Agricultural green fertilizer obtaining and fermenting equipment
By combining a servo motor-driven power rod and stirring plate with a hydraulic chamber and an arc-shaped rod, the problem of fertilizer being difficult to turn over near the bottom of the fermentation chamber wall is solved, achieving more efficient fertilizer fermentation and equipment stability.
Patent Information
- Application Number
- CN202511191027.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-25
- Publication Date
- 2025-11-21
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing agricultural green fertilizer fermentation equipment, when stirring viscous fertilizer, some fertilizer near the bottom of the fermentation chamber is difficult to turn over, resulting in reduced fermentation efficiency.
The system uses a servo motor-driven power rod and stirring plate in conjunction with a hydraulic chamber and an arc rod. The fertilizer near the bottom of the fermentation chamber is agitated by the intermittent agitation of the flipping plate. An auxiliary input component is used to prevent fertilizer from entering the gas pipeline, and a dredging component is used to prevent the discharge port from becoming blocked.
This improved the fermentation effect of fertilizer, reduced the impact of gas transmission, and ensured the stability and reliability of the fermentation equipment.
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Figure CN120987685A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of fertilizer fermentation, in particular to a green fertilizer for agriculture fermentation equipment. BACKGROUND
[0002] The production of green fertilizer for agriculture usually relies on a fermentation process, which converts organic matter into nutrients available to plants through the activity of microorganisms. Green fertilizer is an environmentally friendly and sustainable type of fertilizer designed to replace chemical fertilizers, reduce environmental pollution, and improve soil fertility. Fermentation refers to the process of preparing microbial cells themselves, or directly metabolizing products or secondary metabolites by the life activities of microorganisms under aerobic or anaerobic conditions. Fermentation is sometimes written as fermentation, and its definition varies depending on the context of use. The commonly used fermentation refers to the decomposition process of organisms to organic matter.
[0003] A fermentation equipment convenient to clean for fertilizer processing is disclosed in Chinese patent CN113698237B granted and announced on September 6, 2022, which comprises a fermentation mechanism including a fermentation tank, a first motor fixedly connected to the top end of the fermentation tank, a second motor fixedly connected to the top end of the fermentation tank on one side, a feed inlet inserted and connected to the top end of the fermentation tank, a discharge outlet inserted and connected to the bottom end of the fermentation tank, a stirring rod provided on the inner side of the fermentation tank, a stirring plate fixedly connected to the outer side wall of the stirring rod, and a support frame fixedly connected to the bottom end of the fermentation tank.
[0004] In the above application file, the stirring rod and the stirring plate are used to stir the fertilizer being fermented, improving the fermentation efficiency of the device. However, when the device is used to stir viscous fertilizer, the part of the fertilizer close to the inner wall of the fermentation tank on the bottom side is difficult to be stirred, thereby reducing the fermentation effect of the fertilizer at this part. SUMMARY
[0005] In view of the deficiencies of the prior art, the present application provides a green fertilizer for agriculture fermentation equipment to solve the problems raised in the background art. To achieve the above purpose, the present application is implemented by the following technical scheme: a green fertilizer for agriculture fermentation equipment, comprising: a fermentation tank, a feed inlet is formed in the top of the fermentation tank, a power rod driven by a servo motor is assembled in the interior of the fermentation tank, and a stirring plate is assembled on the side of the power rod; a cover plate assembled on the feed inlet by setting a torsional spring, and a gas conveying pipeline connected with a gas pump is assembled on the side of the fermentation tank; The side of the fermentation bin is equipped with a hydraulic bin one penetrating the fermentation bin, the side of the stirring plate is rotationally connected with a torsion spring rod, the bottom of the torsion spring rod is fixedly connected with a turnover plate, a transmission part for transmission is equipped between the cover plate and the turnover plate, the inside of the gas pipeline is equipped with an auxiliary input assembly for inputting the fermentation gas, and the inside of the fermentation bin is equipped with a dredging assembly for dredging the discharge pipe. Through the arrangement of the device, the part of the fertilizer close to the inner wall bottom side of the fermentation bin can be turned up, and the fermentation effect of the device on the fertilizer is improved.
