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    • 1. 发明授权
    • Submerged nozzle mounting/dismounting apparatus
    • 淹没喷嘴安装/拆卸装置
    • US5665264A
    • 1997-09-09
    • US510512
    • 1995-08-02
    • Mitsukuni SatoKenji YamamotoKoji IshiiKoichi OzawaTaizo SeraJun Kubota
    • Mitsukuni SatoKenji YamamotoKoji IshiiKoichi OzawaTaizo SeraJun Kubota
    • B22D11/10B22D41/56B22D41/60
    • B22D41/56B22D41/60Y10S266/01
    • A submerged nozzle mounting/dismounting apparatus for mounting a submerged nozzle (9) on and dismounting the same from a slide valve device (5) of a molten metal vessel (1) of a continuous casting system, is provided with a submerged nozzle holding mechanism (25) having support arms (27) for holding the submerged nozzle pressed against the slide valve device through mounting pins (13) on the upper part of the submerged nozzle. For automated operation to eliminate all kinds of heavy physical work in a hot environment, the submerged nozzle mounting/dismounting apparatus comprises a slide base (32) laterally slidably mounted for positional adjustment relative to the support arms (27) on a robot arm (21) supported for turning on a stand. A submerged nozzle hanger (40) is provided for supporting the submerged nozzle via support pins (14) projecting from the submerged nozzle. The hanger (40) is pivotally supported for turning in a vertical plane on the slide base. A guide member (45) provided below the slide valve device operates to guide the submerged nozzle hanger (40) for turning in a vertical plane and to guide the slide base through the submerged nozzle hanger for movement in directions perpendicular to the vertical plane in which the submerged nozzle hanger turns. A contact mechanism (46) is supported on the submerged nozzle hanger so as to move along guide surfaces (48, 49) of the guide member. The contact mechanism (46) is guided along the guide surfaces to move the mounting pins (13) of the submerged nozzle on the submerged nozzle hanger into pin receiving grooves (28) of the support arms (27) and to adjust the horizontal positions of the mounting pins (13) so as to be in alignment with the positions of the support arms (27).
    • 一种用于将浸入式喷嘴(9)安装在连续铸造系统的熔融金属容器(1)的滑阀装置(5)上的浸没式喷嘴安装/拆卸装置设置有浸没式喷嘴保持机构 (25)具有用于通过在所述浸没喷嘴的上部安装销(13)将所述浸没喷嘴保持压靠在所述滑阀装置上的支撑臂(27)。 为了在热环境中消除各种重物理作业的自动化操作,浸没式喷嘴安装/拆卸装置包括一个横向可滑动地安装的滑动基座(32),用于相对于机器人手臂(21)上的支撑臂(27)进行位置调整 )支持打架。 提供了一种浸没式喷嘴悬挂器(40),用于通过从浸没的喷嘴突出的支撑销(14)来支撑浸没的喷嘴。 悬架(40)枢转地支撑在滑动基座上的垂直平面中转动。 设置在滑阀装置下方的引导构件(45)操作以引导浸没式喷嘴悬挂器(40)以在垂直平面中转动,并且引导滑动基座穿过浸没式喷嘴悬挂器,以便在垂直于垂直平面 浸没式喷嘴吊架转动。 接触机构(46)被支撑在浸没的喷嘴悬挂器上,以沿着引导构件的引导表面(48,49)移动。 接触机构(46)沿着引导表面被引导以将浸没的喷嘴的浸没喷嘴的安装销(13)移动到浸没的喷嘴悬挂器上,使其移动到支撑臂(27)的销接收凹槽(28)中,并且调整水平位置 安装销(13)与支撑臂(27)的位置对齐。
    • 2. 发明授权
    • Thickness adjustable mold for continuous casting
    • 厚度可调模具用于连铸
    • US5333671A
    • 1994-08-02
    • US83939
    • 1993-06-28
    • Taizo SeraTakashi MitsuhiroKoichi OzawaYutaka Sakata
    • Taizo SeraTakashi MitsuhiroKoichi OzawaYutaka Sakata
    • B22D11/04B22D11/05
    • B22D11/05
    • A center alignment mechanism of a cavity thickness adjustable mold for continuous casting, comprises a guide mechanism which supports a spindle of a carriage device of each narrow face unit of the mold slidably in the wide face-wise directions of wide face units of the mold, and a driving mechanism which moves the guide mechanism in the narrow face-wise directions of the narrow face unit. The guide mechanism comprises a guide block in which the distal end portion of the spindle is slidably supported, a guide groove formed in the wide face units so as to support the guide block slidably in the narrow face-wise directions of the narrow face unit, a bracket in which the proximal end portion of the spindle is slidably supported, and another guide groove formed in the wide face units so as to support the bracket slidably in the narrow face-wise directions of the narrow face unit. The driving mechanism comprises worm jacks provided between the guide block and the fixed wide face unit and between the bracket and the fixed wide face unit, and a driving source of the worm jacks. Thus, there can be provided a cavity thickness variable mold in which narrow face units are not distorted when they are moved, so that wide face copper plates will not be damaged.
