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    • 6. 发明授权
    • Wing spar retention system and method
    • 翼翼保留系统及方法
    • US09217532B2
    • 2015-12-22
    • US13974468
    • 2013-08-23
    • Becklin Holdings, Inc.
    • Adrian P. Tayne
    • B25B27/14F16M9/00B64C39/02F16B2/10F16B2/12
    • F16M9/00B64C39/024B64C2201/201F16B2/10F16B2/12F16B43/003
    • A retention system includes a base supporting a wing spar and a post extending through the base from a first side of the base to a second side of the base. The post inserts through an aperture in the spar. A stop is selectively securable to the post over the second side of the base. A locking member engages the post on the first side of the base. The locking member is configured to selectively move the post from an unlocked position to a locked position in which the post is withdrawn toward the first side relative to the unlocked position. A biasing member encircles the post and is positioned between the stop and the second side. When the locking member is in a closed position the biasing member expands to engage the aperture and resist movement of the wing spar. A plurality of cradles may support the wing.
    • 保持系统包括支撑翼梁的基座和从基座的第一侧到基座的第二侧延伸穿过基座的柱。 柱穿过翼梁中的孔。 在基座的第二侧上,可以选择性地固定在支柱上。 锁定构件在基座的第一侧上接合柱。 锁定构件被构造成选择性地将柱从解锁位置移动到锁定位置,在锁定位置中柱相对于解锁位置朝向第一侧撤回。 偏置构件环绕柱,并且位于止挡件和第二侧之间。 当锁定构件处于关闭位置时,偏压构件膨胀以接合孔并阻止翼梁的运动。 多个托架可以支撑机翼。
    • 7. 发明申请
    • POSITION REGULATING APPARATUS FOR ENGINE OPERATING MACHINE
    • 发动机操作机位置调节装置
    • US20130099088A1
    • 2013-04-25
    • US13655900
    • 2012-10-19
    • HONDA MOTOR CO., LTD.
    • Yuuki TakahashiTakeshi SasajimaKatsuhiro Nakagawa
    • F16M1/02
    • F02B63/04F02B63/044F02B63/048F02B2063/045F16M3/00F16M5/00F16M7/00F16M9/00F16M11/00
    • The present invention is directed to enable the shape of a bump stopper to be easily changed in accordance with a change in specifications, the bump stopper for performing position regulation so that, when an engine generator shakes, the generator body does not come off from an external frame. A position regulating apparatus has a generator body (4) made of an engine (2) and a generator (3) driven by the engine, and a frame (7) surrounding the periphery of the generator body (4). The frame (7) is provided with a bump stopper (40) as a rod member. The bump stopper (40) is attached to a housing (70) of the engine (2) and disposed horizontally. The bump stopper (40) regulates the position in the horizontal direction of the generator body (4) within a preset range. Receiving plates (60) disposed so as to face both end faces of the stopper body (41) are provided. The round bar as the body (41) of the bump stopper (40) has a crank shape which reduces an impact by generating bending moment.
    • 本发明旨在使得能够根据规格变化容易地改变凸块止动件的形状,用于执行位置调节的凸块止动器,使得当发动机发电机摇动时,发电机主体不会从 外框。 位置调节装置具有由发动机(2)和由发动机驱动的发电机(3)构成的发电机主体(4)和围绕发电机主体(4)周边的框架(7)。 框架(7)设置有作为杆构件的凸块止动件(40)。 凸块止动器(40)安装在发动机(2)的壳体(70)上并水平放置。 凸起止动器(40)将发电机主体(4)的水平方向的位置调节在预设范围内。 设置有朝向止挡体(41)的两端面配置的接收板(60)。 作为突起止动器(40)的主体(41)的圆棒具有通过产生弯曲力矩来减小冲击的曲柄形状。
    • 8. 发明申请
    • STACK BOARD AND SERVER ASSEMBLY USING SAME
    • 堆叠板和服务器组装使用相同
    • US20110284711A1
    • 2011-11-24
    • US12824506
    • 2010-06-28
    • YI-LIANG HSIAO
    • YI-LIANG HSIAO
    • F16M13/00B65D19/38
    • B65D19/38B65D2519/00805F16M9/00H05K7/1485
    • An exemplary stack board includes a base, a supporting platform and pivots connected between the base and the supporting platform. The base defines four guide channels therein. Each guide channel includes an oblique guide groove. The supporting platform is mounted on the base and capable of supporting a server system thereon. The pivots are received in the guide channels, respectively, and moveable along the oblique guide grooves such that the supporting platform is movable relative to the base from a first position substantially coinciding with the base to a second position protruding from one side of the base, with the supporting platform tiltable to an oblique orientation at the second position.
