Integrated gapless water-filled fish tank table
By introducing a circulation pump and circulation pipeline into the fish tank table, combined with the auxiliary return tank and suction section, the problems of insufficient oxygen content and fish excretion removal are solved, ensuring that there is no gap in the tank and filling water, improving ornamentality.
Patent Information
- Application Number
- CN202421155873.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-25
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-05-25
AI Technical Summary
The existing fish tank table structure results in less oxygen content, difficult to remove fish excrement, and difficult water bodies to fill the cylinder, resulting in gaps on the top of the cylinder and mist or water droplets, affecting the ornamentality.
The design of sealed cylinder block, circulation pump and circulation pipeline is adopted, combined with auxiliary return tank and suction section, to realize water circulation and remove fish excretions, and to suck air through the suction section to ensure that there is no gap in the cylinder block and full of water.
It achieves sufficient oxygen in the water body in the tank, removes fish excretion, avoids mist or water droplets on the wall, and improves ornamentality.
Smart Images

Figure CN223195357U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of furniture products, in particular to an integrated fish tank table with no gaps and fully filled with water. Background Art
[0002] Currently, fish tank tables on the market often feature an open fish tank recessed into the tabletop, with a glass cover over the opening. While this design is simple and easy to manufacture, it lacks water circulation, resulting in low oxygen levels and difficulty removing fish waste. Furthermore, water rarely fills the entire tank, leaving gaps at the top. Furthermore, temperature fluctuations in the external environment can affect the tank walls, leading to the formation of fog or water droplets on the inside of the glass cover (i.e., the inside of the tabletop), significantly impacting the overall aesthetic and significantly reducing product sales. Summary of the Invention
[0003] The utility model aims to provide an integrated fish tank table with no gaps and fully filled with water.
[0004] In order to achieve the above purpose, the present invention can adopt the following technical solutions:
[0005] The utility model describes an integrated, gap-free, fully-filled fish tank table, comprising a fish tank table body consisting of a sealed cylinder body and supporting legs evenly distributed at the four corners of the bottom surface of the sealed cylinder body; a circulation pipeline with a circulation pump is connected to the sealed cylinder body, an auxiliary return water trough with an upper opening structure is provided on the circulation pipeline, a liquid inlet end of the circulation pipeline is sealed and penetrates vertically upward from the bottom wall of the sealed cylinder body into the cylinder, forming a suction section that slides up and down to adjust the height, an opening and closing valve is provided on the suction section, and a bellows adjustment section is provided outside the sealed cylinder body on the circulation pipeline near the suction section.
[0006] The advantage of the present invention is that, by connecting the circulation pipeline on the sealed cylinder body and cooperating with the auxiliary return water tank arranged on the circulation pipeline, the water circulation inside the sealed cylinder body is easily realized, thereby ensuring the oxygen content of the water body in the cylinder body to facilitate fish farming, and at the same time, the excrement of the fish during fish farming can be circulated and removed; in addition, the suction section located at the liquid inlet end of the circulation pipeline is vertically sealed and penetrated from the bottom wall of the sealed cylinder body, and can slide up and down to adjust the height, thereby easily sucking out the air and fish excrement in the sealed cylinder body, realizing the airless full filling of the sealed cylinder body with water, avoiding leaving gaps in the cylinder body, preventing fog or water droplets from forming on the cylinder wall, ensuring that the fish in the cylinder body can be clearly observed, and greatly improving the viewing experience.
[0007] Furthermore, in order to facilitate the cleaning of the inner wall of the sealed cylinder body at any time, a first cleaning block can be provided in the sealed cylinder body, and a second cleaning block can be provided outside the sealed cylinder body. The first cleaning block has a first attraction magnet, and the second cleaning block has a second attraction magnet matching the first attraction magnet. A holding handle for easy holding is provided on the second cleaning block. By operating the holding handle, the first cleaning block and the second cleaning block that are attracted to each other on the cylinder wall of the sealed cylinder body are driven to move, thereby easily wiping the inner wall of the sealed cylinder body.
