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    • 1. 发明申请
    • SHOCK ISOLATION SYSTEM
    • 震动隔离系统
    • US20170008442A1
    • 2017-01-12
    • US15114253
    • 2015-02-04
    • THE SKYDYNE COMPANY
    • Peter KEAY
    • B60P7/18B65D90/22B65D90/14F16F7/00B65D88/02
    • B60P7/18B60P7/16B65D88/022B65D88/129B65D90/14B65D90/22F16F7/00F16F9/062F16F9/26F16F9/28F16F9/53F16F15/027
    • A shock isolation system includes at least one isolator configured to be removably secured to an exterior of a container and at least one foot in communication with the at least one isolator and configured to contact a support surface. The isolator has a first end proximate the support surface and an opposing second end distal from the support surface, and is configured to transition between a first, contracted position and a second, expanded position. In a stowed configuration of the system, the isolator is in the contracted position and a bottom end of the container is spaced apart from the foot at a first distance. In a deployed configuration of the system, the isolator is in the expanded position and a bottom end of the container is spaced apart from the foot at a second distance which is greater than the first distance.
    • 防震隔离系统包括至少一个隔离器,其构造成可拆卸地固定到容器的外部,并且至少一个脚与所述至少一个隔离器连通并且构造成接触支撑表面。 隔离器具有靠近支撑表面的第一端和远离支撑表面的相对的第二端,并且构造成在第一收缩位置和第二扩张位置之间转变。 在系统的收起构造中,隔离器处于收缩位置,并且容器的底端在第一距离处与脚隔开。 在系统的部署结构中,隔离器处于扩展位置,并且容器的底端以大于第一距离的第二距离与脚隔开。
    • 2. 发明申请
    • SNUBBER FOR MACHINE
    • 机器机
    • US20160024745A1
    • 2016-01-28
    • US14341872
    • 2014-07-28
    • Caterpillar Global Mining LLC
    • Kim G. LunderskovDaniel E. Bozich
    • E02F3/407
    • E02F3/4075E02F9/2207E02F9/2271F15B21/008F16F7/1022F16F9/28F16F2232/04
    • A snubber for a machine includes a housing, a shaft and a pinion that is coupled to the shaft. The housing is mounted on an implement of the machine. The shaft is rotatably received within the housing and operatively coupled to a movable component of the implement. The snubber also includes a cylinder defining a cavity, a piston slidably received within the cylinder, a rack coupled to the piston, and a hydraulic device. The cylinder is at least partly disposed within the housing. The piston divides the cavity of the cylinder into a first chamber and a second chamber. The rack engages with the pinion to convert a rotation of the shaft into a linear movement of the piston. The hydraulic device is in fluid communication with the cavity and controls a flow of fluid between the first chamber and the second chamber to oppose rotation of the shaft.
    • 用于机器的缓冲器包括联接到轴的壳体,轴和小齿轮。 外壳安装在机器的工具上。 轴被可旋转地容纳在壳体内并且可操作地联接到工具的可移动部件。 缓冲器还包括限定空腔的气缸,可滑动地容纳在气缸内的活塞,联接到活塞的齿条和液压装置。 气缸至少部分地设置在壳体内。 活塞将气缸的空腔划分成第一室和第二室。 齿条与小齿轮接合以将轴的旋转转换成活塞的线性运动。 液压装置与空腔流体连通并且控制第一腔室和第二腔室之间的流体流动以抵抗轴的旋转。
    • 6. 发明授权
    • Buffer device used for industrial robot machine
    • 用于工业机器人的缓冲装置
    • US3823800A
    • 1974-07-16
    • US31827572
    • 1972-12-26
    • KEIAISHA SEISAKUSHO KK
    • FUJIWARA HSAKAMOTO K
    • B25J9/00B25J19/00F16F9/28
    • F16F9/28
    • This invention relates to a buffer device used for an industrial robot machine, which comprises a chain which is wound onto the rotational shaft of a robot, and connected at its ends with the two piston rods of hydraulic cylinders via stop members provided at ends of said piston rods which engage with the pistons slidable in the two buffer cylinders. The airtight chambers which are formed in said cylinders are connected to each other by means of two tubes having sliding valves operable in opposite directions, said valves adapted to open and close said airtight chambers by the pistons, whereby the movement rate of the pistons may be restricted for buffering according to the change in flow quantity of the oil which flows in and out, due to the change of spaces of the openings when opening and closing.
    • 本发明涉及一种用于工业机器人机器的缓冲装置,该缓冲装置包括一个链条,该链条被卷绕在机器人的旋转轴上,并且在其末端与液压缸的两个活塞杆连接,该止动构件设置在所述 活塞杆与可在两个缓冲液缸中滑动的活塞接合。 形成在所述气缸中的密封室通过具有可在相反方向操作的滑阀的两个管道彼此连接,所述阀适于由活塞打开和关闭所述气密室,由此活塞的移动速率可以是 由于打开和关闭时开口的空间变化,限制了根据流入和流出的油的流量变化的缓冲。