CN211571025U - Control system for dynamically and quantitatively humidifying gram weight - Google Patents

Control system for dynamically and quantitatively humidifying gram weight Download PDF

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Publication number
CN211571025U
CN211571025U CN201922488698.7U CN201922488698U CN211571025U CN 211571025 U CN211571025 U CN 211571025U CN 201922488698 U CN201922488698 U CN 201922488698U CN 211571025 U CN211571025 U CN 211571025U
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water
water tank
return
control system
humidifying
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CN201922488698.7U
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张凤杰
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Shaoxing Hangong Intelligent Technology Co ltd
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Shaoxing Hangong Intelligent Technology Co ltd
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Abstract

The utility model discloses a control system of developments ration humidification grammes per square metre, including water tank and water pump, the entrance connection water tank of water pump, the exit end of water pump go out the water and are used for the cloth humidification, and the return water of cloth humidification flows back to the water tank, still including the first flow measurement device that is used for measuring water tank water output, the second flow measurement device that is used for measuring the water tank return water volume and the length metering device that is used for measuring the cloth length of humidification. The utility model discloses the gram weight that can real-time supervision cloth increases, but the required gram weight value of direct input control water pump automatic adjustment water yield simultaneously.

Description

Control system for dynamically and quantitatively humidifying gram weight
Technical Field
The utility model belongs to the technical field of cloth humidification grammes per square metre control and specifically relates to a control system of developments ration humidification grammes per square metre is related to.
Background
Among the prior art, often carry out the humidification to cloth through spouting disk humidifier, to different cloth types, data such as the humidification in-process speed of a motor vehicle, the flow of water pump are inconsistent, lead to the gram weight nonconformity of cloth increase, need detect the gram weight of cloth increase, and current detection method is: the method comprises the steps of cutting a small sample on a cloth sample, weighing the sample, drying the sample, weighing the sample again, calculating the gram weight of the cloth per square meter according to the area of the sample, wherein the difference between the two weighing steps is the increased water amount, and the increased gram weight of the cloth per square meter is calculated.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome above-mentioned prior art not enough, provide a control system of developments ration humidification gram weight, the gram weight that can real-time supervision cloth increase can direct input required gram weight value control water pump automatic adjustment water yield simultaneously.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a control system of developments ration humidification grammes per square metre, includes water tank and water pump, the inlet end connection water tank of water pump, the exit end play water of water pump are used for the cloth humidification, and the return water of cloth humidification flows back to the water tank, still including the first flow measurement device that is used for measuring the water tank water output, the second flow measurement device that is used for measuring the water tank return water volume and the length metering device that is used for measuring the cloth length of humidification.
The length metering device is a meter counter.
The first flow measuring device is a flow meter or a water meter.
The second flow measuring device is a flow meter or a water meter.
The first flow measuring device is arranged at the outlet end of the water pump.
The quantity of water pump is two, and the water pump is equipped with the water pump outlet pipe, first flow measuring device installs in the water pump outlet pipe.
The water tank is provided with a water tank return pipe communicated with the interior of the water tank, and the second flow measuring device is arranged on the water tank return pipe.
The water tank is provided with a water tank outlet pipe, the inlet end of the water pump is provided with a water pump inlet pipe, and the water pump inlet pipe is communicated with the water tank outlet pipe.
The inside clear water room and the return water room of formation of separation through the second filter screen of water tank, the clear water room of water tank outlet pipe intercommunication, water tank wet return intercommunication return water room.
The indoor first filter screen that is equipped with of return water, the export of water tank wet return stretches into the return water room and the top of the first filter screen that is located.
The utility model has the advantages that: calculating the length of the humidified cloth through a length measuring device, and multiplying the length of the cloth by the known width of the cloth to obtain the area of the cloth; adding the results of the first flow measuring devices of the two water pumps to obtain the total water outlet flow, and subtracting the water return flow measured by the second flow measuring device from the total water outlet flow to obtain the water consumption, namely the water amount for humidification; therefore, the gram weight increased by each square meter of cloth can be known definitely, the data can be directly calculated by a computer, and the value of the gram weight increased by each square meter of cloth can be directly displayed on a display panel, so that the data can be obtained in real time. The utility model discloses still possess regulatory function, only need input per square meter cloth on display panel and need increase the gram weight value, the frequency of two water pumps just can increase thereupon or reduce and make it reach the gram weight value that cloth needs increase with control water yield.
Drawings
Fig. 1 is a perspective view of the present invention;
FIG. 2 is a perspective view of the present invention (with the cover removed);
FIG. 3 is a partial perspective view of the interior of the present invention;
fig. 4 is a diagram showing the second screen frame and the second screen according to the present invention;
fig. 5 is a schematic view of the installation of the first screen frame of the present invention.
In the figure: the water tank comprises a water tank 1, a tank body 11, a water tank outlet pipe 111, a water replenishing pipe 112, a water discharging hole 113, a tank cover 12, a tank cover handle 121, a water pump mounting seat 13, a clear water chamber 14, a water return chamber 15, a clear water chamber straight plate 16, a water return chamber inclined plate 17, a water return chamber straight plate 18, a water tank supporting leg 19, a water pump 2, a water pump inlet pipe 21, a first flow measuring device 22, a water pump outlet pipe 23, a water tank water return pipe 3, a second flow measuring device 31, a second filter screen frame 4, a slot 41, a second filter screen 5, a floating ball 6, a first filter screen frame 7, a first opening 71, a second opening 72 and a.
Detailed Description
The invention will be further described with reference to the accompanying drawings and specific embodiments:
