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    • 2. 发明申请
    • REFUSE TRUCK HAVING DOUBLE BARREL STORAGE AND METHODS
    • 具有双重条形储存和方法的垃圾车
    • WO2010022137A1
    • 2010-02-25
    • PCT/US2009/054288
    • 2009-08-19
    • FEDERAL SIGNAL CORPORATIONMAYER, Timothy, G.SCHMIDT, Joseph, L.
    • MAYER, Timothy, G.SCHMIDT, Joseph, L.
    • E03F7/10
    • E03F7/10
    • The present disclosure is directed to a mobile refuse vehicle and related methods. The mobile refuse vehicle includes first and second storage tanks, a refuse collector, and a vacuum pressure source. The first storage tank includes a first inlet and a first outlet. The second storage tank includes a second inlet and a second outlet. The refuse collector is operably connected in fluid communication with the first and second storage tanks via the first and second inlets. The vacuum pressure source is operably connected to the first and second storage tanks to selectively provide a vacuum pressure condition in the first storage tank or the second storage tank to fill the first or second storage tank with refuse through an inlet thereof using the refuse collector while refuse is being emptied from the other of the first or second storage tank through an outlet thereof.
    • 本公开涉及一种移动垃圾车和相关方法。 移动垃圾车包括第一和第二储罐,垃圾收集器和真空压力源。 第一储罐包括第一入口和第一出口。 第二储罐包括第二入口和第二出口。 垃圾收集器通过第一和第二入口与第一和第二储存罐可操作地连接。 真空压力源可操作地连接到第一和第二储罐,以选择性地在第一储罐或第二储罐中提供真空压力状态,以通过使用垃圾收集器的入口将垃圾填充到其第一或第二储罐中, 通过其出口将废物从第一或第二储罐中的另一个排空。
    • 5. 发明申请
    • AUTONOMOUS INSPECTOR MOBILE PLATFORM
    • 自动检测机动平台
    • WO2006078873A2
    • 2006-07-27
    • PCT/US2006/001983
    • 2006-01-18
    • REDZONE ROBOTICS, INC.
    • REVERTE, CarlosTHAYER, Scott, M.WHITTAKER, WilliamCLOSE, Eric, C.SLIFKO, AdamHUDSON, Edison, T.VALLAPUZHA, Subramanian
    • H04N7/185E03F7/10F16L55/32
    • An autonomous inspector mobile platform robot that is used to inspect a pipe or network of pipes. The robot includes a locomotion device that enables the device to autonomously progress through the pipe and accurately track its pose and odometry during movement. At the same time, image data is autonomously captured to detail the interior portions of the pipe. Images are taken at periodic intervals using a wide angle lens, and additional video images may be captured at locations of interest. Either onboard or off board the device, each captured image is unwarped (if necessary) and combined with images of adjacent pipe sections to create a complete image of the interior features of the inspected pipe. Optional features include additional sensors and measurement devices, various communications systems to communicate with an end node or the surface, and/or image compression software.
    • 用于检查管道或管道网络的自主检查员移动平台机器人。 机器人包括一个运动装置,使装置自动进入管道,并在运动过程中精确跟踪其姿态和距离。 同时,自动捕获图像数据以细节管道的内部部分。 使用广角镜头以周期性间隔拍摄图像,并且可以在感兴趣的位置捕获附加的视频图像。 无论是在设备上或板上,每个捕获的图像都是不必要的(如果需要的话),并且与相邻管道部分的图像相结合,以创建被检查管道的内部特征的完整图像。 可选功能包括附加的传感器和测量设备,与终端节点或表面通信的各种通信系统和/或图像压缩软件。
    • 7. 发明申请
    • VACUUM-ASSISTED-PUMPING SYSTEM AND METHOD
    • 真空辅助泵系统和方法
    • WO2018018146A1
    • 2018-02-01
    • PCT/CA2017/050896
    • 2017-07-25
    • FOX, Samuel
    • FOX, Samuel
    • E03F1/00E01H1/08E03B5/02F04D13/08F04D15/00
    • A47L7/0028A47L7/0023A47L7/0038E03B1/041E03B2001/047E03F7/10E04D13/04E04D13/0404E04G23/00F01P5/00F04D13/16F04D15/0218F04F3/00Y02A20/108
    • A system for removing a volume of liquid including a pressure-sealed-pump- vessel, at least one liquid-aperture, a liquid-level-control-valve, a liquid-discharge, a sump- pump, a pressure-sealed-suction-vessel, and one or more vessel-connections. The one or more vessel-connections configured to fluidly couple the pressure-sealed-pump-vessel and the pressure-sealed-suction-vessel, in the preferred embodiment. The sump-pump is located within the pressure-sealed-pump-vessel and includes a pump-inlet and a pump-outlet. The pump-inlet fluidly coupled to the liquid-aperture, and the pump-outlet is fluidly coupled to the liquid-discharge. The sump-pump configured to pump the volume of liquid from the pressure-sealed-pump-vessel and from the system via the liquid-discharge to remove the volume of water from a roof surface or other similar horizontal or substantially horizontal surface.