[0008] Furthermore, the auxiliary return water tank is arranged at a corner of the top surface of the sealed cylinder body, and a return water port connected to the inner cavity of the sealed cylinder body is opened at its bottom; the liquid outlet end of the circulation pipeline extends to above the opening of the auxiliary return water tank, and a filter cartridge is arranged on the circulation pipeline, and the filter cartridge is filled with a first filter material.
[0009] Of course, the auxiliary water return trough can also be arranged below the sealed cylinder body, and the circulation pipeline can be divided into a suction pipe and a return pipe through the auxiliary water return trough. One end of the suction pipe is tilted upward and connected to the side wall of the auxiliary water return trough near the top, and the other end is the suction section that penetrates into the sealed cylinder body. One end of the return pipe is horizontally connected to the side wall of the auxiliary water return trough near the bottom, and the other end is connected to the cylinder wall of the sealed cylinder body. In this case, the circulation pump is divided into two groups, which are respectively arranged on the suction pipe and the return pipe. A second filter material can be laid on the bottom of the auxiliary water return trough for filtration, and a feeding port with a sealing cover is provided on the cylinder wall of the sealed cylinder body. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is a structural diagram of embodiment 1 of the present utility model.
[0011] Figure 2 It is a structural diagram of the second embodiment of the present utility model. DETAILED DESCRIPTION
[0012] 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.
[0013] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.
[0014] In this utility model, unless otherwise specified or limited, the terms "connect," "fix," etc. should be understood broadly. For example, "fix" can mean fixed connection, detachable connection, or integration; it can mean mechanical connection or electrical connection; it can mean direct connection or indirect connection through an intermediate medium; it can mean internal communication between two elements or interaction between two elements, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0015] In addition, in this utility model, terms such as "first," "second," etc. are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, features specified as "first" or "second" may explicitly or implicitly include at least one of these features.
[0016] Example 1:
[0017] like Figure 1 As shown, the integrated, gap-free, fully filled fish tank table of the present invention comprises a sealed cylinder body 1 and legs 2 evenly distributed at the four corners of the bottom surface of the sealed cylinder body 1. A circulation line 4 with a circulation pump 3 is connected to the sealed cylinder body 1. The circulation line 4 is provided with an auxiliary water return trough 5 with an upper opening. The liquid inlet end of the circulation line 4 extends vertically upward from the bottom wall of the sealed cylinder body 1 and seals into the cylinder body, forming a suction section 6 that can slide up and down to adjust the height. Specifically, a high-pressure-resistant rubber sealing ring can be installed at the opening where the suction section 6 penetrates the sealed cylinder body 1. The suction section 6 passes through the high-pressure-resistant rubber sealing ring, thereby ensuring a seal and allowing the suction section 6 to move up and down in close contact with the inner annular surface of the rubber sealing ring. An on-off valve 7 is provided on the suction section 6. The on-off valve 7 can be an electrically controlled valve or a manual valve. If the on-off valve 7 is a manual valve, it must be located on the suction section 6 outside the sealed cylinder body 1. In addition, a bellows adjustment section 8 located outside the sealed cylinder body 1 should be provided on the circulation pipeline 4 near the suction section 6, so that when the height of the suction section 6 is adjusted by sliding upward or downward, the bellows adjustment section 8 can be bent at any angle according to the height adjustment of the suction section 6.
[0018] Specifically, the auxiliary return water groove 5 is located at a corner of the top surface of the sealed cylinder body 1, and a return water port 9 connected to the inner cavity of the sealed cylinder body 1 is opened at its bottom; at this time, the liquid outlet end of the circulation pipeline 4 should extend to above the opening of the auxiliary return water groove 5 and preferably face the return water port 9, thereby forming a connection between the circulation pipeline 4 and the auxiliary return water groove 5, so that the water flowing out from the liquid outlet end of the circulation pipeline 4 can fall vertically into the auxiliary return water groove 5, and hit the water surface in the auxiliary return water groove 5 when falling, thereby generating a certain amount of oxygen, which enters the sealed cylinder body 1 through the return water port 9.
