A biological feed integrated equipment and processing technology thereof

Through the design of the integrated biological feed equipment, the combination of the mixing assembly and grinding and sealing assembly is used to solve the problems of mixing agglomeration and deterioration, achieving uniform drying and automatic cleaning of the mixing, and improving product quality.

CN118179337BActive Publication Date: 2025-09-02JIANGMEN FUMEIKANG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202410405895.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-07
Publication Date
2025-09-02
Estimated Expiration
2044-04-07

AI Technical Summary

Technical Problem

The heat and moisture of traditional feed mixing equipment cannot be dissipated in time after mixing, resulting in the agglomeration and deterioration of the mixture, affecting product quality.

Method used

The integrated biological feed equipment is adopted, including conveyor belts, mixing devices, smoothing devices and drying devices. Through the coordination of the agitating components, grinding and sealing components and drive systems, closed mixing, open grinding discharge and automatic cleaning are achieved to ensure heat and moisture dissipation and fine crushing of the mixture.

Benefits of technology

It effectively solves the agglomeration and deterioration of the mixture, improves product quality, and achieves uniform drying and automatic cleaning of the mixture.

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Abstract

The present invention discloses an integrated biological feed equipment and a processing technology thereof. The integrated biological feed equipment includes: a conveyor belt, a mixing device, a smoothing device, and a drying device; the mixing device, the smoothing device, and the drying device are arranged in sequence along the conveying direction of the conveyor belt; the mixing device includes: a main material bin, an auxiliary material bin, a stirring assembly, and a grinding and sealing assembly; the main material bin and the auxiliary material bin are interconnected, the stirring assembly is arranged in the main material bin, a discharge port is provided at the bottom of the main material bin, and the grinding and sealing assembly is arranged at the discharge port. The integrated biological feed equipment of the present invention, on the one hand, solves the problem of "small hills", so that heat and moisture can be dissipated in a timely and effective manner, and on the other hand, solves the problem of "agglomeration", thereby improving product quality.
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Description

Technical Field

[0001] The present invention relates to the technical field of biological feed production and processing, and in particular to a biological feed integrated device and a processing technology thereof. Background Art

[0002] like Figure 1 As shown in FIG, a structural diagram of a conventional feed mixing device 10 is shown. The feed mixing device 10 comprises a main material bin 11 and an auxiliary material bin 12 which are interconnected. The main material and the auxiliary material are respectively put into the main material bin 11 and the auxiliary material bin 12. The main material and the auxiliary material are mixed and stirred by a stirring device in the main material bin 11 to obtain a mixed material. Then, a bin door 13 provided on the side wall of the main material bin 11 is opened to discharge the mixed material in the main material bin 11.

[0003] When the main ingredients and auxiliary ingredients are mixed and stirred, heat and moisture will be generated. As can be seen from the above, the mixture falling from the warehouse door 13 will accumulate into a small hill. The formation of the hill will make it impossible for the heat and moisture to be dissipated in a timely and effective manner, which may easily cause the mixture to deteriorate and affect the product quality.

[0004] In addition, since the mixed material has a high moisture content and is accompanied by heat generation, the mixed material falling from the bin door 13 is prone to agglomeration, which also affects the product quality. Summary of the Invention

[0005] The purpose of the present invention is to overcome the deficiencies in the prior art and provide a biological feed integrated equipment and a processing technology thereof.

[0006] The object of the present invention is achieved through the following technical solutions:

[0007] A biological feed integrated device, comprising: a conveyor belt, a mixing device, a smoothing device, and a drying device; the mixing device, the smoothing device, and the drying device are arranged in sequence along the conveying direction of the conveyor belt;

[0008] The mixing device includes: a main material bin, an auxiliary material bin, a stirring assembly, and a grinding and blocking assembly; the main material bin and the auxiliary material bin are interconnected, the stirring assembly is arranged in the main material bin, a discharge port is opened at the bottom of the main material bin, and the grinding and blocking assembly is arranged at the discharge port.

[0009] In one embodiment, the stirring assembly includes a stirring shaft and a stirring rod disposed on the stirring shaft.

[0010] In one embodiment, the grinding and sealing assembly includes: an active frame and a driven frame; the active frame is reciprocatingly disposed at the discharge port, and the driven frame is suspended below the active frame through an elastic member;

[0011] The active frame is provided with a plurality of active grinding comb teeth arranged in sequence and at intervals, and the driven frame is provided with a plurality of driven grinding comb teeth arranged in sequence and at intervals. The plurality of active grinding comb teeth and the plurality of driven grinding comb teeth are interspersed with each other so that the gaps are mutually connected or blocked.

