BENDING DEVICE, PRODUCTION FACILITY FOR STEEL SHEET PILE, BENDING METHOD, AND PRODUCTION METHOD FOR STEEL SHEET PILE
20230107517 · 2023-04-06
Assignee
Inventors
Cpc classification
B21B1/082
PERFORMING OPERATIONS; TRANSPORTING
B21B15/0007
PERFORMING OPERATIONS; TRANSPORTING
B21B27/02
PERFORMING OPERATIONS; TRANSPORTING
B21B2045/0254
PERFORMING OPERATIONS; TRANSPORTING
B21B35/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A facility cost and a remodeling cost can be reduced, and further, a steel sheet pile product with high dimensional accuracy is produced by suppressing occurrence of warpage of a material to be rolled during bending. There is provided a bending device which produces a steel sheet pile by performing bending on a material to be rolled after being subjected to rough rolling, intermediate rolling, and finish rolling in a hot state, in a direction of increasing a cross sectional height of the material to be rolled, the bending device including: a forming stand including a forming caliber configured by an upper caliber roll and a lower caliber roll; and a drive unit driving either the upper caliber roll or the lower caliber roll.
Claims
1.-24. (canceled)
25. A bending device which produces a steel sheet pile by performing bending on a material to be rolled after being subjected to rough rolling, intermediate rolling, and finish rolling in a hot state, in a direction of increasing a cross sectional height of the material to be rolled, the bending device comprising: a forming stand comprising a forming caliber configured by an upper caliber roll and a lower caliber roll; and a drive unit driving either the upper caliber roll or the lower caliber roll.
26. The bending device according to claim 25, wherein a plurality of the forming stands are arranged in series.
27. The bending device according to claim 25, further comprising a lubricating oil supply mechanism supplying a lubricating oil to the upper caliber roll or the lower caliber roll that is not driven by the drive unit.
28. The bending device according to claim 25, further comprising: lubricating oil supply mechanisms supplying a lubricating oil to the upper caliber roll and the lower caliber roll; and a control unit controlling a ratio between a lubricating oil supply amount with respect to the upper caliber roll and a lubricating oil supply amount with respect to the lower caliber roll.
29. The bending device according to claim 25, wherein the steel sheet pile is a hat-shaped steel sheet pile.
30. The bending device according to claim 25, wherein: the steel sheet pile is a U-shaped steel sheet pile or a hat-shaped steel sheet pile; and when the material to be rolled is in a U-posture, the drive unit of driving the lower caliber roll is provided, and when the material to be rolled is in an inverted U-posture, the drive unit of driving the upper caliber roll is provided.
31. The bending device according to claim 26, wherein: the steel sheet pile is a U-shaped steel sheet pile or a hat-shaped steel sheet pile; and when the material to be rolled is in a U-posture, the drive unit of driving the lower caliber roll is provided, and when the material to be rolled is in an inverted U-posture, the drive unit of driving the upper caliber roll is provided.
32. The bending device according to claim 27, wherein: the steel sheet pile is a U-shaped steel sheet pile or a hat-shaped steel sheet pile; and when the material to be rolled is in a U-posture, the drive unit of driving the lower caliber roll is provided, and when the material to be rolled is in an inverted U-posture, the drive unit of driving the upper caliber roll is provided.
33. The bending device according to claim 28, wherein: the steel sheet pile is a U-shaped steel sheet pile or a hat-shaped steel sheet pile; and when the material to be rolled is in a U-posture, the drive unit of driving the lower caliber roll is provided, and when the material to be rolled is in an inverted U-posture, the drive unit of driving the upper caliber roll is provided.
34. A production facility for a steel sheet pile, comprising: a rough rolling mill; an intermediate rolling mill; a finish rolling mill; and a bending device in order, wherein: the bending device is one capable of performing bending forming on a material to be rolled in a hot state; and the production facility for a steel sheet pile further comprises a crop cutting machine cutting a crop part formed at a tip of the material to be rolled, at a position between in front of or behind the intermediate rolling mill and an inlet side of the bending device.
