Continuous discharging device for production of planting organic fertilizer
By designing an organic fertilizer production device with components for feeding control, mixing, and anti-clogging discharge, the problems of raw material agglomeration and inaccurate feeding control were solved, achieving automated, stable, and efficient organic fertilizer production.
Patent Information
- Application Number
- CN202511620261.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-01-20
AI Technical Summary
Existing organic fertilizer production feeding devices suffer from problems such as raw material agglomeration leading to channel blockage, lack of mixing and drying functions, and low feeding control precision, which affect production efficiency and quality.
A continuous feeding device including a feeding control component, a mixing component, and a discharge anti-clogging component was designed. The feeding amount is controlled by a solenoid valve, the motor unit drives the mixing rod to stir and heat, and the micro motor drives the feeding roller to prevent clogging, thus realizing automatic control and anti-clogging.
It effectively prevents raw material blockage, ensures uniform mixing and drying of raw materials, improves production stability, reduces manual maintenance, lowers equipment costs, and improves production efficiency and quality.
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Figure CN121362075A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of organic fertilizer production equipment, in particular to a continuous discharging device for planting organic fertilizer production. BACKGROUND
[0002] As an important fertilizer for agricultural planting, the production process of organic fertilizer needs to go through multiple links such as raw material mixing, fermentation, crushing and discharging. The continuous discharging device is a key equipment for ensuring the production efficiency of organic fertilizer, which can realize stable conveying of raw materials or finished organic fertilizer and avoid problems such as low efficiency and uneven discharging caused by manual discharging. At present, the discharging devices for organic fertilizer production on the market are mostly single conveying structures, which can only realize basic discharging function and have obvious defects in complex production scenes.
[0003] Publication No. CN202221483765.2 discloses a quantitative discharging device for organic fertilizer production. The device realizes quantitative conveying of organic fertilizer through a material bin, a conveying screw and a quantitative sensor. Although the problem of discharging amount control is solved, the device has structural defects: it lacks a raw material pretreatment function, and the organic fertilizer raw materials are prone to blockage of the discharging channel due to caking; and it does not have a heating and stirring assembly, so it cannot dry and mix the wet raw materials, which may affect the quality of subsequent fermentation or processing; at the same time, the discharging channel has no anti-blocking structure, and the caked raw materials may adhere to the inner wall of the channel after long-term use, which requires frequent manual cleaning and reduces the production continuity.
[0004] However, the existing discharging devices for organic fertilizer production have the following problems: 1. The raw materials are prone to caking during the discharging process, and the discharging channel has no active anti-blocking structure, so the accumulation of caked raw materials may cause channel blockage, which requires manual cleaning and affects production efficiency; 2. The device lacks a raw material stirring and drying function, and wet or unevenly composed raw materials are directly discharged, which may affect the quality of the finished organic fertilizer and requires additional stirring and drying equipment, increasing production costs; 3. The feeding control precision is low, and the feeding amount is mostly adjusted manually, which cannot realize automatic and precise control and may cause problems such as equipment overload due to excessive feeding or intermittent discharging due to insufficient feeding, reducing production stability. SUMMARY
[0005] The purpose of the present application is to provide a continuous discharging device for planting organic fertilizer production to solve the problems in the background art.
[0006] To solve the above technical problems, the present application provides the following technical solution: a box body, a support fixedly connected to the bottom of the box body, a top plate installed on the top of the box body, a feeding control assembly arranged on the surface of the top plate, a stirring and mixing assembly arranged in the box body, a discharging anti-blocking assembly arranged at the bottom of the box body, and a switch detachably connected to the surface of the box body.
[0007] The feeding control assembly comprises a plurality of horizontal plates detachably connected to the surface of the top plate, an inner cavity formed in the horizontal plate, an electromagnetic valve installed in the inner cavity, a connecting port formed in the electromagnetic valve, a connecting head fixedly connected to one end of the feeding pipe, and the feeding pipe connected with the connecting head.
