Transportation device and method for agricultural planting chemical fertilizer production
By designing cleaning, flattening and recycling mechanisms in the transportation device, the problems of stickiness and unevenness during fertilizer transportation were solved, the transportation efficiency was improved and the recycling of wastewater was achieved.
Patent Information
- Application Number
- CN202510918221.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-03
- Publication Date
- 2025-09-23
AI Technical Summary
During the fertilizer transportation process, fertilizers with high viscosity tend to stick to the surface of the conveyor belt, resulting in decreased conveying efficiency and increased equipment load, and a lack of effective cleaning and flattening mechanisms.
A transportation device for agricultural fertilizer production is designed, which includes a transportation mechanism, a cleaning mechanism, a flattening component, a dehumidification component and a recovery mechanism. The fertilizer on the conveyor belt is cleaned and flattened by means of water spraying, scraping and air flow, and the wastewater is recovered by the recovery mechanism.
It effectively reduces the load during fertilizer transportation, improves transportation efficiency, ensures uniform distribution of fertilizer, reduces friction, and realizes the recycling of wastewater.
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Figure CN120681476A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fertilizer transporters, and in particular to a transport device and method for producing agricultural fertilizers. Background Art
[0002] Fertilizers are primarily divided into the following categories: Nitrogen fertilizers: These primarily contain nitrogen, which promotes the growth of plant leaves and stems, increasing crop yields. Common nitrogen fertilizers include urea, ammonium nitrogen fertilizers (such as ammonium carbonate, ammonium sulfate, and ammonium chloride), and nitrate nitrogen fertilizers (such as ammonium nitrate, sodium nitrate, and calcium nitrate). Phosphate fertilizers: These primarily contain phosphorus, which plays an important role in plant root growth and fruit formation. Common phosphate fertilizers include superphosphate (ordinary phosphate fertilizer), triple superphosphate (concentrated phosphate fertilizer), and diammonium phosphate. Potassium fertilizers: These primarily contain potassium, which can improve crop disease and stress resistance, increasing crop yield and quality. Common potassium fertilizers include potassium sulfate and potassium chloride. Compound fertilizers: These are composed of two or more nutrients, provide a variety of nutrients, and are suitable for different types of crops. Common compound fertilizers include nitrogen-phosphorus-potassium compound fertilizers and nitrogen-phosphorus compound fertilizers.
[0003] Trace element fertilizers: mainly contain trace elements such as zinc, copper, and manganese, which play an important role in the growth and development of plants. Common trace element fertilizers include zinc fertilizers, copper fertilizers, and manganese fertilizers. During the production of chemical fertilizers, they need to be transported by belt conveyors.
[0004] The belt conveyor is driven by a motor to rotate the belt, transporting potash fertilizer raw materials or finished products from one place to another. The belt is generally made of rubber and other materials, and has a certain degree of elasticity and toughness, which can adapt to different conveying angles and distances.
[0005] However, in the process of conveying fertilizers with high viscosity, the fertilizers will stick to the surface of the conveyor belt, resulting in a constant heavy load on the conveyor belt during the conveying process, thus affecting the conveying efficiency and normal operation of the equipment. In addition, the belt conveyor lacks the effect of flattening the fertilizers, resulting in uneven accumulation of fertilizers on the belt. The thicker parts will increase the contact area and friction with the belt, thereby also increasing the load on the conveyor belt during the conveying process. Summary of the Invention
[0006] The purpose of this section is to summarize some aspects of the embodiments of the present invention and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract and title of this application to avoid obscuring the purpose of this section, the abstract and the title of the invention, and such simplifications or omissions should not be used to limit the scope of the present invention.
[0007] In view of the above-mentioned problems existing in the existing transportation devices for agricultural fertilizer production, the present invention is proposed.
[0008] Therefore, the object of the present invention is to provide a transport device for agricultural fertilizer production, the purpose of which is to reduce the load during fertilizer transportation.
