Processing device for fermenting and preparing broiler feed

This processing device for broiler feed fermentation preparation, which integrates mixing, inoculation, and transfer processes into an automated process, solves the problem of uneven addition of fermenting agents, achieves uniform material mixing and fermentation stability, reduces labor costs and material losses, and is suitable for large-scale production in the broiler farming industry.

CN121362633AInactive Publication Date: 2026-01-20DEZHOU KAILIN ECOLOGICAL AGRICULTURE TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202511751097.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-26
Publication Date
2026-01-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the current broiler feed fermentation process, the fermentation agent is added unevenly, resulting in unstable fermentation effect and complicated operation, which affects the efficiency of large-scale farming and increases labor costs and material loss.

Method used

Design a processing device for broiler feed fermentation preparation, integrating mixing, inoculum addition and transfer processes into an automated process. Utilize mixing and stirring components, a feeding mechanism and a transfer mechanism to achieve uniform mixing of materials and uniform spraying of fermentation agent, reducing manual intervention.

Benefits of technology

It improved fermentation stability, reduced material loss and labor costs, enabled continuous production, and enhanced the automation level of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of feed fermentation preparation, and particularly relates to a processing device for broiler feed fermentation preparation, which comprises a frame body, a mixing and stirring assembly is arranged above the frame body, a discharging mechanism is arranged below the shell, a transverse moving assembly is arranged on the frame body below the mixing and stirring assembly, and a feeding mechanism is arranged below the transverse moving assembly. A material containing mechanism integrating the material containing function and the inclined material guiding function is arranged at the moving end of the transverse moving assembly, a linkage driving assembly is arranged at the end of the transverse moving assembly, and a material spraying mechanism used for adding bacteria is arranged above the outer side of the frame body; the outer side of the frame body is provided with a transferring mechanism used for receiving and lifting materials to achieve the transferring function. According to the invention, uniform mixing of materials is realized, a leavening agent is uniformly spread on the materials, mixing, bacterium adding and transferring processes are integrated into an automatic process, continuous production is realized, the automation degree of the device is improved, and the use requirements are met.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of feed fermentation preparation, and particularly relates to a processing device for fermented preparation of broiler feed. BACKGROUND

[0002] In the broiler breeding industry, feed fermentation technology improves the nutritional value of feed through microbial transformation. The core steps of chicken feed fermentation include: raw material preparation and proportioning, mixing and stirring, adding a fermenting agent, adjusting moisture, and sealing fermentation. The fermentation processes of different raw materials (such as concentrate, green forage, and auxiliary materials) are slightly different, but the basic principles are the same. The processing steps are specifically described as follows: raw material preparation and proportioning is to select appropriate raw materials according to the growth stage of the chicken and the type of fermentation and determine the proportion; mixing and stirring is to mix and evenly distribute the weighed raw materials (such as corn flour, soybean meal, and wheat bran); adding a fermenting agent is a key step in feed production, which is to mix the fermenting agent (such as probiotics) with a small amount of sugar water or warm water to activate it, and then evenly spray it onto the mixed feed; adjusting moisture is to add water to the feed to a moisture content of about 40% (i.e. a handful of feed can be kneaded into a ball, and the ball can be dispersed after being released, without dripping water), and moisture control is one of the key factors for successful fermentation; sealing fermentation is to put the feed with adjusted moisture into a barrel, a jar, or a special fermentation bag, to compact each layer as much as possible to expel air, and then to seal it strictly, and to wait for the successful fermentation of the feed. In the prior art, the feed fermentation process is usually operated in steps, especially the process of adding a fermenting agent: the mixed and stirred material is first discharged, then a fermenting agent is manually added to the mixed material, and finally the material is transported to a fermentation tank. This processing process is time-consuming and labor-intensive, and in terms of different batches of discharged materials, the addition of the fermenting agent is not only affected by the amount of the discharged material, but also affected by manual factors, which may cause uneven addition of the fermenting agent, such as too high or too low local concentration of the fermenting agent, which may affect the fermentation effect and the quality of the feed to some extent. In addition, the step-by-step transportation requires additional containers and manual intervention, which not only complicates the operation, but also easily causes the material to spill, reducing the continuity of the production process. These limitations restrict the improvement of the benefits of large-scale breeding. SUMMARY

[0003] The present application aims to solve the above technical problems in the process of feed fermentation preparation, and provides a processing device for fermented preparation of broiler feed, which is reasonable in design, simple in structure, convenient in processing, and can realize uniform mixing of the material and uniform spreading of the fermenting agent on the mixed material, thereby improving the stability of the feed fermentation. On the other hand, the device can integrate the mixing, bacteria addition, and transportation processes into an automatic process to realize continuous production, reduce the intermediate manual intervention, save labor costs, reduce material loss, improve the automation degree of the device, and meet the use requirements.

[0004] In order to achieve the above object, the technical scheme adopted by the present application is a processing device for fermentation preparation of broiler feed, comprising a frame, a mixing and stirring assembly is arranged above the frame, the mixing and stirring assembly comprises a shell, a stirring mechanism is arranged in the shell, a discharging mechanism is arranged below the shell, a transverse moving assembly is arranged on the frame below the mixing and stirring assembly, a material containing mechanism which integrates the functions of material containing and inclined material guiding is arranged at the moving end of the transverse moving assembly, the material containing mechanism is provided with two groups, and reciprocating material receiving action is realized by the transverse moving assembly, a linkage driving assembly is arranged at the end of the transverse moving assembly, a material spraying mechanism for adding bacteria is arranged above the outer side of the frame, and a transfer mechanism for receiving and lifting materials to realize the transfer function is arranged on the outer side of the frame.

