Automatic chopping and feeding device for livestock breeding food

By designing an automatic shredding and feeding device, the problems of trampling and uneven feeding during goose feeding were solved, enabling multi-point feeding and precise feeding, thus improving the efficiency and safety of livestock farming.

CN120898742BActive Publication Date: 2025-12-12SICHUAN NANSHUI AGRI & ANIMAL HUSBANDRY TECH CO LTD
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Patent Information

Application Number
CN202511445606.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-11
Publication Date
2025-12-12
Estimated Expiration
2045-10-11

AI Technical Summary

Technical Problem

In livestock farming, geese are prone to trampling each other and uneven feeding when being fed, especially during large-scale feeding, where existing equipment is difficult to achieve uniform feeding.

Method used

An automatic chopping and feeding device was designed, which includes a crusher, a mixer, a guide pipe, a discharge pipe, and a feeding mechanism. Through multi-point feeding and a synchronous detection mechanism, uniform feeding and precise control of food are achieved.

Benefits of technology

This prevents geese from trampling each other, ensuring even and precise feeding, and improving the efficiency and safety of the feeding process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of livestock breeding, in particular to a livestock breeding food automatic chopping and feeding device, which comprises a pulverizer body and a mixer body, the output end of the pulverizer body is communicated with the mixer body, a material guide pipe is communicated with the bottom of the mixer body, one end of the material guide pipe is communicated with a discharge pipe, a support outer pipe is rotatably connected to the outside of the discharge pipe, and a material guiding mechanism is arranged between the material guide pipe and the discharge pipe; the livestock breeding food automatic chopping and feeding device is characterized in that the discharge pipe is connected to the material guide pipe, the discharge pipe is fixedly installed above the feeding area through the support outer pipe, a plurality of discharge holes are arranged on the discharge pipe, the support outer pipe is provided with a connecting hole corresponding to the position of each discharge hole, and the stirred material can be synchronously fed into a plurality of receiving basins through the cooperation of the feeding mechanism, so that synchronous multi-point feeding can be realized and the mutual trampling of goose groups during feeding can be avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of livestock breeding, in particular to an automatic chopping and feeding device for livestock breeding food. BACKGROUND

[0002] Livestock breeding includes livestock and poultry feeding, and geese, as a common poultry, are widely raised for providing meat, eggs and feather products, etc. The meat of geese is delicious and nutritious, and is favored by consumers. Meanwhile, goose eggs are also a kind of nutritious food and have certain market value. In addition, the feathers of geese can also be used to make various down products, such as down jackets, down quilts, etc.

[0003] At present, during the process of breeding geese, it is necessary to feed them regularly, and the feed for feeding geese needs to chop green vegetables, mix the chopped green vegetables with crushed grains, etc., and then feed them. During the process of feeding, due to the large number of geese in the process of livestock breeding, the flock of geese will crowd each other along the feeding direction during the process of feeding the mixed feed, which not only easily causes mutual trampling among geese and the phenomenon of dead geese, but also easily causes the phenomenon of uneven feeding of geese. Therefore, an automatic chopping and feeding device for livestock breeding food is proposed. SUMMARY

[0004] The present application aims to provide an automatic chopping and feeding device for livestock breeding food to solve the problems in the background art.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: an automatic chopping and feeding device for livestock breeding food, comprising a pulverizer body and a mixer body, the output end of the pulverizer body is communicated with the mixer body, the bottom of the mixer body is communicated with a material guide pipe, one end of the material guide pipe is communicated with a discharge pipe, a support outer pipe is rotatably connected to the outside of the discharge pipe, a material guide mechanism is arranged between the material guide pipe and the discharge pipe, and a plurality of discharge holes are arranged at equal distances on the discharge pipe.

[0006] A connecting hole is arranged on the support outer pipe and corresponds to the position of the discharge hole, and a feeding mechanism is arranged at the bottom of the connecting hole, and the plurality of feeding mechanisms are used for multi-point feeding of the flock of geese.

