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    • 12. 发明申请
    • Scuff plate
    • 刮板
    • US20070196762A1
    • 2007-08-23
    • US11707962
    • 2007-02-20
    • Hideto MaedaDaiichiro KawashimaTatsuya Oba
    • Hideto MaedaDaiichiro KawashimaTatsuya Oba
    • G03C8/00
    • B60R13/0231B60Q3/217B60Q3/64
    • To provide a scuff plate that produces no irregularity in illumination or light emission, a scuff plate 1 of the invention has a light emitting element 2 which has a pillar-like shape and of which a portion which makes up at least part of an outer circumferential side and extends in an axial direction makes up a light emitting surface 20, a light reflecting element 6 which reflects light emitted from the light emitting element 2, and a light guiding element 3 which has a plate-like shape which transmits light and which is disposed in a position where a rear surface 3b thereof becomes opposite to the light reflecting element 6 and light reflected by the light reflecting element 6 is shone on thereto, wherein a space is provided between the rear surface 3b of the light guiding element 3 and the light reflecting element 6.
    • 为了提供在照明或发光中不产生不规则性的刮板,本发明的刮板1具有发光元件2,该发光元件2具有柱状形状,并且其中构成至少部分外周的部分 并且沿轴向延伸,构成发光面20,反射从发光元件2发射的光的光反射元件6,以及具有透光的板状形状的导光元件3, 设置在其后表面3b与光反射元件6相反的位置,并且由光反射元件6反射的光被照射在其上,其中在导光元件3的后表面3b之间设置有空间 和光反射元件6。
    • 14. 发明申请
    • Ventilation duct for vehicles
    • 车辆通风管道
    • US20050075064A1
    • 2005-04-07
    • US10911638
    • 2004-08-05
    • Yoshimasa OmiyaDaiichiro KawashimaYasunobu TeramotoYoshikazu HiroseTomokazu Inoue
    • Yoshimasa OmiyaDaiichiro KawashimaYasunobu TeramotoYoshikazu HiroseTomokazu Inoue
    • B60H1/00B60H1/24
    • B60H1/249B60H2001/006Y10S454/906
    • A vehicle ventilation duct includes a duct body, a conduit, a sound absorption chamber, a transmission opening communicating the conduit with the sound absorption chamber, and an air-permeable member closing the transmission opening permeably. The duct body is disposed in a vehicle outer hull, and includes a frame having a ventilation opening opened to the outside of a vehicle and a valve element covering the ventilation opening openably and closably. The conduit is formed integrally with or independently of the duct body, is disposed on a vehicle-passenger-room side of the duct body, is communicated with the ventilation opening of the duct body, and is communicated with the inside of a vehicle passenger room, whereby enabling air inside and outside the vehicle to pass therethrough back and forth. Thus, the ventilation duct lets out air in the vehicle passenger room to the outside of the vehicle or vice versa.
    • 车辆通风管道包括管道主体,导管,吸声室,将导管与吸声室连通的传输开口,以及可渗透地封闭传输开口的透气部件。 管道主体设置在车辆外壳中,并且包括具有通向车辆外侧的通气开口的框架和可开启和关闭地覆盖通风口的阀元件。 导管与导管体一体形成或独立于管体,设置在管体的车辆乘客室侧,与管体的通气口连通,并与车辆乘客室的内部连通 从而使得车辆内部和外部的空气能够前后穿过。 因此,通风管道将车辆乘客室中的空气排出到车辆的外部,反之亦然。
    • 17. 发明授权
    • Injection molding method and injection molding apparatus
    • 注射成型法和注射成型装置
    • US07935293B2
    • 2011-05-03
    • US11604869
    • 2006-11-28
    • Tatsuo ItoDaiichiro KawashimaKazuo Takeda
    • Tatsuo ItoDaiichiro KawashimaKazuo Takeda
    • B29C45/00
    • B29C45/174B29C45/2628B29C2045/0027B29L2031/3055
    • An injection molding apparatus includes a forming mold provided with a gas inlet through which a gas is introduced into an area between a rear molding surface in a cavity and a resin material inside the cavity. A plurality of the gas inlets is provided along a passage direction of the resin material in the cavity. In injection molding the resin molded article, a molten resin material is introduced into the cavity from a resin inlet and, when filling the inside of the cavity with the resin material, the introduction of the gas is sequentially started, beginning with a gas inlet provided in an area inside the cavity which is first filled with the resin material, thereby sequentially pressing the relevant resin material against a front molding surface of the cavity.
    • 注射成型装置包括具有气体入口的成型模具,气体通过该入口引入空腔中的后模制表面和腔内的树脂材料之间的区域中。 沿着空腔中的树脂材料的通过方向设置多个气体入口。 在注射成型树脂成形品时,熔融树脂材料从树脂入口引入空腔,当用树脂材料填充空腔内部时,依次开始引入气体,从设置的气体入口开始 在首先填充有树脂材料的空腔内的区域内,依次将相关的树脂材料压靠在空腔的前模制表面上。