Automatic raw material proportioning device for liquid bio-organic fertilizer

By designing liquid biological organic fertilizer raw material ratio equipment that automatically separates and transfers fruits and vegetables, the problem of poor proportioning effect in the existing technology is solved, and accurate fertilizer ratio and environmentally friendly odor prevention are achieved.

WO2025152251A1PCT designated stage expired Publication Date: 2025-07-24JIANGXI HONGDA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/081271
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-20
Filing Date
2024-03-12
Publication Date
2025-07-24

AI Technical Summary

Technical Problem

In the prior art, when manufacturing liquid biological organic fertilizer, it is impossible to effectively separate and add vegetable and fruit raw materials in proportion, resulting in poor proportioning effect.

Method used

An automatic proportioning device including a mixing barrel, sorting assembly, agitating assembly, accumulating assembly and a shield is designed. Fruits and vegetables are placed into the mixing barrel through water layering and transfer components, and debris are accurately extracted into the mixing equipment using a quantitative pump, and a shield is set to prevent the spread of odor.

Benefits of technology

It realizes the precise separation and proportion of fruits and vegetables, improves the accuracy of fertilizer ratio, and prevents the spread of odors, which is environmentally friendly and efficient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of fertilizer production devices, and specifically relates to an automatic raw material proportioning device for a liquid bio-organic fertilizer, comprising a housing, and further comprising: stirring tanks, there being two stirring tanks, the two stirring tanks being both arranged on the housing, and the two stirring tanks being correspondingly used for loading fruits and vegetables; and a shielding cover, the shielding cover being arranged on the housing and used for preventing odor diffusion. In the present device, fruits and vegetables are stratified by means of water in the housing, a fruit transfer assembly and a vegetable transfer assembly are used to respectively place the fruits and the vegetables into the two stirring tanks for stirring and crushing, and then a metering pump is used to quantitatively pump fruit debris and vegetable debris into an organic fertilizer stirring device according to a proportion, so that the accuracy of fertilizer proportioning is improved, and the present device is practical; and the shielding cover is arranged to be used for preventing odor diffusion, thereby realizing environmental friendliness.
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Description

An automatic raw material proportioning device for liquid bio-organic fertilizer Technical Field

[0001] The invention relates to the technical field of fertilizer production equipment, in particular to an automatic raw material proportioning device for liquid bio-organic fertilizer. Background Art

[0002] Liquid bio-organic fertilizer is a fertilizer made from organic matter such as animal and plant feces, food processing waste, and algae after fermentation, anaerobic digestion and other technical treatments. In the process of manufacturing liquid bio-organic fertilizer, different raw materials need to be put into a mixing device in a certain proportion through a proportioning device for mixing and stirring. Kitchen waste is a high-quality organic fertilizer raw material. However, the current treatment method is only to remove impurities such as metals and plastics through simple sorting, and then use a proportioning device to add it to the mixing device. However, kitchen waste contains a large amount of vegetables and fruits, and their nutritional components are quite different. Therefore, adding these two as kitchen waste to the mixing equipment is not targeted, resulting in poor proportioning effect. For this reason, we propose an automatic proportioning device for raw materials of liquid bio-organic fertilizer. Summary of the Invention

[0003] A technical problem to be solved by this application is: how to design a proportioning device that can automatically separate vegetables and fruits and introduce them into a mixing device according to the proportion.

[0004] To solve the above technical problems, the present invention provides an automatic raw material proportioning device for liquid bio-organic fertilizer, comprising a housing and:

[0005] A mixing barrel, wherein two mixing barrels are provided, both of which are arranged on the outer shell, and the two mixing barrels are used to load fruits and vegetables respectively;

[0006] A sorting component is provided on the housing and is used to sort the kitchen waste so that fruits and vegetables fall into the two mixing barrels respectively;

[0007] A stirring component is disposed in the stirring barrel and is used to separately crush fruits and vegetables;

[0008] A proportioning component is provided on the mixing barrel, and is used to quantitatively drain the material in the mixing barrel into the organic fertilizer mixing device;

[0009] The shielding cover is arranged on the shell and is used to prevent the spread of odor.

[0010] In some embodiments, the stirring assembly includes a driving motor arranged on a stirring barrel, an axis 1 is arranged in the stirring barrel, one end of the axis 1 passes through the stirring barrel and is fixed to the output shaft of the driving motor, and a stirring rod is fixedly connected to the axis 1. Starting the driving motor drives the stirring rod to rotate and stir.