[0019] In addition, a filter cartridge 10 should be provided on the circulation line 4, and the filter cartridge 10 should be filled with a first filter material 11. Thus, when the water in the sealed cylinder 1 is sucked by the circulation pump 3 and flows through the first filter material 11 in the filter cartridge 10, it can be filtered and removed by the first filter material 11, thereby eliminating impurities or fish excrement in the sealed cylinder 1. In this case, the filter cartridge 10 should be screwed to the circulation line 4, or a removable cover should be provided on the filter cartridge 10 to facilitate cleaning or replacement of the first filter material 11 in the cartridge at any time. Of course, a mesh cover can also be provided on the return water port 9, and the first filter material 11 can be laid on the bottom of the auxiliary return water tank 5, so that the filter cartridge 10 can be omitted.
[0020] Furthermore, in order to facilitate cleaning the inner wall of the sealed cylinder body 1 at any time, a first cleaning block 12 can be set in the sealed cylinder body 1, and a second cleaning block 13 can be set outside the sealed cylinder body 1, the first cleaning block 12 has a first attraction magnet 14, and the second cleaning block 13 has a second attraction magnet 15 matching the first attraction magnet 14, and a holding handle 16 for easy gripping is provided on the second cleaning block 13; at the same time, the first cleaning block 12 and the second cleaning block 13 can be connected by a connecting rope 17, so that the first cleaning block 12 can be put into the sealed cylinder body 1 through the return water port 9, and then the second cleaning block 13 is used to attract each other with the first cleaning block 12, so that the first cleaning block 12 and the second cleaning block 13 are attracted to the inner and outer sides of the cylinder wall of the sealed cylinder body 1, at this time, the first cleaning block 12 and the second cleaning block 13 attracted to each other on the cylinder wall of the sealed cylinder body 1 can be driven to move by operating the holding handle 16, so that the inner and outer walls of the sealed cylinder body 1 can be easily wiped.
[0021] During use, water can be injected into the sealed cylinder body 1 through the auxiliary return water groove 5. When a certain amount of water is injected into the sealed cylinder body 1, ornamental fish can be put into it, and then water injection is continued until the water fills the entire sealed cylinder body 1; when the water in the sealed cylinder body 1 overflows to a certain amount in the auxiliary return water groove 5, water injection can be stopped, and at this time, the on-off valve 7 on the suction section 6 is opened, and the circulation pump 3 is turned on, thereby realizing the continuous circulation of the water in the sealed cylinder body 1.
[0022] During the water circulation process, the water flowing out from the liquid outlet end of the circulation pipeline 4 can fall vertically into the auxiliary return water tank 5, and then hit the water surface in the auxiliary return water tank 5 when falling, generating a certain amount of oxygen that enters the sealed cylinder body 1 through the return water port 9, thereby ensuring the oxygen supply for the ornamental fish and at the same time circulating and removing the excrement of the fish during fish farming; of course, a submersible oxygen pump can also be directly placed into the sealed cylinder body 1 through the return water port 9.
[0023] In addition, during the water circulation process, when a large number of bubbles generated in the water in the sealed cylinder body 1 gather and cause gaps to form on the top wall of the sealed cylinder body 1, the suction section 6 can be slid upward so that its upper port (i.e., the liquid inlet) is adjusted to be close to the top wall of the sealed cylinder body 1, thereby utilizing suction to suck out the gap close to the top wall of the sealed cylinder body 1, and always keeping the sealed cylinder body 1 in a fully filled water state without gaps, thereby avoiding leaving large gaps in the sealed cylinder body 1, preventing fog or water droplets from forming on the cylinder wall, ensuring that the fish in the cylinder can be clearly observed, and greatly improving the viewing experience.
