Turning and throwing machine for organic fertilizer fermentation for producing organic fertilizer by utilizing wormcast
By designing a fermentation thrower for organic fertilizer using earthworm manure, the mount is driven to move with electric push rods to form a relatively closed space, the problem of particulate matter dissipation caused by the existing thrower is solved, significantly improving the workshop environment and improving the production efficiency of organic fertilizers.
Patent Information
- Application Number
- CN202510401815.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-05-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When used, the existing trough thrower will cause fine particulate matter and dust to escape into the air, pollute the workshop environment, endanger the health of staff, and increase the difficulty of equipment maintenance.
A fermentation and throwing machine for organic fertilizer using earthworm manure is designed. The mounting frame is driven by an electric push rod to move, so that the first barrier cloth is unfolded horizontally and the second barrier cloth is unfolded vertically, forming a relatively closed space, limiting the material to be thrown in the closed area and preventing particulate matter from dissipating.
Significantly reduce dust phenomenon, improve the working environment of the workshop, ensure uniform mixing of materials, accelerate the fermentation process, and improve the quality and efficiency of organic fertilizer production.
Smart Images

Figure CN120025199A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of tillers, and in particular to an organic fertilizer fermentation tiller for producing organic fertilizer using earthworm castings. Background Art
[0002] In the field of modern agriculture and environmental protection, the production of organic fertilizer has become an important way of resource recycling. As a high-quality organic fertilizer raw material, earthworm manure has attracted much attention because it is rich in organic matter, microorganisms and nutrients required for plant growth.
[0003] In the fermentation process of earthworm manure organic fertilizer, the turning machine plays an indispensable role as a key equipment. The turning machine promotes oxygen penetration by turning the materials, accelerates the fermentation process, and ensures the uniform mixing of fertilizer components. When in use, the existing trough turning machine mainly relies on a mechanical arm or spiral blade to throw the fertilizer in the trough upwards, and then let it fall freely back into the trough. Although this operation method can achieve effective turning of the fertilizer, its working principle will inevitably cause some fine particles and dust to escape into the air. These escaped substances not only contain incompletely fermented organic matter, but may also be mixed with some harmful gases and odor molecules, which will pollute the workshop environment. If the workers are in this environment for a long time, their health may be threatened, such as causing respiratory diseases or other occupational diseases. In addition, the flying dust may also adhere to the surface of the equipment, increasing the difficulty of equipment maintenance and may cause an increase in the failure rate. Summary of the invention
[0004] In view of this, the present invention provides an organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings, which can overcome the disadvantage that the existing turning machines will cause fine particles and dust to escape into the air during use, thereby causing pollution to the workshop environment.
[0005] The technical solution is: an organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm manure, comprising: a mounting plate; a controller, mounted on the top of the mounting plate; an electric push rod, symmetrically mounted on the top of the mounting plate; a mounting frame, connected to the telescopic rod of the electric push rod; a connecting plate, symmetrically connected to the bottom of the mounting plate; a first roller, rotatably connected to the connecting plate; a first cloth stopper, wound on the first roller, and the end of the first cloth stopper is connected to the mounting frame; a spring, connecting the first roller and the connecting plate; a second roller, rotatably connected to the mounting frame; a second cloth stopper, wound on the second roller; a connecting rod, connected to the end of the second cloth stopper; a first drive motor, mounted on the side of the mounting frame, and the output shaft of the first drive motor is connected to the end of the second roller; a supporting mechanism, arranged on the mounting frame, for supporting the mounting frame; a moving mechanism, arranged on the mounting plate, for driving the mounting plate to move; a turning mechanism, arranged on the mounting plate, for turning the material.
[0006] As a further preferred solution, the supporting mechanism includes: a first rotating rod rotatably connected to the mounting frame; and supporting wheels symmetrically connected to both ends of the first rotating rod.
[0007] As a further preferred scheme, the moving mechanism includes: a support plate, symmetrically connected to the bottom of the mounting plate; a second rotating rod, rotatably connected to the support plate; rollers, symmetrically connected to both ends of the second rotating rod; a reduction motor, installed at the bottom of the mounting plate; a first right-angle gearbox, installed at the bottom of the mounting plate, and the input end of the first right-angle gearbox is connected to the output shaft of the reduction motor, and the output end of the first right-angle gearbox is connected to one of the second rotating rods.
