Mold for continuous casting, method for continuously casting cast pieces, and continuously casting for cast pieces
The continuous casting mold with a tailored opening shape addresses the issues of corner cracking and solidification stability by controlling temperature and stress distribution, resulting in improved slab quality.
Patent Information
- Application Number
- JP2023212276
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-12-15
- Publication Date
- 2025-06-26
AI Technical Summary
Existing continuous casting technologies face challenges in suppressing corner cracking of slabs and maintaining stability of initial solidification, particularly due to temperature fluctuations and embrittlement in the corner regions.
A continuous casting mold with a specific opening shape in a cross-section orthogonal to the casting direction, characterized by a pair of short sides, fixed-side and free-side long sides, and corner portions, which satisfies certain geometric conditions to control temperature and stress distribution.
The solution effectively suppresses corner cracking and stabilizes initial solidification, ensuring that the slab is cast with reduced defects and improved mechanical properties.
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Figure 2025095890000001_ABST
Abstract
Description
Technical Field
[0001] This application discloses a mold for continuous casting, a method for continuous casting of a slab, and a continuously cast slab.
Background Art
[0002] In recent years, in order to improve the mechanical properties of steel materials, many alloy steels containing alloying elements such as Al, Nb, Ti, and B have been manufactured. On the other hand, with the addition of these alloying elements, defects such as transverse cracks occur on the surface layer of the slab produced in continuous casting, which has become a problem in terms of operation and product quality.
[0003] It is known that transverse cracks occur along the prior austenite grain boundaries on the surface layer of the slab. For example, transverse cracks occur due to the concentration of bending stress on austenite grain boundaries embrittled by the precipitation of AlN, NbC, etc., or film-like ferrite formed along the prior austenite grain boundaries. The bending stress is applied in the bending part of a vertical bending type continuous casting machine. Transverse cracks are particularly likely to occur in the temperature range near the phase transformation region from austenite to ferrite. Therefore, usually, the occurrence of transverse cracks is suppressed by controlling the continuous casting conditions so that the surface temperature of the slab at the bending point does not fall within the embrittlement temperature range (the temperature range where ductility decreases).
[0004] On the other hand, when continuously casting a general rectangular slab, the corners (corner parts) of the slab are cooled from both the long side surface and the short side surface directions. Therefore, the surface temperature of the corner part of the slab becomes lower than the surface temperature of other parts of the slab, and the corner part of the slab is likely to be bent in the above-mentioned embrittlement temperature range inevitably. That is, when continuously casting a rectangular slab, corner cracks of the slab are likely to occur. In response to such problems, for example, Patent Documents 1 to 5 disclose techniques for casting a slab while chamfering the corner part of the slab. By chamfering the corner part of the slab, an extreme temperature drop in the corner part is suppressed, and it becomes easier to control the temperature of the corner part to be higher than the embrittlement temperature during bending, and it is considered that corner cracks can be suppressed.
Prior Art Documents
Patent Documents
[0005]
Patent Document 1
Patent Document 2
Patent Document 3
Patent Document 4
Patent Document 5
Summary of the Invention
Problems to be Solved by the Invention
[0006] In the prior art, there is room for improvement regarding achieving both suppression of corner cracking of the slab during continuous casting and stability of initial solidification.
