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    • 6. 发明授权
    • Twin roll caster
    • 双辊连铸机
    • US08028740B2
    • 2011-10-04
    • US12373061
    • 2006-07-27
    • Hiroyuki OtsukaHiroki YoshizawaShiro OsadaHisahiko Fukase
    • Hiroyuki OtsukaHiroki YoshizawaShiro OsadaHisahiko Fukase
    • B22D11/06
    • B22D11/0622B22D11/064
    • A twin roll caster including chilled rolls, side weirs, and a molten-metal delivery nozzle. Baffles, contiguous with bottoms of end faces of the nozzle, project in a casting pool toward the side weirs to suppress stream of the molten metal into a nip between the rolls. Thus, hot molten metal just after poured into the pool does not instantly reach the nip along the side weirs, and molten metal decreases in temperature with lapse of time after the pouring streams into the nip as the rolls are rotated. As a result, belated formation of solidified shells at and adjacent to outer circumferential edges of the chilled rolls is eliminated. Thus, a strip delivered from the nip between the rolls has no reduced thickness at regions adjacent to lateral edges of the strip and has uniform thickness throughout the width of the strip.
    • 双辊连铸机,包括冷却辊,侧堰和熔融金属输送喷嘴。 与喷嘴的端面的底部相邻的挡板在浇注池中朝着侧堰突出,以将熔融金属流压入辊之间的辊隙中。 因此,在刚刚倒入池中之后的热熔融金属不能立即到达侧面堰的压区,随着辊的旋转,浇注流入辊隙后,熔融金属的温度随时间的推移而下降。 结果,消除了在冷冻辊的外圆周边缘处及其附近的凝固壳的迟滞形成。 因此,从辊之间的辊隙传送的条带在与带的侧边缘相邻的区域处没有减小的厚度,并且在带的整个宽度上具有均匀的厚度。
    • 7. 发明申请
    • TWIN ROLL CASTER
    • 双滚筒
    • US20090255644A1
    • 2009-10-15
    • US12373061
    • 2006-07-27
    • Hiroyuki OtsukaHiroki YoshizawaShiro OsadaHisahiko Fukase
    • Hiroyuki OtsukaHiroki YoshizawaShiro OsadaHisahiko Fukase
    • B22D11/06
    • B22D11/0622B22D11/064
    • A twin roll caster including chilled rolls, side weirs, and a molten-metal delivery nozzle. Baffles, contiguous with bottoms of end faces of the nozzle, project in a casting pool toward the side weirs to suppress stream of the molten metal into a nip between the rolls. Thus, hot molten metal just after poured into the pool does not instantly reach the nip along the side weirs, and molten metal decreases in temperature with lapse of time after the pouring streams into the nip as the rolls are rotated. As a result, belated formation of solidified shells at and adjacent to outer circumferential edges of the chilled rolls is eliminated. Thus, a strip delivered from the nip between the rolls has no reduced thickness at regions adjacent to lateral edges of the strip and has uniform thickness throughout the width of the strip.
    • 双辊连铸机,包括冷却辊,侧堰和熔融金属输送喷嘴。 与喷嘴的端面的底部相邻的挡板在浇注池中朝着侧堰突出,以将熔融金属流压入辊之间的辊隙中。 因此,在刚刚倒入池中之后的热熔融金属不能立即到达侧面堰的压区,随着辊的旋转,浇注流入辊隙后,熔融金属的温度随时间的推移而下降。 结果,消除了在冷冻辊的外圆周边缘处及其附近的凝固壳的迟滞形成。 因此,从辊之间的辊隙传送的条带在与带的侧边缘相邻的区域处没有减小的厚度,并且在带的整个宽度上具有均匀的厚度。
    • 9. 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。