Mixing integrated device for producing stress-resistant and disease-preventing foliar fertilizer
By introducing a sliding frame and an electric telescopic rod into the mixing device, the filter barrel is automatically tilted and impurities are dumped, solving the problem of solid impurity accumulation in existing devices and ensuring the efficient operation of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHENGZHOU ABOLUO FERTILIZER CO LTD
- Filing Date
- 2025-05-19
- Publication Date
- 2026-04-28
AI Technical Summary
The existing mixing device cannot clean the solid impurities filtered out of the screen in a timely manner, which affects the use of the screen.
An integrated mixing device comprising a mixing tank, a support frame, and a filter barrel was designed. The filter barrel is automatically tilted and impurities are dumped through a sliding frame and an electric telescopic rod, which promptly cleans up solid impurities. The feeding and stirring devices are controlled by an electromagnetic control valve to regulate the temperature.
This allows for the timely removal of solid impurities from the filter cartridge, preventing their accumulation and ensuring the continuous and efficient operation of the device.
Smart Images

Figure CN224167333U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fertilizer mixing equipment technology, specifically to an integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizers. Background Technology
[0002] Foliar fertilizers for stress resistance and disease prevention play a vital role in agricultural production by enhancing crop resistance to stress and preventing diseases. Their production process requires the precise mixing of various raw materials. Some types of fertilizers are granular fertilizers made by mixing multiple granular components, while others are liquid fertilizers made by dissolving multiple granular components in a solvent. Therefore, regardless of the type of fertilizer, the production of any of them requires the assistance of mixing equipment.
[0003] In the prior art, utility model patent CN202322294892.8 discloses a mixing device for foliar fertilizer production, including a mixing tank. The mixing tank has a stirring mechanism inside, a collecting hopper at the bottom, and a screening mechanism inside the collecting hopper. The collecting hopper has a bottom plate. The screening mechanism includes a hydraulic rod, a fixed frame, a positioning frame, a channel, a screen, and a connecting block. The fixed frame is fixed inside the collecting hopper, and the positioning frame is slidably connected to the inside of the fixed frame. The channel is located on both sides of the collecting hopper. This mixing device for foliar fertilizer production, by setting up a screening mechanism, allows the connecting block to move after the fertilizer falls onto the screen. The movement of the connecting block causes the positioning frame to move inside the fixed frame, and the screen can also shake, thus screening the fertilizer and facilitating subsequent use.
[0004] The mixing device provided by the aforementioned patent can screen impurities in fertilizer by setting up a screen. Although the mixing device can be used to filter insoluble solid impurities in liquid fertilizer production by replacing the screen during the production process, the mixing device cannot clean the solid impurities filtered out of the screen in a timely manner. As production continues for a long time, a large amount of solid impurities will accumulate in the screen, affecting the normal use of the screen. Utility Model Content
[0005] The purpose of this invention is to provide an integrated mixing device for the production of stress-resistant and disease-preventing foliar fertilizers, which aims to improve the problem that existing mixing devices cannot clean the solid impurities filtered out of the screen in a timely manner. As production continues for a long time, a large amount of solid impurities will accumulate in the screen, thus affecting the normal use of the screen.
[0006] This utility model is implemented as follows: An integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer includes a mixing box with a funnel-shaped discharge port at its lower end, a support frame, and a filter barrel. A sliding frame is slidably mounted on the support frame, and filter barrels are mounted at both ends of the sliding frame. Below the mixing box, a support frame is positioned, and a fertilizer conveying channel is located below the support frame corresponding to the funnel-shaped discharge port. Waste residue boxes are located on both sides of the fertilizer conveying channel. The filter barrels have symmetrically arranged rotating rods on their sides, which are rotatably mounted on the sliding frame. One end of the rotating rod passes through the sliding frame and has a spur gear. Gear racks matching the spur gears are respectively mounted at both ends of the support frame's side. One filter barrel is located between the funnel-shaped discharge port and the fertilizer conveying channel, while the other filter barrel is rotated and inverted above the waste residue box via the gear rack on the same side.