Means for Solving the Problems
[0007] This application discloses the following multiple aspects as one of the means for solving the above problems. <Aspect 1> A continuous casting mold for use in a vertical bending type continuous casting machine, wherein the opening shape of the continuous casting mold in a cross section orthogonal to the casting direction is a pair of short sides, a fixed-side long side, a free-side long side, a fixed-side corner portion connecting the short side and the fixed-side long side, and a free-side corner portion connecting the short side and the free-side long side, defined by, and the opening shape satisfies the following conditions (1) to (3): 10 ≦ A1 ≦ 30 ···(1) A1 + A2 ≦ 30 ···(2) 1.00 ≦ B1 / A1 ≦ 3.00 ···(3) A1: Length from intersection point O1 to connection point P1 (mm) A2: Length from intersection point O2 to connection point P2 (mm) B1: Length from intersection point O1 to connection point P3 (mm) Intersection point O1: Intersection of the extension line of the short side and the extension line of the fixed-side long side Intersection point O2: Intersection of the extension line of the short side and the extension line of the free-side long side Connection point P1: Connection point of the fixed-side corner part and the fixed-side long side Connection point P2: Connection point of the free-side corner part and the free-side long side Connection point P3: Connection point of the fixed-side corner part and the short side satisfying Continuous casting mold <Aspect 2> The continuous casting mold of Aspect 1, wherein the opening shape satisfies the following condition (4) or (5): A2 = B2 = 0 ···(4) 1.00 ≦ B2 / A2 ≦ 3.00 ···(5) B2: Length from intersection point O2 to connection point P4 (mm) Connection point P4: Connection point of the free-side corner part and the short side satisfying Continuous casting mold <Aspect 3> A method for continuous casting of a slab using a vertical bending type continuous casting machine, comprising supplying molten steel from a submerged nozzle to the mold, continuously withdrawing the slab from the lower end of the mold, and bending the slab withdrawn from the mold at a bending point, wherein the mold is the continuous casting mold of Aspect 1 or 2 Method for continuous casting of a slab <Aspect 4> A continuously cast slab, wherein the cross-sectional shape perpendicular to the casting direction of the continuously cast slab is a pair of short sides, a fixed-side long side, Free-side long side, A fixed-side corner part connecting the short side and the fixed-side long side, and A free-side corner part connecting the short side and the free-side long side, which is defined by, and the cross-sectional shape satisfies the following conditions (1) to (3): 10 ≦ A1 ≦ 30 ···(1) A1 + A2 ≦ 30 ···(2) 1.00 ≦ B1 / A1 ≦ 3.00 ···(3) A1: The length from the intersection point O1 to the connection point P1 (mm) A2: The length from the intersection point O2 to the connection point P2 (mm) B1: The length from the intersection point O1 to the connection point P3 (mm) Intersection point O1: The intersection point of the extension line of the short side and the extension line of the fixed-side long side Intersection point O2: The intersection point of the extension line of the short side and the extension line of the free-side long side Connection point P1: The connection point of the fixed-side corner part and the fixed-side long side Connection point P2: The connection point of the free-side corner part and the free-side long side Connection point P3: The connection point of the fixed-side corner part and the short side satisfies, a continuously cast slab.
Advantages of the Invention
[0008] When a slab is continuously cast using the continuous casting mold of the present disclosure, it is easy to achieve both suppression of corner cracking of the slab and stability of initial solidification.
Brief Description of the Drawings
[0009]
Figure 1
Figure 2
Figure 3A
Figure 3B
Embodiment for Carrying Out the Invention
[0010] Hereinafter, an embodiment of a continuous casting mold for continuous casting and a continuous casting method of a cast slab according to the present disclosure will be described. However, the continuous casting mold for continuous casting and the continuous casting method of a cast slab according to the present disclosure are not limited to the following embodiments.
[0011] 1. Continuous casting mold FIGS. 1 and 2 schematically show the shape of a continuous casting mold 100 according to an embodiment. As shown in FIGS. 1 and 2, in the continuous casting mold 100 used in a vertical bending mold continuous casting machine according to an embodiment, the opening shape of the continuous casting mold 100 in a cross section orthogonal to the casting direction is a pair of short sides 10a, 10b, a fixed-side long side 10c, a free-side long side 10d, fixed-side corner portions 10ac, 10bc connecting the short sides 10a, 10b and the fixed-side long side 10c, and free-side corner portions 10ad, 10bd connecting the short sides 10a, 10b and the free-side long side 10d, defined by, and the opening shape satisfies the following conditions (1) to (3): 10 ≦ A1 ≦ 30 ··· (1) A1 + A2 ≦ 30 ··· (2) 1.00 ≦ B1 / A1 ≦ 3.00 ··· (3) A1: length from the intersection point O1 to the connection point P1 (mm) A2: length from the intersection point O2 to the connection point P2 (mm) B1: length from the intersection point O1 to the connection point P3 (mm) Intersection point O1: intersection of the extension lines of the short sides 10a, 10b and the extension line of the fixed-side long side 10c Intersection point O2: intersection of the extension lines of the short sides 10a, 10b and the extension line of the free-side long side 10d Connection point P1: The connection point of the fixed-side corner portions 10ac and 10bc and the fixed-side long side 10c Connection point P2: The connection point of the free-side corner portions 10ad and 10bd and the free-side long side 10d Connection point P3: The connection point of the fixed-side corner portions 10ac and 10bc and the short sides 10a and 10b satisfies the following.