[0007] Among them, a plurality of support sleeves are installed at equal distances on the outside of the support outer pipe, and the plurality of support sleeves are fixedly connected to the top of the external equipment through bolts.

[0008] Among them, the material guide mechanism comprises a rotating connection between a first conveying member, a second conveying member, a protective shell and a rotary driving member, the first conveying member is installed on the material guide pipe, and the first conveying member is used for conveying the food at the material guide pipe.

[0009] The second conveying member is located on the discharge pipe and is used for conveying the food at the discharge pipe.

[0010] The protective shell is fixedly installed at one end of the discharge pipe away from the guide pipe, and the rotary driving member is installed on the support outer pipe and is used for driving the discharge pipe.

[0011] The first conveying member and the second conveying member each comprise a conveying shaft, a spiral blade and a conveying motor, the spiral blade is fixedly sleeved outside the conveying shaft, and the conveying motor is used for driving the conveying shaft.

[0012] The feeding mechanism comprises a discharge pipe, a discharge limiting member, a receiving basin and a synchronous detection mechanism, the top of the discharge pipe is communicated with the connecting hole, and an electromagnetic valve is arranged on the discharge pipe;

[0013] The discharge limiting member is communicated with the bottom of the discharge pipe, the receiving basin is located below the discharge limiting member, and the receiving basin is used for receiving the food at the discharge pipe, the synchronous detection mechanism is installed on both sides of the receiving basin, and the synchronous detection mechanism is used for detecting the amount of food in the receiving basin and supporting the receiving basin at the same time, and the feeding mechanism is arranged, so that the function of feeding the goose group is realized.

[0014] The discharge limiting member comprises a discharge channel, a discharge cover and connecting ears, the discharge channel is made of flexible material, the discharge channel is communicated with the discharge pipe, the bottom of the discharge channel is communicated with the discharge cover, the receiving basin is located below the discharge cover, the two connecting ears are arranged, and the two connecting ears are fixedly installed on both sides of the discharge cover; the two connecting ears are connected with the synchronous detection mechanism, and the discharge limiting member is arranged, so that the food falling process is guided.

[0015] A plurality of discharge pipes are provided, each of the discharge pipes is provided with an air inlet cover, the bottom of the air inlet cover is communicated with two telescopic pipes, the two telescopic pipes are fixedly installed on the two connecting ears respectively, the air inlet cover is communicated with an air inlet pipe, a plurality of air inlet pipes are communicated with an air pipe, the two ends of the air pipe are provided with electromagnetic valves, and the two ends of the air pipe are provided with a blower and a negative pressure exhaust fan respectively.

[0016] The synchronous detection mechanism comprises a rotating shaft, a support plate, a support sleeve, a positioning shell, a support leg, a synchronous driving member and a detection member, the rotating shaft is provided with two ends, and the two ends of the rotating shaft are fixedly connected with the receiving basin respectively, the support plate is rotatably sleeved outside the rotating shaft, the support sleeve is fixedly installed on the support plate, and the support sleeve is fixedly installed outside the positioning shell, the positioning shell is fixedly installed outside the support outer pipe, and the synchronous driving member is arranged between the rotating shaft, the support sleeve and the positioning shell.

[0017] The support plate bottom is provided with a containing groove, and the detection piece is connected with the containing groove, the bottom of the detection piece is fixedly connected with the supporting leg, and through the synchronous detection mechanism, the state of the receiving basin is detected.

[0018] The synchronous driving piece comprises a connecting shaft, a first straight-toothed helical gear, a second straight-toothed helical gear, a synchronous gear, a third straight-toothed helical gear and a fourth straight-toothed helical gear, the connecting shaft penetrates through the support sleeve, the top of the connecting shaft is rotatably connected in the positioning shell, the first straight-toothed helical gear is fixedly installed on the top of the connecting shaft, and the first straight-toothed helical gear is meshingly connected with the second straight-toothed helical gear, one end of the second straight-toothed helical gear is fixedly connected with a positioning shaft, and the positioning shaft is rotatably connected outside the support outer tube, one end of the positioning shaft is fixedly connected with the synchronous gear, the support outer tube is provided with an opening corresponding to the synchronous gear, and a plurality of gear grooves are arranged outside the discharge pipe, and the synchronous gear is meshingly connected with the gear grooves.