[0005] Preferably, the stirring mechanism comprises a stabilizing frame arranged on the frame, a bidirectional rotating assembly is arranged on one side of the stabilizing frame, the bidirectional rotating assembly comprises a mounting plate arranged on one side of the stabilizing frame, a first bevel gear is arranged on the lower side of the mounting plate, an ear seat is arranged on the mounting plate, a second bevel gear and a third bevel gear are respectively arranged on the front and rear sides of the ear seat, a drive sleeve rod is arranged on one side of the second bevel gear and connected to the outer side of the shell, a hollow rod is arranged in the third bevel gear and penetrates into the shell, and a stirring piece is arranged on the outer side of the hollow rod.

[0006] Preferably, the stirring piece comprises a sleeve arranged outside the hollow rod, a hollow support rod is arranged on the outer side of the sleeve, a plurality of stirring blades arranged in a spiral design are arranged on the outer end of the hollow support rod, and a water spraying hole is arranged on the outer side of the hollow support rod.

[0007] Preferably, the discharging mechanism comprises a cover body arranged in a rectangular shape, a main shaft is arranged at the geometric center in the cover body, a turnover plate is arranged on the outer side of the main shaft, a first driven shaft and a second driven shaft are respectively arranged in the cover body on both sides of the main shaft, a first turnover plate is arranged on the outer side of the first driven shaft and above one side of the turnover plate, a second turnover plate is arranged on the outer side of the second driven shaft and below the other side of the turnover plate, a first key-shaped plate is arranged on the outer side of the main shaft, a second key-shaped plate is arranged on the outer side of the first driven shaft, a third key-shaped plate is arranged on the outer side of the second driven shaft, a connecting rod is arranged on the outer side above the second key-shaped plate and the third key-shaped plate and rotatably connected to the outer side of the first key-shaped plate.

[0008] As a preferred, the transverse moving assembly comprises a transverse driving assembly, the inner side of the transverse driving assembly is provided with a transverse moving mechanism, the transverse driving assembly comprises a stand, a horizontal plate is arranged between the two stands, the inner side of the horizontal plate is provided with a limiting slide bar, the limiting slide bar is provided with a sliding block, the sliding block is provided with two groups, and is connected with two groups of transverse moving mechanisms respectively, the outer side of the supporting plate located at the geometric center of the horizontal plate is provided with a supporting plate, the outer side of the supporting plate is provided with a driving motor, the driving end of the driving motor is provided with a driving wheel, the supporting plate located at the two sides of the driving wheel is provided with a driven wheel, one side of the stand is provided with a rotating wheel, the outer side of the rotating wheel is provided with a synchronous belt, and the synchronous belt is wound from below the driving wheel to above the driven wheel and is wound on the rotating wheel, the sliding block is provided with a connecting plate, and is connected with the synchronous belt.

[0009] As a preferred, the transverse moving mechanism comprises a moving frame designed in an L shape, and is connected with the sliding block, the lower part in the moving frame is provided with a horizontal moving wheel arranged horizontally, the upper part in the moving frame is provided with a vertical moving wheel arranged vertically, and the frame body is provided with a track designed in an L shape and abutting against the horizontal moving wheel and the vertical moving wheel.

[0010] As a preferred, the material containing mechanism comprises a connecting frame connected with the moving frame and designed in an L shape, the upper part of the connecting frame is provided with a material containing bin capable of rotating relative to the connecting frame, the side of the material containing bin away from the material discharging mechanism is provided with a discharging cover designed in a closing-in shape, the lower part of one side of the connecting frame is provided with a driving cylinder, and the output end of the driving cylinder is rotatably connected with one end of the material containing bin.

[0011] As a preferred, the material discharging mechanism comprises a mounting frame connected with the frame body, a rotating frame is arranged between the two mounting frames, a driving shaft is arranged in the mounting frame and penetrates through the rotating frame, vertical slides are arranged at the two ends of one side of the rotating frame, vertical sliding blocks are arranged on the vertical slides, horizontal slides are arranged on the rotating frame between the two groups of vertical slides, horizontal sliding blocks are arranged on the horizontal slides, lifting plates are arranged on the front sides of the vertical sliding blocks, an electric motor is arranged on the upper part of one side of the rotating frame, a ball screw is arranged at the output end of the electric motor, a screw nut is arranged on the outer side of the ball screw, a connecting seat is arranged on the screw nut and connected with one side of the lifting plate, a plurality of limiting holes arranged in a fan shape are uniformly arranged in the lifting plate, the limiting holes are arranged in an outward expanding shape from top to bottom, moving rods designed in an L shape are arranged on the horizontal sliding blocks, limiting rods are arranged on the outer sides of the moving rods and matched with the limiting holes, a pipe is arranged on the inner side of the rotating frame, and a nozzle is arranged on one side of the moving rod.

[0012] As preferred, the linkage driving assembly comprises a driving gear coaxially arranged with the rotating wheel, the outer side of the driving shaft is provided with a transmission gear, and the driving gear and the transmission gear are provided with a transmission chain.

[0013] As preferred, the transferring mechanism comprises a supporting frame, one side of the supporting frame is provided with a sliding frame, the sliding frame and the supporting frame are provided with a limiting frame arranged in an obtuse angle, the limiting frame is provided with a limiting groove with a T-shaped cross section, the limiting groove is provided with a pulley, two pulleys are provided with a connecting rod, the connecting rod is provided with a transferring bin with a trapezoidal table shape, the transferring bin is provided with a sliding rod at the lower side, and both ends of the sliding rod are arranged in the sliding frame, and the upper and lower ends of the sliding frame are both provided with a driving gear.