[0012] Also, as shown in FIGS. 1 and 2, in the continuous casting mold 100 according to one embodiment, the opening shape satisfies the following condition (4) or (5): A2 = B2 = 0 ··· (4) 1.00 ≦ B2 / A2 ≦ 3.00 ··· (5) B2: The length from the intersection point O2 to the connection point P4 (mm) Connection point P4: The connection point of the free-side corner portions 10ad and 10bd and the short sides 10a and 10b may satisfy the following.
[0013] In the present application, the "opening shape of the continuous casting mold in a cross section orthogonal to the casting direction" refers to the opening shape at any position of the portion where the continuous casting mold and the slab can come into contact (the portion of the continuous casting mold that comes into contact with the slab and affects the shape of the slab). In the present application, for the opening shape of the mold in the portion where the continuous casting mold and the slab do not come into contact, it is not necessary to satisfy the above conditions (1) to (5).
[0014] In the present application, the "fixed side" refers to the outer side of the slab bending. That is, the "fixed-side long side" refers to the long side that can come into contact with the surface of the slab that becomes the outer side of the bending. Also, the "free side" refers to the inner side of the slab bending. That is, the "free-side long side" refers to the long side that can come into contact with the surface of the slab that becomes the inner side of the bending.
[0015] 1.1 Short sides As shown in FIGS. 1 and 2, a pair of short sides 10a and 10b each have a shape corresponding to the inner wall surface shape of a pair of short side molds 1a and 1b. For example, as shown in FIGS. 1 and 2, the shapes of the pair of short sides 10a and 10b are each linear. In FIG. 2, the sum L1 + B1 + B2 and L2 + B1 + B2 of the lengths L1 and L2 of the short sides 10a and 10b (the length from connection point P3 to connection point P4), the length B1 at the fixed-side corner portions 10ac and 10bc, and the length B2 at the free-side corner portions 10ad and 10bd may each be, for example, 100 mm or more and 600 mm or less, or 200 mm or more and 300 mm or less. The length L1 of the short side 10a and the length L2 of the short side 10b may be the same as each other or different from each other.
[0016] The short side molds 1a and 1b may be constituted by, for example, copper plates. The short side molds 1a and 1b may each have protruding portions 1ax, 1ay, 1bx, and 1by that protrude inward of the mold at the ends in the short side direction, and the corner portions 10ac, 10bc, 10ad, and 10bd described below may be formed by the protruding portions 1ax, 1ay, 1bx, and 1by. The short side molds 1a and 1b may be sandwiched between a fixed-side long side mold 1c and a free-side long side mold 1d, and may also be configured to be movable along the long side direction. That is, in the continuous casting mold 100, the lengths L3 and L4 of the long sides described below may be variable.
[0017] 1.2 Long sides As shown in FIGS. 1 and 2, the fixed-side long side 10c and the free-side long side 10d each have a shape corresponding to the inner wall surface shape of the fixed-side long side mold 1c and the free-side long side mold 1d. For example, as shown in FIGS. 1 and 2, the shapes of the fixed-side long side 10c and the free-side long side 10d are each linear. The sum L3 + A1 + A1 of the length L3 of the fixed-side long side 10c (the length from one connection point P1 to the other connection point P1), the length A1 at one fixed-side corner portion 10ac, and the length A1 at the other fixed-side corner portion 10bc may be, for example, 600 mm or more and 2400 mm or less, or 700 mm or more and 1900 mm or less. The sum L4 + A2 + A2 of the length L4 of the free-side long side 10d (the length from one connection point P2 to the other connection point P2), the length A2 at one free-side corner portion 10ad, and the length A2 at the other free-side corner portion 10bd may be, for example, 600 mm or more and 2500 mm or less, or 1100 mm or more and 2200 mm or less.
[0018] The fixed-side long side mold 1c and the free-side long side mold 1d can each be constituted by, for example, a copper plate. As described above, the short side molds 1a and 1b may be sandwiched between the fixed-side long side mold 1c and the free-side long side mold 1d, or the short side molds 1a and 1b may be configured to be movable along the long side direction.
