Mushroom stick inoculation machine

By setting a conical groove at the bottom of the liquid storage tank of the bacteria rod inoculation machine, and stirring and transporting the seed liquid with twisted dragon leaves and leaves, the problems of seed liquid precipitation and air pressure change in the prior art are solved, and uniform inoculation of the seed liquid and air pressure stability of the liquid storage tank are achieved.

CN222827790UActive Publication Date: 2025-05-06ANHUI HUIYUAN ECOLOGICAL AGRICULTURE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421871744.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-06
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

In existing bacterial rod inoculation devices, liquid bacteria are prone to precipitation, resulting in poor inoculation uniformity, and the fan supply will affect the internal air pressure of the seed liquid tank, which may lead to expansion or cracks.

Method used

A bacteria rod inoculation machine was designed. By setting a conical groove at the bottom of the liquid storage tank, and using twisted dragon leaves to transport the seed liquid at the bottom to the top, mixing with the leaves to avoid the deposition of the seed liquid. At the same time, the air pressure inside the liquid storage tank is not used without a fan supply, and the air pressure inside the liquid storage tank is stable.

Benefits of technology

The uniform stirring of the seed liquid is achieved, precipitation is avoided, and the internal air pressure of the liquid reservoir is not affected, and the risk of expansion or cracking is avoided.

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Abstract

The utility model discloses a mushroom stick inoculation machine, which belongs to the field of mushroom stick cultivation, and comprises a fixed frame, a movable seat, a plurality of mushroom sticks, a plurality of mushroom sticks and a plurality of mushroom sticks, inoculation pipes are uniformly distributed on the movable seat; the movable seat is provided with an inner groove; the inner tank is communicated with the inoculation pipe; a delivery pump is mounted at a liquid outlet of the liquid storage tank; the delivery pump is communicated with the inner tank through a hose; a conical groove is formed in the bottom of the liquid storage tank; the stirring shaft I is rotationally connected with the liquid storage tank; a sleeve is fixedly mounted on the stirring shaft I; blades are uniformly distributed on the circumference of the sleeve; compared with the prior art, the conical tank is arranged to control the precipitation position to be located in the conical tank, seed liquid at the bottom is conveyed to the upper portion through the auger blade, and the inner seed liquid is evenly stirred in cooperation with the blades; due to the fact that a fan is not needed for air supply, the air pressure in the liquid storage tank cannot be changed, and breakage caused by expansion of the liquid storage tank is avoided.
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Description

Technical Field

[0001] The utility model relates to the field of mushroom stick cultivation, in particular to a mushroom stick inoculating machine. Background Art

[0002] The mushroom stick is the cultivation carrier of edible fungi. After slowly changing color, it becomes edible fungi, such as shiitake mushrooms, straw mushrooms, button mushrooms, black fungus, white fungus, hericium erinaceus, bamboo fungus, matsutake mushroom, etc., and shiitake mushrooms are a kind of mushroom product of edible fungi. When planting edible fungi, it is necessary to inoculate the inside of the mushroom stick with the strain, and an inoculation device is required for inoculating the strain. The liquid strain of the existing inoculation device is prone to precipitation, resulting in poor inoculation uniformity; the patent with application number CN202122504572.1 proposes a high-efficiency automatic inoculation device for shiitake mushroom sticks, which can be connected by setting a first connecting pipe and an internal threaded joint to cooperate with a second connecting pipe and an external threaded joint on a seed liquid tank, so that the first connecting pipe and the second connecting pipe can be connected, which is convenient for the seed liquid tank to provide inoculation liquid, and a stirring impeller is set inside the seed liquid tank, and the driving motor inside the base drives the stirring impeller to stir the seed liquid in real time, and the fan cooperates with the air duct, so that the flowing gas turns over the seed liquid at the bottom of the seed liquid tank, thereby avoiding the precipitation of the seed liquid and causing the problem of uneven inoculation; however, the gas generated by the cooperation of the fan and the air duct will affect the internal air pressure of the seed liquid tank, which is likely to cause the seed liquid tank to expand or even crack; therefore, a mushroom stick inoculator is proposed. Utility Model Content

[0003] In view of the shortcomings of the prior art, the utility model proposes a mushroom stick inoculator which controls the sedimentation position in the conical trough by setting a conical trough, transports the seed liquid at the bottom to the top through auger blades, and cooperates with the blades to stir the internal seed liquid evenly; since there is no need to rely on a fan for air supply, the air pressure inside the liquid storage tank will not change, thereby avoiding rupture caused by expansion of the liquid storage tank.