[0019] The bottom of the connecting shaft is fixedly connected with the third straight-toothed helical gear, the support plate is provided with a groove, the third straight-toothed helical gear is located in the groove, the third straight-toothed helical gear is meshingly connected with the fourth straight-toothed helical gear, and the fourth straight-toothed helical gear is fixedly sleeved outside the rotating shaft, and through the synchronous driving piece, the rotating shaft is driven.

[0020] The detection piece comprises a pressure sensor, a contact plate, a plurality of elastic sheets and a connecting plate, the pressure sensor is fixedly installed at the bottom of the containing groove, the contact plate is fixedly installed at the bottom of the pressure sensor, the plurality of elastic sheets are equidistantly connected at the bottom of the contact plate, the plurality of elastic sheets are fixedly installed on the connecting plate, the connecting plate is slidably penetrated through the containing groove, and the connecting plate is fixedly connected with the supporting leg, so that the weight of the receiving basin is detected.

[0021] The present application has at least the following advantages:

[0022] When the present application is used, the discharge pipe is connected to the guide pipe, the discharge pipe is fixedly installed above the feeding area through the support outer tube, a plurality of discharge holes are arranged on the discharge pipe, the support outer tube is provided with connecting holes corresponding to the discharge holes, and under the cooperation of the feeding mechanism, the stirred solid objects can be simultaneously fed into the plurality of receiving basins, so that synchronous multi-point feeding is realized, and the phenomenon that the goose group steps on each other during feeding is avoided.

[0023] Meanwhile, the receiving basin in the present application can keep the opening downward when not feeding, so that the phenomenon that rainwater or soil is accumulated in the receiving basin due to the long-term upward opening is avoided, and the cleanliness of the receiving basin during feeding is further ensured.

[0024] The material receiving basin in the application can not only support the material receiving basin, but also judge the food in the material receiving basin in time under the support of the synchronous detection mechanism on both sides. When the food weight in some material receiving basins decreases rapidly and the food weight in the other material receiving basins decreases slowly, the goose food eating amount in the material receiving basin area can be judged, and then the internal material receiving basin can be accurately fed. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a whole structure schematic diagram of the application;

[0026] Figure 2 It is a whole structure side view of the application;

[0027] Figure 3 It is a guide pipe side view sectional structure schematic diagram of the application;

[0028] Figure 4 It is a A area enlarged structure schematic diagram of the application; Figure 3

[0029] Figure 5 It is a rotating driving part structure schematic diagram of the application;

[0030] Figure 6 It is a feeding mechanism structure schematic diagram of the application;

[0031] Figure 7 It is a material discharging pipe local sectional structure schematic diagram of the application;

[0032] Figure 8 It is a B area enlarged structure schematic diagram of the application; Figure 7

[0033] Figure 9 It is a support plate side view sectional structure schematic diagram of the application;

[0034] Figure 10 It is a C area enlarged structure schematic diagram of the application; Figure 9

[0035] Figure 11 It is a material receiving basin side view structure schematic diagram of the application;

[0036] Figure 12 It is a material discharging cover side view sectional structure schematic diagram of the application.

