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    • 2. 发明授权
    • Rectilinear connector for pile, panels, and pipes
    • 用于桩,面板和管道的直线连接器
    • US09506213B2
    • 2016-11-29
    • US15068013
    • 2016-03-11
    • Omega Trestle LLC
    • Valery TsimmermanKevin Edward Lathan
    • E02D5/00E02D5/08E02D5/02E02D7/00F16B5/00
    • E02D5/08E02D5/02E02D7/00E02D2600/20F16B5/0044
    • The present invention includes an interlock having an elongate male plug and an elongate female socket. The socket has an open rectangular cross-section with a receiving cavity designed to receive and ensleeve the plug, which also has a rectangular cross-section. The socket includes a back wall, top wall, bottom wall, and a discontinuous front wall creating an upper and lower flange with an opening existing between the free ends of the flanges. The bottom, top, and back walls are planar in shape providing three planes on which the socket can mate to a planar portion of a structure, such as a sheet pile. The plug includes a flange-contacting surface with a pile receipt disposed inwardly from the flange-contacting surface. The inwardly set pile receipt allows an end of a plate to be secured to the plug within the outer perimeter of the plug resulting in an obstruction free flange-contacting surface.
    • 本发明包括具有细长阳插头和细长阴插座的互锁。 插座具有开放的矩形横截面,其具有设计成容纳并包围插头的接收腔,插头也具有矩形横截面。 插座包括后壁,顶壁,底壁和不连续的前壁,形成上凸缘和下凸缘,在凸缘的自由端之间具有开口。 底壁,顶壁和后壁的形状是平面的,提供三个平面,在该平面上,插座可与该平面配合到诸如片状堆叠的结构的平面部分。 插头包括与凸缘接触表面向内设置的具有凸起接收面的法兰接触表面。 向内设置的桩接收允许板的端部在插头的外周边内固定到插头,导致无阻碍的法兰接触表面。
    • 4. 发明申请
    • ADJUSTABLE SYSTEM AND METHOD FOR CARRYING OUT WORK AT AN UNDERWATER STRUCTURE
    • 在水下结构下进行工作的可调系统和方法
    • US20100067986A1
    • 2010-03-18
    • US12558711
    • 2009-09-14
    • Willy SonckEric Van Draege
    • Willy SonckEric Van Draege
    • E02D19/04
    • E02D29/06B63B17/0018E02D5/02E02D19/04E02D37/00
    • The present invention relates to a dry setting installation (1) for generating a substantially dry working space for carrying out work at an underwater structure. The dry setting installation (1) comprises two side-walls (2), a back wall (3) and a bottom (4) thus forming a cofferdam. The dry setting installation furthermore comprises, for each side-wall, a side edge sealing means (20) provided on the side-wall (2) edge for providing a substantially sealing contact between the side-walls (2) and the underwater structure. According to embodiments of the present invention, the dry setting installation also comprises a distance variation means (30) for varying the distance between the side edge sealing means (20) of the two side-walls (2).
    • 本发明涉及一种用于在水下结构中产生基本上干燥的工作空间进行工作的干式设置装置(1)。 干燥设置装置(1)包括两个侧壁(2),后壁(3)和底部(4),从而形成围堰。 对于每个侧壁,干燥设置装置还包括设置在侧壁(2)边缘上的用于在侧壁(2)和水下结构之间提供基本密封接触的侧边缘密封装置(20)。 根据本发明的实施例,干式定位装置还包括用于改变两个侧壁(2)的侧边缘密封装置(20)之间的距离的距离变化装置(30)。
    • 5. 发明申请
    • PHC PILE USED IN PERMANENT RETAINING WALL STRUCTURE AND CONNECTION METHOD OF PHC PILE
    • PHC桩永久保持墙结构和连接方法中使用的PHC桩
    • US20090155001A1
    • 2009-06-18
    • US10597729
    • 2005-02-04
    • Kwang-Man KimSang-Mun Yun
    • Kwang-Man KimSang-Mun Yun
    • E02D5/08
    • E02D5/08E02D5/02
    • The present invention relates to a PHC pile used in a permanent retaining wall structure, and a connection method thereof, and more particularly, to a method of connecting PHC piles to each other by inserting a connection bar into connection pipes embedded in sheaths of the PHC piles. To this end, the PHC pile comprises a left connection pipe installed at one side of the sheath of the PHC pile and a right connection pipe embedded at the other opposite side of the sheath. Further, the method of connecting the PHC pile to each other comprises the steps of inserting a water-proof material into inner semi-cylindrical grooves of the connection pipes, inserting the connection bar between the connection pipes of the PHC piles, and consecutively connecting a plurality of PHC piles to one another by repeating the above steps.
    • 本发明涉及一种永久性挡土墙结构中使用的PHC桩及其连接方法,更具体地说,涉及通过将连接杆插入嵌入在PHC的护套中的连接管中而将PHC桩彼此连接的方法 堆 为此,PHC桩包括安装在PHC桩的护套一侧的左连接管和嵌入护套另一侧的右连接管。 此外,将PHC桩彼此连接的方法包括将防水材料插入连接管的内半圆柱形槽中的步骤,将连接杆插入PHC桩的连接管之间,并连续地连接 通过重复上述步骤,多个PHC彼此堆叠。