A feed dispenser for soft-shelled turtles

CN120360057BActive Publication Date: 2026-09-08HUNAN NANPING ECOLOGICAL AGRI CO LTD
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Patent Information

Application Number
CN202510846979.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2026-09-08
Estimated Expiration
2045-06-24

AI Technical Summary

Technical Problem

[0004]该装置提供的喂养装置,其料阀关闭后,装置内壁残留的饲料可能因未及时清理而受潮变质,尤其是在高温季节,残留饲料发酵后可能污染新投入的饲料,影响甲鱼的健康以及甲鱼养殖质量

Benefits of technology

[0019]1. This turtle farming feed dispensing device, by setting up a cleaning baffle, uses the plate body in conjunction with a vibrating motor and a breeding box to block and recycle feed that may fly out of the breeding box, as well as to clean the surface of the plate body by vibration, thereby improving the feed utilization rate. By using the cleaning baffle in conjunction with a sliding gantry and a circumferential feeding mechanism, the device can cover and feed the turtles inside the breeding box, thereby improving the feeding quality of the device.

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Abstract

The application discloses a feed feeding device for soft-shelled turtle breeding and relates to the technical field of soft-shelled turtle breeding equipment. The feed feeding device for soft-shelled turtle breeding comprises a breeding box, slide channels are fixedly connected to the left and right sides of the breeding box, a sliding door frame is slidably connected to the top of the slide channel, an electric control cabinet is fixedly connected to the right side of the sliding door frame, a circumferential feeding mechanism is fixedly connected to the top of the sliding door frame, the circumferential feeding mechanism comprises an upper box body, a lower box body and a rotary discharging plate, the upper box body is fixedly connected to the top of the sliding door frame, and the lower box body is located at the bottom of the upper box body. The feed feeding device for soft-shelled turtle breeding is provided with cleaning baffles, a circumferential feeding mechanism, a comprehensive cleaning mechanism and a circulating cleaning mechanism, the utilization rate of feed is improved, the device can cover and feed soft-shelled turtles in the breeding box, feed pollution is prevented, and the cleanliness and feeding quality of the device are improved.
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Description

Technical Field

[0001] This invention relates to the field of turtle farming equipment technology, specifically a turtle farming feed dispensing device. Background Technology

[0002] The soft-shelled turtle, scientifically known as *Trionyx sinensis*, is also called the round turtle. It is widely distributed in rivers, lakes, ponds, and reservoirs and is a prized freshwater fish. Artificial breeding of soft-shelled turtles is a method of cultivating turtles through artificial intervention. Its products are mainly used in the fields of food and medicine. Soft-shelled turtles mainly eat animal-based food, supplemented by plant-based food. They like to eat fish, shrimp, clams, snails, silkworm pupae, earthworms, insects, animal offal, and various beans.

[0003] Patent application CN222485817U discloses a feed dispensing device for turtle farming, including a feed conveying pipe, side plates on both sides of the feed conveying pipe, support columns connected to the top of the side plates, a feed box connected to one end of multiple support columns, a hopper connected to the top of the feed box, a discharge pipe connected to the bottom of the feed box, a feed valve on the front of the discharge pipe, a motor connected to one end of the feed conveying pipe, a rotating rod connected to one end of the motor, a feed conveying auger connected to the outer ring of the rotating rod, multiple feed conveying troughs opened at the bottom of the feed conveying auger, a feed box connected to the inner cavity of the feed conveying trough, a sliding plate connected to one end of the feed box, and a collection box connected to one end of the sliding plate.

[0004] The feeding device provided by this equipment may cause the feed remaining on the inner wall of the device to become damp and deteriorate if it is not cleaned in time after the feed valve is closed. Especially in the hot season, the fermentation of the residual feed may contaminate the newly added feed, affecting the health of the turtles and the quality of turtle farming. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides a feed dispensing device for turtle farming, thereby solving the problems mentioned in the background section.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solution: a turtle farming feed dispensing device, including a farming box, with slide rails fixedly connected to the left and right sides of the farming box, a sliding gate slidably connected to the top of the slide rails, an electrical control cabinet fixedly connected to the right side of the sliding gate, and a circumferential feeding mechanism fixedly connected to the top of the sliding gate;

[0007] The circumferential feeding mechanism includes:

[0008] The upper housing is fixedly connected to the top of the sliding gantry;

[0009] The lower housing is located at the bottom of the upper housing;

[0010] A rotating discharge plate is rotatably connected to the bottom of the inner wall of the lower box. A comprehensive cleaning mechanism is fixedly connected to the top of the rotating discharge plate. The comprehensive cleaning mechanism includes a side wall cleaning plate, which is fixedly connected to the top of the rotating discharge plate.

