ACTIVE AND PASSIVE SELF-EVACUATION OF A SELF-PRIMING WATER PUMP
20170232639 · 2017-08-17
Inventors
Cpc classification
F04D13/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D15/0016
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D15/0077
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B28D7/02
PERFORMING OPERATIONS; TRANSPORTING
F16K31/0603
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B28D7/02
PERFORMING OPERATIONS; TRANSPORTING
F04D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23Q11/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A water supply apparatus for the supply of water to a machine tool, including a water pump, a water accumulator device, a suction line, a supply line and a valve device reversibly adjustable into a first and a second position. The water pump is positioned downstream of the valve device. A first connecting line, a second connecting line and a return line are provided. Here, in the first position, the first connecting line, the second connecting line and the return line are connected to one another such that water can be conveyed from the water pump, from the first connecting line, from the second connecting line, from at least a part of the suction line and from at least a part of the supply line into the return line, and, in the second position, the first connecting line, the second connecting line and the return line are not connected to one another.
Claims
1-9. (canceled)
10. A water supply device for supplying a power tool with water, the water supply device comprising: a water pump; a storage device for storing water; a suction line for conducting water from the storage device to the water pump; a supply line for conducting water from the water pump to the power tool; a valve device reversibly adjustable into a first position and into a second position, the water pump being positioned downstream from the valve device in a direction; a first connecting line for conducting water from the suction line to the valve device; a second connecting line for conducting water from the supply line to the valve device; and a return line for conducting water from the valve device to the water reservoir; in the first position the first connecting line, the second connecting line and the return line being connected so that water is conveyable from the water pump, from the first connecting line, from the second connecting line, from at least one part of the suction line and from at least one part of the supply line into the return line, and, in the second position, the first connecting line, the second connecting line and the return line are not connected to each other.
11. The water supply device as recited in claim 10 wherein the valve device is designed as a self-resetting 3/2-way valve.
12. The water supply device as recited in claim 11 wherein the 3/2-way valve is movable from the second position into the first position by at least one spring element.
13. The water supply device as recited in claim 11 wherein the 3/2-way valve is movable from the second position into the first position by at least one electrical actuation means including an electromagnetic coil.
14. The water supply device as recited in claim 10 wherein the valve device switches from the second position into the first position when the valve device or the water supply device is disconnected from a first energy source, the first energy source being designed in the form of a mains supply or at least one storage battery.
15. The water supply device as recited in claim 14 further comprising a second energy source to supply the water pump with electrical energy when the water pump is disconnected from the first energy source.
16. The water supply device as recited in claim 10 wherein the valve device switches from the second position into the first position when the water supply device is placed into a deactivation mode.
17. A method for using the water supply device as recited in claim 10 comprising: switching the valve device between the first and second positions.
18. A method for controlling the water supply device as recited in claim 10, comprising the following steps: adjusting the water supply device from an activation mode into a deactivation mode; adjusting the water pump from a pump activation mode into a pump deactivation mode; adjusting the valve device from the second position into the first position; adjusting the water pump from the pump deactivation mode into the pump activation mode after a first predetermined time period has elapsed; and adjusting the water pump from the activation mode into the deactivation mode after a second predetermined time period has elapsed.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In the figures, identical and equivalent components are provided with identical reference numerals.
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DETAILED DESCRIPTION
[0038]
[0039] Water supply device 1 includes a device head la and a storage device 3 for storing water W. Storage device 2 for storing water W may also be referred to as a water reservoir.
[0040] Device head 2 essentially includes a water pump 4, a valve device 5, a suction line 6, and supply line 7, a first connecting line 8, a second connecting line 9 and a return line 10.
[0041] Water pump 4 is designed in the form of a self-priming pump and is connected to suction line 6 as well as supply line 7. Suction line 6 extends from water reservoir 2 to water pump 4. Supply line 7 extends from water pump 4 to a power tool 11 and a tool element 12. Water W may be pumped through suction line 6 from water reservoir 2 to water pump 4. Water may be pumped through supply line 7 from water pump 4 to a power tool 11 and a tool element 12 connected to power tool 11. In
[0042] Valve device 5 is designed as a self-resetting 3/2-way solenoid valve and includes a spring element 13 as well as an electrical actuating means 14, which includes an electromagnetic coil 15. Self-resetting 3/2-way solenoid valve 5 has three ports 5a, 5b, 5c and two switching positions. First connecting line 8 extends from suction line 6 to valve device 5, and second connecting line 9 extends from supply line 7 to valve device 5. Return line 10 extends from valve device 5 to water reservoir 2. According to the first specific embodiment of water supply device 1, first connecting line 8 is connected to suction line 6 at a point where suction line 6 forms a trough 15 (cf.