[0037] ​​​In the figure: 1-pulverizer body; 2-mixer body; 3-feeding pipe; 4-discharge pipe; 41-discharge hole; 42-gear groove; 5-support outer tube; 51-connection hole; 52-support collar; 6-feeding mechanism; 61-first conveying part; 62-second conveying part; 63-protection shell; 64-rotary driving part; 641-first rotary gear; 642-second rotary gear; 643-servo motor; 65-conveying shaft; 66-spiral blade; 67-conveying motor; 7-feeding mechanism; 71-discharge pipe; 711-air inlet cover; 712-telescopic pipe; 713-air inlet pipe; 714-ventilation pipe; 715-blower; 716-negative pressure exhaust fan; 72-discharge limiting part; 721-discharge channel; 722-discharge cover; 7221-filtering inclined plate; 7222-discharge port; 7223-moving plug; 723-connection lug; 73-receiving basin; 74-synchronous detection mechanism; 741-rotary shaft; 742-supporting plate; 7421-containing groove; 743-supporting sleeve; 744-positioning shell; 745-supporting leg; 8-synchronous driving part; 81-connection shaft; 82-first straight and helical gear; 83-second straight and helical gear; 84-synchronous gear; 85-third straight and helical gear; 86-fourth straight and helical gear; 9-detection part; 91-pressure sensor; 92-contact plate; 93-elastic sheet; 94-connection plate. DETAILED DESCRIPTION

[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0039] Embodiment one, please refer to Figures 1 to 3 An automatic chopping and feeding device for livestock breeding food comprises a pulverizer body 1 and a mixer body 2. The output end of the pulverizer body 1 is communicated with the mixer body 2. The pulverizer body 1 and the mixer body 2 are both existing devices. The pulverizer is used for pulverizing green vegetables and large-particle grains. The pulverized food is mixed and stirred by the mixer body 2. Therefore, no more description is made. The bottom of the mixer body 2 is communicated with a feeding pipe 3. That is, the mixed food is guided into the feeding pipe 3 by the mixer body 2. One end of the feeding pipe 3 is communicated with a discharge pipe 4. The outer side of the discharge pipe 4 is rotatably connected with a support outer tube 5. A feeding mechanism 6 is arranged between the feeding pipe 3 and the discharge pipe 4.

[0040] Please refer to Figures 3 to 7The material guiding mechanism 6 comprises a rotating connection of a first conveying member 61, a second conveying member 62, a protective shell 63 and a rotating driving member 64, the first conveying member 61 is installed on the material guiding pipe 3, and the first conveying member 61 is used for conveying food at the material guiding pipe 3;

[0041] The second conveying member 62 is located on the material discharging pipe 4, and the second conveying member 62 is used for conveying food at the material discharging pipe 4;

[0042] The protective shell 63 is fixedly installed on the material discharging pipe 4 away from the material guiding pipe 3, and the rotating driving member 64 is installed on the supporting outer pipe 5, and the rotating driving member 64 is used for driving the material discharging pipe 4.

[0043] The first conveying member 61 and the second conveying member 62 are both composed of a conveying shaft 65, a spiral blade 66 and a conveying motor 67, the spiral blade 66 is fixedly sleeved outside the conveying shaft 65, and the conveying motor 67 is used for driving the conveying shaft 65;

[0044] That is, two conveying shafts 65 are respectively installed on the material guiding pipe 3 and the material discharging pipe 4, and two conveying motors 67 are respectively installed on the material guiding pipe 3 and the material discharging pipe 4, by driving the conveying shaft 65 to rotate, further make two spiral blades 66 rotate along the inside of the material guiding pipe 3 and the material discharging pipe 4 respectively, realize conveying the mixed material, at the same time, the protective shell 63 is sleeved outside the conveying motor 67 of the material discharging pipe 4, that is, the protective shell 63 is used for protecting the conveying motor 67;

[0045] The rotating driving member 64 comprises a first rotating gear 641, a second rotating gear 642 and a servo motor 643, the first rotating gear 641 is fixedly sleeved outside the protective shell 63, and the first rotating gear 641 is in meshing connection with the second rotating gear 642, the servo motor 643 is fixedly installed outside the supporting shell, and the output end of the servo motor 643 is fixedly connected with the second rotating gear 642;

[0046] Please refer to Figure 5 Further, by running the servo motor 643, the second rotating gear 642 drives the first rotating gear 641 to rotate, further makes the material discharging pipe 4 at the protective shell 63 rotate relative to the supporting outer pipe 5, and a plurality of discharging holes 41 are equidistantly arranged on the material discharging pipe 4;