[0011] In some embodiments, the sorting assembly includes a partition disposed in the housing, the two mixing barrels are located on both sides of the partition, the housing is filled with water, kitchen waste is placed in the housing, and the water is used to separate the fruits and vegetables into layers;

[0012] The housing is provided with a fruit transfer assembly, which is used to transfer the fruit on the upper layer into the corresponding mixing bucket;

[0013] The outer shell is provided with a vegetable transfer assembly, which is used to transfer the vegetables in the lower layer into the corresponding mixing barrel;

[0014] The shell is provided with a circulation component, which is used to make the water in the shell flow.

[0015] In some embodiments, the fruit transfer assembly includes two shafts 2 arranged on the outer shell, both shafts 2 are provided with rotating rollers, and a conveyor belt is provided on the two rotating rollers. A plurality of paddles are evenly and equidistantly arranged on the conveyor belt, and a motor 2 is provided on the outer shell. One end of the output shaft of the motor 2 is fixedly connected to a shaft 2. When the motor 2 is started, the plurality of paddles are driven to move, pushing the fruit into the mixing barrel.

[0016] In some embodiments, the vegetable transfer assembly includes a sliding plate arranged at the bottom of the outer shell, the sliding plate is designed with multiple leakage holes evenly spaced at equal intervals, and an electric push rod is provided on the outer shell, a push plate is provided between the protruding end of the electric push rod and the sliding plate, and a guide rail assembly is provided on the outer shell. When the electric push rod is started, the sliding plate is driven to move upward along the guide rail assembly to scoop out the vegetables, and then deflect along the guide rail assembly to pour the vegetables into the mixing barrel.

[0017] In some embodiments, the guide rail assembly includes a straight slide groove 1 provided on the inner wall of the shell, a shaft 3 is provided at one end of the sliding plate, one end of the shaft 3 is located in the straight slide groove 1, and an arc-shaped support plate is provided on the shell, an arc-shaped support plate is provided with an arc-shaped slide groove connected to the straight slide groove 1, a straight slide groove 2 is provided in the shell, a sliding block is provided in the straight slide groove 2, and the sliding block is rotatably connected to the sliding plate through a rotating shaft. When the electric push rod is started, the sliding plate and the sliding block are first driven to move upward synchronously, and then the sliding plate is driven relative to the sliding block to deflect along the arc-shaped slide groove;

[0018] A cylinder is provided at one end of the push plate, a hollow rectangular frame is provided on the sliding plate, and one end of the cylinder is located in the hollow rectangular frame and is slidably connected to the inner wall thereof;

[0019] A magnet is provided on one side of the sliding block, and an iron sheet is provided on the housing to push the sliding plate upward, and the sliding block is fixed by attracting the magnet and the iron sheet.

[0020] In some embodiments, the circulation component includes a connecting pipe with both ends connected to the inner cavity of the shell, and a water pump 1 is provided in the middle of the connecting pipe. Starting the water pump 1 drives the water in the shell to circulate.

[0021] In some embodiments, an air guide tube is provided at one end of the arc-shaped support plate, and a plurality of nozzles are evenly and equidistantly connected to one side of the air guide tube. A high-pressure gas tank is provided on the housing, and the high-pressure gas tank is connected to the air guide tube via an air tube, and a valve assembly is provided on the air tube. When the electric push rod is activated, the sliding plate is driven to dump the vegetables, and at the same time, the valve assembly is used to connect the air guide tube and the high-pressure gas tank so that the nozzles spray air to blow the vegetables.

[0022] The valve assembly includes a shaft four provided at one end of the arc-shaped support plate, a hollow cylinder provided on the outer shell, and both sides of the hollow cylinder are connected to the air pipe. One end of the shaft four is located in the hollow cylinder and is provided with a rotating cylinder. The rotating cylinder is provided with a through hole, and a torsion spring is sleeved on the shaft four. Rotating the shaft four drives the rotating cylinder to rotate so that the through hole is connected to the air pipe, and the torsion spring is twisted under force to provide it with self-restoring ability.

[0023] A toothed disc is fixedly connected to the shaft four, and an arc-shaped rack is provided at one end of the sliding plate. The sliding plate is deflected to drive the arc-shaped rack to engage with the toothed disc and drive it to rotate, thereby rotating the shaft four;

[0024] A deflection plate is provided on the fourth axis, and a plurality of spray holes are evenly and equidistantly provided on the deflection plate. The deflection plate is connected to the air guide pipe through an air pipe to deflect the sliding plate, thereby driving the deflection plate to deflect toward the water leakage holes on the sliding plate and spraying air to loosen the vegetables.