[0009] In order to solve the above technical problems, the present invention provides the following technical solutions: comprising: a transport mechanism, which includes a conveyor frame, a drive motor is fixedly connected to the left side of the front side of the conveyor frame, the output end of the drive motor passes through the inner side of the conveyor frame and is fixedly connected to a drive roller, the back side of the drive roller is movably connected to the left side of the inner wall of the conveyor frame, a tensioning roller is provided on the right side of the interior of the conveyor frame, both sides of the tensioning roller are fixedly connected to the right sides of both sides of the inner wall of the conveyor frame, a conveyor belt is provided inside the conveyor frame, and the conveyor belt is sleeved on the surfaces of the drive roller and the tensioning roller, and; clear The washing mechanism includes a driving gear, which is provided with two driving gears, the interior of the driving gear is fixedly connected to a driving rod, the inner side of the driving rod passes through the interior of the conveying frame and is fixedly connected to both sides of the tensioning roller, the bottom of the driving gear is meshed with a driven gear, the inner side of the driven gear is movably connected to the bottom right side of both sides of the conveying frame, the bottom inside the driven gear is fixedly connected to a driving shaft, the surface of the driving shaft is provided with a driving sleeve, the left side of the driving sleeve is slidably connected to a transmission rod, the outer side of the transmission rod is fixedly connected to a limiting disk, and the transmission rod The back side is fixedly connected with a piston rod, the right side of the bottom of the conveying frame is fixedly connected with a water spray barrel, the inside of the water spray barrel is movably connected with a piston block, the bottom of the piston block is fixedly connected to the top of the piston rod, the inner side of the piston rod is fixedly connected with teeth, and the teeth are provided with a plurality of teeth and are distributed at equal distances. Both sides of the right side of the bottom of the conveying frame are provided with suspension rods, and the two sides of the suspension rods are fixedly connected to the two sides of the inner side of the water spray barrel, and the bottom outside the suspension rod is movably connected with a transmission gear, and the two sides of the transmission gear are meshed with the teeth. The right side of the bottom of the conveying frame is fixedly connected There is a water-blocking sleeve, which is arranged on the bottom of the conveyor belt surface, and high-pressure nozzles are provided at the bottom of both sides of the water-blocking sleeve, and the high-pressure nozzles are connected to the water spray barrel. A scraper is provided inside the water-blocking sleeve, and the top of the scraper contacts the bottom of the conveyor belt. The two sides of the scraper are fixedly connected to the two sides of the inner wall of the water-blocking sleeve, and the bottom of the water-blocking sleeve is fixedly connected with a recovery mechanism, the outer side of the piston rod is fixedly connected with a flattening assembly, the right side of the bottom of the conveyor frame is fixedly connected with a dehumidification assembly, and the top of the high-pressure nozzle on the right side is fixedly connected with a self-cleaning assembly.
[0010] As a preferred solution of the transportation device for agricultural fertilizer production described in the present invention, the recovery mechanism includes a water tank, the top of the water tank is fixedly connected to the bottom of the water-blocking sleeve, the water tank is communicated with the water spray barrel, a recovery groove is provided at the bottom of the inner wall of the water-blocking sleeve, the recovery groove is opened to the interior of the water tank, a filter plate is inlaid in the interior of the recovery groove, and an anti-blocking component is movably connected to the left side of the top of the filter plate.
[0011] As a preferred solution of the transportation device for agricultural fertilizer production described in the present invention, the flattening assembly includes a connecting frame, the bottoms on both sides of the inner wall of the connecting frame are fixedly connected to the outer side of the piston rod, the top of the inner wall of the connecting frame is fixedly connected to a flat plate, and the inner side of the flat plate is fixedly connected to an extension plate.
