Feed throwing device for sturgeon culture
By designing a feed sprinkler device including feed bucket, transmission sleeve, feed casing, feed casing, feed barrel, feed roller and motor, the problem of difficulty in quantitative feeding in the prior art is solved, and efficient and uniform feed delivery is achieved.
Patent Information
- Application Number
- CN202510228840.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-02-28
AI Technical Summary
It is difficult to perform quantitative feeding in the prior art, and it is difficult to accurately control the amount of sturgeon food.
A feed sprinkler device including feed bucket, transmission sleeve, feed sleeve, feed sleeve, feed barrel, feed roller and motor is designed. Through the elastic resetting effect of the torsion spring and the rotation of the spindle driven by the motor, intermittent automatic delivery of feed is achieved to ensure quantitative feeding.
Quantitative feeding is realized, avoiding waste caused by feeding too quickly, improving feeding efficiency, and through telescopic feeding devices and dredging devices, it can adapt to different fish pond locations and prevent blockage of feeding ports, improving the uniformity and efficiency of feeding.
Smart Images

Figure CN119999620A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of sturgeon breeding, in particular to a feed throwing device used for sturgeon breeding. Background Art
[0002] Sturgeon is a general term for fish of the order Acipenseriformes. Sturgeons are distributed in the oceans and rivers of the Northern Hemisphere and have 9 natural distribution areas. They are the largest, longest-lived and oldest fish in the world, with a history of more than 200 million years. Sturgeon farming technology involves site selection, facility construction, feed selection and feeding, water quality management, disease prevention and control and other aspects. The selection of feed is mainly based on compound feed, and the feeding should adhere to the principle of small amounts and frequent meals. The feed should be palatable, and the particle size should not be too large or too small. Generally, 1 / 2 of the fish's mouth cleft is suitable. The feeding amount is about 3% of the fish's body weight, and it is fed 3-4 times a day. The feeding amount can be adjusted at any time depending on the specific situation. In the existing technology, it is difficult to carry out quantitative feeding, and thus it is difficult to accurately control the food intake of sturgeons.
[0003] The patent with announcement number CN213463470U discloses an efficient feeding device for large-scale sturgeon farming. The upper end of the support column of the patent is provided with a rotating drum, and the upper end of the rotating drum is provided with a barrel. The upper end of the barrel is fixedly connected with a protective shell, and the outer wall of the barrel is provided with a feed inlet. The upper end of the protective shell is installed with a shielding component, and a motor is installed inside the protective shell. The bottom of the motor is fixedly connected with a motor gear. In normal times, the fish body should be prevented from being injured, so the feed should not be thrown too concentratedly during feeding, and the mutual influence of the fish school is reduced when feeding. The feed can be evenly thrown by the rotating drum, which is conducive to reducing the occurrence of diseases. Sturgeons are different from ordinary fish and have different requirements for light. When the temperature is high in summer, direct sunlight into the water will affect the development of sturgeons, so the shielding component can be used for sunshade, and it can be stored at any time, and the operation is convenient. Although the patent solves the above problems, it is still difficult to feed quantitatively, and it is difficult to accurately control the amount of food intake of sturgeons. Therefore, a feed throwing device for sturgeon farming is proposed to solve the above problems. Summary of the invention
[0004] The technical problem to be solved by the present invention is to provide a feed spreading device for sturgeon farming in view of the deficiencies in the above-mentioned prior art.