    • 一种用于去除一定体积的液体的系统,该系统包括压力密封式泵容器,至少一个液体孔口,液位控制阀,液体排出口,集液槽, 泵,压力密封吸入容器和一个或多个容器连接件。 在优选实施例中,一个或多个容器连接件构造成流体地连接压力密封泵容器和压力密封抽吸容器。 污水泵位于压力密封泵容器内,包括一个泵入口和一个泵出口。 泵入口流体地连接到液体孔并且泵出口流体连接到液体排出口。 槽式泵构造成从压力密封式泵容器泵出一定体积的液体并通过液体排出从系统泵出,以从屋顶表面或其他类似的水平或基本上水平的表面去除一定量的水。 p>
    • 8. 发明申请
    • AUTONOMOUS INSPECTOR MOBILE PLATFORM
    • 自动检测机动平台
    • WO2006078873A3
    • 2009-04-16
    • PCT/US2006001983
    • 2006-01-18
    • REDZONE ROBOTICS INC
    • REVERTE CARLOSTHAYER SCOTT MWHITTAKER WILLIAMCLOSE ERIC CSLIFKO ADAMHUDSON EDISON TVALLAPUZHA SUBRAMANIAN
    • G06F19/00
    • H04N7/185E03F7/10F16L55/32
    • An autonomous inspector mobile platform robot (300) that is used to inspect a pipe (380) or network of pipes (380). The robot (300) includes a locomotion device that enables the device to autonomously progress through the pipe (380) and accurately track its pose and odometry during movement. At the same time, image data is autonomously captured to detail the interior portions of the pipe (380). Images are taken at periodic intervals using a wide angle lens, and additional video images may be captured at locations of interest. Either onboard or offboard the device, each captured image is unwarped (if necessary) and combined with images of adjacent pipe (380) sections to create a complete image of the interior features of the inspected pipe (380). Optional features include additional sensors and measurement devices, various communications systems to communicate with an end node or the surface, and/or image compression software.
    • 用于检查管道(380)或管道网络(380)的自主检查员移动平台机器人(300)。 机器人(300)包括一个移动装置,其能够使装置自主地通过管道(380)前进,并在运动期间精确地跟踪其姿态和距离。 同时,自动捕获图像数据以细节管道(380)的内部部分。 使用广角镜头以周期性间隔拍摄图像,并且可以在感兴趣的位置捕获附加的视频图像。 无论是在设备上或板外,每个捕获的图像都是不相干的(如果需要的话),并且与相邻管道(380)部分的图像组合,以创建被检查管道(380)的内部特征的完整图像。 可选功能包括附加的传感器和测量设备,与终端节点或表面通信的各种通信系统和/或图像压缩软件。
    • 9. 发明申请
    • SLURRY TANKER WITH EJECTOR AND METHOD FOR FILLING A TANK ON THE SLURRY TANKER
    • 具有喷射器的浆液罐和用于在罐装罐上填充罐的方法
    • WO2007143994A1
    • 2007-12-21
    • PCT/DK2007/000283
    • 2007-06-12
    • SAMSON AGRO A/SALLERØD, Morten
    • ALLERØD, Morten
    • E03F7/10F04D9/06
    • E03F7/10B60P3/2245B60P3/225
    • There is disclosed a slurry tanker with a tank (1) having an feed line (48) with a filling pump (13) for filling with slurry for pumping the slurry from a container (16) to the tank, and a discharge line (49) with an emptying pump (2) for pumping slurry out of the tank (1). The lines are provided with valves for optional shutting off/connecting between the pumps and the tank, in order to fill the pump (13) with slurry without the need of lowering into the slurry container (16), a return line (50) to the tank is provided in connection with the emptying pump (2). In this return line (50), an ejector (6) is disposed and connected to a pressure source for a medium for establishing ejector action. The ejector has a suction line (51) which via a shut-off valve (9) can be connected to the filling pump (13) for aspirating the slurry through the filling pump.
