Breeding incubator
By designing feeding plates, impact components, cleaning plates and oxygenation systems, the problems of uneven feeding and impurity accumulation in existing breeding and cultivation boxes are solved, uniform feeding and environmental cleaning of the fry are achieved, and survival rates and survival rates are improved.
Patent Information
- Application Number
- CN202510798200.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2045-06-16
AI Technical Summary
The existing fry breeding and cultivation boxes cannot achieve uniform delivery during the feed feed process, resulting in fry competing for feed, affecting survival rate, and lack of automated control, which increases the work intensity of staff.
A breeding and cultivation box is designed. By setting up feeding plates and impact components, the feeding plates are driven to rotate with the rotating rod to make the feeding plates evenly and avoid feed jams through the impact components; at the same time, cleaning plates and magnet components are set up to achieve automatic cleaning of impurities and enhance environmental quality; the oxygen supply pipes and airflow systems improve oxygen supply and ensure healthy growth of fry.
The uniform feed is deployed, the fry is scrambled, and the survival rate of fry is improved; the automated cleaning system improves the living environment, enhances the oxygen supply, and further improves the survival rate of fry.
Smart Images

Figure CN120360053A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fry breeding, and more specifically, to a breeding cultivation box. Background Art
[0002] A fry breeding cultivation box is a key device in aquaculture specifically used for hatching fish eggs and cultivating early-stage fry (from newly hatched larvae to juvenile fish stage). It provides a controlled, isolated, and optimized environment, aiming to significantly improve the fish egg hatching rate and the early survival rate of fry, laying a solid foundation for subsequent breeding.
[0003] Since early-stage fry are relatively fragile, a cultivation box is needed for cultivation. At the same time, to ensure the nutritional requirements of fry during the growth process, feed is usually fed regularly. Existing feed feeding often relies on staff to feed the fish, increasing the work intensity of the staff and lacking means of automatic control of feed feeding.
[0004] In response to the above problems, some solutions have also been given in the prior art. For example, a Chinese invention application with the publication number CN116711672A discloses a fry breeding cultivation box. The device rotates the output shaft of the control motor in a cycle. At this time, the control door can be driven by the second turntable to move, so as to achieve the effect of cyclic control of feed feeding. Although the existing feeding device can achieve automatic cyclic feeding of feed, it cannot evenly distribute the feed into the cultivation box. Moreover, if the feed is too concentrated, it will cause fry to scramble with each other, and then the fry are easily injured. To avoid excessive feeding of fry affecting the survival rate, a certain amount of feed is usually put into the cultivation box. However, if all of this feed is put in at one time, some strong fry will still eat too much, making it difficult for the overly weak fry to grab the feed, thus seriously affecting the survival rate of fry. Summary of the Invention
[0005] Aiming at the problems existing in the prior art, the purpose of the present invention is to provide a breeding cultivation box, which can achieve the purpose of improving the survival rate of fry.
[0006] To solve the above problems, the present invention adopts the following technical solutions.
[0007] A breeding cultivation box includes a base, a box body is installed on the base, a cover plate is detachably installed on the top wall of the box body, and a feeding assembly is provided on the cover plate; The feeding component includes a storage bin fixedly installed on the top wall of the cover plate, and a motor is fixedly installed on the top wall of the storage bin. A rotating rod is fixedly installed at the output end of the motor, and a feeding plate that fits against the bottom wall of the cover plate is fixedly installed on the rotating rod. A first feeding groove is formed on the feeding plate, and a second feeding groove communicating with the first feeding groove is formed on the storage bin. An impact component for hitting the storage bin is provided on the cover plate.
[0008] Further, the impact component includes a sliding groove formed on the cover plate. An installation ring is slidably installed in the sliding groove. An elastic pad is jointly installed between the bottom wall of the installation ring and the sliding groove. Impact rods are uniformly and fixedly installed on the top wall of the installation ring. A horizontal rod is fixedly installed on the rotating rod, and a vertical rod that cooperates with the horizontal rod is fixedly installed on the top wall of the installation ring, and the top wall of the vertical rod is beveled.
[0009] Further, a collection groove is formed on the base. A linkage rod is detachably installed on the rotating rod, and a cleaning plate is fixedly installed on the linkage rod. A filter screen is fixedly installed inside the box body, and a communication groove communicating with the collection groove is formed on the side wall of the box body.