[0012] As a preferred solution of the transportation device for agricultural fertilizer production described in the present invention, the dehumidification component includes a blow box, the two sides of the top of the blow box are fixedly connected to the two sides of the right side of the bottom of the conveying rack, the top of the blow box is provided with a blow groove, and there are three blow grooves that are equidistantly distributed. The bottom of the blow box is connected to an air guide pipe, the other end of the air guide pipe is connected to the bottom of the water spray barrel, and the blow box is connected to the water spray barrel through the air guide pipe.
[0013] As a preferred solution of the transportation device for agricultural fertilizer production described in the present invention, the self-cleaning component includes a first tension spring, a plurality of first tension springs are provided and are distributed at equal distances, one end of the first tension spring is fixedly connected to the top of the high-pressure nozzle on the right, the high-pressure nozzle on the right is movably connected to the right side of the inner wall of the water-blocking sleeve, the left side of the high-pressure nozzle on the left is fixedly connected to the left side of the inner wall of the water-blocking sleeve, the other end of the first tension spring is fixedly connected to the right side of the inner wall of the water-blocking sleeve, both sides of the bottom of the right high-pressure nozzle are fixedly connected with a first pull rope, the left side of the outer side of the transmission gear is fixedly connected to an extension rod, and the other end of the first pull rope passes through the water-blocking sleeve and is fixedly connected to the outer side of the extension rod.
[0014] As a preferred solution of the transportation device for agricultural fertilizer production described in the present invention, the anti-blocking component includes a brush strip, the bottom of the brush strip contacts the left side of the bottom of the filter plate, and the left side of the brush strip is fixedly connected to a second tension spring, and a plurality of second tension springs are provided and distributed at equal distances, and the other end of the second tension spring is fixedly connected to the bottom of the left side of the inner wall of the water-blocking sleeve, and both sides of the right side of the brush strip are fixedly connected to a second pull rope, and the other end of the second pull rope passes through the water-blocking sleeve and is fixedly connected to the top of both sides of the connecting frame on the left side, and collecting components are provided on the left and right sides of the bottom of the inner wall of the water-blocking sleeve.
[0015] As a preferred solution of the transportation device for agricultural fertilizer production described in the present invention, the collecting component includes a collecting trough, which is opened to the interior of the water tank, and a collecting net is provided inside the collecting trough. The left and right sides of the top of the collecting net are fixedly connected with a clamping strip, and the clamping strip is clamped to the collecting trough.
[0016] As a preferred solution of the transportation device for agricultural fertilizer production described in the present invention, both sides of the inner wall of the connecting frame are slidably connected to the limiting seats, the inner sides of the limiting seats are fixedly connected to the right sides of both sides of the conveying frame, the top and bottom of the inner side of the limiting plate are fixedly connected with anti-rotation blocks, and the inner side of the anti-rotation blocks are slidably connected to the top and bottom of the driving sleeve.
[0017] The beneficial effects of the present invention are as follows: the transport mechanism is started to transport the material, the cleaning mechanism is started to clean the conveyor belt, the tablet pressing component is started to flatten the material, the dehumidification component is started to blow dry the conveyor belt, the self-cleaning component is started for self-cleaning, and the waste water generated during cleaning is recovered through the recovery mechanism.
[0018] In view of the above-mentioned problems existing in the existing transportation devices for agricultural fertilizer production, the present invention is proposed.
[0019] Therefore, the object of the present invention is to provide a method for transporting a transport device for producing agricultural fertilizers, the purpose of which is to clean the conveyor belt and flatten the material.
[0020] In order to solve the above technical problems, the present invention provides the following technical solutions: comprising: Start the transport mechanism to transport the materials, and start the cleaning mechanism to clean the conveyor belt; Start the tableting component to flatten the material, start the dehumidification component to dry the conveyor belt, and start the self-cleaning component for self-cleaning; The wastewater generated during cleaning is recycled through a recycling mechanism.