[0011] Preferably, the front of the breeding box is connected to an external water purification device. A laser rangefinder sensor is fixedly connected to the top of the slide rail, and the sensor is electrically connected to the electrical control cabinet via a wire. The bottom of the sliding door frame is slidably connected to the top of the slide rail via pulleys. The pulleys of the sliding door frame are fixedly connected to a motor, which is a servo motor. The servo motor is electrically connected to the electrical control cabinet via a wire. A cleaning baffle is fixedly connected to the top of the breeding box. The cleaning baffle includes a plate body. A vibration motor is fixedly connected to the front of the plate body. The vibration motor is electrically connected to the electrical control cabinet via a wire. A rubber plate is fixedly connected between the plate body and the breeding box to reduce the impact of vibration on the turtles inside the box.

[0012] Preferably, an electric heating wire is embedded inside the upper housing, and the electric heating wire is electrically connected to the electrical control cabinet through a wire. A temperature sensor and a humidity sensor are embedded in the top of the inner wall of the upper housing. A track ring is fixedly connected to the bottom of the upper housing. Teeth are fixedly connected to the outer surface of the rotating discharge plate. A gear is rotatably connected to the bottom of the lower housing. The gear at the bottom of the lower housing meshes with the teeth of the rotating discharge plate. An electric motor is fixedly connected to the bottom of the gear in the lower housing. The electric motor is an AC motor and is electrically connected to the electrical control cabinet through a wire. A feed inlet is connected to the top of the upper housing, and the feed inlet is connected to an external feeding device.

[0013] Preferably, the bottom of the rotating discharge plate is connected to a circumferential discharge head, the circumferential discharge head includes a distal discharge head, the bottom of the distal discharge head is connected to a proximal discharge head, the distal discharge head and the proximal discharge head have opposite opening directions, and the distal discharge head has circular through holes on both the front and back sides.

[0014] Preferably, the edge of the side wall cleaning plate is inlaid with a rubber strip, the top of the upper box inner wall is rotatably connected to a top wall cleaning plate, the top of the top wall cleaning plate is inlaid with a triangular rubber strip, and one end of the top wall cleaning plate is fixedly connected to the top of the side wall cleaning plate.

[0015] Preferably, a UV disinfection sleeve is fixedly connected to the top of the inner wall of the upper chamber. The UV disinfection sleeve includes an inner wall disinfection sleeve. A UV germicidal lamp is fixedly connected to the surface of the inner wall disinfection sleeve. A wire mesh is fixedly connected to the outside of the UV germicidal lamp. The UV germicidal lamp is electrically connected to the electrical control cabinet through a wire. Rectangular through holes are opened on both the left and right sides of the inner wall disinfection sleeve. An inner tube disinfection rod is fixedly connected to the top of the inner wall of the inner wall disinfection sleeve. A UV germicidal lamp is embedded on the outer surface of the inner tube disinfection rod. A tempered glass cover is fixedly connected to the outside of the UV germicidal lamp. The UV germicidal lamp is electrically connected to the electrical control cabinet through a wire. The inner tube disinfection rod is located inside the rotating discharge plate.

[0016] Preferably, a circulating cleaning mechanism is fixedly connected to the back of the distal discharge head. The circulating cleaning mechanism includes a water pump, which is fixedly connected to the left side of the distal discharge head. The water pump is electrically connected to the electrical control cabinet via a wire. A circular through hole is opened on the outer surface of the track ring. A synchronization frame is slidably connected to the outer surface of the track ring. The synchronization frame includes a perforated slip ring, which is rotatably connected to the outer surface of the track ring. A circular through hole is opened on the inner surface of the perforated slip ring. A temperature sensor is embedded inside the linkage crank, which is electrically connected to the electrical control cabinet via a wire. A linkage crank is fixedly connected to the bottom of the perforated slip ring. The right side of the linkage crank is fixedly connected to the left side of the distal discharge head. A heating sleeve is fixedly connected inside the linkage crank. An electric heating tube is embedded inside the heating sleeve and is electrically connected to the electrical control cabinet via a wire. The left side of the water pump is connected to the bottom of the perforated slip ring via a flexible tube. The flexible tube on the left side of the water pump is fixedly connected to the inner side of the outer surface of the heating sleeve.