[0004] At the same time, tie the bottom.

[0005] The purpose of the utility model can be achieved through the following technical solutions:

[0006] A mushroom stick inoculation machine, comprising:

[0007] The fixed frame is provided with a movable seat that can move linearly; the movable seat is evenly distributed with inoculation tubes; the movable seat is provided with an inner groove; the inner groove is connected with the inoculation tube; the movable seat drives the inoculation tube to move up and down, and the inoculation tube is inserted into the bacterial stick to transport the bacterial liquid for inoculation, that is, the seed liquid;

[0008] A liquid storage tank, whose liquid outlet is equipped with a delivery pump; the delivery pump is connected to the inner tank through a hose; a conical groove is provided at the bottom of the liquid storage tank; the liquid storage tank is used to store the seed liquid, and the conical groove is provided at the flow hole at the bottom of the second stirring shaft to collect the seed liquid;

[0009] A stirring shaft 1 is rotatably connected to the liquid storage tank; a sleeve is fixedly mounted on the stirring shaft 1; blades are evenly distributed around the circumference of the sleeve; the stirring shaft 1 drives the sleeve and the blades to rotate, thereby stirring the seed liquid inside;

[0010] A stirring shaft 2 is rotatably connected to the stirring shaft 1; the stirring shaft 2 is provided with an auger blade inside the sleeve; the sleeve is provided with flow holes on one side close to the conical groove and the stirring shaft 1; the stirring shaft 2 drives the auger blade to rotate, and the bacterial liquid at the bottom of the conical groove is transported from the bottom flow hole to the upper end along the inner wall of the sleeve to avoid the deposition of the seed liquid;

[0011] Before inoculation, the seed liquid is stored in the liquid storage tank. During inoculation, the bacteria stick is placed at the lower end of the inoculation tube, and then the inoculation tube is driven downward to be inserted into the bacteria stick; then the seed liquid in the liquid storage tank is delivered to the bacteria stick through the delivery pump; in order to avoid the sedimentation of the seed liquid; by driving the two stirring shafts to rotate, the stirring shaft 2 drives the auger blades to rotate, and the bacteria liquid at the bottom of the conical groove is delivered from the bottom flow hole to the upper end along the inner wall of the sleeve, so that the sleeve can drive the internal seed liquid to flow from bottom to top, and the seed liquid outside the sleeve will flow from top to bottom, and the sleeve and the blades are driven to rotate by driving the stirring shaft 1, so that the flowing seed liquid is stirred, so that the seed liquid is stirred evenly; since air supply is not required throughout the process, it will not cause changes in the air pressure inside the liquid storage tank.

[0012] The nouns, conjunctions or adjectives involved in the above technical solution are explained as follows:

[0013] The fixed connection in this application refers to a connection without any relative movement after the parts or components are installed; common forms include using screws, splines, wedge pins, etc. to fix the components together. This type of connection can be disassembled during maintenance without damaging the parts. This type of connection can also be called a detachable fixed connection; there are also methods such as welding, riveting, and tenoning. Since these methods require forging, sawing, or oxygen cutting to disassemble during maintenance or replacement, spare parts generally cannot be reused. The rotational connection in this application refers to a connection in which the parts produce relative rotational movement relative to the fixed part after the parts or components are installed. Common forms include installing bearings on the fixed part, installing the parts on the inner or outer ring of the bearing, and using the bearing to complete the rotational movement. The sliding connection in this application refers to a connection in which the parts can move on the fixed part after the parts or components are installed.

[0014] In some embodiments, it includes a workbench; the workbench is symmetrically rotatably connected to a conveying shaft; the conveying shafts are all equipped with conveying rollers; the conveying rollers are connected through a conveyor belt; the conveying shaft is driven by a second motor; the second motor is fixedly connected to the workbench; the workbench is provided with a baffle that can move linearly at the upper end of the conveyor belt; the workbench is provided with push plates that can move linearly toward or away from each other on both sides of the conveyor belt.

[0015] In some embodiments, the stirring shaft one is fixedly mounted with bevel gear one; the stirring shaft two is fixedly mounted with bevel gear two; the liquid storage tank is fixedly mounted with motor one; the motor one is fixedly mounted with bevel gear three; the bevel gear three is meshed with both bevel gear one and bevel gear two.

[0016] In some embodiments, the fixed frame is fixedly mounted with an electric push rod 1 and an electric push rod 2; the electric push rod 1 is fixedly connected to the movable seat; and the electric push rod 2 is connected to the baffle.