[0007] Preferably, the mixing box includes a box cover, the upper end of the mixing box is provided with a box cover, the box cover is provided with a feeding hopper, a water inlet pipe and a stirring device communicating with the inside of the mixing box; the body of the mixing box is provided with support legs.
[0008] Preferably, the feeding hopper includes a material leakage plate, and the material leakage plate is movably and pull-outly mounted on the feeding hopper.
[0009] Preferably, the stirring device includes a motor and a stirring shaft. The motor is installed on the box cover, and the output shaft of the motor extends through the box cover to the inside of the mixing box where the stirring shaft is installed.
[0010] Preferably, the mixing chamber further includes a heating system, which includes a temperature controller and a heating element, the temperature controller and the heating element being electrically connected, and the heating element being embedded around the interior of the mixing chamber.
[0011] Preferably, the funnel-shaped discharge port includes an electromagnetic control valve, and the funnel-shaped discharge port is provided with an electromagnetic control valve.
[0012] Preferably, the support frame includes an electric telescopic rod, the electric telescopic rod is provided on the side of the support frame, and a connecting block is provided on the side of the sliding frame corresponding to the position of the electric telescopic rod. The telescopic end of the electric telescopic rod is fixedly connected to the connecting block; the sliding frame is movably set by means of the electric telescopic rod.
[0013] Preferably, the sliding frame includes a sliding block, the lower end of the sliding frame is provided with the sliding block, and the upper end surface of the support frame is provided with a sliding groove that matches the sliding block, and the sliding block is slidably installed in the sliding groove.
[0014] Preferably, the filter barrel includes a filter screen, and the filter screen is installed inside the filter barrel, wherein the filter screen is disposed in a manner that does not contact the inner wall of the filter barrel.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] 1. This utility model provides a sliding frame on a support frame, and two filter buckets on the sliding frame, with one positioned below the mixing box and the other automatically flipped above the waste residue box. This allows for timely disposal of the solid impurities filtered out from inside the filter buckets, preventing the accumulation of large amounts of solid impurities in the filter buckets.
[0017] 2. This utility model allows workers to easily control the opening and closing of the feeding hopper by setting a material leakage baffle in the feeding hopper, thus facilitating the control of the feeding amount. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the front of this utility model;
[0019] Figure 2 This is a three-dimensional structural diagram of the back of this utility model;
[0020] Figure 3 This is a three-dimensional structural diagram of the mixing box of this utility model;
[0021] Figure 4 This is a cross-sectional structural schematic diagram of the mixing box of this utility model;
[0022] Figure 5 This is a three-dimensional structural diagram of the support frame of this utility model;
[0023] Figure 6 This is a schematic diagram of the installation structure of the sliding frame and filter barrel of this utility model.
[0024] In the diagram: 1. Mixing box; 101. Box cover; 102. Feeding hopper; 103. Leakage plate; 104. Water inlet pipe; 2. Funnel-shaped discharge port; 201. Electromagnetic control valve; 3. Support frame; 301. Gear rack; 302. Slide groove; 303. Electric telescopic rod; 4. Sliding frame; 401. Sliding block; 402. Connecting block; 5. Filter barrel; 501. Spur gear; 502. Rotating rod; 503. Filter screen; 6. Fertilizer conveyor; 7. Waste residue box; 8. Support leg; 9. Heating system; 901. Temperature controller; 902. Heating tube; 10. Stirring device; 1001. Motor; 1002. Stirring shaft. Detailed implementation method:
[0025] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0026] The following description, in conjunction with the accompanying drawings and specific embodiments, provides further details:
[0027] Example 1
[0028] like Figure 1 , Figure 3 and Figure 4 As shown, an integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer includes a mixing chamber 1. The mixing chamber 1 includes a cover 101, which is located at the top of the mixing chamber 1. The cover 101 has a feeding hopper 102, a water inlet pipe 104, and a stirring device 10 that connect to the interior of the mixing chamber 1. The feeding hopper 102 includes a drain plate 103, which is movably and pull-out. The drain plate 103 on the feeding hopper 102 controls its opening and closing, allowing for convenient feeding of materials into the mixing chamber 1 and closure when not in use. The stirring device 10 includes a motor 1001 and a stirring shaft 1002. The motor 1001 is located on the cover 101, and its output shaft extends through the cover 101 to the interior of the mixing chamber 1, where the stirring shaft 1002 is located. The mixing tank 1 is equipped with a stirring shaft 1002 driven by a motor 1001 to mix the fertilizer liquid inside the mixing tank 1. The mixing tank 1 also includes a heating system 9, which comprises a temperature controller 901 and a heating element 902. The temperature controller 901 and the heating element 902 are electrically connected, and the heating element 902 is embedded around the inside of the mixing tank 1. The temperature controller 901 is an intelligent temperature controller with a display screen, and the heating element 902 is a heating resistor. The heating temperature of the heating element 902 can be changed by altering the input current through the temperature controller 901. Support legs 8 are provided on the body of the mixing tank 1. A funnel-shaped discharge port 2 is provided at the lower end of the mixing tank 1, which includes an electromagnetic control valve 201. The heating system 9 allows for timely control of the temperature inside the mixing tank 1 during fertilizer production and mixing, ensuring that the fertilizer is at the optimal mixing temperature.