[0024] Example 2:
[0025] like Figure 2 As shown, the integrated, gap-free, fully filled fish tank table of the present invention comprises a sealed cylinder body 1 and legs 2 evenly distributed at the four corners of the bottom surface of the sealed cylinder body 1. A circulation line 4 with a circulation pump 3 is connected to the sealed cylinder body 1. The circulation line 4 is provided with an auxiliary water return trough 5 with an upper opening. The liquid inlet end of the circulation line 4 extends vertically upward from the bottom wall of the sealed cylinder body 1 into the cylinder, forming a suction section 6 that can be adjusted by sliding up and down. The suction section 6 is provided with an on-off valve 7. The on-off valve 7 can be an electrically controlled valve or a manual valve. If the on-off valve 7 is a manual valve, it must be located on the suction section 6 outside the sealed cylinder body 1. In addition, a bellows adjustment section 8 located outside the sealed cylinder body 1 should be provided on the circulation line 4 near the suction section 6. This allows the bellows adjustment section 8 to bend to any angle according to the height adjustment of the suction section 6 when sliding up or down to adjust the height of the suction section 6.
[0026] Specifically, the auxiliary return water tank 5 is disposed below the sealed cylinder body 1, and the auxiliary return water tank 5 divides the circulation pipeline 4 into a suction pipe 4.1 and a return water pipe 4.2. One end of the suction pipe 4.1 is connected obliquely upward to the side wall of the auxiliary return water tank 5 near the top, and the other end is a suction section 6 that penetrates vertically upward and seals into the sealed cylinder body 1. One end of the return water pipe 4.2 is connected horizontally to the side wall of the auxiliary return water tank 5 near the bottom, and the other end is connected to the cylinder wall of the sealed cylinder body 1. In this case, a circulation pump 3 must be installed on each of the suction pipe 4.1 and the return water pipe 4.2. This ensures that the water in the sealed cylinder body 1 is pumped into the auxiliary return water tank 5 by the circulation pump 3 on the suction pipe 4.1, and the water in the auxiliary return water tank 5 can be returned to the sealed cylinder body 1 by the circulation pump 3 on the return water pipe 4.2, thereby forming a circulation system.
[0027] In addition, a second filter material 18 needs to be laid on the bottom of the auxiliary return water tank 5 for filtration, and a feeding port 20 with a sealing cover 19 is provided on the cylinder wall of the sealed cylinder 1 (the feeding port 20 is preferably provided on the top wall of the sealed cylinder 1) so that the sealing cover 19 can be opened at any time for feeding.
[0028] Furthermore, in order to facilitate cleaning the inner wall of the sealed cylinder 1 at any time, a first cleaning block 12 can be set in the sealed cylinder 1, and a second cleaning block 13 can be set outside the sealed cylinder 1. The first cleaning block 12 has a first attraction magnet 14, and the second cleaning block 13 has a second attraction magnet 15 that matches the first attraction magnet 14, and a gripping handle 16 for easy gripping is provided on the second cleaning block 13; at the same time, the first cleaning block 12 and the second cleaning block 13 can be connected by a connecting rope 17, so that the first cleaning block 12 and the second cleaning block 13 can be fed. After the first cleaning block 12 is put into the sealed cylinder body 1 through the opening 20, the sealing cover 19 is buckled, and the middle part of the connecting rope 17 is compressed by the sealing cover. Then, the second cleaning block 13 is used to attract the first cleaning block 12, so that the first cleaning block 12 and the second cleaning block 13 are attracted to the inner and outer sides of the cylinder wall of the sealed cylinder body 1. At this time, the first cleaning block 12 and the second cleaning block 13 attracted to each other on the cylinder wall of the sealed cylinder body 1 can be driven to move by operating the gripping handle 16, so that the inner and outer walls of the sealed cylinder body 1 can be easily wiped.
[0029] When in use, water can be injected into the sealed cylinder body 1 through the feeding port 20. When a certain amount of water is injected into the sealed cylinder body 1, ornamental fish can be put into it. Then, water is continued to be injected until the water fills the entire sealed cylinder body 1 and the sealing cover 19 is buckled. At this time, the on-off valve 7 on the suction section 6 is opened, and the two circulation pumps 3 located on the suction pipe 4.1 and the return pipe 4.2 are turned on at the same time, so that the continuous circulation of the water in the sealed cylinder body 1 can be achieved.
