CN215102450U - Water treatment equipment with remote monitoring and control function - Google Patents

Water treatment equipment with remote monitoring and control function Download PDF

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Publication number
CN215102450U
CN215102450U CN202120791354.8U CN202120791354U CN215102450U CN 215102450 U CN215102450 U CN 215102450U CN 202120791354 U CN202120791354 U CN 202120791354U CN 215102450 U CN215102450 U CN 215102450U
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casing
shell
water
remote monitoring
sliding groove
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CN202120791354.8U
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杨砚生
李守玉
赵金阳
何源源
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LIAONING LEAP INDUSTRY TECHNOLOGY CO LTD
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LIAONING LEAP INDUSTRY TECHNOLOGY CO LTD
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Abstract

The utility model discloses a water treatment facilities with remote monitoring control function, include: the filter comprises a main body component, a filter component and a control component; the main body component comprises a wastewater pool, a first shell, a second shell, a third shell, a water pump, a water inlet pipe, a water outlet pipe and a third baffle; the filter assembly comprises a first sliding chute, a filter screen plate, a second sliding chute, a PP cotton plate, a third sliding chute and an activated carbon plate, wherein the first sliding chute is formed between one side of the third baffle and the adjacent inner side wall of the first shell; the utility model discloses a collocation setting of first singlechip, first signal transceiver, second singlechip and second signal transceiver isotructure, the use of cooperation water level display and camera, can the inside water level condition of remote monitoring wastewater disposal basin, simultaneously can the remote control water pump start-up, carry out waste water extraction and handle, need not the staff and make a round trip to rush back and forth the ripples, improved staff's work efficiency.

