Earthworm organic fertilizer production device
Through the improved earthworm organic fertilizer production device, the scraper-type mixing wing rod and multi-angle spraying mechanism are used to solve the problem of earthworm manure splashing and uneven spraying, and the complete mixing and efficient fermentation of earthworm manure soil is achieved.
Patent Information
- Application Number
- CN202422400226.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-30
AI Technical Summary
In the prior art, during the mixing process of the vermicompost organic fertilizer production device, the vermicompost soil is prone to splash onto the inner wall of the fermentation tank, and the spraying range of the humidification mechanism is limited, resulting in some of the manure residues and uneven spraying.
The vermicompost soil agitating fermentation mechanism, fermentation bacteria agent distribution mechanism, drive components, linkage components and a pull-out ring-shaped multi-angle spraying mechanism are adopted. Through scraping-type stirring of the wing rod, the fungus agent mixing wing rod and the multi-angle spraying mechanism, the uniform stirring of the vermicompost soil and the uniform spraying of the fermentation bacteria agent are achieved. Combined with high-speed rotation and multi-angle spraying, we ensure that the manure is completely mixed and fermented.
Effectively scrape off the inner wall manure, improve the unloading speed, ensure uniform fermentation, accelerate the fermentation process, expand the spray range, and improve fermentation efficiency and unloading effect.
Smart Images

Figure CN223163365U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of biological organic fertilizer processing equipment, in particular to an earthworm organic fertilizer production device. Background Art
[0002] Worm manure is a well-rotted organic fertilizer and also a soil with a granular structure. It has a good promoting effect on crop growth and development. Raising a certain number of earthworms in farmland can play a better role in improving soil and fertilizing. During the production process, earthworm manure needs to be mixed and stirred to ensure that the earthworm manure particles are uniform and can be effectively mixed with the soil.
[0003] Worm castings organic fertilizer needs to be fermented during the production process. Therefore, a Chinese utility model patent with a publication number of CN214991200U discloses a worm castings organic fertilizer production mixing device. This patent is used for the production and fermentation of worm castings soil organic fertilizer. The device comprises a fermentation tank provided with a top cover, a feed hopper is installed on one side of the top cover, a stirring mechanism is installed on the top cover, a feeding pipe is connected to the bottom end of the fermentation tank, a discharging mechanism is installed at the bottom end of the feeding pipe, a baffle is plugged into the top of the feeding pipe in a sliding manner, a pull ring is installed on one side of the baffle, a support mechanism is installed at the bottom of the fermentation tank, and a humidifying mechanism is installed on the fermentation tank and the support mechanism;
[0004] The stirring mechanism includes a first motor installed on the top of the top cover, a rotating rod is installed on the bottom end of the top cover through a bearing, a stirring rod is welded on the surface of the rotating rod, the top end of the rotating rod passes through the top cover and is transmission-connected to the output shaft of the first motor, and a protective shell is provided on the outside of the first motor.
[0005] However, in combination with the patent Figure 3 It can be seen that when the stirring mechanism in the earthworm castings organic fertilizer production mixing device stirs the earthworm castings, the earthworm castings are easily splashed on the inner wall of the fermentation tank due to the centrifugal force of rotation, and the water mist sprayed by the humidifying mechanism will increase the viscosity of the earthworm castings splashed on the inner wall of the fermentation tank, so that the earthworm castings in the fermentation tank cannot be completely discharged during discharge, and some residual earthworm castings will stick to the inner wall of the fermentation tank.
[0006] At the same time, the patent Figure 3 It can be seen that the humidifying mechanism has only one spray head. Therefore, when the humidifying mechanism sprays water mist, its spraying range in the fermentation tank is limited.
[0007] Based on this, a device for producing earthworm organic fertilizer is now proposed. Summary of the Invention
[0008] 1. Technical issues to be resolved
[0009] In view of the deficiencies of the prior art, the present utility model provides an earthworm organic fertilizer production device to solve the problems raised in the background art:
[0010] First, when the stirring mechanism in the earthworm manure organic fertilizer production mixing device disclosed in the patent publication number CN214991200U stirs the earthworm manure soil, due to the centrifugal force generated by rotation, the earthworm manure soil is likely to splash on the inner wall of the fermentation tank. Moreover, the water mist sprayed by the humidifying mechanism will increase the adhesive force of the earthworm manure soil splashed on the inner wall of the fermentation tank, resulting in the inability to completely discharge all the earthworm manure soil in the fermentation tank during discharging, and a part of the residual earthworm manure soil will adhere to the inner wall of the fermentation tank.
[0011] Second, at the same time, there is only one spray head in the humidifying mechanism of the earthworm manure organic fertilizer production mixing device disclosed in the patent publication number CN214991200U. Therefore, when the humidifying mechanism sprays water mist, the spraying range in the fermentation tank is limited.
[0012] (2) Technical solution
[0013] To achieve the above object, the present utility model provides the following technical solution:
[0014] An earthworm organic fertilizer production device, comprising:
[0015] An earthworm manure soil stirring type fermentation mechanism, the earthworm manure soil stirring type fermentation mechanism includes an earthworm manure soil fermentation cylinder, one side of the top of the earthworm manure soil fermentation cylinder is provided with a feed inlet, the bottom of the earthworm manure soil fermentation cylinder is provided with two discharge ports, and discharge regulating valves are fixedly installed on both of the two discharge ports. A scraping type stirring and discharging wing bar is installed on the earthworm manure soil fermentation cylinder; <s
[0016] A fermentation bacteria agent preparation mechanism, the fermentation bacteria agent preparation mechanism includes a fermentation bacteria agent cylinder, one side of the top of the fermentation bacteria agent cylinder is provided with a filling port, and a bacteria agent mixing wing bar is installed on the fermentation bacteria agent cylinder;
[0017] A driving component, the driving component is installed on the earthworm manure soil stirring type fermentation mechanism, and after installation, one end of the driving component is connected to the scraping type stirring and discharging wing bar;
[0018] A linkage component, the linkage component is installed between the scraping type stirring and discharging wing bar and the bacteria agent mixing wing bar, and after installation, the bacteria agent mixing wing bar can be synchronously linked with the scraping type stirring and discharging wing bar;
[0019] A pumping type annular multi-angle spraying mechanism, the pumping type annular multi-angle spraying mechanism has a suction part and a spraying part. The suction part of the pumping type annular multi-angle spraying mechanism is installed on the fermentation bacteria agent cylinder, and the spraying part of the pumping type annular multi-angle spraying mechanism is installed on the earthworm manure soil fermentation cylinder; and
[0020] The frame structure is installed between the earthworm manure fermentation cylinder and the fermentation agent cylinder.