[0005] In order to solve the above technical problems, the technical solution adopted by the present invention is: a feed spreading device for sturgeon farming, comprising a feed barrel, a transmission housing is fixedly connected to the left side of the feed barrel, a feeding sleeve is fixedly connected to the right side of the transmission housing, a lowering barrel is hingedly connected to the right inner surface of the feed barrel, a lowering port is provided on the upper surface of the lowering barrel, a feeding roller is fixedly connected to the left side of the lowering barrel, a feeding port is provided on the rear side of the feeding roller, a main shaft is rotatably connected to the left inner surface of the transmission housing, an annular clamping plate is fixedly connected to the left side of the inner wall of the feed barrel, and the feeding roller The left side of the feed barrel is fixedly connected with a fan-shaped resistance block, the circumferential surface of the main shaft is fixedly connected with a toggle plate, the rear side of the feed barrel is fixedly connected with a mounting plate, a telescopic feeding device for adjusting the feeding distance is arranged below the feed barrel, and feeding to different fish ponds is convenient. A dredging device for dredging the telescopic feeding frame and improving the feeding efficiency is arranged below the feed barrel. The upper surface of the feeding sleeve is fixedly connected to the lower surface of the feed barrel, the circumferential surface of the feeding roller is hinged to the inner surface of the annular clamping plate, the left end of the main shaft is fixedly connected with a motor, and the motor is fixedly connected to the upper surface of the mounting plate. The front side of the material roller and the front side of the inner wall of the feed barrel are in contact with each other, the top of the toggle plate and the inclined surface of the fan-shaped resistance block are in contact with each other, and a torsion spring is arranged at the hinge of the lower material barrel and the feed barrel, and the feed is poured into the lower material barrel through the lower material opening, and the feed then falls into the feeding roller from the lower material barrel, and the lower material barrel is rotated backward, and the lower material barrel drives the feeding roller to rotate in the feed barrel, and after the feeding roller rotates a certain angle so that the feeding opening faces downward, at this time, the feed in the feeding roller falls into the feed barrel through the feeding opening, and then slides through the arc surface of the inner wall of the feed barrel into the feeding sleeve for feeding, and then the elastic reset effect of the torsion spring drives the lower material barrel and the feeding roller to rotate. The feed drum is reset, and the feeding port faces backwards at this time. The feed in the feeding drum cannot fall into the feeding barrel. The motor is started, and the motor drives the main shaft to rotate. The main shaft drives the toggle plate to rotate. The toggle plate is pushed by the inclined surface of the fan-shaped resistance block to rotate backward along the axis of the feeding drum. When the fan-shaped resistance block rotates backwards, it drives the feeding drum to rotate backward in the feeding barrel, so that the feeding port faces downwards. Then the torsion spring drives the feeding drum and the feeding drum to rotate and reset. During the continuous rotation of the main shaft and the toggle plate, the feeding drum and the feeding drum are driven to rotate continuously and reset through the fan-shaped resistance block, so that the feed intermittently and automatically falls from the feeding drum into the feeding barrel and the feeding sleeve.
[0006] Preferably, the telescopic feeding device comprises a telescopic feeding frame, a feeding port, a baffle, a connecting seat, a bottom plate, and an electric telescopic rod, the telescopic feeding frame is slidably connected to the inner surface of the feeding sleeve, the feeding port is opened on the right lower surface of the feeding sleeve, the baffle is fixedly connected to the right upper surface of the telescopic feeding frame, the connecting seat is hinged on the right side of the transmission sleeve, the bottom plate is fixedly connected to the lower surface of the connecting seat, and the electric telescopic rod is hinged on the upper surface of the bottom plate, the telescopic feeding device also comprises a connecting shaft, a reciprocating screw, an annular partition, and a nut, the connecting shaft is fixedly connected to the lower surface of the front side of the feeding barrel, the reciprocating screw is rotatably connected to the inner surface of the connecting shaft, the annular partition is fixedly connected to the inner wall of the feeding barrel, the nut is movably connected to the circumferential surface of the reciprocating screw, the top end of the electric telescopic rod is hinged to the lower surface of the mounting plate, the rear side surface of the baffle and the front side surface of the feeding barrel are in contact with each other, the left end of the reciprocating screw is fixedly connected to the right end of the main shaft, and the reciprocating screw is The left side of the telescopic feeding frame rotates and passes through the left side of the inner wall of the telescopic feeding frame, the circumferential surface of the feeding drum and the inner surface of the annular partition contact each other, the left side of the nut is fixedly connected to the left side of the inner wall of the telescopic feeding frame, and the feed that slides down from the feed barrel is caught by the telescopic feeding frame. At this time, the staff can adjust the distance between the feeding port opened on the telescopic feeding frame and the feeding sleeve by pulling out or pushing the telescopic feeding frame into the feeding sleeve. When the telescopic feeding frame is pulled out of the feeding sleeve, the electric telescopic rod is started, and the free end of the electric telescopic rod is extended to lift the transmission sleeve to the right through the mounting plate, and the transmission sleeve drives the feeding sleeve and the telescopic feeding frame to tilt to the right. After the telescopic feeding frame is tilted, the feed can slide to the lower right, and the rotation of the main shaft drives the reciprocating screw to rotate, and the reciprocating screw drives the nut to move back and forth left and right, and the nut drives the telescopic feeding frame to slide back and forth left and right in the feeding sleeve, so that the telescopic feeding frame can automatically extend and retract into the feeding sleeve.