[0006] Preferably, the transmission part comprises a hydraulic bin one penetrating the fermentation bin, one end of the hydraulic bin one is slidably connected with an arc-shaped rod one through a piston, the other end of the hydraulic bin one is slidably connected with an arc-shaped rod two through a piston, one end of the arc-shaped rod two is equipped with a spring one, the other end of the arc-shaped rod two is equipped with a pressing block, and the top of the torsion spring rod is fixedly connected with a stress plate one.
[0007] Preferably, the arc-shaped rod one is located at the side of the cover plate and is in a fixed state with the cover plate.
[0008] Preferably, the spring one is away from the other end of the arc-shaped rod two and is equipped on the inner wall of the hydraulic bin one.
[0009] Preferably, the auxiliary input assembly comprises a hydraulic bin two equipped on the side of the hydraulic bin one, the side of the hydraulic bin two is slidably connected with an arc-shaped rod three through a piston, the inner wall of the gas pipeline is rotationally connected with a penetrating rotating shaft, the outer side of the rotating shaft is fixedly connected with a stress plate two, and the bottom of the rotating shaft is fixedly connected with a blocking block. Through the arrangement of the auxiliary input assembly, the possibility that part of the fertilizer falls into the gas pipeline by mistake when the fertilizer is put in and affects the subsequent gas conveying effect is reduced. Preferably, the hydraulic bin two is located at the side of the hydraulic bin one and is in a communication state with the hydraulic bin one.
[0010] Preferably, the stress plate two is located at the side of the arc-shaped rod three and is in a fixed state with the arc-shaped rod three.
[0011] Preferably, the dredging assembly comprises a hydraulic bin three equipped on the side of the hydraulic bin one, the side of the hydraulic bin three is slidably connected with a connecting rod through a piston, the side of the connecting rod is equipped with a hydraulic bin four, the bottom of the power rod is equipped with a cam, one end of the hydraulic bin four is slidably connected with a stress rod through a piston, the other end of the hydraulic bin four is slidably connected with a dredging rod through a piston, and the side of the stress rod is equipped with a spring two. Through the arrangement of the dredging assembly, the fertilizer can be prevented from blocking the discharge port of the fermentation bin, and the stability of the device during use is improved.
[0012] Preferably, the force receiving rod is located at the side of the cam and in contact with the cam.
[0013] Preferably, the spring is located at the side of the force receiving rod and is mounted on the inner wall of the hydraulic bin four.
[0014] The application provides a green fertilizer fermentation device for agriculture. (1) The green fertilizer fermentation device for agriculture opens the feeding port on the fermentation bin, puts the fertilizer to be fermented into the fermentation bin, then resets the cover plate and starts the stirring plate, cooperates with the hydraulic bin one, the arc-shaped rod one, the arc-shaped rod two, the spring one, the extrusion block, the torsion spring rod and the force receiving plate one, so that the turning plate intermittently turns at a certain angle, and the part of the fertilizer close to the inner wall of the fermentation bin is turned upward, thereby improving the fermentation effect of the device on the fertilizer.
[0015] (2) The green fertilizer fermentation device for agriculture cooperates with the hydraulic bin two, the arc-shaped rod three, the shaft, the force receiving plate two and the block when the oil in the hydraulic bin one flows to the side close to the arc-shaped rod two and the cover plate is in the closed state, so that the gas pipeline can be opened, and the catalytic gas for fermentation can be introduced. When the cover plate is in the open state, the block can reseal the gas pipeline, thereby reducing the possibility that part of the fertilizer falls into the gas pipeline when the fertilizer is put in, thereby affecting the subsequent gas conveying effect.
