Anti-inclination mechanism of hydrographic survey monitoring equipment
By using a worm gear mechanism and a rotating disk structure, the tilting problem of hydrological measurement and monitoring equipment when used outdoors was solved, achieving stable fixation of equipment of different specifications and reducing fixing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2026-03-24
AI Technical Summary
Existing hydrological measurement and monitoring equipment is prone to tilting due to wind and rain when used outdoors, leading to data errors. In addition, it requires the preparation of clamping rings of different diameters to fix equipment of different specifications, which increases the processing cost.
It adopts a worm gear and worm wheel mechanism and a rotating disk structure. The rotating rod drives the worm and worm wheel to mesh, which drives the rotating disk to rotate. The slider moves in the groove to achieve clamping and reinforcement of hydrological measurement and monitoring equipment, and can be adapted to the fixing of equipment of different specifications.
It enables the stable fixing of hydrological measurement and monitoring equipment of different specifications, reduces fixing costs, reduces equipment tilting, and improves operational stability.
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Figure CN224033423U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to hydrological measurement monitoring equipment field, specifically is a kind of anti-inclination mechanism of hydrological measurement monitoring equipment. BACKGROUND
[0002] Hydrological measurement monitoring equipment is a kind of instrument and equipment specially used to measure and record various physical and chemical parameters in river, lake, reservoir, groundwater and other hydrological environment, and its core function is to convert field environment parameters into analysable data, support the precision of hydrological decision, and hydrological measurement monitoring equipment can monitor, record water level, flow, rainfall and other parameters;
[0003] In prior art, hydrological measurement monitoring equipment can effectively monitor river, lake and other hydrological environment, and record the data monitored, and generally, hydrological measurement monitoring equipment is arranged outdoors, which makes hydrological measurement monitoring equipment prone to be affected by wind and rain due to long-time outdoor use, and further leads to the inclination of hydrological measurement monitoring equipment, affects the data monitored and recorded, and generates certain error, and generally, in order to reduce the inclination of hydrological measurement monitoring equipment, two clamping ring blocks are installed on the surface of hydrological measurement monitoring equipment, and the clamping ring blocks are connected with ground or concrete-poured bottom plate, but the size of clamping ring block is generally fixed, which makes the staff need to prepare clamping ring blocks matched with hydrological measurement monitoring equipment when fixing hydrological measurement monitoring equipment by clamping ring blocks to reduce the inclination angle thereof, and when the staff needs to reinforce multiple or various hydrological measurement monitoring equipment, different-diameter clamping ring blocks need to be prepared, and further, the cost of processing and anti-inclination of hydrological measurement monitoring equipment is increased. CONTENT OF UTILITY MODEL
[0004] In order to make up for the deficiency of prior art, generally, the size of clamping ring block is fixed, which makes the staff need to prepare clamping ring blocks matched with hydrological measurement monitoring equipment when fixing hydrological measurement monitoring equipment by clamping ring blocks to reduce the inclination angle thereof, and when the staff needs to reinforce multiple or various hydrological measurement monitoring equipment, different-diameter clamping ring blocks need to be prepared, and further, the cost of processing and anti-inclination of hydrological measurement monitoring equipment is increased, and other problems, the utility model provides a kind of anti-inclination mechanism of hydrological measurement monitoring equipment.
[0005] The technical scheme adopted by the utility model to solve its technical problems is as follows: an anti-inclination mechanism of hydrological measurement monitoring equipment, including concrete ground plate, the top of the concrete ground plate is fixedly connected with hydrological measurement monitoring equipment body, the top of the concrete ground plate is provided with reinforcing mechanism;
[0006] The reinforcing mechanism comprises a connecting ring block, an inner cavity of the connecting ring block is arranged on the surface of the hydrological monitoring equipment body, the top of the concrete floor is provided with a connecting assembly, the inner cavity of the connecting ring block is rotationally connected with a rotating ring block and a rotating rod, the surface of the rotating ring block is fixedly connected with a worm wheel, the surface of the rotating rod is fixedly connected with a worm, the teeth of the worm wheel and the teeth of the worm are in meshing connection, the inner cavity of the connecting ring block is rotationally connected with a rotating disc, the bottom of the rotating disc is fixedly connected with the top of the rotating ring block, the top of the rotating disc is provided with an inclined groove, the top of the connecting ring block is provided with a sliding groove, the inner cavity of the inclined groove is slidingly connected with a sliding ring block, the top of the sliding ring block is fixedly connected with a sliding block, the surface of the sliding block is slidingly connected with the inner cavity of the sliding groove, and the top of the sliding block is fixedly connected with a reinforcing block.