[0007] The camming mechanism is a kind of interlocking mechanism, and its upper end is the upper end of the interlocking mechanism, and its lower end is the upper end of the interlocking mechanism, and its lower end is the upper end of the interlocking mechanism. The connecting rod rotates along the circumference of the axis of the telescopic slide rod, and the connecting rod drives the cleaning roller to rotate along the circumference of the axis of the telescopic slide rod and generates friction with the inner wall of the telescopic feeding frame. The cleaning roller pushes the feed blocked near the feeding port out of the feeding port through friction. When the nut moves to the right, it drives the transmission ring to move to the right, and the transmission ring drives the resistance rod to move to the right. The resistance rod pushes it to the right by contacting with the connecting plate and the resistance semicircular plate. The connecting plate drives the telescopic slide rod to slide to the right in the reciprocating screw. At the same time, the connecting plate drives the connecting rod and the cleaning roller to move to the right. When the nut moves to the left, it drives the transmission ring and the resistance rod to move to the left. The nut also drives the telescopic feeding frame to move to the left. At this time, the inner wall of the telescopic feeding frame pushes the connecting rod and the cleaning roller to move to the left, the connecting rod drives the connecting plate to move to the left, and the connecting plate drives the telescopic slide rod to slide to the left in the reciprocating screw, so that the cleaning roller is always consistent with the feeding port.
[0008] The present invention adopts the above technical solution to bring the following beneficial effects: 1. The feed throwing device for sturgeon breeding, the elastic reset action of the torsion spring drives the lower feeding barrel and the feeding drum to rotate and reset. At this time, the feeding port faces backward, and the feed in the feeding drum cannot fall into the feeding bucket, which is convenient for quantitative feeding and prevents the feed from being wasted too quickly. The feeding drum and the lower feeding barrel continue to rotate and reset, so that the feed intermittently and automatically falls from the feeding drum into the feeding bucket and the feeding sleeve, avoiding feed waste and improving feeding efficiency.
[0009] 2. The feed spreading device for sturgeon farming allows staff to adjust the distance between the feeding port on the telescopic feeding frame and the feeding sleeve by pulling out or pushing the telescopic feeding frame into the feeding sleeve, thereby adjusting the feeding distance, making it convenient to feed different positions in the fish pond and improving the applicability of the device. After the telescopic feeding frame is tilted, the feed can slide to the lower right, which is convenient for long-distance feed feeding and improves the ease of use of the device. The telescopic feeding frame can automatically reciprocate and extend and then retract into the feeding sleeve, thereby evenly feeding the feed to various positions in the fish pond and improving the feeding efficiency.