35. The production facility for a steel sheet pile according to claim 34, wherein the crop cutting machine is provided on an outlet side of the finish rolling mill.
36. The production facility for a steel sheet pile according to claim 34, wherein the crop cutting machine is provided on an outlet side of the intermediate rolling mill.
37. The production facility for a steel sheet pile according to claim 34, wherein the crop cutting machine is of a mobile type capable of synchronizing with a transferring speed.
38. The production facility for a steel sheet pile according to claim 34, wherein the crop cutting machine comprises a restraining die which restrains the material to be rolled, and a cutting blade.
39. The production facility for a steel sheet pile according to claim 34, wherein: the material to be rolled after being subjected to finish rolling comprises at least a web corresponding part, two flange corresponding parts whose end parts on one side are connected to both end parts of the web corresponding part, and corner parts being connection parts between the web corresponding part and the respective flange corresponding parts, and each having an angle wider than an angle of a product; and the bending device uses upper and lower caliber rolls to bend the corner parts of the material to be rolled.
40. A bending method, comprising performing bending on a material to be rolled after being subjected to rough rolling, intermediate rolling, and finish rolling in a hot state, in a direction of increasing a cross sectional height of the material to be rolled, to produce a steel sheet pile, wherein working is performed by driving, out of an upper caliber roll and a lower caliber roll that configure a forming caliber which performs the bending, only one of the rolls which presses the material to be rolled, and without driving the other roll.
41. The bending method according to claim 40, wherein a plurality of forming stands each comprising the forming caliber are arranged in series, and the bending is continuously performed in the plurality of forming stands.
42. The bending method according to claim 40, wherein a lubricating oil is supplied to the roll which is not driven, out of the upper caliber roll and the lower caliber roll.
43. The bending method according to claim 41, wherein a lubricating oil is supplied to the roll which is not driven, out of the upper caliber roll and the lower caliber roll.
44. The bending method according to claim 40, wherein a lubricating oil is supplied to the upper caliber roll and the lower caliber roll.
45. The bending method according to claim 41, wherein a lubricating oil is supplied to the upper caliber roll and the lower caliber roll.
46. The bending method according to claim 40, wherein the bending is performed in an arrangement where a position of a center of gravity of the material to be rolled is positioned in the vicinity of a roll center position of the upper caliber roll and the lower caliber roll.
47. The bending method according to claim 41, wherein the bending is performed in an arrangement where a position of a center of gravity of the material to be rolled is positioned in the vicinity of a roll center position of the upper caliber roll and the lower caliber roll.
48. The bending method according to claim 42, wherein the bending is performed in an arrangement where a position of a center of gravity of the material to be rolled is positioned in the vicinity of a roll center position of the upper caliber roll and the lower caliber roll.
49. The bending method according to claim 44, wherein the bending is performed in an arrangement where a position of a center of gravity of the material to be rolled is positioned in the vicinity of a roll center position of the upper caliber roll and the lower caliber roll.
50. The bending method according to claim 40, wherein the steel sheet pile is a hat-shaped steel sheet pile.
51. A production method for a steel sheet pile, comprising performing rough rolling, intermediate rolling, and finish rolling on a material to be rolled through hot rolling, and then performing bending forming, wherein: a crop part formed at a tip of the material to be rolled is cut during a period from the middle of an intermediate rolling step to a start of a bending forming step; and the bending forming step is performed in a hot state.
52. The production method for a steel sheet pile according to claim 51, wherein the crop part is cut after a termination of a finish rolling step.
53. The production method for a steel sheet pile according to claim 51, wherein the crop part is cut after a termination of the intermediate rolling step.
54. The production method for a steel sheet pile according to claim 51, wherein the cutting of the crop part is performed during movement of the material to be rolled.
55. The production method for a steel sheet pile according to claim 51, wherein the crop part is cut by restraining the material to be rolled by a restraining die.