[0029] like Figure 1 , Figure 5 and Figure 6 As shown, it also includes a support frame 3 and a filter bucket 5. The filter bucket 5 includes a filter screen 503, which is installed inside the filter bucket 5. The filter screen 503 and the inner wall of the filter bucket 5 are not in contact. By setting the filter bucket 5, the fertilizer mixed in the mixing box 1 can be filtered through the filter bucket 5, which facilitates the timely filtration of undissolved solid impurities in the fertilizer. There is a gap between the filter screen 503 and the filter bucket 5. The gap allows sufficient airflow during fertilizer filtration, preventing the formation of closed air pressure inside the filter bucket 5 and causing fertilizer blockage. A sliding frame 4 is slidably mounted on the support frame 3, with filter buckets 5 mounted at both ends of the sliding frame 4. The support frame 3 includes an electric telescopic rod 303, which is mounted on the side of the support frame 3. A connecting block 402 is mounted on the side of the sliding frame 4 corresponding to the position of the electric telescopic rod 303. The telescopic end of the electric telescopic rod 303 is fixedly connected to the connecting block 402. The sliding frame 4 is movably mounted via the electric telescopic rod 303. The sliding frame 4 includes a sliding block 401. The sliding block 401 is provided at the lower end of the sliding frame 4, and a groove 302 adapted to the sliding block 401 is opened on the upper end surface of the support frame 3. The sliding block 401 is slidably installed in the groove 302. The sliding frame 4 can slide on the support frame 3 via an electric telescopic rod 303, thereby driving the filter buckets 5 at both ends to be located at the middle and end positions of the support frame 3, respectively.
[0030] like Figure 2 and Figure 6 As shown, a support frame 3 is provided below the mixing box 1, and a fertilizer conveying channel 6 is provided below the support frame 3 at the position corresponding to the funnel-shaped discharge port 2. Waste residue boxes 7 are provided on both sides of the fertilizer conveying channel 6. Rotating rods 502 are symmetrically arranged on the side of the filter barrel 5, and the filter barrel 5 is rotatably mounted on the sliding frame 4 through the rotating rods 502. One end of the rotating rod 502 passes through the sliding frame 4 and is provided with a spur gear 501. Gear racks 301 that are adapted to the spur gears 501 are respectively provided at both ends of the side of the support frame 3. One filter barrel 5 is located between the funnel-shaped discharge port 2 and the fertilizer conveying channel 6, and the other filter barrel 5 is rotated and inverted above the waste residue box 7 through the gear rack 301 on the same side. When the sliding frame 4 slides left and right, one of them will be positioned below the funnel-shaped discharge port 2, while the other will move to one end of the support frame 3. The gear rack 301 on the support frame 3 will then drive the spur gear 501 to rotate, thereby rotating the filter barrel 5 and tilting it above the waste residue box 7. This allows the waste residue in the filter barrel 5 to be poured into the waste residue box 7, facilitating timely cleaning of the filter barrel 5 and preventing disruption to its normal operation. This also increases the continuous working time of the device.
