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    • 2. 发明授权
    • Glass run
    • 玻璃跑
    • US07410203B2
    • 2008-08-12
    • US11806954
    • 2007-06-05
    • Atsushi YatsudaYoshio HashimotoMasanori AritakeSatoshi TokiYukio Matsuda
    • Atsushi YatsudaYoshio HashimotoMasanori AritakeSatoshi TokiYukio Matsuda
    • B60J1/08
    • B60J10/30
    • An automobile door has a glass run corresponding to a glass door. The glass run includes a body portion, which has a bottom wall portion, and a vehicle interior side wall portion and a vehicle exterior side wall portion respectively extending from opposite ends of the bottom wall portion, and also includes a pair of seal lips which performs sealing between the door glass and the glass run. Furthermore, in a cross-sectionally substantially-U-shaped outer peripheral portion of the body portion, sponge rubber layers are provided in a predetermined range in a longitudinal direction of a cross-section of the vehicle interior side surface wall portion and a predetermined zone including a continuously connecting portion between the bottom wall portion and the inner outer side surface wall portion, respectively. An auxiliary lip is provided at a continuously connecting portion between the bottom wall portion and the vehicle interior side wall portion. Additionally, a sponge rubber layer is formed on a door glass facing surface of the bottom wall portion.
    • 汽车门具有玻璃门对应的玻璃门。 玻璃行程包括具有底壁部分的主体部分和分别从底壁部分的相对端延伸的车辆内侧壁部分和车辆外侧壁部分,并且还包括执行的一对密封唇部 门玻璃和玻璃杯之间的密封。 此外,在本体部的横截面大致U字状的外周部,在车辆内侧面壁部和规定区域的横截面的长度方向上,在规定范围内设置海绵状橡胶层 包括分别在底壁部分和内侧外壁面部分之间的连续连接部分。 辅助唇缘设置在底壁部分和车辆内侧壁部分之间的连续连接部分处。 此外,在底壁部分的面向门玻璃的表面上形成海绵橡胶层。
    • 3. 发明申请
    • Glass run
    • 玻璃跑
    • US20070296250A1
    • 2007-12-27
    • US11806954
    • 2007-06-05
    • Atsushi YatsudaYoshio HashimotoMasanori AritakeSatoshi TokiYukio Matsuda
    • Atsushi YatsudaYoshio HashimotoMasanori AritakeSatoshi TokiYukio Matsuda
    • B60J10/04
    • B60J10/30
    • An automobile door has a glass run corresponding to a glass door. The glass run includes a body portion, which has a bottom wall portion, and a vehicle interior side wall portion and a vehicle exterior side wall portion respectively extending from opposite ends of the bottom wall portion, and also includes a pair of seal lips which performs sealing between the door glass and the glass run. Furthermore, in a cross-sectionally substantially-U-shaped outer peripheral portion of the body portion, sponge rubber layers are provided in a predetermined range in a longitudinal direction of a cross-section of the vehicle interior side surface wall portion and a predetermined zone including a continuously connecting portion between the bottom wall portion and the inner outer side surface wall portion, respectively. An auxiliary lip is provided at a continuously connecting portion between the bottom wall portion and the vehicle interior side wall portion. Additionally, a sponge rubber layer is formed on a door glass facing surface of the bottom wall portion.
    • 汽车门具有玻璃门对应的玻璃门。 玻璃行程包括具有底壁部分的主体部分和分别从底壁部分的相对端延伸的车辆内侧壁部分和车辆外侧壁部分,并且还包括执行的一对密封唇部 门玻璃和玻璃杯之间的密封。 此外,在本体部的横截面大致U字状的外周部,在车辆内侧面壁部和规定区域的横截面的长度方向上,在规定范围内设置海绵状橡胶层 包括分别在底壁部分和内侧外壁面部分之间的连续连接部分。 辅助唇缘设置在底壁部分和车辆内侧壁部分之间的连续连接部分处。 此外,在底壁部分的面向门玻璃的表面上形成海绵橡胶层。
    • 5. 发明申请
    • Door weatherstrip
    • 门密封条
    • US20090100761A1
    • 2009-04-23
    • US12285023
    • 2008-09-26
    • Yoshio HashimotoSatoshi TokiHideaki MinouraMasanori Aritake
    • Yoshio HashimotoSatoshi TokiHideaki MinouraMasanori Aritake
    • E06B7/16
    • B60J10/24B60J10/16B60J10/36B60J10/80
    • A door weatherstrip includes a mounted base portion which is mounted along an outer circumference of a door frame, and a seal portion which extends in an outer circumferential direction of a door from the mounted base portion. The mounted base portion includes a base bottom portion, a vehicle-interior side wall portion and a vehicle-exterior side wall portion, and an isolating wall portion. The mounted base portion is made from an EPDM sponge rubber material into which polyethylene is mixed to have a specific gravity of 0.2 or larger and smaller than 0.45 and a low expansion stress of 200 kPa or larger. The seal portion is made from an EPDM sponge rubber material having a specific gravity of 0.45 or larger and 1.0 or smaller and a low expansion stress of 120 kPa or larger and smaller than 200 kPa. Thus, the door weatherstrip is provided in which the specific gravity of the mounted base portion is made smaller than the specific gravity of the seal portion and a material rigidity of the mounted base portion is larger than a material rigidity of the seal portion.
