Intelligent water quality analyzer
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LEILANG TECHNOLOGY (NANJING) CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-08-07
AI Technical Summary
[0003]现有技术的目前一些水质分析仪表在户外环境用于水质检测分析时,水质分析仪表通常会安装在户外环境中,虽然水质分析仪表设置了防水外壳,此种防水外壳在多次维护拆表过程中,会导致水质分析仪表的防水性能下降,使其防水外壳无法应对户外的潮湿环境,导致其在长期使用过程中容易遭遇雨水潮湿环境影响而故障,为此,我们提出一种智能水质分析仪表
[0018] This utility model provides a waterproof mechanism by setting a screen-equipped housing on the main body of the water quality analyzer. The sleeve of the waterproof mechanism is attached to the outside of the main body of the water quality analyzer. Then, a double-mouth cylindrical cover with a rear sealing cavity cover is assembled outside the sleeve to seal the rear housing. A T-shaped glue plate is inserted into the sleeve for front sealing. This gives the main body of the water quality analyzer and its rear housing an additional external waterproof structure. The waterproof mechanism and the waterproof housing of the main body of the water quality analyzer form a double waterproof guarantee, which improves the waterproof performance of the main body of the water quality analyzer after multiple disassembly and maintenance.
Smart Images

Figure CN224611014U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water quality analysis instrument technology, and in particular to an intelligent water quality analysis instrument. Background Technology
[0002] Water quality analyzers are instruments used to measure and analyze various physical, chemical, and biological parameters in water bodies to assess water quality. They detect water quality by having electrodes in contact with the water sample and provide quantitative data on water quality, helping users understand the quality and pollution level of the water body. They are equipped with intelligent built-in software that can analyze water quality parameters and provide them to water quality analysts.
[0003] Currently, some existing water quality analyzers are used for water quality testing and analysis in outdoor environments. Although these analyzers are equipped with waterproof housings, the waterproof performance of these housings deteriorates during repeated maintenance and disassembly, making them unable to withstand the humid outdoor environment. This leads to their susceptibility to malfunctions due to rain and humidity during long-term use. Therefore, we propose an intelligent water quality analyzer. Utility Model Content
[0004] The main objective of this invention is to provide an intelligent water quality analyzer. A waterproof mechanism is installed on the screen-covered housing of the water quality analyzer body. The waterproof mechanism's retaining frame is externally attached to the water quality analyzer body. Subsequently, a double-mouth cylindrical cover with a rear sealing cavity is assembled outside the retaining frame to seal the rear housing. A T-shaped adhesive insert is inserted into the retaining frame for front sealing, thus providing an additional external waterproof structure for the water quality analyzer body and its rear housing. The waterproof mechanism and the waterproof housing of the water quality analyzer body form a double waterproof guarantee, improving the waterproof performance of the water quality analyzer body after repeated disassembly and maintenance, effectively solving the problems in the prior art.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] A smart water quality analyzer includes a water quality analyzer body and a top pipe. A rear casing is installed on the rear shell of the water quality analyzer body, and a waterproof mechanism is also included. The waterproof mechanism includes a retaining frame, a T-shaped adhesive insert, a double-port cylindrical box, and a rear sealing cover. The retaining frame is glued to the outer side of the casing of the water quality analyzer body, and an upper insertion port is opened on the top of the retaining frame on one side of the water quality analyzer body. An inner groove is opened in the retaining frame below the upper insertion port, and a T-shaped adhesive insert is inserted between the upper insertion port and the inner groove. A double-port cylindrical box is fitted outside the retaining frame behind the T-shaped adhesive insert and covers the rear casing. A rear sealing cover is fitted inside the rear opening of the double-port cylindrical box away from the retaining frame. A mounting ear protrudes from the outer side of the double-port cylindrical box near the rear sealing cover, and a wiring groove for mounting a wire clamping block is opened through the bottom of the double-port cylindrical box near the rear sealing cover. The wire clamping block is integrally formed on the inner cover surface of the rear sealing cover.
[0007] Furthermore, a bottom through groove is provided at the bottom of the double-hole cylindrical box below the top pipe, and a rubber air vent seat is inserted and bonded into the groove. A conical air cavity is provided between the seat plate of the rubber air vent seat and the vertical column.
[0008] By adopting the above technical solution, the bottom of the double-port cylindrical box can be inserted into the seat plate of the rubber air vent base through the bottom through groove, and then the water quality analysis instrument body inside the double-port cylindrical box can dissipate heat downward from the conical air cavity of the rubber air vent base.
