrosion speed of the steel. The content range of the invention is limited to 0.11-0.19%.
Ti is a strong carbonitride forming element, is an important microalloy strengthening element in the invention, not only can effectively refine grains, but also can form fine carbide, nitride or carbonitride with C and N, particularly, the nano-scale TiC precipitated in the coiling and slow cooling processes has very high precipitation strengthening effect, and the strength of the steel plate can be greatly improved. The invention limits the range to 0.035% -0.050%.
RE can not only improve the corrosion resistance of the steel plate, but also purify molten steel, refine the solidification structure of the steel and change the property, the form and the distribution of inclusions, thereby improving various performances of the steel. When RE reaches a certain adding amount, the RE has a certain solid solution amount in the steel, and the aggregation of the RE in the grain boundary can inhibit the segregation of phosphorus and sulfur and low-melting-point impurities in the grain boundary or form compounds with higher melting points with the impurities, thereby eliminating the harmful effect of the low-melting-point impurities. In addition, RE can strengthen the grain boundary, hinder the formation and the expansion of intergranular cracks, is beneficial to improving the plasticity, can refine grains and inhibit the growth of high-temperature grains, and can refine the size of a precipitation phase and promote the precipitation of TiC in ferrite. The invention is limited to the range of 0.010% to 0.025%.
N is an element existing in the smelting process, and because one of the characteristics of the invention is to adopt Ti microalloying technology, and Ti is an element with strong activity, the Ti can react with elements such as O, N, S in steel, if the content of N is too high, TiN with large size can be separated out from molten steel, austenite grains can not be prevented from growing large, precipitation strengthening effect can not be achieved, and on the contrary, the refined grains and precipitation strengthening effect of Ti can be reduced. Therefore, in the invention, N is controlled to be less than or equal to 0.004 percent.
The invention also provides a manufacturing method of the weather-resistant steel for the wide 450 MPa-level hot-rolled container, which comprises the following steps of smelting continuous casting, casting blank reheating, rolling, coiling and leveling, and is characterized in that:
1. smelting continuous casting process
Smelting according to the components, adopting molten iron for pre-desulfurization, carrying out composite blowing at the top and the bottom of a converter, carrying out LF external refining, and uniformly adding rare earth wires into the molten steel by a wire feeding method through covering slag at a water gap of a crystallizer in one time.
2. Heating of casting blanks
And (3) reheating the casting blank after hot conveying and hot charging, controlling the outlet temperature of a casting blank soaking section to be 1278-1298 ℃, controlling the atmosphere of a heating furnace to be a reducing atmosphere, and adopting a high-temperature quick-firing process. The heat preservation time of the soaking section is 23-37 min, and the total furnace time is not more than 170 min.
3. Rolling of
In the step of controlling rolling, two-stage rolling control is adopted. And descaling is carried out on each pass of rough rolling, and the outlet temperature of the rough rolling is over 1100 ℃. The initial rolling temperature of the finish rolling is 1075-1093 ℃, and the final rolling temperature of the finish rolling is 915-938 ℃. The rolling process adopts micro-middle wave control.
4. Coiling
And after finish rolling, carrying out laminar cooling, cooling to 646-665 ℃ at a cooling rate of 31-41 ℃/s, coiling, cooling to 666-685 ℃ at a distance of 20m from the head part and 20m from the tail part, and then air cooling to room temperature. The laminar cooling adopts front section concentrated cooling, and the water flow ratio of the upper water to the lower water is 1: 3-1: 2.
5. Leveling
For a wide high-strength steel plate, due to the fact that an intensive cooling technology is adopted, uneven cooling rate of the surface of strip steel is easily caused, and further residual stress is generated to cause ship-shaped warping after a steel coil is uncoiled, in order to guarantee that the flatness of the steel plate meets requirements, the invention adopts a scheme of large rolling force for flattening besides the steps of controlling micro-middle waves and reasonably proportioning the water quantity ratio of an upper header to a lower header in the rolling process, wherein the flattening force is 4500-5500 KN, and the bending force is 10-20 KN.