[0014] Compared with the prior art, the application has the advantages and positive effects that: The utility model provides a kind of broiler feed fermentation preparation with processing device, utilize the mixing stirring subassembly set up, for the material added to shell, by the reverse rotation operation of shell and stirring mechanism, material in shell can be overturned on one hand, material in shell can be agitated on the other hand, sufficiently improve the mixing effect between material, utilize the discharge mechanism set up, when discharge mechanism is placed in upper and is in open state, the convenient input of multiple materials can be realized, when discharge mechanism is placed in lower and is in open state, material in shell can be discharged to material holding mechanism, facilitate the subsequent export of material, utilize the material holding mechanism set up, it is followed by the material mixed in shell, and material is exported to outside using inclined mode, simultaneously, under the driving of transverse moving subassembly, material holding mechanism can be conveniently switched at discharge mechanism and near transfer mechanism position, realize workpiece material conveying, guarantee the sustainable production of processing work, meet the use demand, utilize the intercommunication drive subassembly set up, it is followed by the operating driving power of transverse moving subassembly, and act on material spraying mechanism, drive material spraying mechanism to different positions, avoid interference of device equipment in the process of operation, greatly improve the use functionality of device equipment, utilize the material spraying mechanism set up, on the one hand, the position of spray head can be adjusted to the specification of material holding mechanism, to ensure the uniformity of fermentation agent spraying, on the other hand, rely on the pouring process of material holding mechanism to cooperate with spraying process, so that fermentation agent can be more conveniently and uniformly sprayed into mixed material, to provide convenient conditions for subsequent fermentation of material, utilize the transfer mechanism set up, it is followed by the material of spraying fermentation agent, and material is poured into external fermentation tank using lifting and overturning mode, on the one hand, can reduce manual participation, reduce the complexity of material transfer, on the other hand, can realize the sustainable processing of feed processing, guarantee work progress;The device is rationally designed, simple in structure, convenient to process, on the one hand, realizes uniform mixing of material, and fermentation agent can be uniformly spread on mixed material, to improve feed fermentation stability, on the other hand, mixing, inoculation and transfer process can be integrated into automatic process, to realize continuous production, reduce intermediate manual intervention link, save labor cost, reduce material loss, improve the degree of automation of device equipment, meet the use demand. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creating labor.

[0016] Figure 1 It is a kind of broiler feed fermentation preparation with processing device structure schematic view. Figure 2 Structure front view of a processing device for fermentation preparation of broiler feed; Figure 3 Structure side view of a processing device for fermentation preparation of broiler feed; Figure 4 Schematic diagram of internal structure of mixing and stirring assembly; Figure 5 Schematic diagram of structure of material holding mechanism setting position; Figure 6 Schematic diagram of structure of transverse driving assembly; Figure 7 Schematic diagram of structure of discharging mechanism; Figure 8 Schematic diagram of partial internal structure of material sprinkling mechanism; Figure 9 Schematic diagram of structure of material sprinkling mechanism from another perspective; Figure 10 Schematic diagram of structure of transverse moving mechanism; Figure 11 Schematic diagram of structure of transfer mechanism (tilting material state); Figure 12 Schematic diagram of structure of Figure 11 Enlarged schematic diagram of partial structure of structure at A in the middle; In the above figures, 1, frame; 2, shell; 3, stirring mechanism; 31, stabilizing frame; 32, mounting plate; 33, first bevel gear; 34, ear seat; 35, second bevel gear; 36, third bevel gear; 37, drive sleeve rod; 38, hollow rod; 39, stirring piece; 391, sleeve; 392, hollow strut; 393, stirring blade; 394, water injection hole; 4, discharging mechanism; 41, cover body; 42, main shaft; 43, turnover plate; 44, first driven shaft; 45, second driven shaft; 46, first turnover plate; 47, second turnover plate; 48, first key-shaped plate; 49, second key-shaped plate; 410, third key-shaped plate; 411, connecting rod; 5, transverse driving assembly; 51, stand; 52, cross plate; 53, limiting slide bar; 54, sliding block; 55, support plate; 56, driving motor; 57, driving wheel; 58, driven wheel; 59, rotating wheel; 510, synchronous belt; 511, connecting plate; 6, transverse moving mechanism; 61, moving frame; 62, horizontal moving wheel; 63, vertical moving wheel; 64, track; 7, containing mechanism; 71, connecting frame; 72, containing bin; 73, discharging cover; 74, driving cylinder; 8, linkage driving assembly; 81, driving gear; 82, transmission gear; 83, transmission chain; 9, material spraying mechanism; 91, mounting frame; 92, rotating frame; 93, drive shaft; 94, vertical slide bar; 95, vertical sliding block; 96, horizontal slide bar; 97, horizontal sliding block; 98, lifting plate; 981, limiting hole; 99, motor; 910, screw nut; 911, connecting seat; 912, moving rod; 913, limiting rod; 914, pipe integration; 915, spray head; 916, ball screw; 10, transfer mechanism; 101, support frame; 102, sliding frame; 103, limiting frame; 1031, limiting groove; 104, pulley; 105, connecting rod; 106, transfer bin; 107, slide rod; 108, driving gear. DETAILED DESCRIPTION

[0017] In order to enable a more complete understanding of the above-mentioned objects, features and advantages of the present application, the present application will be further described below with reference to the drawings and examples. It should be noted that the examples of the present application and the features in the examples can be combined with each other without conflict.

[0018] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, and therefore, the present application is not limited to the specific examples disclosed in the following description.