56. The production method for a steel sheet pile according to claim 51, wherein: the material to be rolled after being subjected to the finish rolling comprises at least a web corresponding part, two flange corresponding parts whose end parts on one side are connected to both end parts of the web corresponding part, and corner parts being connection parts between the web corresponding part and the respective flange corresponding parts, and each having an angle wider than an angle of a product; and in the bending forming, upper and lower caliber rolls are used to bend the corner parts of the material to be rolled.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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EMBODIMENTS FOR CARRYING OUT THE INVENTION
[0031] Hereinafter, embodiments of the present invention will be explained while referring to the drawings. Note that, in this description and the drawings, the same codes are given to components having substantially the same functional configurations to omit duplicated explanation. Note that in the present embodiment, explanation will be made on a case where a hat-shaped steel sheet pile is produced as a steel sheet pile product.
Configuration of Rolling Line
[0032]
[0033] As illustrated in
[0034] On the rolling line L, a rectangular material (material to be rolled) heated in a not-illustrated heating furnace is rolled in sequence in the rough rolling mill 10 to the finish rolling mill 19, and further formed in the bending device 20, to be a hat-shaped steel sheet pile being a final product. Note that hereinafter, for the sake of explanation, the material to be rolled rolled in the rough rolling mill 10 is also called a raw blank, the material to be rolled rolled in the first intermediate rolling mill 13 to the second intermediate rolling mill 16 is also called an intermediate material, and the material to be rolled rolled in the finish rolling mill 19 is also called a finished material 19a. Specifically, one obtained by forming (changing a cross section of) the finished material 19a by using the bending device 20, becomes the final product (namely, the hat-shaped steel sheet pile).
[0035] Here, the rough rolling mill 10, the first intermediate rolling mill 13, the second intermediate rolling mill 16, the finish rolling mill 19, and the edger rolling mills 14, 17 arranged in an accompanied manner, which are arranged on the rolling line L, are general pieces of equipment conventionally used in production of a steel sheet pile, so that explanation regarding detailed device configurations and so on thereof will be omitted in this description.
Configuration of Bending Device
[0036] Next, a detailed configuration of the bending device 20 will be described with reference to the drawings.
[0037] As illustrated in
[0038] Further, as illustrated in
Caliber Configuration of Bending Device
[0039] Next, the roll configuration and the caliber shape of each of the first stand 22 and the second stand 23 will be explained.
[0040] As illustrated in
[0041] Further, as illustrated in
[0042] Further, as illustrated in
Forming in Bending
[0043] Subsequently, the forming of the material to be rolled in the stands 22, 23 described above will be explained.
[0044] The finished material 19a illustrated in
[0045] Next, as illustrated in
Roll Driving in Bending
[0046] As described above, in the bending device 20 according to the present embodiment, the upper caliber rolls (the upper caliber rolls 40, 50) of both stands (the first stand 22 and the second stand 23) are not driven. Accordingly, there is no need to attach the drive unit such as a motor to the upper caliber rolls 40, 50, and it becomes possible to arrange the cooling equipment 21 to the vicinity of the stand (in the vicinity of the upper roll), as illustrated in
[0047] On the other hand, in the bending device 20, it is configured that the upper caliber rolls 40, 50 are not driven and the lower caliber rolls 41, 51 are driven in the first stand 22 and the second stand 23, so that there is a possibility that upward warpage occurs in the material to be rolled (the finished material 19a) passed through the bending device 20, due to the driving of the lower caliber rolls 41, 51. Accordingly, the present inventors conducted earnest studies regarding the presence/absence of upward warpage that occurs when performing bending of the hat-shaped steel sheet pile in the bending device 20 according to the present embodiment.
[0048] L2+L2). Further, the bending is performed in a state where a position of a center of gravity O of the finished material 19a and a roll center position of the first stand 22 and the second stand 23 substantially match. Further, a sheet thickness T1 of the web corresponding part 60 and a sheet thickness T2 of each of the arm corresponding parts 65, 66 are substantially equal (namely, T1
T2).