[0021] Preferably, rotating grooves are provided at the centers of the bottoms of the inner cavities of the earthworm manure fermentation cylinder and the fermentation agent cylinder;
[0022] The scraping and stirring feeding wing rod has a main spindle rod, and one end of the bottom of the main spindle rod is rotatably installed in the rotating groove at the bottom of the inner cavity of the earthworm manure fermentation cylinder, and the top end of the main spindle rod penetrates upward through the top cover of the earthworm manure fermentation cylinder and extends outward;
[0023] A number of groups of first stirring wing rods distributed in a circumferential manner are provided on the main spindle rod, and scraping wing plates are embedded at the edges of each group of the first stirring wing rods;
[0024] The outer edge of each scraping wing plate is tangent to the inner cavity side wall of the earthworm manure fermentation cylinder and can slide in contact with the inner cavity side wall of the earthworm manure fermentation cylinder in a circular motion.
[0025] Preferably, a shaft sleeve is fixedly installed at the bottom of the main spindle rod, and a plurality of scraping bottom plates are provided on the side wall of the shaft sleeve. The plurality of scraping bottom plates are distributed in a circumferential manner on the shaft sleeve, and each scraping bottom plate is fixedly connected to the shaft sleeve;
[0026] The bottom of each scraping bottom plate can slide in contact with the bottom of the inner cavity of the earthworm manure fermentation cylinder in a circular motion;
[0027] The outer edge of each scraping bottom plate is tangent to the inner cavity side wall of the earthworm manure fermentation cylinder and can slide in contact with the inner cavity side wall of the earthworm manure fermentation cylinder in a circular motion.
[0028] Preferably, the agent mixing wing rod has a secondary spindle rod, and one end of the bottom of the secondary spindle rod is rotatably installed in the rotating groove at the bottom of the inner cavity of the fermentation agent cylinder. One end of the top of the secondary spindle rod is fixedly installed with a transmission spindle rod, and the top end of the transmission spindle rod penetrates upward through the top cover of the earthworm manure fermentation cylinder and extends outward;
[0029] The top end of the transmission spindle rod is flush with the top end of the main spindle rod;
[0030] A number of groups of mixing wing rods distributed in a circumferential manner are provided on the secondary spindle rod.
[0031] Preferably, the driving component includes a reduction motor, and the end of the output shaft of the reduction motor is fixedly connected to the top end of the main spindle rod;
[0032] The driving component further includes a motor bracket, the top of the motor bracket is fixedly installed on the reduction motor, and the bottom of the motor bracket is fixedly installed on the top cover of the earthworm manure fermentation cylinder.
[0033] Preferably, the linkage component includes a driving pulley fixedly installed at one end of the top of the main shaft rod, a driven pulley fixedly installed at one end of the top of the transmission shaft rod, and a linkage belt sleeved on the driving pulley and the driven pulley;
[0034] The driving pulley and the driven pulley are on the same horizontal plane.
[0035] Preferably, the suction part of the pumping and annular multi-angle spraying mechanism includes a pumping pump, the pumping pump is fixedly installed on the top cover of the fermentation bacteria agent cylinder, the feeding end of the pumping pump is communicated with a pumping hose, and the free end of the pumping hose extends downward, penetrates inward from the bottom of the side wall of the fermentation bacteria agent cylinder, and extends to the bottom of the inner cavity of the fermentation bacteria agent cylinder;
[0036] Wherein, the free end of the pumping hose is tangent to the bottom of the inner cavity of the fermentation bacteria agent cylinder;
[0037] The discharging end of the pumping pump is communicated with a conveying hose;
[0038] The spraying part of the pumping and annular multi-angle spraying mechanism includes an annular pipe, the annular pipe is arranged on the upper part of the side wall of the earthworm manure fermentation cylinder, there is a water inlet joint on the outer side wall of the annular pipe, and the free end of the conveying hose is inserted and installed in the water inlet joint;
[0039] Wherein, the water inlet joint is communicated with the inner cavity of the annular pipe;
[0040] A plurality of nozzles are arranged on the inner side wall of the annular pipe, and the plurality of nozzles are circumferentially distributed on the annular pipe;
[0041] Wherein, each nozzle is communicated with the inner cavity of the annular pipe;
[0042] The nozzle of each nozzle penetrates inward through the side wall of the earthworm manure fermentation cylinder and extends to the upper part of the inner cavity of the earthworm manure fermentation cylinder;
[0043] Wherein, each nozzle does not contact the scraping fin.
[0044] Preferably, the frame structure includes a waist-shaped bottom plate, both sides of the waist-shaped bottom plate have arc-shaped parts, a first arc-shaped support plate is fixedly installed at the top of the arc-shaped part on one side of the waist-shaped bottom plate, and a second arc-shaped support plate is fixedly installed at the top of the arc-shaped part on the other side of the first arc-shaped support plate. A first fixing ring is fixedly installed at the top of the first arc-shaped support plate, a second fixing ring is fixedly installed at the top of the second arc-shaped support plate, and connecting side plates are fixedly installed on both sides between the first fixing ring and the second fixing ring;
[0045] The first fixing ring is fixedly installed on the side wall of the earthworm manure fermentation cylinder, and the second fixing ring is fixedly installed on the side wall of the fermentation agent cylinder.
[0046] Preferably, a collecting member is detachably installed on the waist-shaped bottom plate.
[0047] Preferably, the collecting member is a receiving box, and the receiving box is placed on the top of the waist-shaped bottom plate and below the corresponding two discharge ports.
