Multifunctional water management monitor for greening management and protection
By designing a multi-functional water management monitor for greening and maintenance, using technical means such as assembly racks, displacement mechanisms, lifting mechanisms and clamping components, the problem of contamination and inconvenience in sampling bottles is solved, and an efficient water sample sampling and cleaning process is achieved.
Patent Information
- Application Number
- CN202421668365.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-15
AI Technical Summary
In the prior art, the sampling bottle is susceptible to contamination after a long period of use, and the location of the sampling bottle is inconvenient for cleaning and maintenance, resulting in low sampling efficiency and long time.
A multifunctional water management monitor was designed, using technical means such as assembly rack, displacement mechanism, lifting mechanism and clamping components to realize the automatic disassembly and assembly of the sampling bottle and improve the sampling efficiency.
Through the automated sampling and cleaning process, the sampling efficiency is significantly improved, manual operation time is reduced, pollution risk is reduced, and the accuracy of water quality detection is ensured.
Smart Images

Figure CN222938795U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of greening management and protection, and particularly relates to a multifunctional water management monitor for greening management and protection. Background Technique
[0002] In the process of greening control and care, it is necessary to manage and monitor the watering water source to be allocated to ensure the availability of the water source to be allocated. In this state, a water management monitor is required.
[0003] For example, patent CN219675537U discloses a multifunctional water management monitor. In view of the problems in the prior art that after the sampling bottle is used for a long time, bacteria will remain and breed inside it, resulting in contamination, which will affect the subsequent water quality detection data, and the position of the sampling bottle is above the water surface and far from the shore, making it inconvenient for personnel to clean the sampling bottle. Therefore, there are also problems of inconvenient disassembly and assembly of the sampling bottle and increased difficulty in cleaning and maintaining the sampling bottle. The following solution is proposed. It includes a cross plate and a sampling bottle. The bottom of the cross plate is fixedly connected with a control box, and a camera is fixedly installed at the bottom of the control box.
[0004] During the use of the above water management monitor, after the sampling bottle has undergone one sampling and detection, the staff needs to immediately remove and clean the sampling bottle. In this state, when multiple samplings at multiple points are involved, the above method will lead to poor sampling efficiency and long time delay. Content of the Utility Model
[0005] (1) Technical Problems to be Solved
[0006] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide a multifunctional water management monitor for greening management and protection, aiming to solve the problems in the prior art that after the sampling bottle has undergone one sampling and detection, the staff needs to immediately remove and clean the sampling bottle. In this state, when multiple samplings at multiple points are involved, the above method will lead to poor sampling efficiency and long time delay.
[0007] (2) Technical Solutions
[0008] To solve the above technical problems, the present utility model provides a multifunctional water management monitor for greening management and protection, including an assembly frame. A cross frame is fixed on one side of the assembly frame, and a water level monitoring component is fixed below the end of the cross frame. A displacement mechanism is installed inside the cross frame. The displacement mechanism includes a lead screw sliding sleeve, and an installation frame is fixed below the lead screw sliding sleeve. Lifting mechanisms are installed on the inner and outer sides of the installation frame. The lifting mechanism includes two winding ropes, and counterweights are connected to the ends of the two winding ropes. A multiple sampling mechanism is jointly installed above the counterweight and on one side of the bottom end of the cross frame. The multiple sampling mechanism includes a clamping component, and the clamping component is installed inside the installation frame and above the counterweight. A replacement component is installed on one side of the bottom end of the cross frame.
[0009] Further, the clamping component includes an upper mounting block, and the upper mounting blocks are symmetrically fixed on both sides above the counterweight. A reset spring is respectively arranged inside the two upper mounting blocks, and the top ends of the multiple reset springs are connected to a clamping plate. An anti-slip pad is fixed on the front part of the inner side of the clamping plate. A fixing plate is fixed below the inner side of the installation frame, and a third motor is fixedly installed above the fixing plate. A first rotating rod is installed at the output end of the third motor, and a resisting block is connected to the top end of the first rotating rod.
[0010] Furthermore, the resisting blocks are respectively fixed on both sides of the end of the first rotating rod.