    • 公开了一种具有罐(1)的浆料罐车,其具有供料管线(48),其具有用于填充用于将浆料从容器(16)泵送到罐的浆料的填充泵(13)和排出管线(49) )与用于将浆料从罐(1)中抽出的排空泵(2)。 这些管路​​设置有用于泵和罐之间的可选的关闭/连接的阀,以便用浆料填充泵(13)而不需要降低到浆料容器(16)中,返回管线(50)到 该罐与排空泵(2)相连。 在该返回管线(50)中,喷射器(6)设置并连接到用于建立喷射器动作的介质的压力源。 喷射器具有吸入管线(51),其通过截止阀(9)可以连接到填充泵(13),以通过填充泵吸出浆料。
    • 10. 发明申请
    • METHOD FOR OPTIMIZING OF A VEHICLE FOR SEWER CLEANING AND A VEHICLE FOR SEWER CLEANING
    • 用于车辆清洁的车辆优化方法和用于车辆清洁的车辆
    • WO2007101437A1
    • 2007-09-13
    • PCT/DK2007/000100
    • 2007-02-28
    • J. HVIDTVED LARSEN A/SLARSEN, Hans
    • LARSEN, Hans
    • E03F7/10
    • E03F7/10B65H75/4489E03F7/106E05D3/022E05Y2900/518
    • The present invention relates to a method of weight, volume and capacity improvement of vehicles, including combined high-pressure washer and gully emptying vehicles provided with a tank (1) for flushing liquid and sludge collection, including where these materials are separated by a piston (10) and that the vehicle is provided with at least one hose reel (18) for pressure- or suction hoses. The invention includes optimization of a vehicle's tank capacity as a function of the total height of the vehicle, by use of a canted or curved slit (4A) for controlling an opening-type rear cover (2) to the tank. Furthermore, the invention includes optimization of the piston weight through use of linear actuators such as hydraulic cylinders (12) for controlling the piston movement, and optimized suspension of tanks (1) with use of clamps (14) fastened on aluminum bases (13) The invention also includes weight, volume and strength optimized hose reels (18), where the reeling drums (24, 25) are suspended in a single load- carrying bearing (22) and where the reeler is rotated by use of a gear rim (23) with internal toothing (21 ), which is driven by the gear wheel (20) on a built-in motor (19). The invention makes it possible to manufacture combined high-pressure washer and gully emptying vehicles with external measurements, which match and fit standard cargo containers for inexpensive overseas transportation, and the tank capacity of the vehicles can be improved with more than 35% in relation to the total weight of the vehicle.
    • 本发明涉及一种车辆的重量,体积和容量改进方法,包括组合的高压清洗机和设有用于冲洗液体和污泥收集的罐(1)的沟槽排空车辆,包括这些材料由活塞 (10),并且车辆设置有用于压力或吸入软管的至少一个软管卷轴(18)。 本发明通过使用用于控制到罐的打开型后盖(2)的倾斜或弯曲的狭缝(4A)来优化车辆容器的容积,作为车辆总高度的函数。 此外,本发明包括通过使用诸如用于控制活塞运动的液压缸(12)的线性致动器来优化活塞重量,以及使用紧固在铝基座(13)上的夹具(14)来优化箱体(1)的悬挂, 本发明还包括重量,体积和强度优化的软管卷盘(18),其中卷筒(24,25)悬挂在单个承载轴承(22)中,并且卷筒机通过使用齿轮轮 23),内齿轮(21)由内置马达(19)上的齿轮(20)驱动。 本发明使得可以制造具有外部尺寸的组合的高压清洗机和沟槽排空车辆,其匹配和装配用于廉价海外运输的标准货物集装箱,并且可以提高车辆的罐容量相对于35% 车辆的总重量。