[0008] As a further preferred embodiment, the flipping mechanism includes: a support seat, symmetrically connected to the top of the mounting plate; a rotating rod, rotatably connected to the support seat; a second drive motor, installed on the top of the mounting plate; a second right-angle gear box, installed on the top of the mounting plate, and the input end of the second right-angle gear box is connected to the output shaft of the second drive motor, and the output end of the second right-angle gear box is connected to the rotating rod; a chain transmission box, symmetrically installed on the mounting plate, and the input end of the chain transmission box is connected to the end of the rotating rod; a vertical plate, symmetrically connected to the bottom of the mounting plate; a rotating shaft, rotatably connected to the vertical plate, and the end of the rotating shaft is connected to the output end of the chain transmission box; flipping teeth, connected to the rotating shaft at circumferential intervals.
[0009] As a further preferred solution, it also includes: a fixed plate connected to the side of the vertical plate; a servo motor installed on the fixed plate; a rotating frame connected to the output shaft of the servo motor; and a shovel plate connected to the rotating frame.
[0010] As a further preferred scheme, it also includes: a material storage box, connected to the top of the mounting plate; a feed pump, installed on the top of the mounting plate, and the feed port of the feed pump is connected to the side of the material storage box and maintained in communication; a connecting pipe, connected to the mounting frame, and one end of the connecting pipe is connected to the discharge port of the feed pump and maintained in communication; a fixed pipe, connected to the bottom of the mounting frame, and the other end of the connecting pipe is connected to the fixed pipe and maintained in communication; and nozzles are installed at intervals at the bottom of the fixed pipe and maintained in communication.
[0011] As a further preferred scheme, it also includes: a first scraper, symmetrically connected to the bottom of the mounting plate, and the end of the first scraper is in contact with the surface of the first cloth baffle; a second scraper, symmetrically connected to the mounting frame, and the end of the second scraper is in contact with the surface of the second cloth baffle; a rotating scraper, rotatably connected to the side of the chain transmission box; a tension spring, connecting the top of the rotating scraper and the bottom of the mounting plate.
[0012] As a further preferred solution, it also includes: a mounting rod, which is symmetrically connected to the top of the mounting plate; a laser emitter, and the mounting plate is installed on the mounting rod.
[0013] The present invention has the following advantages: 1. The present invention drives the mounting frame to move through an electric push rod, so that the first cloth can be horizontally unfolded, and then the second roller is driven to rotate by the first drive motor, so that the second cloth can be vertically unfolded. The two work together to form a relatively closed space during the flipping process, and the materials in the fermentation tank are confined to the closed area for flipping, so as to prevent fine particles and dust from escaping into the air, thereby significantly reducing dust and improving the working environment of the workshop.
[0014] 2. The present invention can scoop up the materials accumulated at the bottom of the fermentation tank through the synergistic effect of the servo motor and the shovel plate, so that it can fully contact with the turning teeth, and then the turning teeth can turn the materials upward through high-speed rotation. This design can not only expand the turning range, but also ensure the uniform mixing of the materials, further accelerate the fermentation process, and improve the quality and efficiency of organic fertilizer production.
[0015] 3. Through the combined use of the storage box, the feed pump, the connecting pipe and the nozzle, the uniform spraying of the agent can be completed synchronously during the turning and throwing process. Specifically, the feed pump extracts the agent from the storage box and transports it to the nozzle at the bottom of the mounting frame through the connecting pipe, and the agent is accurately sprayed into the thrown material. This design can not only achieve full mixing of the agent and the material, but also effectively promote the rapid decomposition of organic fertilizer, increase the content of effective ingredients such as humic acid, thereby significantly improving the quality of fertilizer. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0017] Figure 2 It is a schematic diagram of the specific structure on the mounting frame of the present invention.
[0018] Figure 3 It is a schematic diagram of the installation of the mobile mechanism of the present invention.
[0019] Figure 4 It is a schematic diagram of the installation of the flipping mechanism of the present invention.
[0020] Figure 5 The figure is a schematic diagram of the installation of the fixed plate, the servo motor, the rotating frame and the shovel plate of the present invention.
