摘要:
A method of continuous coating of metallic strip material carried into practice by using a continuous strip coating device wherein the thickness of the coating 27 is decided by a gap between a pickup roll 3 and a thickness control member 7 spaced apart a predetermined distance from the surface of the pickup roll. The method includes the step of (a) setting the pressure of the paint and/or the size of the gap based on the data obtained by preliminary experiments, or (b) directly measuring the gap 8 between the surface of the pickup roll 3 and the thickness control member 7 and feeding back the measurement, to bring the actual size of the gap into agreement with the value set beforehand at all times.
摘要:
A method of continuous coating of metallic strip material carried into practice by using a continuous strip coating device wherein the thickness of the coating 27 is decided by a gap between a pickup roll 3 and a thickness control member 7 spaced apart a predetermined distance from the surface of the pickup roll. The method includes the step of (a) setting the pressure of the paint and/or the size of the gap based on the data obtained by preliminary experiments, or (b) directly measuring the gap 8 between the surface of the pickup roll 3 and the thickness control member 7 and feeding back the measurement, to bring the actual size of the gap into agreement with the value set beforehand at all times.
摘要:
In a crop shear apparatus (26) disposed in a conveyance passage in which band steel (12) is conveyed from a first rolling mill to a second rolling mill of hot rolling equipment, the crop shear apparatus (26) including: at least one shear blade (50, 52) for shearing the band steel (12) in a widthwise direction conveyed from the first rolling mill to the second rolling mill; and a supporting mechanism for movably supporting the at least one shear blades (50, 52) in the widthwise direction of the band steel (12), wherein the at least one shear blade (50, 52) is present in a non-linear manner along the widthwise direction of the band steel (12) such that a projection quantity of the band steel (12) in the conveyance direction at a sheared end portion can be adjusted when the band steel (12) is sheared in a state where the blade (50, 52) has been moved in the widthwise direction of the band steel (12) and the shear blade (50, 52) is formed into a non-mirror-symmetrical shape on two side portions of a portion which corresponds to the center in the widthwise direction of the band steel (12), a projection quantity in at least one of the sheared front and rear end portions of the band steel (12) can be adjusted independently of a width of the band steel (12).
摘要:
In a continuous hot strip rolling system in which bars are joined between a roughing train (1) and a finishing train (2) for continuous rolling, the roughing train (1) includes two two-high twin-roll arranged stands (3,4) each having two pairs of work rolls. The four two-high mills provided by the two twin-roll arranged stands (3,4) including four pairs of work rolls are disposed close to each other so as to provide a tandem rolling in which a material to be rolled is rolled simultaneously by the two adjacent mills. A slab (22) having a thickness of 200 to 240 mm is rolled by the two twin-roll arranged stands (3,4) to obtain a bar of about 80 mm. A width press (9) is provided near the entrance of the No. 1 stand. A descaling device (16,17) is provided at the entrance of each of the two stands (3,4). The descaling device (16,17) has a nozzle (30) which is movable in the direction transverse to the direction of travel of the material to be rolled. A non-driven roll edger (18,19) is provided at the exit of each of the two stands (3,4). Thus, generation of camber in the roughing rolling process can be reduced, and stable joining continuous rolling can be conducted. Furthermore, the overall length of the system can be reduced, and reduction in the bar temperature, which occurs until the bar reaches the joining position, can be lessened. Rational bar joining can be conducted.
摘要:
A five-high rolling mill includes upper and lower work rolls (1,2) of substantially the same diameter; upper and lower backup rolls (3,4) supporting the upper and lower work rolls (1,2) and having a larger diameter than that of the work rolls; an intermediate roll (5) located between one of the upper and lower work rolls and the associated backup roll and having a diameter larger than that of the work roll and smaller than that of the backup roll and a drum length larger than the maximum sheet width of a rolled material (6); work roll bending devices (10,11,12) provided on the respective roll ends of the upper and lower work rolls (1,2); and intermediate roll bending devices (13) provided on the roll ends of the intermediate roll (5). A skinpass rolling mill includes upper and lower work rolls (1,2) of substantially the same and large diameter; upper and lower backup rolls (3,4) supporting the work rolls (1,2), respectively; an intermediate roll (5) located between the upper work roll (1) and the upper backup roll (3) and having a diameter within a range between the diameters of the upper rolls; roll bending devices respectively provided on the roll ends of the intermediate roll (5); and roll bending devices respectively provided on the roll ends of the upper and lower work rolls (1,2), wherein the intermediate roll (5) has a larger drum length than the maximum sheet width of a rolled material (6) and smaller than the drum length of the work roll, and the roll bending devices for the lower work roll (2) are at least provided with a decrease bender mechanism. A multi-high rolling mill includes upper and lower work rolls (1,2) of substantially the same diameter and also a certain number of supporting rolls and a different number of supporting rolls for respectively supporting the work rolls (1,2) so that sections of the rolling mill above and below a rolled material (6) have sets of the rolls in different numbers; roll bending devices (13) installed on the supporting roll (5) directly supporting the work roll (1) in one of the roll sets having the larger number of the rolls; and roll bending devices (10,11) installed on the respective work rolls (1,2) of the upper and lower roll sets, wherein the supporting roll (5) in the one roll set having the larger number of the rolls, the work roll (1) in the roll set, and the work roll (2) in the other roll set having the smaller number of the rolls are controlled with control degrees of values gradually increasing in this order. A rolling method in a multi-high rolling mill is applied to a multi-high rolling mill including upper and lower work rolls of substantially the same diameter, upper and lower backup rolls supporting the work rolls, respectively, and an intermediate roll located between one of the upper and lower work rolls and the associated backup roll, wherein roll bending devices installed on the intermediate roll and roll bending devices installed on the work roll in the roll set where the intermediate roll is disposed are all actuated to control a composite sheet of a rolled material over its entire width, and roll bending devices installed on the work roll which is directly supported by the backup roll are actuated to control the sheet crown of the rolled material at its side end portions, thereby performing both the composite shape control of the rolled material and the control of the widths of the side end portions of the rolled material which are not to be rolled.