[0048] Beneficial effects:
[0049] The utility model provides an earthworm organic fertilizer production device, which has the following beneficial effects:
[0050] First, in the present utility model, when the scraping and stirring feeding wing rods mix and stir the earthworm manure, the earthworm manure splashed on the inner wall of the earthworm manure fermentation cylinder due to centrifugal force can also be scraped off and fall downward. After falling, it can be mixed and stirred by the scraping and stirring feeding wing rods again;
[0051] Moreover, after the earthworm manure is fermented and forms earthworm organic fertilizer, when one or both discharge regulating valves are opened, the scraping and stirring feeding wing rods can also assist in discharging during the mixing and stirring process, so as to further improve the discharging speed.
[0052] Second, in the present utility model, the driving component can drive the high-speed rotation of the scraping and stirring feeding wing rods. When the scraping and stirring feeding wing rods rotate at a high speed, they can mix and stir the earthworm manure to be fermented in the earthworm manure fermentation cylinder;
[0053] The fermentation agent preparation mechanism is filled with a fermentation agent aqueous solution, and the fermentation agent preparation mechanism can mix the fermentation agent aqueous solution inside it evenly. Specifically:
[0054] The fermentation agent can be added into the fermentation agent cylinder through the filling port. After the addition of the fermentation agent is completed, water can be added into the fermentation agent cylinder through the filling port again. After the water injection is completed, under the stirring and mixing action of the agent mixing wing rods, the fermentation agent in the fermentation agent cylinder can be fully mixed with water and form a fermentation agent aqueous solution;
[0055] The aqueous solution of the fermentation inoculant can accelerate the fermentation of the earthworm manure soil.
[0056] Third, in the present utility model, since the inoculant mixing wing rods can be synchronously linked with the scraping and stirring feeding wing rods through the linkage components, when the scraping and stirring feeding wing rods mix and stir the earthworm manure soil in the earthworm manure fermentation cylinder, the inoculant mixing wing rods can synchronously mix and stir the aqueous solution of the fermentation inoculant in the fermentation inoculant cylinder.
[0057] Fourth, in the present utility model, the suction part of the pumping and annular multi-angle spraying mechanism can extract the aqueous solution of the fermentation inoculant in the fermentation inoculant cylinder and transport it into the spraying part of the pumping and annular multi-angle spraying mechanism. Through the spraying part of the pumping and annular multi-angle spraying mechanism, the earthworm manure soil in the earthworm manure fermentation cylinder can be sprayed in a multi-angle form, and after spraying, in the state of mixing and stirring, the fermentation process of the earthworm manure soil itself can be accelerated.
[0058] Fifth, in the present utility model, after the scraping and stirring feeding wing rods are driven by the driving components, when the scraping and stirring feeding wing rods rotate at a high speed, they can realize the mixing and stirring of the earthworm manure soil in the earthworm manure fermentation cylinder through the rotation of several groups of first stirring wing rods on their own.
[0059] During the circumferential rotation of each scraping wing plate and its sliding contact with the inner cavity side wall of the earthworm manure fermentation cylinder, the earthworm manure soil splashed on the inner wall of the earthworm manure fermentation cylinder can be effectively scraped off.
[0060] Sixth, in the present utility model, after the earthworm manure soil is fermented and earthworm organic fertilizer is formed, when one or two discharge regulating valves are opened, during the circumferential rotation of each scraping bottom plate and its sliding contact with the inner cavity bottom and side wall of the earthworm manure fermentation cylinder, the fermented earthworm organic fertilizer in the earthworm manure fermentation cylinder can be continuously dialed to each discharge port and discharged through the discharge port.
[0061] During the circumferential movement of the shaft sleeve and multiple scraping bottom plates, it can assist in the discharging of the earthworm organic fertilizer and can accelerate the discharging speed of the earthworm organic fertilizer at the two discharge ports.
[0062] Seventh, in the present utility model, when the inoculant mixing wing rods are synchronously linked with the scraping and stirring feeding wing rods, the inoculant mixing wing rods can realize the mixing of the aqueous solution of the fermentation inoculant in the fermentation inoculant cylinder through the rotation of several groups of mixing wing rods on their own.
[0063] Eighth, in the present utility model, after the driving pulley, the driven pulley and the linkage belt are matched, they have a transmission effect. Under this transmission effect, the scraping and stirring feeding wing rods and the inoculant mixing wing rods can be synchronously linked.
[0064] IX. In the present utility model, the material extraction pump can extract the fermented inoculant aqueous solution from the fermented inoculant cylinder through the material extraction hose, and convey it to the water inlet joint through the material conveying hose. The fermented inoculant aqueous solution entering the water inlet joint will flow into the inner cavity of the annular pipe, and the fermented inoculant aqueous solution entering the inner cavity of the annular pipe will simultaneously enter each nozzle. Through the nozzle of each nozzle, the fermented inoculant aqueous solution is sprayed onto the earthworm manure in the earthworm manure fermentation cylinder. When spraying, the state of the fermented inoculant aqueous solution sprayed from the nozzle of each nozzle is in a misty state;
[0065] Under the action of the annular pipe and multiple nozzles, the spraying range area of the fermented inoculant aqueous solution can be larger, the angle can be wider, and more.
[0066] X. In the present utility model, the earthworm organic fertilizer discharged from one or two discharge ports can be collected by the collecting member. Specifically:
[0067] The material receiving box is the preferred form of the collecting member. Since the material receiving box is arranged below the two discharge ports, when one or two discharge ports start to discharge materials, the material receiving box can collect materials below the two discharge ports. Description of the Drawings
[0068] Figure 1 is a three-dimensional schematic diagram of the present utility model;
[0069] Figure 2 is a three-dimensional schematic diagram of a partial section of the present utility model;
[0070] Figure 3 is a three-dimensional schematic diagram of the present utility model from a bottom view;
[0071] Figure 4 is a three-dimensional schematic diagram of one perspective of the combination of the earthworm manure stirring type fermentation mechanism, the fermented inoculant preparation mechanism, the driving component and the linkage component of the present utility model;
[0072] Figure 5 is a three-dimensional schematic diagram of the second perspective of the combination of the earthworm manure stirring type fermentation mechanism, the fermented inoculant preparation mechanism, the driving component and the linkage component of the present utility model;
[0073] Figure 6 is a three-dimensional schematic diagram of a partial section of the combination of the earthworm manure stirring type fermentation mechanism, the fermented inoculant preparation mechanism, the driving component and the linkage component of the present utility model;
[0074] Figure 7 is a three-dimensional schematic diagram of the combination of the scraping type stirring and discharging wing bar, the inoculant mixing wing bar, the driving component and the linkage component of the present utility model;
[0075] Figure 8 This is a three-dimensional schematic diagram of the scraping and stirring feeding wing rod of the present utility model;
[0076] Figure 9 This is a three-dimensional schematic diagram of the pumping and annular multi-angle spraying mechanism of the present utility model;
[0077] Figure 10 This is a three-dimensional schematic diagram of the frame structure of the present utility model.
