Factory breeding pond mandarin fish fry domestication feed auxiliary device

By designing a feeding aid device for mandarin fish fry in factory-scale aquaculture ponds, using a filter screen, lifting plate, and vibration components to collect uneaten feed, the problems of feed waste and water pollution are solved, and the feeding efficiency and survival rate of mandarin fish are improved.

CN119999621BActive Publication Date: 2025-12-09PEARL RIVER FISHERY RES INST CHINESE ACAD OF FISHERY SCI
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Patent Information

Application Number
CN202510379496.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-12-09
Estimated Expiration
2045-03-28

AI Technical Summary

Technical Problem

Traditional methods of acclimatizing mandarin fish fry result in feed waste and water pollution, especially in factory-style aquaculture ponds. Inaccurate feeding leads to some uneaten feed soaking in the water, dissolving nutrients and polluting the water.

Method used

A feeding aid device for mandarin fish fry in factory-scale aquaculture ponds was designed, including a filter screen, a lifting plate, a tilting component, a vibration component, and a waste bin. The device collects uneaten feed into the waste bin through lifting, tilting, and vibration, preventing it from being soaked in water.

Benefits of technology

It effectively prevents water pollution, improves feed utilization, reduces acclimatization time, and increases the survival rate and weight gain rate of mandarin fish.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a factory breeding pond mandarin fish fry domestication feed auxiliary device, and belongs to the technical field of domestication feed auxiliary devices. The factory breeding pond mandarin fish fry domestication feed auxiliary device comprises a breeding pond, a rack, a first sliding block and a driving piece; the first sliding block is horizontally and slidingly connected with the rack; the driving piece is used for driving the first sliding block; a lifting piece is fixedly connected with the first sliding block; a lifting plate is installed on the lifting piece; a guide block is fixedly connected with the lifting plate; a moving frame is vertically and slidingly connected with the guide block; a first spring is fixedly connected with the guide block and the moving frame at two ends; a first rotating shaft is rotatably connected with the moving frame; and a filter screen is fixedly connected with the first rotating shaft. The application has the beneficial effect of providing a factory breeding pond mandarin fish fry domestication feed auxiliary device capable of preventing water pollution.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of domestication feed auxiliary, in particular to a domestication feed auxiliary device for mandarin fish fry in factory farming pond. BACKGROUND

[0002] Mandarin fish is a high-grade aquatic product that is deeply loved by consumers because of its delicious and nutritious meat. In the process of mandarin fish farming, fry domestication is a key link. The traditional fry domestication method of mandarin fish mainly relies on artificial feeding of live bait, and gradually transitions to feeding of feed. However, this method has many problems.

[0003] Mandarin fish fry is usually distributed in scattered groups (one group after another) in the breeding tank. Although the water flow of the water pipe flows, the feed cannot be accurately fed to the location of the mandarin fish group, resulting in insufficient feeding of mandarin fish fry in the area where the feed is not scattered or in the corner of the breeding barrel. During the current domestication process, part of the feed that is not eaten will be soaked in water for ten minutes, and the attractant components, nutrients and other additive components in the feed will dissolve in the water, and the mandarin fish will refuse to eat, resulting in waste of feed and pollution of water quality.

[0004] Therefore, a domestication feed auxiliary device for mandarin fish fry in factory farming pond is provided to prevent water pollution. SUMMARY

[0005] The summary part of the present application is used to introduce the concept in a simple form, which will be described in detail in the specific embodiment part. The summary part of the present application is not intended to identify the key features or essential features of the claimed technical solution, nor is it intended to limit the scope of the claimed technical solution.

[0006] In order to solve the technical problems mentioned in the background part, some embodiments of the present application provide a domestication feed auxiliary device for mandarin fish fry in factory farming pond, comprising: a breeding pond, a rack, a first sliding block and a driving piece; the first sliding block is horizontally and slidingly connected with the rack; the driving piece is used to drive the first sliding block; a lifting piece is fixedly connected with the first sliding block; a lifting plate is installed on the lifting piece; a guide block is fixedly connected with the lifting plate; a moving frame is vertically and slidingly connected with the guide block; a first spring is fixedly connected at both ends with the guide block and the moving frame; a first rotating shaft is rotationally connected with the moving frame; a filter screen is fixedly connected with the first rotating shaft; a damping piece increases the resistance on both sides of the moving frame to reduce the reset speed of the moving frame; a turnover piece is used to drive the filter screen to turn over; a limiting piece is used to limit the filter screen; a vibration assembly is used to vibrate the filter screen to clean the filter screen; and a waste box is located on one side of the breeding pond.