[0031] Example 2
[0032] like Figure 1 , Figure 3 and Figure 4 As shown, an integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer includes a mixing chamber 1. The mixing chamber 1 includes a cover 101, which is located at the top of the mixing chamber 1. The cover 101 has a feeding hopper 102, a water inlet pipe 104, and a stirring device 10 that connect to the interior of the mixing chamber 1. The feeding hopper 102 includes a discharge plate 103, which is movably and pull-out. The stirring device 10 includes a motor 1001 and a stirring shaft 1002. The motor 1001 is located on the cover 101, and its output shaft extends through the cover 101 to the interior of the mixing chamber 1, where the stirring shaft 1002 is located. The mixing chamber 1 also includes a heating system 9, which includes a temperature controller 901 and a heating tube 902. The temperature controller 901 and the heating tube 902 are electrically connected, and the heating tube 902 is embedded around the interior of the mixing chamber 1. Support legs 8 are provided on the body of the mixing chamber 1. The lower end of the mixing box 1 is provided with a funnel-shaped discharge port 2, which includes an electromagnetic control valve 201. The funnel-shaped discharge port 2 is provided with an electromagnetic control valve 201.
[0033] like Figure 1 , Figure 5 and Figure 6 As shown, it also includes a support frame 3 and a filter barrel 5. The filter barrel 5 includes a filter screen 503, which is installed inside the filter barrel 5. The filter screen 503 and the inner wall of the filter barrel 5 are not in contact. A sliding frame 4 is slidably mounted on the support frame 3, and filter barrels 5 are mounted at both ends of the sliding frame 4. The support frame 3 includes an electric telescopic rod 303, which is mounted on the side of the support frame 3. A connecting block 402 is mounted on the side of the sliding frame 4 corresponding to the position of the electric telescopic rod 303. The telescopic end of the electric telescopic rod 303 is fixedly connected to the connecting block 402. The sliding frame 4 is movably mounted via the electric telescopic rod 303. The sliding frame 4 includes a sliding block 401, which is mounted on the lower end of the sliding frame 4. A groove 302 adapted to the sliding block 401 is opened on the upper surface of the support frame 3, and the sliding block 401 is slidably mounted in the groove 302.
[0034] like Figure 2 and Figure 6 As shown, a support frame 3 is provided below the mixing box 1, and a fertilizer conveying channel 6 is provided below the support frame 3 at the position corresponding to the funnel-shaped discharge port 2. Waste residue boxes 7 are provided on both sides of the fertilizer conveying channel 6. Rotating rods 502 are symmetrically arranged on the side of the filter barrel 5, and the filter barrel 5 is rotatably mounted on the sliding frame 4 through the rotating rods 502. One end of the rotating rod 502 passes through the sliding frame 4 and is provided with a spur gear 501. Gear racks 301 that are adapted to the spur gears 501 are respectively provided at both ends of the side of the support frame 3. One filter barrel 5 is located between the funnel-shaped discharge port 2 and the fertilizer conveying channel 6, and the other filter barrel 5 is rotated and inverted above the waste residue box 7 through the gear rack 301 on the same side.
[0035] The working principle of this utility model is as follows: Material is fed into the mixing tank 1 through the feeding hopper 102, and then solvent is added into the mixing tank 1 through the water inlet pipe 104. The mixture is then stirred and mixed by the stirring device 10. During the mixing process, the temperature inside the mixing tank 1 can be adjusted by the heating system 9. After mixing, the fertilizer is discharged into the filter bucket 5 by opening the electromagnetic control valve 201 to filter out undissolved solid impurities. The filtered fertilizer can be transported to the next process through the fertilizer conveyor 6. When the next batch of fertilizer needs to be mixed, the sliding frame 4 can be moved to the other end by activating the electric telescopic rod 303. During the movement, the filter bucket 5, currently located in the middle, will move towards the end of the support frame 3 along with the sliding frame 4. During the movement, the gear rack 301 drives the filter bucket 5 to flip and invert above the waste residue box 7, thereby dumping the solid impurities inside the filter bucket 5 into the waste residue box 7. Simultaneously, another filter bucket 5 will move between the funnel-shaped discharge port 2 and the fertilizer conveyor 6.