[0011] Furthermore, the replacement component includes a cylinder frame, and the cylinder frame is installed on one side of the bottom end of the cross frame. A fourth motor is fixedly installed at the bottom end of the cylinder frame, and a second rotating rod is connected to the output end of the fourth motor. A carrying plate is connected to the end of the second rotating rod, and limiting arc frames are distributed around the top of the carrying plate. A sampling bottle is attached to the inner side of the limiting arc frame. An electric push rod is installed on one side above the inside of the cylinder frame, and a detection head is installed at the end of the electric push rod.
[0012] Furthermore, the displacement mechanism includes a pre-installation groove, and the pre-installation groove is opened inside the cross frame. A transmission lead screw is installed inside the pre-installation groove, and a first motor is connected and installed at one end of the transmission lead screw. A lead screw sliding sleeve is screwed on the periphery of one side of the transmission lead screw. A guide chute for the installation frame to move and guide is opened at the bottom of the cross frame.
[0013] Furthermore, the lifting mechanism includes a winding roller, and the winding roller is movably installed in the middle of the installation frame. A second motor is connected and installed at one end of the winding roller, and three partition discs are respectively arranged on the periphery of the winding roller. The winding ropes are wound around the respective opposite inner sides of the three partition discs.
[0014] Furthermore, the second motor is fixedly installed on one side of the installation frame.
[0015] (3) Beneficial effects
[0016] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0017] In the present utility model, the staff first fixedly connect the cross frame to the outside through the fixing mechanism by using the assembly frame. Then, by the transmission of the displacement mechanism, the mounting frame and the lifting mechanism and the clamping assembly inside it are moved to one side of the barrel frame at the bottom of the cross frame. Subsequently, the third motor is started to make the first rotating rod and the abutting blocks on both sides of its end rotate. As the two abutting blocks rotate, the clamping plates on the inner sides of the upper mounting blocks on both sides above the counterweight block will expand due to the pressing of the two abutting blocks and the energy storage of the return spring, so as to be adaptable to the width of the sampling bottle. Then, continue to use the displacement mechanism to make the inner sides of the two clamping plates fit the sampling bottle outside against the outside inside the barrel frame. Subsequently, turn back the first rotating rod to make the two abutting blocks disengage from the clamping plates, so that the two clamping plates naturally clamp the sampling bottle under the energy release of the return spring. Immediately afterwards, start the lifting mechanism to make the counterweight block drive the above corresponding components and the sampling bottle to rise and disengage from the limiting arc frame. Then, with the horizontal movement of the displacement mechanism, the sampling bottle is moved to the sampling location to be sampled, and the sampling operation can be carried out at an appropriate depth and area of the water source by the lowering distance of the lifting mechanism. After sampling, the sampling bottle can be placed back to its original position in the barrel frame by repeating the above operations in reverse. Then, start the fourth motor to make the second rotating rod drive the carrying tray and multiple sampling bottles above to rotate and change positions, and the staff can repeat the above operations to carry out the sampling operation of the second batch.
[0018] In the present utility model, the staff starts the first motor to make the transmission screw rod rotate. At this time, the screw sleeve interacting with the screw rod will drive the mounting frame and the lifting mechanism, the counterweight block, the clamping assembly and the sampling bottle inside it to adjust the position horizontally along the cross frame in cooperation with the guide chute, so as to adapt to the sampling operation of different regional points.
[0019] After the mounting frame of the present utility model reaches the appropriate area by using the displacement mechanism, start the second motor to make its winding roller rotate. At this moment, the winding ropes on both sides of the winding roller will loosen and drive the counterweight block and the components such as the clamping assembly above it and the sampling bottle to descend, so as to achieve the sampling operation of the sampling bottle at different depths. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required to be used in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0021] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model;
[0022] Figure 2 It is a side view structural schematic diagram;
[0023] Figure 3 For Figure 1 the structural schematic diagram of part A in
[0024] Figure 4 the internal structural schematic diagram of the cylinder frame;
[0025] Figure 5 the top - view structural schematic diagram of the carrying tray.