[0049] Generally, the warpage of the material to be rolled in the bending is caused by elongation of a worked cross section in the longitudinal direction, or a peripheral speed difference between the material to be rolled and the rolls. Since the reduction is not performed almost at all in the bending of the hat-shaped steel sheet pile in the invention of the present application, it is clear that the elongation of the worked cross section in the longitudinal direction does not occur almost at all. Specifically, the peripheral speed difference between the material to be rolled and the rolls is the cause of the occurrence of warpage.
[0050] When a product to be produced is the hat-shaped steel sheet pile, L1L2+L2, and T1
T2 are satisfied as described above, so that by designing Φ1 (a diameter of an upper caliber roll) and Φ2 (a diameter of a lower caliber roll) being roll peripheral speeds of the upper and lower caliber rolls to be substantially equal (namely, Φ1
Φ2), force P1 applied to an upper part of the material to be rolled and force P2 applied to a lower part of the material to be rolled become equal and thus the forces in the upper and lower directions are balanced, resulting in that the warpage does not occur.
Operation and Effect
[0051] As described above, when producing the hat-shaped steel sheet pile product, in particular, through the bending, regarding the configuration of the respective caliber rolls in the first stand 22 and the second stand 23, even if the upper caliber rolls 40, 50 are not driven and only the lower caliber rolls 41, 51 are driven, the bending can be performed without causing upward warpage in the finished material 19a. Further, as described above, since there is no need to attach the drive unit such as the motor to the upper caliber rolls 40, 50, it becomes possible to downsize the facility and reduce the cost.
[0052] Namely, with the use of the bending device 20 according to the present embodiment, the facility can be downsized, and only by performing simple remodeling on the existing facility, it is possible to install the bending device 20 according to the present embodiment, resulting in that a large reduction in facility cost can be realized.
[0053] One example of the embodiment of the present invention has been explained above, but the present invention is not limited to the illustrated embodiment. It should be understood that various changes and modifications are readily apparent to those skilled in the art within the scope of the spirit as set forth in claims, and those should also be covered by the technical scope of the present invention.
[0054] For example, in the above-described embodiment, the case has been explained in which the bending device 20 is provided with the two stands of the first stand 22 and the second stand 23, but the present invention is not limited to this. Specifically, the bending device is only required to be provided with a single stand or a plurality of stands which are arranged in series. Further, when the bending of the material to be rolled is performed by using a plurality of stands of three or more, it becomes possible to perform forming more effectively and with higher accuracy in accordance with the increase in the number of stands, so that it is possible to efficiently produce a product of a desired shape.
[0055] Further, in the above-described embodiment, the case of producing the hat-shaped steel sheet pile as the steel sheet pile product is cited as an example, and the case of performing the rolling and the bending on the hat-shaped steel sheet pile in a U-posture (a posture of protruding downward) is illustrated and explained. In this case, it is only required to configure such that the upper caliber rolls are not driven and only the lower caliber rolls are driven, as described above. However, depending on rolling facilities, there is also a case where the hat-shaped steel sheet pile is subjected to the rolling and the bending in an inverted U-posture (a posture of protruding upward). In this case, it is only required to configure the device in which only the upper caliber rolls are driven and the lower caliber rolls are not drive, in a manner opposite to that of the above-described embodiment.
First Other Embodiment of Present Invention
[0056] Further, in the above-described embodiment, the case of producing the hat-shaped steel sheet pile as the steel sheet pile product has been explained as an example, but the present invention is not limited to this, and the present invention can be applied to various steel sheet pile products such as a U-shaped steel sheet pile, for example. However, when producing the hat-shaped steel sheet pile product through the bending, the upward warpage of the material to be rolled (the finished material) during the bending can be avoided since the horizontal direction length of the web corresponding part and the total of the horizontal direction lengths of the arm corresponding parts are substantially equal as described in the aforementioned embodiment, but when producing another steel sheet pile product, the horizontal direction length of the web corresponding part and the total of the horizontal direction lengths of the arm corresponding parts are not always equal. Accordingly, the present inventors further conducted earnest studies regarding the technique of avoiding the upward warpage of the material to be rolled during the bending. Hereinafter, the technique will be described.
