Fish tank culture water cleaning device
By designing an automated fish tank farming water cleaning device and using filter belt drive components and flushing system, the problem of frequent manual cleaning of filter belts in the prior art is solved, and automated cleaning and efficient filtration of filter belts are realized.
Patent Information
- Application Number
- CN202421877539.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-08-05
AI Technical Summary
After the existing fish tank cleaning device is filtered and cleaned for a period of time, more residue and feces will be adhered to the coarse filter plate and activated carbon adsorption plate, reducing the subsequent cleaning and filtration effect, and frequent manual cleaning is required, which is troublesome to operate.
A fish tank farming water cleaning device is designed, including cleaning box, filter filter belt, water divider and filter belt drive assembly. The filter belt is wound around the belt guide shaft inside the cleaning box, and the filter belt drum is driven to rotate through the drive motor of the filter belt drive assembly to realize automatic cleaning of the filter belt.
Through the automated filter belt drive and flushing system, the cleaning frequency of the filter belt is reduced, the operation is simplified, the cleaning efficiency is improved, and the cumbersomeness of manual cleaning is avoided.
Smart Images

Figure CN222840310U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fish tank cleaning, in particular to a fish tank aquaculture water cleaning device. Background Art
[0002] As people's pursuit of beautifying the home environment continues to increase, the popularization of fish tanks is a development trend. The internal cleaning of the ornamental fish tank in the existing technology is relatively inconvenient, because the food residues and feces deposited at the bottom are not easy to clean, which easily leads to poor water quality and affects the survival of fish. In order to solve the above problems, the Chinese utility model patent with the authorization announcement number CN212877228U discloses a circulating cleaning ornamental fish tank. The above scheme is provided with a circulating water pump, the input end of the circulating water pump is connected to the fish tank body, and the output end of the circulating water pump is connected to the circulating cleaning box. When the circulating water pump is running, the water inside the fish tank body can be extracted and transported to the inside of the circulating cleaning box, and the impurities in the water are filtered out by the coarse filter plate and the activated carbon adsorption plate, and then the oxygen content in the water is increased under the action of the aerator, and finally the disinfectant and sterilizing agent in the agent adding box are mixed through the agent adding box, and then circulated into the inside of the fish tank body through the mixed water inlet pipe, thereby ensuring the cleanliness of the water quality and avoiding frequent water changes.
[0003] However, after a period of filtering and cleaning, a lot of residue and feces will adhere to the coarse filter plate and the activated carbon adsorption plate, which will reduce the subsequent cleaning and filtering effect. At this time, the filter elements (coarse filter plate and activated carbon adsorption plate) need to be manually cleaned. The cleaning frequency is relatively frequent and the manual cleaning operation is cumbersome. Utility Model Content
[0004] The purpose of the utility model is to provide a fish tank aquaculture water cleaning device to solve the problems raised in the above background technology.
[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:
[0006] A fish tank aquaculture water cleaning device comprises a cleaning box, a filter belt, a water divider and a filter belt drive assembly, wherein the filter belt is wound around a plurality of belt guide shafts installed inside the cleaning box, the bottom belt section of the filter belt divides the internal space of the cleaning box into a water inlet chamber and a clean water chamber, and a water outlet interface for conducting with the clean water chamber is installed outside the cleaning box; the water divider is installed in the water inlet chamber inside the cleaning box, and the inlet end of the water divider is connected to the water inlet interface outside the cleaning box; the filter belt drive assembly comprises a filter belt drum and a drive motor for driving the filter belt drum to rotate, and the filter belt is also wound around the filter belt drum.
[0007] Preferably, the water distributor adopts a water distributor guide tube, the outer wall of which contacts the filter belt, and the outer wall of which is provided with a plurality of water distributor holes distributed along the axial direction, so that the aquaculture water entering the water distributor can flow out evenly through the water distributor holes.
[0008] Preferably, the filter belt drive assembly also includes a drum end seat installed on the cleaning box, both ends of the filter belt drum are rotatably mounted on the corresponding drum end seats, the drive motor is embedded in one of the drum end seats, and the output end of the drive motor is connected to the filter belt drum drive.
[0009] Preferably, the belt body guide shaft includes a left bottom guide shaft, a right middle guide shaft and a right upper guide shaft, and the filter belt passes around the left bottom guide shaft, the right middle guide shaft, the right upper guide shaft and the filter belt drum in sequence, and the filter belt between the left bottom guide shaft and the right middle guide shaft is an inclined bottom belt section.
