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    • 4. 发明专利
    • DE69113326T2
    • 1996-03-28
    • DE69113326
    • 1991-06-18
    • NIPPON STEEL CORP
    • INAGAKI AKIRAKUROKAWA MASAOHASEGAWA HIROYUKIISHIBASHI TOSHIHIROHADANO HIROAKIHIOKI TAKESHITORIYAMA YOSHIMIFUJITA KAZUOTAKESHIMA YASUSHIWAKATSUKI TERUYUKIHORIUCHI YASUSHI
    • C21D8/00C21D9/00
    • A process for producing a thin-webbed H-beam steel having a web thinner than flanges, which comprises the steps of: forcibly water cooling the outer surface of the flanges during an intermediate hot rolling prior to a final hot rolling, so that the flange outer surfaces are cooled to a temperature of 700 DEG C or lower; terminating the forcible water cooling during the intermediate hot rolling so that the flange outer surfaces are returned to a temperature higher than 700 DEG C; repeating the forcible water cooling and the termination thereof during the intermediate hot rolling to refine the microstructure of the flange surface to a predetermined depth from the surface; final-hot rolling the intermediate-hot rolled H-beam steel; and forcibly water cooling the flanges of the final-hot rolled H-beam steel immediately after the completion of the hot rolling, in a manner such that either the cooling time is not longer than an upper limit or the difference between the flange and the web temperatures upon completion of the cooling is not less than a lower limit, within which upper and lower limits the wavy web does not occur during the cooling, and such that either the cooling time is not less than a lower limit or the difference between the flange and the web temperatures upon completion of the cooling is not more than an upper limit, within which lower and upper limits a thermal stress, generated in the web during air cooling to room temperature, does not exceed a buckling strength of the web, the upper and lower limits being predetermined with respect to the size of H-beam and the density of the coolant water quantity. An apparatus for carrying out the process is also disclosed.
    • 5. 发明专利
    • DE69113326D1
    • 1995-11-02
    • DE69113326
    • 1991-06-18
    • NIPPON STEEL CORP
    • INAGAKI AKIRAKUROKAWA MASAOHASEGAWA HIROYUKIISHIBASHI TOSHIHIROHADANO HIROAKIHIOKI TAKESHITORIYAMA YOSHIMIFUJITA KAZUOTAKESHIMA YASUSHIWAKATSUKI TERUYUKIHORIUCHI YASUSHI
    • C21D8/00C21D9/00
    • A process for producing a thin-webbed H-beam steel having a web thinner than flanges, which comprises the steps of: forcibly water cooling the outer surface of the flanges during an intermediate hot rolling prior to a final hot rolling, so that the flange outer surfaces are cooled to a temperature of 700 DEG C or lower; terminating the forcible water cooling during the intermediate hot rolling so that the flange outer surfaces are returned to a temperature higher than 700 DEG C; repeating the forcible water cooling and the termination thereof during the intermediate hot rolling to refine the microstructure of the flange surface to a predetermined depth from the surface; final-hot rolling the intermediate-hot rolled H-beam steel; and forcibly water cooling the flanges of the final-hot rolled H-beam steel immediately after the completion of the hot rolling, in a manner such that either the cooling time is not longer than an upper limit or the difference between the flange and the web temperatures upon completion of the cooling is not less than a lower limit, within which upper and lower limits the wavy web does not occur during the cooling, and such that either the cooling time is not less than a lower limit or the difference between the flange and the web temperatures upon completion of the cooling is not more than an upper limit, within which lower and upper limits a thermal stress, generated in the web during air cooling to room temperature, does not exceed a buckling strength of the web, the upper and lower limits being predetermined with respect to the size of H-beam and the density of the coolant water quantity. An apparatus for carrying out the process is also disclosed.
    • 7. 发明专利
    • METHOD FOR CONTROLLING COOLING OF FLANGE OF H SHAPE
    • JPH0452021A
    • 1992-02-20
    • JP16140590
    • 1990-06-21
    • NIPPON STEEL CORP
    • ISHIBASHI TOSHIHIROHATANO HIROAKIFUJITA KAZUOHASEGAWA HIROYUKI
    • B21B1/08B21B45/02
    • PURPOSE:To allow the manufacture of H shape whose ratio of the flange to the wed is large, i.e., H shape of excellent sectional performance by utilizing the trucking information of steel material, operating the cooling zone sequentially and successively jetting the cooling liquid. CONSTITUTION:When the material to be rolled is rolled to (13) direction, the surface temperature of the material to be rolled is measured with both flange thermometers 7a, 7b before the flange cooling device having two zones 9, 10 of the inlet sides of the universal mill U and the edger mill E and the wed thermometer 8, based on the difference of the temperature of the wed and the flange of the material to be rolled, whether there is or not the forcible cooling for the zones from 9 to 12 of flange cooling devices including two zones 11, 12 after U and E rolling is decided with the calculation with the calculator or with reading the table preliminarily inputted. By storing the position of the material to be rolled decided whether there is or not the forcible cooling for the zone based on the temperature difference in the calculator, the position of the material to be rolled is passed through the zone based on the trucking information of the material to be rolled, the cooling liquid is controlled to jet or not according to the instruction.
    • 8. 发明专利
    • Caliber rolling mill
    • 校准滚子铣刀
    • JPS59137102A
    • 1984-08-07
    • JP1321883
    • 1983-01-28
    • Nippon Steel Corp
    • HIOKI TAKESHIISHIBASHI TOSHIHIROMASUDA MITSUHARU
    • B21B1/082B21B1/08B21B1/14B21B31/02B21B39/14
    • B21B1/14B21B1/082B21B31/02B21B39/14B21B2031/026
    • PURPOSE:To eliminate the movements of side guides and to make the entrance and exit of a rolling material smooth by making a housing that incorporates caliber rolls movable in the axial direction of the roll and in the vertical direction, in a caliber rolling mechanism. CONSTITUTION:Tables 3, 5 formerly movable are made stationary, and side guide rails 4, 6 are also fixed at prescribed positions separated by a prescribed distance. A housing 10 with caliber rolls 1, 2 is mounted on a sole plate 11 and is made movable in the axial direction of the roll axis by a cylinder 13. Further, the housing 10 is made vertically movable by a cylinder 12 on the plate 11 to fit the calibers of the rolls 1, 2 to a prescribed position. A rolling material M goes smoothly in and out of the caliber without being bent laterally or vertically. The dimensions and cross-sectional shapes at both ends of a formed shape- steel M are made uniform and highly accurate to improve its quality.
    • 目的:为了消除侧导板的移动,通过制造具有沿辊的轴向方向移动并且在垂直方向上的口径辊的外壳,能够平滑地进行滚动材料的入口和出口。 构成:以前可移动的表3,5被固定,并且侧导轨4,6也固定在以规定距离分开的规定位置。 具有口径辊1,2的壳体10安装在底板11上,并且通过圆筒13在辊轴的轴向方向上可移动。此外,壳体10通过圆柱体12在板11上垂直移动 以将辊1,2的口径适配到规定位置。 轧制材料M平滑地进出口径而不侧向或垂直弯曲。 成型钢M的两端的尺寸和横截面形状均匀且高精度,以提高其质量。