CN216484746U - Ammonia nitrogen digital sensor device for water environment real-time monitoring - Google Patents
Ammonia nitrogen digital sensor device for water environment real-time monitoring Download PDFInfo
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- CN216484746U CN216484746U CN202123077216.2U CN202123077216U CN216484746U CN 216484746 U CN216484746 U CN 216484746U CN 202123077216 U CN202123077216 U CN 202123077216U CN 216484746 U CN216484746 U CN 216484746U
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Abstract
The utility model discloses an ammonia nitrogen digital sensor device for water environment real-time monitoring, which comprises a host and an electrode, wherein the electrode comprises a waterproof joint and an electrode main body, one end of the electrode main body is provided with the waterproof joint, the waterproof joint is connected with the host, and the host is provided with an accommodating component; the utility model has the advantages that: through the designed containing assembly, when the host and the electrode are moved, the movable seat is pulled outwards, the movable seat is separated from the stable seat, the electrode is horizontally inserted into the stable seat, the movable seat is taken up, the protrusion on the movable seat is inserted into the slot formed in the top of the stable seat and is tightly attached to the protrusion through the rubber block, the movable seat and the stable seat are fastened, the electrode is contained, when the host and the electrode are moved, the electrode can be moved only by moving the host, and the use convenience is improved; through the firm subassembly of design, realized safety cover and electrode main part quick assembly disassembly for the dismouting safety cover is more convenient.
Description
Technical Field
The utility model belongs to the technical field of water environment monitoring, concretely relates to ammonia nitrogen digital sensor device for water environment real-time supervision.
Background
The ammonia nitrogen digital sensor is widely applied to monitoring and control of enterprise sewage, domestic sewage and surface water; the existing ammonia nitrogen digital sensor device for monitoring the water environment in real time has the following defects:
the electrode is connected with the main machine, and when the electrode is moved, the electrode and the main machine need to be held by two hands respectively, so that the inconvenience of moving is increased.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an ammonia nitrogen digital sensor device for water environment real-time supervision to the electrode that proposes in solving above-mentioned background links to each other with the host computer, during the removal, needs to hold electrode, host computer respectively through two hands, has increased the inconvenient problem of removal.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an ammonia nitrogen digital sensor device for water environment real-time supervision, includes host computer and electrode, the electrode includes water joint, electrode main part, the one end of electrode main part is provided with water joint, and water joint and host computer are connected, be provided with storage assembly on the host computer, and storage assembly includes stable seat, sliding seat, arch, slot, block rubber, stable seat is fixed in the top of host computer, and the slot of symmetric distribution is seted up at the top of stable seat, the block rubber of symmetric distribution is installed to the medial surface of slot, the top of stable seat is arranged in to the sliding seat, and the bottom of sliding seat is provided with the arch of inserting in the slot, arch and block rubber offset, the electrode is arranged in between stable seat and the sliding seat.
Preferably, the stabilizing seat and the host are fixed through bolts, and the protrusions are of cuboid structures.
Preferably, the front surface of the main machine is provided with a display screen, and the front surface of the main machine is provided with a plurality of keys on one side of the display screen.
Preferably, the electrode main body is provided with a protective cover in a detachable mode, and the protective cover and the electrode main body are provided with stabilizing assemblies.
Preferably, the firm subassembly includes projection, recess, spring, wears the mouth, the mouth is worn to the surface of safety cover is seted up the mouth of wearing of symmetric distribution, the recess of symmetric distribution is seted up to the side surface of electrode main part, the one end embedding recess of projection, the recess is stretched out to the other end to run through the mouth, the spring sets up between projection and recess, be provided with the slip subassembly in projection and the electrode main part.
Preferably, the sliding assembly comprises a sliding groove and a sliding block, the outer side face of the embedding end of the convex column is provided with the sliding block, the sliding groove is formed in the surface of the electrode main body, and the sliding block is connected with the sliding groove in a sliding mode.