[0078] In the figure: 10, earthworm manure stirring fermentation mechanism; 101, earthworm manure fermentation cylinder; 1011, feed inlet; 1012, discharge port; 1013, discharge regulating valve; 102, scraping and stirring feeding wing rod; 1021, main shaft rod; 1022, first stirring wing rod; 1023, scraping wing plate; 1024, shaft sleeve; 1025, scraping bottom plate; 20, fermentation agent preparation mechanism; 201, fermentation agent cylinder; 2011, filling port; 202, agent mixing wing rod; 2021, auxiliary shaft rod; 2022, mixing wing rod; 2023, transmission shaft rod; 30, driving component; 301, reduction motor; 302, motor bracket; 40, linkage component; 401, driving pulley; 402, driven pulley; 403, linkage belt; 50, pumping and annular multi-angle spraying mechanism; 501, pumping pump; 502, pumping hose; 503, material conveying hose; 504, annular pipe; 5041, water inlet joint; 5042, spray head; 60, frame structure; 601, waist-shaped bottom plate; 602, first arc-shaped support plate; 603, second arc-shaped support plate; 604, first fixing ring; 605, second fixing ring; 606, connecting side plate; 70, receiving box. Specific embodiments
[0079] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0080] Embodiment 1
[0081] When the stirring mechanism in the earthworm manure organic fertilizer production mixing device disclosed in the publication number CN214991200U stirs the earthworm manure soil, due to the rotational centrifugal force, the earthworm manure soil is very easy to splash on the inner wall of the fermentation tank. Moreover, the water mist sprayed by the humidifying mechanism will increase the adhesive force of the earthworm manure soil splashed on the inner wall of the fermentation tank, so that all the earthworm manure soil in the fermentation tank cannot be discharged during discharging, and a part of the residual earthworm manure soil will adhere to the inner wall of the fermentation tank.
[0082] Meanwhile, there is only one spray head in the humidifying mechanism of the vermicompost organic fertilizer production mixing device disclosed in the patent publication number CN214991200U. Therefore, when the humidifying mechanism sprays water mist, the spraying range in the fermentation tank is limited.
[0083] Based on this, in order to solve the above technical problems, the following technical solutions are adopted, specifically as follows:
[0084] As Figures 1-6 shown, the present utility model provides a technical solution:
[0085] An earthworm organic fertilizer production device, comprising:
[0086] An earthworm manure stirring fermentation mechanism 10, which is used for fermenting earthworm manure to realize the cultivation, production and processing of earthworm organic fertilizer. The earthworm manure stirring fermentation mechanism 10 includes an earthworm manure fermentation cylinder 101. One side of the top of the earthworm manure fermentation cylinder 101 has a feed inlet 1011, and the bottom of the earthworm manure fermentation cylinder 101 has two discharge ports 1012. Discharge regulating valves 1013 are fixedly installed on both of the two discharge ports 1012. A scraping type stirring and feeding wing bar 102 is installed on the earthworm manure fermentation cylinder 101;
[0087] In this embodiment, earthworm manure can be added into the earthworm manure fermentation cylinder 101 through the feed inlet 1011. The two discharge ports 1012 facilitate the discharging after processing. Moreover, a discharge regulating valve 1013 is installed on each discharge port 1012. By opening or closing the discharge regulating valve 1013, the opening or closing of the corresponding discharge port 1012 can be controlled. When the two discharge regulating valves 1013 are opened simultaneously, the discharging speed can be increased.
[0088] After the earthworm manure is added, the scraping type stirring and feeding wing bar 102 can mix and stir the earthworm manure so that the earthworm manure can be fully fermented in the earthworm manure fermentation cylinder 101;
[0089] Meanwhile, when the scraping type stirring and feeding wing bar 102 mixes and stirs the earthworm manure, the earthworm manure splashed on the inner wall of the earthworm manure fermentation cylinder 101 due to centrifugal force can also be scraped off and fall downward. After falling, it can be mixed and stirred by the scraping type stirring and feeding wing bar 102 again;
[0090] Moreover, after the earthworm manure is fermented and forms earthworm organic fertilizer, when one or both of the discharge regulating valves 1013 are opened, during the mixing and stirring process, the scraping type stirring and feeding wing bar 102 can also assist in discharging to further increase the discharging speed.
[0091] Fermentation agent preparation mechanism 20, the fermentation agent preparation mechanism 20 includes a fermentation agent cylinder 201, one side of the top of the fermentation agent cylinder 201 has a filling port 2011, and a bacterial agent mixing wing bar 202 is installed on the fermentation agent cylinder 201;
[0092] In this embodiment, the fermentation agent preparation mechanism 20 is filled with a fermentation agent aqueous solution, and the fermentation agent preparation mechanism 20 can mix the fermentation agent aqueous solution inside it evenly. Specifically:
[0093] The fermentation agent can be added into the fermentation agent cylinder 201 through the filling port 2011. After the addition of the fermentation agent is completed, water can be added into the fermentation agent cylinder 201 through the filling port 2011 again. After the water injection is completed, under the stirring and mixing action of the bacterial agent mixing wing bar 202, the fermentation agent in the fermentation agent cylinder 201 can be fully mixed with water and form a fermentation agent aqueous solution;
[0094] The fermentation agent aqueous solution can accelerate the fermentation of earthworm manure soil.
[0095] Drive component 30, the drive component 30 is installed on the earthworm manure stirring type fermentation mechanism 10, and after installation, one end of the drive component 30 is connected to the scraping type stirring and feeding wing bar 102;
[0096] In this embodiment, when the drive component 30 is connected to the scraping type stirring and feeding wing bar 102, it can drive the scraping type stirring and feeding wing bar 102 to rotate at a high speed. When the scraping type stirring and feeding wing bar 102 rotates at a high speed, it can mix and stir the earthworm manure to be fermented in the earthworm manure fermentation cylinder 101.
