Dual-stirring automatic conversion device for biological bacterial fertilizer
Through the design of the pneumatic mechanism and the guide plate, the problems of inconvenience in manual unloading and potential safety hazards in the biological fertilizer mixing device are solved, automatic unloading and uniform mixing are achieved, and production efficiency and safety are improved.
Patent Information
- Application Number
- CN202422618907.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-10-29
AI Technical Summary
The existing biological fertilizer mixing device requires manual operation to feed the material, which is inconvenient to operate and has safety hazards, and the mixing effect is poor.
The pneumatic mechanism is used to control the opening and closing of the discharge port. Combined with the guide plate and adjustment mechanism, automatic unloading is achieved, and the double auger is used to enhance the stirring effect.
It realizes automatic unloading, improves operation safety and mixing efficiency, reduces labor costs, and ensures uniform mixing of materials.
Smart Images

Figure CN223439755U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to agitating equipment technical field, concretely relates to a biological bacterial manure double stirring automatic conversion device. BACKGROUND
[0002] Microbial fertilizer is developed according to the principles of soil microecology, plant nutrition and the basic concept of modern organic agriculture. Microbial fertilizer is a new type of fertilizer biological product that can provide crops with the required nutrients through the life activities of active microorganisms. It is a kind of fertilizer in agricultural production. After the microorganisms are repropagated, they contain a large number of nitrogen-fixing bacteria, which can greatly increase the content of trace elements in the soil and reduce the application amount of nitrogen, phosphorus, potassium and other trace elements. At the same time, it contains a variety of high-efficiency active beneficial microorganisms, increases soil organic matter, speeds up the degradation and transformation of organic matter into nutrients that can be absorbed by crops, greatly improves soil fertility, and reduces the use of chemical fertilizers. In the production of biological bacterial manure, the bacterial manure needs to be uniformly stirred and then transported to the processing equipment for further processing. However, the existing stirring device needs to be manually pulled to open the switch after the stirring of the material is completed, and the uniformly stirred material is discharged. The stirring device is generally large in size, and the operator needs to manually open the switch through a ladder to discharge the material after each stirring. Manual operation is inconvenient, and the safety of personnel cannot be guaranteed. SUMMARY
[0003] The utility model aims at providing a biological bacterial manure double stirring automatic conversion device, which can control the stirring amount of the material, enhance the stirring effect, remove personnel, adopt a pneumatic mechanism for automatic discharging, improve efficiency and save cost.
[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a biological bacterial manure double stirring automatic conversion device, comprising a stirring mechanism and a feeding mechanism, the stirring mechanism comprises a motor base, a rack, a driving motor, a shaft coupling, a gear box, a double auger and a shell, the rack is placed on the ground, the shell with an upward opening is fixedly installed above the rack, the motor base is fixedly connected at one end of the rack, and the driving motor, the shaft coupling and the gear box are sequentially connected on the motor base, wherein the double auger is rotatably connected at both ends of the shell and is in transmission connection with the gear box, a discharge port is formed at one end of the bottom of the shell, the feeding mechanism comprises a bunker, a feeding hopper, a guide plate, a sealing plate and an openable and closable cover plate, the bunker is fixedly connected at the upper end of the shell, the feeding hopper is installed at the top of the bunker, the guide plate is fixedly installed in the bunker and is obliquely installed at the lower end of the feeding hopper, the top of the bunker is closed by the sealing plate and the openable and closable cover plate arranged at intervals, an adjusting mechanism is further arranged at the tail of the guide plate, and the feeding amount on the guide plate is controlled by the adjusting mechanism, a pneumatic mechanism connected with the rack is further arranged on the discharge port, the pneumatic mechanism is connected with an external air tank, and the opening and closing of the discharge port are controlled.
[0005] Further, the adjusting mechanism comprises a chute fixed on the two side walls of the bin and a baffle, the baffle slides up and down along the chute, and the bin is divided into a storage space in front of the guide plate and a discharging space behind the guide plate, the upper end of the baffle is further fixedly connected with a protrusion, and the friction force can be increased through the protrusion, so that the feeding amount is facilitated to be manually controlled.
[0006] Further, the pneumatic mechanism comprises a base, a pneumatic cylinder, a push rod, a connecting frame, a gate plate and a roller set, the front end of the push rod is fixed on the back of the gate plate through the connecting frame, the tail end of the push rod is connected with the pneumatic cylinder in an extension and retraction mode, the roller set is arranged in parallel at the upper part in the base, the gate plate is slidably connected in the base through the roller set, and the pneumatic cylinder is further fixed in the base.
[0007] Further, the guide plate is arranged at the feeding hopper, the discharge port is arranged directly below the top of the guide plate, the two sides of the guide plate are fixed on the bin, and a channel for discharging is arranged between the tail end of the guide plate and the bin, and the channel is arranged at the other end of the discharge port.
[0008] Further, the openable and closable cover plate is further provided with a handle.
