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    • 2. 发明公开
    • DEEP WATER PILE DRIVER
    • 深层水驱动器
    • EP2940217A1
    • 2015-11-04
    • EP15162514.2
    • 2009-07-21
    • Adamson, James E.
    • Adamson, James E.
    • E02D7/02E21B7/124
    • E02D7/02
    • A pile driver is provided for use in deep water with a remotely operated vehicle (ROV) and a working ship for setting piles, pin piles and well conductors in subsea soil and for soil sampling in deep water and can be used for shallow water and land-based applications. A ram mass or hammer is received in an open frame and hydraulically reciprocated while in contact with water. A piston rod received in a piston cylinder is secured at one end to the hammer through a coupling mechanism, and an external source of hydraulic power is used with an on-board hydraulic circuit. Gas is compressed during an up-stroke to store energy, which is released during a down-stroke to push the hammer downwardly. The coupling mechanism provides a connection between the piston rod and the hammer that can move between an essentially rigid lift connection, an essentially rigid downward-push connection and an essentially non-rigid impact connection for preventing buckling of the piston rod when the hammer strikes at its lowermost point. One embodiment of the coupling mechanism includes a hollow body having opposing longitudinal slots, a rod slideably received in the hollow body that is pinned slideably at one end in the opposing slots and pinned fixedly at the other end to the hammer, with a spring in the hollow body providing a bias to push the rod toward the hammer.
    • 提供一种用于深水的打桩机,具有遥控潜水器(ROV)和工作船,用于在海底土壤中设置桩,销桩和井导体以及在深水中进行土壤采样,并可用于浅水和陆地 基于应用程序。 撞锤质量或锤子接收在开放式框架中,并在与水接触时进行液压往复运动。 容纳在活塞缸中的活塞杆的一端通过联接机构固定在锤上,并且具有液压动力的外部源与液压回路一起使用。 在向上冲程期间气体被压缩以储存能量,在向下冲程期间释放能量以向下推动锤。 联接机构在活塞杆和锤之间提供连接,该连接可以在基本上刚性的升降连接,基本刚性的向下推动的连接和基本上非刚性的冲击连接之间移动,以防止当锤撞击时活塞杆的弯曲 它的最低点。 联接机构的一个实施例包括具有相对的纵向槽的空心体,可滑动地容纳在空心体中的杆,该杆在相对的槽中的一端可滑动地被销接并且在另一端固定地固定在锤上, 空心体提供偏压以将杆推向锤子。
    • 4. 发明公开
    • DEEP WATER PILE DRIVER
    • 方法和设备打桩在水下
    • EP2321472A2
    • 2011-05-18
    • EP09788957.0
    • 2009-07-21
    • Adamson, James E.
    • Adamson, James E.
    • E02D7/02E21B7/124
    • E02D7/02
    • A pile driver is provided for use in deep water with a remotely operated vehicle (ROV) and a working ship for setting piles, pin piles and well conductors in subsea soil and for soil sampling in deep water and can be used for shallow water and land-based applications. A ram mass or hammer is received in an open frame and hydraulically reciprocated while in contact with water. A piston rod received in a piston cylinder is secured at one end to the hammer through a coupling mechanism, and an external source of hydraulic power is used with an on-board hydraulic circuit. Gas is compressed during an up-stroke to store energy, which is released during a down-stroke to push the hammer downwardly. The coupling mechanism provides a connection between the piston rod and the hammer that can move between an essentially rigid lift connection, an essentially rigid downward-push connection and an essentially non-rigid impact connection for preventing buckling of the piston rod when the hammer strikes at its lowermost point. One embodiment of the coupling mechanism includes a hollow body having opposing longitudinal slots, a rod slideably received in the hollow body that is pinned slideably at one end in the opposing slots and pinned fixedly at the other end to the hammer, with a spring in the hollow body providing a bias to push the rod toward the hammer.