[0043] Valve device 5 may be reversibly adjusted into a first position and into a second position. In
[0044] In the first position, first connecting line 8 and second connecting line 9 are connected to return line 10 in such a way that water present in first or second connecting line 8, 9 may flow into return line 10 and enter water reservoir 2 via the return line. For this purpose, valve device 5 includes an internal line system (not illustrated), with the aid of which first and second connecting lines 8, 9 are connected to return line 10. The valve device is held in the first position with the aid of spring element 13.
[0045] In the second position, first connecting line 8 and second connecting line 9 are not connected to return line 10, so that no water is able to enter return line 10 from first or second connecting line 8, 9. Valve device 5 is moved from the first position into the second position with the aid of electrical actuating means 14, i.e., valve device 5 is moved by electrical actuating means 14 in direction V. Electrical actuating means 14 is designed in such a way that it requires a voltage to permit valve device 5 to be brought from the first position into the second position. If no voltage of this type is present at electrical actuating means 14, valve device 5 is not able to be brought from the first position into the second position. The valve device remains in the second position as long as a voltage is present at electrical actuating means 14. Without a voltage, the valve device is returned to the first position by spring element 13.
[0046] The first position is thus an initial or idle position of valve device 5.
[0047] As illustrated in
[0048] As is shown accordingly in particular
[0049] In
[0050] Moreover, water supply device 1 includes an actuating device, with the aid of which the individual functions of water supply device 1 may be controlled. In addition, water supply device 1 is reversibly adjustable from a deactivation mode into an activation mode with the aid of the actuating device. In deactivation mode, water supply device 1 is turned off and inoperable, although the water supply device continues to be supplied with electric current. In activation mode, the water supply device is turned on and operable, water supply device 1 being supplied with electric current. The actuating device essentially includes a main switch H. Main switch H may be optionally placed in an “off position” or in an “on position.” In the off position of main switch H, water supply device 1 is in deactivation mode. In the on position of main switch H, water supply device 1 is in activation mode. The actuating device is not illustrated in the figures. Only main switch H of the actuating device is shown stylistically in
[0051] A first variant of the sequence of the purely passive self-evacuation of water pump 4 in water supply device 1 according to the present invention is illustrated in
[0052]
[0053] According to the first variant of the sequence of the purely passive self-evacuation of water pump 4, a passive or automatic self-evacuation of water pump 4 is carried out only if water supply device 1 is disconnected from the first energy source.
[0054] A second variant of the sequence of the purely passive self-evacuation of water pump 4 in water supply device 1 according to the present invention is illustrated in
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[0058] According to the second variant of the sequence of the purely passive self-evacuation of water pump 4, a passive or automatic self-evacuation of water pump 4 is carried out only if water supply device 1 is disconnected from the first energy source or main switch H is in the off position.
[0059]
[0060] A third variant of the sequence of the purely passive self-evacuation of water pump 4 in water supply device 1 according to the present invention is illustrated in
[0061] With regard to the position (off or on) of main switch H and the connection or disconnection of the first energy source, the third variant is identical to the second variant (cf.
[0062] In the sequence in
[0063] If main switch H is switched to the off position, valve device 5 switches to the first position and water pump 4 is deactivated (turned off). A passive self-evacuation of water pump 4 takes place, as described above. An inquiry is subsequently made as to whether a “water pump ON” flag is present.
[0064] If the presence of a “water pump ON” flag is detected, a time delay takes place to facilitate a passive self-evacuation of water pump 4. Water pump 4 is then reactivated (turned on) for a defined time period, whereby water pump 4 empties itself. Air is aspirated by water pump 4, and the water still present is pumped out of water pump 4. The “water pump ON” flag is then deleted.
[0065] According to a fourth variant of the sequence of the purely passive self-evacuation of water pump 4 in water supply device 1 according to the present invention, an additional, i.e. second, energy source s provided for supplying water pump 4 with voltage. The second energy source is designed in the form of an accumulator. Alternatively, the second energy source may also be designed in the form of a battery and/or capacitor. The second energy source is not illustrated in the figures.
[0066] With the aid of the second energy source, water pump 4 is supplied with energy separately, so that water pump 4 remains activated even if water supply device 1 is disconnected from the first energy source. It may be ensured hereby that, when valve device 5 switches to the first position, which is induced by disconnecting water supply device 1 from the first energy source (as described above), water pump 4 is able to self-evacuate.