[0019] Examples, such as Figures 1-12As shown, a broiler feed fermentation preparation processing device, including a frame body 1, the upper part of the frame body 1 is provided with a mixing and stirring assembly, the mixing and stirring assembly includes a shell 2, the shell 2 is provided with a stirring mechanism 3, for the material added to the shell 2, by means of the reverse rotation operation of the shell 2 and the stirring mechanism 3, on the one hand, the material in the shell 2 can be turned over, on the other hand, the material in the shell 2 can be stirred, which fully improves the mixing effect between the materials, the lower part of the shell 2 is provided with a discharge mechanism 4, when the discharge mechanism 4 is placed above and in the open state, the convenient input of various materials can be realized, when the discharge mechanism 4 is placed below and in the open state, the material in the shell 2 can be discharged onto the material containing mechanism 7, which provides convenient conditions for the subsequent discharge of the material, the frame body 1 below the mixing and stirring assembly is provided with a transverse moving assembly, the transverse moving assembly is used to provide driving power, so that the two groups of material containing mechanisms 7 can be switched at different positions, which guarantees the sustainable production and processing work, the moving end of the transverse moving assembly is provided with a material containing mechanism 7 which integrates the material containing and inclined material guiding functions, the material containing mechanism 7 is provided with two groups, and with the reciprocating material receiving action of the transverse moving assembly, the material containing mechanism 7 receives the mixed material in the shell 2, and uses the inclined way to guide the material out, at the same time, under the driving of the transverse moving assembly, the material containing mechanism 7 can be conveniently converted at the positions of the discharge mechanism 4 and the transfer mechanism 10 close to the transfer mechanism 10, which realizes the workpiece material conveying and guarantees the sustainable production and processing work, meets the use requirement, the end of the transverse moving assembly is provided with a linkage driving assembly 8, which receives the operation driving power of the transverse moving assembly and acts on the material spraying mechanism 9, drives the material spraying mechanism 9 to different positions, avoids the interference of the device during operation, greatly improves the use functionality of the device, the outside upper part of the frame body 1 is provided with a material spraying mechanism 9 for adding bacteria, which on the one hand can adjust the position of the spray head 915 to adapt to the specifications of the material containing mechanism 7, to ensure the uniformity of the fermentation agent spraying, on the other hand, relies on the pouring process of the material containing mechanism 7 to cooperate with the spraying process, so that the fermentation agent can be more conveniently and uniformly sprayed into the mixed material, which provides convenient conditions for the subsequent fermentation of the material, the outside of the frame body 1 is provided with a transfer mechanism 10 for receiving and lifting the material to realize the transfer function, which receives the material sprayed with the fermentation agent and uses the lifting and overturning way to pour the material into the external fermentation tank, on the one hand, it can reduce the manual participation and reduce the complexity of material transfer, on the other hand, it can realize the sustainable processing of feed processing and guarantee the work progress; The above process: by using the established mixing stirring assembly, for the material added to the shell 2, by the reverse rotation operation of the shell 2 and the stirring mechanism 3, on the one hand, the material in the shell 2 can be turned over, on the other hand, the material in the shell 2 can be stirred, which can improve the mixing effect between the materials, by using the established discharge mechanism 4, when the discharge mechanism 4 is placed above and in the open state, the convenient input of various materials can be realized, when the discharge mechanism 4 is placed below and in the open state, the material in the shell 2 can be discharged to the material containing mechanism 7, which provides convenient conditions for the subsequent discharge of the material, by using the established material containing mechanism 7, which receives the mixed material in the shell 2, and uses the inclined way to guide the material outward, at the same time, under the action of the transverse moving assembly, the material containing mechanism 7 can be conveniently converted at the position of the discharge mechanism 4 and the transfer mechanism 10, which realizes the conveying of the workpiece material, guarantees the sustainable production and processing, meets the use requirement, by using the established communication driving assembly, which receives the driving power of the transverse moving assembly and acts on the material spraying mechanism 9, drives the material spraying mechanism 9 to different positions, avoids the interference of the device during operation, greatly improves the use functionality of the device, by using the established material spraying mechanism 9, on the one hand, the specifications of the material containing mechanism 7 can be adjusted to ensure the uniformity of the fermentation agent spraying, on the other hand, the pouring process of the material containing mechanism 7 is matched with the spraying process, so that the fermentation agent can be more conveniently and uniformly sprayed into the mixed material, which provides convenient conditions for the subsequent fermentation of the material, by using the established transfer mechanism 10, which receives the material sprayed with the fermentation agent and uses the lifting and overturning way to pour the material into the external fermentation tank, on the one hand, it can reduce the manual participation and the complexity of material transfer, on the other hand, it can realize the sustainable processing of feed processing and guarantee the work progress; the device has the advantages of reasonable design, simple structure, convenient processing, on the one hand, it can realize uniform mixing of the material, and the fermentation agent can be uniformly spread on the mixed material to improve the stability of the feed fermentation, on the other hand, it can integrate the mixing, inoculation and transfer processes into an automatic process to realize continuous production, reduce the intermediate manual intervention link, save labor cost, reduce material loss, improve the automation degree of the device, meet the use requirement.

[0020] In order to realize the uniform mixing of materials, especially the mixing effect between materials can be improved, the stirring mechanism 3 comprises a stabilizing frame 31 arranged on the frame body 1, a bidirectional rotating assembly is arranged on one side of the stabilizing frame 31, the bidirectional rotating assembly comprises a mounting plate 32 arranged on one side of the stabilizing frame 31, a first bevel gear 33 is arranged on the lower side of the mounting plate 32, an ear seat 34 is arranged on the mounting plate 32, a second bevel gear 35 and a third bevel gear 36 are arranged on the front and rear sides of the ear seat 34 respectively, a drive sleeve rod 37 is arranged on one side of the second bevel gear 35 and connected with the outer side of the shell 2, a hollow rod 38 is arranged in the third bevel gear 36 and penetrates into the shell 2, a stirring part 39 is arranged on the outer side of the hollow rod 38, and the specific description is as follows: a motor can be arranged below the mounting plate 32 for providing driving power to the first bevel gear 33, the outer side of the first bevel gear 33 is engaged with the second bevel gear 35 and the third bevel gear 36 respectively, and for the hollow rod 38 arranged, a bearing seat is arranged above the stabilizing frame 31 to improve the stability of the hollow rod 38, and the hollow rod 38 can rotate with the third bevel gear 36, the second bevel gear 35 is fixedly connected with the drive sleeve rod 37 and can rotate with the first bevel gear 33 when receiving the driving power of the first bevel gear 33, the drive sleeve rod 37 penetrates the third bevel gear 36 and is arranged in the hollow rod 38 and extends out of the hollow rod 38 and into the shell 2, an axle sleeve is arranged at the connection between the shell 2 and the drive sleeve rod 37 to ensure the smoothness during the operation of the equipment, and further, the bidirectional rotating assembly can drive the shell 2 to rotate on one hand and drive the stirring part 39 to rotate on the other hand, and the rotating directions of the shell 2 and the stirring part 39 are opposite, so that the materials in the shell 2 can be fully stirred and uniformly mixed, and the forming quality of the materials is greatly improved.