[0047] The supporting outer pipe 5 is provided with a connecting hole 51 at a position corresponding to the discharging hole 41;

[0048] Specifically, the discharge pipe 4 is in an upward position during the food conveying process, that is, the discharge holes 41 on the discharge pipe 4 are offset from the connecting holes 51, so that the inside of the long discharge pipe 4 is filled with food, and until the food is evenly distributed in the discharge pipe 4, the feeding process is carried out, and then the servo motor 643 is operated to rotate the discharge pipe 4 relative to the supporting outer pipe 5, until the connecting holes 51 on the supporting outer pipe 5 are in communication with the discharge holes 41, thereby ensuring that the food falls through the discharge holes 41 and the connecting holes 51.

[0049] And the connecting hole 51 is provided with a feeding mechanism 7, and the plurality of feeding mechanisms 7 are used for multi-point feeding of the goose group.

[0050] Please refer to Figures 1 to 2 The supporting outer pipe 5 is provided with a plurality of supporting collars 52 at equal distances on the outside, and the plurality of supporting collars 52 are fixedly connected to the top of the external equipment through bolts, that is, the supporting outer pipe 5 is detachably installed on the top of the external equipment through the supporting collars 52, that is, during actual use, the external equipment is a goose shed or a supporting outer frame, and the number of supporting collars 52 can be set according to the position of the goose shed or the supporting outer frame, so as to ensure that the supporting outer pipe 5 is stably supported and connected, and located above the feeding area of the goose group.

[0051] Please refer to Figures 5 to 7 The feeding mechanism 7 includes a discharge pipe 71, a discharge limiting piece 72, a receiving basin 73, and a synchronous detection mechanism 74, the top of the discharge pipe 71 is in communication with the connecting hole 51, and the discharge pipe 71 is provided with an electromagnetic valve;

[0052] The discharge limiting piece 72 is in communication with the bottom of the discharge pipe 71, the receiving basin 73 is located below the discharge limiting piece 72, and the receiving basin 73 is used for receiving the food in the discharge pipe 71, the synchronous detection mechanism 74 is installed on both sides of the receiving basin 73, and the synchronous detection mechanism 74 is used for detecting the amount of food in the receiving basin 73 and supporting the receiving basin 73.

[0053] The discharge limiting piece 72 includes a discharge passage 721, a discharge cover 722, and a connecting lug 723, the discharge passage 721 is made of flexible material, the discharge passage 721 is in communication with the discharge pipe 71, and the bottom of the discharge passage 721 is in communication with the discharge cover 722, the receiving basin 73 is located below the discharge cover 722, the connecting lug 723 is provided with two, the two connecting lugs 723 are fixedly installed on both sides of the discharge cover 722, and the two connecting lugs 723 are connected with the synchronous detection mechanism 74.

[0054] The air inlet cover 711 is provided with two telescopic pipes 712 at the bottom, and the two telescopic pipes 712 are fixedly installed on the two connecting ears 723 respectively.

[0055] Specific implementation process: when the mixed feed is fed to the goose group, the food uniformly enters the inside of the discharge pipe 4, then the electromagnetic valve near the air blower 715 is opened, the air blower 715 guides the external airflow into the air pipe 714, the air pipe 714 guides the airflow into the multiple air inlet covers 711 through the multiple air inlet pipes 713, and the airflow is guided into the two telescopic pipes 712 on the air inlet cover 711, and then the telescopic pipes 712 are expanded, and in the process of expansion and extension of the telescopic pipes 712, the discharge cover 722 is moved along the receiving basin 73 through the connecting ears 723 until the receiving cover moves to above the receiving basin 73, then the rotary driving part 64 is operated to further make the multiple discharge holes 41 on the discharge pipe 4 communicate with the connecting holes 51, and the electromagnetic valves on the multiple discharge pipes 71 are opened, and the food falls uniformly into the receiving basin 73 through the discharge channel 721 and the discharge cover 722, and when the goose group finishes eating, the electromagnetic valve near the negative pressure air blower 716 is opened, and the electromagnetic valve near the air blower 715 is closed, so that the negative pressure air blower 716 is operated to discharge the airflow in the multiple telescopic pipes 712, at this time, the multiple telescopic pipes 712 are retracted, and the discharge channel 721 between the telescopic pipes 712 is folded to make the discharge cover 722 rise above the receiving basin 73.