Compared with the prior art, the beneficial effects of the utility model are that:
(1) through the designed containing assembly, when the host and the electrode are moved, the movable seat is pulled outwards, the movable seat is separated from the stable seat, the electrode is horizontally inserted into the stable seat, the movable seat is taken up, the protrusion on the movable seat is inserted into the slot formed in the top of the stable seat and is tightly attached to the protrusion through the rubber block, the movable seat and the stable seat are fastened, the electrode is contained, when the host and the electrode are moved, the electrode can be moved only by moving the host, and the use convenience is improved;
(2) through the firm subassembly of design, realized safety cover and electrode main part quick assembly disassembly for the dismouting safety cover is more convenient.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the cross-sectional structure of the electrode main body and the protective cover of the present invention;
fig. 3 is an enlarged schematic structural diagram of a region E in fig. 2 according to the present invention;
FIG. 4 is a schematic side view of the connection between the stationary seat and the movable seat of the present invention;
in the figure: 1. a host; 2. a stabilizing base; 3. a movable seat; 4. a display screen; 5. a waterproof joint; 6. an electrode body; 7. a convex column; 8. a protective cover; 9. pressing a key; 10. a sliding groove; 11. a groove; 12. a spring; 13. a slider; 14. perforating; 15. a protrusion; 16. a slot; 17. a rubber block.
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.
Referring to fig. 1, fig. 2, fig. 3 and fig. 4, the present invention provides a technical solution: an ammonia nitrogen digital sensor device for monitoring water environment in real time comprises a host 1 and an electrode, wherein the electrode comprises a waterproof joint 5 and an electrode main body 6, one end of the electrode main body 6 is provided with the waterproof joint 5, the waterproof joint 5 is connected with the host 1, the host 1 is provided with a storage assembly, the storage assembly comprises a stable seat 2, a movable seat 3, a bulge 15, a slot 16 and a rubber block 17, the stable seat 2 is fixed at the top of the host 1, the top of the stable seat 2 is provided with symmetrically distributed slots 16, the inner side surfaces of the slots 16 are provided with the symmetrically distributed rubber blocks 17, the movable seat 3 is arranged at the top of the stable seat 2, the bottom of the movable seat 3 is provided with the bulge 15 inserted into the slot 16, the bulge 15 and the rubber block 17 are abutted against each other, the electrode is arranged between the stable seat 2 and the movable seat 3, when the host 1 and the electrode are moved, the movable seat 3 is pulled outwards, and the movable seat 3 is separated from the stable seat 2, electrode level inserts firm seat 2, picks up movable seat 3 to make arch 15 on the movable seat 3 insert in the slot 16 that firm seat 2 tops was seted up, and hug closely through block rubber 17 and arch 15, make movable seat 3 and firm seat 2 fastening, play the accomodating of counter electrode, when making removal host computer 1 and electrode, only need remove host computer 1 and can realize the removal of electrode, improved the convenience of using.
In this embodiment, preferably, the fixing base 2 and the host 1 are fixed by bolts, so that the fixing base 2 and the host 1 are stably installed, and the protrusion 15 is of a rectangular parallelepiped structure.
In this embodiment, preferably, the display screen 4 is installed on the front surface of the main unit 1, and the plurality of keys 9 are disposed on one side of the display screen 4 on the front surface of the main unit 1, so that convenience in using the sensor device is improved.
In this embodiment, preferably, the electrode main body 6 is detachably provided with the protective cover 8, the protective cover 8 and the electrode main body 6 are provided with the stabilizing components, each stabilizing component comprises a convex column 7, a groove 11, a spring 12 and a through opening 14, the surface of the protective cover 8 is provided with the through openings 14 which are symmetrically distributed, the side surface of the electrode main body 6 is provided with the grooves 11 which are symmetrically distributed, one end of each convex column 7 is embedded into the groove 11, the other end of each convex column 7 extends out of the groove 11 and penetrates through the through opening 14, the spring 12 is arranged between the convex column 7 and the groove 11, when the protective cover 8 is installed, the protective cover 8 is inserted into the electrode main body 6, the convex column 7 is extruded when the protective cover 8 is inserted, the spring 12 is compressed after the convex column 7 is extruded, the spring 12 is reset after being compressed and drives the convex column 7 to move until the convex column 7 penetrates out of the through opening 14 which is arranged on the surface of the protective cover 8, so that the protective cover 8 is installed more efficiently, when the protective cover 8 needs to be disassembled, the convex column 7 is pressed, the convex column 7 is pressed to compress the spring 12, so that the convex column 7 is separated from the through opening 14, the protective cover 8 is pulled outwards, and the protective cover 8 can be quickly detached; be provided with the slip subassembly on projection 7 and the electrode main part 6, the slip subassembly includes sliding tray 10 and sliding block 13, and the embedding end lateral surface of projection 7 is provided with sliding block 13, and sliding tray 10 has been seted up on the surface of electrode main part 6, sliding block 13 and sliding tray 10 sliding connection, and when projection 7 moved about, sliding block 13 slided along sliding tray 10, had increased the direction when projection 7 moved about.
The electrode in this application is of type LH-DY 06; host 1 is model number LH-YB 08.