[0008] The stirring and mixing assembly comprises a motor group detachably connected to one side of the surface of the box body, a rotating shaft rod connected with the output end of the motor group, a plurality of horizontal rods fixedly connected to the surface of the rotating shaft rod, an arc-shaped stirring rod connected with the horizontal rod, a wire inlaidly connected to the inner part of the rotating shaft rod and the horizontal rod, and a heating pipe connected with the inner part of the arc-shaped stirring rod.
[0009] The discharging anti-blocking assembly comprises a discharging pipe connected with the bottom of the box body, a supporting rod fixedly connected to the surface of the discharging pipe, a micro motor installed on the surface of the supporting rod, a stirring roller connected with one end of the micro motor, an inner thread formed in one end of the discharging pipe, a sealing plate connected with the inner thread, and a handle fixedly connected to one end of the sealing plate.
[0010] The switch is electrically connected with the electromagnetic valve, the motor group, the heating pipe, and the micro motor, and controls the operation of each electric component through the switch.
[0011] Preferably, the horizontal plates are uniformly distributed along the surface of the top plate, and a plurality of the horizontal plates correspond to a plurality of the feeding pipes respectively, and each of the feeding pipes is connected with the connecting port of the corresponding electromagnetic valve through the connecting head.
[0012] Preferably, the electromagnetic valve is an electromagnetic control valve, and the electromagnetic valve receives a control signal through the switch to automatically adjust the feeding amount.
[0013] Preferably, the connecting head is sealingly connected with the connecting port, and a sealing gasket is sleeved on the surface of the connecting head.
[0014] Preferably, the heating pipes are uniformly distributed in the arc-shaped stirring rod, and the heating pipes obtain power through the wire.
[0015] Preferably, the arc of the arc-shaped stirring rod is matched with the arc of the inner wall of the box body.
[0016] Preferably, the stirring roller is located in the discharging pipe, and the stirring roller is fixedly connected with the output end of the micro motor, and the micro motor drives the stirring roller to rotate around the axis thereof.
[0017] Preferably, the micro motor is a waterproof motor, and a waterproof shell is wrapped on the surface of the micro motor.
[0018] Preferably, the sealing plate is detachably connected with the internal thread of the discharge pipe, the handle is fixedly connected with one end of the sealing plate away from the discharge pipe, and rotating the handle can drive the sealing plate to move along the axial direction of the discharge pipe.
[0019] A method for using a continuous discharging device for planting organic fertilizer production, comprising the following steps:
[0020] Step one, equipment debugging: check the connection state of the support and the bottom of the box body to ensure that the whole device is placed stably; start the electromagnetic valve, motor set, heating pipe and micro motor through the switch respectively to test the working state of each component; connect the feeding pipe with the connecting port of the electromagnetic valve through the connecting head, rotate the handle to make the sealing plate cooperate with the internal thread of the discharge pipe, and close the discharge pipe;
[0021] Step two, feed control: start the electromagnetic valve through the switch, open the connecting port of the electromagnetic valve, and feed the raw materials into the box body through the feeding pipe; adjust the opening degree of the electromagnetic valve through the switch to control the feeding amount of the feeding pipe;
[0022] Step three, stirring and drying: start the motor set and the heating pipe, the motor set drives the rotating shaft rod to rotate, and the rotating shaft rod drives the cross rod and the arc-shaped stirring rod to rotate synchronously; the heating pipe obtains power through the wire and generates heat to heat the raw materials in the box body;
[0023] Step four, anti-blocking and discharging: rotate the handle to separate the sealing plate from the internal thread of the discharge pipe, open the discharge pipe, start the micro motor, and the micro motor drives the stirring roller to rotate in the discharge pipe, and the raw materials are discharged through the discharge pipe;
[0024] Step five, production monitoring: during the production process, monitor the working state of the electromagnetic valve, motor set, heating pipe and micro motor through the switch; adjust the opening degree of the electromagnetic valve according to the feeding condition of the raw materials, confirm the rotating state of the stirring roller according to the discharging condition, and adjust the working state of the heating pipe according to the humidity of the raw materials;
[0025] Step six, shutdown and maintenance: after the production is completed, turn off the heating pipe, motor set, micro motor and electromagnetic valve in sequence through the switch; rotate the handle to make the sealing plate cooperate with the internal thread of the discharge pipe, close the discharge pipe, clean the residual raw materials in the feeding pipe and discharge pipe, and check the connection state of each component.