[0056] Please refer to Figures 6 to 11 , the synchronous detection mechanism 74 includes two rotating shafts 741, a support plate 742, a support sleeve 743, a positioning shell 744, a support foot 745, a synchronous driving part 8 and a detection part 9, one end of the two rotating shafts 741 is fixedly connected with the receiving basin 73 respectively, the support plate 742 is rotatably sleeved outside the rotating shaft 741, the support sleeve 743 is fixedly installed on the support plate 742, and the support sleeve 743 is fixedly installed outside the positioning shell 744, the positioning shell 744 is fixedly installed outside the support outer tube 5, and the synchronous driving part 8 is arranged between the rotating shaft 741, the support sleeve 743 and the positioning shell 744.

[0057] The bottom of the support plate 742 is provided with a containing groove 7421, and the detection part 9 is connected with the containing groove 7421, and the bottom of the detection part 9 is fixedly connected with the support foot 745.

[0058] The synchronous driving piece 8 comprises a connecting shaft 81, a first straight and bevel gear 82, a second straight and bevel gear 83, a synchronous gear 84, a third straight and bevel gear 85 and a fourth straight and bevel gear 86, the connecting shaft 81 penetrates through the support sleeve 743, the top of the connecting shaft 81 is rotationally connected in the positioning shell 744, the first straight and bevel gear 82 is fixedly installed on the top of the connecting shaft 81 and is in meshing connection with the second straight and bevel gear 83, one end of the second straight and bevel gear 83 is fixedly connected with a positioning shaft, the positioning shaft is rotationally connected on the outside of the support outer tube 5, one end of the positioning shaft is fixedly connected with the synchronous gear 84, an opening is arranged on the support outer tube 5 and corresponds to the position of the synchronous gear 84, a plurality of gear grooves 42 are arranged on the outside of the discharge pipe 4, and the synchronous gear 84 is in meshing connection with the gear grooves 42;

[0059] The bottom of the connecting shaft 81 is fixedly connected with the third straight and bevel gear 85, a groove is arranged on the support plate 742, the third straight and bevel gear 85 is located in the groove, the third straight and bevel gear 85 is in meshing connection with the fourth straight and bevel gear 86, and the fourth straight and bevel gear 86 is fixedly sleeved on the outside of the rotating shaft 741;

[0060] Specific implementation process: when the discharge pipe 4 rotates in the support outer tube 5, the gear grooves 42 on the discharge pipe 4 rotate synchronously, when the plurality of gear grooves 42 rotate synchronously, the synchronous gear 84 rotates further, when the synchronous gear 84 rotates, the second straight bevel gear drives the first straight bevel gear to rotate further, when the first straight bevel gear rotates, the connecting shaft 81 rotates, when the connecting shaft 81 rotates, the third straight and bevel gear 85 drives the fourth straight and bevel gear 86 to rotate, the rotating shaft 741 rotates relative to the support plate 742, when the rotating shaft 741 rotates, the receiving basin 73 is flipped from the state of the opening downward to the state of the opening upward, and the receiving basin 73 receives food, so that the goose group can eat food.