The utility model discloses a theory of operation and use flow: when the host 1 and the electrode are moved, the movable seat 3 is pulled outwards, the movable seat 3 is separated from the stable seat 2, the electrode is horizontally inserted into the stable seat 2, the movable seat 3 is taken up, the bulge 15 on the movable seat 3 is inserted into the slot 16 formed in the top of the stable seat 2 and is tightly attached to the bulge 15 through the rubber block 17, the movable seat 3 and the stable seat 2 are fastened, the electrode is accommodated, and when the host 1 and the electrode are moved, the electrode can be moved only by moving the host 1;
when the protective cover 8 is installed, the protective cover 8 is inserted into the electrode main body 6, the convex column 7 is extruded when the protective cover 8 is inserted, the spring 12 is compressed after the convex column 7 is extruded, the spring 12 is reset after being compressed, and the convex column 7 is driven to move until the convex column 7 penetrates out of the penetrating opening 14 formed in the surface of the protective cover 8, so that the protective cover 8 is installed more efficiently;
the electrodes are placed in the water to be monitored and the keys 9 are pressed to operate the sensor device and display the monitored data on the display screen 4.
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 (6)
1. The utility model provides an ammonia nitrogen digital sensor device for water environment real-time supervision, includes host computer (1) and electrode, the electrode includes water joint (5), electrode main part (6), the one end of electrode main part (6) is provided with water joint (5), and water joint (5) and host computer (1) are connected, its characterized in that: be provided with the storage assembly on host computer (1), and the storage assembly includes firm seat (2), sliding seat (3), arch (15), slot (16), block rubber (17), the top of stable seat (2) is fixed in host computer (1), and slot (16) of symmetric distribution are seted up at the top of firm seat (2), block rubber (17) of symmetric distribution are installed to the medial surface of slot (16), the top of stable seat (2) is arranged in to sliding seat (3), and the bottom of sliding seat (3) is provided with arch (15) of inserting in slot (16), arch (15) and block rubber (17) offset, the electrode is arranged in between firm seat (2) and sliding seat (3).
2. The ammonia nitrogen digital sensor device for the real-time monitoring of the water environment according to claim 1, characterized in that: the stabilizing seat (2) and the main machine (1) are fixed through bolts, and the bulges (15) are of cuboid structures.
3. The ammonia nitrogen digital sensor device for the real-time monitoring of the water environment according to claim 1, characterized in that: the front surface mounting of host computer (1) has display screen (4), and the front surface of host computer (1) is located one side of display screen (4) and is provided with a plurality of buttons (9).
4. The ammonia nitrogen digital sensor device for the real-time monitoring of the water environment according to claim 1, characterized in that: the electrode assembly is characterized in that a protective cover (8) is arranged on the electrode main body (6) in a dismounting mode, and a stabilizing assembly is arranged on the protective cover (8) and the electrode main body (6).
5. The ammonia nitrogen digital sensor device for water environment real-time monitoring according to claim 4, characterized in that: firm subassembly includes projection (7), recess (11), spring (12), wears mouthful (14), wear mouthful (14) of symmetric distribution is seted up on the surface of safety cover (8), recess (11) of symmetric distribution is seted up to the side surface of electrode main part (6), recess (11) are inlayed to the one end of projection (7), and the other end stretches out recess (11) to run through and wear mouthful (14), spring (12) set up between projection (7) and recess (11), be provided with the slip subassembly on projection (7) and electrode main part (6).
6. The ammonia nitrogen digital sensor device for the real-time monitoring of the water environment according to claim 5, characterized in that: the sliding assembly comprises a sliding groove (10) and a sliding block (13), the sliding block (13) is arranged on the outer side face of the embedding end of the convex column (7), the sliding groove (10) is formed in the surface of the electrode main body (6), and the sliding block (13) is connected with the sliding groove (10) in a sliding mode.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123077216.2U CN216484746U (en) | 2021-12-08 | 2021-12-08 | Ammonia nitrogen digital sensor device for water environment real-time monitoring |
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CN202123077216.2U CN216484746U (en) | 2021-12-08 | 2021-12-08 | Ammonia nitrogen digital sensor device for water environment real-time monitoring |
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CN216484746U true CN216484746U (en) | 2022-05-10 |
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CN202123077216.2U Active CN216484746U (en) | 2021-12-08 | 2021-12-08 | Ammonia nitrogen digital sensor device for water environment real-time monitoring |
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2021
- 2021-12-08 CN CN202123077216.2U patent/CN216484746U/en active Active
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