as shown in fig. 1-5, a control system for dynamically and quantitatively humidifying gram weight comprises a water tank 1 and a water pump 2, wherein the water tank 1 comprises a square tank body 11 and a tank cover 12 covering the upper end of the tank body 11, and a tank cover handle 121 is arranged at the upper end of the tank cover 12, so that the tank cover handle 121 can be conveniently lifted up by the tank cover 12. The bottom of the water tank 1 is provided with a tank foot 19.
The both sides of box 11 all are equipped with water pump mount pad 13, the quantity of water pump 2 is two, and every water pump 2 corresponds a water pump mount pad 13 and installs.
The inlet end of the water pump 2 is connected with the water tank 1, the inlet end of the water pump 2 is provided with a water pump water inlet pipe 21, the water tank 1 is provided with two water tank water outlet pipes 111, and the water pump water inlet pipe 21 is communicated with the water tank water outlet pipes 111. Namely, one water inlet pipe 21 of the water pump is correspondingly connected with one water outlet pipe 111 of the water tank, and the two can be connected through a hose.
The outlet water of the water pump 2 is used for humidifying the cloth, the water from the water pump 2 is supplied to the spray disk type humidifier, and the spray disk type humidifier rotates at a high speed to atomize the water to humidify the cloth, which is the prior art and is not described in detail herein.
The return water of the cloth humidification flows back to the water tank 1, when the spray disc type humidifier rotates at a high speed to atomize water to the cloth humidification, part of the water which is not absorbed by the cloth is generated, and the part of the water flows back and is recovered.
Inside second filter screen 5 of passing through of water tank 1 separates formation clear water room 14 and return water room 15, and 1 internally mounted of water tank has second filter screen frame 4, and the both sides of second filter screen frame 4 all form and supply second filter screen 5 from last down male slot 41, therefore the quantity of second filter screen 5 be 2 and for demountable installation.
The water tank outlet pipe 111 is communicated with the clear water chamber 14, the water tank outlet pipe 111 is communicated with the lower portion of the clear water chamber 14, water is convenient to flow out, the floating ball 6 is arranged in the clear water chamber 14 in the water tank 1, the water level is monitored through the floating ball 6, water is supplemented timely (the floating ball 6 is the prior conventional technology), the water tank 1 is provided with the water supplementing pipe 112 communicated with the clear water chamber 14, the water supplementing pipe 112 is communicated with the upper portion of the clear water chamber 14 and used for supplementing clear water to the clear water chamber 14, and the water supplementing pipe 112 can be connected.
The water tank 1 is provided with a water tank return pipe 3 communicated with the inside of the water tank 1, and the water tank return pipe 3 is communicated with a return water chamber 15. The return water of cloth humidification passes through return water pipe 3 and flows back return water chamber 15 of water tank 1, be equipped with first filter screen 8 in the return water chamber 15, the export of water tank return water pipe 3 stretches into return water chamber 15 and the top of the first filter screen 8 that is located. Be located the return water indoor 15 in the water tank 1 and be equipped with first filter screen frame 7, the inner wall of return water indoor 15 of water tank 1 is laminated to the lateral wall portion of first filter screen frame 7, and the lateral wall portion of first filter screen frame 7 forms the uncovered 72 of second, and the bottom surface of first filter screen frame 7 forms first uncovered 71, and first filter screen 8 directly puts on the bottom surface of first filter screen frame 7, and the return water can be followed first uncovered 71 outflow again through the filtration pore of first filter screen 8 earlier like this. The uncovered 72 height of second is higher than the height of first filter screen 8, and when impurity was too much and then led to first filter screen 8's filtration pore to be blockked up on first filter screen 8, the backwater can be followed the uncovered 72 outflow of second, and the backwater that flows from first uncovered 71 and the uncovered 72 outflow of second all flows to clear water room 14 through second filter screen 5 again, has reached the retrieval and utilization of water, has practiced thrift the water resource.
The panel of the bottom of the water tank 1 comprises a straight clear water chamber plate 16, a sloping return water chamber plate 17 and a straight return water chamber plate 18, the straight clear water chamber plate 16 is located at the bottom of the clear water chamber 14, the sloping return water chamber plate 17 and the straight return water chamber plate 18 are located at the bottom of the return water chamber 15, the sloping return water chamber plate 17 is arranged in an inclined manner, the straight clear water chamber plate 16 and the straight return water chamber plate 18 are connected through the sloping return water chamber plate 17 in a transition manner, and the straight clear water chamber plate 16 is higher than the straight return water chamber plate 18. The water return chamber straight plate 18 is provided with a water discharge hole 113, the water discharge hole 113 is normally closed (closed by an external valve), and when waste water needs to be discharged, the external valve can be opened to discharge water from the water discharge hole 113.
A first flow measuring device 22 for measuring the water outlet quantity of the water tank 1, a second flow measuring device 31 for measuring the water return quantity of the water tank 1 and a length measuring device for measuring the length of the humidified cloth are also included.
The first flow measuring device 22 is installed at the outlet end of the water pump 2. The water pump 2 is provided with a water pump outlet pipe 23, and the first flow measuring device 22 is arranged on the water pump outlet pipe 23. The first flow measuring device 22 may also be mounted at the outlet of the tank outlet pipe 111 or at any area between the tank outlet pipe 111 and the inlet end of the water pump 2.
The second flow measuring device 31 is installed in the tank return pipe 3. The second flow measuring device 31 may be installed in any area between the start of returning water to the tank return pipe 3.
The length metering device is a meter counter. The length of the humidified cloth can be calculated through the meter counter, and the area of the cloth can be obtained by multiplying the length of the cloth by the known width of the cloth.
The first flow measuring device 22 is a flow meter or a water meter. The second flow measuring device 31 is a flow meter or a water meter. The utility model discloses the total water flow is obtained in addition to the result that needs two water pump 2's first flow measurement device 22, and the return water flow that total water flow subtracts second flow measurement device 31 and measures equals the water yield of consumption, the water yield that the humidification was used promptly.
Therefore the utility model discloses can definitely know the gram weight that every square meter cloth increased, these data all can directly calculate through the computer, and the gram weight numerical value that every square meter cloth increased can directly show on the display panel, consequently can obtain these data in real time. The utility model discloses still possess regulatory function, only need input per square meter cloth gram weight value that needs to increase on display panel, two water pump 2's frequency just can increase thereupon or reduce and make it reach cloth gram weight value that needs to increase with the control water yield.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (10)