[0007] The lifting piece drives the lifting plate to ascend, moves to the waste box, then overturns the filter screen through the transmission piece, then the limiting piece limits the filter screen, and meanwhile the driving piece drives the lifting plate and the guide block to move, when moving to the vibration assembly position, the vibration assembly vibrates the filter screen, so that the feed on the filter screen is vibrated into the waste box, thereby the un-eaten feed is transferred to the waste box, preventing part of the un-eaten feed from being soaked in water and causing water pollution.

[0008] Further, the damping piece comprises: a first sliding plate, which is in horizontal sliding connection with the guide block; a damping block, which is in fixed connection with the first sliding plate; a second spring, both ends of which are in fixed connection with the guide block and the first sliding plate respectively; a first electric push rod, which is in fixed connection with the guide block; a first push plate, which is in fixed connection with the output shaft of the first electric push rod; a driving block, which is in fixed connection with the first push plate; a transmission block, which is in fixed connection with the first sliding plate; the driving block comprises a first inclined surface, and the transmission block comprises a second inclined surface; the first inclined surface is in abutment with the second inclined surface.

[0009] Further, the guide block is provided with a first sliding groove extending along the height direction of the guide block; the moving frame moves along the first sliding groove; the guide block is provided with a second sliding groove extending along the width direction of the guide block; the first sliding plate moves along the second sliding groove.

[0010] Further, the overturning piece comprises: a first rack, which is in fixed connection with the waste box; a first gear, which is in fixed connection with the first rotating shaft and is in meshing arrangement with the first rack.

[0011] Further, the limiting piece comprises: a second electric push rod, which is in fixed connection with the moving frame; a limiting column, which is in fixed connection with the output shaft of the second electric push rod; a connecting shaft, which is in fixed connection with the first rotating shaft; the connecting shaft comprises a limiting hole; the limiting hole is for the limiting column to insert into.

[0012] Further, the vibration assembly comprises: a transmission protrusion, which is in fixed connection with the moving frame; a fixed plate, which is in fixed connection with the waste box; a first driving protrusion, which is in fixed connection with the fixed plate; a second sliding block, which is in vertical sliding connection with the fixed plate; a second driving protrusion, which is in fixed connection with the second sliding block; a fixing piece, which is used for fixing the second sliding block and the fixed plate.

[0013] Further, the first driving protrusion and the second driving protrusion are both provided with a plurality of; the first driving protrusion and the second driving protrusion are arranged in a staggered manner.

[0014] Further, the first driving protrusion comprises a first driving part; the fixed plate comprises a driving surface; the second driving protrusion comprises a second driving part; the first driving part, the second driving part and the driving surface are used for driving the transmission protrusion to move.

[0015] Further, the fixed plate is provided with a third sliding groove extending along the height direction of the fixed plate; the second sliding block moves along the third sliding groove.

[0016] Further, the factory breeding pond mandarin fish fry domestication feed auxiliary device further comprises: a buoyancy pipe arranged in the breeding pond; and a flushing pipe fixedly connected with the buoyancy pipe.

[0017] The factory breeding pond mandarin fish fry domestication feed auxiliary device has the beneficial effects that water pollution is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0018] The drawings constituting a part of this application are used to provide further understanding of this application, so that other features, objects and advantages of this application become more apparent. The illustrative embodiment drawings of this application and the description thereof are used to explain this application, and do not constitute an improper limitation on this application.

[0019] In addition, throughout the drawings, the same or similar reference signs represent the same or similar elements. It should be understood that the drawings are schematic, and the elements and elements are not necessarily drawn according to the scale.