[0016] (3) The green fertilizer fermentation device for agriculture cooperates with the hydraulic bin three, the connecting rod, the hydraulic bin four, the cam, the force receiving rod and the spring two when the stirring plate and the discharge port are started to discharge the fertilizer, so that the dredging rod reciprocates in the vertical direction of the discharge port to perform corresponding dredging operation, thereby preventing the fertilizer from blocking the discharge port of the fermentation bin and improving the stability of the device during use. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a three-dimensional structure schematic diagram of part of the parts of the application; Figure 2 It is a three-dimensional structure schematic diagram of the overall cross-section of the application; Figure 3 It is a three-dimensional structure schematic diagram of the overall cross-section of the application from another perspective; Figure 4 It is a three-dimensional structure schematic diagram of part of the parts of the application; Figure 5 It is a three-dimensional structure schematic diagram of the auxiliary input assembly of the application; Figure 6 It is a three-dimensional structure schematic diagram of part of the parts of the auxiliary input assembly of the application; Figure 7A three-dimensional structure schematic diagram of the unclogging assembly of the present application; Figure 8 A three-dimensional structure schematic diagram of partial parts of the unclogging assembly of the present application.
[0018] In the figure: 100, fermentation bin; 200, feed inlet; 300, cover plate; 400, power rod; 500, stirring plate; 600, gas conveying pipeline; 701, hydraulic bin one; 702, arc-shaped rod one; 703, arc-shaped rod two; 704, spring one; 705, extrusion block; 706, torsion spring rod; 707, force receiving plate one; 708, turning plate; 800, auxiliary input assembly; 801, hydraulic bin two; 802, arc-shaped rod three; 803, rotating shaft; 804, force receiving plate two; 805, blocking block; 900, unclogging assembly; 901, hydraulic bin three; 902, connecting rod; 903, hydraulic bin four; 904, cam; 905, force receiving rod; 906, unclogging rod; 907, spring two. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application.
[0020] Embodiment one, please refer to Figures 1-4 A green fertilizer for agriculture fermentation equipment, comprising: The fermentation bin 100 is provided with a feed inlet 200 at the top, and the inside of the fermentation bin 100 is assembled with a power rod 400 driven by a servo motor, and the side of the power rod 400 is assembled with a stirring plate 500; The cover plate 300 is assembled on the feed inlet 200 by setting a torsion spring, and the side of the fermentation bin 100 is assembled with a gas conveying pipeline 600 connected with a gas pump; The side of the fermentation bin 100 is equipped with a hydraulic bin one 701 penetrating the fermentation bin 100, the side of the stirring plate 500 is rotationally connected with a torsion spring rod 706, the bottom of the torsion spring rod 706 is fixedly connected with a turnover plate 708, the cover plate 300 and the turnover plate 708 are equipped with transmission members for transmission, the transmission members comprise the hydraulic bin one 701 penetrating the fermentation bin 100, one end of the hydraulic bin one 701 is slidingly connected with an arc-shaped rod one 702 through setting a piston, the arc-shaped rod one 702 is located at the side of the cover plate 300 and is in a fixed state with the cover plate 300, the other end of the hydraulic bin one 701 is slidingly connected with an arc-shaped rod two 703 through setting a piston. By rotating the cover plate 300, the feeding port 200 on the fermentation bin 100 is opened, the fertilizer to be fermented is put into the fermentation bin 100 through the feeding port 200, then the cover plate 300 is reset, at this time, the feeding port 200 and the discharging port are both in a closed state, the cover plate 300 being reset can drive the arc-shaped rod one 702 fixedly connected therewith to rotate, cooperate with the hydraulic bin one 701 slidingly connected with the arc-shaped rod one 702 through setting a piston, so that the oil liquid originally stored in the hydraulic bin one 701 is extruded by the arc-shaped rod one 702 to flow, the oil liquid immediately flows to the side close to the arc-shaped rod two 703, drives the arc-shaped rod two 703 slidingly connected with the hydraulic bin one 701 through setting a piston to move, the arc-shaped rod two 703 is immediately moved out of the hydraulic bin one 701.
