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    • 1. 发明授权
    • Vehicle body structure
    • 车体结构
    • US06789837B2
    • 2004-09-14
    • US10440628
    • 2003-05-19
    • Jun MitsuiTsuyoshi HiguchiKanji FujiiYoshitomo Ihashi
    • Jun MitsuiTsuyoshi HiguchiKanji FujiiYoshitomo Ihashi
    • B60J510
    • E05F15/63E05F15/619E05Y2900/546
    • A vehicle body structure comprises: a side roof rail, a rear roof rail, and a rear pillar, which are disposed in the rear portion of an vehicle body, and which intersect each other at an intersecting portion; a rear door provided for optionally opening and closing a rear port of the vehicle body; an automatic opening and closing unit disposed inside the vehicle body and in the vicinity of the intersecting portion; an aperture provided in the intersecting portion; and an arm provided through the aperture for connecting the automatic opening and closing unit to the rear door. The automatic opening and closing unit is fixed to at least the side roof rail, the rear roof rail, and the rear pillar so as to pass above the aperture.
    • 车体结构包括:侧车顶轨道,后车顶轨道和后支柱,其设置在车体的后部,并且在交叉部分处彼此相交; 后门,用于可选地打开和关闭车体的后端口; 设置在车体内部和交叉部附近的自动开闭单元; 设置在交叉部分中的孔; 以及通过该孔设置的臂,用于将自动打开和关闭单元连接到后门。 自动打开和关闭单元至少固定在侧车顶轨道,后车顶轨道和后支柱上,以便通过孔的上方。
    • 2. 发明授权
    • Abrasive machine
    • 磨料机
    • US06422928B1
    • 2002-07-23
    • US09504482
    • 2000-02-15
    • Yoshio NakamuraKanji Fujii
    • Yoshio NakamuraKanji Fujii
    • B24B722
    • B24B37/30B24B41/06H01L21/30625
    • An abrasive machine is capable of solving the liquation of metal ions, and improving abrading accuracy. In the abrasive machine, an abrasive plate has an abrasive face capable of abrading a wafer. A holding section includes: a head member located above the abrasive face; a holding plate provided between the head member and the abrasive face, the holding plate having a holding face capable of holding the wafer; and a bellows fixed between the holding plate and the head member, the bellows allowing the holding plate to move close to and away from and incline with respect to the head member, the bellows forming a pressure chamber. Pressing means presses the wafer onto the abrasive face, with the holding plate, by pressurizing the pressure chamber. The bellows is made by cutting a block of plastic without forming seams.
    • 研磨机能够解决金属离子的液化,提高研磨精度。 在研磨机中,研磨板具有能够研磨晶片的研磨面。 保持部包括:位于磨料面上方的头部构件; 保持板,设置在头部构件和研磨面之间,保持板具有能够保持晶片的保持面; 并且固定在保持板和头部构件之间的波纹管,波纹管允许保持板相对于头部构件移动靠近和远离并且倾斜,波纹管形成压力室。 按压装置通过对压力室进行加压将晶片压在研磨面上。 波纹管是通过切割一块塑料而不形成接缝而制成的。
    • 3. 发明申请
    • AUTOMOTIVE REAR VEHICLE BODY STRUCTURE
    • 汽车后车身结构
    • US20110215617A1
    • 2011-09-08
    • US12673687
    • 2008-05-14
    • Masaki IzutsuKanji FujiiYutaka KobashiHidenori MatsumotoKatsuya HishikiMasami Yaguchi
    • Masaki IzutsuKanji FujiiYutaka KobashiHidenori MatsumotoKatsuya HishikiMasami Yaguchi
    • B62D25/08
    • B62D21/152B62D25/087
    • Provided is an automotive rear vehicle body structure which increases the amount of energy that can be absorbed, improves the safety of the vehicle occupant and protects a fuel tank in a reliable manner at the time of a rear end collision while allowing a spare tire to be placed within a cabin. In an automotive rear vehicle body structure having a H-type torsion beam wheel suspension system (12) pivotally supported by side sill extensions (2a, 3a) on either side of the vehicle body, the wheel suspension system including a pair of trailing arms (13, 14) and a torsion beam (15) connecting intermediate parts of the trailing arms with each other, a pair of rear side frames (6, 7) extend rearwardly from side sills (2, 3), and a spare tire pan (10) is defined by downwardly bulging a part of a rear floor panel (11) located between the rear side frames (6, 7). A pair of rear center frames (21, 22) extending in a fore-and-aft direction are located behind the torsion beam (15) and attached to the lower surface of a bottom wall (10a) of the spare tire pan (10).