[0036] In summary, this utility model, by setting a sliding frame 4 on the support frame 3 and setting two filter barrels 5 on the sliding frame 4, with one positioned below the mixing box 1 and the other automatically flipped above the waste residue box 7, can promptly dump the solid impurities filtered out inside the filter barrel 5, avoiding the accumulation of a large amount of solid impurities in the filter barrel 5; by setting a material leakage plate 103 in the feeding hopper 102, it is convenient for operators to control the opening and closing of the feeding hopper 102, making it easy to control the feeding amount.
[0037] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A mixing integrated device for producing stress-resistant and disease-preventing foliar fertilizer, comprising a mixing box (1), wherein the lower end of the mixing box (1) is provided with a funnel-shaped discharge port (2), characterized in that, It also includes a support frame (3) and a filter barrel (5). A sliding frame (4) is slidably mounted on the support frame (3), and filter barrels (5) are mounted on both ends of the sliding frame (4). A support frame (3) is mounted below the mixing box (1), and a fertilizer conveying channel (6) is mounted below the support frame (3) at the position corresponding to the funnel-shaped discharge port (2). Waste residue boxes (7) are mounted on both sides of the fertilizer conveying channel (6). Rotating rods (502) are symmetrically mounted on the side of the filter barrel (5). The rotating rod (502) is rotatably mounted on the sliding frame (4), with a spur gear (501) passing through the sliding frame (4) at one end of the rotating rod (502); the two ends of the side of the support frame (3) are respectively provided with gear racks (301) that are compatible with the spur gear (501); one filter barrel (5) is located between the funnel-shaped discharge port (2) and the fertilizer conveying channel (6), and the other filter barrel (5) is rotated and inverted above the waste residue box (7) by the gear rack (301) on the same side.
2. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 1, characterized in that, The mixing box (1) includes a box cover (101), the upper end of the mixing box (1) is provided with a box cover (101), the box cover (101) is provided with a feeding hopper (102), a water inlet pipe (104) and a stirring device (10) communicating with the inside of the mixing box (1); the body of the mixing box (1) is provided with support legs (8).
3. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 2, characterized in that, The feeding hopper (102) includes a material leakage plate (103), and the material leakage plate (103) is movably and pull-out on the feeding hopper (102).
4. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 2, characterized in that, The stirring device (10) includes a motor (1001) and a stirring shaft (1002). The motor (1001) is installed on the box cover (101). The output shaft of the motor (1001) extends through the box cover (101) and into the mixing box (1), where the stirring shaft (1002) is installed.
5. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 1, characterized in that, The mixing chamber (1) also includes a heating system (9), which includes a temperature controller (901) and a heating tube (902). The temperature controller (901) and the heating tube (902) are electrically connected, and the heating tube (902) is embedded around the inside of the mixing chamber (1).
6. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 1, characterized in that, The funnel-shaped discharge port (2) includes an electromagnetic control valve (201), and the funnel-shaped discharge port (2) is provided with an electromagnetic control valve (201).
7. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 1, characterized in that, The support frame (3) includes an electric telescopic rod (303). The electric telescopic rod (303) is provided on the side of the support frame (3). A connecting block (402) is provided on the side of the sliding frame (4) corresponding to the position of the electric telescopic rod (303). The telescopic end of the electric telescopic rod (303) and the connecting block (402) are fixedly connected. The sliding frame (4) is movably set through the electric telescopic rod (303).
8. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 7, characterized in that, The sliding frame (4) includes a sliding block (401). The lower end of the sliding frame (4) is provided with a sliding block (401). The upper end surface of the support frame (3) is provided with a sliding groove (302) that is adapted to the sliding block (401). The sliding block (401) is slidably installed in the sliding groove (302).
9. The integrated mixing device for producing stress-resistant and disease-preventing foliar fertilizer according to claim 1, characterized in that, The filter barrel (5) includes a filter screen (503), and the filter screen (503) is installed inside the filter barrel (5). The filter screen (503) and the inner wall of the filter barrel (5) are not in contact.
Citation Information
Patent Citations
A mixing device for producing foliar fertilizer
CN221015517U