[0010] Preferably, it also includes a sewage receiving trough installed at the upper end of the cleaning box, and water receiving guide shafts are installed on both sides of the corresponding sewage receiving trough inside the cleaning box. The filter belt passes over the top of the sewage receiving trough after being guided by the water receiving guide shaft, and the corresponding sewage receiving trough on the outside of the cleaning box is also connected to a sewage discharge interface; a splash-proof cover is also installed above the cleaning box corresponding to the sewage receiving trough, and a flushing nozzle for spraying water to the outer surface of the filter belt is installed on the inside of the splash-proof cover, and the flushing nozzle is connected to the water outlet end of the flushing pump through a flushing pipe.
[0011] Preferably, a plurality of transparent observation ports are also distributed on the outer wall of the cleaning box to facilitate viewing of the internal operation of the device of the utility model.
[0012] Preferably, a liquid level detection element is installed inside the cleaning box near the bottom of the sewage receiving tank, and the liquid level detection element is connected to the controller signal; the water inlet interface is connected to the drain pipe of the fish tank through an electromagnetic switch valve, and the electromagnetic switch valve is connected to the controller signal.
[0013] Compared with the prior art, the utility model has the following beneficial effects: during the filtering process, when there are a lot of debris adhered and accumulated on the bottom belt section of the filter belt, by turning on the drive motor of the filter belt drive assembly, the drive motor can drive the filter belt drum to rotate, and the filter belt drum will drive the filter belt to move, so that the clean area of the filter belt is transported to the lower end, and it is used as the bottom belt section to participate in the filtering. Through such a structural design, the cleaning frequency of the filter belt can be greatly reduced;
[0014] When cleaning the filter belt, the driving motor drives the filter belt to move, so that the filter belt with attached debris passes over the sewage receiving tank in turn. At the same time, the flushing pump starts to work, sucks flushing water, and sprays the flushing water on the outer surface of the filter belt through the flushing nozzle to backwash the filter belt, thereby realizing automatic cleaning of the filter belt. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of a fish tank aquaculture water cleaning device from a first viewing angle;
[0016] Figure 2 It is a schematic diagram of the three-dimensional structure of a fish tank aquaculture water cleaning device under a second viewing angle;
[0017] Figure 3 It is a schematic diagram of a three-dimensional structure of a fish tank aquaculture water cleaning device in section;
[0018] Figure 4 The present invention is a schematic diagram of the cross-sectional structure of a filter belt drive assembly in a fish tank aquaculture water cleaning device.
[0019] In the figure: 100, filter belt; 101, water inlet chamber; 102, clean water chamber; 200, controller; 201, power plug; 1, cleaning box; 11, water outlet interface; 12, switch valve; 13, water distributor; 131, water distribution hole; 14, water inlet interface; 15, sewage discharge interface; 16, transparent observation port; 17, left bottom guide shaft; 18, right middle guide shaft; 19, right upper guide shaft; 2, flushing pump; 21, flushing pipe; 22, flushing nozzle; 23, splash cover; 24, sewage receiving trough; 25, water receiving guide shaft; 3, filter belt drive assembly; 31, drum end seat; 32, filter belt drum; 33, drive motor; 4, liquid level detection element. DETAILED DESCRIPTION
[0020] 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, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0021] See also Figures 1 to 4The utility model provides a technical solution: a fish tank aquaculture water cleaning device, comprising a cleaning box 1, a filter belt 100, a water divider 13 and a filter belt drive assembly 3, wherein the filter belt 100 is wound around a plurality of belt guide shafts installed inside the cleaning box 1, and the bottom belt section of the filter belt 100 divides the internal space of the cleaning box 1 into a water inlet chamber 101 and a clean water chamber 102, and a water outlet interface 11 for conducting with the clean water chamber 102 is installed outside the cleaning box 1, and a switch valve 12 can be installed at the water outlet interface 11; the water divider 13 is installed in the water inlet chamber 101 inside the cleaning box 1, and the inlet end of the water divider 13 is connected to the water inlet interface 14 outside the cleaning box 1; the filter belt drive assembly 3 comprises a filter belt drum 32 and a drive motor 33 for driving the filter belt drum 32 to rotate, and the filter belt 100 is also wound around the filter belt drum 32.
[0022] The working principle of the utility model is as follows: the bottom band section of the filter belt 100 divides the internal space of the cleaning box 1 into a water inlet chamber 101 and a clean water chamber 102. The aquaculture water in the fish tank is introduced into the water inlet interface 14 through the downpipe. The aquaculture water enters the water divider 13 through the water inlet interface 14. The water divider 13 evenly distributes the aquaculture water on the inner side of the bottom band section of the filter belt 100. The aquaculture water can enter the clean water chamber 102 after being filtered by the filter belt 100. The clean water in the clean water chamber 102 can be re-introduced into the fish tank through the water outlet interface 11.