[0057]
[0058] As illustrated in
[0059] When performing bending of the material to be rolled in the bending device 80 illustrated in
[0060] Further, in the bending device 80 explained with reference to
[0061] Here, the control unit 86 can preferably control a ratio between the supply amount of lubricating oil to be supplied by the lubricating oil supply mechanisms 83, 84 and the supply amount of lubricating oil to be supplied by the lubricating oil supply mechanisms 88, 89. As an example, when a U-shaped steel sheet pile is produced through bending in a U-posture (a posture of protruding downward), as illustrated in
Second Other Embodiment of Present Invention
[0062] Further, in the production process of the hat-shaped steel sheet pile product using the bending forming, it is known that in the hot rolling step, a left-right asymmetric crop part is likely to be formed at a tip of the material to be rolled, due to a displacement in the left-right direction in a frontal view of a rolling state. When the material to be rolled (the finished material 19a) with such a crop part formed thereon is tried to be formed as it is in the bending device 20, displaced biting (displacement of biting) is likely to occur in the bending device 20.
[0063] As illustrated in
[0064] Accordingly, the present inventors conducted earnest studies regarding a relation between a displacement amount in the width direction when biting the finished material 19a in the bending device 20 and a forming angle, and found out that, when the displaced biting occurs in the bending device 20, namely, when the displacement amount becomes large, the material passage failure does not occur by setting a relation between an inclination angle of a flange corresponding part before bending and a forming angle in the caliber 45 to a predetermined relation. This finding will be explained hereinafter with reference to the drawings. Note that the aforementioned displacement amount corresponds to a displacement between connection parts (also described as corner parts, hereinafter) between the web corresponding part 60 and the flange corresponding parts 62, 63 of the finished material 19a, and corner parts of the caliber 45 corresponding to those connection parts, the displacement being expressed by a horizontal direction length.
[0065]
[0066] Further, as described in the aforementioned embodiment, in the bending device 20, it is sometimes configured such that one caliber roll (the upper caliber roll 40, 50, for example) is not driven and only the other caliber roll (the lower caliber roll 41, 51, for example) is driven to perform bending. According to the verification conducted by the present inventors, it was found out that when the caliber roll of the bending device 20 is set to be driven based on a single-drive system, it is possible to perform the bending without causing the warpage as described above, but deterioration of biting property is concerned. For example, when performing rolling and bending on a hat-shaped steel sheet pile in a so-called inverted U-posture (a posture of protruding upward), a caliber roll which is first brought into contact with the material to be rolled, is a lower caliber roll. In that case, when the lower caliber roll is not driven, since no driving force is provided, the deterioration of biting property is concerned.
[0067] In particular, in a state where a crop part is formed at the tip of the material to be rolled, an influence with respect to the biting property is different between a case where both the upper and lower caliber rolls are driven and a case where one of the upper and lower caliber rolls is driven, as listed in Table 1 below. The crop part is an unsteady part and is freely deformed, so that it is difficult to be shaped in a left-right asymmetric manner. This is because, in an actual operation, the shaping in a left-right asymmetric manner is inevitably performed due to temperature unevenness due to heating, a set-up accuracy of rolls, elastic deflection of rolls, and the like.