[0010] Further, a groove is formed on the cleaning plate. A first air pipe is inserted into the groove. An annular groove is formed on the feeding plate, and an oxygen adding pipe communicating with the first air pipe is inserted into the annular groove. A cavity is formed on the elastic pad. An air inlet valve communicating with the outside is inserted into the cavity, and an exhaust valve with an output end communicating with the annular groove is also inserted into the cavity.
[0011] Further, a vertical groove is formed on the collection groove. An arc-shaped plate is slidably installed in the vertical groove. A connecting rod is fixedly installed on the arc-shaped plate. A first magnet is fixedly installed on the connecting rod, and a spring is jointly installed between the first magnet and the filter screen. A first magnet is embedded on the linkage rod, and a second magnet that repels the first magnet is embedded on the cleaning plate.
[0012] Further, a baffle is fixedly installed on the top wall of the connecting rod.
[0013] Further, a communication groove communicating with the collection groove is formed on the base. A plugging plate is slidably installed in the communication groove. A threaded rod that is in threaded cooperation with the base is rotated on the top wall of the plugging plate. A sewage discharge valve is inserted into the collection groove.
[0014] Further, the bottom wall of the collection groove is beveled, and a water adding pipe is inserted into the communication groove.
[0015] Further, a rectangular groove is formed on the linkage rod, and a rectangular block that is slidably matched with the rectangular groove is fixedly installed on the rotating rod.
[0016] Further, an elastic membrane is installed in the annular groove.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows: (1) In this solution, by setting the feeding plate, the feeding plate is driven to rotate during the rotation of the rotating rod, and the first feeding groove is driven to rotate during the rotation of the feeding plate. Then, when the first feeding groove communicates with the second feeding groove, the feed in the storage box can move evenly into the box body through the second feeding groove and the first feeding groove. The setting of the impact assembly can prevent the feed from getting stuck in the first feeding groove, so that the feed is intermittently and evenly placed in the box body, effectively avoiding the mutual scramble for feed among the fry and preventing the thin fry from not getting enough feed, thus playing a role in improving the survival rate of the fry. (2) In this solution, by setting the cleaning plate, the cleaning plate is driven to rotate during the rotation of the linkage rod, and the impurities can be driven to rotate during the rotation of the cleaning plate. At the same time, during the rotation of the cleaning plate, the arc-shaped plate is driven to move upward through the second magnet, the first magnet and the connecting rod. At this time, under the action of centrifugal force, the impurities enter the collection groove through the communication groove, thereby improving the living environment of the fry and further increasing the survival rate of the fry. (3) In this solution, by setting the oxygen adding pipe, the gas in the cavity is compressed during the contraction of the elastic pad and flows through the exhaust valve into the annular groove. Then, the air flow flows through the oxygen adding pipe on the annular groove into the first air pipe and flows through the first air pipe into the groove. Finally, the air flow blows towards the top wall of the filter screen through the groove, so that the remaining feed on the top wall of the filter screen can be blown upward, facilitating the fry to find the feed for eating. At the same time, the feed in the holes of the filter screen can also be cleaned to prevent the filter screen from being blocked and affecting the cleaning of impurities. And during the process of the air flow flowing through the groove into the box body, the oxygen content in the box body can also be increased, further improving the survival rate of the fry. Description of the Drawings
[0018] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a combined view of the box body, the base and the feeding plate of the present invention; Figure 3 is of the present invention Figure 2 the enlarged view at A in; Figure 4 is of the present invention Figure 2 the enlarged view at B in; Figure 5 is a sectional view of the storage box, the feeding plate and the elastic pad of the present invention; Figure 6 is a combined view of the mounting ring, the impact rod and the vertical rod of the present invention; Figure 7 is a combined view of the cleaning plate, the groove and the first air pipe of the present invention.