    • 门密封条包括沿着门框的外周安装的安装的基座部分和从安装的底座部分在门的外周方向上延伸的密封部分。 所安装的底座部分包括底部底部,车辆内侧侧壁部分和车辆外侧壁部分以及隔离壁部分。 安装的基部由EPDM海绵橡胶材料制成,聚乙烯混入其中,比重为0.2以上且小于0.45,低膨胀应力为200kPa以上。 密封部由比重为0.45以上且1.0以下,低膨胀应力为120kPa以上且小于200kPa的EPDM海绵橡胶材料制成。 因此,设置门密封条,其中使安装的基部的比重小于密封部的比重,并且安装的基部的材料刚度大于密封部的材料刚度。
    • 7. 发明申请
    • OPTICAL FIBER CABLE
    • 光纤电缆
    • US20100189396A1
    • 2010-07-29
    • US12670805
    • 2008-05-30
    • Yoshio HashimotoNaoki Okada
    • Yoshio HashimotoNaoki Okada
    • G02B6/44
    • G02B6/443G02B6/441G02B6/4434
    • An optical fiber cable 1 includes: a cable core 9 formed by stranding a plurality of loose tubes 7, each housing at least one optical fiber 5, on the periphery of a centered tension member 3; and a sheath 11 disposed on the outer periphery of the cable core 9. The sheath 11 includes: a first sheath portion 13 in which the sheath is embedded in between each of the loose tubes 7; and a second sheath portion 15, in which the sheath 11 is circumscribed around the cable core 9, to be thereby formed in a pipe shape. The first sheath portion 13 and the second sheath portion 15 are alternately positioned over the entire length of the cable core 9.
    • 光纤电缆1包括:电缆芯9,其通过在中心张力构件3的周边上绞合多个松散的管7,每个容纳至少一个光纤5的松套管7; 以及设置在电缆芯9的外周上的护套11.护套11包括:第一护套部分13,其中护套嵌入在每个松套管7之间; 以及第二护套部15,其中护套11围绕电缆芯9外接,从而形成为管状。 第一护套部13和第二护套部15交替地位于电缆芯9的整个长度上。
    • 8. 发明授权
    • Hybrid welding apparatus
    • 混合焊接设备
    • US6034343A
    • 2000-03-07
    • US148494
    • 1998-09-04
    • Yoshio HashimotoTakashi Ishide
    • Yoshio HashimotoTakashi Ishide
    • B23K9/173B23K9/12B23K9/32B23K26/00B23K26/06B23K26/14B23K26/20B23K28/02
    • B23K26/1429
    • A hybrid welding apparatus for subjecting a base metal to gas-shielded arc welding and laser welding comprises a laser generator for emitting a laser beam and a condenser optical system for condensing the laser beam to laser weld the base metal. The condenser optical system includes a plurality of lenses, each having a hole portion in the center thereof. A tubular supply holder for supplying a welding wire is passed through these respective hole portions of the lenses and located substantially coaxially with the axis of the condenser optical system. The laser beam and welding wire to be applied to the base metal are arranged coaxially, so that laser-welding and arc-shielded welding can be simultaneously performed with a wide angle between the welding head and a bevel of the base metal, thereby deepening penetration of the weld at an increased welding speed.
    • 用于对母材进行气体保护电弧焊和激光焊接的混合焊接装置包括用于发射激光束的激光发生器和用于使激光束聚光以激光焊接母材的聚光器光学系统。 聚光镜系统包括多个透镜,每个透镜在其中心具有孔部分。 用于供应焊丝的管状供应保持器穿过透镜的这些相应的孔部分,并且与冷凝器光学系统的轴线基本同轴地定位。 施加到母材的激光束和焊丝同轴地布置,从而能够以焊接头与母材的斜面之间的广角同时进行激光焊接和电弧保护焊接,从而加深穿透 的焊接速度。
    • 9. 发明授权
    • Polygon scanner and production process thereof
    • 多边形扫描仪及其生产工艺
    • US5574591A
    • 1996-11-12
    • US383929
    • 1995-02-06
    • Mitsuo SuzukiYukio ItamiYoshio HashimotoKoji TsukaharaYoshihiro TakahashiTakao Abe
    • Mitsuo SuzukiYukio ItamiYoshio HashimotoKoji TsukaharaYoshihiro TakahashiTakao Abe
    • F16C17/02F16C33/10G02B7/182G02B26/12H02K5/16H02K7/09H02K21/24H02K29/06G02B26/08
    • F16C33/107F16C17/026G02B26/121G02B7/1821H02K21/24H02K29/06H02K5/1677H02K7/09Y10S359/90
    • A polygon scanner has a lighter rotating shaft on which a polygon mirror is mounted, to prevent a positional deviation of the polygon mirror from the rotating shaft in high speed rotation, in which the rotating shaft is supported through a dynamic pressure air bearing on a fixed shaft, in which the polygon mirror and motor constituent members are mounted on the rotating shaft, and in which the rotating shaft and the polygon mirror are made of respective light weight materials matched with each other in coefficient of thermal expansion, for example of aluminum or an aluminum alloy. Further, an anodic oxide film is formed at least on a portion where the rotating shaft could contact with the fixed shaft, and floating means is provided for constantly floating the rotating shaft relative to the fixed shaft upward in an axial direction thereof. A process for producing the polygon scanner comprises making a predetermined masking on a portion where the rotating shaft could contact with the fixed shaft, prior to an anodic oxidation treatment to form an anodic oxide film on the portion, and then performing the anodic oxidation treatment, whereby, during the treatment, forming an anodic oxide film and a pattern of recesses and protrusions for dynamic pressure generation corresponding to a pattern of the masking, which are constituent elements of a dynamic pressure air bearing.
