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    • 1. 发明授权
    • Twin roll continuous casting installation
    • 双辊连铸机安装
    • US6079479A
    • 2000-06-27
    • US100348
    • 1998-06-19
    • Shiro OsadaOsamu TakeuchiAtsushi Hirata
    • Shiro OsadaOsamu TakeuchiAtsushi Hirata
    • B22D11/06B22D11/124B22D30/00
    • B22D11/0697B22D11/124
    • The invention addresses the problem of edge bulging and breakout of as cast strip due to a decrease of perfect solid phase shell thickness of the strip caused by heat recuperation of the unsolidified portion of the strip, by providing a chamber 19 which encloses the travel path of a strip 8 delivered from a pair of chilled rolls 1a and 1b, a pair of chilled blocks 29a arranged in the chamber to be positioned near a nip between the chilled rolls 1a and 1b, with each chilled block 29a being shaped for loose fitting over an edge of a strip 8 and being capable of injecting cooling gas toward the edge of the strip 8. When the strip 8 is to be continuously cast, the interior of the chamber 19 provides an inert gas atmosphere, in which the cooling gas injected by the cooling blocks 29a injection-cools the edges of the strip 8 delivered from the chilled rolls 1a and 1b at a position near the nip between the chilled rolls 1a and 1b.
    • 本发明解决了由于通过条带的未固化部分的热消除引起的条的完美固相壳厚度的减小,通过提供一个包围行进路径的腔室19来解决作为铸造带材的边缘凸起和断裂的问题 从一对冷冻辊1a和1b输送的条带8,布置在室中的一对冷却块29a,以定位在冷冻辊1a和1b之间的辊隙附近,每个冷却块29a成形为用于松散地配合在 条带8的边缘并且能够朝向条带8的边缘注入冷却气体。当条带8将被连续铸造时,室19的内部提供惰性气体气氛,其中由 冷却块29a在冷冻辊1a和1b之间的辊隙附近的位置注入 - 冷却从冷冻辊1a和1b输送的带8的边缘。
    • 2. 发明授权
    • Twin roll continuous casting installation
    • 双辊连铸机安装
    • US06273178B1
    • 2001-08-14
    • US09553318
    • 2000-04-20
    • Shiro OsadaOsamu TakeuchiAtsushi Hirata
    • Shiro OsadaOsamu TakeuchiAtsushi Hirata
    • B22D1106
    • B22D11/0697B22D11/124
    • The invention addresses the problem of edge bulging and breakout of as cast strip due to a decrease of perfect solid phase shell thickness of the strip caused by heat recuperation of the unsolidified portion of the strip, by providing a chamber 19 which encloses the travel path of a strip 8 delivered from a pair of chilled rolls 1a and 1b, a pair of chilled blocks 29a arranged in the chamber to be positioned near a nip between the chilled rolls 1a and 1b, with each chilled block 29a being shaped for loose fitting over an edge of a strip 8 and being capable of injecting cooling gas toward the edge of the strip 8. When the strip 8 is to be continuously cast, the interior of the chamber 19 provides an inert gas atmosphere, in which the cooling gas injected by the cooling blocks 29a injection-cools the edges of the strip 8 delivered from the chilled rolls 1a and 1b at a position near the nip between the chilled rolls 1a and 1b.
    • 本发明解决了由于通过条带的未固化部分的热消除引起的条的完美固相壳厚度的减小,通过提供一个包围行进路径的腔室19来解决作为铸造带材的边缘凸起和断裂的问题 从一对冷冻辊1a和1b输送的条带8,布置在室中的一对冷却块29a,以定位在冷冻辊1a和1b之间的辊隙附近,每个冷却块29a成形为用于松散地配合在 条带8的边缘并且能够朝向条带8的边缘注入冷却气体。当条带8将被连续铸造时,室19的内部提供惰性气体气氛,其中由 冷却块29a在冷冻辊1a和1b之间的辊隙附近的位置注入 - 冷却从冷冻辊1a和1b输送的带8的边缘。
    • 5. 发明授权
    • Dual roll casting machine and method of operating the casting machine
    • 双辊铸造机及铸造机操作方法
    • US07093646B2
    • 2006-08-22
    • US10490739
    • 2003-07-24
    • Isamu NakayamaKatsumi NakayamaShiro Osada
    • Isamu NakayamaKatsumi NakayamaShiro Osada
    • B22D11/24
    • B22D11/0622B22D11/0697
    • A twin roll casting machine that can reduce an amount of inert gas to be fed for prevention of oxidization. The machine includes an enclosure enclosing a strip in a range from chilled rolls to pinch rolls, a first swing wall within the enclosure and having a tip end movable toward and away from a surface of the strip, a sealing roll rotatably supported by the tip end of the first swing wall, a second swing wall within the enclosure and having a tip end movable toward and away from the other surface of the strip, a sealing roll rotatably supported by the tip end of the second swing wall, sealing members between peripheral edges of the swing walls and an inner surface of the enclosure, and conduits for supplying inert gas into the enclosure. The respective swing walls are swung to bring the sealing rolls close to the strip to thereby suppress flow of the inert gas from a first space to a second space.