[0019] 1.3 Corner portion As shown in FIGS. 1 and 2, in the opening shape of the continuous casting mold 100, corner portions 10ac, 10bc, 10ad, and 10bd exist at the four corners of each of the pair of short sides 10a and 10b and each of the fixed-side long side 10c and the free-side long side 10d. The shape of each of the corner portions 10ac, 10bc, 10ad, and 10bd may be any shape that satisfies the above conditions (1) to (3). As shown in FIGS. 1 and 2, the shapes of the fixed-side corner portions 10ac and 10bc and the free-side corner portions 10ad and 10bd may each coincide with the inner wall surface shape of the protruding portions 1ax, 1bx, 1ay, and 1by provided at the ends of the short side molds 1a and 1b.
[0020] 1.3.1 Condition (1) The opening shape of the mold 100 for continuous casting satisfies the condition (1) of 10 ≦ A1 ≦ 30. That is, the length A1 from the intersection point O1 to the connection point P1 in FIG. 2 is 10 mm or more and 30 mm or less. In vertical bending type continuous casting, when the slab is bent, tensile strain is applied to the fixed side surface of the slab, and corner cracking is likely to occur. On the other hand, since compressive strain is applied to the free side surface of the slab, corner cracking is less likely to occur. Therefore, in order to suppress corner cracking of the slab, for example, at the bending point of a vertical bending type continuous casting machine, it is considered effective to increase the chamfering at the fixed side corner portion of the slab so that the temperature of the fixed side corner portion of the slab exceeds the embrittlement temperature range (so that the temperature of the fixed side corner portion of the slab does not extremely decrease). The chamfering at the fixed side corner portion of the slab can be controlled by the shapes of the fixed side corner portions 10ac and 10bc of the opening shape of the mold 100 for continuous casting. According to the new findings of the present inventor, by having the length A1 at the fixed side corner portions 10ac and 10bc be 10 mm or more and satisfying the condition (3) described below, corner cracking of the slab can be suppressed. On the other hand, if the length A1 is excessively long, solidification of the slab corner portion becomes unstable, and solidification cracking is likely to occur. According to the new findings of the present inventor, by having the length A1 be 30 mm or less and satisfying the condition (3) described below, such solidification cracking can be suppressed. The length A1 may be 15 mm or more, 20 mm or more, or 25 mm or more, and may also be 25 mm or less, 20 mm or less, or 15 mm or less. In the mold 100 for continuous casting, the length A1 at one fixed side corner portion 10ac and the length A1 at the other fixed side corner portion 10bc may be the same as each other or may be different.
[0021] 1.3.2 Condition (2) The opening shape of the continuous casting mold 100 satisfies the condition (2) that A1 + A2 ≤ 30. That is, the sum of the length A1 from the intersection point O1 to the connection point P1 in FIG. 2 and the length A2 from the intersection point O2 to the connection point P2 is 30 mm or less. As described above, since A1 is 10 mm or more and 30 mm or less, A2 is 0 mm or more and 20 mm or less. According to the new findings of the present inventor, when the sum of the length A1 and the length A2 is 30 mm or less, the initial solidification is stabilized and the solidification cracking is further significantly suppressed. A1 + A2 may be 10 mm or more, 15 mm or more, 20 mm or more, or 25 mm or more, and may be 25 mm or less, 20 mm or less, or 15 mm or less. In the continuous casting mold 100, the length A2 in one free-side corner portion 10ad and the length A2 in the other free-side corner portion 10bd may be the same as each other or different from each other.