[0025] In some embodiments, the proportioning component includes a discharge pipe conductively connected to the stirring barrel, the discharge pipe is conductively connected to the organic fertilizer mixing equipment, and a metering pump is provided on the discharge pipe, and the metering pump is started to extract raw materials.

[0026] In some embodiments, a blocking plate is provided on the outer shell, leakage holes are evenly and equidistantly provided on the blocking plate, a rectangular iron block is provided at one end of the blocking plate, and a rectangular magnet is provided on one side of the sliding plate, and a rectangular magnet is also provided at one end of the partition. The sliding plate is moved upward to drive the blocking plate to move up and dock with the partition to separate the outer shell.

[0027] The present invention has at least the following beneficial effects:

[0028] This device uses the water in the outer shell to separate fruits and vegetables into layers, and uses a fruit transfer component and a vegetable transfer component to place them in two mixing barrels for mixing and crushing. Subsequently, a metering pump is used to accurately extract fruit and vegetable debris according to the ratio, and then put them into the organic fertilizer mixing equipment to improve the accuracy of the fertilizer ratio. In order to prevent the spread of odor, a shielding cover is also set to achieve a more environmentally friendly effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] FIG1 is a schematic diagram of the overall structure of Example 1 of the present invention;

[0030] FIG2 is a schematic diagram of a partial cross-sectional structure of FIG1 of the present invention;

[0031] FIG3 is a schematic diagram of the structure of FIG2 in another orientation of the present invention;

[0032] FIG4 is a schematic structural diagram of area A in FIG3 of the present invention;

[0033] FIG5 is a schematic diagram of the partial cross-sectional structure of FIG3 of the present invention;

[0034] FIG6 is a schematic diagram of a cross-sectional structure of FIG5 of the present invention;

[0035] FIG7 is a schematic structural diagram of area B in FIG6 of the present invention;

[0036] FIG8 is a schematic diagram of the cross-sectional structure of FIG6 of the present invention;

[0037] FIG9 is a schematic structural diagram of embodiment 2 of the present invention.

[0038] In the figure: 1-housing; 2-mixing barrel; 3-sorting component; 4-mixing component; 5-proportioning component; 6-shielding cover; 31-driving motor; 32-axis 1; 33-mixing rod; 34-partition; 35-fruit transfer component; 36-vegetable transfer component; 37-circulation component; 38-axis 2; 39-rotating roller; 41-conveyor belt; 42-paddle; 43-motor 2; 44-sliding plate; 45-electric push rod; 46-push plate; 47-straight slide 1; 48-axis 3; 49-arc support plate; 51-arc slide; 52-straight slide 2; 5 3-sliding block; 54-cylinder; 55-hollow rectangular frame; 56-magnet 1; 57-iron sheet 1; 58-connecting pipe; 59-water pump 1; 61-air guide pipe; 62-nozzle; 63-high-pressure gas tank; 64-valve assembly; 65-axis 4; 66-hollow cylinder; 67-rotating cylinder; 68-through hole; 69-torsion spring; 71-toothed disc; 72-arc-shaped rack; 73-deflection plate; 74-nozzle hole; 75-discharge pipe; 76-dosing pump; 77-blocking plate; 78-leakage hole; 79-rectangular iron block; 81-rectangular magnet; 82-guide rail assembly. DETAILED DESCRIPTION

[0039] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Example 1

[0040] Referring to Figures 1 to 8, the present invention provides a technical solution: an automatic raw material proportioning device for liquid bio-organic fertilizer, comprising a housing 1, and further comprising:

[0041] There are two mixing barrels 2, both of which are fixedly connected to the housing 1. The two mixing barrels 2 are respectively loaded with fruits and vegetables, and the fruits and vegetables are stirred and crushed separately;

[0042] The shielding cover 6 is detachably connected to the housing 1 to prevent the spread of odor and is more environmentally friendly;