TABLE-US-00001 TABLE 1 BOTH- SINGLE- DRIVING DRIVING PRESENCE OF Δ X CROP ABSENCE OF CROP ◯ ◯
[0068] When the bending is performed on the material to be rolled in a state of having the left-right asymmetric crop part formed thereon, the contact with respect to the caliber rolls is started from a left or right preceding part of the material to be rolled. In this case, without depending on the roll driving system, the first bitten part is gripped by the rolls, and shifts under total cross section reduction while maintaining that position. For this reason, when the first bitten part is displaced, the displacement is unlikely to be corrected to the proper position (a left-right symmetric position), which leads to left-right unbalanced deformation. Specifically, as listed in Table 1, when the crop part is formed, the deterioration of biting property (x in Table) is observed in the single-driving, and even in the both-driving, a left-right dimensional difference is generated (Δ in Table).
[0069] In view of such circumstances, the present inventors invented a configuration of introducing a device of cutting the crop part, on the rolling line L explained in the above-described embodiment.
[0070] As illustrated in
[0071] Next, a cutting step of the crop part C at the tip of the finished material 19a using the crop cutting machine 100 will be explained. As illustrated in
[0072] After that, the finished material 19a reaches the crop cutting machine 100, and in the crop cutting machine 100, the foremost end position FE of the crop part C of the finished material 19a is detected. At this time, based on the entire crop length information transmitted from the finish rolling mill 19, a line speed, and the like, a timing at which the rearmost end position BE of the crop part of the finished material 19a reaches right below an upper blade (not illustrated) provided to the crop cutting machine 100, is calculated. Further, as illustrated in
[0073] Subsequently, the upper blade (not illustrated) is lowered, and the crop part C of the finished material 19a is cut (hereinafter, the finished material 19a after cutting the crop part C therefrom, is referred to as a “finished material 19b”). Thereafter, the restraint of the finished material 19b by the restraining die 70 is released, and as illustrated in
[0074] As described above, by performing the bending forming on the finished material after cutting the crop part C therefrom, even when the forming angle Δθ is large, the finished material can be bitten by the bending device with no problems, and the stable passage of material can be realized. This makes it possible to prevent the defective product shape, and to improve the productivity and the yield.
[0075] Note that depending on the shape of the crop part C formed at the tip of the finished material 19a, there is also a case where the performance of bending forming without cutting the crop part C, does not lead to the defective product shape. Accordingly, when the entire length of the crop formed at the tip of the finished material 19a, the difference in left and right crop lengths, the bending amount of the crop part C in the sheet width direction, and the like are predetermined amounts or less, the cutting of the crop part C by the crop cutting machine may not be performed. This makes it possible to save the time taken for cutting the crop part C, resulting in that the productivity can be improved. Note that the “predetermined amount” is appropriately changed according to the shape of the finished material, the bending device to be used, and the like.
[0076] The forming conditions explained here are suitable particularly in a case where a thickness of the corner part of the finished material 19a is 10 mm or more, for example.
[0077] Further, as the crop cutting machine, it is possible to use a fixed one or a mobile crop cutting machine capable of moving along the rolling line L direction. When cutting the crop part at the tip after the finish rolling, the cutting processing is preferably performed without stopping the finish rolling, so that if the mobile crop cutting machine which is synchronized with a transferring speed of the material to be rolled is used, it becomes also possible to perform the crop cutting without greatly reducing the line speed, resulting in that the stable material passage can be performed, and at the same time, the productivity can also be improved.
[0078] Further, in this embodiment, the guillotine-type shear has been exemplified as the crop cutting machine, and it is also possible to use a rotary shear as illustrated in
[0079] As described above, the method and the equipment of cutting the crop part at the tip of the material to be rolled before performing the bending forming of the material to be rolled, regardless of the concrete device configuration of the crop cutting machine of the fixed type, the mobile type, the guillotine type, the rotary type, and the like, belong to the technical scope of the present invention.
[0080] Further, the cutting of the crop part is not limited to be performed between the finish rolling step and the bending forming step, and it may be performed during a period from the middle of the intermediate rolling step close to the finish rolling step to the start of the bending forming step. When the crop cutting is performed during the intermediate rolling step, there is also a possibility that a crop is formed again on the material to be rolled by the rest of the intermediate rolling step after performing the crop cutting, but a length of the formed crop is shorter than a length of the crop of the material to be rolled in a case where the cutting of crop is not performed. Accordingly, the crop which is formed again by the rest of the intermediate rolling step, is not large enough to impair the stability of material passage with respect to the bending device.