[0026] The reference signs in the drawings are: 1, assembly frame; 2, cross - frame; 3, water - level monitoring component; 4, displacement mechanism; 41, pre - installation groove; 42, transmission lead screw; 43, first motor; 44, lead - screw sliding sleeve; 45, guide chute; 5, mounting frame; 6, lifting mechanism; 61, winding roller; 62, second motor; 63, partition plate; 64, winding rope; 7, counterweight; 8, multi - sampling mechanism; 81, clamping component; 811, upper mounting block; 812, return spring; 813, clamping plate; 814, anti - slip pad; 815, fixing plate; 816, third motor; 817, first rotating rod; 818, abutting block; 82, swapping component; 821, cylinder frame; 822, fourth motor; 823, second rotating rod; 824, carrying tray; 825, limiting arc frame; 826, sampling bottle; 827, electric push rod; 828, detection head. Detailed implementation manners
[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0028] This detailed implementation manner is a multi - functional water management monitor for greening management and protection, and its structural schematic diagram is as shown in Figures 1 to 5As shown in the figure, it includes an assembly rack 1. One side of the assembly rack 1 is fixed with a cross rack 2, and a water level monitoring component 3 is fixed below the end of the cross rack 2. A displacement mechanism 4 is installed inside the cross rack 2. The displacement mechanism 4 includes a lead screw sliding sleeve 44, and an installation rack 5 is fixed below the lead screw sliding sleeve 44. A lifting mechanism 6 is installed on the inner and outer sides of the installation rack 5. The lifting mechanism 6 includes two winding ropes 64, and the ends of the two winding ropes 64 are connected with a counterweight 7. A multi-sampling mechanism 8 is jointly installed above the counterweight 7 and on one side of the bottom end of the cross rack 2. The displacement mechanism 4 includes a pre-installation groove 41, and the pre-installation groove 41 is opened inside the cross rack 2. A transmission lead screw 42 is installed inside the pre-installation groove 41, and a first motor 43 is connected and installed at one end of the transmission lead screw 42. A lead screw sliding sleeve 44 is screwed on the periphery of one side of the transmission lead screw 42. A guide chute 45 for the activity guiding of the installation rack 5 is opened at the bottom of the cross rack 2. When the operator starts the first motor 43 to make the transmission lead screw 42 rotate, at this time, the lead screw sliding sleeve 44 interacting with the lead screw will drive the installation rack 5, the lifting mechanism 6 inside it, the counterweight 7, the clamping assembly 81, and the sampling bottle 826 to adjust the position in the horizontal direction along the cross rack 2 in cooperation with the guide chute 45, so as to adapt to the sampling operation of different regional points.
[0029] Among them, the lifting mechanism 6 includes a winding roller 61, and the winding roller 61 is movably installed in the middle of the installation rack 5. A second motor 62 is connected and installed at one end of the winding roller 61, and three partition disks 63 are respectively arranged on the periphery of the winding roller 61. The winding ropes 64 are wound around the respective opposite inner sides of the three partition disks 63. The second motor 62 is fixedly installed on one side of the installation rack 5. After the installation rack 5 reaches the appropriate area by using the displacement mechanism 4, the second motor 62 is started to make the winding roller 61 rotate. At this moment, the winding ropes 64 on both sides of the winding roller 61 will loosen and drive the counterweight 7, the clamping assembly 81 and other components above it, and the sampling bottle 826 to descend, so as to achieve the sampling operation of the sampling bottle 826 at different depths.