[0010] 3. In the feed spreading device for sturgeon farming, the cleaning roller pushes the feed blocked near the feeding port out of the feeding port through friction, thereby improving the feeding efficiency and avoiding the situation where a certain part of the fish pond is blocked by the telescopic feeding frame and insufficient feed is fed, thereby improving the feeding uniformity. The connecting plate drives the telescopic slide rod to slide to the left in the reciprocating screw, so that the cleaning roller is always consistent with the feeding port, further preventing the feeding port from being blocked and improving the dredging effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a schematic diagram of the three-dimensional overall structure of the present invention; Figure 2 It is a schematic diagram of the front side cross-sectional three-dimensional structure of the present invention; Figure 3 It is a schematic diagram of the front side cross-sectional three-dimensional structure of the feeding drum of the present invention; Figure 4 It is a schematic diagram of the front side cross-sectional three-dimensional structure of the telescopic feeding device of the present invention; Figure 5 For the present invention Figure 4 A is a schematic diagram of the enlarged structure of the middle part; Figure 6 It is a schematic diagram of the front side cross-sectional three-dimensional structure of the dredging device of the present invention; Figure 7 It is a schematic diagram of the front side cross-sectional three-dimensional structure of a partial structure of the dredging device of the present invention; Figure 8 For the present invention Figure 7 Schematic diagram of the enlarged structure of B.
[0012] In the figure: 1. feed barrel; 2. transmission housing; 3. feeding sleeve; 4. discharge barrel; 41. discharge port; 42. feeding drum; 43. drop port; 44. main shaft; 45. annular clamping plate; 46. fan-shaped resistance block; 47. toggle plate; 48. mounting plate; 5. telescopic feeding device; 51. telescopic feeding frame; 52. feeding port; 53. baffle; 54. connecting seat; 55. bottom plate; 56. electric telescopic rod; 57. connecting shaft; 58. reciprocating screw; 59. annular partition; 510. nut; 6. dredging device; 61. telescopic slide rod; 62. connecting plate; 63. connecting rod; 64. cleaning roller; 65. transmission ring; 66. resistance rod; 67. resistance semicircular plate. DETAILED DESCRIPTION
[0013] 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 described embodiments 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 creative work are within the scope of protection of the present invention.
[0014] See also Figure 1-Figure 8 One embodiment of the present invention is: a feed throwing device for sturgeon farming, comprising a feed barrel 1, a transmission housing 2 is fixedly connected to the left side of the feed barrel 1, a feeding sleeve 3 is fixedly connected to the right side of the transmission housing 2, a lowering barrel 4 is hingedly connected to the right inner surface of the feed barrel 1, a lowering port 41 is provided on the upper surface of the lowering barrel 4, a feeding roller 42 is fixedly connected to the left side of the lowering barrel 4, a feeding port 43 is provided on the rear side of the feeding roller 42, and a lowering port 43 is provided on the transmission housing 2. The left inner surface is rotatably connected with a main shaft 44, the left inner wall of the feed barrel 1 is fixedly connected with an annular clamping plate 45, the left side of the feeding roller 42 is fixedly connected with a fan-shaped resistance block 46, the circumferential surface of the main shaft 44 is fixedly connected with a toggle plate 47, and the rear side of the feed barrel 1 is fixedly connected with a mounting plate 48. The elastic reset action of the torsion spring drives the lower barrel 4 and the feeding roller 42 to rotate and reset. At this time, the drop opening 43 faces backwards, and the feed in the feeding roller 42 cannot fall into the feed barrel 1, which is convenient for Quantitative feeding is carried out to prevent waste caused by too fast feeding of feed. A telescopic feeding device 5 for adjusting the feeding distance is provided below the feeding barrel 1, which is convenient for feeding to different fish ponds. A dredging device 6 for dredging the telescopic feeding frame 51 to improve the feeding efficiency is provided below the feeding barrel 1. The upper surface of the feeding sleeve 3 is fixedly connected to the lower surface of the feeding barrel 1. The circumferential surface of the feeding drum 42 is hinged to the inner surface of the annular clamping plate 45. The left end of the main shaft 44 is fixedly connected with The motor is fixedly connected to the upper surface of the mounting plate 48, the front side surface of the feeding drum 42 and the front side surface of the inner wall of the feeding barrel 1 are in contact with each other, the top of the toggle plate 47 and the inclined surface of the fan-shaped resistance block 46 are in contact with each other, and a torsion spring is provided at the hinge of the lower feeding barrel 4 and the feeding barrel 1. The feeding drum 42 and the lower feeding barrel 4 rotate continuously and then reset, so that the feed intermittently and automatically falls from the feeding drum 42 into the feeding barrel 1 and the feeding sleeve 3, thereby avoiding feed waste and improving feeding efficiency.