[0020] In the drawings:

[0021] Figure 1 is a whole schematic view according to the embodiment of the application;

[0022] Figure 2 is a structural schematic view of a part of the embodiment, mainly showing the structure of the first sliding block;

[0023] Figure 3 is a structural schematic view of a part of the embodiment, mainly showing the structure of the transmission block;

[0024] Figure 4 is a structural schematic view of a part of the embodiment, mainly showing the structure of the first driving part and the second driving part;

[0025] Figure 5 is a structural schematic view of a part of the embodiment, mainly showing the structure of the first gear and the first rack;

[0026] Figure 6 is a structural schematic view of a part of the embodiment, mainly showing the structure of the driving block and the transmission block;

[0027] Figure 7 is Figure 6 is an enlarged view of A of the structural schematic view of the embodiment, mainly showing the structure of the limiting column and the limiting hole;

[0028] Figure 8 is a structural schematic view of a part of the embodiment, mainly showing the structure of the filter screen;

[0029] Figure 9 is an enlarged view of part B of Figure 8 , mainly showing the structure of the first sliding groove;

[0030] Figure 10 is a structural schematic diagram of part of the embodiment, mainly showing the structure of the moving frame;

[0031] Figure 11 is an enlarged view of part C of Figure 10 , mainly showing the structure of the first sliding plate and the damping block;

[0032] Figure 12 is a structural schematic diagram of part of the embodiment, mainly showing the structure of the buoyancy pipe and the flushing pipe.

[0033] Reference signs:

[0034] 100, factory breeding pond mandarin fish fry domestication feed auxiliary device; 101, breeding pond; 102, rack; 103, first sliding block; 104, lifting plate; 104a, feed pipe; 105, guide block; 105a, first sliding groove; 105b, second sliding groove; 106, moving frame; 107, first spring; 108, first rotating shaft; 109, filter screen; 110, waste box; 111, air cylinder; 112, first sliding plate; 113, damping block; 114, second spring; 115, first electric push rod; 116, first push plate; 117, driving block; 118, transmission block; 119, first rack; 120, first gear; 121, second electric push rod; 122, limiting column; 123, connecting shaft; 123a, limiting hole; 124, transmission protrusion; 125, fixed plate; 125a, driving surface; 126, first driving protrusion; 126a, first driving part; 127, second sliding block; 128, second driving protrusion; 128a, second driving part; 129, buoyancy pipe; 130, flushing pipe. DETAILED DESCRIPTION

[0035] Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although certain embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure can be implemented in various forms, and should not be interpreted as being limited to the embodiments set forth herein. On the contrary, these embodiments are provided so as to make the present disclosure more thorough and complete. It should be understood that the drawings and embodiments of the present disclosure are only for exemplary purposes, and are not intended to limit the scope of protection of the present disclosure.

[0036] In addition, it should be further noted that, for the convenience of description, only the parts related to the invention are shown in the drawings. The embodiments in the present disclosure and the features in the embodiments can be combined with each other without conflict.

[0037] It should be noted that the concepts of "first", "second", etc. mentioned in the present disclosure are only used to distinguish different devices, modules or units, and are not used to limit the order or interdependence of the functions performed by these devices, modules or units.

[0038] It should be noted that the modification of "one" or "multiple" mentioned in the present disclosure is illustrative but not limiting, and those skilled in the art should understand that unless the context clearly indicates otherwise, it should be understood as "one or more".

[0039] The present disclosure will be described in detail below with reference to the accompanying drawings and in conjunction with embodiments.

[0040] Embodiment one:

[0041] Referring to Figures 1-12 A factory breeding pond fish fry feeding feed auxiliary device 100, comprising: a breeding pond 101, a rack 102, a first sliding block 103 and a driving member for driving the first sliding block 103 to move, a lifting plate 104, a lifting member for driving the lifting plate 104 to move, a guide block 105, a moving frame 106, a first spring 107, a first rotating shaft 108, a filter screen 109, a damping member for reducing the reset speed of the moving frame 106, a turnover member for driving the filter screen 109 to turn over, a limiting member for limiting the filter screen 109, a vibration assembly for vibrating the filter screen 109, a waste box 110 and a feed auxiliary assembly for feeding the feed to the fish school.