[0030] In addition, the multiple sampling mechanism 8 includes a clamping assembly 81, and the clamping assembly 81 is installed inside the mounting frame 5 and above the counterweight 7. The clamping assembly 81 includes an upper mounting block 811, and the upper mounting blocks 811 are symmetrically fixed on both sides above the counterweight 7. Inside the two upper mounting blocks 811, reset springs 812 are respectively provided, and the tops of the multiple reset springs 812 are connected to a clamping plate 813. An anti-slip pad 814 is fixed to the front part inside the clamping plate 813. A fixed plate 815 is fixed below the inside of the mounting frame 5, and a third motor 816 is fixedly installed above the fixed plate 815. The output end of the third motor 816 is provided with a first rotating rod 817, and the top of the first rotating rod 817 is connected to a resisting block 818. The resisting blocks 818 are respectively fixed on both sides of the end of the first rotating rod 817. On one side of the bottom end of the cross frame 2, a swapping assembly 82 is installed. The swapping assembly 82 includes a cylinder frame 821, and the cylinder frame 821 is installed on one side of the bottom end of the cross frame 2. A fourth motor 822 is fixedly installed at the bottom end of the cylinder frame 821, and the output end of the fourth motor 822 is connected to a second rotating rod 823. The end of the second rotating rod 823 is connected to a carrying plate 824, and a limiting arc frame 825 is distributed around the upper part of the carrying plate 824. A sampling bottle 826 is attached to the inside of the limiting arc frame 825. An electric push rod 827 is installed on one side above the inside of the cylinder frame 821, and a detection head 828 is installed at the end of the electric push rod 827. The staff first fixedly connects the cross frame 2 to the outside through a fixing mechanism by using the assembly frame 1, and then drives the mounting frame 5 and the lifting mechanism 6 and the clamping assembly 81 inside it to move to one side of the cylinder frame 821 at the bottom of the cross frame 2 by using the transmission of the displacement mechanism 4. Subsequently, the third motor 816 is started to rotate the first rotating rod 817 and the resisting blocks 818 on both sides of its end. As the two resisting blocks 818 rotate, the clamping plates 813 inside the two upper mounting blocks 811 above the counterweight 7 will expand due to the pressing of the two resisting blocks 818 and the energy storage of the reset springs 812, so as to be adaptable to the width of the sampling bottle 826. Then, the displacement mechanism 4 is continuously used to make the two clamping plates 813 fit the sampling bottle 826 outside the outer side inside the cylinder frame 821. Subsequently, the first rotating rod 817 is rotated back to make the two resisting blocks 818 disengage from the clamping plates 813, so that the two clamping plates 813 naturally clamp the sampling bottle 826 under the energy release of the reset springs 812. Immediately afterwards, the lifting mechanism 6 is started to make the counterweight 7 drive the corresponding components and the sampling bottle 826 above to rise and disengage from the limiting arc frame 825. Then, with the horizontal movement of the displacement mechanism 4, the sampling bottle 826 is moved to the sampling location to be sampled, and the sampling operation can be carried out at an appropriate depth and area of the water source by lowering the distance of the lifting mechanism 6. After sampling, the sampling bottle 826 can be placed back to its original position in the cylinder frame 821 by repeating the above operations in reverse. Then, the fourth motor 822 is started to make the second rotating rod 823 drive the carrying plate 824 and the multiple sampling bottles 826 above to rotate and change positions. The staff repeats the above operations to carry out the sampling operation for the second batch.
[0031] Working principle: The staff pre-fixes the cross frame 2 to form a fixed connection with the outside through the fixing mechanism by using the assembly frame 1. Then, through the transmission of the displacement mechanism 4, the mounting frame 5, the lifting mechanism 6 inside it, and the clamping assembly 81 are moved to one side of the barrel frame 821 at the bottom of the cross frame 2. Subsequently, the third motor 816 is started to make the first rotating rod 817 and the abutting blocks 818 on both ends thereof rotate. As the two abutting blocks 818 rotate, the clamping plates 813 inside the upper mounting blocks 811 on both sides above the counterweight block 7 will expand due to the pressing cooperation of the two abutting blocks 818 and the energy storage of the return spring 812, so as to be adaptable to the width of the sampling bottle 826. Then, continue to use the displacement mechanism 4 to make the inner sides of the two clamping plates 813 fit the sampling bottle 826 outside the outer side inside the barrel frame 821. Then, rotate the first rotating rod 817 back to make the two abutting blocks 818 disengage from the clamping plates 813, so that the two clamping plates 813 naturally clamp the sampling bottle 826 under the energy release of the return spring 812. Immediately afterwards, the lifting mechanism 6 is started to make the counterweight block 7 drive the above corresponding components and the sampling bottle 826 to rise and disengage from the limiting arc frame 825. Then, with the horizontal movement of the displacement mechanism 4, the sampling bottle 826 is moved to the sampling location to be sampled, and the sampling operation can be carried out at an appropriate depth and area of the water source by the lowering distance of the lifting mechanism 6. After sampling, the sampling bottle 826 can be placed back to its original position in the barrel frame 821 by repeating the above operations in reverse. Then, the fourth motor 822 is started to make the second rotating rod 823 drive the carrying plate 824 and multiple sampling bottles 826 above to rotate and change positions. The staff can repeat the above operations to carry out the sampling operation for the second batch.