    • 用于连续铸造的腔厚度可调模具的中心对准机构包括:引导机构,其在模具的宽面单元的宽面方向上可滑动地支撑模具的每个窄面单元的托架装置的主轴, 以及驱动机构,其使所述引导机构沿所述窄面单元的窄面方向移动。 引导机构包括导向块,其中主轴的远端部分可滑动地支撑;形成在宽面单元中的引导槽,以便可滑动地支撑在窄面单元的窄面方向上的引导块, 托架,其中主轴的基端部可滑动地支撑;以及另一个引导槽,形成在宽面单元中,以便在窄面单元的窄面方向可滑动地支撑支架。 驱动机构包括设置在引导块和固定宽面单元之间以及支架与固定宽面单元之间的蜗杆千斤顶以及蜗杆千斤顶的驱动源。 因此,可以提供一种空腔厚度可变模具,其中窄面单元在移动时不会变形,使得宽面铜板不会被损坏。
    • 4. 发明授权
    • Melt granulated sucralfate preparations and a process for their
production
    • 熔融粒状硫糖铝制剂及其生产工艺
    • US5718923A
    • 1998-02-17
    • US727643
    • 1996-10-15
    • Katsuya MatsudaKoichi Ozawa
    • Katsuya MatsudaKoichi Ozawa
    • A61K9/16A61K9/20A61K31/70A61K9/50
    • A61K31/7024A61K31/70A61K31/7016A61K31/7135A61K9/1641A61K9/2031
    • Sucralfate preparation produced by melt granulating a mixture of a comminuted sucralfate powder and a water-soluble low-melting point wax, as well as a process for producing a sucralfate preparation comprising the steps of comminuting dry sucralfate into fine particles, mixing the finely divided particles with a water-soluble low-melting point wax and heating the mixture such that the wax is melted to effect melt (adhesion) granulation of the finely divided sucralfate particles are disclosed. Compared to conventional sucralfate preparations, the thus produced sucralfate preparation has a small dispersed particle size, exhibits high capability for binding to plasma proteins and thereby achieves marked improvements in administrability and protein binding capability.
    • PCT No.PCT / JP95 / 00753 Sec。 371日期1996年10月15日 102(e)日期1996年10月15日PCT 1995年4月18日PCT PCT。 WO95 / 28938 PCT公开号 日期1995年11月2日通过将粉碎的硫糖铝粉末和水溶性低熔点蜡的混合物熔融制粒而制备的核糖核酸制备方法以及制备硫糖铝制剂的方法包括以下步骤:将干性硫糖铝粉碎成细颗粒, 将细碎的颗粒与水溶性低熔点蜡混合并加热混合物,使得蜡熔化以实现细碎的硫糖铝颗粒的熔融(粘附)造粒。 与常规的硫糖铝制剂相比,这样制备的硫糖铝制剂具有小的分散粒度,显示出高度的结合血浆蛋白的能力,从而显着提高了施用能力和蛋白质结合能力。
    • 6. 发明授权
    • Heating and cooling unit
    • 加热和冷却单元
    • US5182117A
    • 1993-01-26
    • US691077
    • 1991-04-25
    • Koichi OzawaHajime AbeYutaka Owashi
    • Koichi OzawaHajime AbeYutaka Owashi
    • B29C35/00
    • B29C35/007Y10S425/11Y10S425/246
    • In a heating/cooling unit for selectively heating or cooling a set of dies, oil received in a reservoir is supplied to a flow direction changeover valve by a first oil pump. In a stably mode, oil is returned to the reservoir through the changeover valve and a heat exchanger. In a heating mode, the oil is supplied to a second oil pump from the changeover valve through a check valve. The second oil pump supplies the oil to an oil heater, and the heated oil is introduced into a fluid path formed in the dies to heat the dies. The oil discharged from the fluid path of the dies is returned to the second oil pump. Thus, the heated oil is circulated in a closed loop in the heating mode. In a cooling mode, new oil is supplied to the fluid path of the dies from the changeover valve and the oil discharged from the fluid path is guided to the heat exchanger through a switching valve and the cooling oil is returned to the reservoir.
    • 在用于选择性地加热或冷却一组模具的加热/冷却单元中,容纳在储存器中的油通过第一油泵供给流向切换阀。 在稳定模式下,油通过切换阀和热交换器返回储存器。 在加热模式中,通过止回阀将油从切换阀供给到第二油泵。 第二油泵将油供给到油加热器,并且加热的油被引入形成在模具中的流体路径中以加热模具。 从模具的流体路径排出的油返回到第二油泵。 因此,加热的油在加热模式下以闭环循环。 在冷却模式中,从转换阀向模具的流体路径供给新的油,从流体路径排出的油通过切换阀被引导到热交换器,冷却油返回到储存器。