Sealed anaerobic fermentation container for feed additives

By designing a sealed anaerobic fermentation container that includes a crushing mechanism and a control panel, the problem of non-continuous processing of feed additives in the existing technology has been solved, realizing continuous processing of sealed fermentation and crushing, and improving efficiency.

CN223823571UActive Publication Date: 2026-01-23HUBEI ZHUAO BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520227181.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2026-01-23
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

Existing sealed fermentation tanks require crushing by other equipment during feed additive processing, which makes continuous processing impossible and reduces efficiency.

Method used

A sealed anaerobic fermentation container including a crushing mechanism and a control panel was designed. The rotating shaft and spiral plate are driven by a motor and gear transmission to achieve the conveying and crushing of raw materials. Combined with the cylinder-driven piston for material discharge, the sealed fermentation and crushing process can be continuously processed.

Benefits of technology

It enables sealed fermentation and pulverization of feed additives, improving processing efficiency. It has a simple structure and high practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of feed additive processing, and discloses a sealed anaerobic fermentation container for feed additives, which comprises a bottom plate, a crushing mechanism and a control panel, the device comprises a bottom plate, a feed additive fermentation tank is arranged on the bottom plate, a support is arranged at the top of the feed additive fermentation tank, a crushing mechanism and a control panel are arranged on the support, a first round pipe is rotationally connected to the feed additive fermentation tank, and a spiral plate is fixedly connected to the first round pipe; the spiral plate is matched with the feed additive fermentation tank, a discharging mechanism is arranged at the top of the feed additive fermentation tank, and the discharging mechanism and the smashing mechanism are both connected with the first round pipe and the control panel. The smashing mechanism comprises a rotating shaft, a smashing cutter, a motor and a fourth gear. The feed additive fermentation device has the following advantages and effects that through the matching of all the parts, the effect of carrying out sealed fermentation on a feed additive can be achieved, and the effect of carrying out crushing processing on the feed additive can also be achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of feed additive processing, particularly to a sealed anaerobic fermentation container for feed additive. BACKGROUND

[0002] With the development of modern pig farming scale, breeders add trace elements, growth hormones, vitamins, chemical drugs and antibiotics in feed, which has achieved certain results in promoting the growth of pigs and preventing diseases. However, long-term addition of these substances leads to the problem of drug residues in livestock products, which also endangers people's health. Since most Chinese herbal medicines are made of natural plants, they are pure natural substances that pigs can easily absorb. They have the advantages of abundant resources, various types, good effect, low price, wide application, safety, low toxicity, almost no residue, no drug resistance and no environmental pollution. They also have the dual functions of nutrition and medicine. Therefore, in recent years, Chinese herbal medicine pig raising has been increasingly concerned by most breeders.

[0003] For example, the document with application number 201710459902.5 discloses a method for making a pig Chinese medicine feed additive, which includes mixing radix astragali powder and water uniformly, sterilizing, and then adding a pholiota nameko seed liquid to ferment for 4-6 days to obtain a pholiota nameko fermentation liquid. The pholiota nameko fermentation liquid is sterilized and cooled, then lactic acid bacteria are added, and anaerobic fermentation is carried out for 35-45 hours. Then, the filtrate and residue are obtained by filtration. The filtrate is concentrated to obtain a concentrated liquid. The concentrated liquid and the residue are mixed uniformly, then dried and crushed to obtain the finished product.

[0004] From the above patent document, it can be seen that a fermentation tank is needed to carry out anaerobic fermentation on the raw materials during the processing of feed additives. However, the existing sealed fermentation tank needs to use other equipment to crush the dried raw materials during the processing of feed additives, which cannot realize continuous processing of feed additives, thereby reducing the processing efficiency of feed additives.

[0005] Therefore, we propose a sealed anaerobic fermentation container for feed additives to solve the problems in the background art. UTILITY MODEL CONTENT

[0006] The utility model aims to provide a sealed anaerobic fermentation container for feed additives, which can realize the effect of crushing and processing feed additives.

[0007] The above technical purpose of the utility model is realized by the following technical scheme: a sealed anaerobic fermentation container for feed additives, comprising a bottom plate, a crushing mechanism and a control panel.