Description

Water treatment equipment with remote monitoring and control function
Technical Field
The utility model relates to a water treatment facilities technical field specifically is a water treatment facilities with remote monitoring control function.
Background
The water resource is a valuable resource for human beings to live, but because of various industrial productions and the living demands of people, a large amount of sewage is generated, the sewage is treated by the water treatment equipment, so that the wastewater can be reused, and the method is a way of saving water and changing waste into valuables, but the existing water treatment equipment has the following inconveniences in actual use:
when the wastewater level in the wastewater tank reaches a certain level, a worker starts a water treatment facility to extract wastewater in the wastewater tank and then treat the wastewater, the water level in the wastewater tank is detected, and the wastewater treatment facility cannot be remotely controlled when started, so that a lot of inconvenience is brought to the work of the worker, and the work efficiency is low;
secondly, the existing water treatment equipment has complex structure and various procedures, needs a plurality of water pools to change waste water continuously, needs a large amount of time for precipitation, and has poor water treatment effect, so that the water treatment equipment with the remote monitoring and controlling function is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a water treatment facilities with remote monitoring control function to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a water treatment apparatus having a remote monitoring control function, comprising:
the filter comprises a main body component, a filter component and a control component;
the main body component comprises a wastewater pool, a first shell, a second shell, a third shell, a water pump, a water inlet pipe, a water outlet pipe and a third baffle;
the filter assembly comprises a first sliding chute, a filter screen plate, a second sliding chute, a PP (polypropylene) cotton plate, a third sliding chute and an activated carbon plate, the first sliding chute is formed between one side of the third baffle and the adjacent inner side wall of the first shell, the filter screen plate is connected to the inside of the first sliding chute in a sliding manner, the second sliding chute and the third sliding chute are respectively formed in the inner side wall of the second shell, the PP cotton plate is connected to the inside of the second sliding chute in a sliding manner, and the activated carbon plate is connected to the inside of the third sliding chute in a sliding manner;
the control assembly comprises a fourth shell, a first single chip microcomputer, a first signal transceiver, a fifth shell, a first groove, a second single chip microcomputer, a touch display screen and a second signal transceiver.
As further preferable in the present technical solution: the water inlet intercommunication of water pump has the inlet tube, the inlet tube is kept away from the one end of water pump has been link up there is the effluent water sump, the delivery port intercommunication of water pump has the outlet pipe, the outlet pipe is kept away from the one end of water pump has been link up first casing, the inboard roof welding of first casing has the third baffle, one side intercommunication that first casing was kept away from the outlet pipe has the second casing, the second casing is kept away from one side intercommunication of first casing has the third casing.
As further preferable in the present technical solution: the utility model discloses a portable electronic device, including the wastewater disposal basin, the lateral wall fixedly connected with fourth casing of wastewater disposal basin, first singlechip is installed to the inside wall of fourth casing, first signal transceiver is installed at the top of fourth casing, second signal transceiver is installed to one side of fifth casing, first recess has been seted up to the inboard diapire of fifth casing, the internally mounted of first recess has the second singlechip, touch-control display screen is installed to the inside wall of fifth casing.
As further preferable in the present technical solution: the USB charging device comprises a fifth shell, a second groove is formed in the bottom of the fifth shell, a storage battery is arranged in the second groove, a sixth shell is sleeved outside the storage battery, the top of the sixth shell is connected with the bottom of the storage battery through screw threads, a USB charging port is installed on one side of the sixth shell, and a second switch is installed on the top of the fifth shell.
As further preferable in the present technical solution: the water level display is installed to the lateral wall of wastewater disposal basin, the camera is installed at the top of wastewater disposal basin, the front surface of first casing has link up the blow off pipe, the valve is installed to the lateral wall of blow off pipe, first switch is installed to the lateral wall of wastewater disposal basin.