[0009] Furthermore, the vertical plate of the T-shaped adhesive insert is inserted into the upper insertion port and the inner groove, and the top of the vertical plate of the T-shaped adhesive insert is integrally formed with an adhesive cover sheet covering the top of the sleeve frame.
[0010] By adopting the above technical solution, the T-shaped adhesive insert can be inserted into the inner groove of the sleeve frame from the upper insertion port, thereby sealing the frame opening of the sleeve frame, and the adhesive cover of the T-shaped adhesive insert can cover the upper insertion port of the sleeve frame for waterproofing.
[0011] Furthermore, a semi-circular truncated groove is formed on the outer surface of the pressure block away from the rear sealing cavity cover, and a semi-circular truncated groove is formed in the wiring groove on one side of the pressure block.
[0012] By adopting the above technical solution, the pressure block and the semi-circular truncated groove of the wiring groove can be connected to form a truncated groove, which makes it convenient for the wires led out from the wiring port at the bottom of the rear case to extend downward from the truncated groove for wiring.
[0013] Furthermore, the ear plates for mounting the ears are symmetrically protruding on both sides of the double-mouthed cylindrical box, and mounting holes are provided through the surface of the ear plates for mounting the ears.
[0014] By adopting the above technical solution, when the double-port cassette is installed in the chassis of water quality monitoring equipment or on the inner wall of some monitoring rooms, bolts can be screwed through the mounting holes of the mounting ears into the installation position of the water quality analysis instrument body.
[0015] Furthermore, the top of the double-mouthed cylindrical box has a protruding top tube, and a rubber plug is inserted into the top tube;
[0016] By adopting the above technical solution, after the double-mouth cylindrical box is assembled with the rear sealing cover and the sleeve frame into a waterproof box cavity, large desiccant particles can be poured from the top pipe into the space between the double-mouth cylindrical box and the rear casing, thereby adding a moisture-proof structure to the outside of the rear casing.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] This utility model provides a waterproof mechanism by setting a screen-equipped housing on the main body of the water quality analyzer. The sleeve of the waterproof mechanism is attached to the outside of the main body of the water quality analyzer. Then, a double-mouth cylindrical cover with a rear sealing cavity cover is assembled outside the sleeve to seal the rear housing. A T-shaped glue plate is inserted into the sleeve for front sealing. This gives the main body of the water quality analyzer and its rear housing an additional external waterproof structure. The waterproof mechanism and the waterproof housing of the main body of the water quality analyzer form a double waterproof guarantee, which improves the waterproof performance of the main body of the water quality analyzer after multiple disassembly and maintenance.
[0019] Furthermore, desiccant granules can be poured into the top tube of the double-port container to enhance the moisture-proof structure, and the rubber vent base at the bottom of the double-port container ensures heat dissipation while also blocking external moisture to a certain extent. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of an intelligent water quality analysis instrument according to the present invention.
[0021] Figure 2 This is a schematic diagram showing the disassembled frame, T-shaped adhesive insert, and double-mouth cylinder of an intelligent water quality analysis instrument according to this utility model.
[0022] Figure 3 This is an exploded view of the waterproof mechanism of an intelligent water quality analysis instrument according to this utility model.
[0023] Figure 4 This is a schematic diagram showing the disassembly of the rear sealing chamber cover and the double-mouth cylinder of an intelligent water quality analysis instrument according to this utility model.
[0024] In the diagram: 1. Water quality analyzer body; 2. Rear casing; 3. Waterproofing mechanism; 4. Sleeve stop frame; 5. Upper insertion port; 6. Inner groove; 7. T-shaped rubber insert plate; 8. Double-port cylindrical box; 9. Mounting ear; 10. Rear sealing cover; 11. Cable clamping block; 12. Wiring groove; 13. Bottom through groove; 14. Rubber exhaust seat; 15. Top pipe; 16. Rubber plug. Detailed Implementation
[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0026] like Figure 1-4 As shown, an intelligent water quality analyzer includes a water quality analyzer body 1 and a top pipe 15. A rear casing 2 is installed on the rear shell of the water quality analyzer body 1. It also includes a waterproof mechanism 3, which includes a retaining frame 4, a T-shaped adhesive insert 7, a double-port cylindrical box 8, and a rear sealing cover 10. The retaining frame 4 is glued to the outer side of the casing of the water quality analyzer body 1. An upper insertion port 5 is opened at the top of the retaining frame 4 on one side of the water quality analyzer body 1. An inner groove 6 is opened inside the retaining frame 4 below the upper insertion port 5. A T-shaped adhesive plate 7 is inserted between the upper insertion port 5 and the inner groove 6. A double-mouth cylindrical box 8 is fitted outside the sleeve frame 4 behind the T-shaped adhesive plate 7 and covers the rear casing 2. A rear sealing cover 10 is fitted inside the rear box opening of the double-mouth cylindrical box 8 away from the sleeve frame 4. A mounting ear 9 protrudes from the outer box of the double-mouth cylindrical box 8 near the rear sealing cover 10. A wiring groove 12 for mounting a wire pressing block 11 is opened through the bottom of the double-mouth cylindrical box 8 near the rear sealing cover 10. The wire pressing block 11 is integrally formed on the inner cover surface of the rear sealing cover 10.