[0008] The bottom plate is provided with a feed additive fermentation tank, the top of the feed additive fermentation tank is provided with a support, the support is provided with a crushing mechanism and a control panel, the feed additive fermentation tank is rotationally connected with a circular pipe one, the circular pipe one is fixedly connected with a spiral plate, the spiral plate is matched with the feed additive fermentation tank, the top of the feed additive fermentation tank is provided with a discharging mechanism, and the discharging mechanism and the crushing mechanism are connected with the circular pipe one and the control panel.

[0009] The crushing mechanism comprises a rotating shaft, a crushing knife, a motor and a gear four, the rotating shaft is rotationally connected with the circular pipe one, the motor is driven, and the gear two, the gear three, the gear one and the gear four are in transmission, the gear one, the gear four, the rotating shaft and the circular pipe one are in transmission, the circular pipe one drives the spiral plate to rotate synchronously, the spiral plate cooperates with the feed additive fermentation tank, the raw materials at the bottom of the feed additive fermentation tank are upwardly conveyed, then the raw materials enter the circular pipe one through the feeding port on the circular pipe one, the rotating shaft drives a plurality of crushing knives to rotate synchronously, the raw materials are crushed, the feed additive is sealed and fermented, and the feed additive is crushed.

[0010] The rotating shaft is fixedly installed with a plurality of crushing knives, the crushing knives are matched with the circular pipe one, one end of the rotating shaft is fixedly connected with a gear one, one end of the circular pipe one is provided with a feeding port, and the other end of the circular pipe one is provided with a discharging port.

[0011] The motor is fixedly installed on the support, the output end of the motor is fixedly connected with a gear two, the gear two is in engagement with the gear one, the output end of the motor is fixedly connected with a gear three, the gear three is in engagement with a gear four, the gear four is fixedly connected with the circular pipe one, the motor is connected with the control panel, the gear two and the gear three are driven to rotate synchronously, the gear two and the gear three are in transmission with the gear one and the gear four respectively, and the gear one and the gear four drive the rotating shaft and the circular pipe one to rotate synchronously.

[0012] The discharging mechanism comprises a circular pipe two, a cylinder, a piston and a discharging pipe, the bottom of the feed additive fermentation tank is sealingly connected with the circular pipe two, one end of the circular pipe two is in contact connection with one end of the circular pipe one, and the piston slides in the circular pipe two through the driving of the cylinder.

[0013] The utility model discloses further provide: the piston is slidably connected in the round pipe two, the top of piston is flush with the discharge port with the one end contact connection of rotating shaft, the discharge pipe is sealedly connected on the round pipe two, the bottom fixed mounting of round pipe two has the pneumatic cylinder, the one end of pneumatic cylinder is fixedly connected with the piston, the pneumatic cylinder is connected with the control panel, when the piston moves to the below of discharge pipe, at this time, through the cooperation drive between with motor to make the raw material in the feed additive fermentation tank falls into the round pipe two, and is discharged through the discharge pipe.

[0014] The utility model discloses further provide: fixedly sheathed with the sealing ring one on the piston, the sealing ring one is slidably connected with the round pipe two, the thickness of piston is greater than the caliber of discharge pipe, avoids the feed additive to fall to the below of piston.

[0015] The utility model discloses further provide: fixedly sheathed with bearing one on the round pipe one, the outer wall of bearing one is fixedly connected with the feed additive fermentation tank, fixedly sheathed with bearing two on the rotating shaft, the outer wall of bearing two is fixedly connected with the round pipe one.

[0016] The utility model discloses further provide: fixedly sheathed with bearing one on the round pipe one, the outer wall of bearing one is fixedly connected with the feed additive fermentation tank, fixedly sheathed with bearing two on the rotating shaft, the outer wall of bearing two is fixedly connected with the round pipe one, for detachable connection.

[0017] The utility model discloses further provide: set up the installation groove on the feed additive fermentation tank, fixedly installed with heating pipe in the installation groove, the heating pipe is connected with the control panel, the top of feed additive fermentation tank is equipped with the feed pipe and the exhaust pipe, adjusts the power size of heating pipe through control panel, and then can reach the effect that the temperature in feed additive fermentation tank is adjusted.