As further preferable in the present technical solution: one side of first casing is link up there is the pencil that adds, the solenoid valve is installed to the lateral wall of pencil that adds, the top intercommunication of pencil has the fill of adding medicine, the inside wall of first casing with the equal symmetrical equidistance of lateral wall of third baffle is arranged the welding and is had the second baffle.
As further preferable in the present technical solution: the inside wall of fourth casing articulates there is first baffle, first baffle is kept away from the lock is installed to one side of fourth casing.
As further preferable in the present technical solution: the joint of the outer side wall of the filter screen plate and the inner side wall of the first sliding groove is bonded with a first rubber pad, the joint of the outer side wall of the PP cotton plate and the inner side wall of the second sliding groove is bonded with a third rubber pad, and the joint of the outer side wall of the activated carbon plate and the inner side wall of the third sliding groove is bonded with a second rubber pad.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a first singlechip, first signal transceiver, second singlechip and the collocation setting of second signal transceiver isotructure, the use of cooperation water level display and camera can the remote monitoring inside the wastewater disposal basin, can remotely control the water pump simultaneously and start, carry out waste water extraction processing, need not the staff and back and forth the ripples, improved staff's work efficiency;
two, the utility model discloses an add waste water treatment medicament in waste water and make the waste residue deposit, utilize third baffle and second baffle to block waste water for medicament and water intensive mixing slow down the velocity of flow of water, make the waste residue have abundant time to deposit, carry out twice filtration to waste water through filtering otter board and second spout, cooperate the active carbon board to adsorb the harmful substance in the waste water, improved the treatment effect of waste water.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged schematic view of the area A of FIG. 1 according to the present invention;
fig. 3 is a schematic side view of the fifth casing according to the present invention;
fig. 4 is a schematic structural diagram of the first housing of the present invention;
fig. 5 is a schematic side view of a fourth housing according to the present invention;
fig. 6 is a circuit diagram of the first single chip microcomputer according to the present invention.
In the figure: 1. a water level display; 2. a camera; 3. a first switch; 4. a medicine feeding pipe; 5. an electromagnetic valve; 6. a medicine feeding hopper; 7. locking; 8. a first baffle plate; 9. a second baffle; 10. a body assembly; 11. a wastewater tank; 12. a first housing; 13. a second housing; 14. a third housing; 15. a water pump; 16. a water inlet pipe; 17. a water outlet pipe; 18. a third baffle plate; 20. a filter assembly; 21. a first chute; 22. a filter screen plate; 23. a second chute; 24. a PP cotton board; 25. a third chute; 26. an activated carbon plate; 30. a control component; 31. a fourth housing; 32. a first single chip microcomputer; 33. a first signal transceiver; 34. a fifth housing; 35. a first groove; 36. a second single chip microcomputer; 37. a touch display screen; 38. a second signal transceiver; 40. a first rubber pad; 41. a second rubber pad; 42. a third rubber pad; 43. a storage battery; 44. a sixth housing; 45. a blow-off pipe; 46. a valve; 47. a USB charging port; 48. a second groove; 49. a second switch.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Examples
Referring to fig. 1-6, the present invention provides a technical solution: a water treatment apparatus having a remote monitoring control function, comprising:
a body assembly 10, a filter assembly 20, and a control assembly 30;
the main body assembly 10 comprises a wastewater tank 11, a first shell 12, a second shell 13, a third shell 14, a water pump 15, a water inlet pipe 16, a water outlet pipe 17 and a third baffle 18;
the filter assembly 20 comprises a first chute 21, a filter screen plate 22, a second chute 23, a PP cotton plate 24, a third chute 25 and an activated carbon plate 26, the first chute 21 is arranged between one side of the third baffle plate 18 and the inner side wall of the adjacent first shell 12, the filter screen plate 22 is connected inside the first chute 21 in a sliding manner, the second chute 23 and the third chute 25 are respectively arranged on the inner side wall of the second shell 13, the PP cotton plate 24 is connected inside the second chute 23 in a sliding manner, and the activated carbon plate 26 is connected inside the third chute 25 in a sliding manner;
the control assembly 30 includes a fourth housing 31, a first single chip microcomputer 32, a first signal transceiver 33, a fifth housing 34, a first groove 35, a second single chip microcomputer 36, a touch display screen 37 and a second signal transceiver 38.