[0026] Compared with the prior art, the beneficial effects of the present application are:
[0027] 1. The device is provided with a support rod on the surface of the discharge pipe, a micro motor is installed on the support rod, the micro motor drives the rotation of the stirring roller in the discharge pipe, which can break the agglomerated raw materials during the discharging process, avoid the accumulation and blockage of the discharge pipe; at the same time, one end of the discharge pipe is connected with the sealing plate through the internal thread, and the discharge pipe can be opened or closed by rotating the handle, which reduces the manual maintenance workload and avoids the shutdown loss caused by blockage
[0028] 2. The stirring and mixing assembly inside the device drives the rotation of the shaft rod, cross bar and arc-shaped stirring rod through the motor set, which can fully stir and mix the raw materials in the box, ensuring uniform composition of the raw materials; the heating pipe and wire inside the arc-shaped stirring rod are electrically connected, the heating pipe can heat and dry the wet raw materials during the stirring process, without additional stirring and drying equipment, reducing the equipment investment cost; and the arc of the arc-shaped stirring rod is matched with the inner wall of the box, which can fully stir the raw materials in all corners of the box, avoiding waste caused by raw material residue
[0029] 3. A plurality of cross plates on the surface of the top plate correspond to a plurality of feeding pipes, each feeding pipe is connected with the connecting port of the electromagnetic valve through the connecting head, and the opening degree of the electromagnetic valve can be controlled through the switch on the surface of the box, realizing automatic adjustment of the feeding amount; compared with the traditional manual adjustment mode, the problem of equipment overload caused by excessive feeding or intermittent feeding caused by insufficient feeding can be effectively avoided, and the stability of the production process is improved; at the same time, different raw materials can be transported through multiple feeding pipes, and the feeding amount of each feeding pipe can be controlled through the electromagnetic valve, meeting the demand of multi-raw material ratio mixing in organic fertilizer production. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is the overall structure diagram of the continuous discharging device for planting organic fertilizer production of the application;
[0031] Figure 2 It is the support rod structure diagram of the continuous discharging device for planting organic fertilizer production of the application;
[0032] Figure 3 It is the discharge pipe structure diagram of the continuous discharging device for planting organic fertilizer production of the application;
[0033] Figure 4 It is the arc-shaped stirring rod structure diagram of the continuous discharging device for planting organic fertilizer production of the application;
[0034] Figure 5 It is the internal structure diagram of the cross plate of the continuous discharging device for planting organic fertilizer production of the application;
[0035] Figure 6 It is the connecting head structure diagram of the continuous discharging device for planting organic fertilizer production of the application.
[0036] As shown in the figure, the whole structure schematic diagram of the continuous discharging device for planting organic fertilizer production comprises a box body 1, a support 2 fixedly connected to the bottom of the box body 1, a top plate 3 installed on the top of the box body 1, a feeding control assembly 4 arranged on the surface of the top plate 3, a stirring and mixing assembly 5 arranged in the box body 1, a discharging anti-blocking assembly 6 arranged at the bottom of the box body 1, and a switch 7 detachably connected to the surface of the box body 1. DETAILED DESCRIPTION
[0037] In order to make the technical means, creative features, purposes and effects of the present application easy to understand, the present application is further described below in combination with specific embodiments.
[0038] Please refer to Figures 1-6 As shown in the figure, the whole structure schematic diagram of the continuous discharging device for planting organic fertilizer production comprises a box body 1, a support 2 fixedly connected to the bottom of the box body 1, a top plate 3 installed on the top of the box body 1, a feeding control assembly 4 arranged on the surface of the top plate 3, a stirring and mixing assembly 5 arranged in the box body 1, a discharging anti-blocking assembly 6 arranged at the bottom of the box body 1, and a switch 7 detachably connected to the surface of the box body 1.
