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    • 2. 发明授权
    • Radiator guard hinge pin
    • 散热器防护铰链销
    • US4092074A
    • 1978-05-30
    • US814373
    • 1977-07-11
    • Robert W. HarperRobert L. Shelby
    • Robert W. HarperRobert L. Shelby
    • B60K11/04F01P3/18F16C11/10
    • F16C11/103B60K11/04Y10T403/12Y10T403/18Y10T403/32893Y10T403/32918Y10T403/581
    • Structure for removably locking a cover in a covering disposition. The locking device is arranged to be released notwithstanding the disposition thereof in a relatively inaccessible area of the machine on which the cover is mounted. The locking device includes a locking pin which is axially movable so as to have clearance with the cover with the pin being so moved by a tool inserted through the small access space available to the locking device. The pin is drawn back outwardly into locking arrangement with the cover by a threaded device having a shank portion passed through a hole in the cover into threaded association with the locking pin, permitting threaded operation of the device to draw the pin outwardly into the hole of the cover and thereby lock the cover against rotation about a pivot mount thereof.
    • 用于可拆卸地将盖子锁定在覆盖布置中的结构。 锁定装置被布置成即使将其布置在其上安装有盖的机器的相对不可接近的区域中也被释放。 锁定装置包括锁定销,其可轴向移动,以便与通过插入通过锁定装置可用的小入口空间的工具使销移动的盖具有间隙。 销通过螺纹装置向外被拉回到具有盖的锁定装置中,该螺纹装置具有穿过盖中的孔的柄部分与锁定销螺纹相关联,允许装置的螺纹操作将销向外拉入孔 盖子,从而锁定盖子围绕其枢转安装座旋转。
    • 4. 发明授权
    • Manifolded multiple hydraulic pump structure
    • 歧管多液压泵结构
    • US4195480A
    • 1980-04-01
    • US4793
    • 1978-12-26
    • Robert L. ShelbyBertwin E. Behrends
    • Robert L. ShelbyBertwin E. Behrends
    • F04C11/00F15B13/09
    • F04C11/001F04C11/00F04C2230/70F04C2240/70Y10S60/916
    • An improved hydraulic pump structure for hydraulic systems which require a plurality of rotary pumps has a pump casing assembly (20) consisting of a plurality of pump casing elements (23-29) which are fastened together in abutting relationship to define a first pump cavity (54) and a second pump cavity (55a) with aligned drive shaft holes (56-61) and a drive shaft (62-63) which is journalled in the holes (56-61) and carries a rotary pump member (76-77 or 80-81) in each cavity (54 and 55a). The casing elements (23-29) are manifolded to provide a first fluid inlet passage (82), a first fluid delivery passage (84) which terminates in a port in a fluid delivery end plate (29), a second fluid inlet passage (86) which has an entrance opening (H6) in the fluid delivery end plate (29), and a second fluid outlet passage (87) which terminates in a port in the fluid delivery end plate (29). There may be two subassemblies (21 and 22) with two pumps in each, secured together in face abutting relationship with an axially interengaged driving connection (62a-63a) between drive shaft segments (62 and 63) in the two subassemblies (21 and 22) and with fluid delivery passages (83 and 84) extending from one assembly through the other.