[0027] Among them, the bottom of the double-mouth cylindrical box 8 below the top pipe 15 is provided with a bottom through groove 13, and a rubber air vent seat 14 is inserted and bonded into the groove of the bottom through groove 13. A conical air cavity is provided between the seat plate of the rubber air vent seat 14 and the vertical column.
[0028] By adopting the above technical solution, the bottom of the double-port cylindrical box 8 can be inserted into the seat plate of the rubber air vent 14 through the bottom through groove 13, and then the water quality analysis instrument body 1 inside the double-port cylindrical box 8 can dissipate heat downward from the conical air cavity of the rubber air vent 14.
[0029] The vertical plate of the T-shaped adhesive insert 7 is inserted into the upper insertion port 5 and the inner groove 6, and the top of the vertical plate of the T-shaped adhesive insert 7 is integrally formed with an adhesive cover plate covering the top of the sleeve frame 4.
[0030] By adopting the above technical solution, the T-shaped adhesive insert 7 can be inserted into the inner groove 6 inside the sleeve frame 4 from the upper insertion port 5, thereby sealing the frame opening of the sleeve frame 4, and the adhesive cover of the T-shaped adhesive insert 7 can cover the upper insertion port 5 of the sleeve frame 4 for waterproofing.
[0031] The outer surface of the wire pressing block 11 away from the rear sealing cavity cover 10 is provided with a semi-circular truncated groove, and the wiring groove 12 on one side of the wire pressing block 11 is provided with a semi-circular truncated groove.
[0032] By adopting the above technical solution, the wire pressing block 11 and the semi-circular truncated groove of the wiring groove 12 can be connected to form a truncated groove, which facilitates the wiring led out from the wiring port at the bottom of the rear case 2 to extend downward from the truncated groove for wiring.
[0033] Among them, the ear plates of the mounting ear 9 are symmetrically protruding on both sides of the box body of the double-mouth cylindrical box 8, and the surface of the ear plates of the mounting ear 9 is provided with mounting holes.
[0034] By adopting the above technical solution, when the double-mouth cassette 8 is installed in the water quality monitoring equipment chassis or some monitoring room walls, bolts can be screwed through the mounting holes of the mounting ears 9 into the installation position of the water quality analysis instrument body 1.
[0035] The top of the double-mouthed cylindrical box 8 has a protruding top tube 15, and a rubber plug 16 is inserted into the top tube 15.
[0036] By adopting the above technical solution, after the double-mouth cylindrical box 8, the rear sealing cover 10, and the sleeve frame 4 are assembled into a waterproof box cavity, large desiccant particles can be poured from the top pipe 15 into the space between the double-mouth cylindrical box 8 and the rear casing 2, thereby adding a moisture-proof structure to the outside of the rear casing 2.