[0021] Figure 6 It is a schematic diagram of the installation of the material storage box, the feed pump, the connecting pipe, the fixing pipe and the nozzle of the present invention.
[0022] Figure 7 This is a schematic diagram of the installation of the first scraper of the present invention.
[0023] Figure 8 It is a schematic diagram of the installation of the second scraper of the present invention.
[0024] Fig. 9It is a schematic diagram of the installation of the rotating scraper and the tension spring of the present invention.
[0025] Among them: 1-mounting plate, 2-controller, 3-electric push rod, 4-mounting frame, 5-connecting plate, 501-first roller, 6-first cloth stop, 7-spring, 8-second roller, 9-second cloth stop, 10-connecting rod, 11-first drive motor, 12-first rotating rod, 13-support wheel, 14-support plate, 15-second rotating rod, 16-roller, 17-reduction motor, 18-first right angle gear box, 19-support seat, 20-rotating rod, 2 1-the second driving motor, 22-the second right-angle gear box, 23-the chain transmission box, 24-the vertical plate, 241-the rotating shaft, 25-the flipping gear, 26-the fixed plate, 27-the servo motor, 28-the rotating frame, 29-the shovel plate, 30-the material storage box, 31-the feeding pump, 32-the connecting pipe, 33-the fixed pipe, 34-the nozzle, 35-the first scraper, 36-the second scraper, 37-the rotating scraper, 38-the tension spring, 39-the mounting rod, 40-the laser emitter. DETAILED DESCRIPTION
[0026] The present invention is further described below in conjunction with specific embodiments. It should also be noted that, unless otherwise clearly specified and limited, terms such as: setting, installing, connecting, and connecting should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0027] Embodiment: A fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings, such as Figure 1-Figure 4As shown, it includes a mounting plate 1, a controller 2, an electric push rod 3, a mounting frame 4, a connecting plate 5, a first rolling roller 501, a first cloth stop 6, a clockwork spring 7, a second rolling roller 8, a second cloth stop 9, a connecting rod 10, a first driving motor 11, a supporting mechanism, a moving mechanism and a flipping mechanism. The controller 2 is installed on the right rear side of the top of the mounting plate 1, and two electric push rods 3 are installed on the front and back sides of the top of the mounting plate 1. A mounting frame 4 is connected between the telescopic rods of the two electric push rods 3 on the upper side, and a mounting frame 4 is also connected between the telescopic rods of the two electric push rods 3 on the lower side. The number of the mounting frames 4 is two and they are respectively located on the left and right sides of the mounting plate 1. Two connecting plates 5 are connected on the left and right sides of the bottom of the mounting plate 1. The first rolling roller 501 is rotatably connected between the two connecting plates 5, and the first cloth stop 6 is wound around the two first rolling rollers 501. The first cloth stops 6 correspond to the two mounting frames 4 one by one, and the end of the first cloth stops 6 away from the first roller 501 is fixedly connected to the corresponding mounting frame 4, the front and rear ends of the first roller 501 are wound with springs 7, and the two ends of the spring 7 are respectively connected to the first roller 501 and the connecting plate 5, the two mounting frames 4 are rotatably connected to the second roller 8 on the side away from the mounting plate 1, the two second cloth stops 9 are wound on the two second rollers 8, and the lower ends of the two second cloth stops 9 are connected to connecting rods 10, the rear sides of the two mounting frames 4 are installed with first driving motors 11, the first driving motors 11 correspond to the second rollers 8 one by one, and the output shaft of the first driving motor 11 is connected to the rear end of the corresponding second roller 8, the supporting mechanism is used to support the mounting frame 4, the moving mechanism is used to drive the mounting plate 1 to move, and the flipping mechanism is used to flip the material.
[0028] like Figure 2 As shown, the support mechanism includes a first rotating rod 12 and a support wheel 13. The lower parts of the two mounting frames 4 are rotatably connected to the first rotating rod 12, and the front and rear ends of the two first rotating rods 12 are connected to the support wheels 13.