[0019] Description of reference numerals in the figure: 1. Base; 2. Box body; 3. Cover plate; 4. Feeding assembly; 401. Storage bin; 402. Motor; 403. Rotating rod; 404. Feeding plate; 405. First feeding groove; 406. Second feeding groove; 5. Impact assembly; 501. Mounting ring; 502. Elastic pad; 503. Impact rod; 504. Horizontal rod; 505. Vertical rod; 601. Collection tank; 602. Linking rod; 603. Cleaning plate; 604. Filter screen; 605. Connecting groove; 701. Groove; 702. First air pipe; 703. Cavity; 704. Intake valve; 705. Exhaust valve; 706. Oxygen adding pipe; 801. Arc plate; 802. Connecting rod; 803. First magnet; 804. Spring; 805. Second magnet; 806. Baffle; 901. Plugging plate; 902. Threaded rod; 903. Drain valve; 904. Water adding pipe; 10. Rectangular block; 11. Elastic membrane. Detailed implementation manners
[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention; obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0021] Please refer to Figures 1 to 7 , a breeding cultivation box, including a base 1, a box body 2 is installed on the base 1, a cover plate 3 is detachably installed on the top wall of the box body 2, and a feeding assembly 4 is arranged on the cover plate 3; The feeding assembly 4 includes a storage bin 401 fixedly installed on the top wall of the cover plate 3, and a motor 402 is fixedly installed on the top wall of the storage bin 401. A rotating rod 403 is fixedly installed at the output end of the motor 402. A feeding plate 404 that fits against the bottom wall of the cover plate 3 is fixedly installed on the rotating rod 403. A first feeding groove 405 is formed on the feeding plate 404. A second feeding groove 406 communicating with the first feeding groove 405 is formed on the storage bin 401. An impact assembly 5 for impacting the storage bin 401 is arranged on the cover plate 3.
[0022] The impact assembly 5 includes a chute formed in the cover plate 3. An installation ring 501 is slidably installed in the chute. An elastic pad 502 is jointly installed between the bottom wall of the installation ring 501 and the chute. Impact rods 503 are uniformly and fixedly installed on the top wall of the installation ring 501. A horizontal rod 504 is fixedly installed on the rotating rod 403. A vertical rod 505 cooperating with the horizontal rod 504 is fixedly installed on the top wall of the installation ring 501, and the top wall of the vertical rod 505 is beveled.
[0023] During use, first add an appropriate amount of breeding liquid into the box body 2, then put the fry into the box body 2, and cover the cover plate 3. When feed needs to be fed, the user can start the motor 402 to drive the rotating rod 403 to rotate. During the rotation of the rotating rod 403, the feeding plate 404 is driven to rotate, and during the rotation of the feeding plate 404, the first feeding groove 405 is driven to rotate. Then when the first feeding groove 405 communicates with the second feeding groove 406, the feed in the storage box 401 can move uniformly into the box body 2 through the second feeding groove 406 and the first feeding groove 405, so that the feed is intermittently and uniformly placed in the box body 2, effectively avoiding the fry from scrambling for feed with each other and avoiding the thin fry from not being able to grab the feed, which plays a role in improving the survival rate of the fry.
[0024] During the rotation of the rotating rod 403, the horizontal rod 504 is driven to rotate. During the rotation of the horizontal rod 504, it gradually contacts the bevel surface of the vertical rod 505 and drives the vertical rod 505 to move upward. Then during the upward movement of the vertical rod 505, the installation ring 501 is driven to move upward. During the upward movement of the installation ring 501, the impact rod 503 is driven to move upward and impact the bottom wall of the storage box 401. At this time, the elastic pad 502 is stretched and has a tendency to recover. And when the horizontal rod 504 is separated from the vertical rod 505, the elastic pad 502 contracts and drives the installation ring 501 to reset, that is, during the rotation of the rotating rod 403, the impact rod 503 impacts the storage box 401 back and forth. Then under the action of the impact force of the impact rod 503, the feed will be driven to vibrate. Since the surface of the feed is relatively rough, by making the feed vibrate, it is ensured that the feed can normally move into the box body 2 along the second feeding groove 406 and the first feeding groove 405, thereby improving the feeding effect of the fry and further improving the survival rate of the fry.
[0025] As Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 As shown in the figure, a collection groove 601 is formed in the base 1. A linkage rod 602 is detachably installed on the rotating rod 403. A cleaning plate 603 is fixedly installed on the linkage rod 602. A filter screen 604 is fixedly installed in the box body 2. A communication groove 605 communicating with the collection groove 601 is formed in the side wall of the box body 2.