[0021] One end of the arc-shaped rod two 703 is equipped with a spring one 704, the end of the spring one 704 away from the arc-shaped rod two 703 is equipped on the inner wall of the hydraulic bin one 701, the other end of the arc-shaped rod two 703 is equipped with an extrusion block 705, the top of the torsion spring rod 706 is fixedly connected with a stress plate one 707. When the arc-shaped rod two 703 is moved out of the hydraulic bin one 701, the extrusion block 705 equipped on the side of the arc-shaped rod two 703 can be driven to move a certain distance, then the servo motor is started, drives the power rod 400 driven by the servo motor to rotate, the power rod 400 immediately drives the stirring plate 500 equipped on the side thereof to rotate, the stirring plate 500 drives the stress plate one 707 connected therewith through the torsion spring rod 706 to rotate, when the stress plate one 707 rotates to the position of the extrusion block 705, the stress plate one 707 is limited by the extrusion block 705, so that the stress plate one 707 can be driven to rotate counterclockwise by a certain angle with the torsion spring rod 706 as the axis, and when the stress plate one 707 passes one extrusion block 705 with the rotation of the stirring plate 500, the stress plate one 707 and the torsion spring rod 706 are no longer limited, so that the stress plate one 707 can be reset under the action of the torsion spring rod 706 itself, thus, the turnover plate 708 fixedly connected with the torsion spring rod 706 can intermittently turn by a certain angle, the part of the fertilizer close to the inner wall of the fermentation bin 100 is turned upward, and the fermentation effect of the device on the fertilizer is improved. Figure 4
[0022] After the fermentation operation of the fertilizer is completed, the feeding port 200 and the discharge port at the bottom of the fermentation bin 100 are reopened, and the fertilizer can be discharged. At this time, the arc-shaped rod two 703 and the extrusion block 705 are away from the stress plate one 707.
[0023] In use, by rotating the cover plate 300, the feeding port 200 on the fermentation bin 100 is opened, and the fertilizer to be fermented is put into the fermentation bin 100 through the feeding port 200. Then the cover plate 300 is reset, at this time the feeding port 200 and the discharge port are in closed state, the reset cover plate 300 can drive the arc-shaped rod one 702 fixedly connected thereto to rotate, cooperate with the hydraulic bin one 701 connected with the arc-shaped rod one 702 through the piston sliding connection, so that the oil originally stored in the hydraulic bin one 701 is extruded by the arc-shaped rod one 702 to flow, the oil immediately flows to the side close to the arc-shaped rod two 703, drives the arc-shaped rod two 703 connected with the hydraulic bin one 701 through the piston sliding connection to move, the arc-shaped rod two 703 is immediately moved out of the hydraulic bin one 701, drives the extrusion block 705 assembled on the side thereof to move a certain distance, then starts the servo motor, drives the power rod 400 driven by the servo motor to rotate, the power rod 400 immediately drives the stirring plate 500 assembled on the side thereof to rotate, the stirring plate 500 drives the stress plate one 707 connected with it through the torsion spring rod 706 to rotate, when the stress plate one 707 rotates to the extrusion block 705, the stress plate one 707 is limited by the extrusion block 705, so that the stress plate one 707 and the torsion spring rod 706 are prevented from rotating, and the torsion spring rod 706 is prevented from being extruded by the extrusion block 705. When the stress plate one 707 rotates to the extrusion block 705, the stress plate one 707 and the torsion spring rod 706 are no longer limited, and can be reset under the action of the torsion spring rod 706 itself. In this way, the turnover plate 708 fixedly connected with the torsion spring rod 706 can intermittently turn a certain angle, and the part of the fertilizer close to the inner wall of the fermentation bin 100 is turned up. Figure 4 After the fermentation operation of the fertilizer is completed, the feeding port 200 and the discharge port at the bottom of the fermentation bin 100 are reopened, and the fertilizer can be discharged. At this time, the arc-shaped rod two 703 and the extrusion block 705 are away from the stress plate one 707.