The reason for controlling the respective manufacturing steps is as follows:
the soaking temperature of the casting blank is controlled to be 1278-1298 ℃, so that on one hand, the full austenitization of the steel blank is ensured, and the homogenization of the components of the steel blank is ensured; on the other hand, by controlling the atmosphere of the heating furnace to be a reducing atmosphere, high-temperature quick firing and heating time shortening are achieved, and Cu brittleness generated in the heating process of the billet is restrained.
The finish rolling initial rolling temperature is limited to 1075-1093 ℃, rolling is easy, the load of a rolling mill is reduced, and the problem that the normal operation of the next process is caused due to the fact that the temperature difference between the head and the tail of the intermediate billet is too large is prevented.
And in the finish rolling stage, high-temperature rolling is adopted, so that the deformation induced precipitation of second phase particles is controlled, and more effective Ti is reserved and precipitated after coiling. Therefore, the finishing temperature is controlled to be 915-938 ℃.
Because the TiC precipitation kinetics law determines that the optimal precipitation temperature range exists, in order to ensure that the precipitates are fully precipitated, second-phase particles with finer sizes are obtained, and meanwhile, the coiling temperature is too low to be beneficial to plate shape control. Therefore, the coiling temperature is controlled to 646-665 ℃. In order to keep the uniformity of the whole roll performance, a U-shaped cooling mode is adopted, the head part 20m and the tail part 20m are cooled to 666-685 ℃, and then air cooling is carried out to the room temperature. The laminar cooling adopts front section concentrated cooling, and the water flow ratio of the upper water to the lower water is 1: 3-1: 2. The rolling process adopts micro-middle wave control.
The cooling rate is controlled to be 31-41 ℃/s. Firstly, controlling the grain size; and secondly, the advance precipitation of TiC in the cooling process is inhibited, more effective Ti is reserved to be formed in the coiling process, the particle size formed in the way is smaller and can reach about 6-10 nm, and the precipitation strengthening effect is good. Meanwhile, the cooling speed is too fast, which is not beneficial to the plate type control.
The purpose of leveling is to ensure the strip steel plate shape and alleviate the bad defects of wave shapes such as edge waves, middle waves and the like. The invention discloses a manufacturing method of a weather-resistant steel plate for a wide-width high-strength hot-rolled container, which can not meet the required flatness requirement by a conventional flattening process. According to the invention, through reasonable selection of key rolling temperature parameters and comprehensive optimization combination of parameters such as water quantity and cooling speed, and by adopting the rolling force of 4500-5500 KN, a good effect that the straightness is less than 3mm/m is obtained.
Has the advantages that:
compared with the prior art, the invention has the following beneficial effects:
(1) the invention adopts high Si and high P, and corrosion resistant elements Cr, Cu and RE and microalloy element Ti are used as auxiliary materials, and noble metals such as Ni, Mo, Nb and the like are not added. Copper, silicon, phosphorus and rare earth elements can be enriched in the inner rust layer in the corrosion process of steel, and a colloidal compound of copper, silicon and phosphorus is generated, so that the inner rust layer is more compact, and the corrosion resistance of the steel plate is excellent.
(2) The produced weather-resistant steel for the wide 450 MPa-level container has the thickness specification of 2.0-4.5 mm and the width specification of 1350-1500 mm. The yield strength can reach more than 450MPa, the tensile strength is not less than 550MPa, the elongation is not less than 22%, the yield strength difference of the coil passing is within 50MPa, the flatness of the steel strip after being flattened is not more than 3mm/m, and the steel strip has good corrosion resistance and cold forming performance.
(3) The steel structure of the invention is ultra-fine grain ferrite + carbide, the grain size reaches more than 11 grades, and meanwhile, a large amount of TiC second phase particles with the size of 6-10 nm are obtained after coiling.