[0097] Linkage component 40, the linkage component 40 is installed between the scraping type stirring and feeding wing bar 102 and the bacterial agent mixing wing bar 202, and after installation, the bacterial agent mixing wing bar 202 can be synchronously linked with the scraping type stirring and feeding wing bar 102;
[0098] In this embodiment, since the bacterial agent mixing wing bar 202 can be synchronously linked with the scraping type stirring and feeding wing bar 102 through the linkage component 40, when the scraping type stirring and feeding wing bar 102 mixes and stirs the earthworm manure in the earthworm manure fermentation cylinder 101, the bacterial agent mixing wing bar 202 can synchronously mix and stir the fermentation agent aqueous solution in the fermentation agent cylinder 201.
[0099] Pumping type annular multi-angle spraying mechanism 50, the pumping type annular multi-angle spraying mechanism 50 has a suction part and a spraying part. The suction part of the pumping type annular multi-angle spraying mechanism 50 is installed on the fermentation agent cylinder 201, and the spraying part of the pumping type annular multi-angle spraying mechanism 50 is installed on the earthworm manure fermentation cylinder 101;
[0100] In this embodiment, the suction part of the material suction type annular multi-angle spraying mechanism 50 can extract the fermented inoculant aqueous solution in the fermented inoculant cylinder 201 and transport it into the spraying part of the material suction type annular multi-angle spraying mechanism 50. Through the spraying part of the material suction type annular multi-angle spraying mechanism 50, the earthworm manure in the earthworm manure fermentation cylinder 101 can be sprayed in a multi-angle form. After spraying, the earthworm manure can accelerate its own fermentation process under the state of mixing and stirring.
[0101] And the frame structure 60 is installed between the earthworm manure fermentation cylinder 101 and the fermented inoculant cylinder 201.
[0102] In this embodiment, the frame structure 60 is used to support and fix the device.
[0103] Embodiment Two
[0104] As Figure 4 And Figures 6-8 shown, based on Embodiment One, the improvement is as follows:
[0105] Furthermore, rotation grooves are respectively formed at the centers of the inner cavity bottoms of the earthworm manure fermentation cylinder 101 and the fermented inoculant cylinder 201;
[0106] The scraping type stirring and feeding wing bar 102 has a main shaft rod 1021. One end of the bottom of the main shaft rod 1021 is rotatably installed in the rotation groove at the bottom of the inner cavity of the earthworm manure fermentation cylinder 101, and one end of the top of the main shaft rod 1021 penetrates upward through the top cover of the earthworm manure fermentation cylinder 101 and extends outward;
[0107] A plurality of groups of first stirring wing bars 1022 distributed in a circumferential manner are arranged on the main shaft rod 1021, and scraping wing plates 1023 are respectively embedded at the edges of each group of first stirring wing bars 1022;
[0108] The outer edge of each scraping wing plate 1023 is tangent to the inner cavity side wall of the earthworm manure fermentation cylinder 101 and can be in sliding contact with the inner cavity side wall of the earthworm manure fermentation cylinder 101 in a circular motion form.
[0109] In this embodiment, after the scraping type stirring and feeding wing bar 102 is driven by the driving component 30, when the scraping type stirring and feeding wing bar 102 rotates at a high speed, it can realize the mixing and stirring of the earthworm manure in the earthworm manure fermentation cylinder 101 through the rotation of its plurality of groups of first stirring wing bars 1022.
[0110] During the circular rotation of each scraping wing plate 1023 and its sliding contact with the inner cavity side wall of the earthworm manure fermentation cylinder 101, it can effectively scrape off the earthworm manure splashed on the inner wall of the earthworm manure fermentation cylinder 101.
[0111] Further, a bushing 1024 is fixedly installed at the bottom of the main shaft rod 1021. A plurality of scraping bottom plates 1025 are provided on the side wall of the bushing 1024. The plurality of scraping bottom plates 1025 are circumferentially distributed on the bushing 1024, and each scraping bottom plate 1025 is fixedly connected to the bushing 1024;
[0112] The bottom of each scraping bottom plate 1025 can be in sliding contact with the bottom of the inner cavity of the earthworm manure fermentation cylinder 101 in a circular motion;
[0113] The outer edge of each scraping bottom plate 1025 is tangent to the inner cavity side wall of the earthworm manure fermentation cylinder 101 and can be in sliding contact with the inner cavity side wall of the earthworm manure fermentation cylinder 101 in a circular motion.
[0114] In this embodiment, after the earthworm manure fermentation is completed and the earthworm organic fertilizer is formed, when one or two discharge regulating valves 1013 are opened, when each scraping bottom plate 1025 rotates in a circle and is in sliding contact with the bottom and side walls of the inner cavity of the earthworm manure fermentation cylinder 101, the earthworm organic fertilizer fermented and completed in the earthworm manure fermentation cylinder 101 can be continuously stirred to each discharge port 1012, and discharging is achieved through the discharge port 1012.
[0115] During the circular motion of the bushing 1024 and the plurality of scraping bottom plates 1025, it can assist in discharging the earthworm organic fertilizer and can accelerate the discharging speed of the earthworm organic fertilizer at the two discharge ports 1012.
[0116] Embodiment III
[0117] As Figure 4 and Figures 6-7 shown, it is improved on the basis of Embodiment II:
[0118] Further, the bacteria agent mixing wing rod 202 has a secondary shaft rod 2021. One end of the bottom of the secondary shaft rod 2021 is rotatably installed in the rotating groove at the bottom of the inner cavity of the fermentation bacteria agent cylinder 201. One end of the top of the secondary shaft rod 2021 is fixedly installed with a transmission shaft rod 2023. One end of the top of the transmission shaft rod 2023 penetrates upward through the top cover of the earthworm manure fermentation cylinder 101 and extends outward;
[0119] One end of the top of the transmission shaft rod 2023 is flush with one end of the top of the main shaft rod 1021;
[0120] A number of groups of circumferentially distributed mixing wing rods 2022 are provided on the secondary shaft rod 2021.
[0121] In this embodiment, when the bacteria agent mixing wing bar 202 is synchronously linked with the scraping and feeding stirring wing bar 102, the bacteria agent mixing wing bar 202 can mix the aqueous solution of the fermentation bacteria agent in the fermentation bacteria agent cylinder 201 by the rotation of several groups of mixing wing rods 2022 of itself.