[0023] During the filtering process, when there are a lot of debris adhered and accumulated on the bottom belt section of the filter belt 100, by turning on the drive motor 33 of the filter belt drive assembly 3, the drive motor 33 can drive the filter belt drum 32 to rotate, and the filter belt drum 32 will drive the filter belt 100 to move, so that the clean area of the filter belt 100 is transported to the lower end and used as the bottom belt section for filtration. Through such a structural design, the cleaning frequency of the filter belt 100 can be greatly reduced.
[0024] As a specific solution, in order to facilitate the uniform distribution of aquaculture water, the water distributor 13 adopts a water distribution guide tube, the outer wall of which contacts the filter belt 100, and the outer wall of which is provided with a plurality of water distribution holes 131 distributed along the axial direction. The aquaculture water entering the water distributor 13 can flow out uniformly through the water distribution holes 131.
[0025] As a specific solution, in order to compactly arrange the filter belt drive assembly 3 and reduce space occupation, the filter belt drive assembly 3 also includes a drum end seat 31 installed on the cleaning box 1, and both ends of the filter belt drum 32 are rotatably mounted on the corresponding drum end seats 31, and the drive motor 33 is embedded in one of the drum end seats 31, and the output end of the drive motor 33 is drivingly connected to the filter belt drum 32. When it is necessary to drive the filter belt 100 to move, the drive motor 33 is turned on, and the filter belt drum 32 is driven to rotate by the drive motor 33, thereby driving the filter belt 100.
[0026] As a specific solution, in this embodiment, in order to make full use of the internal space of the cleaning box 1, the belt guide shaft may specifically include a left bottom guide shaft 17, a right middle guide shaft 18 and a right upper guide shaft 19. The filter belt 100 sequentially passes around the left bottom guide shaft 17, the right middle guide shaft 18, the right upper guide shaft 19 and the filter belt drum 32. The filter belt 100 between the left bottom guide shaft 17 and the right middle guide shaft 18 is an inclined bottom belt section.
[0027] In order to facilitate the automated cleaning of the filter belt 100, the utility model also includes a sewage water receiving trough 24 installed at the upper end of the cleaning box 1, and water receiving guide shafts 25 are installed on both sides of the corresponding sewage water receiving trough 24 inside the cleaning box 1. The filter belt 100 passes over the sewage water receiving trough 24 after being guided by the water receiving guide shafts 25, and the corresponding sewage water receiving trough 24 on the outside of the cleaning box 1 is also connected to a sewage discharge interface 15; a splash-proof cover 23 is also installed above the cleaning box 1 corresponding to the sewage water receiving trough 24, and a flushing nozzle 22 for spraying water onto the outer surface of the filter belt 100 is installed on the inner side of the splash-proof cover 23, and the flushing nozzle 22 is connected to the water outlet end of the flushing pump 2 through the flushing pipe 21, and the water inlet pipe of the flushing pump 2 can be connected to the clean water chamber 102.
[0028] When cleaning the filter belt 100, the driving motor 33 drives the filter belt 100 to move, so that the filter belt 100 with attached debris passes over the sewage receiving tank 24 in turn. At the same time, the flushing pump 2 starts to work, sucks flushing water, and sprays the flushing water on the outer surface of the filter belt 100 through the flushing nozzle 22 to backwash the filter belt 100. The debris attached to the inner surface of the filter belt 100 can enter the sewage receiving tank 24 together with the sewage, and finally be discharged from the sewage discharge interface 15, thereby realizing automatic cleaning of the filter belt 100; the splash-proof cover 23 provided can prevent the flushing water from splashing during the flushing process.
[0029] In order to facilitate viewing of the internal operation of the device of the utility model, a plurality of transparent observation ports 16 are distributed on the outer wall of the cleaning box 1 .