[0022] 1.3.3 Condition (3) The opening shape of the continuous casting mold 100 satisfies the condition (3) that 1.00 ≤ B1 / A1 ≤ 3.00. That is, the length B1 from the intersection point O1 to the connection point P3 in FIG. 2 is 1.00 times or more and 3.00 times or less the above length A1. If the length B1 is too short with respect to the length A1, the solidification of the slab corner portion becomes unstable and solidification cracking is likely to occur. Also, as the length B1 approaches zero, the chamfering in the fixed-side corner portions 10ac and 10bc becomes insufficient, it becomes difficult to appropriately maintain the corner temperature of the slab, and corner cracking of the slab is likely to occur. On the other hand, if the length B1 is too long with respect to the length A1, the solidification of the slab corner portion becomes unstable and solidification cracking is likely to occur. According to the new findings of the present inventor, if B1 / A1 is 1.00 or more and 3.00 or less, such solidification cracking can be suppressed. B1 / A1 may be 1.50 or more, 2.00 or more, or 2.50 or more, and may be 2.50 or less, 2.00 or less, or 1.50 or less. In the continuous casting mold 100, the length B1 in one fixed-side corner portion 10ac and the length B1 in the other fixed-side corner portion 10bc may be the same as each other or different from each other.
[0023] 1.3.4 Condition (4) or (5) The opening shape of the continuous casting mold 100 may satisfy the condition (4) where A2 = B2 = 0. Alternatively, the opening shape of the continuous casting mold 100 may satisfy the condition (5) where 1.00 ≦ B2 / A2 ≦ 3.00 instead of the above condition (4). As described above, since corner cracking due to bending is unlikely to occur at the free-side corner portions of the slab, the slab does not have to be chamfered at the free-side corner portions 10ad and 10bd. Incidentally, in the continuous casting mold 100, the length B2 at one free-side corner portion 10ad and the length B2 at the other free-side corner portion 10bd may be the same as or different from each other.
[0024] 1.3.5 Other Conditions 1.3.5.1 Conditions (6) and (7) As described above, in the continuous casting mold 100, the lengths A1, B1, A2, and B2 may be designed such that the chamfering of the slab at the fixed-side corner portions 10ac and 10bc is the same as or larger than the chamfering of the slab at the free-side corner portions 10ad and 10bd. For example, the opening shape of the continuous casting mold 100 may satisfy the following conditions (6) and (7): A2 ≦ A1 ···(6) B2 ≦ B1 ···(7) It may satisfy one or both of them.
[0025] 1.3.5.2 Condition (8) The shapes of the fixed-side corner portions 10ac and 10bc may be linear as shown in FIGS. 1 and 2, or may be curved or polygonal as shown in FIGS. 3A and 3B. For example, as shown in FIGS. 3A and 3B, the opening shape of the continuous casting mold 100 may satisfy the following condition (8): D1 ≦ C1 ≦ 1.5×D1 ···(8) C1: The length (mm) of the fixed-side corner portions 10ac and 10bc from the connection point P1 to the connection point P3 D1: The length (mm) of the line segment from the connection point P1 to the connection point P3 It may satisfy it.
[0026] When the fixed-side corner portions 10ac and 10bc are linear, the length C1 thereof is equal to the length D1 of the line segment P1P3. On the other hand, when the fixed-side corner portions 10ac and 10bc are curved or polygonal line-shaped, the length C1 thereof is longer than the length D1 of the line segment P1P3. When the length C1 of the fixed-side corner portions 10ac and 10bc is 1.5 times or less the length D1 of the line segment P1P3, the chamfer shape of the slab by the fixed-side corner portions 10ac and 10bc becomes more optimal, and the above-mentioned corner cracks and solidification cracks are more easily suppressed. C1 may be 1.4 times or less, 1.3 times or less, 1.2 times or less, or 1.1 times or less of D1.
[0027] The same applies to the shapes of the free-side corner portions 10ad and 10bd. That is, the shapes of the free-side corner portions 10ad and 10bd may be linear, curved, or polygonal line-shaped. For example, the length of the free-side corner portions 10ad and 10bd is 1.0 times or more the length of the line segment P2P4, and may be 1.5 times or less, 1.4 times or less, 1.3 times or less, 1.2 times or less, or 1.1 times or less.
[0028] 1.3.5.3 Condition (9) As described above, the shapes of the fixed-side corner portions 10ac and 10bc may be linear, curved, or polygonal line-shaped. For example, as shown in FIGS. 3A and B, the opening shape of the continuous casting mold 100 satisfies the following condition (9): 0 ≦ E1 ≦ 0.3 × A1 ··· (9) E1: The maximum distance (mm) between the line segment from the connection point P1 to the connection point P3 and the fixed-side corner portion and may satisfy it.
