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    • 2. 发明授权
    • Spray cleaner for interior surface of pipeline
    • 管道内表面喷涂清洁剂
    • US06206016B1
    • 2001-03-27
    • US09126113
    • 1998-07-30
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • B08B302
    • E03F9/00B08B9/0433B08B9/047B08B9/051
    • This application discloses an automated apparatus for cleaning the interior surface of a pipe. The device includes a vehicle which propels itself down the inside of the pipe. A cleaning system is fixed to the vehicle and uses arms to reach the walls of the pipe. At the end of each arm sits a spray nozzle assembly equipped with spray nozzles. The spray nozzle assembly rotates or oscillates to spray clean the pipe surface. The arms and spray nozzle assembly interchange with other such cleaning systems depending on the shape or type of pipe and the desired cleaning technique. The apparatus is tethered to a source of fluid under pressure and a power source both of which are located off-board the apparatus at a remote location. An operator supervises the device's operation, controlling the speed and direction of travel of the vehicle, the speed and direction of oscillation and rotation of the cleaning system, and the fluid pressure delivered by the spray nozzles.
    • 本申请公开了一种用于清洁管道内表面的自动化设备。 该装置包括一个将管道自身向内推进的车辆。 清洁系统固定在车辆上,并使用手臂到达管壁。 在每个臂的末端设有一个装有喷嘴的喷嘴组件。 喷嘴组件旋转或振荡以喷射清洁管道表面。 根据管道的形状或类型以及所需的清洁技术,臂和喷嘴组件与其它这样的清洁系统交换。 该装置被连接到压力下的流体源和两个位于远程位置处的装置的电源。 操作员监督设备的操作,控制车辆的行驶速度和行驶方向,清洁系统的振动和旋转的速度和方向以及由喷嘴输送的流体压力。
    • 3. 发明授权
    • Hydrodemolition machine for inclined surfaces
    • 水轮机倾斜面
    • US08191972B2
    • 2012-06-05
    • US10973281
    • 2004-10-27
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • B28D1/00
    • E04G23/08E04G23/081
    • In accordance with the invention, there is provided a concrete removing apparatus for removing concrete from an inclined wall of concrete having a frame with a front region. The frame may be supported on either a platform or from the wall with the front region adjacent to the wall. A carriage assembly is coupled to the frame assembly proximate a front region thereof, the carriage assembly extending from one side of the frame to another. A nozzle assembly is mounted on the carriage assembly and operative to move laterally of the frame assembly in response to activation of the carriage assembly. A nozzle on the nozzle assembly is operative to emit a jet of fluid against the wall of sufficient velocity to remove concrete from the wall. A transporting assembly is coupled to and operative to raise and lower the carriage assembly.
    • 根据本发明,提供了一种用于从具有前区域的框架的混凝土的倾斜壁中移除混凝土的混凝土除去装置。 框架可以在平台上或从墙壁支撑,其中前部区域与壁相邻。 托架组件靠近其前部区域联接到框架组件,滑架组件从框架的一侧延伸到另一侧。 喷嘴组件安装在滑架组件上并且可操作以响应于滑架组件的启动而移动到框架组件的侧面。 喷嘴组件上的喷嘴可操作地以足够的速度向墙壁发射流体射流以从墙壁移除混凝土。 运输组件联接到并可操作以升高和降低滑架组件。
    • 4. 发明授权
    • Machine and method for deconstructing a vertical wall
    • 用于解构垂直墙的机器和方法
    • US07967390B2
    • 2011-06-28
    • US11754128
    • 2007-05-25
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • B28D1/00
    • E04G23/08E04G23/081
    • A machine and method are disclosed for deconstructing walls and other substantially vertical surfaces. The machine comprises a static, stand-alone support-frame. A carriage is movably mounted on the support-frame, which carriage is operable to be raised and lowered along the support-frame adjacent to a workface. To the carriage are mounted one or more nozzles, preferably the nozzles are mounted to the carriage by means of a nozzle carrier that is operable to move back and forth along the length of the carriage. The nozzles are connected to a high-pressure supply of an erosive material, preferably water. The erosive material, when forced through the nozzles, form jet streams that are directed against the surface of the workface, thereby eroding the surface.Optionally, the invention comprises means of yawing or means of rotating the nozzles in order to access the sidewalls of the opening in the workface produced by the invention.Optionally, the invention comprises means of adjusting the nozzles towards or away from the workface surface in order to maintain an optimal gap between the nozzle and the workface surface as the opening gets deeper.Optionally, the invention comprises a work platform mounted on the support-frame and operable to be raised and lowered along the support-frame, thereby providing access to the workface for workers cutting rebar and carrying out other ancillary tasks.