[0081] However, when there are a plurality of intermediate rolling mills in a case of performing crop cutting during the intermediate rolling step, the crop cutting may be performed in front of or behind any of the rolling mills, but since the sheet thickness of the material to be rolled is large in a first-half step of the intermediate rolling step, even if the crop part is formed on the material to be rolled, it is sometimes impossible to cut the crop part by the crop cutting machine in a short period of time. Therefore, the cutting of the crop part in the middle of the intermediate rolling step, is required to be performed after the material to be rolled is rolled to a sheet thickness at which the crop part can be cut by the cutting machine.
[0082] Further, when a plurality of intermediate rolling mills are provided, the crop cutting machine may be provided between a first intermediate rolling mill and a second intermediate rolling mill, and in that case, it is required to arrange the crop cutting machine on a downstream side of the intermediate rolling mill by which the material to be rolled is rolled to the sheet thickness at which the crop part can be cut. It is also possible, as a matter of course, that the rolling is performed by the second intermediate rolling mill, and then the crop cutting is performed before the finish rolling.
[0083] Further, the number of crop cutting machine provided on the rolling line L is not limited to one, and a plurality of crop cutting machines may also be provided. If the plurality of crop cutting machines are provided, the crop part of the material to be rolled can be surely cut, and the material passage with respect to the bending device can be further stabilized. Specifically, the cutting of the crop part may be performed a plurality of times during a period from the middle of the intermediate rolling step to the start of the bending forming step.
EXAMPLES
[0084] As Examples, studies were conducted regarding the left-right unbalanced deformation when performing the bending forming on the material to be rolled formed with the crop part by using the bending machine of single-drive system, in the production of the hat-shaped steel sheet pile.
[0085] As illustrated in
[0086] In view of the results of Example, when the device of cutting the crop part is introduced into the rolling line as explained in the second other embodiment of the present invention, the formed crop part is cut, and then the bending forming is carried out, biting starting points of left and right always match, and thus it can be confirmed that, without depending on the drive system, the stable bending forming can be realized even in the single-drive system.
INDUSTRIAL APPLICABILITY
[0087] The present invention is applicable to a bending device of a steel sheet pile, a production facility for a steel sheet pile, a bending method of a steel sheet pile, and a production method for a steel sheet pile.
EXPLANATION OF CODES
[0088] 10 . . . rough rolling mill
[0089] 13 . . . first intermediate rolling mill
[0090] 14 . . . edger rolling mill
[0091] 16 . . . second intermediate rolling mill
[0092] 17 . . . edger rolling mill
[0093] 19 . . . finish rolling mill
[0094] 19a . . . finished material
[0095] 20 . . . bending device
[0096] 21 . . . cooling equipment
[0097] 22 . . . first stand
[0098] 23 . . . second stand
[0099] 40 . . . upper caliber roll
[0100] 41 . . . lower caliber roll
[0101] 44 . . . casing
[0102] 45 . . . caliber
[0103] 50 . . . upper caliber roll
[0104] 51 . . . lower caliber roll
[0105] 54 . . . casing
[0106] 55 . . . caliber
[0107] 60 . . . web corresponding part
[0108] 62, 63 . . . flange corresponding part
[0109] 65, 66 . . . arm corresponding part
[0110] 68, 69 . . . joint corresponding part
[0111] 70 . . . restraining die
[0112] 71 . . . shearing blade
[0113] 80 . . . bending device
[0114] 83, 84, 88, 89 . . . lubricating oil supply mechanism
[0115] 86 . . . control unit
[0116] 90 . . . web corresponding part of U-shaped steel sheet pile
[0117] 92 . . . claw part
[0118] 100 . . . crop cutting machine
[0119] N . . . cooling spray nozzle
[0120] L . . . rolling line