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    • 4. 发明专利
    • Conveyor chain equipment for conveyance in molten salt
    • 输送机链条输送机用于浇注盐
    • JP2011047023A
    • 2011-03-10
    • JP2009198822
    • 2009-08-28
    • Mitsui Eng & Shipbuild Co LtdNippon Steel CorpTsubakimoto Chain Co三井造船株式会社新日本製鐵株式会社株式会社椿本チエイン
    • SADANO YUTAKATOKI MASAHIROTAKAHASHI YUKIHIROKURISU YASUSHINAKAJIMA KOJIFUJIWARA MAKOTOANDO SEIGOOKUZONO HIROSHI
    • C21D9/52C21D9/573
    • PROBLEM TO BE SOLVED: To provide conveyor chain equipment for conveyance in molten salt maintaining excellent lubricating state of a rotary roller part to be slidably rotated without any lubricant even when being immersed in high-temperature molten salt, thereby performing smooth conveyance. SOLUTION: The conveyor chain equipment for conveyance in molten salt has a large number of links connected to each other in the longitudinal direction, and rotary rollers which are rotatably provided on the links, the conveyor chain equipment receives the load when a metallic material in the austenitic state is placed on the links by the rotary rollers by loading the rotary rollers on a guide rail forming a conveyance line, and is driven along the conveyance line to immerse and cool the metallic material in molten salt of 400-600°C while conveying the metallic material. The difference between the inside diameter of the rotary roller and the outside diameter of the rotary shaft of the rotary roller is 0.6-2.0 mm, and the specific pressure to be applied between the rotary roller and the rotary shaft is ≤0.5 N/mm 2 , and the rotational speed of the rotary roller is ≤350 rpm. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供输送链条设备在熔盐中的输送,即使浸入高温熔盐中也能保持优异的旋转辊部分的润滑状态,即使在没有任何润滑剂的情况下也能够滑动地旋转,从而进行平稳的输送。 解决方案:用于在熔盐中输送的输送链设备在长度方向上具有大量连接的连杆,以及可旋转地设置在连杆上的旋转辊,输送链设备在金属 将奥氏体状态的材料通过将旋转辊装载在形成输送线的导轨上而通过旋转辊放置在连杆上,并沿输送线驱动,将金属材料浸入并冷却400-600°的熔融盐 同时输送金属材料。 旋转辊的内径与旋转辊的旋转轴的外径的差为0.6〜2.0mm,旋转辊与旋转轴之间的比压≤0.5N/ mm < SP> 2 ,旋转辊的旋转速度≤350rpm。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Equipment, method and program for cooling hot steel sheet
    • 冷轧钢板的设备,方法和程序
    • JP2007301568A
    • 2007-11-22
    • JP2006129243
    • 2006-05-08
    • Nippon Steel Corp新日本製鐵株式会社
    • YAMAMOTO RYUJISERIZAWA YOSHIHIROOGAWA SHIGERUUENO HIRONORITOKI MASAHIRONISHIYAMA KAZUHIRO
    • B21B45/02C21D1/00C21D9/52C21D9/573C21D11/00
    • PROBLEM TO BE SOLVED: To propose an inexpensive cooling equipment by which continuously wide range of the control of cooling capacity is made possible about equipment for performing controlled cooling while passing a hot steel sheet by horizontally restraining the sheet with restraining rolls.
      SOLUTION: In the cooling equipment for cooling the hot steel sheet 3 which is hot-rolled and transferred between a pair of restraining rolls 11 by jetting cooling water from a plurality of rows of spray nozzles, by means of which the equipment has gentle cooling spray nozzle rows K and strong cooling spray nozzle rows J which are different in orifice shape and the integral value of the maximum collision pressure of cooling water of the gentle cooling spray nozzle rows K is continued to the integral value of the minimum collision pressure of the cooling water of the strong cooling spray nozzle rows J, the continuously wide range of the control of the cooling capacity is possible.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提出一种便宜的冷却设备,通过对通过热钢板进行控制冷却的设备可以连续地控制冷却能力的范围可以通过用限制辊水平地限制薄片来实现。 解决方案:在用于通过从多排喷嘴喷射冷却水来热轧并转移在一对约束辊11之间的热钢板3的冷却设备中,通过该设备具有 温和冷却喷嘴排K和喷嘴形状不同的强冷却喷嘴排J和温和冷却喷嘴排K的冷却水的最大碰撞压力的积分值继续达到最小碰撞压力的积分值 的强冷却喷水喷管J的冷却水可以连续控制冷却能力的范围。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Method for setting cooling facility
    • 设置冷却设备的方法
    • JP2007237290A
    • 2007-09-20
    • JP2006067497
    • 2006-03-13
    • Nippon Steel Corp新日本製鐵株式会社
    • NAKAJIMA TAKAOTOKI MASAHIROOTANI YASUHIKOKUROKI MASATSUGUKONDO TAKASHINAKADA MASAHIROKINOSHITA JUNICHI
    • B22D11/124
    • PROBLEM TO BE SOLVED: To provide a method for precisely setting a secondary cooling facility etc., in a continuous casting for short time at the construction-site, when the secondary cooling facility etc., in a continuous casting, is set.