[0039] The feeding control assembly 4 comprises a plurality of transverse plates 401 detachably connected to the surface of the top plate 3, an inner cavity 402 opened in the inner part of the transverse plate 401, an electromagnetic valve 403 installed in the inner part of the inner cavity 402, a connecting port 404 opened in the inner part of the electromagnetic valve 403, a connecting head 405 fixedly connected to one end of a feeding pipe 406, and the feeding pipe 406 connected with the connecting head 405, wherein the connecting head 405 is connected with the connecting port 404, and the feeding pipe 406 is controlled by the electromagnetic valve 403 to be on or off.
[0040] The stirring and mixing assembly 5 comprises a motor set 501 detachably connected to one side of the surface of the box body 1, a rotating shaft rod 502 connected with the output end of the motor set 501, a plurality of cross bars 503 fixedly connected to the surface of the rotating shaft rod 502, an arc-shaped stirring rod 504 connected with the cross bars 503, a wire 505 inlaidly connected in the inner part of the rotating shaft rod 502 and the cross bars 503, and a heating pipe 506 connected in the inner part of the arc-shaped stirring rod 504, wherein the heating pipe 506 is electrically connected with the wire 505, and the rotating shaft rod 502 is driven to rotate by the motor set 501 to drive the arc-shaped stirring rod 504 to stir.
[0041] The discharge anti-blocking assembly 6 comprises a discharge pipe 601 connected to the bottom of the box body 1, a supporting rod 602 fixedly connected to the surface of the discharge pipe 601, a micro motor 603 installed on the surface of the supporting rod 602, a poking roller 604 connected to one end of the micro motor 603, an internal thread 605 opened in one end of the discharge pipe 601, a sealing plate 606 connected to the internal thread 605, and a handle 607 fixedly connected to one end of the sealing plate 606.
[0042] The switch 7 is electrically connected with the electromagnetic valve 403, the motor set 501, the heating pipe 506 and the micro motor 603, and each electrical component is controlled to work through the switch 7.
[0043] Specifically, the horizontal plates 401 are uniformly distributed along the surface of the top plate 3, and a plurality of the horizontal plates 401 correspond to a plurality of the feeding pipes 406 respectively, and each feeding pipe 406 is connected to the connecting port 404 of the corresponding electromagnetic valve 403 through the connecting head 405.
[0044] Specifically, the electromagnetic valve 403 is an electromagnetic control valve, and the electromagnetic valve 403 receives a control signal through the switch 7 to automatically adjust the feeding amount.
[0045] Specifically, the connecting head 405 is sealingly connected to the connecting port 404, and a sealing gasket is sleeved on the surface of the connecting head 405.
[0046] Specifically, the heating pipes 506 are uniformly distributed in the arc-shaped stirring rod 504, and the heating pipes 506 obtain power through the wires 505.
[0047] Specifically, the arc of the arc-shaped stirring rod 504 is matched with the arc of the inner wall of the box body 1.
[0048] Specifically, the poking roller 604 is located in the discharge pipe 601, and the poking roller 604 is fixedly connected to the output end of the micro motor 603, and the poking roller 604 is driven to rotate around the axis thereof by the micro motor 603.
[0049] Specifically, the micro motor 603 is a waterproof motor, and a waterproof shell is wrapped on the surface of the micro motor 603.
[0050] Specifically, the sealing plate 606 is detachably connected to the internal thread 605 of the discharge pipe 601, the handle 607 is fixedly connected to one end of the sealing plate 606 away from the discharge pipe 601, and the sealing plate 606 is driven to move along the axis of the discharge pipe 601 by rotating the handle 607.
