Fastening mechanism for doors
    2.
    发明授权
    Fastening mechanism for doors 失效
    门紧固机构

    公开(公告)号:US4087122A

    公开(公告)日:1978-05-02

    申请号:US713229

    申请日:1976-08-10

    摘要: In a fastening for a door of a vehicle or freight container an operating bar mounted for angular movement about its axis on the door carries on at least one end a fastening member for engagement with a keeper on a door frame, and the said member has on one side of its axis a radially projecting fork for co-operation with one overhung lug projecting forwardly from the keeper, on the other side a radially projecting part for co-operation with a second forward projection on the keeper, and a radially projecting rib which, in the fully fastened condition of the mechanism, is received in a groove in the keeper between said forward projections.

    摘要翻译: 在用于车辆或货物集装箱的门的紧固件中,安装成围绕其在车门上的角度运动的操作杆至少在一个端部上承载用于与门框架上的保持器接合的紧固构件,并且所述构件已经 其轴线的一侧是径向突出的叉,用于与从保持器向前突出的一个悬垂突耳协作,另一侧具有径向突出部分,用于与保持器上的第二向前突起配合,以及径向突出的肋, 在机构的完全紧固状态下,被容纳在所述前方突起之间的保持器的凹槽中。

    Offshores structure support
    6.
    发明申请
    Offshores structure support 有权
    Offshores结构支持

    公开(公告)号:US20050135881A1

    公开(公告)日:2005-06-23

    申请号:US11054948

    申请日:2005-02-11

    摘要: A pile based braced caisson structural support device includes a number of legs. These legs are configured in a teepee type configuration such that the footprint of the base is larger than the footprint of the opposing end. This structural support can be used as a base for an offshore drilling platform in that the support reduces the lateral forces on the support caused by wave action.

    摘要翻译: 基于桩的支撑沉箱结构支撑装置包括许多腿。 这些腿被配置成teepee型配置,使得底座的占地面积大于相对端的占地面积。 这种结构支撑可以用作海上钻井平台的基础,因为支撑件减少了由波浪作用引起的支撑上的横向力。

    Cardioid cycle internal combustion engine
    7.
    发明授权
    Cardioid cycle internal combustion engine 有权
    心形循环内燃机

    公开(公告)号:US06526935B2

    公开(公告)日:2003-03-04

    申请号:US09877464

    申请日:2001-06-08

    申请人: Ralph Shaw

    发明人: Ralph Shaw

    IPC分类号: F02B7532

    CPC分类号: F02B75/32

    摘要: The cardioid cycle engine utilizes a centrally located output shaft which carries an orbiting crankshaft for each cylinder. The journals of the orbiting crankshafts trace a heart shaped pattern, hence the term “cardioid” cycle. The crankshafts are geared to rotate within the revolving output shaft in the same direction and at the same angular velocity as the output shaft. in the preferred embodiments the offsets of the two shafts are adjusted so that they are additive in the second quadrant of output shaft rotation. This configuration produces four strokes, variable in length and duration, in each 360° of output shaft rotation. The expansion stroke can exceed twice the intake stroke in length, and TDC can occur when the output shaft is well past the normal TDC position, allowing tangential force on the shaft when cylinder pressure is highest. Compression ratios can be varied over the full useable range while the engine is operating. When used as an engine, fuel efficiency and torque are increased, and when used as a compressor the peak torque loads are reduced.

    摘要翻译: 心形循环发动机采用一个居中定位的输出轴,它为每个气缸承载一个绕轨道曲轴。 轨道曲轴的期刊跟踪心形图案,因此称为“心形”循环。 曲轴在与输出轴相同的方向和相同的角速度下在旋转输出轴内旋转。 在优选实施例中,调节两个轴的偏移,使得它们在输出轴旋转的第二象限中是相加的。 该配置在每360°的输出轴旋转中产生四个行程,长度和持续时间可变。 膨胀行程可以超过进气行程长度的两倍,当输出轴远远超过正常的TDC位置时,会发生TDC,当气缸压力最高时允许轴上的切向力。 发动机运行时,压缩比可以在整个可用范围内变化。 当用作发动机时,燃料效率和扭矩增加,并且当用作压缩机时,峰值扭矩载荷减小。