[0017] Preferably, the bottom of the water pump is connected to a countersunk water suction pipe, which includes a flexible pipe. The top of the flexible pipe is connected to the bottom of the water pump, and a rubber protrusion is fixedly connected to the outer surface of the flexible pipe. The bottom of the flexible pipe is connected to a counterweight head, and the bottom of the counterweight head is connected to a multi-stage filter pipe. The bottom of the multi-stage filter pipe is connected to a water-collecting screen, and a counterweight block is fixedly connected to the bottom of the water-collecting screen. A stabilizing bracket is rotatably connected to the bottom of the linkage crank, and the bottom of the stabilizing bracket is fixedly connected to the outer surface of the flexible pipe through a rubber ring. The stabilizing bracket is fixedly connected to the linkage crank through a torsion spring, and a rotary encoder is fixedly connected to the back of the stabilizing bracket.

[0018] This invention provides a feed dispensing device for turtle farming. It has the following beneficial effects:

[0019] 1. This turtle farming feed dispensing device, by setting up a cleaning baffle, uses the plate body in conjunction with a vibrating motor and a breeding box to block and recycle feed that may fly out of the breeding box, as well as to clean the surface of the plate body by vibration, thereby improving the feed utilization rate. By using the cleaning baffle in conjunction with a sliding gantry and a circumferential feeding mechanism, the device can cover and feed the turtles inside the breeding box, thereby improving the feeding quality of the device.

[0020] 2. This turtle farming feed dispensing device, by setting up a circumferential feeding mechanism, utilizes an upper box, a lower box, a rotating discharge plate, a circumferential discharge head, and a sliding gantry to achieve comprehensive feeding inside the farming box. By using a far-field discharge head in conjunction with a near-field discharge head, it achieves coverage of the feeding blind spot at the bottom of the device, thereby improving the feeding quality and efficiency of the device.

[0021] 3. This turtle farming feed dispensing device, through the setting of a comprehensive cleaning mechanism, utilizes a stirring blade plate in conjunction with a rotating discharge plate and a circumferential discharge head to achieve mixing of the feed entering the device, reducing feed adhesion to the inner wall of the device and improving the feeding effect. The side wall cleaning plate in conjunction with the top wall cleaning plate achieves comprehensive cleaning of the upper box of the device, improving the cleanliness of the device. The ultraviolet disinfection sleeve in conjunction with the rotating discharge plate achieves sterilization and disinfection of residual feed inside the device, preventing feed contamination and improving the feeding quality of the device.

[0022] 4. This turtle farming feed dispensing device, by setting up a circulating cleaning mechanism, uses a water pump in conjunction with a submerged water pipe to clean the inside of the device using water from the breeding tank, thereby improving the cleanliness of the device. The submerged water pipe, in conjunction with a synchronous frame and track ring, enables simultaneous water pumping and heating. The circulating cleaning mechanism, in conjunction with a comprehensive cleaning mechanism, improves the cleaning effect of the circulating cleaning mechanism on the inner wall of the device. By recycling the water inside the breeding tank, the material consumption of the device is reduced, thereby improving the working efficiency of the device. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 This is a schematic diagram showing the positional relationship between the circumferential feeding mechanism and the circulating cleaning mechanism of the present invention;

[0025] Figure 3 This is a cross-sectional view of the overall internal structure of the present invention;

[0026] Figure 4 This is a schematic diagram showing the positional relationship between the circumferential feeding mechanism and the integrated cleaning mechanism of the present invention;

[0027] Figure 5 This is a schematic diagram showing the positional relationship between the upper housing and the ultraviolet disinfection sleeve of the present invention;

[0028] Figure 6 For the present invention Figure 1 Enlarged schematic diagram of the structure at point A in the diagram;

[0029] Figure 7 This is a schematic diagram of the overall structure of the synchronization frame of the present invention;

[0030] Figure 8 This is a schematic diagram showing the positional relationship between the water pump and the countersunk pumping pipe of the present invention;

[0031] Figure 9 This is a cross-sectional view of the internal structure of the countersunk water pumping pipe of the present invention.