    • 多边形扫描器具有安装有多面镜的较轻的旋转轴,以防止多角镜从高速旋转中的旋转轴的位置偏离,其中旋转轴通过动态压力空气轴承支撑在固定的 轴,其中多面镜和电动机构成部件安装在旋转轴上,并且其中旋转轴和多面镜由相对于热膨胀系数彼此匹配的各种重量轻的材料制成,例如铝或 铝合金。 此外,至少在旋转轴可以与固定轴接触的部分上形成阳极氧化膜,并且设置有浮动装置,用于使旋转轴相对于固定轴在轴向上向上上升。 多边形扫描仪的制造方法,在阳极氧化处理之前,在旋转轴可以与固定轴接触的部分上进行规定的掩模,在该部分上形成阳极氧化膜,然后进行阳极氧化处理, 由此,在处理过程中,形成阳极氧化膜和用于动压产生的凹凸图案,其对应于作为动压空气轴承的组成元件的掩模图案。
    • 10. 发明授权
    • Optical deflector of air bearing type
    • 空气轴承类型的光学偏转器
    • US5069515A
    • 1991-12-03
    • US584615
    • 1990-09-19
    • Yukio ItamiMitsuo SuzukiTeruo OhneKenichi HoshiEiri SagaeYoshio Hashimoto
    • Yukio ItamiMitsuo SuzukiTeruo OhneKenichi HoshiEiri SagaeYoshio Hashimoto
    • G02B26/12
    • G02B26/121F16C17/026F16C32/0427
    • An optical deflector of an air bearing type has a fixed shaft; a rotary shaft having a hollow portion fitted onto the fixed shaft; a support device disposed between an end portion of the fixed shaft and an end portion of the hollow portion opposite thereto and supporting the rotary shaft in an axial direction thereof; a radial air bearing formed between an inner circumferential face of the hollow portion and an outer circumferential face of the fixed shaft; a polygon mirror fixed to the rotary shaft; a driving device for rotating the rotary shaft; a device for deflecting light irradiated onto the polygon mirror by rotating the rotary shaft through the driving device; a device for forming a flange for fixing the polygon mirror thereto integrally with the rotary shaft; and a device for setting an upper end portion of the support device on a fixed shaft side thereof to be lower than an upper end face of the polygon mirror. The support device has a first magnet directly attached onto an end face of the fixed shaft, a second magnet opposite to the first magnet and attached to the hollow portion of the rotary shaft, and a third magnet opposite to the second magnet and attached to a casing for covering the polygon mirror. Magnetic poles of the first, second and third magnets are opposite to each other to generate magnetic repulsive force.
    • 空气轴承型光偏转器具有固定轴; 具有安装在所述固定轴上的中空部的旋转轴; 支撑装置,其设置在所述固定轴的端部和与所述固定轴的端部相对的中空部的端部之间,并且沿其轴向方向支撑所述旋转轴; 形成在所述中空部的内周面与所述固定轴的外周面之间的径向空气轴承; 固定在旋转轴上的多面镜; 用于旋转所述旋转轴的驱动装置; 用于通过驱动装置旋转旋转轴来偏转照射到多面镜上的光的装置; 用于形成用于将所述多角镜固定到所述旋转轴上的凸缘的装置; 以及用于将固定轴侧的支撑装置的上端部设定为低于多面镜的上端面的装置。 支撑装置具有直接附接到固定轴的端面上的第一磁体,与第一磁体相对的第二磁体并且附接到旋转轴的中空部分,以及与第二磁体相对的第三磁体,并附接到第一磁体 用于覆盖多面镜的外壳。 第一,第二和第三磁体的磁极彼此相对以产生磁性排斥力。