[0061] Please refer to Figures 9 to 11 The detection piece 9 comprises a pressure sensor 91, a contact plate 92, a plurality of elastic sheets 93 and a connecting plate 94, the pressure sensor 91 is fixedly installed on the bottom of the containing groove 7421, the contact plate 92 is fixedly installed on the bottom of the pressure sensor 91, the plurality of elastic sheets 93 are equidistantly connected on the bottom of the contact plate 92, the plurality of elastic sheets 93 are fixedly installed on the connecting plate 94, the connecting plate 94 is slidingly penetrated through the containing groove 7421, and the connecting plate 94 is fixedly connected with the support leg 745;

[0062] Specifically, the two pressure sensors 91 on both sides of the receiving basin 73 are used to detect the weight of the receiving basin 73 and the inside of the receiving basin 73. When a certain amount of food falls into the inside of the receiving basin 73, the pressure sensors 91 are used to detect data. At the same time, the geese eat food at the receiving basin 73. When the pressure sensor 91 data changes quickly at the receiving basin 73, it means that the geese eat more food at this position, and the number of geese is more. When the pressure sensor 91 data changes slowly at the receiving basin 73, it means that the geese eat less food at this position, and the number of geese is less. At this time, the electromagnetic valve on the discharge pipe 71 at the corresponding position is closed, and the food continuously falls through the receiving basin 73 where the number of geese is more, so as to ensure that the geese move in a small range and realize the function of precise feeding.

[0063] Embodiment two, please refer to Figure 12 Embodiment two is a further supplement to embodiment one. Specifically, the discharge cover 722 is fixedly connected with two filter inclined plates 7221. The two filter inclined plates 7221 are inclinedly distributed inside the discharge cover 722. A plurality of filter holes are equidistantly arranged on the filter inclined plates 7221. The discharge cover 722 is provided with a discharge port 7222 at the bottom of both sides and corresponding to the two filter inclined plates 7221. The discharge port 7222 is movably connected with a movable plug 7223.

[0064] Further, the food falling through the discharge channel 721 and the discharge cover 722 falls through the plurality of filter holes on the two filter inclined plates 7221 at the same time. Through the arrangement of the two filter inclined plates 7221, the food can uniformly fall into the receiving basin 73. At the same time, the large particles of food can be further filtered. The large particles of food after filtering can be further taken out by opening the movable plug 7223 at the discharge port 7222.

[0065] It should be noted that, in this text, the relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variant thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.

[0066] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the claims and their equivalents.

Claims

1. An automatic chopping and feeding device for livestock breeding food, comprising a pulverizer body and a mixer body, the output end of the pulverizer body being communicated with the mixer body, characterized in that: The material guide pipe is communicated with the bottom of the mixer body, and one end of the material guide pipe is communicated with the discharge pipe, the outer side of the discharge pipe is rotationally connected with the supporting outer pipe, a material guide mechanism is arranged between the material guide pipe and the discharge pipe, and a plurality of discharge holes are equidistantly arranged on the discharge pipe; A connecting hole is arranged on the supporting outer pipe and corresponds to the position of the discharge hole, a feeding mechanism is arranged at the bottom of the connecting hole, and the plurality of feeding mechanisms are used for multi-point feeding of the goose group; The feeding mechanism comprises a discharge pipe, a discharge limiting piece, a receiving basin and a synchronous detection mechanism, the top of the discharge pipe is communicated with the connecting hole, and an electromagnetic valve is arranged on the discharge pipe; The discharge limiting piece is communicated with the bottom of the discharge pipe, the receiving basin is located below the discharge limiting piece, and the receiving basin is used for receiving food at the discharge pipe, the synchronous detection mechanism is installed on both sides of the receiving basin, and the synchronous detection mechanism is used for detecting the amount of food in the receiving basin and supporting the receiving basin at the same time; The synchronous detection mechanism comprises rotating shafts, support plates, support sleeves, positioning shells, support feet, synchronous driving pieces and detection pieces, the rotating shafts are provided in two, one end of each of the two rotating shafts is fixedly connected with the receiving basin, the support plates are rotationally sleeved on the outer side of the rotating shafts, the support sleeves are fixedly installed on the support plates, the support sleeves are fixedly installed on the outer side of the positioning shells, the positioning shells are fixedly installed on the outer side of the supporting outer pipe, and the synchronous driving pieces are arranged between the rotating shafts, the support sleeves and the positioning shells; The bottom of the support plate is provided with a containing groove, and the detection piece is connected with the containing groove, and the bottom of the detection piece is fixedly connected with the support foot; The synchronous driving piece comprises a connecting shaft, a first straight and helical gear, a second straight and helical gear, a synchronous gear, a third straight and helical gear and a fourth straight and helical gear, the connecting shaft penetrates through the support sleeve, the top of the connecting shaft is rotationally connected in the positioning shell, the first straight and helical gear is fixedly installed at the top of the connecting shaft, the first straight and helical gear is meshedly connected with the second straight and helical gear, one end of the second straight and helical gear is fixedly connected with a positioning shaft, the positioning shaft is rotationally connected on the outer side of the supporting outer pipe, one end of the positioning shaft is fixedly connected with the synchronous gear, the supporting outer pipe is provided with an opening corresponding to the synchronous gear, a plurality of gear grooves are arranged on the outer side of the discharge pipe, and the synchronous gear is meshedly connected with the gear grooves; The bottom of the connecting shaft is fixedly connected with the third straight and helical gear, a recess is arranged on the support plate, the third straight and helical gear is located in the recess, the third straight and helical gear is meshedly connected with the fourth straight and helical gear, and the fourth straight and helical gear is fixedly sleeved on the outer side of the rotating shaft.