[0018] The utility model discloses beneficial effect is: through the drive of motor and the transmission of gear two, gear three, gear one and gear four, make the transmission between gear one, gear four, rotating shaft and round pipe one, make round pipe one drive helical plate synchronous rotation, simultaneously, the effect that the raw material in the bottom of feed additive fermentation tank is conveyed upwards is reached through the cooperation of helical plate and feed additive fermentation tank, then, through the effect of feed inlet on the round pipe one, make raw material enter the round pipe one, at this time, rotating shaft drives a plurality of the comminution knife synchronous rotation, thereby reach the effect that raw material is comminuted, and then reach the effect that the feed additive is continuously processed, greatly promote the processing efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.

[0020] Figure 1 A three-dimensional structural schematic diagram of a sealed anaerobic fermentation container for feed additive is provided for the present application.

[0021] Figure 2 A dissection schematic diagram of a sealed anaerobic fermentation container for feed additive is provided for the present application.

[0022] Figure 3 A crushing mechanism schematic diagram of a sealed anaerobic fermentation container for feed additive is provided for the present application.

[0023] Figure 4 A discharging mechanism schematic diagram of a sealed anaerobic fermentation container for feed additive is provided for the present application.

[0024] Figure 5 A structural schematic diagram of the round pipe one, the round pipe two, the discharging pipe, the feeding port, the discharging port and the rotating shaft.

[0025] In the figure, 1, bottom plate; 2, feed additive fermentation tank; 3, round pipe one; 4, spiral plate; 5, support; 6, crushing mechanism; 7, control panel; 8, round pipe two; 9, air cylinder; 10, piston; 11, discharging pipe; 12, discharging port; 13, feeding port; 14, heating pipe; 61, rotating shaft; 62, crushing knife; 63, gear one; 64, motor; 65, gear two; 66, gear three; 67, gear four. DETAILED DESCRIPTION

[0026] The technical solutions of the present application will be described clearly and completely in combination with specific embodiments. Obviously, the described embodiments are only some embodiments of the present application, not all embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0027] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0028] Reference Figures 1-5 A sealed anaerobic fermentation container for feed additives includes a bottom plate 1, a crushing mechanism, and a control panel 7.

[0029] A feed additive fermentation tank 2 is provided on the base plate 1. A support 5 is provided on the top of the feed additive fermentation tank 2. A crushing mechanism 6 and a control panel 7 are provided on the support 5. A circular tube 3 is rotatably connected to the feed additive fermentation tank 2. A spiral plate 4 is fixedly connected to the circular tube 3. The spiral plate 4 is adapted to the feed additive fermentation tank 2. A discharge mechanism is provided on the top of the feed additive fermentation tank 2. The discharge mechanism and the crushing mechanism 6 are both connected to the circular tube 3 and the control panel 7.

[0030] The crushing mechanism 6 includes a rotating shaft 61, crushing blades 62, a motor 64, and gear 67. The rotating shaft 61 is rotatably connected to the circular tube 3. Driven by the motor 64 and transmitted by gears 65, 66, 63, and 67, the transmission between gears 63, 67, the rotating shaft 61, and the circular tube 3 causes the circular tube 3 to drive the spiral plate 4 to rotate synchronously. At the same time, the spiral plate 4 works in conjunction with the feed additive fermentation tank 2 to convey the raw materials at the bottom of the feed additive fermentation tank 2 upwards. Then, through the feed inlet 13 on the circular tube 3, the raw materials enter the circular tube 3. At this time, the rotating shaft 61 drives multiple crushing blades 62 to rotate synchronously, thereby achieving the effect of crushing the raw materials. It can not only achieve the effect of sealed fermentation of feed additives, but also achieve the effect of crushing and processing feed additives.

[0031] In this method, multiple crushing blades 62 are fixedly installed on the rotating shaft 61. The multiple crushing blades 62 are all adapted to the circular tube 3. One end of the rotating shaft 61 is fixedly connected to the gear 63. One end of the circular tube 3 is provided with a feed inlet 13 and the other end of the circular tube 3 is provided with a discharge outlet 12. The material is discharged to the bottom of the feed additive fermentation tank 2 through the discharge outlet 12 on the circular tube 3, thereby achieving the purpose of circulating crushing of the raw materials.

