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    • 2. 发明授权
    • Cable clamp
    • 电缆夹
    • US08800940B2
    • 2014-08-12
    • US13067242
    • 2011-05-18
    • Hirotaka EshimaYoji KobayashiHideki Horikoshi
    • Hirotaka EshimaYoji KobayashiHideki Horikoshi
    • F16L3/22
    • H02G3/32
    • A cable clamp includes a single metal plate shaped along an outer periphery of three cables that are triangularly arranged when viewed in cross-section, a mounting flange portion formed with both end portions of the metal plate overlapped each other, and a cable support member inserted between at least two of the three cables so as to support the at least two cables between itself and the metal plate. The cable support member is inserted between two horizontally arranged cables in a direction perpendicular to the horizontal direction as well as perpendicular to a longitudinal direction of the two horizontally arranged cables. The cable support member has a tapered shape on an end side in an insertion direction thereof for facilitating an insertion thereof into a gap between the two horizontally arranged cables.
    • 电缆夹具包括沿着横截面看三角形布置的三根电缆的外周形状的单个金属板,形成有金属板的两个端部彼此重叠的安装凸缘部分和插入的电缆支撑件 在三根电缆中的至少两根之间,以便在其与金属板之间支撑至少两根电缆。 电缆支撑构件沿垂直于水平方向的方向以及垂直于两个水平布置的电缆的纵向方向插入在两个水平布置的电缆之间。 电缆支撑构件在其插入方向的端侧具有锥形形状,以便于将其插入到两个水平布置的电缆之间的间隙中。
    • 3. 发明申请
    • Cable clamp
    • 电缆夹
    • US20120112014A1
    • 2012-05-10
    • US13067242
    • 2011-05-18
    • Hirotaka EshimaYoji KobayashiHideki Horikoshi
    • Hirotaka EshimaYoji KobayashiHideki Horikoshi
    • F16L3/22
    • H02G3/32
    • A cable clamp includes a single metal plate shaped along an outer periphery of three cables that are triangularly arranged when viewed in cross-section, a mounting flange portion formed with both end portions of the metal plate overlapped each other, and a cable support member inserted between at least two of the three cables so as to support the at least two cables between itself and the metal plate. The cable support member is inserted between two horizontally arranged cables in a direction perpendicular to the horizontal direction as well as perpendicular to a longitudinal direction of the two horizontally arranged cables. The cable support member has a tapered shape on an end side in an insertion direction thereof for facilitating an insertion thereof into a gap between the two horizontally arranged cables.
    • 电缆夹具包括沿着横截面看三角形布置的三根电缆的外周形状的单个金属板,形成有金属板的两个端部彼此重叠的安装凸缘部分和插入的电缆支撑件 在三根电缆中的至少两根之间,以便在其与金属板之间支撑至少两根电缆。 电缆支撑构件沿垂直于水平方向的方向以及垂直于两个水平布置的电缆的纵向方向插入在两个水平布置的电缆之间。 电缆支撑构件在其插入方向的端侧具有锥形形状,以便于将其插入到两个水平布置的电缆之间的间隙中。
    • 6. 发明授权
    • Vehicle bumper structure
    • 车辆保险杠结构
    • US07931316B2
    • 2011-04-26
    • US12279361
    • 2007-02-14
    • Hiroyuki TakahashiRyotaro KachuTetsuya TakafujiYoji Kobayashi
    • Hiroyuki TakahashiRyotaro KachuTetsuya TakafujiYoji Kobayashi
    • B60R19/48
    • B60R19/483B60R21/34B60R2021/01095
    • In a vehicle bumper structure, an optical fiber sensor (32) is provided on the upper portion of the front surface of a front wall portion (30A) of a front-bumper reinforcement (30). A front-bumper absorber (28) is provided before the optical fiber sensor (32) and a load transfer plate (34) is disposed between the front-bumper absorber (28) and the optical fiber sensor (32). The vertical width (B3) of the front-bumper absorber (28) and the load transfer plate (34) are greater than the vertical width (B1) of the optical fiber sensor (32), and a lower end portion (34A) of the load transfer plate (34) extends below the lower end of the optical fiber sensor (32). Accordingly, when the optical fiber sensor (32) is offset to the upper portion of the front-bumper reinforcement (30), the front-bumper absorber (28) will not topple down and the impact load is input to the optical fiber sensor (32) even if the input direction of the impact load is slightly inclined.