[0017] In some embodiments, the workbench is symmetrically and fixedly mounted with three electric push rods; and the push plates are respectively fixedly connected to one of the three electric push rods.

[0018] In some embodiments, the workbench is fixedly provided with a recovery box at the lower end of the conveyor belt; the workbench is provided with a brush between the recovery box and the conveyor belt; and the brush is pressed against the conveyor belt.

[0019] In some embodiments, the wall of the inoculation tube is uniformly distributed with through holes.

[0020] Beneficial effects of the utility model:

[0021] The utility model controls the sedimentation position in the conical groove by setting a conical groove, transports the seed liquid at the bottom to the top by means of auger blades, and cooperates with the blades to stir the internal seed liquid evenly; since there is no need to rely on a fan for air supply, the air pressure inside the liquid storage tank will not change, thereby avoiding rupture caused by expansion of the liquid storage tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The utility model is further described below in conjunction with the accompanying drawings.

[0023] Figure 1 A schematic diagram of the three-dimensional structure of this application;

[0024] Figure 2 A side view schematic diagram of the present application;

[0025] Figure 3 This is a schematic diagram of the inoculation structure of this application;

[0026] Figure 4 This is a schematic diagram of the interior of the liquid storage tank of this application. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0028] In the description of the present invention, it should be understood that the terms "opening", "upper", "lower", "thickness", "top", "middle", "length", "inside", "all around" and the like indicating orientation or positional relationship are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0029] In the description of this specification, the description with reference to the terms "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0030] The utility model controls the sedimentation position in the conical groove by setting a conical groove, transports the seed liquid at the bottom to the top by means of auger blades, and cooperates with the blades to stir the internal seed liquid evenly; since there is no need to rely on a fan for air supply, the air pressure inside the liquid storage tank will not change, thereby avoiding rupture caused by expansion of the liquid storage tank.

[0031] Please refer to Figures 1 to 4 , a mushroom stick inoculation machine, comprising:

[0032] The fixed frame 1 is provided with a movable seat 2 that can move linearly; the movable seat 2 is evenly distributed with inoculation tubes 3; the movable seat 2 is provided with an inner groove; the inner groove is connected with the inoculation tube 3; the movable seat 2 drives the inoculation tube 3 to move up and down, and the inoculation tube 3 is inserted into the bacterial stick to transport the bacterial liquid for inoculation, that is, the seed liquid;

[0033] The liquid storage tank 4 has a delivery pump 6 installed at its liquid outlet; the delivery pump 6 is connected to the inner tank through a hose 7; a conical groove 5 is provided at the bottom of the liquid storage tank 4; the liquid storage tank 4 is used to store the seed liquid, and the conical groove 5 is provided at the flow hole 13 at the bottom of the stirring shaft 11 to collect the seed liquid;

[0034] A stirring shaft 8 is rotatably connected to the liquid storage tank 4; a sleeve 9 is fixedly mounted on the stirring shaft 8; blades 10 are evenly distributed around the circumference of the sleeve 9; the stirring shaft 8 drives the sleeve 9 and the blades 10 to rotate, thereby stirring the seed liquid inside;

[0035] The stirring shaft 11 is rotatably connected to the stirring shaft 8; the stirring shaft 11 is provided with an auger blade 12 inside the sleeve 9; the sleeve 9 is provided with a flow hole 13 on one side close to the conical groove 5 and the stirring shaft 8; the stirring shaft 11 drives the auger blade 12 to rotate, and the bacterial liquid at the bottom of the conical groove 5 is transported to the upper end from the bottom flow hole 13 along the inner wall of the sleeve 9 to avoid the deposition of the seed liquid;

[0036] Before inoculation, the seed liquid is stored in the liquid storage tank 4. During inoculation, the bacteria stick is placed at the lower end of the inoculation tube 3, and then the inoculation tube 3 is driven to move downward and inserted into the bacteria stick; then the seed liquid in the liquid storage tank 4 is delivered to the bacteria stick through the delivery pump 6; in order to avoid the sedimentation of the seed liquid; by driving the two stirring shafts to rotate, the stirring shaft 11 drives the auger blade 12 to rotate, and the bacteria liquid at the bottom of the conical groove 5 is delivered from the bottom flow hole 13 to the upper end along the inner wall of the sleeve 9, so that the sleeve 9 can drive the internal seed liquid to flow from bottom to top, and the seed liquid outside the sleeve 9 will flow from top to bottom, and the sleeve 9 and the blade 10 are driven to rotate by driving the stirring shaft 8, so that the flowing seed liquid is stirred, so that the seed liquid is stirred evenly; since air supply is not required throughout the process, it will not cause changes in the air pressure inside the liquid storage tank 4.