    • 用于需要多个旋转泵的液压系统的改进的液压泵结构具有由多个泵壳体元件(23-29)组成的泵壳体组件(20),所述泵壳体元件以邻接关系紧固在一起以限定第一泵腔 54)和具有对准的驱动轴孔(56-61)和驱动轴(62-63)的第二泵腔(55a),其被轴颈安装在孔(56-61)中并且承载旋转泵构件(76-77) 或80-81)在每个空腔(54和55a)中。 壳体元件(23-29)被歧管以提供第一流体入口通道(82),终止于流体输送端板(29)中的端口中的第一流体输送通道(84),第二流体入口通道 86),其在流体输送端板(29)中具有入口(H6),以及终止在流体输送端板(29)中的端口中的第二流体出口通道(87)。 可以存在两个子组件(21和22),每个组件中的两个泵固定在一起,与两个子组件(21和22)中的驱动轴段(62和63)之间的轴向相互接合的驱动连接(62a-63a) )和从一个组件延伸穿过另一组件的流体输送通道(83和84)。
    • 5. 发明授权
    • Fluid flow divider
    • 流体分流器
    • US4126058A
    • 1978-11-21
    • US816578
    • 1977-07-18
    • Robert L. ShelbyDelbert G. Nelson
    • Robert L. ShelbyDelbert G. Nelson
    • F16H57/04F16H57/02
    • F16H57/0421F16H57/0456Y10T137/85938Y10T74/2186
    • A fluid flow divider such as for use in controlling fluid flow in a power transmission mechanism. Illustratively, the flow divider may be utilized for providing connection to a bevel gear case provided with a plurality of fluid flow passages opening through a wall portion thereof. The flow divider includes first connecting structure for connecting a first fluid flow conduit to the wall portion to have fluid flow communication with one of the flow passages through its opening in the wall portion. The flow divider further includes a second connecting structure for connecting a second fluid flow conduit to a wall portion to have fluid flow communication with a plurality of additional ones of the fluid flow passages concurrently through their respective openings in the wall portion. Seals are provided for sealing the flow divider to the wall portion. The second connecting structure may include a removable connecting member secured to a cover member in turn secured to the wall portion.
    • 流体分流器,例如用于控制动力传递机构中的流体流动。 示例性地,分流器可以用于提供与设置有通过其壁部分开口的多个流体流动通道的锥齿轮箱的连接。 分流器包括用于将第一流体流动管道连接到壁部分的第一连接结构,以使流体流动通过其在壁部分中的开口与流动通道连通。 分流器还包括第二连接结构,用于将第二流体流动管道连接到壁部分,以使流体流动流体与多个附加的流体流动通道同时通过其在壁部分中的相应开口同时流动。 密封件用于将分流器密封到壁部分。 第二连接结构可以包括固定到盖构件的可移除的连接构件,其又固定到壁部。
    • 8. 发明授权
    • Recoil mechanism
    • 回收机制
    • US3938851A
    • 1976-02-17
    • US507264
    • 1974-09-19
    • Robert L. ShelbyEldon D. Oestmann
    • Robert L. ShelbyEldon D. Oestmann
    • B62D55/30
    • B62D55/30
    • A tractor recoil mechanism for maintaining tension of the track includes a cylinder having a sleeve piston movably disposed therein, associated with a rear frame portion. A rod member, disposed within the sleeve piston to form therewith a closed chamber with the cylinder means, extends through an open end of the cylinder means. A helical spring acts between the sleeve piston and reaction means associated with a front frame portion to urge them apart. Recoil movement of the front portion in one direction relative to the rear portion moves the rod therewith, so that, with the chamber filled with incompressible fluid, the sleeve piston moves in the opposite direction relative to the cylinder means, with compressive movement of the helical spring being greater than the amount of movement of the front portion toward the rear portion. Vent means associated with the chamber allow introduction of substantially incompressible fluid therein while air may be properly vented therefrom.
    • 用于保持轨道张力的拖拉机反冲机构包括具有可移动地设置在其中的与后框架部分相关联的套筒活塞的气缸。 设置在套筒活塞内以与其一起形成具有气缸装置的闭合室的杆构件延伸穿过气缸装置的开口端。 螺旋弹簧作用在套筒活塞和与前框架部分相关联的反作用装置之间,以将它们分开。 前部在相对于后部的一个方向上的回转运动使杆与其一起移动,使得当腔室填充有不可压缩流体时,套筒活塞相对于气缸装置沿相反方向移动,螺旋 弹簧大于前部朝向后部的移动量。 与室相关联的通风装置允许将基本上不可压缩的流体引入其中,同时空气可以从其中适当地排出。