[0007] Preferably, the connecting assembly comprises a first fixed plate, the bottom of the first fixed plate is fixedly connected with the top of the concrete floor, and the top of the first fixed plate is rotationally connected with a connecting rotating plate.
[0008] Preferably, the inner cavity of the connecting ring block is provided with a limiting groove, one side of the sliding block is fixedly connected with a first limiting block, and the surface of the first limiting block is slidingly connected with the inner cavity of the limiting groove.
[0009] Preferably, the inner cavity of the connecting ring block is fixedly connected with a limiting block, the bottom of the rotating disc is provided with a limiting groove, and the surface of the limiting block is slidingly connected with the inner cavity of the limiting groove.
[0010] Preferably, the surface of the connecting ring block is fixedly connected with a second fixed plate, the inner cavity of the second fixed plate is slidingly connected with a pull rod, one end of the pull rod is fixedly connected with a rack, a spring is fixedly connected between one side of the second fixed plate and one side of the rack, the surface of the spring is sleeved on the surface of the pull rod, the surface of the rotating rod is fixedly connected with a gear, and the teeth of the gear and the teeth of the rack are in meshing connection.
[0011] Preferably, the inner cavity of the connecting ring block is fixedly connected with a second limiting block, and the inner cavity of the second limiting block is rotationally connected with the surface of the rotating rod.
[0012] Preferably, the top of the concrete floor is fixedly connected with a reinforcing plate, and the top of the reinforcing plate is fixedly connected with the bottom of the connecting ring block.
[0013] The hydrological monitoring equipment body is provided with the reinforcing mechanism, the reinforcing mechanism is arranged on the surface of the hydrological monitoring equipment body, the reinforcing mechanism is connected with the connecting ring block, the connecting ring block is connected with the rotating ring block, the rotating ring block is connected with the worm wheel, the worm wheel is connected with the worm, the worm is connected with the rotating rod, the rotating rod is connected with the rotating disc, the rotating disc is connected with the inclined groove, the inclined groove is connected with the sliding ring block, the sliding ring block is connected with the sliding block, the sliding block is connected with the reinforcing block, the reinforcing mechanism is connected with the first fixed plate, the first fixed plate is connected with the connecting rotating plate, the connecting rotating plate is connected with the connecting ring block, the connecting ring block is connected with the first limiting block, the first limiting block is connected with the limiting groove, the connecting ring block is connected with the limiting block, the limiting block is connected with the limiting groove, the connecting ring block is connected with the second fixed plate, the second fixed plate is connected with the pull rod, the pull rod is connected with the rack, the spring is connected between one side of the second fixed plate and one side of the rack, the rotating rod is connected with the gear, the gear is connected with the rack, the connecting ring block is connected with the second limiting block, the second limiting block is connected with the rotating rod, the top of the concrete floor is connected with the reinforcing plate, and the reinforcing plate is connected with the connecting ring block.
[0014] The utility model discloses a rotating rod is rotated, can drive the rotation of worm, and utilize the intermeshing of worm and worm wheel, drive the rotation of rotating disc, and the rotation of rotating disc can utilize the connection of sliding block and sliding slot, drive the movement of sliding block and reinforcing block, realize the clamping and reinforcing of hydrological measurement monitoring equipment body, when the staff needs to clamp, fix, reinforce the hydrological measurement monitoring equipment body of different specifications, size, need not prepare a plurality of different compatible specifications of fixture, and then make the fixed, reinforcing hydrological measurement monitoring equipment body can be more convenient, reduce certain reinforcing cost, solve the size of the clamping ring block under general circumstances is usually fixed, this makes when the staff fixes the hydrological measurement monitoring equipment through the clamping ring block, reduces the inclination angle that it generates, need and its matched clamping ring block, this makes when the staff needs to reinforce a plurality of, or many hydrological measurement monitoring equipment, then need to prepare the clamping ring block of different diameter, and then increase the cost when processing, preventing inclination of hydrological measurement monitoring equipment. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, below will to the drawing needed to use in the embodiment or prior art description make a brief introduction, obviously, the drawing in the following description only some embodiments of the utility model, for ordinary skilled person in the art comes, under the premise of not paying creative labor, can also obtain other drawings according to these drawings.
[0016] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;
[0017] Figure 2 It is the structure schematic diagram of the first fixed plate and the connecting rotating plate of the utility model;
[0018] Figure 3 It is the cross-sectional structure schematic diagram of the rotating disc and the reinforcing plate of the utility model;
[0019] Figure 4 It is the cross-sectional structure schematic diagram of the worm wheel and the rotating ring block of the utility model;
[0020] Figure 5 It is the structure schematic diagram of the gear and the rack of the utility model;
[0021] Figure 6 It is the cross-sectional structure schematic diagram of the second limiting block and the connecting ring block of the utility model;
[0022] Figure 7 It is the cross-sectional structure schematic diagram of the sliding block and the limiting block of the utility model;
[0023] Figure 8The utility model discloses a structure diagram of chute and limit groove.