[0122] Embodiment 4
[0123] As Figure 4 and Figures 6-7 shown, it is improved on the basis of Embodiment 3:
[0124] Furthermore, the driving component 30 includes a reduction motor 301, and the end of the output shaft of the reduction motor 301 is fixedly connected to the top end of the main shaft rod 1021;
[0125] The driving component 30 further includes a motor bracket 302. The top of the motor bracket 302 is fixedly installed on the reduction motor 301, and the bottom of the motor bracket 302 is fixedly installed on the top cover of the earthworm manure fermentation cylinder 101.
[0126] In this embodiment, the reduction motor 301 is the preferred form of the driving component 30. When the reduction motor 301 rotates through its output shaft, it can drive the rotation of the main shaft rod 1021. When the main shaft rod 1021 is driven, the scraping and feeding stirring wing bar 102 can rotate at a high speed in the earthworm manure fermentation cylinder 101.
[0127] The motor bracket 302 is used to support and fix the reduction motor 301.
[0128] Embodiment 5
[0129] As Figure 4 and Figures shown, it is improved on the basis of Embodiment 4:
[0130] Furthermore, the linkage component 40 includes a driving pulley 401 fixedly installed on the top end of the main shaft rod 1021, a driven pulley 402 fixedly installed on the top end of the transmission shaft rod 2023, and a linkage belt 403 sleeved on the driving pulley 401 and the driven pulley 402;
[0131] The driving pulley 401 and the driven pulley 402 are in the same horizontal plane.
[0132] In this embodiment, after the driving pulley 401, the driven pulley 402 and the linkage belt 403 are matched, they have a transmission effect. Under this transmission effect, the scraping and feeding stirring wing bar 102 and the bacteria agent mixing wing bar 202 can be synchronously linked.
[0133] Embodiment 6
[0134] As , and As shown in , it is an improvement based on the second embodiment:
[0135] Furthermore, the suction part of the pumping and annular multi-angle spraying mechanism 50 includes a pumping pump 501, which is fixedly installed on the top cover of the fermentation agent cylinder 201. The feeding end of the pumping pump 501 is communicated with a pumping hose 502. The free end of the pumping hose 502 extends downward, penetrates inward from the bottom of the side wall of the fermentation agent cylinder 201, and extends to the bottom of the inner cavity of the fermentation agent cylinder 201;
[0136] Wherein, the free end of the pumping hose 502 is tangent to the bottom of the inner cavity of the fermentation agent cylinder 201;
[0137] The discharging end of the pumping pump 501 is communicated with a feeding hose 503;
[0138] The spraying part of the pumping and annular multi-angle spraying mechanism 50 includes an annular pipe 504, which is arranged on the upper part of the side wall of the earthworm manure fermentation cylinder 101. There is a water inlet joint 5041 on the outer side wall of the annular pipe 504. The free end of the feeding hose 503 is inserted and installed in the water inlet joint 5041;
[0139] Wherein, the water inlet joint 5041 is communicated with the inner cavity of the annular pipe 504;
[0140] There are multiple spray nozzles 5042 on the inner side wall of the annular pipe 504, and the multiple spray nozzles 5042 are circumferentially distributed on the annular pipe 504;
[0141] Wherein, each spray nozzle 5042 is currently communicated with the inner cavity of the annular pipe 504;
[0142] The spray orifice of each spray nozzle 5042 penetrates inward through the side wall of the earthworm manure fermentation cylinder 101 and extends to the upper part of the inner cavity of the earthworm manure fermentation cylinder 101;
[0143] Wherein, each spray nozzle 5042 does not contact the scraping fin 1023.
[0144] In this embodiment, the pumping pump 501 can suck out the fermentation agent aqueous solution from the fermentation agent cylinder 201 through the pumping hose 502, and transport it to the water inlet joint 5041 through the feeding hose 503. The fermentation agent aqueous solution entering the water inlet joint 5041 will flow into the inner cavity of the annular pipe 504, and the fermentation agent aqueous solution entering the inner cavity of the annular pipe 504 will synchronously enter each spray nozzle 5042. Through the spray orifice of each spray nozzle 5042, the fermentation agent aqueous solution is sprayed onto the earthworm manure in the earthworm manure fermentation cylinder 101. When spraying, the state of the fermentation agent aqueous solution sprayed from the spray orifice of each spray nozzle 5042 is in a misty state.
[0145] Since each spray head 5042 is not in contact with the scraping fin 1023, each spray head 5042 will not affect the rotation of the scraping type stirring and discharging fin bar 102.
[0146] In this embodiment, under the action of the annular pipe 504 and the multiple spray heads 5042, the spraying range area of the fermenting bacterial agent aqueous solution can be made larger, the angle wider, and more.
[0147] Embodiment Seven
[0148] As shown, it is improved on the basis of Embodiment One:
[0149] Furthermore, the frame structure 60 includes a waist-shaped bottom plate 601. Both sides of the waist-shaped bottom plate 601 have arc-shaped parts. At the top of the arc-shaped part on one side of the waist-shaped bottom plate 601, a first arc-shaped support plate 602 is fixedly installed. At the top of the arc-shaped part on the other side of the first arc-shaped support plate 602, a second arc-shaped support plate 603 is fixedly installed. At the top of the first arc-shaped support plate 602, a first fixing ring 604 is fixedly installed. At the top of the second arc-shaped support plate 603, a second fixing ring 605 is fixedly installed. On both sides between the first fixing ring 604 and the second fixing ring 605, connecting side plates 606 are fixedly installed;
[0150] The first fixing ring 604 is fixedly installed on the side wall of the earthworm manure fermentation cylinder 101, and the second fixing ring 605 is fixedly installed on the side wall of the fermenting bacterial agent cylinder 201.
[0151] In this embodiment, the above structure is the preferred structure of the frame structure 60, and the above structure can effectively support and fix the device.
[0152] Embodiment Eight
[0153] As and shown, it is improved on the basis of Embodiment Seven:
[0154] Furthermore, a material collecting member is detachably installed on the waist-shaped bottom plate 601.
