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    • 57. 发明申请
    • Method of manufacturing an inflator
    • 制造充气机的方法
    • US20090313821A1
    • 2009-12-24
    • US12457671
    • 2009-06-18
    • Junichi AsanumaYoshitaka KashitaniKeisuke MoriTakashi Araki
    • Junichi AsanumaYoshitaka KashitaniKeisuke MoriTakashi Araki
    • B23P17/00
    • B60R21/268B60R21/272Y10T29/49229Y10T29/49826
    • At the time of manufacturing an inflator, a blocking body is first disposed at an opening so as to allow the interior and the exterior of a housing to communicate with each other. The blocking body is abutted against a peripheral edge of the opening so as to ensure sealability between the blocking body and the peripheral edge of the opening. A filling nozzle injecting a pressurized gas is then pressed against a periphery of an inlet port of the blocking body, and the pressurized gas is injected from the filling nozzle so as to fill the pressurized gas into the housing through a filling channel. Subsequently, to block the filling channel, the blocking body is energized with a resistance-welding current to resistance-weld an inner peripheral portion of the filling channel. At the same time, the blocking body is fixed to the peripheral edge of the opening by resistance-welding so as to maintain sealability, thereby manufacturing the inflator.
    • 在制造充气机时,首先将阻塞体设置在开口处,以允许壳体的内部和外部彼此连通。 阻挡体抵靠开口的周缘,以确保阻挡体与开口的周缘之间的密封性。 然后将注入加压气体的填充喷嘴按压在阻挡体的入口的周边,并且从填充喷嘴喷射加压气体,以便通过填充通道将加压气体填充到壳体中。 随后,为了阻止填充通道,阻挡体通过电阻焊接电流通电,以对填充通道的内周部分进行电阻焊接。 同时,通过电阻焊接将阻塞体固定到开口的周缘,以保持密封性,从而制造充气机。
    • 58. 发明申请
    • Fluoroalkyl iodide and its production process
    • 氟烷基碘及其制备方法
    • US20070249876A1
    • 2007-10-25
    • US11406289
    • 2006-04-19
    • Shoji FurutaYusuke SugaharaKeiko NakaseKeisuke Mori
    • Shoji FurutaYusuke SugaharaKeiko NakaseKeisuke Mori
    • C07C17/275
    • C07C19/16C07C17/278
    • A process for producing a fluoroalkyl iodide as a telomer Rf(CF2CF2)nI (wherein Rf is a C1-10 fluoroalkyl group, and n is an integer of from 1 to 6) by telomerization from a fluoroalkyl iodide represented by the formula RfI (wherein Rf is as defined above) as a telogen and tetrafluoroethylene (CF2CF2) as a taxogen, which comprises a liquid phase telomerization step of supplying a homogeneous liquid mixture of the telogen and the taxogen from the lower portion of a tubular reactor, moving the mixture from the lower portion towards the upper portion of the reactor in the presence of a radical initiator over a retention time of at least 5 minutes while the reaction system is kept in a liquid phase state is under conditions where no gas-liquid separation will take place, so that the taxogen supplied to the reactor is substantially consumed by the reaction in the reactor, and drawing the reaction product from the upper portion of the reactor.