[0029] like Figure 3 As shown, the moving mechanism includes a support plate 14, a second rotating rod 15, a roller 16, a reduction motor 17 and a first right-angle gear box 18. Two support plates 14 are connected to the left and right sides of the bottom of the mounting plate 1. The second rotating rod 15 is rotatably connected between the two support plates 14. The front and rear ends of the two second rotating rods 15 are connected to rollers 16, and the rollers 16 are horizontally aligned with the support wheels 13. A reduction motor 17 is installed in the middle of the bottom of the mounting plate 1, and a first right-angle gear box 18 is installed on the right side of the bottom of the mounting plate 1, and the input end of the first right-angle gear box 18 is connected to the output shaft of the reduction motor 17, and the output end of the first right-angle gear box 18 is connected to the second rotating rod 15 on the right side, so that the reduction motor 17 can drive the second rotating rod 15 on the right side and the roller 16 on the right side to rotate through the first right-angle gear box 18, thereby driving the support plate 14 to move.
[0030] like Figure 4 As shown, the flipping mechanism includes a support seat 19, a rotating rod 20, a second driving motor 21, a second right-angle gear box 22, a chain transmission box 23, a vertical plate 24, a rotating shaft 241 and a flipping tooth 25. The top of the mounting plate 1 is symmetrically connected to the support seat 19, and the rotating rod 20 is rotatably connected between the two supporting seats 19. The second driving motor 21 is installed on the right side of the top of the mounting plate 1, and the second right-angle gear box 22 is installed in the middle of the top of the mounting plate 1, and the input end of the second right-angle gear box 22 is connected to the output shaft of the second driving motor 21, and the output end of the second right-angle gear box 22 is connected to the output shaft of the second right-angle gear box 22. The output end is connected to the rotating rod 20 so that the second drive motor 21 can drive the rotating rod 20 to rotate through the second right-angle gear box 22. Chain transmission boxes 23 are installed on both sides of the front and rear of the middle part of the mounting plate 1, and the input ends of the two chain transmission boxes 23 are respectively connected to the front and rear ends of the rotating rod 20. A vertical plate 24 is symmetrically connected to the front and rear ends of the bottom of the mounting plate 1. A rotating shaft 241 is rotatably connected between the lower parts of the two vertical plates 24, and the output ends of the two chain transmission boxes 23 are respectively connected to the front and rear ends of the rotating shaft 241. A plurality of flip teeth 25 are circumferentially connected to the rotating shaft 241.
[0031] First, the turning machine is placed on the top left side of the track so that the supporting wheel 13 and the roller 16 are in contact with the track. Then, the controller 2 can be used to control the electric push rod 3 on the lower side to drive the mounting frame 4 on the left to move a specified distance to the left. The mounting frame 4 on the left can pull the end of the first cloth block 6 on the left to move a specified distance to the left, so that the first cloth block 6 on the left is unfolded horizontally, and the first cloth block 6 on the left will pull the first roller 501 to rotate, the left spring 7 is deformed, and the mounting frame 4 on the left will drive the second roller 8 on the left and the second cloth block 9 on the left to move a specified distance to the left. Then the controller 2 will control the first drive motor 11 on the left to drive the second roller 8 on the left to rotate, so that the second roller 8 on the left unwinds the second cloth block 9 on the left. The connecting rod 10 on the left side will move downward under the action of gravity, thereby pulling the lower end of the second cloth stop 9 on the left side to move downward, so that the second cloth stop 9 on the left side can be vertically expanded until the connecting rod 10 on the left side contacts the top of the material in the fermentation tank, so that a relatively closed space can be formed between the first cloth stop 6 on the left side, the second cloth stop 9 on the left side, the front and rear sides of the inner wall of the fermentation tank and the top of the material in the fermentation tank, and then the controller 2 will control the reduction motor 17 to drive the second rotating rod 15 on the right side to rotate through the first right-angle gear box 18, and the second rotating rod 15 on the right side can drive the roller 16 on the right side to rotate, so that the roller 16 on the right side can roll to the