    • 5. 发明专利
    • Deep water pile driver
    • AU2016204003B2
    • 2017-08-10
    • AU2016204003
    • 2016-06-15
    • ADAMSON JAMES E MR
    • ADAMSON JAMES E
    • E02D7/02E21B7/124
    • A pile driver is provided for use in deep water with a remotely operated vehicle (ROV) and a working ship for setting piles, pin piles and well conductors in subsea soil and for soil sampling in deep water and can be used for shallow water and land-based applications. A ram 5 mass or hammer is received in an open frame and hydraulically reciprocated while in contact with water. A piston rod received in a piston cylinder is secured at one end to the hammer through a coupling mechanism, and an external source of hydraulic power is used with an on board hydraulic circuit. Gas is compressed during an up-stroke to store energy, which is released during a down-stroke to push the hammer downwardly. The coupling mechanism provides a 10 connection between the piston rod and the hammer that can move between an essentially rigid lift connection, an essentially rigid downward-push connection and an essentially non-rigid impact connection for preventing buckling of the piston rod when the hammer strikes at its lowermost point. One embodiment of the coupling mechanism includes a hollow body having opposing longitudinal slots, a rod slideably received in the hollow body that is pinned slideably 5 at one end in the opposing slots and pinned fixedly at the other end to the hammer, with a spring in the hollow body providing a bias to push the rod toward the hammer.
    • 6. 发明专利
    • SISTEMA Y METODO PARA HINCAR PILOTES BAJO EL AGUA.
    • MX2011000838A
    • 2011-06-20
    • MX2011000838
    • 2009-07-21
    • ADAMSON JAMES E
    • ADAMSON JAMES E
    • E02D7/02E21B7/124
    • Se proporciona un empujador de pilotes para uso en aguas profundas con un vehículo remotamente operado (ROV) y un barco de trabajo para fijar pilotes, pilotes de punta y conductores de pozo en suelo submarino y para muestreo de suelo en aguas profundas y se puede utilizar para aplicaciones en tierra o en agua poco profunda; una masa empujadora o martillo es recibido en un armazón abierto y es oscilado hidráulicamente mientras está en contacto con el agua; una biela recibida en un cilindro de pistón es asegurada en un extremo al martillo a través de un mecanismo de acoplamiento, y se utiliza una fuente externa de potencia hidráulica con un circuito hidráulico a bordo; el gas es comprimido durante un golpe ascendente para almacenar energía, la cual es liberada durante un golpe descendente para empujar el martillo hacia abajo; el mecanismo de acoplamiento proporciona una conexión entre la biela y el martillo que puede moverse entre una conexión de levantamiento esencialmente rígida, una conexión de empuje hacia abajo esencialmente rígida, y una conexión de impacto esencialmente no rígida para evitar el pandeo de la biela cuando el martillo golpea en su punto más bajo; una modalidad del mecanismo de acoplamiento incluye un cuerpo hueco que tiene ranuras longitudinales opuestas, una varilla recibida de manera deslizable en el cuerpo hueco que es clavada de manera deslizable en un extremo de las ranuras opuestas y clavada de manera fija en el otro extremo al martillo, con un resorte en el cuerpo hueco que proporciona una desviación para empujar la varilla hacia el martillo.
    • 7. 发明专利
    • DEEP WATER PILE DRIVER
    • CA2731641A1
    • 2010-01-28
    • CA2731641
    • 2009-07-21
    • ADAMSON JAMES E
    • ADAMSON JAMES E
    • E02D7/02E21B7/124
    • A pile driver is provided for use in deep water with a remotely operated vehicle (ROV) and a working ship for setting piles, pin piles and well conductors in subsea soil and for soil sampling in deep water and can be used for shallow water and land-based applications. A ram mass or hammer is received in an open frame and hydraulically reciprocated while in contact with water. A piston rod received in a piston cylinder is secured at one end to the hammer through a coupling mechanism, and an external source of hydraulic power is used with an on-board hydraulic circuit. Gas is compressed during an up-stroke to store energy, which is released during a down-stroke to push the hammer downwardly. The coupling mechanism provides a connection between the piston rod and the hammer that can move between an essentially rigid lift connection, an essentially rigid downward-push connection and an essentially non-rigid impact connection for preventing buckling of the piston rod when the hammer strikes at its lowermost point. One embodiment of the coupling mechanism includes a hollow body having opposing longitudinal slots, a rod slideably received in the hollow body that is pinned slideably at one end in the opposing slots and pinned fixedly at the other end to the hammer, with a spring in the hollow body providing a bias to push the rod toward the hammer.