    • 制备作为调聚物的氟代烷基碘的方法(CF 2)其中(其中R 1,R 2,R 2, 通过由式R 1代表的氟代烷基碘进行调聚,R“是C 1〜10位氟代烷基,n为1〜6的整数) 作为发酵剂的前体和四氟乙烯(CF 2 CH 2 CH 2),f I(其中R f定义如上)) ,其包括液相调聚步骤,从管状反应器的下部供应脱水剂和发酵剂的均匀液体混合物,在自由基引发剂存在下将混合物从反应器的下部向上游部分移动 在反应体系保持在液相状态的保持时间为至少5分钟的条件下,在不进行气 - 液分离的条件下,供给到反应器的发酵剂基本上被反应器中的反应消耗 和拉丁 g来自反应器上部的反应产物。
    • 59. 发明授权
    • Multi-part grommet
    • 多部分索环
    • US06278060B1
    • 2001-08-21
    • US09313370
    • 1999-05-18
    • Keisuke Mori
    • Keisuke Mori
    • H02G318
    • B60R16/0222H02G3/0468H02G3/0475H02G3/22Y10T16/05
    • A grommet is provided for linking a wire through a rear door glass from the roof of a vehicle, the rear door glass of the vehicle configured to open and close independently from the opening and closing of the rear door of the vehicle. The grommet has first through third flexible moldings and first and second rigid moldings. The flexible moldings allow the grommet to flex with the opening closing motion of the rear door and rear door glass, while the rigid moldings prevent the wire from deforming the grommet. The grommet is adapted to accept a wire through the third flexible molding and through the second rigid molding, through the second flexible molding, through the first rigid molding and through the first flexible molding. After passing the wire through all moldings, the moldings are adapted to be sequentially connected each other in substantially the same order as the wire passing order. Portions of the moldings have generally circular tubular configurations, while other portions of the moldings have generally flat tubular configurations in order to pass a group of wires through a narrow space. The grommet provides water-resistant protection for the wires contained therein.
    • 提供了一种用于将电线穿过后门玻璃从车辆的车顶连接起来的索环,车辆的后门玻璃被配置为独立于车辆的后门的打开和关闭而打开和关闭。 索环具有第一至第三柔性模制件和第一和第二刚性模制件。 柔性模制件允许索环随着后门和后门玻璃的开启关闭运动而弯曲,而刚性模制件防止电线使索环变形。 护环适于通过第三柔性模制件并通过第二刚性模制件,通过第二柔性模制件,通过第一刚性模制件和通过第一柔性模制件接纳线材。 在将电线通过所有模制品之后,模制品适于以与电线通过顺序基本相同的顺序相互连接。 模制品的一些部分具有大致圆形的管状构造,而模制品的其它部分具有大致扁平的管状构造,以便使一组电线穿过狭窄的空间。 护环为其中包含的电线提供防水保护。
    • 60. 发明授权
    • X-ray imaging apparatus
    • X射线成像装置
    • US6118842A
    • 2000-09-12
    • US987218
    • 1997-12-09
    • Yoshinori AraiKeisuke MoriMasakazu SuzukiAkifumi Tachibana
    • Yoshinori AraiKeisuke MoriMasakazu SuzukiAkifumi Tachibana
    • A61B6/03A61B6/06A61B6/14
    • A61B6/032A61B6/14A61B6/06Y10S378/901
    • An object of the invention is to provide a dual-purpose X-ray imaging apparatus capable of partial CT imaging in addition to panoramic tomographic imaging. Another object of the invention is to provide a dedicated partial X-ray CT imaging apparatus. An X-ray imaging apparatus comprises an X-ray source 28 which irradiates an object with X-rays; an image sensor 38 which detects X-rays having passed through the object; a support arm 24 which supports the X-ray source 28 and the image sensor 38; and a plurality of motors for moving the support arm 24. These motors move the X-ray source 28 and image sensor 38 along a CT image formation locus in the CT mode, and the X-ray source 28 and the image sensor 38 along a panoramic image formation locus in the case of the panorama mode.
    • 本发明的一个目的是提供一种能够进行全景断层摄影成像的部分CT成像的双用途X射线成像装置。 本发明的另一个目的是提供专用的部分X射线CT成像装置。 X射线成像装置包括用X射线照射物体的X射线源28; 检测穿过物体的X射线的图像传感器38; 支撑X射线源28和图像传感器38的支撑臂24; 以及用于移动支撑臂24的多个电动机。这些电动机沿CT模式沿着CT成像轨迹移动X射线源28和图像传感器38,并且沿着X射线源28和图像传感器38沿着 全景图像形成轨迹在全景模式的情况下。