right along the track on the top of the fermentation tank, thereby driving the flipping machine to move to the right along the track, and the roller 16 on the left side The support wheel 13 will also roll to the right along the track at the top of the fermentation tank to assist the tipping machine to move stably. At the same time, the controller 2 will control the second drive motor 21 to drive the rotating rod 20 to rotate through the second right-angle gear box 22. The rotating rod 20 can drive the rotating shaft 241 and the tipping tooth 25 to rotate through the chain transmission box 23. The rotation of the tipping tooth 25 can tip the material in the fermentation tank to the upper left, and the first baffle 6 on the left and the second baffle 9 on the left can limit the thrown material, so that the material is only thrown and freely falls in the above-mentioned relatively closed space, thereby preventing fine particles and dust from escaping into the air and ensuring a good workshop environment. When the tipping machine moves to the right side of the top of the track, the controller 2 will control the reduction motor 17 and the second drive motor The machine 21 stops working, causing the turning machine to stop moving, and the turning gear 25 stops rotating, and then the controller 2 will control the first driving motor 11 on the left to drive the second winding roller 8 on the left to reverse, so that the second winding roller 8 on the left can rewind the second cloth 9 on the left, and the second cloth 9 on the left can drive the connecting rod 10 on the left to move upward and separate from the material in the fermentation tank, and then the controller 2 will control the electric push rod 3 on the lower side to drive the mounting frame 4 on the left to move right and reset, and the mounting frame 4 on the left will drive the second winding roller 8 on the left and the second cloth 9 on the left to move right and reset, and the mounting frame 4 on the left will relax the first cloth 6 on the left, and at this time the clockwork 7 on the left will return to its original state, driving the first winding roller 501 on the left to reverse and rewind the first cloth 6 on the left.Then the turning machine can be transferred to the top right side of the next fermentation tank top track, and then the above operation is repeated to control the first baffle 6 and the second baffle 9 on the right side to unfold, so as to achieve the effect of preventing dust during the material turning process.
[0032] Since the flipping teeth 25 are in a state of continuous high-speed rotation when in working state, the height of the flipping teeth 25 will be slightly higher than the height of the bottom of the fermentation tank, so as to prevent the flipping teeth 25 from colliding with the bottom of the fermentation tank and causing damage. However, the flipping teeth 25 will not be able to flip the material at the bottom of the fermentation tank, and the flipping effect achieved is poor. Therefore, a shoveling assembly is designed; Figure 5 As shown, the shovel assembly includes a fixed plate 26, a servo motor 27, a rotating frame 28 and a shovel plate 29. The lower parts of the left and right sides of the two vertical plates 24 are connected to the fixed plates 26. The servo motors 27 are installed on the four fixed plates 26. The rotating frame 28 is connected between the output shafts of the two servo motors 27 corresponding to the front and rear. The shape of the rotating frame 28 is "U"-shaped, so that the rotating frame 28 will not contact the rotating shaft 241 and the flipping gear 25 when rotating downward, so as not to affect the high-speed rotation of the rotating shaft 241 and the flipping gear 25, and the tops of the two rotating frames 28 are connected to the shovel plates 29, and the shape of the shovel plates 29 is arc-shaped; when the flipping gear 25 is turned, the rotating frame 28 will rotate downward without contacting the rotating shaft 241 and the flipping gear 25. When the throwing teeth 25 rotate to flip the material, the controller 2 can control the corresponding servo motor 27 to drive the rotating frame 28 to rotate downward, and the rotating frame 28 can drive the shovel plate 29 to rotate downward until it contacts the bottom of the fermentation tank. Then, the shovel plate 29 can move synchronously with the flipping machine, so as to scoop up the material at the bottom of the fermentation tank, so that the material at the bottom of the fermentation tank can contact the flipping teeth 25, thereby improving the flipping effect. When the flipping teeth 25 stop rotating, the controller 2 can control the corresponding servo motor 27 to drive the rotating frame 28 to rotate upward and reset, and the rotating frame 28 can drive the shovel plate 29 to rotate upward and retract.