[0032] In the diagram: 1. Breeding box; 2. Slide rail; 3. Sliding gantry; 4. Electrical control cabinet; 5. Cleaning baffle; 51. Plate; 52. Vibrating motor; 6. Circumferential feeding mechanism; 61. Upper box; 62. Track ring; 63. Lower box; 64. Rotating discharge plate; 65. Circumferential discharge head; 651. Distant discharge head; 652. Near discharge head; 66. Feed inlet; 7. Integrated cleaning mechanism; 71. Mixing blade; 72. Side... 73. Wall cleaning panel; 74. Top wall cleaning panel; 75. UV disinfection sleeve; 76. Inner wall disinfection sleeve; 77. Inner pipe disinfection rod; 8. Circulating cleaning mechanism; 81. Water pump; 82. Synchronization frame; 821. Perforated slip ring; 822. Linkage bend frame; 823. Heating sleeve; 83. Countersunk water pumping pipe; 831. Flexible pipe; 832. Counterweight head; 833. Multi-stage filter tube; 834. Water trap screen; 835. Stabilizing bracket. Detailed Implementation

[0033] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0034] Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the invention, and should not be construed as limiting the invention.

[0035] Example 1

[0036] Please see Figure 1-3The present invention provides a technical solution: a turtle farming feed dispensing device, including a farming box 1, the front of the farming box 1 is connected to an external water purification device, the farming box 1 is filled with water and turtles to be farmed, the farming box 1 is fixedly connected to the left and right sides of the farming box 1 with slide rails 2, the top of the slide rails 2 is fixedly connected to a laser rangefinder sensor, the sensor is electrically connected to an electrical control cabinet 4 through a wire, the top of the slide rails 2 is slidably connected to a sliding gate 3, the right side of the sliding gate 3 is fixedly connected to the electrical control cabinet 4, the bottom of the sliding gate 3 is slidably connected to the top of the slide rails 2 through pulleys, the pulleys of the sliding gate 3 are fixedly connected to a motor, the motor is a servo motor, the servo motor is electrically connected to the electrical control cabinet 4 through a wire;

[0037] When feeding turtles, some feed may spill out of the breeding box 1, affecting the surrounding environment. In order to reduce the probability of feed spilling out of the device, a cleaning baffle 5 is fixedly connected to the top of the breeding box 1. The cleaning baffle 5 includes a plate 51. A vibration motor 52 is fixedly connected to the front of the plate 51. The vibration motor 52 is electrically connected to the electrical control cabinet 4 through wires. A rubber plate is fixedly connected between the plate 51 and the breeding box 1 to reduce the impact of vibration on the turtles in the box.

[0038] When feeding the turtles, the feed needs to be distributed evenly to ensure that all turtles are fed. A circumferential feeding mechanism 6 is fixedly connected to the top of the sliding gantry 3. The circumferential feeding mechanism 6 includes:

[0039] The upper housing 61 is fixedly connected to the top of the sliding door frame 3. An electric heating wire is embedded inside the upper housing 61. The electric heating wire is electrically connected to the electrical control cabinet 4 through a wire. A temperature sensor and a humidity sensor are embedded in the top of the inner wall of the upper housing 61.

[0040] Track ring 62 is fixedly connected to the bottom of the upper box 61;

[0041] The lower housing 63 is located at the bottom of the upper housing 61. A gear is rotatably connected to the bottom of the lower housing 63. The gear meshes with the teeth of the rotating discharge plate 64. An electric motor is fixedly connected to the bottom of the gear of the lower housing 63. The electric motor is an AC motor and is electrically connected to the electrical control cabinet 4 through a wire.

[0042] A rotating discharge plate 64 is rotatably connected to the bottom of the inner wall of the lower box 63. The outer surface of the rotating discharge plate 64 is fixedly connected with teeth, and the top of the rotating discharge plate 64 is a conical plane.

[0043] The circumferential discharge head 65 is connected to the bottom of the rotating discharge plate 64. The circumferential discharge head 65 includes a far-direction discharge head 651. The bottom of the far-direction discharge head 651 is connected to a near-direction discharge head 652. The far-direction discharge head 651 and the near-direction discharge head 652 have opposite opening directions. The far-direction discharge head 651 has circular through holes on both the front and back sides.