[0029] When the fixed-side corner portions 10ac and 10bc are linear, the above maximum interval E1 becomes 0. On the other hand, when the fixed-side corner portions 10ac and 10bc are curved or polygonal line-shaped, the maximum interval E1 exceeds 0. When the maximum interval E1 is 0.3 times or less the length A1, the chamfering shape of the slab by the fixed-side corner portions 10ac and 10bc becomes even more optimal, and the above corner cracking and solidification cracking are more easily suppressed. The maximum interval E1 may be 0.2 times or less or 0.1 times or less the length A1. Note that the maximum interval E1 is the interval between the fixed-side corner portions 10ac and 10bc and the line segment P1P3, and refers to the maximum value of the intervals in the direction orthogonal to the line segment P1P3.
[0030] The same applies to the shapes of the free-side corner portions 10ad and 10bd. That is, in the free-side corner portions 10ad and 10bd, the maximum interval between the line segment from the connection point P2 to the connection point P4 and the free-side corner portions 10ad and 10bd is 0 mm or more, and may be 0.3 times or less, 0.2 times or less, or 0.1 times or less the length A2.
[0031] 2. Continuous casting method of slab A continuous casting method of a slab using a vertical bending type continuous caster according to an embodiment includes: supplying molten steel from a submerged nozzle to a mold 100; continuously withdrawing the slab from the lower end of the mold 100; and bending the slab withdrawn from the mold 100 at a bending point, wherein the mold 100 is the continuous casting mold of the present disclosure. This is a feature. In the present embodiment, the basic configuration of the vertical bending type continuous caster may be the same as the conventional one except that the continuous casting mold of the present disclosure is used, and the continuous casting conditions may also be the same as the conventional ones. Since the conditions other than the continuous casting mold are obvious in the technical field, detailed description thereof is omitted here.
[0032] 3. Continuously cast slab The technology of the present disclosure also has a side surface as a continuously cast slab. When a continuously cast slab is obtained using the mold 100 for continuous casting of the present disclosure, the cross-sectional shape perpendicular to the casting direction of the continuously cast slab is a shape corresponding to the opening shape of the mold 100 for continuous casting of the present disclosure. For example, in a continuously cast slab according to an embodiment, the cross-sectional shape perpendicular to the casting direction is a pair of short sides, a fixed-side long side, a free-side long side, a fixed-side corner portion connecting the short side and the fixed-side long side, and a free-side corner portion connecting the short side and the free-side long side, defined by, and the cross-sectional shape satisfies the following conditions (1) to (3): 10 ≦ A1 ≦ 30 ···(1) A1 + A2 ≦ 30 ···(2) 1.00 ≦ B1 / A1 ≦ 3.00 ···(3) A1: length from the intersection point O1 to the connection point P1 (mm) A2: length from the intersection point O2 to the connection point P2 (mm) B1: length from the intersection point O1 to the connection point P3 (mm) Intersection point O1: intersection of the extension line of the short side and the extension line of the fixed-side long side Intersection point O2: intersection of the extension line of the short side and the extension line of the free-side long side Connection point P1: connection point of the fixed-side corner portion and the fixed-side long side Connection point P2: connection point of the free-side corner portion and the free-side long side Connection point P3: connection point of the fixed-side corner portion and the short side and may satisfy the above.
[0033] 4. Supplementary In addition, the mold 100 for continuous casting of the present disclosure may have an opening shape that continuously or intermittently changes from its inlet to its outlet. For example, the mold 100 for continuous casting may be provided with a taper. As far as the inventor has confirmed, the effects brought about by satisfying the above conditions (1) to (3) are similarly exhibited regardless of the amount of taper or multiple tapers in the mold.
Example
[0034] The present invention will be further described below with reference to examples, but the present invention is not limited to the following examples. The present invention can adopt various conditions as long as it does not deviate from the gist and can achieve its purpose.
[0035] 1. Continuous casting conditions Using a vertical bending type continuous casting machine, slabs with a width of 1100 - 2200 mm and a thickness of 250 mm were produced. Here, by providing a protrusion at the end of the short-side copper plate of the mold, chamfered slabs were produced. Regarding the opening shape of the mold, A1, A2, B1, and B2 shown in FIG. 2 were changed to study the optimal shape. In the case where A1 = A2 = B1 = B2 = 0, the opening shape of the mold is rectangular.