[0051] A kind of method for using the continuous discharging device of planting organic fertilizer production, comprising the following steps:
[0052] Step one, equipment debugging: check the connection state of support 2 and the bottom of box 1, ensure that the whole device is placed stably;Through switch 7, respectively start electromagnetic valve 403, motor set 501, heating pipe 506, micro motor 603, test the working state of each component;Feeding pipe 406 is connected with the connecting port 404 of electromagnetic valve 403 through connecting head 405, rotate handle 607 to make sealing plate 606 cooperate with the internal thread 605 of discharge pipe 601, close discharge pipe 601;
[0053] Step two, feed control: start electromagnetic valve 403 through switch 7, electromagnetic valve 403 opens connecting port 404, raw materials enter box 1 through feeding pipe 406;Adjust the opening and closing degree of electromagnetic valve 403 through switch 7, control the feeding amount of feeding pipe 406;
[0054] Step three, stirring and drying: start motor set 501 and heating pipe 506, motor set 501 drives rotating shaft rod 502 to rotate, rotating shaft rod 502 drives horizontal rod 503 and arc-shaped stirring rod 504 to rotate synchronously;Heating pipe 506 obtains power through wire 505 and generates heat, heats the raw materials in box 1;
[0055] Step four, anti-blocking discharge: rotate handle 607 to separate sealing plate 606 from the internal thread 605 of discharge pipe 601, open discharge pipe 601;Start micro motor 603, micro motor 603 drives poking roller 604 to rotate inside discharge pipe 601, raw materials are discharged through discharge pipe 601;
[0056] Step five, production monitoring: during production, monitor the working state of electromagnetic valve 403, motor set 501, heating pipe 506 and micro motor 603 through switch 7;Adjust the opening and closing degree of electromagnetic valve 403 according to the raw material feeding condition, confirm the rotating state of poking roller 604 according to the discharge condition, adjust the working state of heating pipe 506 according to the moisture content of raw materials;
[0057] Step six, shutdown maintenance: after production, turn off heating pipe 506, motor set 501, micro motor 603 and electromagnetic valve 403 in sequence through switch 7;Rotate handle 607 to make sealing plate 606 cooperate with the internal thread 605 of discharge pipe 601, close discharge pipe 601;Clean the residual raw materials inside feeding pipe 406 and discharge pipe 601, check the connection state of each component.
[0058] Working principle: The discharge anti-blocking structure effectively guarantees the continuity of production and reduces the number of maintenance stops: In the discharge anti-blocking assembly 6 of the device, the support rods 602 fixedly connected to the surface of the discharge pipe 601 provide a stable installation base for the micro motor 603. The stirring roller 604 connected to one end of the micro motor 603 is located inside the discharge pipe 601. When the device is discharging, the micro motor 603 can drive the stirring roller 604 to continuously rotate inside the discharge pipe 601, which can break up the caked organic fertilizer raw materials in the discharge pipe 601 and prevent the raw materials from accumulating in the discharge pipe 601 and causing blockage. At the same time, one end of the discharge pipe 601 is connected to the sealing plate 606 through the internal thread 605. By rotating the handle 607 at one end of the sealing plate 606, the discharge pipe 601 can be quickly opened or closed. After the device is stopped, the internal residual raw materials can be cleaned without disassembling the discharge pipe 601, which greatly reduces the workload and time cost of manual maintenance, ensures the continuous and stable production of organic fertilizer, avoids production interruptions caused by discharge blockage, further improves the overall production efficiency, and improves the quality of raw material processing through integrated stirring and drying design: The stirring and mixing assembly 5 inside the device integrates stirring and drying functions. When the shaft rod 502, cross rod 503, and arc-shaped stirring rod 504 are rotated by the motor set 501, the arc-shaped stirring rod 504 can stir the organic fertilizer raw materials in the box 1 in all directions. Since the arc of the arc-shaped stirring rod 504 is compatible with the arc of the inner wall of the box 1, it can fully contact the raw materials in all corners of the box 1, effectively preventing uneven stirring of the raw materials in the box 1 and ensuring uniform composition of the raw materials. At the same time, the heating pipes 506 connected inside the arc-shaped stirring rod 504 can generate heat after obtaining electricity through the wires 505. During the stirring process, the wet raw materials are simultaneously heated and dried, eliminating the need for separate purchase of stirring and drying equipment, which not only reduces the equipment footprint in the production workshop but also significantly reduces the cost of equipment procurement and later maintenance. In addition, the heating pipes 506 are evenly distributed inside the arc-shaped stirring rod 504, which can uniformly transfer heat to the raw materials, avoiding the problem of overheating or incomplete drying of local raw materials, further ensuring the quality of raw material processing, and providing high-quality raw material basis for subsequent organic fertilizer fermentation and processing links. The automatic feed control improves production stability and reduces manual intervention errors: The feed control assembly 4 on the surface of the top plate 3 adopts the design of multiple cross plates 401 corresponding to multiple feed pipes 406. Each feed pipe 406 is connected to the connection port 404 of the electromagnetic valve 403 through the connecting head 405. The opening and closing degree of the electromagnetic valve 403 can be automatically controlled through the switch 7 on the surface of the box 1. Compared with the traditional manual valve adjustment method, the raw material delivery amount of each feed pipe 406 can be more accurately controlled, effectively avoiding the problem of excessive or insufficient feed caused by human operation errors.Meanwhile, the electromagnetic valve 403 can quickly respond after receiving the control signal through the switch 7, can adjust the feeding speed according to the real-time demand of the production process, and ensure that the raw materials in the box 1 always remain in the appropriate inventory range, avoid the situation that the box 1 is overloaded due to too much raw materials or the mixing and discharging links are interrupted due to insufficient raw materials; in addition, the connecting head 405 and the connecting port 404 are connected in a sealing fit, and the surface of the connecting head 405 is sleeved with a sealing gasket, which can effectively prevent the raw materials from leaking from the connecting part during the feeding process, reduce the waste of raw materials, and at the same time avoid the pollution of the equipment and the production environment caused by the leakage of raw materials, and further improve the stability and environmental protection of the device operation.