      SOLUTION: In a method for setting the cooling facility having the plurality of lined nozzle groups in the horizontal direction and the vertical direction to the nozzle which spouts two fluids of gas and liquid and has an orifice for adjusting the flowing rate in the flowing passage at the gas side and the flowing rate control system for controlling the gas and liquid flowing rates into the nozzle; before setting the facility to the construction-site to set this facility, a facility at the downstream side from the above flowing rate control system is beforehand set in off-line so as to be at least the same relative position in the height direction of the nozzle as the facility to be set at the construction-site and the diameter of the orifice is set so that the liquid quantity of each nozzle becomes a desired quantity. Thereafter, the pressures of gas and liquid in a piping after setting the flow rate control system when the nozzle spouts, are beforehand measured, and after setting this facility at the construction-site, the pressures of the gas and the liquid in the piping are measured, and these pressures and the pressures of the gas and the liquid in the off-line, are compared.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种用于在施工现场短​​时间连续铸造中精确设定二次冷却设备等的方法,当连续铸造中的二次冷却设备等被设定时 。 解决方案:在用于设置具有多个排列的喷嘴组的冷却设备的方法中,所述冷却设备在水平方向和垂直方向上与喷嘴相连,该喷嘴喷出两种气体和液体流体,并且具有用于调节流体的流量的孔 在气体侧的流动通道和用于控制进入喷嘴的气体和液体流速的流量控制系统; 在将设备设置到施工现场以设定该设施之前,预先将来自上述流量控制系统的下游侧的设施设置为离线,以使其至少相对于 喷嘴作为设置在施工现场的设备,并且孔口的直径被设定为使得每个喷嘴的液体量成为期望的量。 此后,预先测量在喷嘴喷出时设定流量控制系统后的管道中的气体和液体的压力,并且在将该设备设置在施工现场之后,管道中的气体和液体的压力为 测量,并且这些压力和离线中的气体和液体的压力进行比较。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Apparatus for recovering salt, and apparatus and method for heat-treating steel wire loose coil
    • 用于回收盐的装置,以及用于热处理钢丝缠绕线圈的装置和方法
    • JP2008069419A
    • 2008-03-27
    • JP2006250084
    • 2006-09-14
    • Nippon Steel Corp新日本製鐵株式会社
    • SADANO YUTAKATOKI MASAHIROTAKAHASHI YUKIHIROWADA YASUHIRO
    • C21D1/46C21D9/58
    • PROBLEM TO BE SOLVED: To provide an apparatus for recovering salt for safely recovering a salt sticking to a steel loose coil without polluting environment when heat-treating the steel loose coil with a molten salt bath.
      SOLUTION: The apparatus 22 is used for recovering salt from a salt-containing washing liquid used for washing the steel wire loose coil after heat treatment by using a molten salt of a cooling vessel 30, and is constituted of: a heat exchanger 50 for heat-exchanging the molten salt of the cooling vessel 30 with the salt-containing washing liquid and evaporating water content of the salt-containing washing liquid; circulating passes (104-106) for circulating and supplying the molten salt of the cooling vessel 30 to the heat exchanger 50; and a supply pass 71 for supplying the salt obtained by evaporating water content at the heat exchanger 50 to the cooling vessel 30.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于回收盐的装置,用于在用熔融盐浴对钢松散线圈进行热处理时,安全地回收粘附在松散线圈上的盐而不会产生污染环境。 解决方案:装置22用于从通过使用冷却容器30的熔融盐进行热处理后的用于清洗钢丝松弛线圈的含盐洗涤液中回收盐,并且由以下部件构成:热交换器 50,用于使含盐洗涤液与冷却容器30的熔融盐进行热交换和含盐洗涤液的蒸发水含量; 循环通道(104-106),用于将冷却容器30的熔盐循环供给到热交换器50; 以及用于将通过在热交换器50蒸发含水量而获得的盐供给到冷却容器30的供给通路71.权利要求:(C)2008,JPO&INPIT
    • 9. 发明专利
    • Facility for cooling loose coil, and cooling method
    • 冷却线圈的冷却方法和冷却方法
    • JP2007284764A
    • 2007-11-01
    • JP2006115287
    • 2006-04-19
    • Nippon Steel Corp新日本製鐵株式会社
    • SADANO YUTAKAWADA YASUHIROTOKI MASAHIRONISHIKAWA NOBUTAKATAKAHASHI YUKIHIRO
    • C21D9/573C21D1/00C21D1/607C21D9/52
    • PROBLEM TO BE SOLVED: To provide a facility for cooling a loose coil so as to reduce a nonuniformity of the strength of a steel wire in a longitudinal direction, by improving a cooling rate for edge parts in a width direction of the loose coil, which are cooled by a cooling medium in a cooling tank, and reducing the nonuniformity of a cooling rate in a width direction of the loose coil.