(4) The corrosion rate of the steel is obviously lower than that of contrast steel, the cost of the steel plate is low, slow cooling is not required to be carried out by a slow cooling cover, the tissue production is easy, leveling or straightening is not required to be carried out when a downstream user uses the steel plate, the production cost of a final user is reduced, and the production efficiency is improved.
Detailed Description
The above-mentioned embodiments are merely illustrative of the technical ideas and features of the present invention, and are not intended to limit the present invention, so as to enable those skilled in the art to understand the contents of the present invention and to implement the present invention accordingly. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.
The chemical compositions of the steels of the examples are shown in Table 1, the heating parameters of the cast slabs of the steels of the examples are shown in Table 2, the rolling process parameters of the steels of the examples are shown in Table 3, the mechanical properties of the steels of the examples are shown in Table 4, and the atmospheric corrosion resistance of the steels of the examples are shown in Table 5.
Example steels having the chemical compositions of table 1 were manufactured by the following process: smelting in a converter, then carrying out external refining, and casting to obtain a continuous casting billet. And (2) hot-feeding the continuous casting blank to a hot rolling production line, wherein the soaking outlet temperature of the casting blank is 1278-1298 ℃, the outlet temperature of the rough rolling is more than 1100 ℃, the start rolling temperature of the finish rolling is 1075-1093 ℃, the finish rolling temperature of the finish rolling is 915-938 ℃, laminar cooling is adopted after rolling, the cooling speed is 31-41 ℃/s, the coiling temperature is 646-665 ℃, air cooling is carried out to the room temperature after coiling, and then leveling is carried out.
Table 1 chemical composition of the example steels, wt.%
Examples C Si Mn P S Al Cr Cu Ti RE N
A1 0.059 0.65 0.43 0.079 0.004 0.033 0.28 0.18 0.049 0.024 0.0036
A2 0.049 0.63 0.36 0.076 0.003 0.031 0.21 0.12 0.036 0.011 0.0033
A3 0.063 0.62 0.44 0.081 0.003 0.036 0.26 0.17 0.047 0.021 0.0034
A4 0.055 0.64 0.38 0.078 0.005 0.034 0.24 0.14 0.041 0.016 0.0035
A5 0.058 0.61 0.39 0.075 0.004 0.033 0.25 0.15 0.043 0.017 0.0036
A6 0.048 0.69 0.41 0.080 0.005 0.032 0.22 0.16 0.045 0.019 0.0039
A7 0.061 0.68 0.35 0.077 0.004 0.031 0.27 0.13 0.038 0.014 0.0032
A8 0.052 0.67 0.37 0.083 0.003 0.029 0.20 0.11 0.035 0.010 0.0036
A9 0.065 0.70 0.45 0.085 0.004 0.032 0.29 0.19 0.050 0.025 0.0033
TABLE 2 heating parameters of the steel ingots of the examples
Examples Exit temperature/DEG C of casting blank soaking section Soaking section heat preservation time/min Total on-furnace time/min
A1 1278 23 163
A2 1280 34 162
A3 1283 31 165
A4 1287 33 161
A5 1289 29 164
A6 1291 28 159
A7 1293 25 168
A8 1296 36 169
A9 1298 37 170
TABLE 3 Rolling Process parameters of the steels of the examples
Figure BDA0002475982740000091
TABLE 4 mechanical properties of the steels of the examples
Figure BDA0002475982740000092
TABLE 5 atmospheric corrosion resistance (g/m) of steels of examples of the present invention2·h)
Examples 72h periodic immersion corrosion test
A7 1.0728
A8 1.0824
A9 1.0969
Comparative steel 1(SPA-H) 1.6421
Comparative steel 2(Q345B) 3.7270
Note: the steel plate thicknesses of A1-A6 were < 4.0mm, so that the 72-hour periodic immersion corrosion test could not be performed.
As can be seen from Table 4, the yield strengths of the steels of the examples of the invention are all greater than 450MPa, the tensile strengths of the steels are all greater than 550MPa, the elongations of the steels are all greater than 22%, and the cold bending properties of the steels are all qualified.