[0012] In one embodiment, the mixing device further includes a driving system for driving the stirring assembly and the grinding and sealing assembly.

[0013] In one embodiment, the drive system includes: a drive motor, an integrated sleeve, an axial adjustment shaft, an axial follower shaft, and a rocking assembly;

[0014] The axial adjustment shaft and the axial follower shaft are axially movable, rotatable and coaxially arranged in the integrated sleeve;

[0015] The swing assembly is fixedly arranged in the integrated sleeve;

[0016] The axial follower shaft is connected to the axial adjustment shaft in a clutch manner;

[0017] The axial follower shaft is connected to the rocking assembly in a clutch manner;

[0018] The axial follower shaft is provided with a return spring;

[0019] The output end of the driving motor is meshed and connected with the axial follower shaft gear, the axial adjustment shaft is meshed and connected with the stirring shaft gear, and the rocking assembly is connected to the active frame through a connecting rod;

[0020] When the axial adjustment shaft moves away from the axial follower shaft, the axial adjustment shaft separates from the axial follower shaft, and the axial follower shaft is drivingly connected to the rocking assembly;

[0021] When the axial adjustment shaft moves closer to the axial follower shaft, the axial follower shaft is separated from the rocking assembly, and the axial follower shaft is drivingly connected to the axial adjustment shaft;

[0022] When the axial adjustment shaft is located at a central position, the axial follower shaft is drivingly connected to the rocking assembly and the axial adjustment shaft at the same time.

[0023] In one embodiment, the rocking assembly includes: a support bearing, a rotating sleeve, and a rocking ring; the outer ring of the support bearing is fixed to the inner wall of the integrated sleeve, the rotating sleeve is sleeved on the inner ring of the support bearing, and the rocking ring is sleeved on the annular bevel groove on the outer wall of the rotating sleeve through a ball bearing;

[0024] One end of the connecting rod is connected to the swing ring, and the other end is connected to the active frame.

[0025] In one embodiment, an adjustment handle is provided on the axial adjustment shaft, a limit rod is fixedly provided on the side wall of the main silo, and a limit stop groove is provided on the limit rod to cooperate with the adjustment handle.

[0026] A biological feed processing process is implemented by the above-mentioned biological feed integrated equipment, and comprises the following steps:

[0027] Step 1: Add the main ingredients into the main material bin and the auxiliary ingredients into the auxiliary material bin;

[0028] Step 2: Closed mixing and stirring: disconnect the grinding and blocking component to seal the discharge port; open the stirring component to mix and stir the main ingredient and the auxiliary ingredient to obtain a mixture;

[0029] Step 3: Open grinding and discharging: disconnect the stirring assembly, open the grinding and blocking assembly separately, and grind the mixture by the grinding and blocking assembly, so that the mixture falls from the discharge port onto the conveyor belt;

[0030] Step 4: Smoothing and drying the mixture; the conveyor belt conveys the mixture to the smoothing device and the drying device in sequence, the smoothing device smoothes the mixture, and the drying device dries the mixture;

[0031] Step 5: Cleaning: Add clean water to the main material bin and the auxiliary material bin, and at the same time, turn on the grinding and sealing components and the stirring components to achieve automatic cleaning of the grinding and sealing components and the stirring components.

[0032] The bio-feed integrated equipment and processing technology of the present invention solve the problem of "small hills" on the one hand, so that heat and moisture can be dissipated promptly and effectively, and solve the problem of "caking" on the other hand, thereby improving product quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0034] Figure 1 This is a structural diagram of a traditional feed mixing equipment;

[0035] Figure 2 A flowchart of the steps of a biological feed processing process of the present invention;

[0036] Figure 3 This is a structural diagram of the biological feed integrated equipment of the present invention;

[0037] Figure 4 for Figure 3 A perspective view of a mixing device of the biological feed integrated equipment shown;

[0038] Figure 5 for Figure 4 A plan view of the mixing device shown;

[0039] Figure 6 for Figure 4 A structural diagram of the grinding and sealing assembly of the mixing device shown;

[0040] Figure 7 for Figure 4 A structural diagram of the drive system of the mixing device shown;

[0041] Figure 8 for Figure 7 A partial diagram of the drive system shown;

[0042] Figure 9 for Figure 7 An exploded view of the drive system shown;

[0043] Figure 10 for Figure 9 The structural diagram of the axial adjustment shaft shown;

[0044] Figure 11 for Figure 9 The structural diagram of the axial follower shaft and the rocking assembly shown;

[0045] Figure 12 This is the state diagram of the drive system when the axial adjustment shaft is in the center position. DETAILED DESCRIPTION

[0046] To facilitate understanding of the present invention, the present invention will be described more fully below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present invention. However, the present invention may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present disclosure.