    • 8. 发明专利
    • System and method for driving pile under water
    • AU2009274628A1
    • 2010-01-28
    • AU2009274628
    • 2009-07-21
    • ADAMSON JAMES E
    • ADAMSON JAMES E
    • E02D7/02E21B7/124
    • A pile driver is provided for use in deep water with a remotely operated vehicle (ROV) and a working ship for setting piles, pin piles and well conductors in subsea soil and for soil sampling in deep water and can be used for shallow water and land-based applications. A ram mass or hammer is received in an open frame and hydraulically reciprocated while in contact with water. A piston rod received in a piston cylinder is secured at one end to the hammer through a coupling mechanism, and an external source of hydraulic power is used with an on-board hydraulic circuit. Gas is compressed during an up-stroke to store energy, which is released during a down-stroke to push the hammer downwardly. The coupling mechanism provides a connection between the piston rod and the hammer that can move between an essentially rigid lift connection, an essentially rigid downward-push connection and an essentially non-rigid impact connection for preventing buckling of the piston rod when the hammer strikes at its lowermost point. One embodiment of the coupling mechanism includes a hollow body having opposing longitudinal slots, a rod slideably received in the hollow body that is pinned slideably at one end in the opposing slots and pinned fixedly at the other end to the hammer, with a spring in the hollow body providing a bias to push the rod toward the hammer.
    • 9. 发明专利
    • DEEP WATER PILE DRIVER
    • CA2731641C
    • 2013-05-28
    • CA2731641
    • 2009-07-21
    • ADAMSON JAMES E
    • ADAMSON JAMES E
    • E02D7/02E21B7/124
    • A pile driver is provided for use in deep water with a remotely operated vehicle (ROV) and a working ship for setting piles, pin piles and well conductors in subsea soil and for soil sampling in deep water and can be used for shallow water and land-based applications. A ram mass or hammer is received in an open frame and hydraulically reciprocated while in contact with water. A piston rod received in a piston cylinder is secured at one end to the hammer through a coupling mechanism, and an external source of hydraulic power is used with an on-board hydraulic circuit. Gas is compressed during an up-stroke to store energy, which is released during a down-stroke to push the hammer downwardly. The coupling mechanism provides a connection between the piston rod and the hammer that can move between an essentially rigid lift connection, an essentially rigid downward-push connection and an essentially non-rigid impact connection for preventing buckling of the piston rod when the hammer strikes at its lowermost point. One embodiment of the coupling mechanism includes a hollow body having opposing longitudinal slots, a rod slideably received in the hollow body that is pinned slideably at one end in the opposing slots and pinned fixedly at the other end to the hammer, with a spring in the hollow body providing a bias to push the rod toward the hammer.
    • 10. 发明专利
    • Deep water pile driver
    • AU2016204003A1
    • 2016-07-07
    • AU2016204003
    • 2016-06-15
    • ADAMSON JAMES E
    • ADAMSON JAMES E
    • E02D7/02E21B7/124
    • A pile driver is provided for use in deep water with a remotely operated vehicle (ROV) and a working ship for setting piles, pin piles and well conductors in subsea soil and for soil sampling in deep water and can be used for shallow water and land-based applications. A ram 5 mass or hammer is received in an open frame and hydraulically reciprocated while in contact with water. A piston rod received in a piston cylinder is secured at one end to the hammer through a coupling mechanism, and an external source of hydraulic power is used with an on board hydraulic circuit. Gas is compressed during an up-stroke to store energy, which is released during a down-stroke to push the hammer downwardly. The coupling mechanism provides a 10 connection between the piston rod and the hammer that can move between an essentially rigid lift connection, an essentially rigid downward-push connection and an essentially non-rigid impact connection for preventing buckling of the piston rod when the hammer strikes at its lowermost point. One embodiment of the coupling mechanism includes a hollow body having opposing longitudinal slots, a rod slideably received in the hollow body that is pinned slideably 5 at one end in the opposing slots and pinned fixedly at the other end to the hammer, with a spring in the hollow body providing a bias to push the rod toward the hammer.