Electromagnetic sterilization algae control device
By introducing movable grooves, servo motors and scraping ring structures into the electromagnetic sterilization and algae control device, the problem of the device's dirt accumulation in water and the limited range of electromagnetic wave diffusion is solved, and efficient algae collection and sterilization effect is achieved, extending the service life of the device.
Patent Information
- Application Number
- CN202422377208.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing electromagnetic sterilization and algae-inhibiting devices are prone to accumulation of dirt and are not easy to clean after long-term use in water. The electromagnetic wave diffusion range is limited, resulting in poor sterilization and algae-inhibiting efficiency and effect.
An electromagnetic sterilization and algae control device is designed, including a movable groove, a servo motor, a rod transmitter and a scraping ring structure. The device moves in water through a linkage rod and a power drive mechanism, collects surface algae in combination with a net bag, and forms an electromagnetic field through a rod transmitter for sterilization. At the same time, the scraping ring cleans up the surface impurities of the emitter.
The continuous collection and bactericidal effect of algae on the surface of water bodies is achieved, the service life of the emitter is extended, and the diffusion range of electromagnetic waves and the bactericidal and algae inhibition efficiency are improved.
Smart Images

Figure CN223239858U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of algae control devices, in particular to an electromagnetic sterilization and algae control device. Background Art
[0002] Ecological waters have good overall landscape effects, reasonable ecosystem organizational structure and good operating functions. If algae are produced in the waters, it will affect the ecology of the waters and pollute the water quality, so it is necessary to regularly control the algae in the waters.
[0003] Electromagnetic sterilization and algae control devices use electromagnetic waves or electric fields to sterilize and control algae in water. They primarily generate electromagnetic waves or electric fields of specific frequencies to influence the growth of microorganisms and algae in the water, thereby cleaning the water and reducing water pollution.
[0004] In the process of realizing this application, the inventors discovered that the prior art has the following problems: At present, the existing electromagnetic sterilization and algae inhibition devices used in ecological waters are suspended statically in the water body for a long time. Dirt is easily accumulated and difficult to clean when placed in the water for a long time. If it is not cleaned in time, the titanium mesh used to emit electromagnetic waves will easily rot and lose its sterilization and algae inhibition effect. At the same time, since the electromagnetic sterilization and algae inhibition device is placed in a fixed area and does not move, the diffusion range of the electromagnetic wave is limited, resulting in poor efficiency and effect of treatment.
[0005] Therefore, those skilled in the art provide an electromagnetic sterilization and algae control device to solve the problems raised in the above background technology. Utility Model Content
[0006] The purpose of the present invention is to solve the shortcomings of the prior art and to propose an electromagnetic sterilization and algae control device, which can not only achieve the functions of sterilization and algae control and blue algae collection and treatment, but also can scrape impurities from the surface of the rod-type launcher.
[0007] To achieve the above objectives, the present invention provides the following technical solutions:
[0008] An electromagnetic sterilization and algae control device, comprising a device body, a movable groove being formed on one side of an upper end surface of the device body, a first waterproof shell being fixedly provided on the upper end surface of the device body at the upper end of the movable groove, side panels being fixedly provided on the front and rear ends of the device body, an overflow plate being fixedly provided on the side of the device body away from the first waterproof shell, and a net bag being installed at the lower end of the overflow plate, a linkage rod being movably provided inside the movable groove, a second waterproof shell being fixedly provided at the lower end of the linkage rod, a power drive mechanism being installed inside the second waterproof shell, a servo motor being installed on the upper end of the device body inside the first waterproof shell, a first gear being fixedly provided at the output end of the servo motor, and a second gear being installed on the linkage rod that meshes with the first gear;
[0009] A partition is fixedly installed at the midpoint of the lower end surface of the two side plates, and rod-type launchers are installed on both sides of the lower end of the two side plates. Scraper rings are slidably sleeved on the outer sides of multiple rod-type launchers. An output drive mechanism is installed at the midpoint of the inner part of the device body, and the output drive mechanism includes two No. 1 bevel gears, a double-headed motor, two bidirectional screws, two No. 2 bevel gears and two drive shafts.