In this embodiment, specifically: a water inlet of the water pump 15 is communicated with a water inlet pipe 16, one end, far away from the water pump 15, of the water inlet pipe 16 is communicated with the wastewater tank 11, a water outlet of the water pump 15 is communicated with a water outlet pipe 17, one end, far away from the water pump 15, of the water outlet pipe 17 is communicated with the first shell 12, the top wall of the inner side of the first shell 12 is welded with a third baffle 18, one side, far away from the water outlet pipe 17, of the first shell 12 is communicated with the second shell 13, and one side, far away from the first shell 12, of the second shell 13 is communicated with the third shell 14; through the arrangement of the water pump 15, the water inlet pipe 16 and the water outlet pipe 17, sewage in the wastewater tank 11 can be pumped out and discharged into the first shell 12, and through the arrangement of the third shell 14, treated water can be stored.
In this embodiment, specifically: a fourth shell 31 is fixedly connected to the outer side wall of the wastewater tank 11, a first single chip microcomputer 32 is installed on the inner side wall of the fourth shell 31, a first signal transceiver 33 is installed at the top of the fourth shell 31, a second signal transceiver 38 is installed on one side of a fifth shell 34, a first groove 35 is formed in the bottom wall of the inner side of the fifth shell 34, a second single chip microcomputer 36 is installed inside the first groove 35, and a touch display screen 37 is installed on the inner side wall of the fifth shell 34; the first single chip microcomputer 32 is convenient to store due to the arrangement of the fourth shell 31, and the water pump 15 and the electromagnetic valve 5 can be controlled according to the received instruction due to the arrangement of the first single chip microcomputer 32; through the setting of touch-control display screen 37, can show the information that second singlechip 36 transmitted.
In this embodiment, specifically: a second groove 48 is formed in the bottom of the fifth shell 34, a storage battery 43 is arranged inside the second groove 48, a sixth shell 44 is sleeved outside the storage battery 43, the top of the sixth shell 44 is connected with the bottom of the storage battery 43 through screw threads, a USB charging port 47 is installed on one side of the sixth shell 44, and a second switch 49 is installed on the top of the fifth shell 34; through the setting of second recess 48 and sixth casing 44, be convenient for deposit battery 43, through the setting of battery 43, can be for second singlechip 36 provides portable power source, through the setting of USB mouth 47 that charges, be convenient for charge battery 43.
In this embodiment, specifically: a water level display 1 is installed on the outer side wall of the wastewater tank 11, a camera 2 is installed at the top of the wastewater tank 11, a sewage discharge pipe 45 penetrates through the front surface of the first shell 12, a valve 46 is installed on the outer side wall of the sewage discharge pipe 45, and a first switch 3 is installed on the outer side wall of the wastewater tank 11; the water level display 1 and the camera 2 are arranged, so that the condition in the wastewater tank 11 can be monitored conveniently; the valve 46 can control the circulation of the sewage pipe 45, and the sludge in the first shell 12 can be conveniently discharged through the sewage pipe 45.
In this embodiment, specifically: a dosing pipe 4 penetrates through one side of the first shell 12, an electromagnetic valve 5 is installed on the outer side wall of the dosing pipe 4, a dosing hopper 6 is communicated with the top of the dosing pipe 4, and second baffles 9 are symmetrically arranged and welded on the inner side wall of the first shell 12 and the outer side wall of the third baffle 18 at equal intervals; through the setting of adding medicine fill 6 and dosing pipe 4, be convenient for add the medicament to the inside of first casing 12, through the setting of solenoid valve 5, be convenient for control the circulation of dosing pipe 4.
In this embodiment, specifically: a first baffle 8 is hinged to the inner side wall of the fourth shell 31, and a lock 7 is installed on one side, far away from the fourth shell 31, of the first baffle 8; through the setting of first baffle 8 and lock 7, can carry out the shutoff with fourth casing 31, prevent that first singlechip 32 is stolen.
In this embodiment, specifically: a first rubber pad 40 is bonded at the joint of the outer side wall of the filter screen plate 22 and the inner side wall of the first sliding chute 21, a third rubber pad 42 is bonded at the joint of the outer side wall of the PP cotton plate 24 and the inner side wall of the second sliding chute 23, and a second rubber pad 41 is bonded at the joint of the outer side wall of the activated carbon plate 26 and the inner side wall of the third sliding chute 25; through the setting of first rubber pad 40 for the junction of the lateral wall of filter plate 22 and the inside wall of first spout 21 is inseparabler, through the setting of second rubber pad 41, makes the junction of the lateral wall of active carbon board 26 and the inside wall of third spout 25 inseparabler, through the setting of third rubber pad 42, makes the junction of the lateral wall of PP cotton board 24 and the inside wall of second spout 23 inseparabler, prevents to leak.