[0033] like Figure 6As shown, it also includes a storage box 30, a feeding pump 31, a connecting pipe 32, a fixing pipe 33 and a nozzle 34. The storage box 30 is connected to the left rear side of the top of the mounting plate 1, and a feeding port is opened on the front side of the top of the storage box 30, and a cover is provided on the feeding port. The feeding pump 31 is installed on the left front side of the top of the mounting plate 1, and the feeding port of the feeding pump 31 is connected to the front side of the storage box 30 and maintained in communication. The middle part of the mounting frame 4 is connected to the connecting pipe 32, and the upper ends of the two connecting pipes 32 are connected to the discharge port of the feeding pump 31 and maintained in communication. The connecting pipe 32 is spiral in shape. When the mounting frame 4 moves in a direction away from the mounting plate 1, the connecting pipe 32 can be stretched and expanded. When the mounting frame 4 moves in a direction close to the mounting plate 1, the connecting pipe 32 can be stretched and expanded due to its own Elasticity returns to its original state, the bottoms of the two mounting frames 4 are connected to fixed pipes 33, and the lower ends of the connecting pipes 32 are connected to the middle of the tops of the fixed pipes 33 and maintained in communication, and the bottoms of the two fixed pipes 33 are spaced apart and maintained in communication; before the use of the turner, the medicine to be added can be manually placed in the storage box 30, and when the turner moves along the fermentation tank, the feed pump 31 can be controlled by the controller 2 to extract the medicine in the storage box 30, and the medicine can be transported to the nozzle 34 through the connecting pipe 32 and the fixed pipe 33, so that the nozzle 34 can evenly spray the medicine into the thrown material, so that the medicine can be fully mixed with the material, and the effects of rapid decomposition, cost reduction, and increased effective content of fulvic acid in organic fertilizer can be achieved through the action of the medicine.
[0034] like Figure 7-Figure 9As shown, it also includes a first scraper 35, a second scraper 36, a rotating scraper 37 and a tension spring 38. The left and right sides of the bottom of the mounting plate 1 are connected with the first scraper 35, and the lower ends of the two first scrapers 35 are in contact with the inner sides of the two first baffles 6 respectively. The inner sides of the two mounting frames 4 are connected with two second scrapers 36, and the two second scrapers 36 are in contact with the left and right sides of the second baffle 9 respectively. The two chain transmission boxes 23 are rotatably connected to the sides away from each other, and the tops of the two rotating scrapers 37 are connected to the bottom of the mounting plate 1. Tension springs 38 are connected; when the flipping machine is placed on the top of the track, the rotating scrapers 37 on the front and rear sides will contact the front and rear sides of the inner wall of the fermentation tank respectively. When the flipping machine moves along the fermentation tank, the rotating scrapers 37 are affected by the inner wall of the fermentation tank. The friction force will cause rotation, and the tension spring 38 will be stretched. Under the elastic force of the tension spring 38, the rotating scraper 37 can be closely attached to the inner wall of the fermentation tank. At this time, the rotating scraper 37 can move with the tipping machine in the fermentation tank, so as to scrape off the material adhering to the inner wall of the fermentation tank, so that the material can be fully turned over and over, thereby improving the turning and over effect. When the first roller 501 is rolling up the first baffle cloth 6, the first scraper 35 can scrape off the material adhering to the inner side of the first baffle cloth 6. When the second roller 8 is rolling up the second baffle cloth 9, the second scraper 36 can scrape off the material adhering to both sides of the second baffle cloth 9. When the tipping machine is separated from the track at the top of the fermentation tank, the rotating scraper 37 will be separated from the inner wall of the fermentation tank, and the tension spring 38 will return to its original state, driving the rotating scraper 37 to rotate and reset.
[0035] like Figure 1 As shown, it also includes a mounting rod 39 and a laser emitter 40. The left and right sides of the top of the mounting plate 1 are symmetrically connected with mounting rods 39, and the upper parts of the four mounting rods 39 are installed with laser emitters 40. The laser emitter 40 is controlled by the controller 2 to emit laser, and the position of the flipping machine is adjusted. After the laser is aligned with the track, it is placed on the top of the track, which can assist the flipping machine to quickly align with the track.
[0036] The above description is only a specific implementation mode of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings, characterized in that: The invention comprises: a mounting plate (1); a controller (2) mounted on the top of the mounting plate (1); an electric push rod (3) symmetrically mounted on the top of the mounting plate (1); a mounting frame (4) connected to the telescopic rod of the electric push rod (3); a connecting plate (5) symmetrically connected to the bottom of the mounting plate (1); a first winding roller (501) rotatably connected to the connecting plate (5); a first stop cloth (6) wound on the first winding roller (501), and the end of the first stop cloth (6) is connected to the mounting frame (4); a spring ( 7), connecting the first roller (501) and the connecting plate (5); the second roller (8), rotatably connected to the mounting frame (4); the second cloth (9), wound on the second roller (8); the connecting rod (10), connected to the end of the second cloth (9); the first drive motor (11), installed on the side of the mounting frame (4), and the output shaft of the first drive motor (11) is connected to the end of the second roller (8); the supporting mechanism is arranged on the mounting frame (4) and is used to support the mounting frame (4); The moving mechanism is arranged on the mounting plate (1) and is used to drive the mounting plate (1) to move; the flipping mechanism is arranged on the mounting plate (1) and is used to flip the material.