[0010] Furthermore, a partition plate is fixedly provided at the upper end inside the No. 1 waterproof shell, and a sliding groove consistent with the movable groove is opened on the upper end of the partition plate. The upper end of the linkage rod passes through the sliding groove on the upper end of the partition plate and a limit block is fixed on the upper end of the linkage rod.
[0011] Furthermore, the power drive mechanism includes a drive motor, which is embedded in the second waterproof shell and has a plurality of fan blades installed on the output end of the drive motor passing through the second waterproof shell.
[0012] Furthermore, a plurality of through holes are provided on the upper surface of the overflow plate, the side of the device body away from the No. 1 waterproof shell is V-shaped and clamping columns are installed at the front and rear ends of the inner wall, and the net bag is respectively connected to the two clamping columns through two hanging rings.
[0013] Furthermore, grooves are provided on the lower end surfaces of the two side panels on both sides of the two partitions, and the rod-type launcher is embedded in the grooves.
[0014] Furthermore, the end of the scraper ring away from the rod-type launcher is threadedly sleeved on the outer wall of the bidirectional screw rod, the two drive shafts are fixedly installed at the output end of the double-headed motor, the two No. 2 bevel gears are respectively fixedly sleeved on the two drive shafts, and the two No. 1 bevel gears are respectively fixedly sleeved at the midpoint position of the two bidirectional screw rods.
[0015] Furthermore, the two first bevel gears are meshed and connected with the two second bevel gears respectively, and the first bevel gear and the second bevel gear that are meshed and connected with the two first bevel gears are installed inside the partition.
[0016] Furthermore, a control box is installed at the midpoint of the upper end surface of the device body.
[0017] The utility model has the following beneficial effects:
[0018] 1. The utility model proposes an electromagnetic sterilization and algae control device, which is equipped with a net bag at the front end of the device body and an overflow plate with a through hole at the upper end. When the device moves on the surface of the water body, the blue algae on the surface of the water body are concentrated along the water flow and fall along the through hole on the overflow plate, and then are collected in the net bag at the lower end. This is convenient for the joint collection and treatment of the blue algae on the surface of the water body during the electromagnetic sterilization and algae control process, thereby better achieving the algae control effect.
[0019] 2. The utility model proposes an electromagnetic sterilization and algae control device, which is equipped with a rod-type launcher at the lower end of the device body. The rod-type launcher is used to form an electromagnetic field, so that the substances in the water produce a complex electrochemical reaction. Most of the algae and bacteria in the water are negatively charged, and the water itself contains a large amount of chloride ions. A large amount of free chlorine is generated during the electrolysis process, which can destroy the inside of bacteria and algae cells, and has the effect of sterilization and algae inhibition. A scraping ring is provided on the rod-type launcher, and the scraping ring can reciprocate on the outside of the rod-type launcher body to achieve the effect of scraping and cleaning the outer wall of the rod-type launcher, thereby reducing the adhesion of surface debris that affects the use effect of the launcher. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the shaft side structure of the utility model;
[0021] Figure 2 This is a top structural diagram of the utility model;
[0022] Figure 3 This is a schematic diagram of the front cross-section structure of the present utility model;
[0023] Figure 4 For the utility model Figure 3 A magnified schematic diagram of the structure at B;
[0024] Figure 5 This is another schematic diagram of the axial side structure of the present invention;
[0025] Figure 6 For the utility model Figure 1 A magnified schematic diagram of the structure at A;
[0026] Figure 7 It is a structural diagram of the output drive mechanism of the utility model.