    • 在车辆保险杠结构中,在前保险杠加强件(30)的前壁部(30A)的前表面的上部设置有光纤传感器(32)。 在光纤传感器(32)之前设置有前保险杠吸收器(28),负载传递板(34)设置在前缓冲器吸收体(28)和光纤传感器(32)之间。 前缓冲器吸收器(28)和负载传递板(34)的垂直宽度(B3)大于光纤传感器(32)的垂直宽度(B1),下端部(34A) 负载传递板34延伸到光纤传感器32的下端的下方。 因此,当光纤传感器(32)偏移到前保险杠加强件(30)的上部时,前缓冲器吸收器(28)不会倒伏,冲击载荷被输入到光纤传感器 32)即使冲击载荷的输入方向稍微倾斜。
    • 7. 发明申请
    • VEHICLE BUMPER STRUCTURE
    • 车辆结构
    • US20100038922A1
    • 2010-02-18
    • US12279361
    • 2007-02-14
    • Hiroyuki TakahashiRyotaro KachuTetsuya TakafujiYoji Kobayashi
    • Hiroyuki TakahashiRyotaro KachuTetsuya TakafujiYoji Kobayashi
    • B60R19/48
    • B60R19/483B60R21/34B60R2021/01095
    • In a vehicle bumper structure, an optical fiber sensor (32) is provided on the upper portion of the front surface of a front wall portion (30A) of a front-bumper reinforcement (30). A front-bumper absorber (28) is provided before the optical fiber sensor (32) and a load transfer plate (34) is disposed between the front-bumper absorber (28) and the optical fiber sensor (32). The vertical width (B3) of the front-bumper absorber (28) and the load transfer plate (34) are greater than the vertical width (B1) of the optical fiber sensor (32), and a lower end portion (34A) of the load transfer plate (34) extends below the lower end of the optical fiber sensor (32). Accordingly, when the optical fiber sensor (32) is offset to the upper portion of the front-bumper reinforcement (30), the front-bumper absorber (28) will not topple down and the impact load is input to the optical fiber sensor (32) even if the input direction of the impact load is slightly inclined.
    • 在车辆保险杠结构中,在前保险杠加强件(30)的前壁部(30A)的前表面的上部设置有光纤传感器(32)。 在光纤传感器(32)之前设置有前保险杠吸收器(28),负载传递板(34)设置在前缓冲器吸收体(28)和光纤传感器(32)之间。 前缓冲器吸收器(28)和负载传递板(34)的垂直宽度(B3)大于光纤传感器(32)的垂直宽度(B1),下端部(34A) 负载传递板34延伸到光纤传感器32的下端的下方。 因此,当光纤传感器(32)偏移到前保险杠加强件(30)的上部时,前缓冲器吸收器(28)不会倒伏,冲击载荷被输入到光纤传感器 32)即使冲击载荷的输入方向稍微倾斜。
    • 8. 发明授权
    • Filament for X-ray tube and X-ray tube having the same
    • 具有相同的X射线管和X射线管的灯丝
    • US07271530B2
    • 2007-09-18
    • US11583747
    • 2006-10-19
    • Masaru KuribayashiMasahiro NonoguchiNaohisa OsakaYoji Kobayashi
    • Masaru KuribayashiMasahiro NonoguchiNaohisa OsakaYoji Kobayashi
    • H01J1/15
    • H01J1/16H01J35/06H01J2201/2867
    • A filament for an X-ray tube has a varied wire diameter but has a constant coil outside diameter to obtain a good uniformity of the longitudinal temperature distribution of the filament. The filament has a wire diameter d which is gradually reduced from the longitudinal central region to the longitudinal ends while the coil outside diameter D is fixed along the longitudinal direction. The wire is polished at only the inside of the coil to reduce the wire diameter. In order to make the longitudinal temperature distribution uniform as far as possible, the difference Δd between the wire diameter dmax at the longitudinal central region and the wire diameter dmin at the longitudinal ends should satisfy the following limitation: Δd/dmax=0.041 to 0.145.
    • 用于X射线管的灯丝具有变化的线径,但具有恒定的线圈外径以获得长丝的纵向温度分布的良好均匀性。 灯丝具有从纵向中心区域到纵向端部逐渐减小的线径d,而线圈外径D沿着纵向方向固定。 线材只在线圈内部抛光,以减少线径。 为了使纵向温度分布尽可能均匀,在纵向中心区域的线径d max max之间的差值Deltad与线径d < 纵向端应满足以下限制:<?in-line-formula description =“In-line Formulas”end =“lead”?> Deltad / d = 0.041 to 0.145 < line-formula description =“In-line Formulas”end =“tail”?>