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APPARATUS FOR SEALING EXTERNAL SURFACE OF A TUBULAR MEMBER
APPARATUS FOR SEALING EXTERNAL SURFACE OF A TUBULAR MEMBER
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机译:密封管状构件的外部表面的装置
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摘要
1366999 Pipe engaging sleeve HYDROTECH INTERNATIONAL Inc 14 Jan 1972 [15 Jan 1971] 1918/72 Headings F2G and F2P An apparatus for sealing a portion of the external surface of a tubular member comprises a segmental housing arranged for clamping about the tubular member; at least one resilient packer adapted for mounting about the external surface of the tubular member within the housing, and means connected to said housing for applying axial force to said packer thereby axially compressing and sealingly engaging the packer with the external wall of the tubular member, said means including at least one fluid pressure actuated piston. As shown in Figs. 1 and 3 two segmental halves 10, 12 are pivotally connected by pin 15 engaging lugs 13, 14. A similar arrangement of lugs 16, 17 may be held by a removable pin 18 to secure the device. The resilient packing rings 32, 33 are axially compressed by pistons 42 in cylinders 39, the pressure being evenly applied to collets or slips 23, 24 via divided rings 43, 44. The space between packings 32, 33 is sealed by seals 47, 48 running in grooves 45, 46 in the lower segment 12. A pipe 49 may be provided to permit tools (e.g. cutters) to be lowered down to allow work to be performed on pipe 20. A double acting jack 51 enables the segments to be opened and closed about hinge pin 15. In an alternative embodiment (Fig. 6) (not shown) the pistons (76) are located in cylinders (74) at the ends of the housing and move axially inwardly towards the centre. The slips (70) are arranged to grip the pipe within the central part of the device. Pin (67) (equivalent to pin 18 of the Fig. 1 embodiment) is insertable after the closing of the segments by a piston (84) in a cylinder (82), thereby making the whole device remotely controllable. In a further embodiment (Fig. 7) (not shown) the slips are positioned as shown in Fig. 1 but the piston and cylinder arrangements are situated between the slips and the corresponding resilient packings. In this case the cylinders are separately formed and are axially slidable within the housing so that on admission of pressure fluid the cylinders move towards the slips and the piston moves towards the packings, thereby forcing slips and packings apart. The feed pipes to the cylinders pass through short axial slots in the housing. In a final embodiment (Figs. 8 and 9) only one packing and piston and cylinder arrangement is used, the packing being placed to cover a defect in the pipe so as to be seated over the defect after axial compression. No slips are used and the cylinders are formed by bores 117 in one end wall of the housing. The pistons 122 bear on half rings 115 contained in the segments, each half ring being provided with a tapped hole 116 to take a screw 123 inserted through hole 124. This prevents movement of the rings 115 and pistons 122 until the device is correctly positioned. The device may be used as a temporary or permanent pipe repair or as a device for the introduction of tools to a pipeline. If the repair is permanent the pressure fluid for actuating the pistons may take the form of a hardenable fluid (e.g. an epoxy resin). Packings.-The packings may take the form of a plurality of resilient rings, each ring having a radial cut to allow it to be passed over a pipe to be sealed and the radial cuts subsequently being arranged so that adjacent cuts do not coincide. Alternatively a packing may be as shown in Fig. 1 at 33 and be formed with a plurality of interengaging teeth which interlock after the packing has been passed round the pipe.
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机译:1366999管道接合套筒HYDROTECH INTERNATIONAL Inc 1972年1月14日[1971年1月15日] 1918/72品目F2G和F2P一种用于密封管状部件外表面一部分的装置,包括:一个分段式外壳,用于夹紧在管状部件周围。至少一个弹性封隔器,其适于安装在壳体内的管状构件的外表面周围,并且连接至所述壳体的装置用于向所述封隔器施加轴向力,从而使封隔器轴向压缩并密封地与管状构件的外壁接合,所述装置包括至少一个液压致动活塞。如图所示。参照图1和3,两个分段半部10、12通过销15与凸耳13、14枢转地连接。凸耳16、17的类似布置可以由可移除销18保持以固定装置。弹性的密封环32、33被气缸39中的活塞42轴向压缩,压力通过分隔的环43、44均匀地施加到筒夹或卡瓦23、24。密封件32、33之间的空间由密封件47、48密封在下部区段12中的凹槽45、46中延伸的通道中。可以提供管道49以允许工具(例如,切割器)下降,以允许在管道20上执行工作。双作用千斤顶51使区段能够打开。在另一实施例(图6)(未示出)中,活塞(76)位于壳体端部的缸(74)中,并朝着中心轴向向内运动。滑片(70)布置成将管子夹紧在装置的中心部分内。销(67)(等同于图1实施例的销18)可在活塞(84)将各段关闭后插入到气缸(82)中,从而使整个装置可远程控制。在另一实施例(图7)(未示出)中,滑动件如图1所示定位,但是活塞和气缸布置位于滑动件和相应的弹性填料之间。在这种情况下,缸体是分开形成的,并且可在壳体内轴向滑动,因此,在接纳压力流体时,缸体朝着滑座运动,而活塞朝着密封圈运动,从而迫使滑片和密封圈分开。气缸的进料管穿过外壳上的短轴向槽。在最后的实施例中(图8和9),仅使用一个填料以及活塞和汽缸装置,该填料被放置以覆盖管道中的缺陷,以便在轴向压缩后位于缺陷之上。不使用滑动件,并且气缸由壳体的一个端壁中的孔117形成。活塞122支撑在分段中所包含的半环115上,每个半环设有螺纹孔116以接纳穿过孔124插入的螺钉123。这防止了环115和活塞122的运动,直到装置被正确地定位。该设备可以用作临时或永久性管道维修,也可以用作将工具引入管道的设备。如果修理是永久性的,则用于致动活塞的压力流体可以采取可硬化流体的形式(例如环氧树脂)。填料-填料可以采取多个弹性环的形式,每个环具有径向切口以允许其通过待密封的管道,并且随后布置径向切口以使得相邻切口不重合。可选地,填料可以如图1中的33所示,并且形成有多个相互啮合的齿,这些齿在填料已经绕过管道之后互锁。
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