[0036] The steel type to be cast is a medium carbon steel with C: 0.08 mass%, Si: 0.2 mass%, Mn: 1.5 mass%, P: 0.01 mass%, S: 0.003 mass%, Ni: 0.4 mass%, Nb: 0.01 mass%, Ti: 0.01 mass%, and continuous casting was carried out at a casting speed of 1.3 m / min.
[0037] 2. Evaluation conditions Regarding the slabs produced as described above, the occurrence status of cracks was evaluated. The occurrence status of cracks was comprehensively evaluated as the total of the indices for each classified crack form. The crack index was divided into two types: "corner crack index" and "solidification crack index".
[0038] 2.1 Corner crack index The "corner crack index" was evaluated by cutting out and evaluating a slab about 10 m in length at the steady state of each casting condition. Specifically, about 100 mm from the end of the fixed-side long side surface of the slab was ground with a 1-mm surface grinder from the surface, and the ground surface was subjected to dye penetrant inspection to visually observe the presence or absence of cracks. When cracks were observed, grinding was further performed by 1 mm or 2 mm, and dye penetrant inspection was performed again. Grinding and dye penetrant inspection were repeatedly performed until the cracks disappeared, the crack depth was measured, and the degree of corner cracking was indexed according to the following criteria.
[0039] 0: No corner cracks were observed 1: Corner cracks with a crack depth of 2 mm or less were observed 2: Corner cracks with a crack depth exceeding 2 mm and 5 mm or less were observed 3: Corner cracks with a crack depth exceeding 5 mm were observed
[0040] 2.2 Solidification crack index The "solidification crack index" was evaluated by revealing the dendrite structure of a C-section sample including the slab end taken from the above-mentioned steady state by picric acid etching and measuring the length of solidification cracks along the dendrite trunks near the surface of the fixed-side long side (50 mm from the surface of the fixed-side long side of the slab to the inside). The degree of solidification cracking was indexed according to the following criteria.
[0041] 0: No solidification cracks exist 1: The total length of the observed solidification cracks is 10 mm or less. 2: The total length of the observed solidification cracks exceeds 10 mm and is 30 mm or less. 3: The total length of the observed solidification cracks exceeds 30 mm.
[0042] 3. Evaluation results Table 1 below shows the mold opening shapes and crack evaluation results for each of Nos. 1 to 10.
[0043]
Table 1
[0044] For No.1 and 2, although corner cracks did not occur, solidification cracks occurred. For No.1 and 2, since the ratio B1 / A1 of the length B1 to the length A1 in the fixed-side corner part of the mold opening shape was inappropriate, an air gap occurred between the mold and the solidification shell during the solidification progress of the slab, resulting in unstable solidification and the possibility that the solidification shell could not be uniformly formed in the mold.
[0045] For No.3 and 4, although solidification cracks did not occur, corner cracks occurred. For No.3 and 4, the length A1 in the fixed-side corner part of the mold opening shape was short, the chamfering of the fixed-side corner part of the slab was small, the temperature decreased in the fixed-side corner part of the slab, the temperature of the fixed-side corner part at the bending point became the embrittlement temperature range, and it is considered that cracks occurred due to the tensile stress applied during bending.
[0046] For No.5 and 6, although corner cracks did not occur, solidification cracks occurred. For No.5 and 6, since the sum A1 + A2 of the length A1 in the fixed-side corner part of the mold opening shape and the length A2 in the free-side corner part was too large, an air gap occurred between the mold and the solidification shell during the solidification progress, and the possibility that the solidification shell could not be uniformly formed in the mold.
[0047] On the other hand, for No.7 to 10, both corner cracks and solidification cracks could be significantly suppressed. From the results of No.7 to 10, it can be said that by using a continuous casting mold having the following configurations (I) and (II) in the continuous casting of a slab using a vertical bending type continuous casting machine, it is possible to achieve both prevention of corner cracks of the slab and stability of initial solidification.