[0015] Working principle: feed is poured into the feeding barrel 4 through the feeding opening 41, and the feed then falls into the feeding roller 42 from the feeding barrel 4, and the feeding barrel 4 is rotated backward, and the feeding roller 4 drives the feeding roller 42 to rotate in the feeding barrel 1, and the feeding roller 42 rotates a certain angle so that the feeding opening 43 faces downward, and the feed in the feeding roller 42 falls into the feeding barrel 1 through the feeding opening 43, and then slides through the arc surface of the inner wall of the feeding barrel 1 into the feeding sleeve 3 for feeding, and then the elastic reset action of the torsion spring drives the feeding barrel 4 and the feeding roller 42 to rotate and reset, and the feeding opening 43 faces backward at this time, and the feed in the feeding roller 42 cannot fall into the feeding barrel 1, which is convenient for quantitative feeding and prevents waste caused by too fast feeding. The motor is driven, and the motor drives the main shaft 44 to rotate. The main shaft 44 drives the toggle plate 47 to rotate. The toggle plate 47 is pushed by the inclined surface of the fan-shaped resistance block 46 to rotate backward along the axis of the feeding drum 42. When the fan-shaped resistance block 46 rotates backward, it drives the feeding drum 42 to rotate backward in the feeding barrel 1, so that the drop opening 43 faces downward, and then the torsion spring drives the discharge barrel 4 and the feeding drum 42 to rotate and reset. During the continuous rotation of the main shaft 44 and the toggle plate 47, the feeding drum 42 and the discharge barrel 4 are driven to rotate and reset continuously through the fan-shaped resistance block 46, so that the feed intermittently and automatically falls from the feeding drum 42 into the feeding barrel 1 and the feeding sleeve 3, thereby avoiding feed waste and improving feeding efficiency.
[0016] See also Figure 1-Figure 8On the basis of the above embodiment, in another embodiment of the present invention, the telescopic feeding device 5 includes a telescopic feeding frame 51, a feeding port 52, a baffle 53, a connecting seat 54, a bottom plate 55, and an electric telescopic rod 56. The telescopic feeding frame 51 is slidably connected to the inner surface of the feeding sleeve 3, the feeding port 52 is opened on the lower surface of the right side of the feeding sleeve 3, the baffle 53 is fixedly connected to the upper surface of the right side of the telescopic feeding frame 51, the connecting seat 54 is hinged on the right side of the transmission housing 2, the bottom plate 55 is fixedly connected to the lower surface of the connecting seat 54, and the electric telescopic rod 56 is fixedly connected to the lower surface of the connecting seat 54. The rod 56 is hinged on the upper surface of the bottom plate 55. The staff can adjust the distance between the feeding port 52 opened on the telescopic feeding frame 51 and the feeding sleeve 3 by pulling out or pushing the telescopic feeding frame 51 into the feeding sleeve 3, thereby adjusting the feeding distance, which is convenient for feeding feed at different positions in the fish pond and improves the applicability of the device. The telescopic feeding device 5 also includes a connecting shaft 57, a reciprocating screw 58, an annular partition plate 59, and a nut 510. The connecting shaft 57 is fixedly connected to the lower surface of the front side of the feed barrel 1, and the reciprocating screw 58 rotates to connect The annular partition plate 59 is connected to the inner surface of the connecting shaft 57, and is fixedly connected to the inner wall of the feed barrel 1. The nut 510 is movably connected to the circumferential surface of the reciprocating screw 58. The top of the electric telescopic rod 56 is hinged to the lower surface of the mounting plate 48. The rear side of the baffle 53 and the front side of the feed barrel 1 are in contact with each other. The left end of the reciprocating screw 58 and the right end of the main shaft 44 are fixedly connected. The reciprocating screw 58 rotates from the left side of the telescopic feeding frame 51 to pass through the left side of the inner wall of the telescopic feeding frame 51. The circumferential surface of the feeding drum 42 and the inner surface of the annular partition plate 59 are in contact with each other. The left side surface of the nut 510 is fixedly connected to the left side surface of the inner wall of the telescopic feeding frame 51. When the telescopic feeding frame 51 is tilted, the feed can slide to the lower right, which is convenient for long-distance feed delivery and improves the ease of use of the device. The telescopic feeding frame 51 can automatically extend and retract into the feeding sleeve 3 back and forth, thereby evenly delivering the feed to various positions in the fish pond, thereby improving the delivery efficiency. A reciprocating spiral groove is provided on the surface of the reciprocating screw 58, and a block is provided on the inner wall of the nut 510, and the block is located in the reciprocating spiral groove.