[0026] The cleaning plate 603 is provided with a groove 701, a first air pipe 702 is inserted into the groove 701, the feeding plate 404 is provided with an annular groove, and an oxygen adding pipe 706 communicated with the first air pipe 702 is inserted into the annular groove. A cavity 703 is formed in the elastic pad 502, an air inlet valve 704 communicated with the outside is inserted into the cavity 703, and an exhaust valve 705 with an output end communicated with the annular groove is also inserted into the cavity 703.
[0027] By adopting the above technical scheme, since impurities will be generated during the growth of fry, and then the impurities will precipitate onto the inner bottom wall of the box body 2 through the filter screen 604. And if the impurities are not cleaned for a long time, it is easy to affect the living environment of the fry. Then during the rotation of the rotating rod 403, the linkage rod 602 is driven to rotate. During the rotation of the linkage rod 602, the cleaning plate 603 is driven to rotate. During the rotation of the cleaning plate 603, the impurities are driven to rotate. Then under the action of centrifugal force, the impurities move into the collection tank 601 through the communication groove 605, thereby improving the living environment of the fry and further increasing the survival rate of the fry.
[0028] During the stretching process of the elastic pad 502, the cavity 703 sucks air from the outside through the air inlet valve 704. Then during the contraction process of the elastic pad 502, the gas in the cavity 703 is squeezed and flows into the annular groove through the exhaust valve 705. Then the air flow flows into the first air pipe 702 through the oxygen adding pipe 706 on the annular groove, and flows into the groove 701 through the first air pipe 702. Finally, the air flow blows towards the top wall of the filter screen 604 through the groove 701, so that the residual feed on the top wall of the filter screen 604 can be blown upwards, which is convenient for the fry to find the feed for eating. At the same time, the feed in the holes of the filter screen 604 can also be cleaned, avoiding the blockage of the filter screen 604 from affecting the cleaning of impurities. And during the process that the air flow flows through the groove 701 into the box body 2, the oxygen content in the box body 2 can also be increased, thereby further increasing the survival rate of the fry.
[0029] As Figure 3 、 Figure 7 shown, the collection tank 601 is provided with a vertical groove, an arc-shaped plate 801 is slidably installed in the vertical groove, a connecting rod 802 is fixedly installed on the arc-shaped plate 801, a first magnet 803 is fixedly installed on the connecting rod 802, and a spring 804 is jointly installed between the first magnet 803 and the filter screen 604. The first magnet 803 is embedded on the linkage rod 602, and a second magnet 805 mutually repulsive with the first magnet 803 is embedded on the cleaning plate 603.
[0030] A baffle 806 is fixedly installed on the top wall of the connecting rod 802.
[0031] A communication groove 605 communicating with the collection tank 601 is formed in the base 1. A plugging plate 901 is slidably installed in the communication groove 605. A threaded rod 902 threadedly engaged with the base 1 is rotatably provided on the top wall of the plugging plate 901. A sewage discharge valve 903 is inserted into the collection tank 601.
[0032] The bottom wall of the collection tank 601 is inclined, and a water adding pipe 904 is inserted into the communication groove 605.
[0033] By adopting the above technical solution, during the rotation of the cleaning plate 603, the second magnet 805 is gradually driven to approach the first magnet 803. At this time, under the action of the magnetic force between the first magnet 803 and the second magnet 805, the first magnet 803 drives the arc-shaped plate 801 to move upward through the connecting rod 802. At this time, the spring 804 is stretched and has a tendency to recover. During the upward movement of the arc-shaped plate 801, it gradually disengages from the communication groove 605. At this time, impurities can enter the collection tank 601 through the communication groove 605. And when the cleaning plate 603 drives the second magnet 805 to move away from the first magnet 803, the spring 804 contracts and drives the first magnet 803 to reset. During the reset process of the first magnet 803, the arc-shaped plate 801 is driven to reset through the connecting rod 802, and the communication groove 605 is plugged, thereby preventing impurities from moving into the box body 2 again. And the setting of the baffle 806 can prevent impurities from entering the vertical groove and affecting the normal sliding of the arc-shaped plate 801 along the vertical groove, further improving the cleaning effect of impurities.