[0024] Figure 9 The utility model discloses a structure diagram of first limit block and chute.
[0025] In the drawing: 1, concrete floor; 2, hydrological survey monitoring equipment body; 3, reinforcing mechanism; 301, connecting assembly; 3011, first fixed plate; 3012, connecting turn plate; 302, reinforcing block; 303, connecting ring block; 304, rotating ring block; 305, worm wheel; 306, rotating rod; 307, worm; 308, rotating disc; 309, chute; 310, sliding ring block; 311, sliding block; 312, chute; 4, reinforcing plate; 5, gear; 6, second fixed plate; 7, pull rod; 8, spring; 9, rack; 10, limit block; 11, limit groove; 12, first limit block; 13, limit groove; 14, second limit block. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be apparently and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work belong to the protection scope of the utility model.
[0027] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work belong to the protection scope of the utility model. Figures 1-9 The application will be further described in detail,
[0028] The embodiments of the application disclose a hydrological survey monitoring equipment anti-inclination mechanism. Referring to Figure 1 and Figure 9 A kind of hydrological survey monitoring equipment anti-inclination mechanism, including concrete floor 1, the top of concrete floor 1 is fixedly connected with hydrological survey monitoring equipment body 2, the top of concrete floor 1 is provided with reinforcing mechanism 3;
[0029] The reinforcing mechanism 3 comprises a connecting ring block 303, the inner cavity of the connecting ring block 303 is arranged on the surface of the hydrological monitoring device body 2, the top of the concrete floor 1 is provided with a connecting assembly 301, the inner cavity of the connecting ring block 303 is rotatably connected with a rotating ring block 304 and a rotating rod 306, the surface of the rotating ring block 304 is fixedly connected with a worm wheel 305, the surface of the rotating rod 306 is fixedly connected with a worm gear 307, the teeth of the worm wheel 306 and the teeth of the worm gear 307 are meshed with each other, the inner cavity of the connecting ring block 303 is rotatably connected with a rotating disc 308, the bottom of the rotating disc 308 is fixedly connected with the top of the rotating ring block 304, the top of the rotating disc 308 is provided with an inclined groove 309, the top of the connecting ring block 303 is provided with a sliding groove 312, the inner cavity of the inclined groove 309 is slidably connected with a sliding ring block 310, the top of the sliding ring block 310 is fixedly connected with a sliding block 311, the surface of the sliding block 311 is slidably connected with the inner cavity of the sliding groove 312, and the top of the sliding block 311 is fixedly connected with a reinforcing block 302.
[0030] The concrete floor 1 can install and connect the hydrological monitoring device body 2 and the connecting assembly 301, and the connection between the concrete floor 1 and the hydrological monitoring device body 2 enables the hydrological monitoring device body 2 to be used stably, and the hydrological monitoring device body 2 can detect the hydrological environment of lakes, rivers and the like, and monitor and record the flow rate, water level and the like, and the hydrological monitoring device body 2 is prior art in the field, so it will not be described in detail here, the connecting ring block 303 can be connected to the worm wheel 305 through the rotating ring block 304, and the worm gear 307 can be installed through the rotating rod 306, when the rotating rod 306 is rotated by the worker, the worm gear 307 and the worm wheel 305 can be smoothly meshed to drive the worm wheel 305 and the rotating disc 308 to rotate, and when the rotating disc 308 rotates, the sliding ring block 310 can be driven to move through the inclined groove 309 arranged on the top, and the first limiting block 12 arranged on the top of the connecting ring block 303 can limit the reinforcing block 302 through the sliding block 311, so that when the rotating disc 308 rotates, the sliding ring block 310 and the sliding block 311 can be connected to drive the sliding groove 312 to move, thereby clamping and fixing the hydrological monitoring device body 2, and because the connecting ring block 303 is connected to the top of the concrete floor 1 through the connecting assembly 301, the connecting ring block 303 can stably limit and support the hydrological monitoring device body 2, thereby reducing the large inclination of the hydrological monitoring device body 2 in daily use.