[0027] Legend:
[0028] 1. Waterproof housing No. 1; 2. Control box; 3. Side panel; 4. Device body; 5. Through hole; 6. Overflow plate; 7. Net bag; 8. Partition; 9. Scraper ring; 10. Rod launcher; 11. Waterproof housing No. 2; 12. Power drive mechanism; 13. Groove; 14. Output drive mechanism; 15. Gear No. 1; 16. Servo motor; 17. Linkage rod; 18. Gear No. 2; 19. Divider plate; 20. Movable slot; 21. Clamping column; 22. Hanging ring; 1201. Drive motor; 1202. Fan blade; 1401. Bevel gear No. 1; 1402. Double-head motor; 1403. Bidirectional screw; 1404. Bevel gear No. 2; 1405. Drive shaft. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0030] Reference Figure 1-7 , an embodiment provided by the utility model:
[0031] An electromagnetic sterilization and algae control device includes a device body 4, a movable groove 20 is opened on one side of the upper end surface of the device body 4, a waterproof housing 1 is fixedly provided on the upper end surface of the device body 4 at the upper end of the movable groove 20, a side panel 3 is fixedly provided on the front and rear ends of the device body 4, an overflow plate 6 is fixedly provided on the side of the device body 4 away from the waterproof housing 1, and a net bag 7 is installed at the lower end of the overflow plate 6, a linkage rod 17 is movably provided inside the movable groove 20, a second waterproof housing 11 is fixedly provided at the lower end of the linkage rod 17, a power drive mechanism 12 is installed inside the second waterproof housing 11, a servo motor 16 is installed on the upper end of the device body 4 inside the waterproof housing 1, a first gear 15 is fixedly provided at the output end of the servo motor 16, and a second gear 18 meshing with the first gear 15 is installed on the linkage rod 17;
[0032] A partition 8 is fixedly installed at the midpoint of the lower end surface of the two side panels 3. Rod-type launchers 10 are installed on both sides of the lower end of the two side panels 3. Scraper rings 9 are slidably sleeved on the outer sides of multiple rod-type launchers 10. An output drive mechanism 14 is installed at the midpoint of the inner part of the device body 4. The output drive mechanism 14 includes two No. 1 bevel gears 1401, a double-headed motor 1402, two bidirectional screws 1403, two No. 2 bevel gears 1404 and two drive shafts 1405.
[0033] Specifically, installing the servo motor 16 inside the first waterproof housing 1 can protect the servo motor 16 and reduce damage caused by water seepage and long-term exposure to the sun. The net bag 7 is located at the lower end of the overflow plate 6 to collect and process debris overflowing from the upper end of the overflow plate 6. Since the power drive mechanism 12 is in water when in use, the second waterproof housing 11 can provide waterproof protection for the power drive mechanism 12.
[0034] The electromagnetic sterilization and algae control device is placed in water, and the rod-type launcher 10 arranged at the lower end is energized to form an electromagnetic field between them, causing the substances in the water to produce complex electrochemical reactions. Most of the algae and bacteria in the water are negatively charged, and the water itself contains a large amount of chloride ions. The large amount of free chlorine generated during the electrolysis process can destroy the inside of bacteria and algae cells, thereby having the effect of sterilization and algae inhibition. The outer surface of the rod-type launcher 10 can also be plated with an iridium-ruthenium mixed coating to prevent the titanium base material of the rod-type launcher 10 from being consumed in large quantities due to long-term use, thereby extending the service life of the rod-type launcher 10.
[0035] Reference Figure 2-Figure 5 A partition plate 19 is fixedly provided at the upper end of the first waterproof housing 1. A sliding groove consistent with the movable groove 20 is opened at the upper end of the partition plate 19. The upper end of the linkage rod 17 passes through the sliding groove at the upper end of the partition plate 19 and a limit block is fixedly provided at the upper end of the linkage rod 17. The power drive mechanism 12 includes a drive motor 1201. The drive motor 1201 is embedded in the second waterproof housing 11 and the output end of the drive motor 1201 passes through the second waterproof housing 11 and is equipped with a plurality of fan blades 1202.
[0036] Specifically, when the servo motor 16 is started, it drives the No. 1 gear 15 connected to the output end to rotate. After the No. 1 gear 15 rotates, it can drive the No. 2 gear 18 to rotate, thereby realizing the rotation of the linkage rod 17. Since the linkage rod 17 is movably arranged in the sliding groove and the movable groove 20, the movable groove 20 and the sliding groove are both arc-shaped slots. The outer ring of the No. 1 gear 15 and the No. 2 gear 18 rotate to drive the linkage rod 17 to rotate in an arc, thereby driving the No. 2 waterproof shell 11 at the lower end of the linkage rod 17 and the power drive mechanism 12 in the No. 2 waterproof shell 11 to move. After the drive motor 1201 is started, it will drive multiple fan blades 1202 to rotate to achieve the effect of a propeller. At the same time, the angle adjustment of the linkage rod 17 can be used to complete the steering movement.