1. The utility model provides a control system of developments ration humidification gram weight, includes water tank (1) and water pump (2), its characterized in that: the utility model discloses a cloth humidifying device, including water pump (2), the exit end of water pump (2) goes out water and is used for cloth humidification, and the return water of cloth humidification flows back water tank (1), still includes first flow measurement device (22) that are used for measuring water tank (1) water yield, second flow measurement device (31) that are used for measuring water tank (1) water yield and the length metering device who is used for measuring the cloth length of humidification.
2. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 1, wherein: the length metering device is a meter counter.
3. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 1, wherein: the first flow measuring device (22) is a flow meter or a water meter.
4. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 1, wherein: the second flow measuring device (31) is a flow meter or a water meter.
5. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 1, wherein: the first flow measuring device (22) is arranged at the outlet end of the water pump (2).
6. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 5, wherein: the quantity of water pump (2) is two, and water pump (2) are equipped with water pump outlet pipe (23), first flow measuring device (22) are installed in water pump outlet pipe (23).
7. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 1, wherein: the water tank (1) is provided with a water tank return pipe (3) communicated with the interior of the water tank, and the second flow measuring device (31) is installed on the water tank return pipe (3).
8. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 7, wherein: the water tank (1) is provided with a water tank outlet pipe (111), the inlet end of the water pump (2) is provided with a water pump inlet pipe (21), and the water pump inlet pipe (21) is communicated with the water tank outlet pipe (111).
9. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 8, wherein: the water tank (1) is internally separated by a second filter screen (5) to form a clear water chamber (14) and a water return chamber (15), a water tank water outlet pipe (111) is communicated with the clear water chamber (14), and a water tank water return pipe (3) is communicated with the water return chamber (15).
10. The control system for dynamically and quantitatively humidifying the grammage as claimed in claim 9, wherein: be equipped with first filter screen (8) in return water chamber (15), the export of water tank wet return (3) stretches into return water chamber (15) and the top of first filter screen (8) that is located.
CN201922488698.7U 2019-12-30 2019-12-30 Control system for dynamically and quantitatively humidifying gram weight Active CN211571025U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922488698.7U CN211571025U (en) 2019-12-30 2019-12-30 Control system for dynamically and quantitatively humidifying gram weight

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922488698.7U CN211571025U (en) 2019-12-30 2019-12-30 Control system for dynamically and quantitatively humidifying gram weight

Publications (1)

Publication Number Publication Date
CN211571025U true CN211571025U (en) 2020-09-25

Family

ID=72553812

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922488698.7U Active CN211571025U (en) 2019-12-30 2019-12-30 Control system for dynamically and quantitatively humidifying gram weight

Country Status (1)

Country Link
CN (1) CN211571025U (en)

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