[0030] During the water circulation process, the suction force of the two circulation pumps 3 must always be kept consistent, and the suction force of the two circulation pumps 3 should ensure that the water level in the auxiliary return water tank 5 is always lower than the liquid outlet end of the suction pipe 4.1 and higher than the liquid inlet end of the return water pipe 4.2; in this way, the water flowing into the auxiliary return water tank 5 through the suction pipe 4.1 will fall vertically into the auxiliary return water tank 5, and then hit the water surface in the auxiliary return water tank 5 when falling, generating a certain amount of oxygen, which is then sent into the sealed cylinder body 1 through the return water pipe 4.2 to ensure the oxygen supply of the ornamental fish; of course, a submersible oxygen pump can also be directly put into the sealed cylinder body 1 through the feeding port 20.
[0031] In addition, during the water circulation process, when a large number of bubbles generated in the water in the sealed cylinder body 1 gather and cause gaps to form on the top wall of the sealed cylinder body 1, the suction section 4.1 can be slid upward so that its upper end (i.e., the liquid inlet) is adjusted to be close to the top wall of the sealed cylinder body 1, so that the suction force is used to suck out the gap close to the top wall of the sealed cylinder body 1, and the sealed cylinder body 1 is always kept in a fully filled water state with no gaps, thereby avoiding leaving large gaps in the sealed cylinder body 1 and preventing fog or water droplets from forming on the cylinder wall, ensuring that the fish in the cylinder can be clearly observed, and greatly improving the viewing experience.
Claims
1. An integrated, gap-free, fully filled fish tank table, comprising a sealed tank body and supporting legs evenly distributed at the four corners of the bottom surface of the sealed tank body; characterized in that: A circulation pipeline with a circulation pump is connected to the sealed cylinder body, and an auxiliary return water tank with an upper opening structure is provided on the circulation pipeline. The liquid inlet end of the circulation pipeline is sealed and penetrates into the cylinder vertically upward from the bottom wall of the sealed cylinder body to form a suction section that slides up and down to adjust the height. An opening and closing valve is provided on the suction section, and a bellows adjustment section is provided outside the sealed cylinder body on the circulation pipeline close to the suction section.
2. The integrated, gap-free, fully-filled fish tank table according to claim 1, characterized in that: The auxiliary water return groove is located at a corner of the top surface of the sealed cylinder body, and a water return port connected to the inner cavity of the sealed cylinder body is opened at its bottom; the liquid outlet end of the circulation pipeline extends to above the opening of the auxiliary water return groove, and a filter cartridge is provided on the circulation pipeline, and the filter cartridge is filled with a first filter material.
3. The integrated fish tank table with no gaps and full water filling according to claim 1, characterized in that: The auxiliary return water trough is located below the sealed cylinder body, and a second filter material is laid on the bottom of the trough; the auxiliary return water trough divides the circulation pipeline into a suction pipe and a return water pipe, one end of the suction pipe is inclined upward and connected to the side wall of the auxiliary return water trough near the top, and the other end is the suction section that penetrates into the sealed cylinder body, one end of the return water pipe is horizontally connected to the side wall of the auxiliary return water trough near the bottom, and the other end is connected to the cylinder wall of the sealed cylinder body; the circulating pump is divided into two groups, which are respectively arranged on the suction pipe and the return water pipe.
4. The integrated, gap-free, fully-filled fish tank table according to claim 3, characterized in that: A feeding port with a sealing cover is arranged on the cylinder wall of the sealing cylinder body.
5. The integrated, gap-free, fully-filled fish tank table according to claim 1, characterized in that: A first cleaning block is provided in the sealed cylinder body, and a second cleaning block is provided outside the sealed cylinder body. The first cleaning block has a first attraction magnet, and the second cleaning block has a second attraction magnet matching the first attraction magnet.
6. The integrated fish tank table with no gaps and full water filling according to claim 5, characterized in that: A gripping handle is provided on the second cleaning block.
Citation Information
Cited By
Integrated gapless water-filled fish tank table
CN118340125A