In this embodiment: the model of the water level display 1 is HY-136, the models of the first single chip microcomputer 32 and the second single chip microcomputer 36 are SM1EM331, the first switch 3 is connected with the external commercial power and used for supplying power to the first single chip microcomputer 32, the electrical output end of the first switch 3 is electrically connected with the electrical input end of the first single chip microcomputer 32, the electrical output end of the first single chip microcomputer 32 is respectively electrically connected with the electrical input ends of the water level display 1, the camera 2, the electromagnetic valve 5 and the water inlet pipe 16, the signal transmission end of the first single chip microcomputer 32 is respectively connected with the signal transmission ends of the water level display 1, the camera 2 and the first signal transceiver 33, the electrical output end of the USB charging port 47 is electrically connected with the electrical input end of the storage battery 43, the electrical output end of the storage battery 43 is electrically connected with the electrical input end of the second switch 49, the electrical output end of the second switch 49 is electrically connected with the electrical input end of the second single chip microcomputer 36, the signal transmission end of the second single chip 36 is in signal connection with the touch display screen 37 and the signal transmission end of the second signal transceiver 38, and the signal transmission end of the second signal transceiver 38 is in signal connection with the signal transmission end of the first signal transceiver 33.
Working principle or structural principle, when in use, wastewater treatment chemicals such as flocculating agent and the like are added into the chemical adding hopper 6, the first single chip microcomputer 32 is started through the first switch 3, the first single chip microcomputer 32 starts the water level display 1 and the camera 2, the second single chip microcomputer 36 is started through the second switch 49, the second single chip microcomputer 36 starts the touch control display screen 37 and the second signal transceiver 38, the water level condition in the wastewater tank 11 is monitored through the water level display 1 and the camera 2 and is sent to the first single chip microcomputer 32 in real time, the first single chip microcomputer 32 transmits information to the second signal transceiver 38 through the first signal transceiver 33, the second signal transceiver 38 sends the information to the second single chip microcomputer 36 after receiving the information, the information is displayed through the touch control display screen 37 after being processed by the second single chip microcomputer 36, when the water level reaches a designated position, a worker sends an instruction through the touch control display screen 37, purifying the waste water, after receiving an instruction, a touch display screen 37 is processed by a second single chip microcomputer 36 and then sent to a first signal transceiver 33 through a second signal transceiver 38, the first signal transceiver 33 receives information and then transmits the information to the first single chip microcomputer 32, after receiving the information, the first single chip microcomputer 32 starts a water pump 15 and an electromagnetic valve 5, so that the water pump 15 pumps the waste water in the waste water tank 11 through a water inlet pipe 16, the waste water is injected into the first shell 12 through a water outlet pipe 17, after the electromagnetic valve 5 is opened, a medicament enters the first shell 12 through a medicament adding pipe 4 and then is mixed with the waste water, through the arrangement of a second baffle plate 9, the waste water is blocked, the flow rate of the water is reduced, so that the waste water and the medicament are fully mixed, meanwhile, sufficient time is provided for precipitating waste residues, when the water passes through a filter screen plate 22, the filter screen plate 22 filters the water, when water passes through the PP wool board 24, the PP wool board 24 filters the water again, and when the water passes through the activated carbon board 26, the activated carbon board 26 adsorbs harmful substances in the water, so that the treated water finally enters the inside of the third shell 14.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. The utility model provides a water treatment facilities with remote monitoring control function which characterized in that: the method comprises the following steps:
a main body assembly (10), a filter assembly (20) and a control assembly (30);
the main body component (10) comprises a wastewater tank (11), a first shell (12), a second shell (13), a third shell (14), a water pump (15), a water inlet pipe (16), a water outlet pipe (17) and a third baffle (18);
the filter assembly (20) comprises a first sliding groove (21), a filter screen plate (22), a second sliding groove (23), a PP cotton plate (24), a third sliding groove (25) and an activated carbon plate (26), the first sliding groove (21) is formed between one side of the third baffle plate (18) and the inner side wall of the adjacent first shell (12), the filter screen plate (22) is connected to the inside of the first sliding groove (21) in a sliding mode, the second sliding groove (23) and the third sliding groove (25) are formed in the inner side wall of the second shell (13) respectively, the PP cotton plate (24) is connected to the inside of the second sliding groove (23) in a sliding mode, and the activated carbon plate (26) is connected to the inside of the third sliding groove (25) in a sliding mode;