[0021] In order to ensure the smooth progress of the stirring work, the stirring part 39 comprises a sleeve 391 arranged outside the hollow rod 38, the outer side of the sleeve 391 is provided with hollow struts 392, the outer ends of the plurality of hollow struts 392 are provided with stirring blades 393 arranged in a spiral shape, the outer side of the hollow struts 392 is provided with water spray holes 394, and the specific description is that a through hole (not shown in the figure) is formed in the driving sleeve rod 37 at the connection position of the driving sleeve rod 37 and the sleeve 391, and the hollow design in the hollow struts 392 can be communicated with the driving sleeve 391. In use: control the operation of the bidirectional rotating assembly in the stirring mechanism 3, on the one hand, make the shell 2 rotate, on the other hand, make the stirring part 39 rotate, the rotating directions of the two are opposite, which ensures the uniform mixing of the materials in the shell 2 and guarantees the mixing effect of the materials. Further, when the materials in the device are uniformly mixed, the step of adjusting the moisture content can be pre-positioned, especially by connecting the driving sleeve rod 37 with the external water source, and conveying the water source from the driving sleeve rod 37 to the stirring part 39, the water source is communicated with the hollow struts 392 through the sleeve 391, and finally the water source is sprayed into the shell 2 through the water spray holes 394, so that the mixed materials can pre-complete the step of adjusting the moisture content. When the moisture adjusting work is completed, adjust the discharging mechanism 4 to the lowermost position, wait for the discharging mechanism 4 to open and discharge the materials in the shell 2 to the material containing mechanism 7, which provides a convenient condition for the subsequent fermentation work.

[0022] In order to realize the convenient export of the material in the mixing assembly, the discharge mechanism 4 comprises a cover body 41 designed in a rectangular shape, a main shaft 42 is arranged at the geometric center in the cover body 41, a turnover plate 43 is arranged outside the main shaft 42, a first driven shaft 44 and a second driven shaft 45 are respectively arranged in the cover body 41 on both sides of the main shaft 42, a first turnover plate 46 is arranged outside the first driven shaft 44 and above one side of the turnover plate 43, a second turnover plate 47 is arranged outside the second driven shaft 45 and below the other side of the turnover plate 43, a first key-shaped plate 48 is arranged outside the main shaft 42, a second key-shaped plate 49 is arranged outside the first driven shaft 44, a third key-shaped plate 410 is arranged outside the second driven shaft 45, a connecting rod 411 is arranged outside the upper side of the second key-shaped plate 49 and the third key-shaped plate 410 and is rotationally connected with the outside of the first key-shaped plate 48, and the specific description is that when the material is exported, the turnover plate 43 arranged can rotate counterclockwise with the main shaft 42, the first turnover plate 46 arranged can rotate obliquely upward and outward with the first driven shaft 44, the second turnover plate 47 arranged can rotate obliquely downward and outward with the second driven shaft 45, the material in the shell 2 can be exported downward and fall in the material containing mechanism 7, and the above-mentioned discharge mode can make the material evenly spread on the material containing mechanism 7, provide a convenient condition for the subsequent spraying of the fermentation agent, one end of the connecting rod 411 is rotationally connected with the upper side of the second key-shaped plate 49 and the third key-shaped plate 410, respectively, and the end of the connecting rod 411 close to the first key-shaped plate 48 is also rotationally connected with the first key-shaped plate 48, and in the use process, a cylinder can be arranged on one side of the shell 2, the elongation of the cylinder acts on the first key-shaped plate 48, the first key-shaped plate 48 can rotate with the main shaft 42, the connecting rod 411 can act on the second key-shaped plate 49 and the third key-shaped plate 410 to make the turnover plate 43, the first turnover plate 46 and the second turnover plate 47 rotate together, ensure that the material in the shell 2 can be smoothly exported, especially fall on the material containing mechanism 7, ensure the smooth progress of the subsequent processing work, and improve the use functionality of the device.

[0023] In order to ensure that the container 7 can be in the horizontal direction to achieve smooth movement, to complete the work of receiving and feeding, the transverse moving assembly includes a transverse drive assembly 5, the inner side of the transverse drive assembly 5 is provided with a transverse moving mechanism 6, wherein the transverse drive assembly 5 provides driving power for the movement of the transverse moving assembly, and the transverse moving mechanism 6 is used for limiting the movement of the transverse moving assembly in the horizontal direction, so as to ensure the smoothness during operation. Further, the transverse drive assembly 5 includes a stand 51, two stands 51 are provided with a transverse plate 52, the inner side of the transverse plate 52 is provided with a limiting slide strip 53, the limiting slide strip 53 is provided with a sliding block 54, the sliding block 54 is provided with two groups, and is connected with two groups of transverse moving mechanisms 6, the outer side of the geometric center of the transverse plate 52 is provided with a supporting plate 55, the outer side of the supporting plate 55 is provided with a driving motor 56, the driving end of the driving motor 56 is provided with a driving wheel 57, the supporting plate 55 on both sides of the driving wheel 57 is provided with a driven wheel 58, one side of the stand 51 is provided with a rotating wheel 59, the outer side of the rotating wheel 59 is provided with a synchronous belt 510, and the synchronous belt 510 is wound from below the driving wheel 57 to above the driven wheel 58 and is wound on the rotating wheel 59, the sliding block 54 is provided with a connecting plate 511, and is connected with the synchronous belt 510. The specific description is as follows: the driving wheel 57 is arranged above the synchronous belt 510, the two driven wheels 58 are arranged on both sides of the driving wheel 57, and the synchronous belt 510 is tensioned, the driving motor 56 is controlled to drive the driving wheel 57 to rotate and act on the synchronous belt 510, so that the synchronous belt 510 is conveyed, and the rotating wheels 59 on both sides are also rotated with the synchronous belt 510, the rotating wheel 59 acts on the linkage driving assembly 8 to adjust the position of the spreading mechanism 9. For the sliding block 54 arranged on the limiting slide strip 53, a fixed plate is arranged on the sliding block 54 and connected with the synchronous belt 510. When the synchronous belt 510 is conveyed, it can act on the sliding block 54 to move the sliding block 54 relative to the limiting slide strip 53, and then act on the transverse moving assembly to provide a convenient condition for adjusting the position of the container 7.