[0059] The above shows and describes the basic principles and main features of the present application and the advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A continuous discharging device for planting organic fertilizer production, characterized in that: The utility model provides a kind of material mixing machine, including box (1), support (2) fixedly connected to the bottom of box (1), top plate (3) installed on the top of box (1), feed control assembly (4) is arranged on the surface of top plate (3), stirring mixing assembly (5) is arranged in the inside of box (1), discharge anti-blocking assembly (6) is arranged in the bottom of box (1) and switch (7) can be detachably connected to the surface of box (1); The feed control assembly (4) includes a plurality of horizontal plates (401) detachably connected to the surface of the top plate (3), an inner cavity (402) opened in the horizontal plate (401), an electromagnetic valve (403) installed in the inner cavity (402), a connecting port (404) opened in the electromagnetic valve (403), a connecting head (405) fixedly connected to one end of the feed pipe (406), and a feed pipe (406) connected with the connecting head (405). The connecting head (405) is connected with the connecting port (404), and the feed pipe (406) is controlled by the electromagnetic valve (403) to control the feed on-off. The stirring mixing assembly (5) includes a motor set (501) detachably connected to one side of the surface of the box (1), a rotating shaft rod (502) connected with the output end of the motor set (501), a plurality of horizontal rods (503) fixedly connected to the surface of the rotating shaft rod (502), an arc-shaped stirring rod (504) connected to the horizontal rod (503), a wire (505) inlaidly connected to the inside of the rotating shaft rod (502) and the horizontal rod (503), and a heating pipe (506) connected with the inside of the arc-shaped stirring rod (504). The heating pipe (506) is electrically connected with the wire (505), and the rotating shaft rod (502) is driven to rotate by the motor set (501) to drive the arc-shaped stirring rod (504) to stir. The discharge anti-blocking assembly (6) includes a discharge pipe (601) connected with the bottom of the box (1), a support rod (602) fixedly connected to the surface of the discharge pipe (601), a micro motor (603) installed on the surface of the support rod (602), a stirring roller (604) connected with one end of the micro motor (603), an internal thread (605) opened in one end of the discharge pipe (601), a sealing plate (606) connected with the internal thread (605), and a handle (607) fixedly connected to one end of the sealing plate (606). The stirring roller (604) is located in the inside of the discharge pipe (601), and the stirring roller (604) is driven to rotate by the micro motor (603). The switch (7) is electrically connected with the electromagnetic valve (403), the motor set (501), the heating pipe (506), and the micro motor (603), and each electrical component is controlled to work by the switch (7).
2. The continuous discharging device for planting organic fertilizer production according to claim 1, characterized in that: The horizontal plates (401) are evenly distributed along the surface of the top plate (3), and a plurality of the horizontal plates (401) correspond to a plurality of the feed pipes (406), respectively. Each feed pipe (406) is connected with the connecting port (404) of the corresponding electromagnetic valve (403) through the connecting head (405).