[0034] When it is necessary to clean impurities, the user can rotate the threaded rod 902, and the threaded rod 902 drives the plugging plate 901 to move downward. During the downward movement of the plugging plate 901, the communication groove 605 is gradually plugged. And after plugging the communication groove 605, the user can open the sewage discharge valve 903. At this time, the impurities in the collection tank 601 can flow to the outside through the sewage discharge valve 903. And the user can also inject water into the collection tank 601 through the water adding pipe 904 and clean the collection tank 601, effectively preventing the impurities in the collection tank 601 from accumulating for a long time and affecting the water quality in the box body 2. And through the setting of the plugging plate 901, during the cleaning process of the collection tank 601, it will not affect the feeding of fry, further improving the survival rate of fry.
[0035] As Figure 4 As shown, a rectangular groove is formed in the linkage rod 602, and a rectangular block 10 slidably engaged with the rectangular groove is fixedly installed on the rotating rod 403.
[0036] By adopting the above technical solution, when installing the cover plate 3, the user can align the rectangular block 10 on the rotating rod 403 with the rectangular groove, insert the rectangular block 10 into the rectangular groove, and then drive the linkage rod 602 to rotate through the rectangular block 10 and the rectangular groove during the rotation of the rotating rod 403.
[0037] As Figure 5 shown, an elastic membrane 11 is installed in the annular groove.
[0038] By adopting the above technical solution, during the process that the air flow in the cavity 703 flows to the annular groove through the exhaust valve 705, the elastic membrane 11 expands and deforms, and then as the air flow passes through the annular groove, the oxygen adding pipe 706, the first air pipe 702, and the groove 701 and flows into the box body 2, the elastic membrane 11 gradually contracts, thereby ensuring that the air flow continuously passes through the groove 701 and evenly flows into the box body 2, and further improving the cleaning effect of the filter screen 604.
[0039] Usage method: First, add an appropriate amount of breeding liquid into the box body 2, then put the fry into the box body 2, and cover the cover plate 3. When feed needs to be fed, the motor 402 drives the feeding plate 404 to rotate through the rotating rod 403. When the first feeding groove 405 is communicated with the second feeding groove 406, the feed in the storage box 401 can intermittently and evenly move into the box body 2 through the second feeding groove 406 and the first feeding groove 405.
[0040] Secondly, during the rotation of the rotating rod 403, the horizontal rod 504 and the vertical rod 505 drive the mounting ring 501 to move up and down. During the up and down movement of the mounting ring 501, the impact rod 503 is driven to impact the storage box 401 back and forth.
[0041] In addition, during the rotation of the rotating rod 403, the cleaning plate 603 is driven to rotate through the linkage rod 602, and impurities enter the collection groove 601 through the communication groove 605. At the same time, during the rotation of the cleaning plate 603, the second magnet 805 is gradually brought closer to the first magnet 803. At this time, under the repulsive force between the first magnet 803 and the second magnet 805, the first magnet 803 drives the arc-shaped plate 801 to move upward through the connecting rod 802. At this time, the spring 804 is stretched and has a tendency to recover. During the upward movement of the arc-shaped plate 801, it gradually disengages from the communication groove 605. At this time, impurities can enter the collection groove 601 through the communication groove 605, and when the cleaning plate 603 drives the second magnet 805 to move away from the first magnet 803, the spring 804 contracts and drives the first magnet 803 to reset. During the reset process of the first magnet 803, the arc-shaped plate 801 is driven to reset through the connecting rod 802, and the communication groove 605 is blocked. Thereby preventing impurities from moving into the box body 2 again, and when the impurities in the collection groove 601 need to be cleaned, the user can block the communication groove 605 through the blocking plate 901.
[0042] Finally, during the stretching process of the elastic pad 502, the cavity 703 sucks air from the outside through the intake valve 704. Then, during the contraction process of the elastic pad 502, the gas in the cavity 703 is squeezed and flows into the annular groove through the exhaust valve 705. Then, the air flow flows into the first trachea 702 through the oxygen adding pipe 706 on the annular groove, and flows into the groove 701 through the first trachea 702. Finally, the air flow blows towards the top wall of the filter screen 604 through the groove 701, so that the remaining feed on the top wall of the filter screen 604 can be blown upward, facilitating the fry to find the feed for eating. At the same time, the feed in the holes of the filter screen 604 can also be cleaned, avoiding the blockage of the filter screen 604 and affecting the cleaning of impurities. And during the process that the air flow flows through the groove 701 and into the box body 2, the oxygen content in the box body 2 can also be increased.