[0044] The upper housing 61 has a feed inlet 66 at the top, which is connected to an external feeding device.

[0045] In use, the external feed conveying mechanism is connected to the feed inlet 66, and then the entire device is started through the control cabinet 4. After the control cabinet 4 is started, the vibration motor 52 and the motor of the rotating discharge plate 64 are started. Under the control of the control cabinet 4, the sliding gantry 3 drives the entire circumferential feeding mechanism 6 to slide back and forth. The rotating discharge plate 64 rotates circumferentially at a uniform speed under the drive of the motor. The feed enters the upper box 61 from the feed inlet 66 and falls on the top of the rotating discharge plate 64. As the rotating discharge plate 64 rotates, it gradually falls into the circumferential discharge head 65. A portion of the feed is evenly spread into the water inside the breeding tank 1 through the far discharge head 651, the circular through hole of the far discharge head 651, and the back and forth movement of the sliding gantry 3. Another portion of the feed is spread into the water area below the circumferential discharge head 65 through the near discharge head 652, thereby achieving complete coverage of the water area inside the breeding tank 1.

[0046] During the feeding process, some feed may be thrown out of the breeding box 1. This part of the feed is intercepted by the plate 51 and falls back into the breeding box 1 under the action of gravity and vibration generated after the vibration motor 52 is started, so as to prevent the feed from being wasted.

[0047] Example 2

[0048] Please see Figure 1-5 Based on Embodiment 1, this invention provides a technical solution: After feeding, feed residue usually remains inside the device. Over time, the feed may ferment and deteriorate, polluting the internal environment of the device. A comprehensive cleaning mechanism 7 is fixedly connected to the top of the rotating discharge plate 64. The comprehensive cleaning mechanism 7 includes a side wall cleaning plate 72, which is fixedly connected to the top of the rotating discharge plate 64. A top wall cleaning plate 73 is rotatably connected to the top of the inner wall of the upper box 61. A triangular rubber strip is embedded in the top of the top wall cleaning plate 73. One end of the top wall cleaning plate 73 is fixedly connected to the top of the side wall cleaning plate 72. The top of the inner wall of the upper box 61 is fixedly connected to... A UV disinfection sleeve 74 is provided, which includes an inner wall disinfection sleeve 741. A UV germicidal lamp is fixedly connected to the surface of the inner wall disinfection sleeve 741. A wire mesh is fixedly connected to the outside of the UV germicidal lamp. The UV germicidal lamp is electrically connected to the electrical control cabinet 4 through wires. Rectangular through holes are opened on both the left and right sides of the inner wall disinfection sleeve 741. An inner tube disinfection rod 742 is fixedly connected to the top of the inner wall of the inner wall disinfection sleeve 741. A UV germicidal lamp is embedded on the outer surface of the inner tube disinfection rod 742. A tempered glass cover is fixedly connected to the outside of the UV germicidal lamp. The UV germicidal lamp is electrically connected to the electrical control cabinet 4 through wires. The inner tube disinfection rod 742 is located inside the rotating discharge plate 64.

[0049] During use, the stirring blade 71, driven by the rotating discharge plate 64, stirs the feed entering the circumferential feeding mechanism 6. The side wall cleaning plate 72 drives the top wall cleaning plate 73 to scrape off the feed adhering to the inner walls of the upper box 61 and the lower box 63. After feeding, the side wall cleaning plate 72 and the top wall cleaning plate 73 continue to scrape off the feed residue adhering to the inner walls of the upper box 61 and the track ring 62. After feeding, the electrical control cabinet 4 controls the ultraviolet disinfection sleeve 74 to start, and uses ultraviolet light to irradiate and sterilize the inner surfaces of the upper box 61, the lower box 63, and the rotating discharge plate 64 to prevent the spread of fermentation microorganisms and contamination of subsequent feed.