[0009] The beneficial effects of the utility model are as follows: 1) the utility model controls the gate plate to slide on the base through the pneumatic mechanism, thereby controlling the displacement between the gate plate and the discharge port, so that the discharge port can be automatically opened and closed without manual operation, the safety of operation is improved, the labor cost is saved, secondly, the guide plate and the adjusting mechanism are arranged in the bin, the speed and the amount of material entering the stirring mechanism can be controlled, the stirring effect of the material can be improved, the material can be partially accumulated on the baffle, the material can be discharged during stirring without stopping the equipment, and the structure is simple and convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is a structural schematic view of the utility model.
[0011] Figure 2 It is a bottom view of the utility model.
[0012] Figure 3 It is a top view of the utility model.
[0013] Figure 4 It is a half-sectional view of the utility model. Figure 1
[0014] Figure 5 It is a partial enlarged view in the utility model. Figure 3
[0015] In the figure: 1, stirring mechanism; 2, feeding mechanism; 3, motor base; 4, rack; 5, driving motor; 6, shaft coupling; 7, gear box; 8, double auger; 9, shell; 10, discharge port; 11, hopper; 12, feeding hopper; 13, guide plate; 14, sealing plate; 15, openable and closable cover plate; 16, adjusting mechanism; 17, pneumatic mechanism; 18, chute; 19, baffle; 20, protrusion; 21, base; 22, pneumatic cylinder; 23, push rod; 24, connecting frame; 25, shutter; 26, roller set; 27, handle. DETAILED DESCRIPTION
[0016] The utility model will be explained further in connection with the drawings and specific embodiments.
[0017] Embodiment: as shown in the figure, the utility model discloses a kind of biological bacteria fertilizer double stirring automatic conversion device, including stirring mechanism 1 and feeding mechanism 2, the stirring mechanism 1 includes feeding mechanism 3, rack 4, driving motor 5, shaft coupling 6, gear box 7, double auger 8 and shell 9, rack 4 is placed on ground, rack 4 top is fixedly installed the shell 9 of upward opening, feeding mechanism 3 is fixedly connected at one end of rack 4, feeding mechanism 3 is installed sequentially with driving motor 5, shaft coupling 6 and gear box 7, wherein double auger 8 is rotatably connected on the both ends of shell 9, and transmission is connected with gear box 7, the bottom one end of shell 9 is equipped with discharge port 10, the feeding mechanism 2 includes hopper 11, feeding hopper 12, guide plate 13, sealing plate 14 and openable and closable cover plate 15, hopper 11 is fixedly connected at the top of shell 9, hopper 11 top installs feeding hopper 12, feeding hopper 12 lower end is obliquely installed guide plate 13, guide plate 13 is fixed in hopper 11, the top of hopper 11 is closed by interval setting sealing plate 14 and openable and closable cover plate 15, the tail of guide plate 13 is also provided with adjusting mechanism 16, the amount of feeding on guide plate 13 is controlled by adjusting mechanism 16, discharge port 10 is also provided with pneumatic mechanism 17 connected with rack 4, the pneumatic mechanism 17 is connected with external gas tank, and the opening and closure of discharge port 10 are controlled.
[0018] The adjusting mechanism 16 comprises a chute 18 fixed on the two side walls of the bin 11 and a baffle 19 sliding up and down along the chute 18, which divides the bin 11 into a storage space in front of the guide plate 13 and a discharging space behind the guide plate 13. The upper end of the baffle 19 is further fixedly connected with a protrusion 20, which can increase the friction force and facilitate manual control of the feeding amount. In use, the baffle 19 can be clamped by the hand contacting the protrusion 20, and the baffle 19 is opened or closed between the guide plate 13 when passing through the chute 18, thereby adjusting the feeding amount of the material passing through the baffle 19, facilitating control of the feeding efficiency of the material, and enabling the material mixing and stirring to be more uniform.
[0019] The pneumatic mechanism 17 comprises a base 21, a pneumatic cylinder 22, a push rod 23, a connecting frame 24, a gate 25 and a roller set 26. The front end of the push rod 23 is fixed to the back of the gate 25 through the connecting frame 24, and the distal end of the push rod 23 is telescopically connected with the pneumatic cylinder 22. The roller set 26 is arranged in parallel in the upper part of the base 21, the gate 25 is slidingly connected in the base 21 through the roller set 26, and the pneumatic cylinder 22 is further fixed in the base 21. In use, the pneumatic cylinder 22 is controlled to work by an external gas tank, thereby driving the push rod 23 to extend or retract, and the gate 25 fixedly connected with the push rod 23 also moves, thereby closing or opening the discharge port 10. The opening and closing are automatically controlled by the pneumatic device, thereby saving labor cost and being safer to operate.