[0043] The above is only the preferred specific implementation manner of the present invention; however, the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its improved concept, makes equivalent replacements or changes, and should be covered by the protection scope of the present invention.
Claims
1. A breeding cultivation box, comprising a base (1), wherein a box body (2) is installed on the base (1), and the characteristics are as follows: A cover plate (3) is detachably installed on the top wall of the box body (2), and a feeding assembly (4) is arranged on the cover plate (3); The feeding assembly (4) includes a storage bin (401) fixedly installed on the top wall of the cover plate (3), and a motor (402) is fixedly installed on the top wall of the storage bin (401). A rotating rod (403) is fixedly installed at the output end of the motor (402). A feeding plate (404) that fits against the bottom wall of the cover plate (3) is fixedly installed on the rotating rod (403). A first feeding groove (405) is formed in the feeding plate (404). A second feeding groove (406) that communicates with the first feeding groove (405) is formed in the storage bin (401). An impact assembly (5) for impacting the storage bin (401) is arranged on the cover plate (3).
2. The breeding incubator according to claim 1, wherein: The impact assembly (5) includes a sliding groove formed in the cover plate (3). An installation ring (501) is slidably installed in the sliding groove. An elastic pad (502) is jointly installed between the bottom wall of the installation ring (501) and the sliding groove. Impact rods (503) are uniformly and fixedly installed on the top wall of the installation ring (501). A horizontal rod (504) is fixedly installed on the rotating rod (403). A vertical rod (505) that cooperates with the horizontal rod (504) is fixedly installed on the top wall of the installation ring (501), and the top wall of the vertical rod (505) is beveled.
3. A breeding cultivation box according to claim 2, characterized in that: A collection groove (601) is formed in the base (1). A linkage rod (602) is detachably installed on the rotating rod (403). A cleaning plate (603) is fixedly installed on the linkage rod (602). A filter screen (604) is fixedly installed inside the box body (2). A communication groove (605) that communicates with the collection groove (601) is formed in the side wall of the box body (2).
4. A breeding incubator according to claim 3, characterized in that: A groove (701) is formed in the cleaning plate (603). A first air pipe (702) is inserted into the groove (701). An annular groove is formed in the feeding plate (404). An oxygen adding pipe (706) that communicates with the first air pipe (702) is inserted into the annular groove. A cavity (703) is formed in the elastic pad (502). An air inlet valve (704) that communicates with the outside is inserted into the cavity (703). An exhaust valve (705) with an output end communicating with the annular groove is also inserted into the cavity (703).
5. A breeding incubator according to claim 4, characterized in that: A vertical groove is formed in the collection groove (601). An arc-shaped plate (801) is slidably installed in the vertical groove. A connecting rod (802) is fixedly installed on the arc-shaped plate (801). A first magnet (803) is fixedly installed on the connecting rod (802). A spring (804) is jointly installed between the first magnet (803) and the filter screen (604). A first magnet (803) is embedded in the linkage rod (602). A second magnet (805) that repels the first magnet (803) is embedded in the cleaning plate (603).
6. The breeding incubator according to claim 5, characterized in that: A baffle (806) is fixedly installed on the top wall of the connecting rod (802).
7. The breeding incubator according to claim 6, characterized in that: A communication groove (605) communicating with the collection tank (601) is formed on the base (1). A plugging plate (901) is slidably installed in the communication groove (605). A threaded rod (902) that is in threaded cooperation with the base (1) is rotatably arranged on the top wall of the plugging plate (901). A sewage discharge valve (903) is inserted into the collection tank (601).
8. The breeding incubator according to claim 3, characterized in that: The bottom wall of the collection tank (601) is inclined, and a water inlet pipe (904) is inserted into the communication groove (605).
9. The breeding incubator according to claim 3, characterized in that: A rectangular groove is formed on the linkage rod (602), and a rectangular block (10) that is slidably engaged with the rectangular groove is fixedly installed on the rotating rod (403).
10. A breeding cultivation box according to claim 4, characterized in that: An elastic film (11) is installed in the annular groove.
Citation Information
Patent Citations
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