[0017] Working principle: the feed that slides down from the feed bucket 1 is caught by the telescopic feeding frame 51. At this time, the staff can adjust the distance between the feeding port 52 opened on the telescopic feeding frame 51 and the feeding sleeve 3 by pulling out or pushing the telescopic feeding frame 51 into the feeding sleeve 3, thereby adjusting the feeding distance, making it convenient to feed at different positions in the fish pond, and improving the applicability of the device. When the telescopic feeding frame 51 is pulled out of the feeding sleeve 3, the electric telescopic rod 56 is started, and the free end of the electric telescopic rod 56 is extended to push the transmission housing 2 to the right through the mounting plate 48, and the transmission housing 2 is then driven The movable feeding sleeve 3 and the telescopic feeding frame 51 are tilted to the right. After the telescopic feeding frame 51 is tilted, the feed can slide to the lower right, which is convenient for long-distance feed delivery and improves the ease of use of the device. The rotation of the main shaft 44 drives the reciprocating screw 58 to rotate, and the reciprocating screw 58 drives the nut 510 to move back and forth left and right. The nut 510 drives the telescopic feeding frame 51 to slide back and forth left and right in the feeding sleeve 3, so that the telescopic feeding frame 51 can automatically extend and retract into the feeding sleeve 3 back and forth, thereby evenly delivering the feed to various positions in the fish pond, thereby improving the delivery efficiency.
[0018] See also Figure 1-Figure 8 On the basis of the above embodiment, in another embodiment of the present invention, the dredging device 6 includes a telescopic slide rod 61, a connecting plate 62, and a connecting rod 63. The telescopic slide rod 61 is slidably connected to the inner surface of the reciprocating screw 58 through a spline, and the connecting plate 62 is fixedly connected to the right end of the telescopic slide rod 61. The connecting rod 63 is fixedly connected to the right side of the connecting plate 62. The cleaning roller 64 pushes the feed blocked near the feeding port 52 out of the feeding port 52 through friction, thereby improving the feeding efficiency and avoiding the fact that a certain part of the fish pond is blocked by the telescopic feeding frame 51 and a sufficient amount of feed is not fed, thereby improving the uniformity of feeding. The dredging device 6 also includes a cleaning roller 64, a transmission ring 65, a resistance rod 66, and a resistance semicircle Plate 67, the cleaning roller 64 is fixedly connected to the circumferential surface of the connecting rod 63, the transmission ring 65 is fixedly connected to the circumferential surface of the nut 510, the resistance rod 66 is fixedly connected to the right side of the transmission ring 65, the resistance semicircular plate 67 is fixedly connected to the upper and lower sides of the connecting plate 62, the right end of the resistance rod 66 and the left side of the connecting plate 62 are in contact with each other, the right end of the resistance rod 66 and the left side of the resistance semicircular plate 67 are in contact with each other, the circumferential surface of the cleaning roller 64 and the inner surface of the telescopic feeding frame 51 are in contact with each other, the connecting plate 62 drives the telescopic slide rod 61 to slide leftward in the reciprocating screw 58, so that the cleaning roller 64 is always consistent with the feeding port 52, further preventing the feeding port 52 from being blocked and improving the dredging effect.