[0024] Example two, please refer to Figures 1-6On the basis of the first embodiment, the inside of the gas pipeline 600 is equipped with an auxiliary input assembly 800 for inputting the gas, the auxiliary input assembly 800 comprises a hydraulic chamber two 801 equipped on the side of the hydraulic chamber one 701, the hydraulic chamber two 801 is located on the side of the hydraulic chamber one 701 and is in a communication state with the hydraulic chamber one 701, and the side of the hydraulic chamber two 801 is slidably connected with the arc-shaped rod three 802 through the setting of the piston. When the oil in the hydraulic chamber one 701 flows to the side close to the arc-shaped rod two 703, i.e. the cover plate 300 is in a closed state, part of the oil in the hydraulic chamber one 701 flows into the hydraulic chamber two 801 connected therewith, so that the oil originally stored in the hydraulic chamber two 801 flows to the side close to the arc-shaped rod three 802, driving the arc-shaped rod three 802 slidably connected with the hydraulic chamber two 801 to extend out of the hydraulic chamber two 801.
[0025] The inner wall of the gas pipeline 600 is rotatably connected with a penetrating rotating shaft 803, the outer side of the rotating shaft 803 is fixedly connected with a stress plate two 804, the stress plate two 804 is located on the side of the arc-shaped rod three 802 and is in a fixed state with the arc-shaped rod three 802, and the bottom of the rotating shaft 803 is fixedly connected with a plug 805. When the arc-shaped rod three 802 extends out of the hydraulic chamber two 801, the arc-shaped rod three 802 drives the stress plate two 804 fixedly connected therewith to rotate at a certain angle, the stress plate two 804 drives the rotating shaft 803 fixedly connected therewith to rotate, and the rotating shaft 803 drives the plug 805 fixedly connected therewith to rotate, converting the gas pipeline 600 originally closed by the plug 805 into a communication state, at this time, the catalytic gas for fermentation can be input into the fermentation chamber 100 through the air pump, improving the fermentation efficiency of the device.
[0026] When the cover plate 300 is in an open state, the plug 805 can reseal the gas pipeline 600, reducing the possibility that part of the fertilizer accidentally falls into the gas pipeline 600 when the fertilizer is put in, thereby affecting the subsequent gas conveying effect.
[0027] When in use, on the basis of Embodiment One, when the oil in hydraulic chamber one 701 flows to the side close to arc-shaped rod two 703, i.e. when the cover plate 300 is in the closed state, part of the oil in the hydraulic chamber one 701 flows to the hydraulic chamber two 801 connected thereto, so that the oil originally stored in the hydraulic chamber two 801 flows to the side close to arc-shaped rod three 802, driving the arc-shaped rod three 802 connected to the hydraulic chamber two 801 through the piston sliding connection to extend out of the hydraulic chamber two 801, so that the arc-shaped rod three 802 drives the force plate two 804 fixedly connected thereto to rotate by a certain angle, and the force plate two 804 drives the rotating shaft 803 fixedly connected thereto to rotate, so that the rotating shaft 803 drives the plug 805 fixedly connected thereto to rotate, and the gas pipeline 600 originally closed by the plug 805 is converted into a communication state. At this time, the catalytic gas for fermentation can be introduced into the fermentation chamber 100 through the air pump. When the cover plate 300 is in the open state, the plug 805 can reseal the gas pipeline 600, reducing the possibility that part of the fertilizer falls into the gas pipeline 600 when the fertilizer is put in, thereby affecting the subsequent gas conveying effect.
[0028] Embodiment Three, please refer to Figures 1-8 On the basis of Embodiment One and Embodiment Two, the fermentation chamber 100 is internally assembled with a dredging assembly 900 for dredging the discharge pipe. The dredging assembly 900 includes a hydraulic chamber three 901 assembled on the side of the hydraulic chamber one 701. The side of the hydraulic chamber three 901 is slidingly connected with a connecting rod 902 through a piston. When the oil in the hydraulic chamber one 701 flows to the side close to the arc-shaped rod two 703, i.e. when the cover plate 300 is in the closed state, part of the oil in the hydraulic chamber one 701 flows to the hydraulic chamber three 901 connected thereto, so that the oil originally stored in the hydraulic chamber three 901 flows to the side close to the connecting rod 902, driving the connecting rod 902 connected to the hydraulic chamber three 901 through the piston sliding connection to extend out of the hydraulic chamber three 901.