[0043] The sorting component 3 is arranged on the shell 1. The sorting component 3 is used to sort the kitchen waste so that the fruits and vegetables fall into the two mixing barrels 2 respectively, thereby performing a subdivision operation on the kitchen waste. Specifically, the sorting component 3 includes a partition 34 fixedly connected to the middle part of the inner wall of the shell 1, and the partition 34 only separates the upper half of the shell 1. The two mixing barrels 2 are respectively located on both sides of the partition 34. The shell 1 is filled with water. The kitchen waste is placed in the shell 1, and the water is used to separate the fruits and vegetables. Because the density of vegetables is generally greater than that of water, and the density of fruits is generally less than that of water, after both are placed in the water, the water pump 59 is started at the same time to make the water in the shell 1 flow, thereby disturbing the fruits and vegetables and accelerating their separation;

[0044] The outer shell 1 is provided with a fruit transfer assembly 35, which is used to transfer the upper layer of fruit into its corresponding mixing barrel 2. After the fruits and vegetables are layered, the fruit transfer assembly 35 is used to transfer the fruit floating on the water surface into its corresponding mixing barrel 2. Specifically, the fruit transfer assembly 35 includes two shafts 38 rotatably connected to the outer shell 1 via bearings. The two shafts 38 are fixedly connected to rotating rollers 39. The two rotating rollers 39 are sleeved with a conveyor belt 41. The conveyor belt 41 is evenly and evenly fixedly connected to a plurality of paddles 42. The outer shell 1 is fixedly connected to a motor 43. The output shaft 32 end of the motor 43 is fixedly connected to a shaft 38. When the motor 43 is started, the shaft 38 is driven to rotate, thereby driving the conveyor belt 41 to move, and then driving the plurality of paddles 42 to move, thereby pushing the fruit into the mixing barrel 2.

[0045] The outer shell 1 is provided with a vegetable transfer assembly 36, which is used to transfer the vegetables in the lower layer into the corresponding mixing barrel 2. After the fruits and vegetables are layered, the vegetable transfer assembly 36 is used to transfer the vegetables sunk to the bottom of the water into the corresponding mixing barrel 2. Specifically, the vegetable transfer assembly 36 includes a sliding plate 44 provided at the bottom of the inner shell 1. The sliding plate 44 adopts a design with multiple leakage holes evenly spaced at equal intervals, and an electric push rod 45 is fixedly connected to the outer wall of the outer shell 1. A push plate 46 is provided between the protruding end of the electric push rod 45 and the sliding plate 44. One end of the push plate 46 is fixedly connected to the protruding end of the electric push rod 45. A guide rail assembly 82 is provided on the outer shell 1. When the electric push rod 45 is started, the sliding plate 44 is driven to move upward along the guide rail assembly 82 to scoop out the vegetables, and then deflect along the guide rail assembly 82 to dump the vegetables into the mixing barrel 2.

[0046] The guide rail assembly 82 includes a straight slide groove 1 47 provided on the inner wall of the housing 1, one end of the sliding plate 44 is fixedly connected to a shaft 3 48, one end of the shaft 3 48 is located in the straight slide groove 1 47 and is slidably connected to the inner wall thereof, and an arc-shaped support plate 49 is fixedly connected to the housing 1, and an arc-shaped support plate 49 is provided with an arc-shaped slide groove 51 which is connected to the straight slide groove 1 47, a straight slide groove 2 52 is provided in the housing 1, and a sliding block 53 is slidably connected in the straight slide groove 2 52, and the sliding block 53 is rotatably connected to the sliding plate 44 via a rotating shaft. When the electric push rod 45 is started, the sliding plate 44 and the sliding block 53 are first driven to move upward synchronously until one side of the sliding plate 44 moves out of the housing 1, at which time the sliding block 53 moves to the bottom, and then the electric push rod 45 is continued to be started to drive the sliding plate 44 relative to the sliding block 53 and deflect along the arc-shaped slide groove 51;

[0047] One end of the push plate 46 is fixedly connected to a cylinder 54, and a hollow rectangular frame 55 is fixedly connected to the sliding plate 44. One end of the cylinder 54 is located in the hollow rectangular frame 55 and is slidably connected to the inner wall thereof;

[0048] A magnet 56 is fixedly connected to one side of the sliding block 53, and an iron sheet 57 is fixedly connected to the housing 1, which pushes the sliding plate 44 to move upward, and the sliding block 53 is fixed by the attraction between the magnet 56 and the iron sheet 57, so that it is convenient to start the electric push rod 45 to drive the sliding plate 44 to reset, so that the reset process is smoother;

[0049] The housing 1 is provided with a circulation assembly 37, which is used to circulate water in the housing 1. Specifically, the circulation assembly 37 includes a connecting pipe 58, both ends of which are conductively connected to the inner cavity of the housing 1. A water pump 59 is provided in the middle of the connecting pipe 58. The water pump 59 is fixedly connected to the housing 1. When the water pump 59 is started, the water in the housing 1 is driven to flow.