[0042] The first sliding block 103 is horizontally and slidingly connected with the rack 102. The driving member is used to drive the first sliding block 103 to move, and the driving member is a lead screw and a nut structure. The first sliding block 103 is driven to move along the length direction of the rack 102 by the lead screw and the nut. The lifting member is fixedly connected with the first sliding block 103. The lifting member is a pneumatic cylinder 111, the cylinder body of the pneumatic cylinder 111 is fixedly connected with the first sliding block 103, and the piston of the pneumatic cylinder 111 is fixedly connected with the lifting plate 104. The guide block 105 is fixedly connected with the lifting plate 104. The waste box 110 is located on one side of the breeding pond 101. The lifting plate 104 is provided with a feed pipe 104a, the feed pipe 104a is connected with the feed, and the feed is delivered to the breeding pond 101 through the feed pipe 104a.

[0043] The moving frame 106 is vertically and slidingly connected with the guide block 105. Specifically, the guide block 105 is provided with a first sliding groove 105a extending along the height direction of the guide block 105, and the moving frame 106 moves along the first sliding groove 105a. The first spring 107 has two ends respectively fixedly connected with the guide block 105 and the moving frame 106. The first rotating shaft 108 is rotationally connected with the moving frame 106. The filter screen 109 is fixedly connected with the first rotating shaft 108.

[0044] The damping member increases the resistance on both sides of the moving frame 106 to reduce the reset speed of the moving frame 106, and the damping member comprises a first sliding plate 112, a damping block 113, a second spring 114, a first electric push rod 115, a first push plate 116, a driving block 117 and a transmission block 118. The first sliding plate 112 is in sliding connection with the guide block 105 in the horizontal direction. Specifically, the guide block 105 is provided with a second sliding groove 105b extending along the width direction of the guide block 105, and the first sliding plate 112 moves along the second sliding groove 105b. The damping block 113 is fixedly connected with the first sliding plate 112. The second spring 114 has two ends fixedly connected with the guide block 105 and the first sliding plate 112 respectively.

[0045] The first electric push rod 115 is fixedly connected with the guide block 105. The first push plate 116 is fixedly connected with the output shaft of the first electric push rod 115. The driving block 117 is fixedly connected with the first push plate 116. The transmission block 118 is fixedly connected with the first sliding plate 112. The driving block 117 comprises a first inclined surface, and the transmission block 118 comprises a second inclined surface, and the first inclined surface is in abutment with the second inclined surface. The first electric push rod 115 drives the first push plate 116 to move, the first push plate 116 drives the driving block 117 to move, the driving block 117 drives the transmission block 118 to move through the first inclined surface and the second inclined surface, the transmission block 118 drives the first sliding plate 112 to move, and the first sliding plate 112 drives the damping block 113 to move. One end of the damping block 113 is a wavy surface, so as to ensure the friction between the damping block 113 and the moving frame 106, thereby reducing the reset speed of the moving frame 106.

[0046] The overturning member is used for driving the filter screen 109 to overturn, and the overturning member comprises a first rack 119 and a first gear 120. The first rack 119 is fixedly connected with the waste box 110. The first gear 120 is fixedly connected with the first rotating shaft 108 and is in meshing arrangement with the first rack 119. When the first sliding block 103 moves to the position of the first rack 119, the cylinder 111 drives the lifting plate 104 to move, and the lifting plate 104 drives the moving frame 106 to move. When the first gear 120 is in meshing arrangement with the first rack 119, the first gear 120 is driven to rotate under the action of the first rack 119, the first gear 120 drives the first rotating shaft 108 to rotate, thereby driving the filter screen 109 to overturn by 180 degrees, so as to facilitate the subsequent cleaning of the filter screen 109.

[0047] The limiting piece is used for limiting the filter screen 109, and the limiting piece comprises a second electric push rod 121, a limiting column 122 and a connecting shaft 123. The second electric push rod 121 is fixedly connected with the moving frame 106. The limiting column 122 is fixedly connected with an output shaft of the second electric push rod 121. The connecting shaft 123 is fixedly connected with the first rotating shaft 108. The connecting shaft 123 comprises a limiting hole 123a, and the limiting hole 123a is used for inserting the limiting column 122. The second electric push rod 121 drives the limiting column 122 to insert into the limiting hole 123a, so that the first rotating shaft 108 is limited, and the cleaning of the filter screen 109 is more convenient.