[0037] In the present application, all parts that can move linearly can be realized by linear drive mechanisms, such as common linear drive mechanisms such as hydraulic telescopic rods, electric telescopic rods, and pneumatic telescopic rods; of course, they can also be replaced by other structures that can change the position of the connection ends, such as the chain lifting mechanism used in forklifts, the scissor-type telescopic mechanism used in scissor lifts, the spiral lifting mechanism in spiral lifts, etc.

[0038] The hose in the present application is one of a metal hose, a corrugated hose, a rubber hose, and a plastic hose; among which a corrugated hose is preferred; the corrugated hose is installed in a liquid delivery system as a flexible pressure-resistant pipe fitting to compensate for the mutual displacement of the connection ends of pipelines or machines and equipment, absorb vibration energy, and can play a role in vibration reduction and noise reduction. It has many characteristics such as good flexibility, light weight, corrosion resistance, fatigue resistance, and high and low temperature resistance.

[0039] In some embodiments, the workbench 14 is provided with a conveying shaft 14 that is symmetrically rotatable; conveying shafts are provided with conveying rollers; conveying rollers are connected through conveying belts 15; the conveying shafts are driven by a second motor; the second motor is fixedly connected to the workbench 14, and after the second motor drives the conveying rollers to rotate, the conveying belt 15 is driven to rotate; the workbench 14 is provided with a baffle 16 that can move linearly at the upper end of the conveying belt 15; the workbench 14 is provided with push plates 17 that can move linearly toward or away from each other on both sides of the conveying belt 15; the conveying belt 15 is used to convey However, due to the placement problem, the position of some mushroom sticks will be skewed, resulting in the failure of some of the inoculation tube 3 to be inserted into the mushroom stick; before the conveyor belt 15 transports the mushroom stick to the inoculation tube 3, the baffle 16 is driven to move downward, and one end of the inclined mushroom stick first contacts the baffle 16 and is then blocked, and the other end continues to move under the action of the conveyor belt 15 until it is against the baffle 16. At this time, the inclination angle of the mushroom stick is corrected, and then the push plates 17 on both sides are used to adjust the position of the mushroom stick on the conveyor belt 15 to make it centered, which is convenient for the insertion of the inoculation tube 3.

[0040] In some embodiments, the stirring shaft 8 is fixedly mounted with a bevel gear 18; the stirring shaft 2 11 is fixedly mounted with a bevel gear 2 19; the liquid storage tank 4 is fixedly mounted with a motor 21; the motor 21 is fixedly mounted with a bevel gear 3 20; the bevel gear 3 20 is meshed with both the bevel gear 18 and the bevel gear 2 19; the motor 21 drives the bevel gear 18 and the bevel gear 2 19 to rotate through the bevel gear 3 20, thereby driving the stirring shaft 1 8 and the stirring shaft 2 11 to rotate, thereby driving the blades 10 and the auger blades 12 to rotate.

[0041] In some embodiments, the fixed frame 1 is fixedly mounted with an electric push rod 1 22 and an electric push rod 2 23; the electric push rod 1 22 is fixedly connected to the movable seat 2; the electric push rod 23 is connected to the baffle 16; the electric push rod is used to drive the movable seat 2 and the baffle 16 to move linearly.

[0042] In some embodiments, the workbench 14 is symmetrically fixedly installed with three electric push rods 24; the push plate 17 is fixedly connected to one of the three electric push rods 24 respectively; the three electric push rods 24 are used to move the push plate 17.

[0043] In some embodiments, the workbench 14 is fixedly provided with a recovery box 25 at the lower end of the conveyor belt 15; the workbench 14 is provided with a brush 26 between the recovery box 25 and the conveyor belt 15; the brush 26 is against the conveyor belt 15; the conveyor belt 15 will be stained with debris during inoculation, which adds burden to the conveyor belt 15, and the conveyor belt 15 is in constant contact with the brush 26 during continuous rotation, thereby sweeping the soil on the conveyor belt 15 into the recovery box 25.

[0044] In some embodiments, the tube wall of the inoculation tube 3 is evenly distributed with through holes. The provision of the through holes allows the inoculation tube 3 to have a drainage port, thereby increasing the inoculation speed and the uniformity of the seed liquid distribution.