[0050] The stirring assembly 4 is arranged in the stirring barrel 2, and is used to crush fruits and vegetables respectively. Specifically, the stirring assembly 4 includes a driving motor 31 fixedly connected to the stirring barrel 2. A shaft 32 is rotatably connected to the stirring barrel 2 through a bearing. One end of the shaft 32 passes through the stirring barrel 2 and is fixedly connected to the output shaft of the driving motor 31. A stirring rod 33 is fixedly connected to the shaft 32. When the driving motor 31 is started, the shaft 32 is driven to rotate, thereby driving the stirring rod 33 to rotate and stir the crushed fruits or vegetables.

[0051] The proportioning component 5 is arranged on the mixing barrel 2, and the proportioning component 5 is used to quantitatively drain the material in the mixing barrel 2 into the organic fertilizer mixing equipment. Specifically, the proportioning component 5 includes a discharge pipe 75 connected to the mixing barrel 2, and the discharge pipe 75 is connected to the organic fertilizer mixing equipment. A quantitative pump 76 is installed on the discharge pipe 75. The quantitative pump 76 is started to quantitatively extract fruit debris and vegetable debris into the organic fertilizer mixing equipment according to the proportion, thereby improving the accuracy of the fertilizer ratio, which is more practical.

[0052] An air guide tube 61 is fixedly connected to one end of the arc-shaped support plate 49. A plurality of nozzles 62 are evenly and equidistantly connected to one side of the air guide tube 61. A high-pressure gas tank 63 is fixedly connected to the housing 1. The high-pressure gas tank 63 and the air guide tube 61 are connected via an air pipe, and a valve assembly 64 is provided on the air pipe. When the electric push rod 45 is activated, the sliding plate 44 is driven to dump the vegetables. At the same time, the valve assembly 64 is used to connect the air guide tube 61 and the high-pressure gas tank 63, so that the nozzle 62 ejects air to blow the vegetables. Thus, the air flow can be used to quickly and accurately blow the vegetables on the sliding plate 44 into the mixing barrel 2.

[0053] The valve assembly 64 includes a fourth shaft 65 rotatably connected to one end of the arc-shaped support plate 49 via a bearing. A hollow cylinder 66 is fixedly connected to the housing 1. Both sides of the hollow cylinder 66 are connected to the air pipe. One end of the fourth shaft 65 is located in the hollow cylinder 66 and is fixedly connected to a rotating cylinder 67. The rotating cylinder 67 is slidably connected to the inner wall of the hollow cylinder 66. A through hole 68 is formed in the rotating cylinder 67, and a torsion spring 69 is sleeved on the fourth shaft 65. The two ends of the torsion spring 69 are respectively fixedly connected to the fourth shaft 65 and the arc-shaped support plate 49. The fourth shaft 65 is rotated to drive the rotating cylinder 67 to rotate, so that the through hole 68 is connected to the air pipe. At the same time, the torsion spring 69 is twisted to provide it with self-recovery ability.

[0054] A toothed disc 71 is fixedly connected to shaft 45, and an arcuate rack 72 is fixedly connected to one end of the sliding plate 44. Deflecting the sliding plate 44 drives the arcuate rack 72 to engage with the toothed disc 71 and drive it to rotate, thereby rotating shaft 45;

[0055] A deflection plate 73 is fixedly connected to the shaft 65, and a plurality of spray holes 74 are evenly and equidistantly provided on the deflection plate 73. The deflection plate 73 is connected to the air guide pipe 61 through an air pipe, deflecting the sliding plate 44 and driving the deflection plate 73 to deflect at the same time so that the spray holes 74 on the deflection plate 73 are aligned with the water leakage holes on the sliding plate 44 and spray air to loosen the vegetables, thereby utilizing the air flow to blow toward the vegetables through the water leakage holes to prevent the vegetables from sticking to the sliding plate 44. Example 2

[0056] Please refer to Figures 1 to 9. The present invention provides a technical solution: an automatic raw material proportioning device for liquid bio-organic fertilizer. Example 2 is optimized based on Example 1.