[0047] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.

[0048] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this invention pertains. The terms used herein in the specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0049] like Figure 2 As shown, the present invention discloses a biological feed processing process, comprising the following steps:

[0050] Step 1: crushing and expanding the main ingredients, and crushing and expanding the auxiliary ingredients;

[0051] Step 2: mixing the main ingredient and the auxiliary ingredient to obtain a mixture;

[0052] Step 3: Smooth the mixture;

[0053] Step 4, drying the mixture;

[0054] Step 5: spraying the mixture with oil for aging;

[0055] Step six, granulating the mixture;

[0056] Step seven, packaging.

[0057] like Figure 3 As shown, the present invention discloses a biological feed integrated device 20, which includes: a conveyor belt 30, a mixing device 40, a smoothing device 50, and a drying device 60. The mixing device 40, the smoothing device 50, and the drying device 60 are arranged in sequence along the conveying direction of the conveyor belt 30.

[0058] The mixing device 40 is used to mix the main material and the auxiliary material. After the mixing, the main material and the auxiliary material will obtain a mixture, which falls onto the conveyor belt 30 and is then transported by the conveyor belt 30 to the leveling device 50 and the drying device 60. The leveling device 50 is used to level the mixture that falls onto the conveyor belt 30, so that the mixture can enter the drying device 60 evenly and in a thin layer, so that the drying device 60 can quickly dry the mixture.

[0059] Next, the specific structure of the mixing device 40 is described:

[0060] like Figure 4As shown, the mixing device 40 includes: a main material bin 100, an auxiliary material bin 200, a stirring assembly 300, and a grinding and blocking assembly 400. The main material bin 100 and the auxiliary material bin 200 are interconnected, the stirring assembly 300 is arranged in the main material bin 100, and a discharge port 110 is opened at the bottom of the main material bin 100. The grinding and blocking assembly 400 is arranged at the discharge port 110.

[0061] The main material bin 100 is used to put the main material, the auxiliary material bin 200 is used to put the auxiliary material, and the stirring component 300 is used to stir the main material and the auxiliary material to obtain a mixture. An electromagnetic valve controller is provided at the material port of the auxiliary material bin 200. During the stirring process of the stirring component 300, the auxiliary material is appropriately put into the main material bin 100 to achieve the purpose of uniform stirring.

[0062] In addition, it should be noted that the mixing device 40 of the present invention is specially provided with a grinding and sealing component 400, which mainly solves two problems: on the one hand, the mixture is ground to prevent the mixture from agglomerating, so that the mixture falling on the conveyor belt 30 is more finely divided; on the other hand, the discharge port 110 can be effectively opened and closed, so that the discharge port 110 is in an open state or in a blocked state, and the discharge port 110 no longer needs to be additionally provided with a related valve device.

[0063] like Figure 5 As shown, specifically, in the present invention, the stirring assembly 300 includes a stirring shaft 310 and a stirring rod 320 provided on the stirring shaft 310 .

[0064] The specific structure of the grinding and plugging assembly 400 is described in further detail below. Figure 6 As shown, specifically, in the present invention, the grinding and blocking assembly 400 includes: an active frame 410 and a driven frame 420. The active frame 410 is reciprocatingly disposed at the discharge port 110, and the driven frame 420 is suspended below the active frame 410 through an elastic member 430.

[0065] like Figure 6 As shown, a plurality of active grinding comb teeth 411 are arranged in sequence and spaced apart on the active frame 410, and a plurality of driven grinding comb teeth 421 are arranged in sequence and spaced apart on the driven frame 420. The plurality of active grinding comb teeth 411 and the plurality of driven grinding comb teeth 421 are interspersed with each other so that the gaps are interconnected or blocked.