[0045] The mushroom stick inoculator provided by the utility model is further described below in conjunction with the accompanying drawings and implementation modes.

[0046] A mushroom stick inoculation machine, comprising:

[0047] The workbench 14 is symmetrically rotatably connected with a conveying shaft; the conveying shafts are all equipped with conveying rollers; the conveying rollers are connected through a conveying belt 15; the conveying shaft is driven by a second motor; the second motor is fixedly connected to the workbench 14, and after the second motor drives the conveying rollers to rotate, the conveying belt 15 is driven to rotate; the workbench 14 is provided with a baffle 16 that can move linearly at the upper end of the conveying belt 15; the workbench 14 is provided with push plates 17 that can move linearly toward or away from each other on both sides of the conveying belt 15; the conveying belt 15 is used to transport mushroom sticks, but Due to placement problems, the position of some mushroom sticks will be skewed, resulting in the failure of some parts in the inoculation tube 3 to be inserted into the mushroom sticks; before the conveyor belt 15 transports the mushroom sticks to the inoculation tube 3, the baffle 16 is driven downward first, and one end of the inclined mushroom stick first contacts the baffle 16 and is then blocked, and the other end continues to move under the action of the conveyor belt 15 until it contacts the baffle 16. At this time, the inclination angle of the mushroom stick is corrected, and then the push plates 17 on both sides are used to adjust the position of the mushroom stick on the conveyor belt 15 to make it centered, which is convenient for the insertion of the inoculation tube 3.

[0048] The fixed frame 1 is provided with a movable seat 2 that can move linearly; the movable seat 2 is evenly distributed with inoculation tubes 3; the movable seat 2 is provided with an inner groove; the inner groove is connected with the inoculation tube 3; the movable seat 2 drives the inoculation tube 3 to move up and down, and the inoculation tube 3 is inserted into the bacterial stick to transport the bacterial liquid for inoculation, that is, the seed liquid;

[0049] The liquid storage tank 4 has a delivery pump 6 installed at its liquid outlet; the delivery pump 6 is connected to the inner tank through a hose 7; a conical groove 5 is provided at the bottom of the liquid storage tank 4; the liquid storage tank 4 is used to store the seed liquid, and the conical groove 5 is provided at the flow hole 13 at the bottom of the stirring shaft 11 to collect the seed liquid;

[0050] A stirring shaft 8 is rotatably connected to the liquid storage tank 4; a sleeve 9 is fixedly mounted on the stirring shaft 8; blades 10 are evenly distributed around the circumference of the sleeve 9; the stirring shaft 8 drives the sleeve 9 and the blades 10 to rotate, thereby stirring the seed liquid inside;

[0051] The stirring shaft 11 is rotatably connected to the stirring shaft 8; the stirring shaft 11 is provided with an auger blade 12 inside the sleeve 9; the sleeve 9 is provided with a flow hole 13 on one side close to the conical groove 5 and the stirring shaft 8; the stirring shaft 11 drives the auger blade 12 to rotate, and the bacterial liquid at the bottom of the conical groove 5 is transported to the upper end from the bottom flow hole 13 along the inner wall of the sleeve 9 to avoid the deposition of the seed liquid;

[0052] A bevel gear 18 is fixedly mounted on the stirring shaft 8; a bevel gear 2 19 is fixedly mounted on the stirring shaft 2 11; a motor 21 is fixedly mounted on the liquid storage tank 4; a bevel gear 3 20 is fixedly mounted on the motor 21; the bevel gear 3 20 is meshed with both the bevel gear 18 and the bevel gear 2 19; the motor 21 drives the bevel gear 18 and the bevel gear 2 19 to rotate through the bevel gear 3 20, thereby driving the stirring shaft 1 8 and the stirring shaft 2 11 to rotate, thereby driving the blade 10 and the auger blade 12 to rotate.

[0053] The fixed frame 1 is fixedly installed with an electric push rod 1 22 and an electric push rod 2 23; the electric push rod 1 22 is fixedly connected to the movable seat 2; the electric push rod 23 is connected to the baffle 16; the electric push rod is used to drive the movable seat 2 and the baffle 16 to move linearly. The workbench 14 is symmetrically fixedly installed with electric push rods 3 24; the push plate 17 is fixedly connected to one electric push rod 3 24 respectively; the electric push rod 3 24 is used to push the push plate 17 to move.