[0057] A blocking plate 77 is provided on the outer shell 1, and the blocking plate 77 is slidably connected to the inner wall of the outer shell 1. Leakage holes 78 are evenly spaced on the blocking plate 77, and a rectangular iron block 79 is fixedly connected to one end of the blocking plate 77, and a rectangular magnet 81 is fixedly connected to one side of the sliding plate 44. One end of the partition 34 is also fixedly connected to a rectangular magnet 81. The sliding plate 44 is moved upward, and the rectangular magnet 81 is used to absorb the rectangular iron block 79 to drive the blocking plate 77 to move upward, and dock with the partition 34 through magnetic force to separate the outer shell 1, thereby preventing vegetables from moving to the bottom of the sliding plate 44 when the sliding plate 44 moves upward. Through this design, the device can work continuously and is more practical.

[0058] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An automatic raw material proportioning device for liquid biological organic fertilizer, comprising a housing (1), characterized in that: It also includes: Stirring barrels (2), two of which are provided, and both of the two stirring barrels (2) are arranged on the outer shell (1), and the two stirring barrels (2) are correspondingly used to load fruits and vegetables; Sorting assembly (3), which is arranged on the outer shell (1), and the sorting assembly (3) is used to sort food waste so that fruits and vegetables respectively fall into the two stirring barrels (2); Stirring assembly (4), which is arranged in the stirring barrel (2), and the stirring assembly (4) is used to respectively crush fruits and vegetables; Ratioing assembly (5), which is arranged on the stirring barrel (2), and the ratioing assembly (5) is used to quantitatively drain the substances in the stirring barrel (2) into the organic fertilizer mixing equipment; Shielding cover (6), which is arranged on the outer shell (1) and is used to prevent the diffusion of peculiar smell.

2. The raw material automatic proportioning device for liquid biological organic fertilizer according to claim 1, characterized in that: The stirring assembly (4) includes a driving motor (31) arranged on the stirring barrel (2), a first shaft (32) is arranged in the stirring barrel (2), one end of the first shaft (32) passes through the stirring barrel (2) and is fixed to the output shaft of the driving motor (31), and a stirring rod (33) is fixedly connected to the first shaft (32). Starting the driving motor (31) drives the stirring rod (33) to rotate and stir.

3. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 2, characterized in that: The sorting assembly (3) includes a partition plate (34) arranged in the outer shell (1), and the two stirring barrels (2) are respectively located on both sides of the partition plate (34). Water is filled in the outer shell (1), and food waste is put into the outer shell (1), and water is used to layer fruits and vegetables; A fruit transfer assembly (35) is arranged on the outer shell (1), and the fruit transfer assembly (35) is used to transfer the upper-layer fruits into its corresponding stirring barrel (2); A vegetable transfer assembly (36) is arranged on the outer shell (1), and the vegetable transfer assembly (36) is used to transfer the lower-layer vegetables into its corresponding stirring barrel (2); A circulation assembly (37) is arranged on the outer shell (1), and the circulation assembly (37) is used to make the water in the outer shell (1) flow; 4. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 3, characterized in that: The fruit transfer assembly (35) includes two second shafts (38) arranged on the outer shell (1), rotating rollers (39) are arranged on both of the two second shafts (38), a conveyor belt (41) is sleeved on the two rotating rollers (39), a plurality of baffle plates (42) are evenly arranged on the conveyor belt (41) at equal intervals, a second motor (43) is arranged on the outer shell (1), and the output shaft of the second motor (43) is fixedly connected to one end of the first shaft (32). Starting the second motor (43) drives the plurality of baffle plates (42) to move and push the fruits into the stirring barrel (2).

5. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 4, characterized in that: The vegetable transfer component (36) includes a sliding plate (44) arranged at the bottom inside the housing (1). The sliding plate (44) is designed with a plurality of water leakage holes evenly arranged at equal intervals. And an electric push rod (45) is arranged on the housing (1). A push plate (46) is arranged between the extending end of the electric push rod (45) and the sliding plate (44). A guide rail assembly (82) is arranged on the housing (1). When the electric push rod (45) is started, it drives the sliding plate (44) to move upward along the guide rail assembly (82) to fish out the vegetables, and then deflects along the guide rail assembly (82) to pour the vegetables into the stirring barrel (2).

6. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 5, characterized in that: The guide rail assembly (82) includes a straight chute one (47) opened on the inner wall of the housing (1). One end of the sliding plate (44) is provided with a shaft three (48). One end of the shaft three (48) is located in the straight chute one (47). And an arc-shaped support plate (49) is arranged on the housing (1). An arc-shaped chute (51) communicated with the straight chute one (47) is opened on the arc-shaped support plate (49). A straight chute two (52) is opened inside the housing (1). A sliding block (53) is arranged in the straight chute two (52). The sliding block (53) is rotationally connected with the sliding plate (44) through a rotating shaft. When the electric push rod (45) is started, it first drives the sliding plate (44) and the sliding block (53) to move upward synchronously, and then drives the sliding plate (44) relative to the sliding block (53) to deflect along the arc-shaped chute (51). One end of the push plate (46) is provided with a cylinder (54). A hollow rectangular frame (55) is arranged on the sliding plate (44). One end of the cylinder (54) is located inside the hollow rectangular frame (55) and is slidably connected with its inner wall. One side of the sliding block (53) is provided with a magnet one (56). A iron sheet one (57) is arranged on the housing (1). Push the sliding plate (44) to move upward and use the attraction between the magnet one (56) and the iron sheet one (57) to fix the sliding block (53).

7. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 6, characterized in that: The circulation component (37) includes a connecting pipe (58) with both ends connected to the inner cavity of the housing (1) in a conducting manner. A water pump one (59) is arranged in the middle of the connecting pipe (58). Starting the water pump one (59) drives the water inside the housing (1) to flow in a cycle.

8. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 7, characterized in that: One end of the arc-shaped support plate (49) is provided with an air guide pipe (61). A plurality of spray pipes (62) are evenly and conductively connected to one side of the air guide pipe (61) at equal intervals. A high-pressure gas tank (63) is arranged on the housing (1). The high-pressure gas tank (63) is conductively connected to the air guide pipe (61) through an air pipe. And a valve component (64) is arranged on the air pipe. When the electric push rod (45) is started, it drives the sliding plate (44) to pour the vegetables, and at the same time uses the valve component (64) to connect the air guide pipe (61) and the high-pressure gas tank (63) to make the spray pipes (62) spray out airflows to blow the vegetables. The valve assembly (64) includes a fourth shaft (65) provided at one end of the arc-shaped support plate (49). A hollow cylinder (66) is provided on the outer shell (1). The two sides of the hollow cylinder (66) are connected to the trachea in a conducting manner. One end of the fourth shaft (65) is located inside the hollow cylinder (66), and a rotating cylinder (67) is provided. A through hole (68) is provided on the rotating cylinder (67). A torsion spring (69) is sleeved on the fourth shaft (65). Rotating the fourth shaft (65) drives the rotating cylinder (67) to rotate, so that the through hole (68) conducts the trachea. At the same time, the torsion spring (69) is stressed and twisted to provide a self-restoring ability for it. A gear disk (71) is fixedly connected to the fourth shaft (65). An arc-shaped rack (72) is provided at one end of the sliding plate (44). Deflecting the sliding plate (44) drives the arc-shaped rack (72) to engage with the gear disk (71) and drives it to rotate, so that the fourth shaft (65) rotates. A deflecting plate (73) is provided on the fourth shaft (65). A plurality of spray holes (74) are evenly and equidistantly provided on the deflecting plate (73). The deflecting plate (73) is connected to the guide pipe (61) in a conducting manner through a trachea. Deflecting the sliding plate (44) drives the deflecting plate (73) to deflect at the same time, spraying air onto the water leakage holes on the sliding plate (44) to blow loose the vegetables.

9. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 8, characterized in that: The proportioning assembly (5) includes a discharge pipe (75) connected to the stirring barrel (2) in a conducting manner. The discharge pipe (75) is connected to the organic fertilizer mixing equipment in a conducting manner. A metering pump (76) is provided on the discharge pipe (75). Starting the metering pump (76) to extract raw materials.

10. The raw material automatic proportioning equipment for liquid biological organic fertilizer according to claim 9, characterized in that: A blocking plate (77) is provided on the outer shell (1). A plurality of leakage holes (78) are evenly and equidistantly provided on the blocking plate (77). A rectangular iron block (79) is provided at one end of the blocking plate (77). A rectangular magnet (81) is provided on one side of the sliding plate (44). A rectangular magnet (81) is also provided at one end of the partition plate (34). Moving the sliding plate (44) upward drives the blocking plate (77) to move upward and dock with the partition plate (34) to separate the outer shell (1).

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