[0032] All technical features in this embodiment can be freely combined according to actual needs.
[0033] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A multifunctional water management monitoring instrument for greening management and protection, comprising an assembly frame (1), a horizontal frame (2) is fixed on one side of the assembly frame (1), a water level monitoring component (3) is fixed below the end of the horizontal frame (2), a displacement mechanism (4) is installed inside the horizontal frame (2), the displacement mechanism (4) comprises a screw rod sliding sleeve (44), and a mounting frame (5) is fixed below the screw rod sliding sleeve (44), and a lifting mechanism (6) is installed inside and outside the mounting frame (5) The lifting mechanism (6) comprises two winding ropes (64), and the ends of the two winding ropes (64) are connected to a counterweight (7), and a multiple sampling mechanism (8) is jointly installed above the counterweight (7) and on one side of the bottom end of the horizontal frame (2), and the multiple sampling mechanism (8) comprises a clamping component (81), and the clamping component (81) is installed on the inner side of the mounting frame (5) and above the counterweight (7), and a replacement component (82) is installed on one side of the bottom end of the horizontal frame (2).
2. A multifunctional water management monitoring instrument for greening management and protection according to claim 1, characterized in that: The clamping assembly (81) comprises an upper mounting block (811), and the upper mounting blocks (811) are symmetrically fixed on both sides above the counterweight block (7); the inner sides of the two upper mounting blocks (811) are respectively provided with return springs (812), and the top ends of the plurality of return springs (812) are connected with a clamping plate (813); the inner front part of the clamping plate (813) is fixed with an anti-slip pad (814); a fixing plate (815) is fixed at the lower inner side of the mounting frame (5), and a third motor (816) is fixedly installed above the fixing plate (815); a first rotating rod (817) is installed at the output end of the third motor (816), and a stop block (818) is connected to the top end of the first rotating rod (817).
3. A multifunctional water management monitoring instrument for greening management and protection according to claim 2, characterized in that: The stop blocks (818) are respectively fixed to two sides of the end of the first rotating rod (817).
4. The multifunctional water management monitoring instrument for greening management and protection according to claim 1 is characterized in that: The exchange component (82) comprises a cartridge rack (821), and the cartridge rack (821) is mounted on one side of the bottom end of the horizontal frame (2); a fourth motor (822) is fixedly mounted on the bottom end of the cartridge rack (821), and the output end of the fourth motor (822) is connected to a second rotating rod (823); the end of the second rotating rod (823) is connected to a carrying plate (824), and a limiting arc rack (825) is distributed around the upper part of the carrying plate (824); a sampling bottle (826) is attached to the inner side of the limiting arc rack (825); an electric push rod (827) is mounted on one side of the upper part of the cartridge rack (821), and a detection head (828) is mounted on the end of the electric push rod (827).
5. The multifunctional water management and monitoring instrument for greening management and protection according to claim 1 is characterized in that: The displacement mechanism (4) comprises a pre-installed groove (41), and the pre-installed groove (41) is arranged inside the cross frame (2), a transmission screw rod (42) is installed inside the pre-installed groove (41), and one end of the transmission screw rod (42) is connected and installed with a first motor (43), a screw rod sliding sleeve (44) is screwed on the periphery of one side of the transmission screw rod (42), and a guide groove (45) for guiding the mounting frame (5) to move is arranged at the bottom of the cross frame (2).
6. A multifunctional water management and monitoring instrument for greening management and protection according to claim 1, characterized in that: The lifting mechanism (6) includes a winding roller (61), and the winding roller (61) is movably installed in the middle of the mounting frame (5), one end of the winding roller (61) is connected to a second motor (62), and three partition plates (63) are arranged around the periphery of the winding roller (61), and winding ropes (64) are wound around the relative inner sides of the three partition plates (63).
7. A multifunctional water management and monitoring instrument for greening management and protection according to claim 6, characterized in that: The second motor (62) is fixedly mounted on one side of the mounting frame (5).