Washing apparatus
Industrial cleaning, such as the cleaning of oil rigs, often requires the use of industrial vacuums and pressure washers. Vacuum trucks are used to bring pressure washers and vacuums to industrial operations. However, these trucks require a large space to operate it in. Small scale vacuums and pressure washers are preferable to clean interior or difficult-to-access areas in factories, plants, oil rigs, and other industrial operations.
In an embodiment, there is provided a washing apparatus, comprising a vacuum unit, the vacuum unit comprising a tank, a first centrifuge, and a second centrifuge; a pressure washer unit, the pressure washer unit comprising a first water tank having a bottom, a top and a side, and a second water tank having a bottom, a top and a side; a frame having a top, a base and four corners; the frame supporting the portable vacuum unit and pressure washer unit, the first centrifuge and the second centrifuge being fixed in respective first and second corners of the frame, and the first water tank and second water tank being fixed in respective third and fourth corners of the frame.
In an embodiment, there is provided a washing apparatus, comprising a vacuum unit, the vacuum unit comprising a tank, the tank comprising an upper portion, a lower portion, an inlet, an outlet, and a tube; the outlet being formed in the lower portion of the tank and the inlet being formed above the outlet at waist height on the tank; the tube extending interior to the tank from the inlet to the upper portion of the tank; a pressure washer unit; and a frame, the frame supporting the portable vacuum unit and pressure washer unit.
In an embodiment, there is provided a washing apparatus, comprising a vacuum unit, the vacuum unit comprising a tank and a pump; a sensor suspended inside the tank for detecting the level of fluid in the tank; a pressure washer unit; a frame, the frame supporting the portable vacuum unit and pressure washer unit; the tank comprising an inlet and an outlet, a first actuator and a second actuator; the first actuator initiating the pump to pump material into the inlet and the second actuator not operating when the sensor does not detect fluid at a pre-determined height in the mud tank; and the second actuator initiating the pump to pump material out of the mud tank through the outlet and the first actuator not operating when the sensor detects fluid at a pre-determined height in the mud tank.
In an embodiment, there is provided a washing apparatus, comprising a frame; a vacuum unit mounted within the frame, the vacuum unit comprising a vacuum tank, a first centrifuge, and a second centrifuge; a pressure washer unit mounted within the frame, the pressure washer unit comprising a first water tank and a second water tank; the vacuum tank being situated within the frame with variable distance between the vacuum tank and nearest portions of the frame, the variable distance creating pockets within the frame, the first centrifuge, the second centrifuge, the first water tank and the second water tank being located within the pockets.
In an embodiment, there is provided a washing apparatus, comprising: a frame defining a volume having a boundary; a vacuum unit mounted on the frame, the vacuum unit comprising a mud tank, the mud tank having a top and a bottom; an outlet from the bottom of the mud tank extending from within the mud tank to the boundary; an inlet into the mud tank above the outlet, the inlet extending from within the mud tank to the boundary; a tube extending from the inlet upward into the mud tank; and a pressure washer unit mounted on the frame within the boundary.
In various embodiments, there may be included any one or more of the following features: the first water tank has a first viewing window and a second viewing window on the side of the first water tank, the first viewing window being nearer to the bottom of the first water tank than the second viewing window; the frame has a pair of holes extending through the base of the frame for receiving forks of a lifting device; the frame has lifting lugs on the top of the frame to permit lifting of the frame by a crane or helicopter; the frame has a front and a back, the front of the frame has a first sling hook and a second sling hookup, and the back of the frame has a third sling hookup and a fourth sling hookup for attaching the frame to a skid mount; the base of the frame is a skid plate for containing leaks from the vacuum unit and pressure washer unit; and the vacuum tank is a vertically oriented cylindrical tank and the frame is rectangular with corners and the pockets are corners of the frame.
These and other aspects of the device and method are set out in the claims, which are incorporated here by reference.
Embodiments will now be described with reference to the figures, in which like reference characters denote like elements, by way of example, and in which:
Immaterial modifications may be made to the embodiments described here without departing from what is covered by the claims. In the claims, the word “comprising” is used in its inclusive sense and does not exclude other elements being present. The indefinite articles “a” and “an” before a claim feature do not exclude more than one of the feature being present. Each one of the individual features described here may be used in one or more embodiments and is not, by virtue only of being described here, to be construed as essential to all embodiments as defined by the claims.
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The outlet 112 and the inlet 114, together with the first and second actuators 122 and 124, are installed as low as possible on the mud tank 18 to provide for safe operation of the washing apparatus 10. A low height for the inlet and outlet allows an operator to easily lift and connect a hose to the outlet 112 or the inlet 114. By the tank tube 115 being in fluid connection from the inlet 114 to the upper portion 118 of the mud tank 18, the inlet 114 may be lowered without causing back flow of material if operation of the vacuum unit 12 is stopped when the fluid level in the mud tank 18 is above the inlet 114 but has not yet reached the height of the fluid sensor 120. The first and second actuators 122 and 124 may be turned on or off using a selector switch 126. When the first and second actuators 122 and 124 are turned on, the vacuum unit 12 runs automatically using the fluid sensor 120 and actuators 122 and 124, thus eliminating the need to have an operator remain at the washing apparatus 10 while the vacuum unit 12 is in use. When the first actuator 122 and the second actuator 124 are turned off using the selector switch 126, the vacuum unit 12 may be operated manually, using a first hand-wheel 127a and a second hand-wheel 127b, respectively.
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2907256 | Oct 2015 | CA | national |
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Number | Date | Country | |
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20170095844 A1 | Apr 2017 | US |