[0024] In order to ensure the smoothness of the lateral movement component during operation, the lateral movement mechanism 6 comprises a moving frame 61 designed in L shape, which is connected with the sliding block 54. The lower part of the moving frame 61 is provided with a horizontal moving wheel 62 arranged horizontally, and the upper part of the moving frame 61 is provided with a vertical moving wheel 63 arranged vertically. The rack 1 is provided with a track 64 designed in L shape, which abuts against the horizontal moving wheel 62 and the vertical moving wheel 63. Specifically, the horizontal moving wheel 62 abuts against the outer side of the track 64, and the vertical moving wheel 63 is arranged above the track 64. During use, the moving frame 61 is connected with the sliding block 54 of the lateral driving component 5, and the movement of the moving frame 61 in the horizontal direction can realize the convenient translocation of the position of the material containing mechanism 7, so as to ensure the continuity of the production and processing work and meet the use requirements.

[0025] In order to realize the convenient receiving of the material and make it be smoothly poured out, the material containing mechanism 7 comprises a connecting frame 71 connected with the moving frame 61 and designed in L shape. The upper part of the connecting frame 71 is provided with a material containing bin 72 which can be rotationally adjusted relative to the connecting frame 71. The side of the material containing bin 72 away from the discharging mechanism 4 is provided with a discharging cover 73 designed in a closing shape. The side of the connecting frame 71 is provided with a driving cylinder 74 below. The output end of the driving cylinder 74 is rotationally connected with one end of the material containing bin 72. Specifically, the connecting frame 71 is arranged between the two lateral movement mechanisms 6 on the same side, so that it can move in the horizontal direction under the operation of the lateral movement mechanism 6. The lateral movement mechanism 6 moves under the driving of the lateral driving component 5. When the material containing mechanism 7 moves below the discharging mechanism 4, the material containing bin 72 receives the falling material. Then the lateral driving component 5 is controlled to operate and drive the lateral movement mechanism 6 to move the side of the rack 1. At this time, the other group of material containing mechanisms 7 will move below the discharging mechanism 4 to wait for the receiving of the material. When the previous group of material containing mechanisms 7 moves to the position close to the transfer mechanism 10, the driving cylinder 74 is controlled to operate, so that it is elongated to drive the material containing bin 72 to rotate relative to the connecting frame 71. When the material containing bin 72 rotates to the state that the material can be inclined to be discharged, the material spreading mechanism 9 operates. With the falling of the material, the nozzle 915 of the material spreading mechanism 9 sprays the leavening agent on the material, so as to ensure that the leavening agent can be uniformly sprayed. At the same time, the nozzle 915 can be opened and closed at a certain distance to adapt to the specification size of the material containing bin 72, so as to ensure the comprehensiveness of the leavening agent spraying. In addition, with the falling process of the material in the material containing bin 72 and the spraying of the leavening agent on the material by the material spreading mechanism 9, the material forming quality is ensured. Further, in order to make the material in the material containing bin 72 pour more completely, a vibrator can be placed on the connecting frame 71 below the material containing bin 72. The vibration of the vibrator can smoothly guide the material in the material containing bin 72 to be discharged through the concentrated discharge function of the discharging cover 73, which greatly improves the rationality of the device and meets the use requirements.

[0026] In order to realize the further processing of the mixed stirring processing material, especially make the leavening material uniform spraying on the material, to ensure the smooth progress of the subsequent fermentation work, the material spraying mechanism 9 includes the mounting frame 91 connected with the frame body 1, the rotating frame 92 is arranged between the two mounting frames 91, the driving shaft 93 is arranged in the mounting frame 91 and penetrates the rotating frame 92, the vertical sliding bar 94 is arranged on one side of the rotating frame 92, the vertical sliding block 95 is arranged on the vertical sliding bar 94, the horizontal sliding bar 96 is arranged on the rotating frame 92 between the two vertical sliding bars 94, the horizontal sliding block 97 is arranged on the horizontal sliding bar 96, the horizontal sliding bar 96 is arranged in two groups, the horizontal sliding block 97 is arranged on the upper and lower horizontal sliding bars 96 in staggered manner and is connected with the moving frame 61, that is, the adjacent two horizontal sliding blocks 97 are arranged on the upper and lower sliding bars in staggered manner, which can ensure the smoothness of the movement of the moving frame 61 and realize the lightweight arrangement of the device, the front side of the vertical sliding block 95 is provided with the lifting plate 98, the side of the rotating frame 92 is provided with the motor 99, the output end of the motor 99 is provided with the ball screw 916, the outer side of the ball screw 916 is provided with the screw nut 910, the screw nut 910 is provided with the connecting seat 911 and is connected with one side of the lifting plate 98, the motor 99 is arranged, the running is controlled, the ball screw 916 is driven to run, the rotation of the ball screw 916 drives the screw nut 910 to move relative to the rotating plate, and then drives the lifting plate 98 to move, the limiting hole 981 in the lifting plate 98 is matched with the limiting rod 913 to make the moving frame 61 move relative to the horizontal sliding bar 96, so that the nozzle 915 is at different positions, which provides convenient conditions for uniform spraying of the leavening agent and meets the use requirement, a plurality of limiting holes 981 arranged in fan shape are uniformly arranged in the lifting plate 98, the limiting holes 981 are arranged in outward expanding shape from top to bottom, further, the limiting hole 981 in the middle position is vertically arranged, the limiting holes 981 on the left and right sides are mirror arranged about the limiting hole 981 in the middle, the limiting holes 981 on the two sides are inclinedly arranged, the inclination angle gradually increases from the middle to the outer side, so that the movement adjustment of the lifting plate 98 can drive the moving rod 912 to conveniently open and close, meet different use requirements, the moving rod 912 with L-shaped design is arranged on the horizontal sliding block 97, the limiting rod 913 is arranged on the outer side of the moving rod 912 and is matched with the limiting hole 981, the pipe integration 914 is arranged on the inner side of the rotating frame 92, the pipe integration 914 is integrated with a plurality of connecting pipes and is communicated with the external leavening agent, the nozzle 915 is arranged on one side of the moving rod 912, the single pipe in the pipe integration 914 is connected with the single nozzle 915 by the pipe, when the nozzle 915 is adjusted with the moving rod 912, the uniform spraying of the leavening agent can be ensured, and the driving shaft 93 is fixedly connected with the transmission gear 82 in the linkage driving assembly 8.When the transmission gear 82 is driven by the driving power, the driving shaft 93 is driven to rotate together with the transmission gear 82, the linkage driving assembly 8 is driven by the horizontal moving mechanism 6 to drive the spreading mechanism 9, the spreading mechanism 9 is adjusted to the appropriate position, then the control motor 99 is operated to drive the ball screw 916 to rotate and convert into the movement of the lifting plate 98, especially to move the lifting plate 98 away from the position of the nozzle 915, so that with the movement of the lifting plate 98, the limiting rod 913 moves relative to the limiting hole 981 under the setting of the limiting hole 981 in the lifting plate 98, and then drives the moving rod 912 to move outward, thereby driving the nozzle 915 to be at different positions, ensuring the comprehensiveness and uniformity of subsequent spraying, and the positions of each moving rod 912 and nozzle 915 can be freely adjusted according to different specifications of the material containing mechanism 7, which is more suitable for the material containing mechanism 7 and ensures the work process.