[0037] Reference Figure 1 、 Figure 3 、 Figure 5 and Figure 6, a plurality of through holes 5 are opened on the upper end surface of the overflow plate 6, the side of the device body 4 away from the No. 1 waterproof shell 1 is V-shaped and the front and rear ends of the inner wall are equipped with clamping columns 21, and the net bag 7 is respectively connected to the two clamping columns 21 through two hanging rings 22;
[0038] Specifically, when in use, one end of the net bag 7 is fixed to one side of the lower end of the device body 4, and the other end is installed on the two clamping columns 21 using a hanging ring 22. At this time, the net bag 7 surrounds the lower end and one side outer wall of the overflow plate 6. When blue algae gather on the overflow plate 6, the blue algae slide along the water into the net bag 7 at the lower end to complete collection and processing. When cleaning, the hanging ring 22 and the clamping column 21 can be separated for quick cleaning and use.
[0039] Reference Figure 2 、 Figure 3 and Figure 7 , the lower end surfaces of the two side plates 3 are located on both sides of the two partitions 8 and are provided with grooves 13, the rod-type launcher 10 is embedded in the groove 13, the end of the scraper ring 9 away from the rod-type launcher 10 is threadedly sleeved on the outer wall of the bidirectional screw 1403, the two drive shafts 1405 are fixedly installed at the output end of the double-headed motor 1402, the two No. 2 bevel gears 1404 are respectively fixedly sleeved on the two drive shafts 1405, the two No. 1 bevel gears 1401 are respectively fixedly sleeved at the midpoint of the two bidirectional screws 1403, the two No. 1 bevel gears 1401 are respectively meshed with the two No. 2 bevel gears 1404, and the No. 1 bevel gears 1401 and the No. 2 bevel gears 1404 meshed with the two No. 1 bevel gears 1401 and the No. 2 bevel gears 1404 are installed inside the partition 8;
[0040] Specifically, when it is necessary to clean the surface of the rod-type launcher 10, the double-headed motor 1402 is started to drive the driving shaft 1405 at the output end to rotate. The rotation of the driving shaft 1405 drives the No. 2 bevel gear 1404 to rotate, and the No. 2 bevel gear 1404 is engaged with the No. 1 bevel gear 1401 to realize the rotation of the No. 1 bevel gear 1401, thereby realizing the rotation of the bidirectional screw 1403 fixedly sleeved on the inner side of the No. 1 bevel gear 1401. Since the two scraper rings 9 are respectively threadedly sleeved on the two ends of the outer wall of the bidirectional screw 1403, the two scraper rings 9 move to both sides at this time, and the lower ends of the two scraper rings 9 are slidably sleeved on the outer wall of the rod-type launcher 10, thereby achieving the scraping and cleaning effect of the outer wall of the rod-type launcher 10; and the No. 1 bevel gear 1401 and the No. 2 bevel gear 1404 are installed in the partition 8, which can play a certain waterproof effect, reduce the probability of rust, and improve service life.
[0041] Reference Figure 1 A control box 2 is installed at the midpoint of the upper end surface of the device body 4. A control panel is provided in the control box 2. The control panel includes a wireless transmission module and a WiFi module, which can realize remote control operation.
[0042] Working principle: When in use, the electromagnetic sterilization and algae control device is placed in water. After the rod-type transmitter 10 at the lower end is energized, an electromagnetic field is formed between them, causing the substances in the water to produce a complex electrochemical reaction. Most algae and bacteria in the water have negative charges, and the water itself contains a large amount of chloride ions. The large amount of free chlorine generated during the electrolysis process can destroy the inside of bacteria and algae cells, achieving the effect of sterilization and algae inhibition. The overflow plate 6 with a through hole 5 and the detachable net bag 7 at the lower end of the electromagnetic sterilization and algae control device can realize the function of collecting and treating blue-green algae on the water surface when moving in the water body.
[0043] Secondly, when it is necessary to clean the surface of the rod launcher 10, the double-headed motor 1402 is started to drive the drive shaft 1405 at the output end to rotate. The rotation of the drive shaft 1405 drives the No. 2 bevel gear 1404 to rotate, and the No. 2 bevel gear 1404 is engaged with the No. 1 bevel gear 1401 to realize the rotation of the No. 1 bevel gear 1401, thereby realizing the rotation of the bidirectional screw 1403 fixed on the inner side of the No. 1 bevel gear 1401. Since the two scraper rings 9 are respectively threadedly connected to the two ends of the outer wall of the bidirectional screw 1403, the two scraper rings 9 move to both sides respectively at this time, and the lower ends of the two scraper rings 9 are slidably connected to the outer wall of the rod launcher 10, thereby achieving the scraping and cleaning effect of the outer wall of the rod launcher 10.