[0032] In this configuration, the motor 64 is fixedly mounted on the bracket 5. The output end of the motor 64 is fixedly connected to a second gear 65, which meshes with a first gear 63. The output end of the motor 64 is fixedly connected to a third gear 66, which meshes with a fourth gear 67. The fourth gear 67 is fixedly connected to a first round tube 3. The motor 64 is connected to the control panel 7. The motor 64 drives the second gear 65 and the third gear 66 to rotate synchronously. At the same time, the second gear 65 and the third gear 66 transmit power to the first gear 63 and the fourth gear 67 respectively, so that the first gear 63 and the fourth gear 67 drive the rotating shaft 61 and the first round tube 3 to rotate synchronously.

[0033] In this method, the discharge mechanism includes a second round tube 8, a cylinder 9, a piston 10, and a discharge pipe 11. The bottom of the feed additive fermentation tank 2 is sealed with a second round tube 8. One end of the second round tube 8 is in contact with one end of the first round tube 3. The piston 10 slides inside the second round tube 8 by being driven by the cylinder 9.

[0034] In this configuration, a piston 10 is slidably connected inside the second circular tube 8. The top of the piston 10 is flush with the discharge port 12 and contacts one end of the rotating shaft 61. A discharge pipe 11 is sealed and connected to the second circular tube 8. A cylinder 9 is fixedly installed at the bottom of the second circular tube 8. One end of the cylinder 9 is fixedly connected to the piston 10. The cylinder 9 is connected to the control panel 7. When the piston 10 moves to below the discharge pipe 11, it is driven by the cooperation with the motor 64, causing the raw materials in the feed additive fermentation tank 2 to fall into the second circular tube 8 and be discharged through the discharge pipe 11.

[0035] In this method, a sealing ring is fixedly sleeved on the piston 10, and the sealing ring is slidably connected to the round tube 8. The thickness of the piston 10 is greater than the diameter of the discharge pipe 11 to prevent feed additives from falling below the piston 10.

[0036] In this method, a bearing is fixedly sleeved on the circular tube 3, and the outer wall of the bearing is fixedly connected to the feed additive fermentation tank 2. A bearing is fixedly sleeved on the rotating shaft 61, and the outer wall of the bearing is fixedly connected to the circular tube 3. This connection is detachable, which facilitates the rotation of the circular tube 3 and the rotating shaft 61.

[0037] In this method, the feed additive fermentation tank 2 is provided with an installation groove, in which a heating tube 14 is fixedly installed. The heating tube 14 is connected to the control panel 7. The power of the heating tube 14 is adjusted by the control panel 7, thereby achieving the effect of regulating the temperature inside the feed additive fermentation tank 2. The top of the feed additive fermentation tank 2 is provided with a feed pipe and an exhaust pipe. The feed pipe transports the raw materials into the feed additive fermentation tank 2, and the exhaust pipe can discharge the gas generated by the raw materials, thus preventing excessive gas pressure inside the feed additive fermentation tank 2.

[0038] Working principle: During use, the motor 64, cylinder 9 and heating tube 14 are driven and controlled through the control panel 7;

[0039] Driven by the electric motor 64, gears 2 (65) and 3 (66) rotate synchronously. Gears 2 (65) and 3 (66) also transmit power to gears 1 (63) and 4 (67), respectively. This causes gears 1 (63) and 4 (67) to drive the rotating shaft 61 and the circular tube 3 to rotate synchronously. During this process, the circular tube 3 drives the spiral plate 4 to rotate synchronously. The spiral plate 4 works in conjunction with the feed additive fermentation tank 2, thus conveying the raw materials from the bottom of the fermentation tank 2 upwards. Then, through the feed inlet 13 on the circular tube 3, the raw materials enter the tube. At this time, the rotating shaft 61 drives multiple crushing blades 62 to rotate synchronously, achieving the effect of crushing the raw materials. The materials are then discharged through the discharge outlet 12 on the circular tube 3 to the bottom of the feed additive fermentation tank 2, thus achieving the purpose of circulating crushing of the raw materials and ensuring thorough crushing.

[0040] Driven by cylinder 9, piston 10 slides inside round tube 2 8 and moves to below discharge pipe 11. At this time, through the cooperation with motor 64, the raw materials in feed additive fermentation tank 2 fall into round tube 2 8 and are discharged through discharge pipe 11, thereby achieving the effect of discharging the raw materials after crushing.

[0041] The power of the heating element 14 can be adjusted by controlling the control panel 7, thereby regulating the temperature inside the feed additive fermentation tank 2.