2. The organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings as claimed in claim 1, characterized in that: The supporting mechanism comprises: a first rotating rod (12) rotatably connected to the mounting frame (4); The supporting wheels (13) are symmetrically connected to the two ends of the first rotating rod (12).
3. The organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings as claimed in claim 2, characterized in that: The moving mechanism comprises: a support plate (14) symmetrically connected to the bottom of the mounting plate (1); a second rotating rod (15) rotatably connected to the support plate (14); a roller (16) symmetrically connected to both ends of the second rotating rod (15); a reduction motor (17) mounted on the bottom of the mounting plate (1); and a first right-angle gear box (18) mounted on the bottom of the mounting plate (1), wherein the input end of the first right-angle gear box (18) is connected to the output shaft of the reduction motor (17), and the output end of the first right-angle gear box (18) is connected to one of the second rotating rods (15).
4. The organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings as claimed in claim 3, characterized in that: The flipping mechanism comprises: a support seat (19) symmetrically connected to the top of the mounting plate (1); a rotating rod (20) rotatably connected to the support seat (19); a second drive motor (21) mounted on the top of the mounting plate (1); a second right-angle gear box (22) mounted on the top of the mounting plate (1), and the input end of the second right-angle gear box (22) is connected to the output shaft of the second drive motor (21), and the output end of the second right-angle gear box (22) is connected to the rotating rod (20); a chain transmission box (23) symmetrically mounted on the mounting plate (1), and the input end of the chain transmission box (23) is connected to the end of the rotating rod (20); a vertical plate (24) symmetrically connected to the bottom of the mounting plate (1); a rotating shaft (241) rotatably connected to the vertical plate (24), and the end of the rotating shaft (241) is connected to the output end of the chain transmission box (23); and flipping teeth (25) are connected to the rotating shaft (241) at circumferential intervals.
5. The organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings as claimed in claim 4, characterized in that: It also includes: a fixed plate (26) connected to the side of the vertical plate (24); a servo motor (27), Mounted on the fixed plate (26); a rotating frame (28) connected to the output shaft of the servo motor (27); The shovel plate (29) is connected to the rotating frame (28).
6. The organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings as claimed in claim 5, characterized in that: It also includes: a material storage box (30) connected to the top of the mounting plate (1); a material supply pump (31) mounted on the top of the mounting plate (1), and the material inlet of the material supply pump (31) is connected to the side of the material storage box (30) and maintained in communication; a connecting pipe (32) connected to the mounting frame (4), and one end of the connecting pipe (32) is connected to the material outlet of the material supply pump (31) and maintained in communication; a fixed pipe (33) connected to the bottom of the mounting frame (4), and the other end of the connecting pipe (32) is connected to the fixed pipe (33) and maintained in communication; and a nozzle (34) is installed at intervals at the bottom of the fixed pipe (33) and maintained in communication.
7. The organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings as claimed in claim 6, characterized in that: It also includes: a first scraper (35) symmetrically connected to the bottom of the mounting plate (1), and the end of the first scraper (35) contacts the surface of the first baffle (6); a second scraper (36) symmetrically connected to the mounting frame (4), and the end of the second scraper (36) contacts the surface of the second baffle (9); a rotating scraper (37) rotatably connected to the side of the chain transmission box (23); and a tension spring (38) connecting the top of the rotating scraper (37) and the bottom of the mounting plate (1).
8. The organic fertilizer fermentation turning machine for producing organic fertilizer using earthworm castings as claimed in claim 7, characterized in that: It also includes: a mounting rod (39), the mounting rod (39) is symmetrically connected to the top of the mounting plate (1); and a laser emitter (40), the mounting plate (1) is mounted on the mounting rod (39).