[0050] Example 3

[0051] Please see Figure 1-9 Based on Embodiments 1 and 2, the present invention provides a technical solution: To assist the comprehensive cleaning mechanism 7 and improve the cleaning effect of physical cleaning, a circulating cleaning mechanism 8 is fixedly connected to the back of the remote discharge head 651. The circulating cleaning mechanism 8 includes a water pump 81, which is fixedly connected to the left side of the remote discharge head 651. The water pump 81 is electrically connected to the electrical control cabinet 4 through a wire. A circular through hole is opened on the outer surface of the track ring 62. A synchronous frame 82 is slidably connected to the outer surface of the track ring 62. The synchronous frame 82 includes a perforated slip ring 821, which is rotatably connected to the outer surface of the track ring 62. A circular through hole is opened on the inner surface of the perforated slip ring 821. A temperature sensor is embedded inside the linkage crank 822, which is electrically connected to the electrical control cabinet 4 through a wire. The linkage crank 822 is fixedly connected to the bottom of the perforated slip ring 821. The right side of the linkage crank 822 is fixedly connected to the left side of the remote discharge head 651. A heating sleeve 823 is fixedly connected inside the linkage crank 822. An electric heating element is embedded inside the sleeve 823. The electric heating element is electrically connected to the electrical control cabinet 4 via a wire. The left side of the water pump 81 is connected to the bottom of the perforated slip ring 821 via a flexible tube. The flexible tube on the left side of the water pump 81 is fixedly connected to the inner side of the outer surface of the heating sleeve 823. A countersunk water pumping pipe 83 is connected to the bottom of the water pump 81. The countersunk water pumping pipe 83 includes a flexible tube 831. The top of the flexible tube 831 is connected to the bottom of the water pump 81. A rubber protrusion is fixedly connected to the outer surface of the flexible tube 831. The bottom of the flexible tube 831... A counterweight head 832 is connected to the bottom of the counterweight head 832. A multi-stage filter tube 833 is connected to the bottom of the multi-stage filter tube 833. A water-collecting mesh cover 834 is connected to the bottom of the water-collecting mesh cover 834. A counterweight block is fixedly connected to the bottom of the linkage crank 822. A stabilizing bracket 835 is rotatably connected to the bottom of the linkage crank 822. The bottom of the stabilizing bracket 835 is fixedly connected to the outer surface of the flexible tube 831 by a rubber ring. The stabilizing bracket 835 is fixedly connected to the linkage crank 822 by a torsion spring. A rotary encoder is fixedly connected to the back of the stabilizing bracket 835.

[0052] In use, during the cleaning stage in Example 2, the electrical control cabinet 4 starts the water pump 81. After the water pump 81 starts, it draws water from the breeding tank 1 through the sinkhole water suction pipe 83. The water passes through the water-collecting mesh cover 834, the counterweight head 832, and the flexible pipe 831 in sequence before entering the water pump 81. During the process of water entering the water pump 81, impurities inside the breeding tank 1 are intercepted by the water-collecting mesh cover 834 and the multi-stage filter pipe 833, and discharged from the water pump 81. They then enter the perforated slip ring 821 through the flexible pipe and are discharged from the perforated slip ring 821, spraying onto the surface of the upper tank body 61, the lower tank body 63, and the top of the rotating discharge plate 64. This works in conjunction with the comprehensive cleaning mechanism 7 to clean the tank. The cleaned water then enters the circumferential discharge head 65 through the rotating discharge plate 64 to clean the circumferential discharge head 65. After that, the discharged water flows back into the breeding tank 1.

[0053] After the device is started, the heating tube inside the heating sleeve 823 is energized and heats up. After the water passes through the water pump 81, the water is heated after passing through the heating sleeve 823. The heated water enters the circumferential feeding mechanism 6 through the perforated slip ring 821 and is cleaned by the high-temperature water. After leaving the upper box 61, the high-temperature water dissipates heat to the surface of the rotating discharge plate 64 and the circumferential discharge head 65, thereby achieving cooling. During the water spraying process, the temperature sensor inside the perforated slip ring 821 and the humidity sensor inside the upper box 61 provide real-time feedback on the temperature and humidity data inside the upper box 61, the rotation speed and direction data of the rotary encoder of the stabilizing bracket 835, and the water temperature data. This assists the electrical control cabinet 4 in adjusting the heating power of the heating sleeve 823, the moving speed of the sliding gate 3, and the speed of the motor to ensure that the submerged water pump pipe 83 is stably kept below the water surface of the breeding tank 1.