the control assembly (30) comprises a fourth shell (31), a first single chip microcomputer (32), a first signal transceiver (33), a fifth shell (34), a first groove (35), a second single chip microcomputer (36), a touch display screen (37) and a second signal transceiver (38).
2. The water treatment apparatus having a remote monitoring control function according to claim 1, characterized in that: the water inlet of water pump (15) communicates with inlet tube (16), inlet tube (16) are kept away from the one end of water pump (15) is run through and is had wastewater disposal basin (11), the delivery port intercommunication of water pump (15) has outlet pipe (17), outlet pipe (17) are kept away from the one end of water pump (15) is run through and is had first casing (12), the inboard roof welding of first casing (12) has third baffle (18), first casing (12) are kept away from one side intercommunication of outlet pipe (17) has second casing (13), second casing (13) are kept away from one side intercommunication of first casing (12) has third casing (14).
3. The water treatment apparatus having a remote monitoring control function according to claim 1, characterized in that: the utility model discloses a portable electronic device, including wastewater disposal basin (11), lateral wall fixedly connected with fourth casing (31) of wastewater disposal basin (11), first singlechip (32) are installed to the inside wall of fourth casing (31), first signal transceiver (33) are installed at the top of fourth casing (31), second signal transceiver (38) are installed to one side of fifth casing (34), first recess (35) have been seted up to the inboard diapire of fifth casing (34), the internally mounted of first recess (35) has second singlechip (36), touch-control display screen (37) are installed to the inside wall of fifth casing (34).
4. The water treatment apparatus having a remote monitoring control function according to claim 1, characterized in that: second recess (48) have been seted up to the bottom of fifth casing (34), the inside of second recess (48) is equipped with battery (43), the outside cover of battery (43) is equipped with sixth casing (44), the top of sixth casing (44) with screw threaded connection is passed through to the bottom of battery (43), USB charges mouth (47) is installed to one side of sixth casing (44), second switch (49) is installed at the top of fifth casing (34).
5. The water treatment apparatus having a remote monitoring control function according to claim 1, characterized in that: water level display (1) are installed to the lateral wall of wastewater disposal basin (11), camera (2) are installed at the top of wastewater disposal basin (11), blow off pipe (45) have been link up to the front surface of first casing (12), valve (46) are installed to the lateral wall of blow off pipe (45), first switch (3) are installed to the lateral wall of wastewater disposal basin (11).
6. The water treatment apparatus having a remote monitoring control function according to claim 1, characterized in that: one side of first casing (12) is link up and is had pencil (4) with medicine, solenoid valve (5) are installed to the lateral wall that adds pencil (4), the top intercommunication that adds pencil (4) has fill (6) with medicine, the inside wall of first casing (12) with the equal symmetry equidistance of the lateral wall of third baffle (18) is arranged and is welded second baffle (9).
7. The water treatment apparatus having a remote monitoring control function according to claim 1, characterized in that: the inside wall of fourth casing (31) articulates there is first baffle (8), first baffle (8) are kept away from one side of fourth casing (31) is installed lock (7).
8. The water treatment apparatus having a remote monitoring control function according to claim 1, characterized in that: the joint of the outer side wall of the filter screen plate (22) and the inner side wall of the first sliding groove (21) is bonded with a first rubber pad (40), the joint of the outer side wall of the PP cotton plate (24) and the inner side wall of the second sliding groove (23) is bonded with a third rubber pad (42), and the joint of the outer side wall of the activated carbon plate (26) and the inner side wall of the third sliding groove (25) is bonded with a second rubber pad (41).
CN202120791354.8U 2021-04-19 2021-04-19 Water treatment equipment with remote monitoring and control function Active CN215102450U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120791354.8U CN215102450U (en) 2021-04-19 2021-04-19 Water treatment equipment with remote monitoring and control function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120791354.8U CN215102450U (en) 2021-04-19 2021-04-19 Water treatment equipment with remote monitoring and control function

Publications (1)

Publication Number Publication Date
CN215102450U true CN215102450U (en) 2021-12-10

Family

ID=79266721

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120791354.8U Active CN215102450U (en) 2021-04-19 2021-04-19 Water treatment equipment with remote monitoring and control function

Country Status (1)

Country Link
CN (1) CN215102450U (en)

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