[0037] It should be noted that this utility model is an intelligent water quality analysis instrument. A waterproof mechanism 3 is provided at the screen housing of the water quality analysis instrument body 1. The sleeve frame 4 of the waterproof mechanism 3 can be clamped and glued to the outside of the screen housing of the water quality analysis instrument body 1. Then, the double-port cylindrical box 8 can be tightly fitted over the sleeve frame 4, so that the rear housing 2 is covered by the double-port cylindrical box 8. Subsequently, the tail cover screw of the rear housing 2 can be removed from the double-port cylindrical box 8 to open the tail cover, thereby introducing the external circuit from the wiring slot 12 of the double-port cylindrical box 8 upward into the rear housing 2. Inside the tail cap, and under the guidance of professional electrical technicians, wiring is performed as needed. The tail cap can then be re-locked to the rear case 2. Next, the rear sealing cover 10 can be inserted into the double-port cylindrical box 8 and pressed against the rear case 2, allowing the wire clamping block 11 to be inserted into the wiring groove 12 to press against the wires. Then, the T-shaped rubber insert 7 can be inserted from the upper insertion port 5 into the inner groove 6 within the sleeve stop frame 4, thereby sealing the frame opening of the sleeve stop frame 4. The rubber cover of the T-shaped rubber insert 7 can cover the upper insertion port 5 of the sleeve stop frame 4 for waterproofing. The double-port cylindrical box 8 and the rear sealing cavity... After the cover 10 and the sleeve frame 4 are assembled into a waterproof box cavity, large desiccant particles can be poured into the space between the double-port cylindrical box 8 and the rear casing 2 from the top pipe 15, and the rubber stopper 16 is inserted into the top pipe 15, thereby adding a moisture-proof structure to the outside of the rear casing 2. The bottom of the double-port cylindrical box 8 can be fitted with the seat plate of the rubber air vent 14 through the bottom through groove 13. Then, the water quality analysis instrument body 1 inside the double-port cylindrical box 8 can dissipate heat downward from the conical air cavity of the rubber air vent 14. The double-port cylindrical box 8 is installed on the wall of the water quality monitoring equipment box or some monitoring room. During installation, bolts can be screwed through the mounting holes of mounting ears 9 into the preset mounting positions of the water quality analyzer body 1. When disassembling the water quality analyzer body 1, the mounting bolts at mounting ears 9 can be removed. Then, the rear sealing cover 10 can be pulled out from the double-port cylindrical box 8 to remove the desiccant granules for replacement. The power lines at the rear casing 2 can be disconnected. Then, the double-port cylindrical box 8 can be pulled out from the sleeve stop frame 4. After that, the rear casing 2 and the water quality analyzer body 1 can be disassembled and maintained normally.
[0038] It should be noted that this utility model is an intelligent water quality analysis instrument. All components in this utility model are known to those skilled in the art, and their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods.
[0039] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. An intelligent water quality analyzer, comprising a water quality analyzer body (1) and a top pipe (15), wherein a rear casing (2) is mounted on the rear surface of the water quality analyzer body (1), characterized in that: It also includes a waterproof mechanism (3), which includes a sleeve frame (4), a T-shaped adhesive insert (7), a double-mouth cylinder (8), and a rear sealing cover (10). The sleeve frame (4) is glued to the outer side of the housing of the water quality analyzer body (1), and an upper insertion port (5) is opened on the top of the sleeve frame (4) on one side of the water quality analyzer body (1). An inner groove (6) is opened in the sleeve frame (4) below the upper insertion port (5), and a T-shaped adhesive insert (7) is inserted between the upper insertion port (5) and the inner groove (6). A double-mouth cylindrical box (8) is fitted outside the sleeve frame (4) behind the rubber insert plate (7) and covers the rear cover (2). A rear sealing cover (10) is fitted inside the rear box opening of the double-mouth cylindrical box (8) away from the sleeve frame (4). The double-mouth cylindrical box (8) has a mounting ear (9) protruding on the outer box body near the rear sealing cover (10). A wiring groove (12) for mounting a wire clamping block (11) is opened through the bottom of the double-mouth cylindrical box (8) near the rear sealing cover (10). The wire clamping block (11) is integrally formed on the inner cover surface of the rear sealing cover (10).
2. The intelligent water quality analysis instrument according to claim 1, characterized in that: The bottom of the double-mouth cylindrical box (8) below the top pipe (15) is provided with a bottom through groove (13), and a rubber air vent seat (14) is inserted and bonded into the groove of the bottom through groove (13). A conical air cavity is provided between the seat plate of the rubber air vent seat (14) and the vertical column.
3. The intelligent water quality analysis instrument according to claim 1, characterized in that: The vertical plate of the T-shaped adhesive insert (7) is inserted into the upper insertion port (5) and the inner groove (6), and the top of the vertical plate of the T-shaped adhesive insert (7) is integrally formed with an adhesive cover plate covering the top of the sleeve frame (4).
4. The intelligent water quality analysis instrument according to claim 1, characterized in that: The outer surface of the pressure block (11) away from the rear sealing cover (10) is provided with a semi-circular truncated groove, and the wiring groove (12) on one side of the pressure block (11) is provided with a semi-circular truncated groove.
5. The intelligent water quality analysis instrument according to claim 1, characterized in that: The mounting ear (9) has two sets of ear plates that symmetrically protrude on both sides of the double-mouthed cylindrical box (8), and mounting holes are provided through the surface of the mounting ear (9).
6. The intelligent water quality analysis instrument according to claim 1, characterized in that: The top of the double-mouthed cylindrical box (8) has a protruding top tube (15), and a rubber plug (16) is inserted inside the top tube (15).