      SOLUTION: The cooling tank 2 has a spouting nozzle 6 and a suction part 7 installed therein. The spouting nozzle 6 spouts a molten salt 3 to the edge parts 101 in the width direction of the loose coil 4 to improve the cooling rate at the edge parts 101 of the loose coil 4. The cooling method includes adjusting the cooling rate by controlling the flow rate and temperature of the molten salt 3 spouted out through the spouting nozzle 6 with the use of a pump 9 and a circulation circuit of a cooling apparatus 11, and thereby reducing the nonuniformity of the cooling rate in the width direction of the loose coil 4 to reduce the nonuniformity of the strength in the longitudinal direction of the steel wire.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于冷却松散线圈的设备,以便通过提高宽松方向上的边缘部分的冷却速度来减小钢丝绳在纵向方向上的强度的不均匀性 线圈,其通过冷却槽中的冷却介质冷却,并且减小松散线圈的宽度方向上的冷却速率的不均匀性。 解决方案:冷却罐2具有喷射喷嘴6和安装在其中的吸入部分7。 喷出口6在松散线圈4的宽度方向上向边缘部101喷出熔融盐3,以提高松弛线圈4的边缘部101的冷却速度。冷却方法包括通过控制冷却速度来调节冷却速度 通过使用泵9和冷却装置11的循环回路,通过喷射喷嘴6喷出的熔融盐3的流量和温度,从而减小松散线圈的宽度方向上的冷却速度的不均匀性 以减少钢丝纵向强度的不均匀性。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Immersion nozzle for continuous casting and continuous casting method for steel
    • 用于连续铸造的连续喷嘴和钢的连续铸造方法
    • JP2007105769A
    • 2007-04-26
    • JP2005299985
    • 2005-10-14
    • Nippon Steel Corp新日本製鐵株式会社
    • OTANI YASUHIKOYAMADA KATSUNORITOKI MASAHIROHIRATA TAKESHIKIMURA YOSHIAKIHASEGAWA HAJIME
    • B22D11/10B22D11/00C22C38/00C22C38/14
    • PROBLEM TO BE SOLVED: To provide an immersion nozzle where, in continuous casting using an immersion nozzle having two discharge holes and a slit, discontinuity is not generated between downward flows and discharge flows in a mold, and, even in the case a sliding nozzle is used, slippage in the directions of molten metal flows from the discharge holes does not occur. SOLUTION: The immersion nozzle for continuous casting has a bottomed cylindrical shape. Two discharge holes 2 are cylindrically arranged at the lower parts of the side walls in the cylindrical shape at the axially symmetrical positions to the cylinder. A slit 3 opening to the outside is provided so as to be connected to the cylindrical bottom part 4 and the bottom parts 6 of both the discharge holes. The part coming into contact with the slit 3 in the cylindrical bottom part 4 is tilted to the upper part toward the cylindrical side walls 5, the parts coming into contact with the slit 3 in the bottom parts 6 of the discharge holes are tilted to the upper part toward the side walls 7 of the discharge holes, and there is substantially no level difference between the face formed by the cylindrical bottom part 4 and the face formed by the bottom parts 6 of the discharge holes. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种浸渍式喷嘴,其中,在使用具有两个排出孔和狭缝的浸渍喷嘴的连续铸造中,在向下流动和模具中的排出流动之间不产生不连续性,并且即使在这种情况下 使用滑动喷嘴,不会发生从排出孔流出的熔融金属的方向的滑动。

      解决方案:连续铸造用浸渍喷嘴具有有底圆筒形状。 两个排出孔2在与圆柱体的轴对称位置处的圆筒形状的侧壁的下部圆柱形地设置。 设置有向外侧开口的狭缝3,与两个排出孔的筒状底部4和底部6连接。 与筒状底部4中的狭缝3接触的部分朝向圆筒形侧壁5向上部倾斜,与排出孔的底部6中的狭缝3接触的部分倾斜到 上部朝向排出孔的侧壁7,并且在由圆筒形底部4形成的面与由排出孔的底部6形成的面之间基本上没有高度差。 版权所有(C)2007,JPO&INPIT