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    • 21. 发明申请
    • STENT
    • US20120172974A1
    • 2012-07-05
    • US13395581
    • 2010-09-16
    • Hai Quan FengSuguru KishimotoJun KubotaMinoru Asahara
    • Hai Quan FengSuguru KishimotoJun KubotaMinoru Asahara
    • A61F2/82
    • A61F2/915A61F2002/91558A61F2230/0013
    • The stent comprises a tubular body comprising a plurality of ring units arranged in the axis direction and bridged by a connecting element. Each of the units comprises a plurality of cells connected with each other, each of the cells having a U-shaped form comprising two linear parts and a circular arc part therebetween, and opening toward one end. The ring units comprise first and second units alternatively arranged and the oppositely disposed cells of the first and second units are only partly bridged by the connecting elements. The shapes of the cells of the first and second units are axisymmetrical about the connecting element. The curvature radius of the top of the arc constituting the arc part is 1.1 and 1.5 times larger than that of each of the tangent circles formed at the edges of two linear parts of the cell on the circular arc part side.
    • 支架包括管状体,其包括沿轴向布置并由连接元件桥接的多个环形单元。 每个单元包括彼此连接的多个单元,每个单元具有U形形状,其包括两个线性部分和它们之间的圆弧部分,并且朝向一端开口。 环形单元包括交替布置的第一和第二单元,并且第一和第二单元的相对布置的单元仅由连接元件部分地桥接。 第一和第二单元的单元的形状围绕连接元件是轴对称的。 构成电弧部的电弧的顶部的曲率半径比在圆弧部分侧的电池的两个直线部分的边缘形成的每个切线圆的曲率半径大1.1倍和1.5倍。
    • 22. 发明授权
    • Apparatus for controlling flow of molten steel in mold
    • 用于控制模具中钢水流动的装置
    • US07967058B2
    • 2011-06-28
    • US12802574
    • 2010-06-09
    • Jun KubotaSeishi MizuokaTsuneo Kondo
    • Jun KubotaSeishi MizuokaTsuneo Kondo
    • B22D11/00B22D27/02
    • B22D11/16B22D11/115
    • An apparatus for controlling a flow of a molten steel in a mold, the apparatus including: a casting-condition acquiring unit for acquiring at least five casting conditions; a calculating unit for calculating a molten steel flow velocity on a molten steel bath surface in accordance with the acquired casting conditions; a determining unit for determining whether the acquired molten steel flow velocity is higher or lower than a mold-powder entrainment critical flow velocity; a control unit for applying a shifting magnetic field to impart a braking force to a discharge flow from an immersion nozzle and applying a shifting magnetic field to rotate the molten steel in a horizontal direction; and a shifting magnetic field generating apparatus.
    • 一种用于控制模具中钢水流动的装置,所述装置包括:铸造条件获取单元,用于获取至少五个铸造条件; 计算单元,用于根据所获得的浇铸条件计算钢水浴表面上的钢水流速; 确定单元,用于确定所获得的钢水流速是否高于或低于模具粉末夹带临界流速; 控制单元,用于施加换档磁场以对来自浸没喷嘴的排出流施加制动力,并施加换档磁场以使钢水在水平方向上旋转; 和换档磁场产生装置。
    • 23. 发明授权
    • Method and apparatus for detecting crater end of continuously cast product, and method for producing continuously cast product
    • 用于检测连续铸造产品的火山口端的方法和装置,以及连续铸造产品的制造方法
    • US07740051B2
    • 2010-06-22
    • US10579943
    • 2004-11-24
    • Yukinori IizukaJun KubotaKoichi Tsutsumi
    • Yukinori IizukaJun KubotaKoichi Tsutsumi
    • B22D11/00B22D11/16
    • B22D11/16G01N2291/02881
    • A method for detecting a crater end of a continuously cast product including installing an ultrasonic shear wave sensor for transmitting an ultrasonic shear wave to a cast product and receiving the transmitted ultrasonic longitudinal wave and an ultrasonic longitudinal wave sensor for transmitting an ultrasonic longitudinal wave to the cast product and receiving the transmitted ultrasonic longitudinal wave at the same position in a continuous casting machine or at positions apart from each other in a casting direction, but at the same position in a transverse direction of the cast product, detecting based on variations of an ultrasonic signal received by the ultrasonic shear wave sensor that the crater end of the cast product is matched with the installed position of the ultrasonic shear wave sensor, calibrating a calculation formula for determining the crater end and determining the crater end.