[0029] The side of the connecting rod 902 is assembled with a hydraulic chamber four 903, and the bottom of the power rod 400 is assembled with a cam 904. One end of the hydraulic chamber four 903 is slidingly connected with a force rod 905 through a piston. The force rod 905 is located at the side of the cam 904 and in contact with the cam 904. When the connecting rod 902 extends out of the hydraulic chamber three 901, the hydraulic chamber four 903 assembled on the connecting rod 902 moves a certain distance, and the force rod 905 slidingly connected between the piston and the hydraulic chamber four 903 moves away from the cam 904, so that when the cam 904 rotates with the power rod 400, the cam 904 does not affect the force rod 905.
[0030] The other end of the hydraulic chamber four 903 is connected with the dredging rod 906 through the setting of the piston sliding connection, the side surface of the force rod 905 is equipped with the spring two 907, the side surface of the spring two 907 is away from the force rod 905, and is equipped on the inner wall of the hydraulic chamber four 903. When the fermentation bin 100 discharges, the connecting rod 902 resets to as shown in Figure 8 The mutual adhesion between the force rod 905 and the cam 904, the stirring plate 500 and the discharge port are used for discharging operation, when the protruding part of the cam 904 rotates to the position of the force rod 905, the force rod 905 can be driven to slide into the hydraulic chamber four 903, the hydraulic chamber four 903 is connected with the force rod 905 through the setting of the piston sliding connection, so that the oil originally stored in the hydraulic chamber four 903 is extruded to move, the oil flows to the side close to the dredging rod 906, the dredging rod 906 connected with the hydraulic chamber four 903 through the setting of the piston sliding connection moves downward, when the protruding part of the cam 904 is away from the position of the force rod 905, the force rod 905 loses the effect, and can reset under the action of the spring two 907, and the dredging rod 906 resets in the same way, so that the dredging rod 906 can reciprocate in the vertical direction of the discharge port to carry out the corresponding dredging operation, so that the discharge port of the fermentation bin 100 is prevented from being blocked by the fertilizer, and the stability of the device during use is improved.
[0031] When the oil in the hydraulic chamber one 701 flows to the side close to the arc-shaped rod two 703, i.e. the cover plate 300 is in the closed state, part of the oil in the hydraulic chamber one 701 flows into the hydraulic chamber three 901 connected therewith, so that the oil originally stored in the hydraulic chamber three 901 flows to the side close to the connecting rod 902, the connecting rod 902 connected with the hydraulic chamber three 901 through the setting of the piston sliding connection extends out of the hydraulic chamber three 901, so that the hydraulic chamber four 903 equipped on the connecting rod 902 moves a certain distance, and the force rod 905 connected with the hydraulic chamber four 903 through the setting of the piston sliding connection moves away from the end of the cam 904, so that when the cam 904 is rotated by the power rod 400, the cam 904 does not affect the force rod 905; when the fermentation bin 100 discharges, the connecting rod 902 resets to as shown in Figure 8As shown in the middle, at this time, the force bar 905 and the cam 904 are mutually fitted, the stirring plate 500 and the discharge port are enabled to discharge, and when the protruding part of the cam 904 rotates to the force bar 905, the force bar 905 can be driven to slide into the hydraulic bin four 903, the hydraulic bin four 903 is connected with the force bar 905 through the piston sliding connection, so that the oil originally stored in the hydraulic bin four 903 is extruded to move, the oil flows to the end close to the dredging rod 906, the dredging rod 906 connected with the hydraulic bin four 903 through the piston sliding connection is driven to move downward, when the protruding part of the cam 904 is away from the force bar 905, the force bar 905 loses the effect, and can be reset under the action of the spring two 907, and the dredging rod 906 is reset, so that the dredging rod 906 can reciprocate in the vertical direction of the discharge port to perform the corresponding dredging operation, so as to prevent the fertilizer from blocking the discharge port of the fermentation bin 100.