    • 一种双辊铸造机,其可以减少为防止氧化而被供给的惰性气体的量。 该机器包括封闭从冷冻辊到夹送辊的条带的外壳,外壳内的第一摆动壁和具有可朝向和远离条的表面移动的尖端,由顶端可旋转地支撑的密封辊 所述第一摆动壁是所述外壳内的第二摆动壁,并且具有可朝向和远离所述带的另一表面移动的顶端;由所述第二摆动壁的顶端可旋转地支撑的密封辊, 的旋转壁和外壳的内表面,以及用于将惰性气体供应到外壳中的导管。 挥动各个摆动壁使密封辊靠近条带,从而抑制惰性气体从第一空间到第二空间的流动。
    • 6. 发明申请
    • Method and apparatus for controlling the formation of crocodile skin surface roughness on thin cast strip
    • 用于控制薄铸带上鳄鱼皮表面粗糙度形成的方法和装置
    • US20060144554A1
    • 2006-07-06
    • US11302484
    • 2005-12-13
    • Mark SchlichtingJoel SommerShiro OsadaHisahiko Fukase
    • Mark SchlichtingJoel SommerShiro OsadaHisahiko Fukase
    • B22D11/06
    • B22D11/0665B22D11/0622
    • A method of controlling the formation of crocodile skin surface roughness on thin cast strip of plain carbon steel forming a casting pool of molten metal of plain carbon steel of less than 0.065% carbon supported on a casting surfaces above a nip, assembling a rotating brush to contact the casting surfaces in advance of contact with the molten metal, and controlling the energy exerted by rotating brushes against the casting surfaces of the casting rolls to clean and expose a majority of the projections of the casting surfaces of the casting rolls by provide wetting contact with the molten metal of the casting pool. The cleaning step may be done by controlling the energy of the rotating brush against the casting rolls based on the difference between the measured heat flux and the initially measured heat flux when the casting surfaces are clean, and automating the method.
    • 一种控制在普通碳钢的薄铸钢带上形成鳄鱼皮表面粗糙度的方法,其形成一个小于0.065%碳的普通碳钢熔融金属铸造池,该铸造池支撑在辊隙上方的铸造表面上,组装旋转刷 在与熔融金属接触之前接触铸造表面,并且控制通过旋转刷子抵靠铸辊的铸造表面施加的能量,以通过提供润湿接触来清洁和暴露铸辊的铸造表面的大部分突起 与铸池的熔融金属。 清洁步骤可以通过基于测量的热通量和铸造表面清洁时的初始测量的热通量之间的差异来控制旋转刷子对铸辊的能量,并且自动化该方法来完成。
    • 10. 发明授权
    • Method and apparatus for controlling the formation of crocodile skin surface roughness on thin cast strip
    • 用于控制薄铸带上鳄鱼皮表面粗糙度形成的方法和装置
    • US07296614B2
    • 2007-11-20
    • US11302484
    • 2005-12-13
    • Mark SchlichtingJoel D. SommerShiro OsadaHisahiko Fukase
    • Mark SchlichtingJoel D. SommerShiro OsadaHisahiko Fukase
    • B22D11/06
    • B22D11/0665B22D11/0622
    • A method of controlling the formation of crocodile skin surface roughness on thin cast strip of plain carbon steel forming a casting pool of molten metal of plain carbon steel of less than 0.065% carbon supported on a casting surfaces above a nip, assembling a rotating brush to contact the casting surfaces in advance of contact with the molten metal, and controlling the energy exerted by rotating brushes against the casting surfaces of the casting rolls to clean and expose a majority of the projections of the casting surfaces of the casting rolls by provide wetting contact with the molten metal of the casting pool. The cleaning step may be done by controlling the energy of the rotating brush against the casting rolls based on the difference between the measured heat flux and the initially measured heat flux when the casting surfaces are clean, and automating the method.
    • 一种控制在普通碳钢的薄铸钢带上形成鳄鱼皮表面粗糙度的方法,其形成一个小于0.065%碳的普通碳钢熔融金属铸造池,该铸造池支撑在辊隙上方的铸造表面上,组装旋转刷 在与熔融金属接触之前接触铸造表面,并且控制通过旋转刷子抵靠铸辊的铸造表面施加的能量,以通过提供润湿接触来清洁和暴露铸辊的铸造表面的大部分突起 与铸池的熔融金属。 清洁步骤可以通过基于测量的热通量和铸造表面清洁时的初始测量的热通量之间的差异来控制旋转刷子对铸辊的能量,并且自动化该方法来完成。