[0066] The active frame 410 is driven horizontally and reciprocally by a corresponding drive device. Under the action of the elastic member 430, the driven frame 420 follows the active frame 410 in horizontal reciprocating motion. As a result, the multiple active grinding comb teeth 411 and the multiple driven grinding comb teeth 421 interlaced with each other shear against each other, thereby achieving the effect of grinding and discharging the mixed material.

[0067] When the active frame 410 stops moving, the driven frame 420 also stops moving. Under the pulling force of the elastic member 430, the driven frame 420 returns to its original position, and the gap between the active grinding comb teeth 411 and the driven grinding comb teeth 421 is blocked, so that the mixed material cannot fall through the gap.

[0068] In the present invention, the discharge port 110 is opened at the bottom of the main silo 100, and a grinding and sealing component 400 is provided at the discharge port 110, and a leveling device 50 is provided on the conveyor belt 30, thereby effectively solving the "hill" problem mentioned in the background technology; when the grinding and sealing component 400 is not working, the discharge port 110 will be blocked, which can prevent the mixture from falling; during the operation of the grinding and sealing component 400, the mixture will be ground into fine pieces, solving the problem of "clumping" of the mixture.

[0069] like Figure 7 As shown, the mixing device 40 further includes a drive system 500 for driving the stirring assembly 300 and the grinding and blocking assembly 400. The drive system 500 is used to drive the stirring assembly 300 and the grinding and blocking assembly 400 simultaneously, or to drive the stirring assembly 300 alone, or to drive the grinding and blocking assembly 400 alone, through different modes to achieve the desired effect, which will be described in detail below.

[0070] Next, the specific structure of the drive system 500 is described:

[0071] like Figure 7 、 Figure 8 and Figure 9 As shown, specifically, in the present invention, the drive system 500 includes: a drive motor 510 , an integrated sleeve 520 , an axial adjustment shaft 530 , an axial follower shaft 540 , and a rocking assembly 550 .

[0072] The axial adjustment shaft 530 and the axial follower shaft 540 are axially movable, rotatable and coaxially disposed in the integrated sleeve 520 .

[0073] The rocking assembly 550 is fixedly positioned within the integrated sleeve 520 .

[0074] The axial follower shaft 540 is connected to the axial adjustment shaft 530 in a clutch manner. Figure 11 ) and the outer teeth 531 at one end of the axial adjustment shaft 530 (as shown Figure 10 shown) fit.

[0075] The axial follower shaft 540 is connected to the swing assembly 550 in a clutch manner. Figure 11 ) cooperates with the inner teeth (not shown) at one end of the rocking assembly 550.

[0076] The axial follower shaft 540 is provided with a return spring 560 (eg Figure 8 and Figure 9 shown).

[0077] The output terminal 511 (e.g. Figure 9 ) and the axial follower shaft 540 gear 542 (as shown Figure 9 As shown) meshing connection, the axial adjustment shaft 530 is meshing connection with the stirring shaft 310 (as shown) Figure 8 and Figure 9 As shown), the swing assembly 550 is connected to the active frame 410 via a connecting rod 570 (as shown Figure 7 and Figure 8 shown).

[0078] When the axial adjustment shaft 530 moves away from the axial follower shaft 540, it separates from the axial follower shaft 540, and the axial follower shaft 540 is driven and connected to the rocking assembly 550. It will be appreciated that moving the axial adjustment shaft 530 away from the axial follower shaft 540 causes the axial adjustment shaft 530 and the axial follower shaft 540 to separate from each other. The axial follower shaft 540 no longer drives the axial adjustment shaft 530 to rotate, and thus the stirring shaft 310 also stops rotating, temporarily suspending the stirring function. However, the axial follower shaft 540 and the rocking assembly 550 remain connected, driving the rocking assembly 550 to rock, which in turn drives the active frame 410 to reciprocate horizontally via the connecting rod 570, thereby achieving the grinding and unloading function.

[0079] When the axial adjustment shaft 530 moves closer to the axial follower shaft 540, the axial follower shaft 540 separates from the rocking assembly 550, and the axial follower shaft 540 becomes drivably connected to the axial adjustment shaft 530. It will be appreciated that moving the axial adjustment shaft 530 closer to the axial follower shaft 540 causes the axial follower shaft 540 and the rocking assembly 550 to separate (temporarily compressing the return spring 560). The axial follower shaft 540 no longer drives the rocking assembly 550, temporarily halting the grinding and unloading function. However, the axial adjustment shaft 530 and the axial follower shaft 540 remain connected, enabling the stirring function.