[0155] In this embodiment, the earthworm organic fertilizer discharged from one or two discharge ports 1012 can be collected by the material collecting member.
[0156] Furthermore, the material collecting member is a material receiving box 70, and the material receiving box 70 is placed on the top of the waist-shaped bottom plate 601 and below the corresponding two discharge ports 1012.
[0157] In this embodiment, the material receiving box 70 is the preferred form of the aggregate member. Since the material receiving box 70 is arranged below the two discharge ports 1012, when one or both of the discharge ports 1012 start to discharge materials, the material receiving box 70 can aggregate materials below the two discharge ports 1012.
[0158] In summary, the working process of the present utility model is as follows:
[0159] As shown, earthworm manure can be added to the earthworm manure fermentation cylinder 101 through the feed inlet 1011. The two discharge ports 1012 facilitate the discharge of materials after processing. Moreover, a discharge regulating valve 1013 is installed on each discharge port 1012. By opening or closing the discharge regulating valve 1013, the opening or closing of the corresponding discharge port 1012 can be controlled. When the two discharge regulating valves 1013 are opened simultaneously, the discharging speed can be increased.
[0160] After the addition of earthworm manure is completed, the scraping type stirring and feeding wing bar 102 can mix and stir the earthworm manure so that the earthworm manure can be fully fermented in the earthworm manure fermentation cylinder 101.
[0161] Meanwhile, when the scraping type stirring and feeding wing bar 102 mixes and stirs the earthworm manure, the earthworm manure splashed on the inner wall of the earthworm manure fermentation cylinder 101 due to centrifugal force can also be scraped off and fall downward. After falling, it can be mixed and stirred by the scraping type stirring and feeding wing bar 102 again.
[0162] Moreover, after the earthworm manure is fermented and formed into earthworm organic fertilizer, when one or both of the discharge regulating valves 1013 are opened, the scraping type stirring and feeding wing bar 102 can also assist in discharging materials during the mixing and stirring process to further increase the discharging speed.
[0163] The fermentation agent preparation mechanism 20 is filled with a fermentation agent aqueous solution, and the fermentation agent preparation mechanism 20 can mix the fermentation agent aqueous solution inside it evenly. Specifically:
[0164] The fermentation agent can be added to the fermentation agent cylinder 201 through the filling port 2011. After the addition of the fermentation agent is completed, water can be added to the fermentation agent cylinder 201 through the filling port 2011 again. After the water injection is completed, under the stirring and mixing action of the agent mixing wing bar 202, the fermentation agent in the fermentation agent cylinder 201 can be fully mixed with water and form a fermentation agent aqueous solution.
[0165] The fermentation agent aqueous solution can accelerate the fermentation of earthworm manure.
[0166] After the driving component 30 is connected to the scraping and stirring feeding fin bar 102, it can drive the high-speed rotation of the scraping and stirring feeding fin bar 102. When the scraping and stirring feeding fin bar 102 rotates at a high speed, it can mix and stir the earthworm manure to be fermented in the earthworm manure fermentation cylinder 101.
[0167] Since the inoculant mixing fin bar 202 can be synchronously linked with the scraping and stirring feeding fin bar 102 through the linkage component 40, when the scraping and stirring feeding fin bar 102 mixes and stirs the earthworm manure in the earthworm manure fermentation cylinder 101, the inoculant mixing fin bar 202 can synchronously mix and stir the aqueous solution of the fermentation inoculant in the fermentation inoculant cylinder 201.
[0168] The suction part of the pumping and annular multi-angle spraying mechanism 50 can extract the aqueous solution of the fermentation inoculant in the fermentation inoculant cylinder 201 and transport it to the spraying part of the pumping and annular multi-angle spraying mechanism 50. Through the spraying part of the pumping and annular multi-angle spraying mechanism 50, the earthworm manure in the earthworm manure fermentation cylinder 101 can be sprayed in a multi-angle form. And after spraying, in the state of mixing and stirring, the earthworm manure can accelerate its own fermentation process.
[0169] The frame structure 60 is used to support and fix the device.
[0170] The above different embodiments can be combined, replaced, and used in combination with each other.
[0171] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0172] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An earthworm organic fertilizer production device, characterized in that, Including: An earthworm manure agitation fermentation mechanism (10), the earthworm manure agitation fermentation mechanism (10) includes an earthworm manure fermentation cylinder (101), one side of the top of the earthworm manure fermentation cylinder (101) has a feed inlet (1011), the bottom of the earthworm manure fermentation cylinder (101) has two discharge ports (1012), and discharge regulating valves (1013) are fixedly installed on both of the two discharge ports (1012), and a scraping and stirring discharge wing bar (102) is installed on the earthworm manure fermentation cylinder (101); A fermentation agent preparation mechanism (20), the fermentation agent preparation mechanism (20) includes a fermentation agent cylinder (201), one side of the top of the fermentation agent cylinder (201) has a filling port (2011), and a agent mixing wing bar (202) is installed on the fermentation agent cylinder (201); A driving component (30), the driving component (30) is installed on the earthworm manure agitation fermentation mechanism (10), and after installation, one end of the driving component (30) is connected to the scraping and stirring discharge wing bar (102); A linkage component (40), the linkage component (40) is installed between the scraping and stirring discharge wing bar (102) and the agent mixing wing bar (202), and after installation, the agent mixing wing bar (202) can be synchronously linked with the scraping and stirring discharge wing bar (102); A pumping type circular multi-angle spraying mechanism (50), the pumping type circular multi-angle spraying mechanism (50) has a suction part and a spraying part, the suction part of the pumping type circular multi-angle spraying mechanism (50) is installed on the fermentation agent cylinder (201), and the spraying part of the pumping type circular multi-angle spraying mechanism (50) is installed on the earthworm manure fermentation cylinder (101); And A frame structure (60), the frame structure (60) is installed between the earthworm manure fermentation cylinder (101) and the fermentation agent cylinder (201).