[0027] In order to improve the use function of the device, the linkage driving assembly 8 includes a driving gear 81 coaxially arranged with the rotating wheel 59, the outer side of the driving shaft 93 is provided with a transmission gear 82, and the driving gear 81 and the transmission gear 82 are provided with a transmission chain 83, which is specifically described as follows: considering that the material containing mechanism 7 is arranged in an inclined manner for discharging, and the spreading mechanism 9 is arranged vertically, which will affect the effect of the material, if arranged in an inclined manner, it will affect the operation of the subsequent transfer mechanism 10, therefore, the linkage driving assembly 8 is arranged to be linked with the operation of the horizontal moving mechanism 6, when the material containing mechanism 7 contains material and moves towards the position close to the transfer mechanism 10, one side of the rotating wheel 59 in the horizontal moving mechanism 6, taking the left front rotating wheel 59 as an example, is driven to move left by the operation of the horizontal moving mechanism 6, in this process, the synchronous belt 510 is driven to convey left, and the rotating wheel 59 is driven to rotate counterclockwise, the rotating wheel 59 rotates together with the driving gear 81, and drives the transmission chain 83 to drive the transmission gear 82 to rotate, the transmission gear 82 is fixedly connected with the driving shaft 93, so that the driving shaft 93 is also driven to rotate counterclockwise, thereby driving the rotating frame 92 to rotate, so as to adjust the position of the nozzle 915, it is necessary to further explain that according to the setting specifications of the device components and the distance from the geometric center position of the frame body 1 to the end of the frame body 1, the driving gear 81 and the transmission gear 82 are reasonably adjusted, especially when the horizontal moving mechanism 6 moves to the farthest position of the frame body 1, the spreading mechanism 9 is adjusted to the position when the material containing mechanism 7 discharges in an inclined manner, so as to ensure that the spreading mechanism 9 can correspond to the material containing mechanism 7, and ensure that the leavening agent can be uniformly spread on the material when the subsequent material is discharged, which ensures the forming quality of the material and provides convenient conditions for the subsequent fermentation process, and meets the use requirements.

[0028] In order to realize the convenient receiving of the processed material, and transport it to the subsequent processing work, in order to guarantee the continuity in the production and processing process, the transport mechanism 10 includes a support frame 101, one side of the support frame 101 is provided with a sliding frame 102, the sliding frame 102 and the support frame 101 are provided with a limiting frame 103 arranged in an obtuse angle, the limiting frame 103 is provided with a limiting groove 1031 with a T-shaped cross section, the limiting groove 1031 is provided with a pulley 104, the two pulleys 104 are provided with a connecting rod 105, the connecting rod 105 is provided with a trapezoidal table-shaped transport bin 106, the lower side of the rotating bin is provided with a sliding rod 107, and both ends are placed in the sliding frame 102, wherein the sliding frame 102 is provided with a sliding groove corresponding to the sliding rod 107, which provides a convenient condition for the smooth operation of the transport bin 106, and it needs to be further explained that: the limiting frame 103 and the sliding frame 102 are staggered, the former limits the moving direction of the pulley 104, the sliding frame 102 limits the moving direction of the sliding rod 107, and when the pulley 104 moves to the horizontal end of the limiting frame 103, the sliding rod 107 continues to move upward along the limiting frame 103, so that the transport bin 106 is inclined to ensure that the material in it is discharged, further, the upper and lower ends of the sliding frame 102 are provided with driving gears 108, which are described as follows: for the driving gears 108 arranged in the sliding frame 102, there are two groups, respectively placed on the upper and lower sides of the sliding frame 102, the driving gear 108 placed below is used to accept the main driving force, and a chain is arranged between the two driving gears 108, both ends of the chain are connected with both sides of the sliding rod 107, and the sliding rod 107 is flush with the outside of the driving gear 108, that is to say: control the driving gear 108 below to accept the main driving force and act on the chain, and both ends of the chain will pull the sliding rod 107 to move relative to the sliding frame 102, the pulley 104 is inclined upward relative to the sliding direction of the sliding rod 107, when the pulley 104 passes through the corner of the limiting frame 103, it moves along the horizontal end of the limiting frame 103, and the sliding rod 107 continues to move along the sliding frame 102, which will make the transport bin 106 rotate at the turning place of the pulley 104, so that the material in the transport bin 106 is lifted up, and then poured into the subsequent fermentation tank at the end of the equipment, the linkage of the device equipment parts is strong, which greatly improves the use functionality of the device equipment, and guarantees the work progress.