A72 hour periodic infiltration corrosion test was performed according to TB/T2375 + 1993. The comparative steels in Table 5 are SPA-H and Q345B. As can be seen from Table 5, the weathering resistance of the steels A7, A8 and A9 of the examples of the invention is obviously better than that of Q345B and SPA-H, and the service life of the steel plate when the thickness is reduced can be effectively ensured.

Claims (3)

1. The weather-resistant steel for the wide 450 MPa-level hot-rolled container is characterized by comprising the following chemical components in percentage by mass: 0.048-0.065% of C, 0.61-0.70% of Si, 0.35-0.45% of Mn, 0.075-0.085% of P, less than or equal to 0.006% of S, less than or equal to 0.040% of Al, 0.20-0.29% of Cr, 0.11-0.19% of Cu, 0.035-0.050% of Ti, 0.010-0.025% of RE, less than or equal to 0.004% of N, and the balance of iron and inevitable impurities.
2. The weathering steel for hot-rolled containers with a width of 450MPa according to claim 1, wherein the finished steel plate has a width of 1350-1500 mm, a yield strength of 450MPa or more, an elongation of 22% or more, a through-coil yield strength difference of 50MPa or less, and a flatness of 3mm/m or less after the steel strip is flattened.
3. The method for manufacturing the weather-resistant steel for the hot-rolled container with the width of 450MPa according to claim 1 or 2, wherein the production process of the steel plate comprises the following steps: smelting continuous casting, reheating a casting blank, rolling, reeling and leveling, and is characterized in that:
(1) smelting continuous casting
Pre-desulfurizing molten iron, blowing the converter top and bottom, refining outside an LF furnace, and uniformly adding rare earth wires into the molten steel by a wire feeding method through covering slag at a water gap of a crystallizer in a one-time mode;
(2) reheating of cast slab
The casting blank is heated and then is reheated after being heated and loaded, the outlet temperature of a casting blank soaking section is controlled to be 1278-1298 ℃, the atmosphere of a heating furnace is controlled to be a reducing atmosphere, the heat preservation time of the soaking section is 23-37 min, and the total in-furnace time is not more than 170 min;
(3) rolling of
Two-stage controlled rolling is adopted, descaling is carried out on each pass of rough rolling, the outlet temperature of the rough rolling is more than 1100 ℃, the start rolling temperature of finish rolling is 1075-1093 ℃, the finish rolling temperature of finish rolling is 915-938 ℃, and micro-middle wave control is adopted in the rolling process;
(4) coiling
Carrying out laminar cooling after finish rolling, cooling to 646-665 ℃ at a cooling rate of 31-41 ℃/s, coiling, cooling to 666-685 ℃ at a distance of 20m from the head part and 20m from the tail part, then air-cooling to room temperature, wherein front-section centralized cooling is adopted in laminar cooling, and the water adding and discharging amount ratio is 1: 3-1: 2;
(5) leveling
Leveling by adopting a large rolling force, wherein the leveling force is 4500-5500 KN, and the roll bending force is 10-20 KN.
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CN114574782A (en) * 2022-03-30 2022-06-03 鞍钢股份有限公司 450 MPa-grade wear-resistant corrosion-resistant steel and manufacturing method thereof
CN115386801A (en) * 2022-08-30 2022-11-25 马鞍山钢铁股份有限公司 400 MPa-grade Ni-free hot-rolled weather-resistant steel plate and production method thereof
CN117888033A (en) * 2024-01-17 2024-04-16 福建三宝钢铁有限公司 SPA-H strip steel for hot rolling container and preparation method thereof

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CN114574782A (en) * 2022-03-30 2022-06-03 鞍钢股份有限公司 450 MPa-grade wear-resistant corrosion-resistant steel and manufacturing method thereof
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CN117888033A (en) * 2024-01-17 2024-04-16 福建三宝钢铁有限公司 SPA-H strip steel for hot rolling container and preparation method thereof

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