[0054] Before inoculation, the seed liquid is stored in the liquid storage tank 4. During inoculation, the bacteria stick is placed at the lower end of the inoculation tube 3, and then the inoculation tube 3 is driven to move downward and inserted into the bacteria stick; then the seed liquid in the liquid storage tank 4 is delivered to the bacteria stick through the delivery pump 6; in order to avoid the sedimentation of the seed liquid; by driving the two stirring shafts to rotate, the stirring shaft 11 drives the auger blade 12 to rotate, and the bacteria liquid at the bottom of the conical groove 5 is delivered from the bottom flow hole 13 to the upper end along the inner wall of the sleeve 9, so that the sleeve 9 can drive the internal seed liquid to flow from bottom to top, and the seed liquid outside the sleeve 9 will flow from top to bottom, and the sleeve 9 and the blade 10 are driven to rotate by driving the stirring shaft 8, so that the flowing seed liquid is stirred, so that the seed liquid is stirred evenly; since air supply is not required throughout the process, it will not cause changes in the air pressure inside the liquid storage tank 4.

[0055] The above shows and describes the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and descriptions are only for explaining the principle of the utility model. Without departing from the spirit and scope of the utility model, the utility model may have various changes and improvements, and these changes and improvements fall within the scope of the utility model to be protected.

Claims

1. A mushroom stick inoculation machine, characterized in that: include: A fixed frame (1) is provided with a movable seat (2) that can move linearly; the movable seat (2) is evenly distributed with inoculation tubes (3); the movable seat (2) is provided with an inner groove; the inner groove is connected to the inoculation tube (3); A liquid storage tank (4) is provided with a delivery pump (6) at its liquid outlet; the delivery pump (6) is connected to the inner tank via a hose (7); a conical groove (5) is provided at the bottom of the liquid storage tank (4); A stirring shaft (8) is rotatably connected to the liquid storage tank (4); a sleeve (9) is fixedly mounted on the stirring shaft (8); blades (10) are evenly distributed around the circumference of the sleeve (9); A stirring shaft 2 (11) is rotatably connected to the stirring shaft 1 (8); the stirring shaft 2 (11) is provided with an auger blade (12) inside the sleeve (9); and a flow hole (13) is provided on one side of the sleeve (9) close to the conical groove (5) and the stirring shaft 1 (8).

2. The mushroom stick inoculation machine according to claim 1, characterized in that: The invention comprises a workbench (14); the fixed frame (1) is fixedly connected to the workbench (14); the liquid storage tank (4) is connected to the fixed frame (1); the workbench (14) is symmetrically rotatably connected to a conveying shaft; the conveying shafts are all equipped with conveying rollers; the conveying rollers are connected via a conveying belt (15); the conveying shafts are driven by a second motor; the second motor is fixedly connected to the workbench (14); the workbench (14) is provided with a baffle (16) which can be moved linearly at the upper end of the conveying belt (15); the workbench (14) is provided with push plates (17) which can be moved linearly towards or away from each other on both sides of the conveying belt (15).

3. The mushroom stick inoculation machine according to claim 2, characterized in that: The stirring shaft 1 (8) is fixedly mounted with a bevel gear 1 (18); the stirring shaft 2 (11) is fixedly mounted with a bevel gear 2 (19); the liquid storage tank (4) is fixedly mounted with a motor 1 (21); the motor 1 (21) is fixedly mounted with a bevel gear 3 (20); the bevel gear 3 (20) is meshed with both the bevel gear 1 (18) and the bevel gear 2 (19).

4. The mushroom stick inoculation machine according to claim 3, characterized in that: The fixed frame (1) is fixedly mounted with an electric push rod 1 (22) and an electric push rod 2 (23); the electric push rod 1 (22) is fixedly connected to the movable seat (2); and the electric push rod 2 (23) is connected to the baffle (16).

5. The mushroom stick inoculation machine according to claim 4, characterized in that: The workbench (14) is symmetrically and fixedly mounted with three electric push rods (24); the push plates (17) are respectively fixedly connected to one of the three electric push rods (24).

6. The mushroom stick inoculation machine according to claim 5, characterized in that: The workbench (14) is fixedly provided with a recovery box (25) at the lower end of the conveyor belt (15); the workbench (14) is provided with a brush (26) between the recovery box (25) and the conveyor belt (15); and the brush (26) abuts against the conveyor belt (15).

7. The mushroom stick inoculation machine according to claim 1, characterized in that: The tube wall of the inoculation tube (3) is evenly distributed with through holes.

Citation Information

Patent Citations

  • High-efficiency mushroom stick automatic inoculation device

    CN216018198U