[0029] The above merely describes preferred embodiments of the present application, but is not intended to limit the present application to other forms, any person skilled in the art can make changes or modifications to the above disclosed technical contents into equivalent embodiments with equivalent changes, and apply to other fields, but any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present application without departing from the technical solution content of the present application still belongs to the protection scope of the present application technical solution.

Claims

1. A processing device for fermentation preparation of broiler feed comprising a frame body, characterized in that, The upper portion of the frame body is provided with a mixing and stirring assembly, which comprises a shell provided with a stirring mechanism, and a discharge mechanism arranged below the shell.

2. A processing device for the fermentation preparation of broiler feed according to claim 1, characterized in that The stirring mechanism comprises a stabilizing frame arranged on the frame body, and a bidirectional rotating assembly arranged on one side of the stabilizing frame.

3. A processing device for the fermentation preparation of broiler feed according to claim 2, characterized in that The stirring mechanism comprises a stabilizing frame arranged on the frame body, and a bidirectional rotating assembly arranged on one side of the stabilizing frame.

4. A processing device for the fermentation preparation of broiler feed according to claim 3, characterized in that The discharge mechanism comprises a cover body in a rectangular shape, a main shaft arranged at the geometric center of the cover body, a turnover plate arranged on the outer side of the main shaft, a first driven shaft and a second driven shaft arranged in the cover body on both sides of the main shaft, a first turnover plate arranged on the outer side of the first driven shaft and above one side of the turnover plate, a second turnover plate arranged on the outer side of the second driven shaft and below the other side of the turnover plate, a first key-shaped plate arranged on the outer side of the main shaft, a second key-shaped plate arranged on the outer side of the first driven shaft, a third key-shaped plate arranged on the outer side of the second driven shaft, and a connecting rod arranged on the outer side of the second key-shaped plate and the third key-shaped plate and rotatably connected to the outer side of the first key-shaped plate.

5. A processing device for the fermentation preparation of broiler feed according to claim 4, characterized in that The lateral moving assembly comprises a lateral driving assembly, and the inner side of the lateral driving assembly is provided with a lateral moving mechanism. The lateral driving assembly comprises a stand, and a cross plate is arranged between the two stands. The outer side of the support plate is provided with a driving motor, the driving end of the driving motor is provided with a driving wheel, the support plates on both sides of the driving wheel are provided with driven wheels, one side of the stand is provided with a rotating wheel, the outer side of the rotating wheel is provided with a synchronous belt, and the synchronous belt is wound from below the driving wheel to above the driven wheels and arranged on the rotating wheel. The outer side of the hollow support rod is provided with a water spraying hole.

6. A processing device for the fermentation preparation of broiler feed according to claim 5, characterized in that The transverse moving mechanism comprises a moving frame in L-shaped design connected with the sliding block, a horizontal moving wheel horizontally arranged in the lower part of the moving frame, and a vertical moving wheel vertically arranged in the upper part of the moving frame, wherein an L-shaped track is arranged on the frame body and abuts against the horizontal moving wheel and the vertical moving wheel.

7. A processing device for the fermentation preparation of broiler feed according to claim 6, characterized in that The material containing mechanism comprises a connecting frame in L-shaped design connected with the moving frame, a material containing bin rotatably adjusted on the upper part of the connecting frame, a material discharging cover in closed design arranged on the side of the material containing bin away from the material discharging mechanism, and a driving cylinder arranged on the lower part of one side of the connecting frame, wherein the output end of the driving cylinder is rotatably connected with one end of the material containing bin.

8. A processing device for the fermentation preparation of broiler feed according to claim 7, characterized in that The material spraying mechanism comprises a mounting frame connected with the frame body, a rotating frame arranged between the two mounting frames, a driving shaft arranged in the mounting frame and penetrating through the rotating frame, vertical sliding strips arranged on both ends of one side of the rotating frame, vertical sliding blocks arranged on the vertical sliding strips, a horizontal sliding strip arranged on the rotating frame between the two vertical sliding strips, a horizontal sliding block arranged on the horizontal sliding strip, a lifting plate arranged on the front side of the vertical sliding block, a motor arranged on the upper part of one side of the rotating frame, a ball screw arranged on the output end of the motor, a screw nut arranged on the outer side of the ball screw, a connecting seat arranged on the screw nut and connected with one side of the lifting plate, a plurality of limit holes in fan-shaped arrangement and arranged in the lifting plate, wherein the limit holes are arranged in outward expanding manner from top to bottom, a moving rod in L-shaped design arranged on the horizontal sliding block, a limiting rod arranged on the outer side of the moving rod and matched with the limit holes, and a pipe integrated arranged on the inner side of the rotating frame, and a spray head arranged on one side of the moving rod.

9. A processing device for the fermentation preparation of broiler feed according to claim 8, characterized in that The linkage driving assembly comprises a driving gear coaxially arranged with the rotating wheel, a transmission gear arranged on the outer side of the driving shaft, and a transmission chain arranged between the driving gear and the transmission gear.

10. A processing device for the fermentation preparation of broiler feed according to claim 9, characterized in that The transferring mechanism comprises a supporting frame, a sliding frame arranged on one side of the supporting frame, a limiting frame in obtuse angle arrangement arranged between the sliding frame and the supporting frame, a limiting groove in T-shaped cross section arranged in the limiting frame, a pulley arranged in the limiting groove, a connecting rod arranged between the two pulleys, a transferring bin in trapezoidal table design arranged on the connecting rod, a sliding rod arranged on the lower side of the transferring bin and arranged in the sliding frame at both ends thereof, and driving gears arranged on the upper and lower ends of the sliding frame.