3. The continuous discharging device for planting organic fertilizer production according to claim 2, characterized in that: The electromagnetic valve (403) is an electromagnetic control valve, which receives a control signal through the switch (7) to realize automatic adjustment of the feeding amount.
4. The continuous discharging device for planting organic fertilizer production according to claim 2, characterized in that: The connecting head (405) is in sealing fit connection with the connecting port (404), and a sealing gasket is arranged on the surface of the connecting head (405).
5. The continuous discharging device for planting organic fertilizer production according to claim 4, characterized in that: The heating pipes (506) are uniformly distributed in the arc-shaped stirring rod (504), and the heating pipes (506) obtain power through the wires (505).
6. The continuous discharging device for planting organic fertilizer production according to claim 4, characterized in that: The arc of the arc-shaped stirring rod (504) is matched with the arc of the inner wall of the box body (1).
7. The continuous discharging device for planting organic fertilizer production according to claim 6, characterized in that: The poking roller (604) is located in the discharge pipe (601), and the poking roller (604) is fixedly connected with the output end of the micro motor (603) and rotates around the axis of the poking roller (604) by the micro motor (603).
8. The continuous discharging device for planting organic fertilizer production according to claim 7, characterized in that: The micro motor (603) is a waterproof motor, and the micro motor (603) is wrapped with a waterproof shell.
9. The continuous discharging device for organic fertilizer production according to claim 1, characterized in that: The sealing plate (606) is detachably connected with the internal thread (605) of the discharge pipe (601), the handle (607) is fixedly connected with one end of the sealing plate (606) away from the discharge pipe (601), and rotating the handle (607) can drive the sealing plate (606) to move along the axis direction of the discharge pipe (601).
10. The use of a continuous unloading device for organic fertilizer production according to claim 9, characterized in that: The method comprises the following steps: Step one, equipment debugging: check the connection state of the support (2) and the bottom of the box body (1) to ensure that the whole device is placed stably; start the electromagnetic valve (403), the motor set (501), the heating pipe (506) and the micro motor (603) through the switch (7) respectively to test the working state of each component; connect the feeding pipe (406) with the connecting port (404) of the electromagnetic valve (403) through the connecting head (405), rotate the handle (607) to make the sealing plate (606) fit with the internal thread (605) of the discharge pipe (601), and close the discharge pipe (601); Step two, feeding control: start the electromagnetic valve (403) through the switch (7), open the connecting port (404) of the electromagnetic valve (403), and feed the raw materials into the box body (1) through the feeding pipe (406); adjust the opening degree of the electromagnetic valve (403) through the switch (7) to control the feeding amount of the feeding pipe (406); Step three, stirring and drying: start the motor set (501) and the heating pipe (506), the motor set (501) drives the rotating shaft rod (502) to rotate, the rotating shaft rod (502) drives the cross rod (503) and the arc-shaped stirring rod (504) to rotate synchronously, the heating pipe (506) obtains power through the wire (505) and generates heat to heat the raw materials in the box body (1); Step four, anti-blocking and discharging: rotate the handle (607) to separate the sealing plate (606) from the internal thread (605) of the discharge pipe (601), open the discharge pipe (601), start the micro motor (603), the micro motor (603) drives the poking roller (604) to rotate in the discharge pipe (601), and the raw materials are discharged through the discharge pipe (601); Step five, production monitoring: during the production process, the working state of electromagnetic valve (403), motor group (501), heating tube (506), micro motor (603) is monitored through switch (7); the opening degree of electromagnetic valve (403) is adjusted according to the raw material feeding condition, the rotation state of the poking roller (604) is confirmed according to the discharging condition, and the working state of the heating tube (506) is adjusted according to the raw material humidity; Step six, shutdown maintenance: after the production is completed, the heating tube (506), the motor group (501), the micro motor (603) and the electromagnetic valve (403) are sequentially closed through the switch (7); the handle (607) is rotated to make the sealing plate (606) cooperate with the internal thread (605) of the discharging pipe (601), and the discharging pipe (601) is closed; the residual raw materials in the feeding pipe (406) and the discharging pipe (601) are cleaned, and the connection state of each component is checked.