[0019] Working principle: when the reciprocating screw 58 rotates, it drives the telescopic slide bar 61 to rotate through the spline, the telescopic slide bar 61 drives the connecting plate 62 to rotate, the connecting plate 62 drives the connecting rod 63 to rotate along the axis of the telescopic slide bar 61, and the connecting rod 63 drives the cleaning roller 64 to rotate along the axis of the telescopic slide bar 61 and generate friction with the inner wall of the telescopic feeding frame 51. The cleaning roller 64 pushes the feed blocked near the feeding port 52 out of the feeding port 52 through friction, thereby improving the feeding efficiency and avoiding a certain part of the fish pond from not feeding enough feed due to the blockage of the telescopic feeding frame 51, thereby improving the uniformity of feeding. When the nut 510 moves to the right, it drives the transmission ring 65 to move to the right, and the transmission ring 65 drives the resistance rod 66 to move to the right. The resistance rod 66 is connected to the connecting rod 63. The connecting plate 62 and the abutting semicircular plate 67 contact and push it to move to the right. The connecting plate 62 drives the telescopic slide rod 61 to slide to the right in the reciprocating screw 58. At the same time, the connecting plate 62 drives the connecting rod 63 and the cleaning roller 64 to move to the right. When the nut 510 moves to the left, it drives the transmission ring 65 and the abutting rod 66 to move to the left. The nut 510 also drives the telescopic feeding frame 51 to move to the left. At this time, the inner wall of the telescopic feeding frame 51 pushes the connecting rod 63 and the cleaning roller 64 to move to the left. The connecting rod 63 drives the connecting plate 62 to move to the left. The connecting plate 62 drives the telescopic slide rod 61 to slide to the left in the reciprocating screw 58, so that the cleaning roller 64 is always consistent with the feeding port 52, further preventing the feeding port 52 from being blocked and improving the dredging effect.
[0020] The present invention provides a feed throwing device for sturgeon farming. There are many methods and ways to implement the technical solution. The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention. All components not specified in this embodiment can be implemented by existing technologies.
Claims
1. A feed spreading device for sturgeon farming, comprising a feed barrel (1), characterized in that: The left side of the feed barrel (1) is fixedly connected to a transmission housing (2), the right side of the transmission housing (2) is fixedly connected to a feeding sleeve (3), the right inner surface of the feed barrel (1) is hingedly connected to a lowering barrel (4), the upper surface of the lowering barrel (4) is provided with a feeding opening (41), the left side of the lowering barrel (4) is fixedly connected to a feeding roller (42), the rear side of the feeding roller (42) is provided with a feeding opening (43), the left inner surface of the transmission housing (2) is rotatably connected to a main shaft (44), the left side of the inner wall of the feed barrel (1) is fixedly connected to an annular clamping plate (45), the left side of the feeding roller (42) is fixedly connected to a fan-shaped resistance block (46), the circumferential surface of the main shaft (44) is fixedly connected to a toggle plate (47), and the rear side of the feed barrel (1) is fixedly connected to a mounting plate (48); A telescopic feeding device (5) for adjusting the feeding distance to facilitate feeding to different fish ponds is provided below the feeding barrel (1), and a dredging device (6) for dredging the telescopic feeding frame (51) to improve feeding efficiency is provided below the feeding barrel (1).