    • 一种用于检测连续铸造产品的火山口端的方法,包括安装用于将超声波剪切波传输到铸造产品的超声波剪切波传感器并接收发射的超声波纵波,以及超声波纵波传感器,用于将超声波纵波传输到 铸造产品,并且在连续铸造机中的相同位置处接收发射的超声波纵波,或者在铸造方向上彼此分开的位置,但是在铸造产品的横向方向上的相同位置,基于 由超声波剪切波传感器接收的超声波信号,铸件的火山口端与超声波剪切波传感器的安装位置相匹配,校准用于确定火山口端和确定火山口端的计算公式。
    • 26. 发明授权
    • Method and apparatus for controlling flow of molten steel in mold, and method for producing continuous castings
    • 用于控制模具中钢水流动的方法和装置,以及用于生产连续铸件的方法
    • US07540317B2
    • 2009-06-02
    • US10506034
    • 2003-02-28
    • Jun KubotaSeishi MizuokaTsuneo Kondo
    • Jun KubotaSeishi MizuokaTsuneo Kondo
    • B22D11/00B22D27/02
    • B22D11/16B22D11/115
    • When a molten steel flow velocity (u) on a bath surface is higher than a mold-powder entrainment critical flow velocity of 0.32 m/sec, the molten steel flow velocity (u) is controlled to a predetermined molten steel flow velocity by applying a shifting magnetic field to impart a braking force to a discharge flow from an immersion nozzle. When the molten steel flow velocity (u) is lower than an inclusion-adherence critical flow velocity of 0.20 m/sec and is higher than or equal to a bath-surface skinning critical flow velocity of 0.10 m/sec, the molten steel flow velocity (u) is controlled to the range of 0.20-0.32 m/sec by applying a shifting magnetic field to rotate the intra-mold molten steel in a horizontal direction. When the molten steel flow velocity (u) is lower than the inclusion-adherence critical flow velocity, the molten steel flow velocity (u) is controlled to the range of 0.20-0.32 m/sec by applying a shifting magnetic field to impart an accelerating force to the discharge flow from the immersion nozzle.
    • 当浴表面上的钢水流速(u)高于模具粉末夹带临界流速0.32m / sec时,钢水流速(u)通过施加 移动磁场以对来自浸入式喷嘴的排出流赋予制动力。 当钢水流速(u)低于0.20m / sec的夹杂物附着临界流速,高于或等于0.10m / sec的浴面剥离临界流速时,钢水流速 (u)通过施加移动磁场来控制在0.20-0.32m / sec的范围内,以使模内钢水在水平方向上旋转。 当钢水流速(u)低于夹杂物临界流速时,通过施加移动磁场将钢水流速(u)控制在0.20-0.32m / sec的范围内,以赋予加速 来自浸入式喷嘴的排出力的力。
    • 29. 发明授权
    • Ultrasonic video apparatus
    • 超声波视频设备
    • US06677985B1
    • 2004-01-13
    • US09601615
    • 2000-08-04
    • Jun KubotaRyuichi Shinomura
    • Jun KubotaRyuichi Shinomura
    • H04N718
    • G01S7/5205A61B8/00G01S7/52073
    • An ultrasonic imaging apparatus having a depth range setter 28 for setting a threshold value of detection level for a Doppler signal in an ultrasonic circuit unit 2, a unit for extracting a time at which the Doppler signal exceeds the set detection level and a signal level in excess of the set detection level, and a ROI depth data generator 29 for determining, for an adaptive phase controller 3, a ROI depth range for correction necessary to make echo signals of neighboring channels be in phase by using the extracted time and signal level, whereby the focal point can follow the ROI region in an object to be inspected by correcting echo signals from the region where the intensity of the Doppler signal reaches the detection level or its neighboring region so as to make them be in phase between adjacent transducers.
    • 一种具有深度范围设定器28的超声波成像装置,用于设定超声波电路单元2中的多普勒信号的检测电平的阈值,提取多普勒信号超过设定检测电平的时间的单位和 以及ROI深度数据生成器29,用于对于自适应相位控制器3,通过使用提取的时间和信号电平来确定使相邻信道的回波信号相位需要的校正的ROI深度范围, 由此,通过从多普勒信号的强度达到检测水平的区域或其相邻区域校正回波信号,使焦点可以跟随待检查对象中的ROI区域,使得它们在相邻换能器之间处于相位。