[0048] The vibration assembly is used for vibrating the filter screen 109, so as to clean the filter screen 109. The vibration assembly comprises a transmission lug 124, a fixed plate 125, a first driving lug 126, a second sliding block 127, a second driving lug 128 and a fixing piece used for fixing the second sliding block 127 and the fixed plate 125. The transmission lug 124 is fixedly connected with the moving frame 106. The fixed plate 125 is fixedly connected with the waste box 110. The first driving lug 126 is fixedly connected with the fixed plate 125. The second sliding block 127 is vertically and slidingly connected with the fixed plate 125. Specifically, the fixed plate 125 is provided with a third sliding groove extending along the height direction of the fixed plate 125, and the second sliding block 127 moves along the third sliding groove. The fixing piece is a fixing bolt, and the second sliding block 127 is fixed with the fixed plate 125 through the fixing bolt.

[0049] The second driving lug 128 is fixedly connected with the second sliding block 127. The fixing piece is used for fixing the second sliding block 127 and the fixed plate 125. A plurality of first driving lugs 126 and a plurality of second driving lugs 128 are arranged. The first driving lugs 126 and the second driving lugs 128 are arranged alternately. The first driving lug 126 comprises a first driving part 126a, the second driving lug 128 comprises a second driving part 128a, and the fixed plate 125 comprises a driving surface 125a. The first driving part 126a and the second driving part 128a are arc surfaces. The first driving part 126a, the second driving part 128a and the driving surface 125a are used for driving the transmission lug 124 to move. When the driving piece drives the first sliding block 103 to move to the positions of the first driving lugs 126 and the second driving lugs 128, the transmission lug 124 abuts against the first driving part 126a, the driving surface 125a and the second driving part 128a, so as to drive the moving frame 106 to move. When the transmission frame abuts against the first driving part 126a and the second driving part 128a in sequence, the moving frame 106 is vibrated with different amplitudes, so that the feed on the filter screen 109 can be better shaken off. Through the change of the vibration amplitude, the feed partially blocked on the filter screen 109 can be better shaken off, so as to ensure the cleaning effect.

[0050] The feed auxiliary assembly is used for feeding the fish, comprising: a buoyancy pipe 129 and a water jet pipe 130. The buoyancy pipe 129 is arranged in the culture pond 101. The water jet pipe 130 is fixedly connected with the buoyancy pipe 129. The buoyancy pipe 129 is made of PVC material, having good corrosion resistance and structural strength. The main frame of the buoyancy pipe 129 is in the shape of a cuboid, and the hollow structure provides buoyancy, so as to be used in different water areas. The buoyancy pipe 129 is connected with a water pipe, and the water added through the buoyancy pipe 129 adjusts the water height, so as to adapt to different water areas. At the same time, the feed is jetted to the upper side of the filter screen 109 through the water jet pipe 130, so that the mandarin fish is concentrated on the filter screen 109, and the feed is fed, and the feed loss is saved during domestication.

[0051] Workflow: The cylinder 111 drives the lifting plate 104 to descend, and then the feed is fed through the feed pipe 104a. The feed is jetted to the upper side of the filter screen 109 through the water jet pipe 130, so that the mandarin fish is concentrated on the filter screen 109, and the feed is concentrated and fed. After the feeding is finished, the feed sediment is accumulated on the filter screen 109. Then the cylinder 111 drives the lifting plate 104 to ascend to the upper side of the culture pond 101. Then the first sliding block 103 is driven to move to the waste box 110 position through the driving part (screw rod, nut structure). Then the second electric push rod 121 drives the limiting column 122 to be separated from the limiting hole 123a, so that the first rotating shaft 108 can rotate. Then the cylinder 111 drives the lifting plate 104 to descend, and the lifting plate 104 moves to drive the moving frame 106 to move. When the first gear 120 is engaged with the first rack 119, the first gear 120 is driven to rotate under the action of the first rack 119. The first gear 120 drives the first rotating shaft 108 to rotate, so as to drive the filter screen 109 to be turned over by 180 degrees, facilitating the subsequent cleaning of the filter screen 109. At the same time, when the filter screen 109 is turned over, the first rack 119 is disengaged from the first gear 120.