    • 提供了一种车辆后车身结构,其在后端碰撞时增加可吸收的能量的量,提高车辆乘员的安全性并且以可靠的方式保护燃料箱,同时允许备胎 放在舱内。 在具有H型扭转梁车轮悬挂系统(12)的汽车后车身结构中,所述H型扭力梁车轮悬挂系统(12)由车身两侧的侧梁延伸部(2a,3a)枢转地支撑,所述车轮悬挂系统包括一对拖臂 13和14)和将后臂的中间部分彼此连接的扭力梁(15),一对后侧框架(6,7)从侧梁(2,3)向后延伸,并且备用轮胎盘 10)通过向下膨胀位于后侧框架(6,7)之间的后地板镶板(11)的一部分来限定。 沿着前后方向延伸的一对后中心框架(21,22)位于扭力梁(15)的后方并且附接到备用轮胎盘(10)的底壁(10a)的下表面, 。
    • 4. 发明授权
    • Automotive rear vehicle body structure
    • 汽车后车身结构
    • US08282146B2
    • 2012-10-09
    • US12673687
    • 2008-05-14
    • Masaki IzutsuKanji FujiiYutaka KobashiHidenori MatsumotoKatsuya HishikiMasami Yaguchi
    • Masaki IzutsuKanji FujiiYutaka KobashiHidenori MatsumotoKatsuya HishikiMasami Yaguchi
    • B62D21/02
    • B62D21/152B62D25/087
    • Provided is an automotive rear vehicle body structure which increases the amount of energy that can be absorbed, improves the safety of the vehicle occupant and protects a fuel tank in a reliable manner at the time of a rear end collision while allowing a spare tire to be placed within a cabin. In an automotive rear vehicle body structure having a H-type torsion beam wheel suspension system (12) pivotally supported by side sill extensions (2a, 3a) on either side of the vehicle body, the wheel suspension system including a pair of trailing arms (13, 14) and a torsion beam (15) connecting intermediate parts of the trailing arms with each other, a pair of rear side frames (6, 7) extend rearwardly from side sills (2, 3), and a spare tire pan (10) is defined by downwardly bulging a part of a rear floor panel (11) located between the rear side frames (6, 7). A pair of rear center frames (21, 22) extending in a fore-and-aft direction are located behind the torsion beam (15) and attached to the lower surface of a bottom wall (10a) of the spare tire pan (10).
    • 提供了一种车辆后车身结构,其在后端碰撞时增加可吸收的能量的量,提高车辆乘员的安全性并且以可靠的方式保护燃料箱,同时允许备胎 放在舱内。 在具有H型扭转梁车轮悬挂系统(12)的汽车后车身结构中,所述H型扭力梁车轮悬挂系统(12)由车身两侧的侧梁延伸部(2a,3a)枢转地支撑,所述车轮悬挂系统包括一对拖臂 13和14)和将后臂的中间部分彼此连接的扭力梁(15),一对后侧框架(6,7)从侧梁(2,3)向后延伸,并且备用轮胎盘 10)通过向下膨胀位于后侧框架(6,7)之间的后地板镶板(11)的一部分来限定。 沿着前后方向延伸的一对后中心框架(21,22)位于扭力梁(15)的后方并且附接到备用轮胎盘(10)的底壁(10a)的下表面, 。
    • 5. 发明授权
    • Elongated work assembling method
    • 延长工作组装方式
    • US5301411A
    • 1994-04-12
    • US904965
    • 1992-06-26
    • Hideki FujiwaraKanji Fujii
    • Hideki FujiwaraKanji Fujii
    • B23P19/04B62D65/16B21D39/03B23P11/00
    • B23P19/04B62D65/16B23P2700/50Y10T29/49829
    • An elongated work assembling method and system for fastening a flexible elongated work having an integrated fixing member to a receive body includes a first placing step or apparatus for placing and fixing the elongated work on an attaching mechanism arranged at one side along a continuous convey direction of the receive body, a first fastening step or apparatus for fastening the placed elongated work to the attaching mechanism in substantially the same fastening state as a final fastening state to the receive body, a clamping step or apparatus for clamping the elongated work in the fastening state in the attaching mechanism, a fastening state releasing step or apparatus for releasing the fastening state of the elongated work to the attaching mechanism, a moving step or means for detaching from the attaching mechanism the elongated work released from the fastening state, and moving the detached elongated work to the receive body, and a second fastening step or apparatus for finally fastening the moved elongated work to the receive body from the other side along the continuous convey direction. The elongated work is fastened to the receive body through the above-mentioned assembly steps or assembly apparatus.
    • 一种用于将具有集成固定构件的柔性细长工件紧固到接收体的细长工作组装方法和系统包括:第一放置步骤或装置,用于将细长工件放置和固定在沿着连续输送方向的一侧布置的安装机构上 接收体,用于将放置的细长工件紧固到附接机构的第一紧固步骤或装置,以与接收体最终紧固状态基本相同的紧固状态,夹紧步骤或装置,用于将细长工件夹紧在紧固状态 在安装机构中,用于将细长工件的紧固状态释放到安装机构的紧固状态释放步骤或装置,用于从附接机构脱离从紧固状态释放的细长工件的移动步骤或装置, 延伸到接收体的工作,以及用于最终fas的第二紧固步骤或装置 沿着连续的传送方向,从另一侧将移动的细长工作减轻到接收体。 细长的工作通过上述组装步骤或组装装置固定到接收体上。