[0054] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A feed dispensing device for turtle farming, comprising a breeding box (1), wherein slide rails (2) are fixedly connected to the left and right sides of the breeding box (1), and a sliding gate (3) is slidably connected to the top of the slide rails (2), characterized in that: The top of the sliding gantry (3) is fixedly connected to a circumferential feeding mechanism (6); The circumferential feeding mechanism (6) includes: Upper housing (61), the upper housing (61) is fixedly connected to the top of the sliding gantry (3); The lower housing (63) is located at the bottom of the upper housing (61); A rotating discharge plate (64) is rotatably connected to the bottom of the inner wall of the lower box (63). A comprehensive cleaning mechanism (7) is fixedly connected to the top of the rotating discharge plate (64). The comprehensive cleaning mechanism (7) includes a side wall cleaning plate (72), which is fixedly connected to the top of the rotating discharge plate (64). The upper housing (61) is equipped with an electric heating wire. The bottom of the upper housing (61) is fixedly connected to a track ring (62). The outer surface of the rotating discharge plate (64) is fixedly connected with teeth. The bottom of the lower housing (63) is rotatably connected to a gear. The bottom of the lower housing (63) meshes with the teeth of the rotating discharge plate (64) through the gear. The top of the upper housing (61) is connected to a feed inlet (66). The feed inlet (66) is connected to an external feeding device. The bottom of the rotating discharge plate (64) is connected to a circumferential discharge head (65), the circumferential discharge head (65) includes a far discharge head (651), the bottom of the far discharge head (651) is connected to a near discharge head (652), and the far discharge head (651) has a circular through hole on both the front and back sides; The top of the inner wall of the upper box (61) is rotatably connected to a top wall cleaning plate (73), and one end of the top wall cleaning plate (73) is fixedly connected to the top of the side wall cleaning plate (72). The top of the inner wall of the upper box (61) is fixedly connected to an ultraviolet disinfection sleeve (74), which includes an inner wall disinfection sleeve (741). An ultraviolet germicidal lamp is fixedly connected to the surface of the inner wall disinfection sleeve (741). Rectangular through holes are opened on both the left and right sides of the inner wall disinfection sleeve (741). An inner tube disinfection rod (742) is fixedly connected to the top of the inner wall of the inner wall disinfection sleeve (741). An ultraviolet germicidal lamp is embedded on the outer surface of the inner tube disinfection rod (742). A circulating cleaning mechanism (8) is fixedly connected to the back of the far-out discharge head (651). The circulating cleaning mechanism (8) includes a water pump (81). The water pump (81) is fixedly connected to the left side of the far-out discharge head (651). A circular through hole is opened on the outer surface of the track ring (62). A synchronous frame (82) is slidably connected to the outer surface of the track ring (62). The synchronous frame (82) includes a perforated slip ring (821). The perforated slip ring (821) is rotatably connected to the outer surface of the track ring (62). A circular through hole is opened on the inner surface of the perforated slip ring (821). A linkage crank (822) is fixedly connected to the bottom of the perforated slip ring (821). The right side of the linkage crank (822) is fixedly connected to the left side of the far-out discharge head (651). A heating sleeve (823) is fixedly connected inside the linkage crank (822). An electric heating tube is embedded inside the heating sleeve (823).

2. The turtle farming feed dispensing device according to claim 1, characterized in that: The bottom of the sliding gantry (3) is slidably connected to the top of the slide rail (2) via pulleys. The top of the breeding box (1) is fixedly connected to a cleaning baffle (5). The cleaning baffle (5) includes a plate body (51). A vibration motor (52) is fixedly connected to the front of the plate body (51).

3. The turtle farming feed dispensing device according to claim 1, characterized in that: The bottom of the water pump (81) is connected to a countersunk water pump pipe (83), which includes a flexible pipe (831). The top of the flexible pipe (831) is connected to the bottom of the water pump (81), and the bottom of the flexible pipe (831) is connected to a counterweight head (832). The bottom of the counterweight head (832) is connected to a multi-stage filter pipe (833). The bottom of the linkage crank (822) is rotatably connected to a stabilizing bracket (835). The bottom of the stabilizing bracket (835) is fixedly connected to the outer surface of the flexible pipe (831) by a rubber ring, and the stabilizing bracket (835) is fixedly connected to the linkage crank (822) by a torsion spring.

Citation Information

Patent Citations

  • Feed feeding device for soft-shelled turtle breeding

    CN222485817U

  • Breeding box for freshwater fish breeding

    CN119586582A

  • Dry and wet automatic feeder

    CN220630592U