[0080] When the axial adjustment shaft 530 is located at the center position (such as Figure 12 As shown in FIG, the axial follower shaft 540 is simultaneously connected to the swing assembly 550 and the axial adjustment shaft 530. It can be understood that the axial follower shaft 540 is simultaneously connected to the swing assembly 550 and the axial adjustment shaft 530, and the stirring function and the grinding and feeding function are simultaneously activated.

[0081] like Figure 11 As shown, more specifically, the swing assembly 550 includes: a support bearing 551, a rotating sleeve 552, and a swing ring 553. The outer ring of the support bearing 551 is fixed to the inner wall of the integrated sleeve 520, the rotating sleeve 552 is sleeved on the inner ring of the support bearing 551, and the swing ring 553 is rotated by a ball 554 (such as Figure 12 553 is connected to the annular bevel groove on the outer wall of the rotating sleeve 552. One end of the connecting rod 570 is connected to the swing ring 553, and the other end is connected to the active frame 410. As can be seen, when the rotating sleeve 552 rotates, due to the annular bevel groove on the outer wall of the rotating sleeve 552, the swing ring 553 will swing back and forth horizontally with the cooperation of the ball bearing 554, thereby driving the active frame 410 to move horizontally through the connecting rod 570.

[0082] like Figure 9 As shown, an adjustment handle 580 is provided on the axial adjustment shaft 530, and a limiting rod 590 is fixedly provided on the side wall of the main hopper 100. The limiting rod 590 is provided with a limiting stop groove 591 that cooperates with the adjustment handle 580. By providing the adjustment handle 580, the axial adjustment shaft 530 can be easily adjusted left and right. When adjusted to a certain gear, the limiting stop groove 591 is used to stably limit the adjustment handle 580 at the current position.

[0083] The present invention also discloses a biological feed processing process, which is realized by the above-mentioned biological feed integrated equipment and comprises the following steps:

[0084] Step 1: Add the main ingredients into the main material bin and the auxiliary ingredients into the auxiliary material bin;

[0085] Step 2: Closed mixing and stirring: disconnect the grinding and blocking component to seal the discharge port; open the stirring component to mix and stir the main ingredient and the auxiliary ingredient to obtain a mixture;

[0086] Step 3: Open grinding and discharging: disconnect the stirring assembly, open the grinding and blocking assembly separately, and grind the mixture by the grinding and blocking assembly, so that the mixture falls from the discharge port onto the conveyor belt;

[0087] Step 4: Smoothing and drying the mixture; the conveyor belt conveys the mixture to the smoothing device and the drying device in sequence, the smoothing device smoothes the mixture, and the drying device dries the mixture;

[0088] Step 5: Cleaning: Add clean water to the main material bin and the auxiliary material bin, and at the same time, turn on the grinding and sealing components and the stirring components to achieve automatic cleaning of the grinding and sealing components and the stirring components.

[0089] The biological feed processing technology of the present invention particularly includes three modes: a closed mixing and stirring mode, an open grinding and discharging mode, and a cleaning mode.

[0090] When the main material and the auxiliary material need to be mixed and stirred to obtain a mixture, the drive system 500 needs to be adjusted to the closed mixing and stirring mode. In this mode, on the one hand, the grinding and blocking component needs to be disconnected so that the discharge port is in a blocked state, and on the other hand, the stirring component needs to be turned on to mix and stir the main material and the auxiliary material to obtain a mixture. Since the discharge port is in a blocked state, the mixture will not fall temporarily, so that the stirring component can fully stir the mixture.

[0091] When the mixed material needs to be ground and discharged, the drive system 500 needs to be adjusted to the open grinding and discharging mode. In this mode, the grinding and blocking assembly grinds the mixed material so that the mixed material falls from the discharge port onto the conveyor belt. This not only solves the problem of mixed material agglomeration, but also effectively prevents the mixed material from clogging the discharge port.

[0092] After the mixed material is discharged, the bin body needs to be cleaned in time to prevent the feed residue in the bin body from spoiling. The drive system 500 needs to be adjusted to the cleaning mode. In this mode, clean water is added to the main bin and the auxiliary bin, and the grinding sealing component and the stirring component are opened at the same time to realize automatic cleaning of the grinding sealing component and the stirring component.

[0093] In order to cater to the above-mentioned mode, the present invention particularly improves the structure of the driving system 500, and either turns on the stirring component alone, or turns on the grinding and blocking components alone, or turns on the stirring component and the grinding and blocking components at the same time.