[0031] Referring to Figure 1 and Figure 2, the connecting assembly 301 comprises a first fixed plate 3011, the bottom of the first fixed plate 3011 is fixedly connected with the top of the concrete floor 1, the top of the first fixed plate 3011 is rotatably connected with a connecting rotating plate 3012, one side of the connecting rotating plate 3012 is rotatably connected with the surface of the connecting ring block 303, the first fixed plate 3011 can realize the connection of the connecting rotating plate 3012, and the connecting of the connecting rotating plate 3012 with the first fixed plate 3011 and the connecting ring block 303 enables the first fixed plate 3011 to be connected with the concrete floor 1, so that the first fixed plate 3011 can be connected with the concrete floor 1, and the connecting ring block 303 can be installed and fixed, so that the connecting ring block 303 can be stably and smoothly used, and the hydrological measurement monitoring equipment body 2 is fixed and limited.
[0032] With reference to Figure 7 and Figure 8 , the inner cavity of the connecting ring block 303 is provided with a limiting groove 13, one side of the sliding block 311 is fixedly connected with a first limiting block 12, the surface of the first limiting block 12 is slidably connected with the inner cavity of the limiting groove 13, and the limiting groove 13 is provided. The first limiting block 12 can be limited, and the sliding block 311 can be limited by the connection of the first limiting block 12 and the sliding block 311, so that the sliding block 311 can be stable enough when sliding and is not easy to shake.
[0033] With reference to Figure 4 and Figure 7 , the inner cavity of the connecting ring block 303 is fixedly connected with a limiting block 10, the bottom of the rotating disc 308 is provided with a limiting groove 11, and the surface of the limiting block 10 is slidably connected with the inner cavity of the limiting groove 11. The limiting block 10 can limit and support the rotation of the rotating disc 308 through the limiting groove 11, so that the rotating disc 308 can be stable enough when rotating and is not easy to tilt, greatly increasing the stability of the rotating disc 308 in use.
[0034] With reference to Figure 5 and Figure 6The surface of the connecting ring block 303 is fixedly connected with a second fixing plate 6, the inner cavity of the second fixing plate 6 is slidably connected with a pull rod 7, one end of the pull rod 7 is fixedly connected with a rack 9, the side of the second fixing plate 6 is fixedly connected with the side of the rack 9, a spring 8 is fixedly connected between the surface of the spring 8 and the surface of the pull rod 7, the surface of the rotating rod 306 is fixedly connected with a gear 5, the teeth of the gear 5 are meshed with the teeth of the rack 9, the connecting ring block 303 can be connected with the pull rod 7 through the second fixing plate 6, and the installation of the rack 9 is realized through the pull rod 7, and the spring 8 can push the rack 9 by utilizing the elasticity of the spring 8, so that the rack 9 can be smoothly meshed with the gear 5 in daily life, and the mutual meshing of the rack 9 and the gear 5 can limit the rotating rod 306, so that when the rotating rod 306 does not need to be rotated, the rotating rod 306 can be stably limited and is not easy to be rotated due to accidental touch, and when the rotating rod 306 needs to be rotated, the rack 9 is moved by pulling the pull rod 7, and the limitation of the gear 5 by the pull rod 7 is cancelled.
[0035] With reference to Figure 6 and Figure 9 The inner cavity of the connecting ring block 303 is fixedly connected with a second limiting block 14, the inner cavity of the second limiting block 14 is rotatably connected with the surface of the rotating rod 306, and the second limiting block 14 can limit and support the rotating rod 306, so that the rotating rod 306 is not easy to shake during use and can be stably rotated and is not easy to shake greatly during use.
[0036] With reference to Figure 1 and Figure 2 The top of the concrete floor 1 is fixedly connected with a reinforcing plate 4, the top of the reinforcing plate 4 is fixedly connected with the bottom of the connecting ring block 303, and the reinforcing plate 4 can support and reinforce the connecting ring block 303 by utilizing the connection relationship between the reinforcing plate 4 and the concrete floor 1, so that the connecting ring block 303 has high stability during the support of the hydrological monitoring equipment body 2.