[0032] The above is only the preferred embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A fermentation device for obtaining green fertilizer for agricultural use, characterized in that, Include: The fermentation bin is provided with a feeding port at the top, and a power rod driven by a servo motor is arranged in the interior of the fermentation bin, and a stirring plate is arranged on the side of the power rod; A cover plate is arranged on the feeding port by arranging a torsion spring, and a gas conveying pipeline connected with a gas pump is arranged on the side of the fermentation bin; A hydraulic bin one penetrating the fermentation bin is arranged on the side of the fermentation bin, a torsion spring rod is rotatably connected to the side of the stirring plate, a turnover plate is fixedly connected to the bottom of the torsion spring rod, a transmission member for transmission is arranged between the cover plate and the turnover plate, an auxiliary input assembly for inputting a gas is arranged in the interior of the gas conveying pipeline, and a dredging assembly for dredging a discharge pipe is arranged in the interior of the fermentation bin.
2. The green fertilizer fermentation device for agriculture according to claim 1, characterized in that: The transmission member includes a hydraulic bin one penetrating the fermentation bin, one end of the hydraulic bin one is slidably connected with an arc-shaped rod one by arranging a piston, the other end of the hydraulic bin one is slidably connected with an arc-shaped rod two by arranging a piston, one end of the arc-shaped rod two is provided with a spring one, and the other end of the arc-shaped rod two is provided with a pressing block.
3. The green fertilizer fermentation apparatus for agriculture according to claim 2, characterized in that: The arc-shaped rod one is located at the side of the cover plate and is in a fixed state with the cover plate.
4. The green fertilizer fermentation apparatus for agriculture according to claim 2, characterized in that: The spring one is away from one end of the arc-shaped rod two and is arranged on the inner wall of the hydraulic bin one.
5. The green fertilizer fermentation apparatus for agriculture according to claim 2, characterized in that: The auxiliary input assembly includes a hydraulic bin two arranged on the side of the hydraulic bin one, the side of the hydraulic bin two is slidably connected with an arc-shaped rod three by arranging a piston, a penetrating rotating shaft is rotatably connected to the inner wall of the gas conveying pipeline, the outer side of the rotating shaft is fixedly connected with a stress plate two, and the bottom of the rotating shaft is fixedly connected with a block.
6. The green fertilizer fermentation apparatus for agriculture according to claim 5, characterized in that: The hydraulic bin two is located at the side of the hydraulic bin one and is in a communication state with the hydraulic bin one.
7. The green fertilizer fermentation apparatus according to claim 5, wherein: The stress plate two is located at the side of the arc-shaped rod three and is in a fixed state with the arc-shaped rod three.
8. The green fertilizer fermentation apparatus according to claim 5, wherein: The dredging assembly includes a hydraulic bin three arranged on the side of the hydraulic bin one, the side of the hydraulic bin three is slidably connected with a connecting rod by arranging a piston, the side of the connecting rod is provided with a hydraulic bin four, the bottom of the power rod is provided with a cam, one end of the hydraulic bin four is slidably connected with a stress rod by arranging a piston, the other end of the hydraulic bin four is slidably connected with a dredging rod by arranging a piston, and the side of the stress rod is provided with a spring two.
9. The green fertilizer fermentation apparatus according to claim 8, wherein: The stress rod is located at the side of the cam and is in contact with the cam.
10. The green fertilizer fermentation apparatus according to claim 8, wherein: The spring two is away from the side of the stress rod and is arranged on the inner wall of the hydraulic bin four.
Citation Information
Patent Citations
An easy-to-clean fermentation device for fertilizer processing
CN113698237B