[0030] In order to realize the automatic control of the introduction of aquaculture water and prevent the introduced aquaculture water from overflowing from the cleaning box 1, a liquid level detection element 4 is also installed inside the cleaning box 1 near the bottom of the sewage receiving tank 24. The liquid level detection element 4 can specifically adopt a float valve, and the liquid level detection element 4 is connected to the controller 200 by signal; the water inlet interface 14 is connected to the drain pipe of the fish tank through an electromagnetic switch valve, and the electromagnetic switch valve is connected to the controller 200 by signal. When there are a lot of debris adhered and accumulated on the bottom belt section of the filter belt 100, the filtration efficiency is reduced, and the water level of the aquaculture water entering the water inlet chamber 101 reaches the set threshold, the liquid level detection element 4 sends a signal to the controller 200, and the controller 200 will control the electromagnetic switch valve to close to prevent the aquaculture water in the cleaning box 1 from overflowing; of course, as a further solution, the controller 200 can be connected to the power supply through the power plug 201. In addition, the controller 200 can also control the drive motor 33 and the flushing pump 2 to work at the same time. The drive motor 33 drives the filter belt 100 to move, and the flushing pump 2 flushes the filter belt 100 through the flushing nozzle 22. The flushed filter belt 100 continues to participate in filtration.
[0031] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, the embodiments should be regarded as exemplary and non-restrictive from any point of view, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims be included in the present invention. Any reference numeral in a claim should not be regarded as limiting the claim to which it relates.
Claims
1. A fish tank aquaculture water cleaning device, comprising a cleaning box (1), characterized in that: Also includes: A filter belt (100), the filter belt (100) is wound around a plurality of belt guide shafts installed inside the cleaning box (1), the bottom belt section of the filter belt (100) divides the internal space of the cleaning box (1) into a water inlet chamber (101) and a clean water chamber (102), and a water outlet interface (11) for communicating with the clean water chamber (102) is installed outside the cleaning box (1); A water divider (13), the water divider (13) is installed in the water inlet cavity (101) inside the cleaning box (1), and the inlet end of the water divider (13) is connected to the water inlet interface (14) outside the cleaning box (1); The filter belt drive assembly (3) comprises a filter belt drum (32) and a drive motor (33) for driving the filter belt drum (32) to rotate. The filter belt (100) is also wound around the filter belt drum (32).
2. A fish tank aquaculture water cleaning device according to claim 1, characterized in that: The water divider (13) adopts a water divider guide tube, the outer wall of which is in contact with the filter belt (100), and the outer wall of which is provided with a plurality of water divider holes (131) distributed along the axial direction.
3. The fish tank aquaculture water cleaning device according to claim 1, characterized in that: The filter belt drive assembly (3) further comprises a drum end seat (31) mounted on the cleaning box (1), both ends of the filter belt drum (32) being rotatably mounted on the corresponding drum end seats (31), the drive motor (33) being embedded in one of the drum end seats (31), and the output end of the drive motor (33) being drive-connected to the filter belt drum (32).
4. The fish tank aquaculture water cleaning device according to claim 1, characterized in that: The belt body guide shaft comprises a left bottom guide shaft (17), a right middle guide shaft (18) and a right upper guide shaft (19); the filter belt (100) passes around the left bottom guide shaft (17), the right middle guide shaft (18), the right upper guide shaft (19) and the filter belt drum (32) in sequence; the filter belt (100) between the left bottom guide shaft (17) and the right middle guide shaft (18) is a bottom belt section arranged obliquely.
5. A fish tank aquaculture water cleaning device according to any one of claims 1 to 4, characterized in that: It also includes a sewage receiving trough (24) installed at the upper end of the interior of the cleaning box (1), water receiving guide shafts (25) are installed on both sides of the interior of the cleaning box (1) corresponding to the sewage receiving trough (24), the filter belt (100) passes over the sewage receiving trough (24) after being guided by the water receiving guide shafts (25), and a sewage discharge interface (15) is connected to the exterior of the cleaning box (1) corresponding to the sewage receiving trough (24); A splash-proof cover (23) is also installed above the cleaning box (1) corresponding to the sewage receiving tank (24), and a flushing nozzle (22) for spraying water onto the outer surface of the filter belt (100) is installed inside the splash-proof cover (23). The flushing nozzle (22) is connected to the water outlet end of the flushing pump (2) through a flushing pipe (21).
6. A fish tank aquaculture water cleaning device according to claim 5, characterized in that: A plurality of transparent observation ports (16) are also distributed on the outer wall of the cleaning box (1).
7. The fish tank aquaculture water cleaning device according to claim 5, characterized in that: A liquid level detection element (4) is also installed inside the cleaning box (1) near the bottom of the sewage receiving tank (24), and the liquid level detection element (4) is connected to the controller (200) by signal. The water inlet interface (14) is connected to the downpipe of the fish tank via an electromagnetic switch valve, and the electromagnetic switch valve is connected to the controller (200) via a signal.
Citation Information
Patent Citations
Circulating clean ornamental fish tank
CN212877228U