2. The earthworm organic fertilizer production device according to claim 1, characterized in that: Rotating grooves are opened at the centers of the inner cavity bottoms of the earthworm manure fermentation cylinder (101) and the fermentation agent cylinder (201); The scraping and stirring discharge wing bar (102) has a main shaft rod (1021), the bottom end of the main shaft rod (1021) is rotatably installed in the rotating groove at the inner cavity bottom of the earthworm manure fermentation cylinder (101), and the top end of the main shaft rod (1021) extends upward through the top cover of the earthworm manure fermentation cylinder (101) and extends outward; Several groups of circumferentially distributed first stirring wing rods (1022) are provided on the main shaft rod (1021), and scraping wing plates (1023) are embedded at the edges of each group of the first stirring wing rods (1022); The outer edge of each scraping wing plate (1023) is tangent to the inner cavity side wall of the earthworm manure fermentation cylinder (101) and can slide in contact with the inner cavity side wall of the earthworm manure fermentation cylinder (101) in a circular motion form.
3. The earthworm organic fertilizer production device according to claim 2, characterized in that: A bushing (1024) is fixedly installed at the bottom of the main shaft rod (1021). A plurality of scraping bottom plates (1025) are provided on the side wall of the bushing (1024). The plurality of scraping bottom plates (1025) are circumferentially distributed on the bushing (1024), and each scraping bottom plate (1025) is fixedly connected to the bushing (1024). The bottom of each scraping bottom plate (1025) can be in sliding contact with the bottom of the inner cavity of the earthworm manure fermentation cylinder (101) in a circular motion. The outer edge of each scraping bottom plate (1025) is tangent to the inner cavity side wall of the earthworm manure fermentation cylinder (101) and can be in sliding contact with the inner cavity side wall of the earthworm manure fermentation cylinder (101) in a circular motion.
4. A device for producing earthworm organic fertilizer according to claim 2, characterized in that: The bacterial agent mixing wing rod (202) has a secondary shaft rod (2021). One end of the bottom of the secondary shaft rod (2021) is rotatably installed in a rotating groove at the bottom of the inner cavity of the fermentation bacterial agent cylinder (201). One end of the top of the secondary shaft rod (2021) is fixedly installed with a transmission shaft rod (2023). One end of the top of the transmission shaft rod (2023) penetrates upward through the top cover of the earthworm manure fermentation cylinder (101) and extends outward. One end of the top of the transmission shaft rod (2023) is flush with one end of the top of the main shaft rod (1021). A number of groups of circumferentially distributed mixing wing rods (2022) are provided on the secondary shaft rod (2021).
5. A production device for earthworm organic fertilizer according to claim 2 or 4, characterized in that: The driving component (30) includes a reduction motor (301). The end of the output shaft of the reduction motor (301) is fixedly connected to one end of the top of the main shaft rod (1021). The driving component (30) further includes a motor bracket (302). The top of the motor bracket (302) is fixedly installed on the reduction motor (301), and the bottom of the motor bracket (302) is fixedly installed on the top cover of the earthworm manure fermentation cylinder (101).
6. The earthworm organic fertilizer production device according to claim 5, characterized in that: The linkage component (40) includes a driving pulley (401) fixedly installed on one end of the top of the main shaft rod (1021), a driven pulley (402) fixedly installed on one end of the top of the transmission shaft rod (2023), and a linkage belt (403) sleeved on the driving pulley (401) and the driven pulley (402). The driving pulley (401) and the driven pulley (402) are on the same horizontal plane.
7. An earthworm organic fertilizer production device according to claim 2, characterized in that: The suction part of the pumping and annular multi-angle spraying mechanism (50) includes a pumping pump (501). The pumping pump (501) is fixedly installed on the top cover of the fermentation bacterial agent cylinder (201). The feeding end of the pumping pump (501) is communicated with a pumping hose (502). The free end of the pumping hose (502) extends downward, penetrates inward from the bottom of the side wall of the fermentation bacterial agent cylinder (201), and extends to the bottom of the inner cavity of the fermentation bacterial agent cylinder (201). Among them, the free end of the pumping hose (502) is tangent to the bottom of the inner cavity of the fermentation bacterial agent cylinder (201). The discharging end of the pumping pump (501) is communicated with a feeding hose (503). The spraying part of the material extraction type annular multi-angle spraying mechanism (50) includes an annular pipe (504). The annular pipe (504) is arranged at the upper part of the side wall of the earthworm manure fermentation cylinder (101). There is a water inlet joint (5041) on the outer side wall of the annular pipe (504). The free end of the feeding hose (503) is inserted and installed in the water inlet joint (5041). Wherein, the water inlet joint (5041) is communicated with the inner cavity of the annular pipe (504). There are a plurality of spray heads (5042) on the inner side wall of the annular pipe (504). The plurality of spray heads (5042) are circumferentially distributed on the annular pipe (504). Wherein, each spray head (5042) is currently communicated with the inner cavity of the annular pipe (504). The nozzle of each spray head (5042) penetrates inward through the side wall of the earthworm manure fermentation cylinder (101) and extends to the upper part of the inner cavity of the earthworm manure fermentation cylinder (101). Wherein, each spray head (5042) does not contact the scraping fin (1023).
8. The earthworm organic fertilizer production device according to claim 1, characterized in that: The frame structure (60) includes a waist-shaped bottom plate (601). Both sides of the waist-shaped bottom plate (601) have arc-shaped parts. At the top of the arc-shaped part on one side of the waist-shaped bottom plate (601), a first arc-shaped support plate (602) is fixedly installed. At the top of the arc-shaped part on the other side of the first arc-shaped support plate (602), a second arc-shaped support plate (603) is fixedly installed. At the top of the first arc-shaped support plate (602), a first fixing ring (604) is fixedly installed. At the top of the second arc-shaped support plate (603), a second fixing ring (605) is fixedly installed. On both sides between the first fixing ring (604) and the second fixing ring (605), connecting side plates (606) are fixedly installed. The first fixing ring (604) is fixedly installed on the side wall of the earthworm manure fermentation cylinder (101), and the second fixing ring (605) is fixedly installed on the side wall of the fermentation bacteria agent cylinder (201).
9. The earthworm organic fertilizer production device according to claim 8, characterized in that: An aggregate member is detachably installed on the waist-shaped bottom plate (601).
10. A device for producing earthworm organic fertilizer according to claim 9, characterized in that: The aggregate member is a material receiving box (70). The material receiving box (70) is placed on the top of the waist-shaped bottom plate (601) and below the corresponding two discharge ports (1012).
Citation Information
Patent Citations
Wormcast organic fertilizer production mixing device
CN214991200U