[0048] (I) The opening shape of the continuous casting mold in a cross section perpendicular to the casting direction is defined by a pair of short sides, a fixed-side long side, a free-side long side, a fixed-side corner part connecting the short side and the fixed-side long side, and a free-side corner part connecting the short side and the free-side long side. (II) The opening shape satisfies the following conditions (1) to (3). 10 ≤ A1 ≤ 30 ···(1) A1 + A2 ≤ 30 ···(2) 1.00 ≤ B1 / A1 ≤ 3.00 ···(3) A1: Length from intersection point O1 to connection point P1 (mm) A2: Length from intersection point O2 to connection point P2 (mm) B1: Length from intersection point O1 to connection point P3 (mm) Intersection point O1: Intersection of the extension line of the short side and the extension line of the fixed-side long side Intersection point O2: Intersection of the extension line of the short side and the extension line of the free-side long side Connection point P1: Connection point between the fixed-side corner part and the fixed-side long side Connection point P2: Connection point between the free-side corner part and the free-side long side Connection point P3: Connection point between the fixed-side corner part and the short side
Explanation of symbols
[0049] Mold for continuous casting 1a Short-side mold 1b Short-side mold 1c Fixed-side long-side mold 1d Free-side long-side mold 10a Short side 10b Short side 10c Fixed-side long side 10d Free-side long side 10ac Fixed-side corner part 10bc Fixed-side corner part 10ad Free-side corner part 10bd Free-side corner part
Claims
1. A mold for continuous casting used in a vertical bending type continuous casting machine, wherein the opening shape of the mold for continuous casting in a cross section orthogonal to the casting direction is a pair of short sides, a fixed side long side, a free side long side, a fixed side corner portion connecting the short side and the fixed side long side, and a free side corner portion connecting the short side and the free side long side, defined by, and the opening shape satisfies the following conditions (1) to (3): 10 ≤ A1 ≤ 30... (1) A1 + A2 ≤ 30... (2) 1.00 ≤ B1 / A1 ≤ 3.00... (3) A1: length from intersection point O1 to connection point P1 (mm) A2: length from intersection point O2 to connection point P2 (mm) B1: length from intersection point O1 to connection point P3 (mm) Intersection point O1: intersection of the extension line of the short side and the extension line of the fixed side long side Intersection point O2: intersection of the extension line of the short side and the extension line of the free side long side Connection point P1: connection point of the fixed side corner portion and the fixed side long side Connection point P2: connection point of the free side corner portion and the free side long side Connection point P3: connection point of the fixed side corner portion and the short side satisfying, a mold for continuous casting.
2. The mold for continuous casting according to Claim 1, wherein the opening shape satisfies the following condition (4) or (5): A2 = B2 = 0... (4) 1.00 ≤ B2 / A2 ≤ 3.00... (5) B2: length from intersection point O2 to connection point P4 (mm) Connection point P4: connection point of the free side corner portion and the short side satisfying, a mold for continuous casting.
3. A method for continuous casting of a slab using a vertical bending type continuous casting machine, comprising supplying molten steel from a submerged nozzle to the mold, continuously withdrawing the slab from the lower end of the mold, and bending the slab withdrawn from the mold at a bending point, wherein the mold is the mold for continuous casting according to Claim 1 or 2, a method for continuous casting of a slab.
4. A continuously cast slab, wherein the cross-sectional shape of the continuously cast slab orthogonal to the casting direction is a pair of short sides, a fixed side long side, a free side long side, a fixed side corner portion connecting the short side and the fixed side long side, and a free side corner portion connecting the short side and the free side long side, defined by, and the cross-sectional shape satisfies the following conditions (1) to (3): 10 ≤ A1 ≤ 30... (1) A1 + A2 ≤ 30... (2) 1.00 ≤ B1 / A1 ≤ 3.00... (3) A1: length from intersection point O1 to connection point P1 (mm) A2: length from intersection point O2 to connection point P2 (mm) B1: Length (mm) from intersection point O1 to connection point P3 Intersection point O1: The intersection point of the extension line of the short side and the extension line of the fixed-side long side Intersection point O2: The intersection point of the extension line of the short side and the extension line of the free-side long side Connection point P1: The connection point of the fixed-side corner portion and the fixed-side long side Connection point P2: The connection point of the free-side corner portion and the free-side long side Connection point P3: The connection point of the fixed-side corner portion and the short side satisfying Continuous casting slab
Citation Information
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