    • 公开了用于解构壁和其它基本上垂直的表面的机器和方法。 该机器包括静态的独立支撑框架。 滑架可移动地安装在支撑框架上,该滑架可操作地沿着与工作面相邻的支撑框架升高和降低。 托架安装有一个或多个喷嘴,优选地,喷嘴通过可操作以沿着滑架的长度前后移动的喷嘴托架安装到托架上。 喷嘴连接到腐蚀性材料的高压源,优选水。 侵蚀性材料在被迫穿过喷嘴时形成指向工作面表面的喷射流,从而侵蚀表面。 可选地,本发明包括偏转装置或使喷嘴旋转的装置,以便接近由本发明生产的工作面中的开口的侧壁。 可选地,本发明包括将喷嘴朝向或远离工作面表面调整的装置,以便在开口变深时保持喷嘴和工作面表面之间的最佳间隙。 可选地,本发明包括安装在支撑框架上并可操作以沿着支撑框架升高和降低的工作平台,从而为工人切割钢筋并执行其他辅助任务提供进入工作面的通道。
    • 5. 发明申请
    • MACHINE AND METHOD FOR DECONSTRUCTING A VERTICAL WALL
    • 用于分解垂直壁的机器和方法
    • US20080041015A1
    • 2008-02-21
    • US11754128
    • 2007-05-25
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • E04G21/16
    • E04G23/08E04G23/081
    • A machine and method are disclosed for deconstructing walls and other substantially vertical surfaces. The machine comprises a static, stand-alone support-frame. A carriage is movably mounted on the support-frame, which carriage is operable to be raised and lowered along the support-frame adjacent to a workface. To the carriage are mounted one or more nozzles, preferably the nozzles are mounted to the carriage by means of a nozzle carrier that is operable to move back and forth along the length of the carriage. The nozzles are connected to a high-pressure supply of an erosive material, preferably water. The erosive material, when forced through the nozzles, form jet streams that are directed against the surface of the workface, thereby eroding the surface. Optionally, the invention comprises means of yawing or means of rotating the nozzles in order to access the sidewalls of the opening in the workface produced by the invention. Optionally, the invention comprises means of adjusting the nozzles towards or away from the workface surface in order to maintain an optimal gap between the nozzle and the workface surface as the opening gets deeper. Optionally, the invention comprises a work platform mounted on the support-frame and operable to be raised and lowered along the support-frame, thereby providing access to the workface for workers cutting rebar and carrying out other ancillary tasks.
    • 公开了用于解构壁和其它基本上垂直的表面的机器和方法。 该机器包括静态的独立支撑框架。 滑架可移动地安装在支撑框架上,该滑架可操作地沿着与工作面相邻的支撑框架升高和降低。 托架安装有一个或多个喷嘴,优选地,喷嘴通过可操作以沿着滑架的长度前后移动的喷嘴托架安装到托架上。 喷嘴连接到腐蚀性材料的高压源,优选水。 侵蚀性材料在被迫穿过喷嘴时形成指向工作面表面的喷射流,从而侵蚀表面。 可选地,本发明包括偏转装置或使喷嘴旋转的装置,以便接近由本发明生产的工作面中的开口的侧壁。 可选地,本发明包括将喷嘴朝向或远离工作面表面调整的装置,以便在开口变深时保持喷嘴和工作面表面之间的最佳间隙。 可选地,本发明包括安装在支撑框架上并可操作以沿着支撑框架升高和降低的工作平台,从而为工人切割钢筋并执行其他辅助任务提供进入工作面的通道。
    • 8. 再颁专利
    • Method of scarifying an interior surface of a pipeline
    • 清除管道内表面的方法
    • USRE44518E1
    • 2013-10-08
    • US11797365
    • 2007-05-02
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • B08B3/02
    • E03F9/00B08B9/0433B08B9/047B08B9/051
    • This application discloses an automated apparatus for scarifying the interior surface of a pipe or other similar elongated passageway. The apparatus includes a vehicle that propels itself down the inside of the pipe. A scarifying assembly is removably secured to the vehicle and uses arms to reach the walls of the pipe. At the end of each arm there is a fluid nozzle assembly equipped with fluid nozzles. The fluid nozzle assembly rotates or oscillates to scarify the pipe surface. The arms and fluid nozzle assembly interchange with other such scarifying assemblies depending on the shape or type of pipe and the desired scarifying technique. The apparatus is tethered to a source of fluid under pressure and a power source, both of which are located off-board the apparatus at a remote location. An operator supervises the operation of the apparatus, controlling the speed and direction of travel of the vehicle, the speed and direction of oscillation and rotation of the scarifying assembly, and the fluid pressure delivered by the fluid nozzles. A method for scarifying the interior surface of a pipe or other elongated passageway is disclosed. The method includes the steps of a) providing a vehicle having a scarifying assembly, which includes an assembly of nozzles; b) positioning the nozzle assembly so that the nozzles are proximate a first selected region of the interior surface of a pipe; c) rotating or oscillating the nozzle assembly; d) applying pressurized fluid to the nozzles; and e) moving the vehicle and/or the nozzle assembly to scarify a swath of the interior surface of the pipe.