[0037] Working principle: the device in use, the staff can hydrological measurement monitoring equipment body 2 and the concrete floor 1 stable connection, after the first fixed plate 3011 and the concrete floor 1 are connected, through the connection of the plate 3012 realizes the installation and support of the connecting ring block 303, after the staff can pull the pull rod 7, pull rod 7 in moving, can smoothly drive rack 9 to move, rack 9 after moving to a certain distance, will cancel the restriction of gear 5, at this time the staff can rotate the rotating rod 306, make rotating rod 306 can smoothly drive the worm 307 to rotate, and utilize the intermeshing of worm 307 and worm wheel 305, drive rotating ring block 304 and rotating disc 308 together to rotate, rotating disc 308 in rotation, can drive the sliding ring block 310 to move through the inclined slot 309 on the top of itself, at this time because the connecting ring block 303 can limit the sliding block 311 through the sliding groove 312, therefore rotating disc 308 in rotation, can drive the sliding block 311 to move in the sliding groove 312, and drive the reinforcing block 302 to move when moving, when the reinforcing block 302 moves to a certain distance, can smoothly contact with the surface of hydrological measurement monitoring equipment body 2, and realize the clamping and fixing of hydrological measurement monitoring equipment body 2, so that hydrological measurement monitoring equipment body 2 can not be prone to large inclination or shaking after long-term use, improve the stability of hydrological measurement monitoring equipment body 2 when in use, then only need to loosen the pull of pull rod 7, make rack 9 reset through the elasticity of spring 8, and realize the intermeshing of gear 5 again, can realize the limitation and restriction of rotating rod 306.
[0038] The basic principle, main characteristics and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.
Claims
1. An anti-tilt mechanism of a hydrological measurement monitoring device, characterized by: Including the concrete floor (1), the top of the concrete floor (1) is fixedly connected with the hydrological monitoring equipment body (2), the top of the concrete floor (1) is provided with reinforcing mechanism (3); The reinforcing mechanism (3) includes a connecting ring block (303), the inner cavity of the connecting ring block (303) is arranged on the surface of the hydrological monitoring equipment body (2), the top of the concrete floor (1) is provided with a connecting assembly (301), the inner cavity of the connecting ring block (303) is rotatably connected with a rotating ring block (304) and a rotating rod (306), the surface of the rotating ring block (304) is fixedly connected with a worm wheel (305), the surface of the rotating rod (306) is fixedly connected with a worm (307), the teeth of the worm wheel (305) and the teeth of the worm (307) are engaged with each other, the inner cavity of the connecting ring block (303) is rotatably connected with a rotating disc (308), the bottom of the rotating disc (308) is fixedly connected with the top of the rotating ring block (304), the top of the rotating disc (308) is provided with an inclined chute (309), the top of the connecting ring block (303) is provided with a sliding groove (312), the inner cavity of the inclined chute (309) is slidably connected with a sliding ring block (310), the top of the sliding ring block (310) is fixedly connected with a sliding block (311), the surface of the sliding block (311) is slidably connected with the inner cavity of the sliding groove (312), the top of the sliding block (311) is fixedly connected with a reinforcing block (302).
2. The anti-tilt mechanism of a hydrological monitoring device according to claim 1, characterized in that: The connecting assembly (301) includes a first fixed plate (3011), the bottom of the first fixed plate (3011) is fixedly connected with the top of the concrete floor (1), the top of the first fixed plate (3011) is rotatably connected with a connecting rotating plate (3012), one side of the connecting rotating plate (3012) is rotatably connected with the surface of the connecting ring block (303).
3. The anti-tilt mechanism of a hydrological monitoring device according to claim 2, characterized in that: The inner cavity of the connecting ring block (303) is provided with a limiting groove (13), one side of the sliding block (311) is fixedly connected with a first limiting block (12), the surface of the first limiting block (12) is slidably connected with the inner cavity of the limiting groove (13).
4. The anti-tilt mechanism of a hydrological monitoring device according to claim 3, characterized in that: The inner cavity of the connecting ring block (303) is fixedly connected with a limiting block (10), the bottom of the rotating disc (308) is provided with a limiting groove (11), the surface of the limiting block (10) is slidably connected with the inner cavity of the limiting groove (11).
5. The anti-tilt mechanism of a hydrological monitoring device according to claim 4, characterized in that: The surface of the connecting ring block (303) is fixedly connected with a second fixed plate (6), the inner cavity of the second fixed plate (6) is slidably connected with a pull rod (7), one end of the pull rod (7) is fixedly connected with a rack (9), one side of the second fixed plate (6) and one side of the rack (9) are fixedly connected with a spring (8), the surface of the spring (8) is sleeved on the surface of the pull rod (7), the surface of the rotating rod (306) is fixedly connected with a gear (5), the teeth of the gear (5) and the teeth of the rack (9) are engaged with each other.
6. The anti-tilt mechanism of a hydrological monitoring device according to claim 3, characterized in that: The inner cavity of the connecting ring block (303) is fixedly connected with a second limiting block (14), and the inner cavity of the second limiting block (14) is rotatably connected with the surface of the rotating rod (306).
7. The anti-tilt mechanism of a hydrological monitoring device according to claim 4, characterized in that: The top of the concrete floor (1) is fixedly connected with a reinforcing plate (4), and the top of the reinforcing plate (4) is fixedly connected with the bottom of the connecting ring block (303).