    • 示例性的堆叠板包括基座,支撑平台和连接在基座和支撑平台之间的枢轴。 基座在其中限定了四个引导通道。 每个引导通道包括倾斜的引导槽。 支撑平台安装在基座上,能够在其上支撑服务器系统。 所述枢轴分别被容纳在所述引导通道中,并且可沿着所述倾斜导向槽移动,使得所述支撑平台能够从大体上与所述基座重合的第一位置到从所述基座的一侧突出的第二位置相对于所述基座移动, 支撑平台在第二位置可倾斜倾斜。
    • 9. 发明授权
    • Manufacturing method of supporting structure for vehicle
    • 车辆支撑结构的制造方法
    • US07478701B2
    • 2009-01-20
    • US11549415
    • 2006-10-13
    • Naoki Kobayashi
    • Naoki Kobayashi
    • B60K1/00
    • F16F7/12B22C9/22F16M5/00F16M9/00Y10S180/902
    • A manufacturing method of a supporting structure for vehicle has steps of preparing a casting mold having: a first and a second casting mold, which are matched to each other at casting, and has forming faces which form at least sides of first and second fixing portions and the connecting portion and a third casting mold having a forming face which forms a fixing face of the second fixing portion and a protruding body which forms a recess hole penetrating to an interior of the connecting portion from the fixing face of the second fixing portion; matching the third casting mold together with the first and the second casting mold so as to form a cavity for integrally forming the first fixing portion, the second fixing portion and the connecting portion in the casting mold; and pouring molten metal into the cavity so as to mold the supporting structure.
    • 一种用于车辆的支撑结构的制造方法,具有如下步骤:制备具有:铸造时彼此匹配的第一和第二铸模的铸模,并且具有形成在第一和第二固定部的至少一侧的成形面 所述连接部分和第三铸模具有形成所述第二固定部分的固定面的成形面和从所述第二固定部分的固定面形成穿过所述连接部分的内部的凹孔的突出体; 将第三铸模与第一和第二铸模配合,以形成用于在铸模中一体地形成第一固定部分,第二固定部分和连接部分的腔体; 并将熔融金属浇注到空腔中,以模制支撑结构。
    • 10. 发明授权
    • Foundation for a vibrating machine
    • 振动机基础
    • US4303220A
    • 1981-12-01
    • US135109
    • 1980-03-28
    • Hubert Gallasch
    • Hubert Gallasch
    • B06B3/00E02D27/44F01D25/28F16M9/00F16M1/00F16M3/00F16M5/00
    • F01D25/28E02D27/44F16M9/00
    • A foundation for a vibrating machine is disclosed. The foundation includes a frame-like stage plate made from longitudinally aligned girders and transversely aligned beams. The girders and beams are hollow and have cross-sections which are dimensioned so that an axial moment of inertia relative to a bending axis of each of the girders and beams is at least three times the value required to ensure the ability of the stage plate to support a given load. As a consequence a natural frequency of the vibration system, which system includes the vibrating machine and the foundation, closest to the operating speed of the vibrating machine differs from the operating speed of the machine by at least fifteen percent of the operating speed of the machine.
    • 公开了一种振动机的基础。 该基座包括由纵向对准的梁和横向对准的梁制成的框架状台板。 梁和梁是中空的并且具有横截面,其横截面的尺寸被设计成使得相对于每个梁和梁的弯曲轴线的轴向转动惯量至少为确保平台板的能力所需的三倍 支持给定的负载。 因此,最接近振动机的运行速度的振动系统(包括振动机和基座)的系统的固有频率与机器运行速度的不同在于机器的运行速度的至少十五% 。