2. The automatic chopping and feeding device for livestock breeding food according to claim 1, characterized in that: A plurality of support sleeves are equidistantly installed on the outer side of the supporting outer pipe, and the plurality of support sleeves are fixedly connected with the top of the external equipment through bolts.

3. The automatic chopping and feeding device for livestock breeding food according to claim 1, characterized in that: The material guide mechanism comprises rotating connections on the first conveying piece, the second conveying piece, the protective shell and the rotating driving piece, the first conveying piece is installed on the material guide pipe, and the first conveying piece is used for conveying food at the material guide pipe; The second conveying piece is located on the discharge pipe, and the second conveying piece is used for conveying food at the discharge pipe; The protective shell is fixedly installed at the end of the discharge pipe away from the guide pipe, and the rotary driving member is installed on the support outer pipe and used to drive the discharge pipe.

4. The automatic chopping and feeding device for livestock breeding food according to claim 3, characterized in that: The first and second conveying members each comprise a conveying shaft, a spiral blade and a conveying motor, the spiral blade is fixedly sleeved outside the conveying shaft, and the conveying motor is used to drive the conveying shaft.

5. The automatic chopping and feeding device for livestock breeding food according to claim 1, characterized in that: The discharge limiting member comprises a discharge channel, a discharge cover and connecting ears, the discharge channel is made of flexible material, the discharge channel is communicated with the discharge pipe, the bottom of the discharge channel is communicated with the discharge cover, the receiving basin is located below the discharge cover, the two connecting ears are fixedly installed on the two sides of the discharge cover, and the two connecting ears are connected with the synchronous detection mechanism.

6. The automatic chopping and feeding device for livestock breeding food according to claim 5, characterized in that: Multiple air inlet covers are installed on the discharge pipes, two telescopic pipes are communicated with the bottom of each air inlet cover, the two telescopic pipes are fixedly installed on the two connecting ears, an air inlet pipe is communicated with each air inlet cover, multiple air inlet pipes are communicated with an air pipe, electromagnetic valves are installed at the two ends of the air pipe, and a blower and a negative pressure exhaust fan are installed at the two ends of the air pipe.

7. The automatic chopping and feeding device for livestock breeding food according to claim 1, characterized in that: The detection member comprises a pressure sensor, a contact plate, elastic sheets and a connecting plate, the pressure sensor is fixedly installed at the bottom of the containing groove, the contact plate is fixedly installed at the bottom of the pressure sensor, multiple elastic sheets are equidistantly connected at the bottom of the contact plate, the multiple elastic sheets are fixedly installed on the connecting plate, the connecting plate is slidably penetrated through the containing groove, and the connecting plate is fixedly connected with the supporting leg.

Citation Information

Patent Citations

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