[0052] Meanwhile the second electric push rod 121 drives the limiting column 122 to insert into the limiting hole 123a, so that the first rotating shaft 108 is limited, which is more convenient for cleaning the filter screen 109. Then the driving part drives the first sliding block 103 to move, and the first sliding block 103 drives the lifting plate 104 and the guide block 105 to move. When the transmission lug 124 moves to the position of the first driving lug 126 and the second driving lug 128, the transmission lug 124 abuts against the first driving part 126a, the driving surface 125a and the second driving part 128a, so as to drive the moving frame 106 to move. When the transmission frame abuts against the first driving part 126a and the second driving part 128a in sequence, the moving frame 106 will vibrate with different amplitudes, so that the feed on the filter screen 109 can be better shaken off. Through the change of the vibration amplitude, the feed which is partially blocked on the filter screen 109 can be better shaken off, so as to ensure the cleaning effect. Meanwhile, the position of the second sliding block 127 is adjusted through the fixing part (fixing bolt), so as to adjust the protruding position of the second driving lug 128, and thus the amplitude of vibration is adjusted, so that the filter screen 109 can be better shaken, and the filter screen 109 is prevented from being blocked, which causes the feeding of the next feed.

[0053] And the first push plate 116 is driven to move by the first electric push rod 115, the first push plate 116 drives the driving block 117 to move, the driving block 117 drives the transmission block 118 to move through the first inclined surface and the second inclined surface, the transmission block 118 drives the first sliding plate 112 to move, the first sliding plate 112 drives the damping block 113 to move, one end of the damping block 113 is a wave surface, so as to ensure the friction between the damping block 113 and the moving frame 106, so as to reduce the reset speed of the moving frame 106. When the moving frame 106 has no resistance of the damping block 113, the transmission block 118 will abut against the first driving part 126a, the driving surface 125a and the second driving part 128a in sequence. Under the action of the damping block 113, the transmission block 118 is reset to the position of the first driving part 126a (not reset to the driving surface 125a), so that the transmission block 118 is shaken more frequently through the movement of the driving part and the transmission of the first driving part 126a and the second driving part 128a, so as to better clean the filter screen 109. According to actual needs, the vibration amplitude and the vibration frequency of the filter screen 109 can be set, so as to better clean the feed on the filter screen 109, prevent the feed on the filter screen 109 from remaining, and cause water pollution, so as to prevent the feed from polluting the water.

[0054] Embodiment two:

[0055] The difference from example 1 is that two 6m-diameter culture barrels are set in the factory culture pond, one of which uses traditional water pipe flushing. 10,000 mandarin fish fry with a weight of 10±1g are put into each culture barrel for feed training. The feeding amount and time are recorded every day, the mandarin fish weight is weighed after 40 days of training, and the survival rate and weight gain rate are calculated.

[0056] After half an hour of feeding, 20 fish are randomly caught to check if the abdomen is swollen, and the mandarin fish feeding rate is calculated. On the 21st day, the feeding rate of the device group reaches 90%, while the control group is only 80%. On the 28th day, the control group reaches 90%. Through comparative experiments, it is found that after 40 days of training, the survival of mandarin fish in the device is 8531, while the survival of mandarin fish in the control group is 5863. The survival rate of mandarin fish using the device is increased by 26.28%. The average weight of mandarin fish in the device group is 26g, and the average weight gain rate is 160%. The average weight of mandarin fish in the control group is 21g, and the average weight gain rate is 110%. The experimental results show that the device can reduce the training time, improve the survival rate and weight gain rate of training.

[0057] The above description is only some of the preferred embodiments of the present disclosure and an explanation of the principles of the technology used. Those skilled in the art should understand that the scope of the invention involved in the embodiments of the present disclosure is not limited to the technical solutions formed by the specific combinations of the above technical features, and should also cover other technical solutions formed by any combination of the above technical features or their equivalent features without departing from the above inventive concept. For example, the above features are replaced with the technical features disclosed in the embodiments of the present disclosure (but not limited to) having similar functions to form technical solutions.