2. A feed spreading device for sturgeon farming according to claim 1, characterized in that: The upper surface of the feeding sleeve (3) is fixedly connected to the lower surface of the feeding barrel (1), the circumferential surface of the feeding roller (42) is hinged to the inner surface of the annular clamping plate (45), the left end of the main shaft (44) is fixedly connected to a motor, and the motor is fixedly connected to the upper surface of the mounting plate (48), the front side surface of the feeding roller (42) and the front side surface of the inner wall of the feeding barrel (1) are in contact with each other, the top end of the toggle plate (47) and the inclined surface of the fan-shaped resistance block (46) are in contact with each other, and a torsion spring is provided at the hinge between the lower barrel (4) and the feeding barrel (1).
3. A feed spreading device for sturgeon breeding according to claim 2, characterized in that: The telescopic feeding device (5) comprises a telescopic feeding frame (51), a feeding port (52), a baffle (53), a connecting seat (54), a bottom plate (55), and an electric telescopic rod (56); the telescopic feeding frame (51) is slidably connected to the inner surface of the feeding sleeve (3); the feeding port (52) is provided on the lower right surface of the feeding sleeve (3); the baffle (53) is fixedly connected to the upper right surface of the telescopic feeding frame (51); the connecting seat (54) is hinged to the right side surface of the transmission housing (2); the bottom plate (55) is fixedly connected to the lower surface of the connecting seat (54); and the electric telescopic rod (56) is hinged to the upper surface of the bottom plate (55).
4. A feed spreading device for sturgeon breeding according to claim 3, characterized in that: The telescopic feeding device (5) also includes a connecting shaft (57), a reciprocating screw (58), an annular partition (59), and a nut (510); the connecting shaft (57) is fixedly connected to the lower surface of the front side of the feeding barrel (1); the reciprocating screw (58) is rotatably connected to the inner surface of the connecting shaft (57); the annular partition (59) is fixedly connected to the inner wall of the feeding barrel (1); and the nut (510) is movably connected to the circumferential surface of the reciprocating screw (58).
5. A feed spreading device for sturgeon breeding according to claim 4, characterized in that: The top end of the electric telescopic rod (56) is hinged to the lower surface of the mounting plate (48), the rear side of the baffle (53) and the front side of the feed barrel (1) are in contact with each other, the left end of the reciprocating screw (58) and the right end of the main shaft (44) are fixedly connected, the reciprocating screw (58) rotates from the left side of the telescopic feeding frame (51) to pass through the left side of the inner wall of the telescopic feeding frame (51), the circumferential surface of the feeding drum (42) and the inner surface of the annular partition (59) are in contact with each other, and the left side of the nut (510) is fixedly connected to the left side of the inner wall of the telescopic feeding frame (51).
6. A feed spreading device for sturgeon breeding according to claim 5, characterized in that: The dredging device (6) comprises a telescopic slide rod (61), a connecting plate (62), and a connecting rod (63); the telescopic slide rod (61) is slidably connected to the inner surface of the reciprocating screw (58) via a spline; the connecting plate (62) is fixedly connected to the right end of the telescopic slide rod (61); and the connecting rod (63) is fixedly connected to the right side surface of the connecting plate (62).
7. A feed spreading device for sturgeon breeding according to claim 6, characterized in that: The dredging device (6) further comprises a cleaning roller (64), a transmission ring (65), a resistance rod (66), and a resistance semicircular plate (67); the cleaning roller (64) is fixedly connected to the circumferential surface of the connecting rod (63); the transmission ring (65) is fixedly connected to the circumferential surface of the nut (510); the resistance rod (66) is fixedly connected to the right side of the transmission ring (65); and the resistance semicircular plate (67) is fixedly connected to the upper and lower sides of the connecting plate (62).
8. A feed spreading device for sturgeon farming according to claim 7, characterized in that: The right end of the abutment rod (66) and the left side surface of the connecting plate (62) are in contact with each other, the right end of the abutment rod (66) and the left side surface of the abutment semicircular plate (67) are in contact with each other, and the circumferential surface of the cleaning roller (64) and the inner surface of the telescopic feeding frame (51) are in contact with each other.
Citation Information
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