[0020] The guide plate 13 is arranged at the feeding hopper 12, and the discharge port 10 is located directly below the top of the guide plate 13. The guide plate 13 is fixed on the two sides of the bin 11, and a channel for discharging is left between the distal end of the guide plate 13 and the bin 11, which is located at the other end of the discharge port 10. In use, referring to Figure 4 , the discharge port 10 and the discharge port 10 are both located on the left side of the bin 11, and the guide plate 13 is installed in the bin 11 with the left side being higher than the right side. The material enters from the feeding port, rolls to the right after passing through the guide plate 13, and contacts the double auger 8. The double auger 8 is driven to rotate by the driving motor 5, so that the material is transported from the right end to the left end and accumulated at the discharge port 10. In this way, the material walks the longest path in the bin 11 and the outer shell 9, which can make the material mix and stir more uniformly and prevent the material from being blocked when feeding.
[0021] The openable and closable cover plate 15 is further provided with a handle 27. In use, one sealing plate 14 and one openable and closable cover plate 15 are installed at the two ends of the adjusting mechanism 16, respectively, and referring to Figure 4A cover plate 14 for preventing material splashing and an openable and closable cover plate 15 are installed above the left side of the baffle 19, the openable and closable cover plate 15 can be opened or closed manually through a handle 27, facilitating observation or processing of the material on the guide plate 13, preventing blockage or poor feeding, a cover plate 14 for preventing material splashing and an openable and closable cover plate 15 are also installed above the right side of the baffle 19, the openable and closable cover plate 15 can be opened to directly observe the inside of the stirring mechanism 1, facilitating monitoring of the material condition at the right end of the double auger 8 and timely processing.
[0022] The utility model discloses a pneumatic mechanism is used to control the sliding of the shutter on the base, thereby controlling the displacement between the shutter and the discharge port, making the discharge port can be opened and closed automatically, without manual operation, improve the safety of operation, save the labor cost, secondly, the guide plate and the adjusting mechanism are arranged in the bin, can control the speed and the material amount of material into the stirring mechanism, not only can improve the stirring effect of material, still can partially accumulate the material on the baffle, and the equipment does not stop the processing of unloading while stirring, and simple structure is convenient to use.
[0023] The above is only used to explain the technical scheme of the utility model and is not limited, other modifications or equivalent replacements of the technical scheme of the utility model made by the ordinary skill in the art should be covered in the claim range of the utility model, as long as not departing from the spirit and scope of the technical scheme of the utility model.
Claims
1. A biological fertilizer double stirring automatic conversion device, characterized by: It includes a stirring mechanism and a feeding mechanism, the stirring mechanism includes a motor base, a frame, a driving motor, a coupling, a gear box, a double auger and a shell, the frame is placed on the ground, and an upwardly open shell is fixedly installed above the frame, the motor base is fixedly connected to one end of the frame, and a driving motor, a coupling and a gear box connected in sequence are installed on the motor base, wherein the double auger is rotatably connected to both ends of the shell and is transmission-connected to the gear box, a discharge port is opened at one end of the bottom of the shell, and the feeding mechanism includes a silo, A feed hopper, a guide plate, a sealing plate and an openable and closable cover plate, the silo is fixedly connected to the upper end of the shell, the feed hopper is installed on the top of the silo, the guide plate is installed at an angle at the lower end of the feed hopper, the guide plate is fixed in the silo, and the top of the silo is closed by the sealing plate and the openable and closable cover plate arranged at intervals. An adjusting mechanism is also provided at the tail of the guide plate, and the feed amount on the guide plate is controlled by the adjusting mechanism. A pneumatic mechanism connected to the frame is also provided on the discharge port, and the pneumatic mechanism is connected to an external gas tank to control the opening and closing of the discharge port.
2. The biological fertilizer double stirring automatic conversion device according to claim 1 is characterized in that: The adjustment mechanism includes a slide groove and a baffle fixed on the two side walls of the silo. The baffle slides up and down along the slide groove to divide the silo into a storage space in front of the guide plate and a discharge space behind the guide plate. The upper end of the baffle is also fixedly connected with protrusions on both sides. The protrusions can increase the friction force, which facilitates manual control of the feed amount.
3. The biological fertilizer dual stirring automatic conversion device according to claim 1 is characterized in that: The pneumatic mechanism includes a base, a pneumatic cylinder, a push rod, a connecting frame, a gate plate, and a roller group. The front end of the push rod is fixed to the back of the gate plate through the connecting frame, and the end of the push rod is telescopically connected to the pneumatic cylinder. The roller group is arranged in parallel on the upper part of the base, and the gate plate is slidably connected to the base through the roller group. The pneumatic cylinder is also fixed in the base.
4. The biological fertilizer dual stirring automatic conversion device according to claim 1 is characterized in that: The top of the guide plate is located at the feed hopper, and the discharge port is located just below the top of the guide plate. Both sides of the guide plate are fixed on the silo, and a channel for unloading is left between the end of the guide plate and the silo, and the channel is located at the other end of the discharge port.
5. The biological fertilizer dual stirring automatic conversion device according to claim 1 is characterized in that: The openable and closable cover is also provided with a handle.