[0094] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.

Claims

1. A biological feed integrated equipment, characterized in that, include: Conveyor belts, mixing devices, leveling devices, drying devices; The mixing device, the smoothing device, and the drying device are arranged in sequence along the conveying direction of the conveyor belt; The mixing device includes: a main material bin, an auxiliary material bin, a stirring assembly, and a grinding and blocking assembly; the main material bin and the auxiliary material bin are interconnected, the stirring assembly is arranged in the main material bin, a discharge port is opened at the bottom of the main material bin, and the grinding and blocking assembly is arranged at the discharge port; The stirring assembly includes a stirring shaft and a stirring rod provided on the stirring shaft; The grinding and blocking assembly includes: an active frame and a driven frame; the active frame is reciprocatingly arranged at the discharge port, and the driven frame is suspended below the active frame through an elastic member; The active frame is provided with a plurality of active grinding comb teeth arranged in sequence and at intervals, and the driven frame is provided with a plurality of driven grinding comb teeth arranged in sequence and at intervals. The plurality of active grinding comb teeth and the plurality of driven grinding comb teeth are interspersed with each other so that the gaps are mutually connected or blocked.

2. The biological feed integrated equipment according to claim 1, characterized in that: The mixing device further comprises a driving system for driving the stirring assembly and the grinding and sealing assembly.

3. The biological feed integrated equipment according to claim 2, characterized in that: The driving system includes: a driving motor, an integrated sleeve, an axial adjustment shaft, an axial follower shaft, and a rocking assembly; The axial adjustment shaft and the axial follower shaft are axially movable, rotatable and coaxially arranged in the integrated sleeve; The swing assembly is fixedly arranged in the integrated sleeve; The axial follower shaft is connected to the axial adjustment shaft in a clutch manner; The axial follower shaft is connected to the rocking assembly in a clutch manner; The axial follower shaft is provided with a return spring; The output end of the driving motor is meshed and connected with the axial follower shaft gear, the axial adjustment shaft is meshed and connected with the stirring shaft gear, and the rocking assembly is connected to the active frame through a connecting rod; When the axial adjustment shaft moves away from the axial follower shaft, the axial adjustment shaft separates from the axial follower shaft, and the axial follower shaft is drivingly connected to the rocking assembly; When the axial adjustment shaft moves closer to the axial follower shaft, the axial follower shaft is separated from the rocking assembly, and the axial follower shaft is drivingly connected to the axial adjustment shaft; When the axial adjustment shaft is located at a central position, the axial follower shaft is drivingly connected to the rocking assembly and the axial adjustment shaft at the same time.

4. The biological feed integrated equipment according to claim 3, characterized in that: The rocking assembly includes: a support bearing, a rotating sleeve, and a rocking ring; the outer ring of the support bearing is fixed to the inner wall of the integrated sleeve, the rotating sleeve is sleeved on the inner ring of the support bearing, and the rocking ring is sleeved on the annular inclined groove on the outer wall of the rotating sleeve through a ball bearing; One end of the connecting rod is connected to the swing ring, and the other end is connected to the active frame.

5. The biological feed integrated equipment according to claim 3, characterized in that: An adjusting handle is provided on the axial adjusting shaft, a limiting rod is fixedly provided on the side wall of the main material bin, and a limiting stop groove is provided on the limiting rod to cooperate with the adjusting handle.

6. A biological feed processing process, characterized in that: This is achieved by the biological feed integrated equipment according to claim 3; comprising the following steps: Step 1: Add the main ingredients into the main material bin and the auxiliary ingredients into the auxiliary material bin; Step 2: Closed mixing and stirring: disconnect the grinding and blocking component to seal the discharge port; open the stirring component to mix and stir the main ingredient and the auxiliary ingredient to obtain a mixture; Step 3: Open grinding and discharging: disconnect the stirring assembly, open the grinding and blocking assembly separately, and grind the mixture by the grinding and blocking assembly, so that the mixture falls from the discharge port onto the conveyor belt; Step 4: Smoothing and drying the mixture; the conveyor belt conveys the mixture to the smoothing device and the drying device in sequence, the smoothing device smoothes the mixture, and the drying device dries the mixture; Step 5: Cleaning: Add clean water to the main material bin and the auxiliary material bin, and at the same time, turn on the grinding and sealing components and the stirring components to achieve automatic cleaning of the grinding and sealing components and the stirring components.

Citation Information

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