[0044] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An electromagnetic sterilization and algae control device, comprising a device body (4), characterized in that: A movable groove (20) is provided on one side of the upper end surface of the device body (4); a No. 1 waterproof shell (1) is fixedly provided on the upper end surface of the device body (4) at the upper end of the movable groove (20); a side plate (3) is fixedly provided on the front end surface and the rear end surface of the device body (4); an overflow plate (6) is fixedly provided on the side of the device body (4) away from the No. 1 waterproof shell (1), and a net bag (7) is installed at the lower end of the overflow plate (6); a linkage rod (17) is movably provided inside the movable groove (20); a No. 2 waterproof shell (11) is fixedly provided at the lower end of the linkage rod (17); a power drive mechanism (12) is installed inside the No. 2 waterproof shell (11); a servo motor (16) is installed on the upper end of the device body (4) inside the No. 1 waterproof shell (1); a No. 1 gear (15) is fixedly provided at the output end of the servo motor (16); a No. 2 gear (18) meshing with the No. 1 gear (15) is installed on the linkage rod (17); A partition (8) is fixedly provided at the midpoint of the lower end surface of each of the two side plates (3); rod-type launchers (10) are installed at the lower ends of each of the two side plates (3) on both sides of the partition (8); a plurality of scraper rings (9) are slidably sleeved on the outer sides of the rod-type launchers (10); an output drive mechanism (14) is installed at the midpoint inside the device body (4); the output drive mechanism (14) comprises two number one bevel gears (1401), a double-headed motor (1402), two bidirectional screws (1403), two number two bevel gears (1404) and two drive shafts (1405).
2. The electromagnetic sterilization and algae control device according to claim 1, characterized in that: A partition plate (19) is fixedly provided at the upper end of the interior of the No. 1 waterproof housing (1), and a sliding groove consistent with the movable groove (20) is provided at the upper end of the partition plate (19). The upper end of the linkage rod (17) passes through the sliding groove at the upper end of the partition plate (19), and a limit block is fixedly provided at the upper end of the linkage rod (17).
3. The electromagnetic sterilization and algae control device according to claim 1, characterized in that: The power drive mechanism (12) comprises a drive motor (1201), the drive motor (1201) being embedded in the second waterproof housing (11), and the output end of the drive motor (1201) passing through the second waterproof housing (11) is provided with a plurality of fan blades (1202).
4. The electromagnetic sterilization and algae control device according to claim 1, characterized in that: The upper end surface of the overflow plate (6) is provided with a plurality of through holes (5). The side of the device body (4) away from the No. 1 waterproof housing (1) is V-shaped and has clamping columns (21) installed at the front and rear ends of the inner wall. The net bag (7) is respectively connected to the two clamping columns (21) through two hanging rings (22).
5. The electromagnetic sterilization and algae control device according to claim 1, characterized in that: The lower end surfaces of the two side plates (3) are located on both sides of the two partition plates (8) and are provided with grooves (13), and the rod-type launcher (10) is embedded in the grooves (13).
6. The electromagnetic sterilization and algae control device according to claim 1, characterized in that: One end of the scraper ring (9) away from the rod-type launcher (10) is threadedly sleeved on the outer wall of the bidirectional screw (1403), the two drive shafts (1405) are fixedly installed at the output end of the double-headed motor (1402), the two second bevel gears (1404) are respectively fixedly sleeved on the two drive shafts (1405), and the two first bevel gears (1401) are respectively fixedly sleeved at the midpoint of the two bidirectional screws (1403).
7. The electromagnetic sterilization and algae control device according to claim 1, characterized in that: The two first bevel gears (1401) are respectively meshed with the two second bevel gears (1404), and the first bevel gear (1401) and the second bevel gear (1404) that are meshed with the two first bevel gears (1401) and the two second bevel gears (1404) are installed inside the partition (8).
8. The electromagnetic sterilization and algae control device according to claim 1, characterized in that: A control box (2) is installed at the midpoint of the upper end surface of the device body (4).