    • 本申请公开了一种用于使管道或其它类似的细长通道的内表面划伤的自动化设备。 该装置包括从管道内部推进自身的车辆。 可拆卸组件可移除地固定到车辆并且使用臂到达管道的壁。 在每个臂的末端有一个装有流体喷嘴的流体喷嘴组件。 流体喷嘴组件旋转或振荡以使管表面划伤。 臂和流体喷嘴组件根据管的形状或类型以及所需的划痕技术与其它这样的划痕组件交换。 该装置被连接到压力下的流体源和电源,两者都位于远程位置处的装置之外。 操作员监督设备的操作,控制车辆的行驶速度和行驶方向,划痕组件的振动和旋转的速度和方向以及由流体喷嘴输送的流体压力。 公开了一种用于使管或其它细长通道的内表面划伤的方法。 该方法包括以下步骤:a)提供具有划痕组件的车辆,其包括喷嘴组件; b)定位喷嘴组件,使得喷嘴靠近管的内表面的第一选定区域; c)旋转或振动喷嘴组件; d)将加压流体施加到喷嘴; 以及e)移动所述车辆和/或所述喷嘴组件以使所述管的内表面的一条划痕。
    • 10. 发明授权
    • Apparatus for scarifying the interior surface of a pipeline
    • 用于清除管道内表面的设备
    • US06550486B2
    • 2003-04-22
    • US09777668
    • 2001-02-07
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • Gerard MacNeilDavid MacNeilGordon MacNeilVernon Bose
    • B08B302
    • E03F9/00B08B9/0433B08B9/047B08B9/051
    • This application discloses an automated apparatus for scarifying the interior surface of a pipe or other similar elongated passageway. The apparatus includes a vehicle that propels itself down the inside of the pipe. A scarifying assembly is removably secured to the vehicle and uses arms to reach the walls of the pipe. At the end of each arm there is a fluid nozzle assembly equipped with fluid nozzles. The fluid nozzle assembly rotates or oscillates to scarify the pipe surface. The arms and fluid nozzle assembly interchange with other such scarifying assemblies depending on the shape or type of pipe and the desired scarifying technique. The apparatus is tethered to a source of fluid under pressure and a power source, both of which are located off-board the apparatus at a remote location. An operator supervises the operation of the apparatus, controlling the speed and direction of travel of the vehicle, the speed and direction of oscillation and rotation of the scarifying assembly, and the fluid pressure delivered by the fluid nozzles.
    • 本申请公开了一种用于使管道或其它类似的细长通道的内表面划伤的自动化设备。 该装置包括从管道内部推进自身的车辆。 可拆卸组件可移除地固定到车辆并且使用臂到达管道的壁。 在每个臂的末端有一个装有流体喷嘴的流体喷嘴组件。 流体喷嘴组件旋转或振荡以使管表面划伤。 臂和流体喷嘴组件根据管的形状或类型以及所需的划痕技术与其它这样的划痕组件交换。 该装置被连接到压力下的流体源和电源,两者都位于远程位置处的装置之外。 操作员监督设备的操作,控制车辆的行驶速度和行驶方向,划痕组件的振动和旋转的速度和方向以及由流体喷嘴输送的流体压力。