Abstract:
A vacuum cleaner includes a body, an electrically-driven suction unit, a device for collecting dust, a suction channel, a nozzle communicating with the body through the suction channel, an intake device for ensuring an additional portion of air fed into the suction channel and being adjustable between an opened and a closed state, and a control unit for controlling the suction unit. The intake device is bi-directionally electrically connected to the control unit, so that transmission of data or signals between the intake device and the control unit is enabled. The control unit is configured to generate a signal for controlling the intake device in the event of detecting the cleaning start signal or the cleaning end signal. A method for operating a vacuum cleaner is also provided.
Abstract:
A combination vehicle (10) for cleaning a sewer includes a water jetting system (12) with a frame (34) mounted to a first end (38) of the vehicle (10) and horizontally spanning substantially the width thereof, and a slide carriage (36) operatively engaged with the frame (34) and slideable therealong. A hose reel frame (28) pivotally connects to the slide carriage (36) and is pivotal about a vertical axis, and supports a hose reel (30) that is rotatable about a horizontal axis and configured to support a hose (32). The hose (32) operatively connects to a water jetting source (46) to supply pressurized water for use in cleaning the sewer. A controller (44) operatively connects to the hose reel frame (28) and is operable to move the slide carriage (36) along the frame (34), and also to pivot the hose reel frame (28) relative to the vertical axis, thereby to enhance safety and maneuverability in locating the hose (32) in a desired position for cleaning a sewer.
Abstract:
A sewer cleaning vehicle includes a monitoring device for detecting a water level in a plurality of water tanks using a sensor engaged with the water tanks. The vehicle can present to an operator the water level together with operational conditions of the vehicle. The vehicle can continuously fill the water tanks based on the water level, and inform the operator of the water tanks having a water level lower than a user-configurable threshold.
Abstract:
Disclosed is an apparatus for conveniently and rapidly removing chips from the interior of a pipe by discharging chips with a portion of fluid out of the pipe using the difference between the pressure in the pipe and atmospheric pressure. The apparatus includes a fitting mounted to a region adjacent to a hole bored in a pipe, a sandwich valve coupled to the fitting, a chip-removing adapter mounted above the sandwich valve, a suction tube extending to an inner surface of the pipe through the chip-removing adapter in order to remove chips from the pipe, a vertical moving unit for vertically moving the suction tube, a delivery tube connected to an upper end of the suction tube and configured to deliver the chips to a predetermined place, and a strainer mounted to a distal end of the delivery tube in order to separate the delivered chips from the fluid.
Abstract:
A system for recovering antifreeze from a dust prevention system of a mineral material processing plant, wherein the system includes an antifreeze tank, a pump configured to circulate water and/or antifreeze, a first valve configured to connect to a water inlet and/or antifreeze tank to the pump, a nozzle manifold connected to the pump, a second valve configured to connect the nozzle manifold to the antifreeze tank and/or a third valve, and a control system. The control system is configured to operate the system according to a method including the steps of sucking water using a pump from a water inlet via a first valve, displacing the antifreeze via a nozzle manifold into an antifreeze tank until the water reaches a second valve, and connecting the second valve to a third valve to allow circulation of water in the system.
Abstract:
A septic line cleaning assistance device that positions into alignment with a lower opening in a T-pipe to plug the lower opening in the T-pipe. The blocked lower opening enables a suction apparatus to suck waste from a pipe connected to a waste opening in the T-pipe through an upper opening in the T-pipe. A rod is configured to be inserted along the T-pipe and positioned into place along the T-pipe. The rod comprises a plug end holding the plug that is configured to frictionally engage the lower opening in the T-pipe to effectively seal the lower opening. A handle end having a grip enables the positioning of the plug over the lower opening, and pulling the plug into a mating position with the lower opening. An adjustable peripheral fastener is slidably positioned over the upper end of the T pipe to hold the device and plug in place.
Abstract:
A material deposition system is configured to deposit material on an electronic substrate, such as a printed circuit board. The material deposition system includes a frame, a support coupled to the frame and configured to support an electronic substrate during a deposit operation, a gantry coupled to the frame, and two deposition heads coupled to the gantry. Each deposition head includes a needle, with the deposition heads being movable over the support by movement of the gantry. The material deposition system further includes a needle cleaner assembly movable on a needle cleaner gantry, with the needle cleaner assembly being configured to clean needles of the deposition heads. The material deposition system further includes a controller configured to control the operation of the needle cleaner assembly to perform a needle cleaning operation.
Abstract:
A device for cleaning the interior wall of a catheter has a cleaning lumen and a non-inflatable removal element comprising a sliding collar that has a first location as the cleaning lumen advances and a second location as the cleaning lumen retracts within the catheter. A sliding collar has a first position when unconstrained and a second position when within the catheter. The removal element self-positions the device concentrically within the catheter. Suction is desirably applied to the cleaning lumen during use.
Abstract:
An apparatus comprises a forming device for forming objects, a moving arrangement arranged for moving said objects along a path directed from said forming device towards an exit area, passage arrangement for an operating fluid, said passage arrangement being arranged for allowing said objects to be moved towards said exit area at least in a preset portion of said path. A method comprises forming objects, moving said objects along a path directed towards an exit area, and acting on said objects with an operating fluid at least in a preset portion of said path, so as to allow said objects to be moved towards said exit area.
Abstract:
One embodiment of the present invention relates to a trocar cleaning system including an elongated member and an irrigation device, a suction device, or a suction/irrigation device. The elongated member is designed to be inserted within a trocar. The elongated member includes a pliable wiper type member at the distal end to facilitate a radial plowing of debris within the trocar as the elongated member is inserted and removed. The elongated member also includes an internal channel coupled to a radial opening on the distal end and coupled to either an irrigation device or a suction device on the proximal end. The irrigation device may pressurize liquid through the internal channel and out a radial opening on the distal end of the elongated member so as wash the inside of the trocar. Likewise, the suction device may utilize the internal channel to create a suction force at the distal end of the elongated member.