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    • 1. 发明申请
    • Menal volleyball net
    • 男排排网
    • US20090017947A1
    • 2009-01-15
    • US11827128
    • 2007-07-11
    • Charles Edward Jones
    • Charles Edward Jones
    • A63B71/00
    • A63B61/003A63B2207/00
    • The design and ornamentation for a volleyball net as shown and described. A volleyball game net adapted by size and configuration to meet the requirements of play in the game of volleyball, said net having a micro mesh fabric that allows air to flow through yet is opaque in color and not see through, with a peripheral margin defined by a top edge, a bottom edge, a first side edge and a second side edge; said side edges being spaced apart from each other and joining the top edge to the bottom edge. Each edge is impregnated with a fluorescent material on each side of the net, which after being exposed to sunlight or incandescent light becomes visible after dark. The Menal Volleyball Net will have a distinct pattern centered from upper left corner to lower right corner depicting five Menal Volleyballs in a straight diagonal line. Each Menal Volleyball on the surface of the net will be of the exact shape and size with the appropriate triangular pattern and fluorescent tips of a regulation Menal Volleyball. Each Menal Volleyball descending from left to right will depict the ball rotating in flight such that the Menal Volleyball logo will be centered and prominately displayed in the third ball which shall be in the center of the Menal Volleyball Net.
    • 排球网的设计和装饰如图所示。 根据大小和配置适应排球游戏要求的排球游戏网,所述网具有允许空气流过的微网状织物,其颜色不透明,不透视,外围边缘由 顶边缘,底边缘,第一侧边缘和第二侧边缘; 所述侧边缘彼此间隔开并将顶部边缘连接到底部边缘。 每个边缘在网的每一侧浸有荧光材料,在暴露于阳光下或白炽灯在黑暗后变得可见。 男子排球网将有一个独特的图案,以左上角和右下角为中心,以直线对角线描绘五个男子排球。 网的表面上的每个排骨都将具有适当的三角形图案和规则性排球的荧光提示的精确形状和大小。 每个从左到右的排排球将描绘在飞行中旋转的球,使得Menal排球标志将以第三球为中心并突出显示,该球将位于排骨网的中心。
    • 7. 发明授权
    • Lateral connector for tube assembly
    • 管组装用横向连接器
    • US5730473A
    • 1998-03-24
    • US725973
    • 1996-10-04
    • Robert Lee WilkinsSteven Dwayne GullionCharles Edward Jones
    • Robert Lee WilkinsSteven Dwayne GullionCharles Edward Jones
    • E21B33/035E21B33/038F16L37/12F16L39/00H01R13/533F16L37/28
    • F16L37/12E21B33/0355E21B33/038E21B33/0385F16L39/00H01R13/533Y10T137/87161
    • In one embodiment of the invention, there is provided a tubular assembly having a lateral connection. The assembly comprises a spool body, a carrier ring, penetrators, and an urging means. The carrier ring is built to carry the radial penetrator(s) for the carrier body. The carrier ring is mounted in sliding relationship, concentric with the carrier body. The ring is spring loaded down relative to the carrier body, against a stop shoulder (device) there. This fixes or at least stabilizes the ring on the body during running into the spool body or retrieving from the spool body. The carrier ring fits into the spool body and seats on a stop in the spool body. The carrier body also seats in the spool body, but on a different stop. Radially extending penetrators are mounted in radial ports or passages in the carrier ring, and are fixed to control fluid lines which conduct the fluid down into the well. The penetrators can move radially relative to the ring, but not axially. The urging means includes a wedge which is also mounted in the ring, one wedge for each penetrator, a carrier for the ring, and a detent mechanism which establishes cooperation between the penetrator and the carrier. The wedge(s) can move axially relative to the ring, but not radially. Finally, the wedge devices are "fixed" to the carrier body by a flexible spring detent (or similar). This arrangement links the wedge in downward movement to the carrier body, as the carrier body moves downward in turn relative to the carrier ring (and penetrators).
    • 在本发明的一个实施例中,提供了一种具有横向连接的管状组件。 该组件包括线轴体,承载环,穿透器和推动装置。 承载环被构造为承载承载体的径向穿透器。 承载环以滑动关系安装,与承载体同心。 环相对于承载体弹簧下降,抵靠在那里的止动肩(装置)上。 这在固定或至少稳定环在身体上进入卷轴主体或从卷轴体取回。 承载环装配到卷轴体中,并且位于卷轴体中的止动件上。 托架主体也位于卷轴体内,但位于不同的挡块上。 径向延伸的穿透器安装在载体环中的径向端口或通道中,并被固定以控制将流体向下导入井的流体管线。 穿透器可相对于环径向径向移动,但不能轴向移动。 推动装置包括还安装在环中的楔形件,用于每个穿透器的一个楔形件,用于环的支架,以及在穿透器和托架之间建立配合的制动机构。 楔形物可以相对于环轴向移动,但不能径向移动。 最后,楔形装置通过柔性弹簧制动器(或类似物)“固定”到载体主体。 这种布置将楔形物向下运动连接到承载体,因为承载体相对于承载环(和穿透器)依次向下移动。