Claims

1. A factory farming pond mandarin fish fry domestication feed auxiliary device, comprising: a breeding pond (101), a rack (102), a first sliding block (103) and a driving member; the first sliding block (103) is horizontally and slidingly connected with the rack (102); the driving member is used for driving the first sliding block (103); characterized in that: the factory farming pond mandarin fish fry domestication feed auxiliary device further comprises: a lifting member fixedly connected with the first sliding block (103); a lifting plate (104) installed on the lifting member; a guide block (105) fixedly connected with the lifting plate (104); a moving frame (106) vertically and slidingly connected with the guide block (105); a first spring (107) having two ends fixedly connected with the guide block (105) and the moving frame (106) respectively; a first rotating shaft (108) rotationally connected with the moving frame (106); a filter screen (109) fixedly connected with the first rotating shaft (108); a damping member for increasing the resistance on both sides of the moving frame (106) to reduce the reset speed of the moving frame (106); a turnover member for driving the filter screen (109) to turn over; a limiting member for limiting the filter screen (109); a vibration assembly for vibrating the filter screen (109) to clean the filter screen (109); a waste box (110) located on one side of the breeding pond (101); the damping member comprises: a first sliding plate (112) horizontally and slidingly connected with the guide block (105); a damping block (113) fixedly connected with the first sliding plate (112); a second spring (114) having two ends fixedly connected with the guide block (105) and the first sliding plate (112) respectively; a first electric push rod (115) fixedly connected with the guide block (105); a first push plate (116) fixedly connected with the output shaft of the first electric push rod (115); a driving block (117) fixedly connected with the first push plate (116); a transmission block (118) fixedly connected with the first sliding plate (112); the driving block (117) comprises a first inclined surface, and the transmission block (118) comprises a second inclined surface; the first inclined surface is in abutment with the second inclined surface; the vibration assembly comprises: a transmission protrusion (124) fixedly connected with the moving frame (106); a fixed plate (125) fixedly connected with the waste box (110); a first driving protrusion (126) fixedly connected with the fixed plate (125); a second sliding block (127) vertically and slidingly connected with the fixed plate (125); a second driving protrusion (128) fixedly connected with the second sliding block (127); a fixing member for fixing the second sliding block (127) with the fixed plate (125); the first driving protrusion (126) and the second driving protrusion (128) are both provided with a plurality of; the first driving protrusion (126) and the second driving protrusion (128) are staggered.

2. The factory farming pond mandarin fish fry domestication feed auxiliary device according to claim 1, characterized in that: the guide block (105) is provided with a first sliding groove (105a) extending along the height direction of the guide block (105). The moving frame (106) moves along the first sliding groove (105a); The guide block (105) is provided with a second sliding groove (105b) extending along the width direction of the guide block (105); The first sliding plate (112) moves along the second sliding groove (105b).

3. The device according to claim 1, wherein: The turnover member comprises: A first gear rack (119) is fixedly connected with the waste box (110); A first gear (120) is fixedly connected with the first rotating shaft (108) and is arranged in meshing with the first gear rack (119).

4. The device according to claim 1, wherein: The limiting member comprises: A second electric push rod (121) is fixedly connected with the moving frame (106); A limiting column (122) is fixedly connected with the output shaft of the second electric push rod (121); A connecting shaft (123) is fixedly connected with the first rotating shaft (108); The connecting shaft (123) comprises a limiting hole (123a) for the limiting column (122) to be inserted into.

5. The device according to claim 1, wherein: The first driving protrusion (126) comprises a first driving part (126a); The fixed plate (125) comprises a driving surface (125a); The second driving protrusion (128) comprises a second driving part (128a); The first driving part (126a), the second driving part (128a) and the driving surface (125a) are used to drive the transmission protrusion (124) to move.

6. The device according to claim 1, wherein: The fixed plate (125) is provided with a third sliding groove extending along the height direction of the fixed plate (125); The second sliding block (127) moves along the third sliding groove.

7. The device according to claim 1, wherein: The device further comprises: A buoyancy pipe (129) is arranged in the breeding pond (101); A flushing pipe (130) is fixedly connected with the buoyancy pipe (129).

Citation Information

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