[0042] The technological advancements of this invention compared to existing technologies are as follows: through the cooperation of various components, it can not only achieve the effect of sealed fermentation of feed additives, but also achieve the effect of crushing and processing feed additives, thereby improving processing efficiency. Moreover, the structure is simple and the practicality is higher.

Claims

1. A sealed anaerobic fermentation container for feed additives, characterized in that, Includes a base plate (1), a crushing mechanism, and a control panel (7); The base plate (1) is provided with a feed additive fermentation tank (2), the top of the feed additive fermentation tank (2) is provided with a support (5), the support (5) is provided with a crushing mechanism (6) and a control panel (7), a circular tube (3) is rotatably connected to the feed additive fermentation tank (2), a spiral plate (4) is fixedly connected to the circular tube (3), the spiral plate (4) is adapted to the feed additive fermentation tank (2), the top of the feed additive fermentation tank (2) is provided with a discharge mechanism, the discharge mechanism and the crushing mechanism (6) are both connected to the circular tube (3) and the control panel (7); The crushing mechanism (6) includes a rotating shaft (61), a crushing blade (62), a motor (64), and a gear four (67). The rotating shaft (61) is rotatably connected to the circular tube one (3).

2. The sealed anaerobic fermentation container for feed additives according to claim 1, characterized in that: Multiple crushing blades (62) are fixedly installed on the rotating shaft (61). The multiple crushing blades (62) are all adapted to the circular tube (3). A gear (63) is fixedly connected to one end of the rotating shaft (61). A feed inlet (13) is opened at one end of the circular tube (3), and a discharge outlet (12) is opened at the other end of the circular tube (3).

3. A sealed anaerobic fermentation container for feed additives according to claim 2, characterized in that: The motor (64) is fixedly mounted on the bracket (5), and the output end of the motor (64) is fixedly connected to the gear two (65), which meshes with the gear one (63).

4. A sealed anaerobic fermentation container for feed additives according to claim 3, characterized in that: The output end of the motor (64) is fixedly connected to a gear three (66), and a gear four (67) is meshed on the gear three (66). The gear four (67) is fixedly connected to the round tube one (3), and the motor (64) is connected to the control panel (7).

5. A sealed anaerobic fermentation container for feed additives according to claim 2, characterized in that: The discharge mechanism includes a second round tube (8), a cylinder (9), a piston (10), and a discharge pipe (11). The bottom of the feed additive fermentation tank (2) is sealed with a second round tube (8), and one end of the second round tube (8) is in contact with one end of the first round tube (3).

6. A sealed anaerobic fermentation container for feed additives according to claim 5, characterized in that: A piston (10) is slidably connected inside the second round tube (8). The top of the piston (10) is flush with the discharge port (12) and is in contact with one end of the rotating shaft (61). A discharge pipe (11) is sealed and connected to the second round tube (8).

7. A sealed anaerobic fermentation container for feed additives according to claim 6, characterized in that: A cylinder (9) is fixedly installed at the bottom of the second round tube (8). One end of the cylinder (9) is fixedly connected to the piston (10). The cylinder (9) is connected to the control panel (7).

8. A sealed anaerobic fermentation container for feed additives according to claim 6, characterized in that: A sealing ring is fixedly sleeved on the piston (10), and the sealing ring is slidably connected to the round tube (8). The thickness of the piston (10) is greater than the diameter of the discharge pipe (11).

9. A sealed anaerobic fermentation container for feed additives according to claim 1, characterized in that: A bearing is fixedly sleeved on the first round tube (3), and the outer wall of the bearing is fixedly connected to the feed additive fermentation tank (2). A bearing is fixedly sleeved on the rotating shaft (61), and the outer wall of the bearing is fixedly connected to the first round tube (3).

10. A sealed anaerobic fermentation container for feed additives according to claim 1, characterized in that: The feed additive fermentation tank (2) is provided with an installation groove, and a heating pipe (14) is fixedly installed in the installation groove. The heating pipe (14) is connected to the control panel (7). The top of the feed additive fermentation tank (2) is provided with a feed pipe and an exhaust pipe.

Citation Information

Patent Citations

  • Manufacture method of traditional Chinese medicinal feed additive for pigs

    CN107080079A