[0021] As a preferred embodiment of the method for transporting the agricultural fertilizer production transport device of the present invention, the method comprises: The transport mechanism is activated to transport the material to the right, and at the same time the cleaning mechanism is activated to clean the surface of the conveyor belt that is retracted to the left, and the self-cleaning component is activated for self-cleaning; During the cleaning process, the sheeting component will be activated to flatten the material transported above the conveyor belt, and the dehumidification component will be activated to dehumidify the cleaned area on the conveyor belt surface; The wastewater generated during cleaning is recovered and filtered through a recovery mechanism, thus ensuring the recycling of the wastewater.
[0022] The beneficial effects of the present invention are as follows: the transport mechanism is started to transport the material to the right, and the cleaning mechanism is started to clean the surface of the conveyor belt retracted to the left, and the self-cleaning component is started for self-cleaning. During the cleaning process, the pressing component is also started to flatten the material transported above the conveyor belt, and the dehumidification component is also started to dehumidify the cleaned part of the conveyor belt surface. The waste water generated during cleaning is recovered and filtered through the recovery mechanism, thereby ensuring the recycling of the waste water. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort. Among them: Figure 1 This is a schematic diagram of the overall structure provided by the present invention.
[0024] Figure 2 This is a schematic diagram of the cross-sectional structure of the conveyor belt provided by the present invention.
[0025] Figure 3 This is a schematic diagram of the three-dimensional structure of the water storage tank provided by the present invention.
[0026] Figure 4 This is a schematic diagram of the cross-sectional structure of the water spray barrel provided by the present invention.
[0027] Figure 5 This is a schematic diagram of the cross-sectional structure of the water storage tank provided by the present invention.
[0028] Figure 6 Schematic diagram of the three-dimensional structure of the movable frame provided by the present invention Figure 7 This is a schematic diagram of the three-dimensional structure of the water-blocking sleeve provided by the present invention.
[0029] Figure 8 This is a schematic diagram of the three-dimensional structure of the water spray barrel provided by the present invention.
[0030] Figure 9 The present invention provides Figure 3 A in the figure is an enlarged structural diagram. DETAILED DESCRIPTION
[0031] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0032] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0033] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive of other embodiments.
[0034] Furthermore, the present invention is described in detail with reference to schematic diagrams. For ease of illustration, when describing the embodiments of the present invention, cross-sectional views illustrating device structures may be partially enlarged and not to scale. Furthermore, the schematic diagrams are merely illustrative and should not limit the scope of protection of the present invention. Furthermore, in actual production, the three-dimensional dimensions of length, width, and depth should be included.
[0035] Example 1 Reference Figures 1 to 9 , which is the first embodiment of the present invention, provides a transportation method for a transportation device used for agricultural fertilizer production, which can clean the conveyor belt 105 and flatten the material.
[0036] The transport mechanism 100 is started to transport the material to the right, and the cleaning mechanism 200 is started to clean the surface of the conveyor belt 105 that is retracted to the left, so as to prevent the conveyor belt 105 from being adhered to the bottom of the conveyor belt 105 and accumulating too much material, which may cause the conveyor belt 105 to be overloaded and affect the conveying efficiency. During the cleaning process, the sheet pressing assembly is activated to flatten the material being transported above the conveyor belt 105 to prevent uneven distribution of the material on the conveyor belt 105, which may cause thicker portions to increase friction with the conveyor belt 105 and thus reduce the conveying efficiency of the conveyor belt 105. The dehumidifying assembly 218 is also activated to dehumidify the cleaned portion of the conveyor belt 105 to prevent it from still being adhered to by material during subsequent use. The self-cleaning assembly 219 is also activated to cause the high-pressure nozzle 215 to self-clean the scraper 216 to prevent excessive material from adhering to the surface of the scraper 216 and affecting the scraping effect. The waste water generated during cleaning is recovered and filtered by the recovery mechanism 300, thereby ensuring the recycling of the waste water, thereby avoiding the waste of water resources and improving the utilization rate of water.
[0037] Example 2 Reference Figures 1 to 7 , which is the second embodiment of the present invention, provides a transportation mechanism 100 and a cleaning mechanism 200 to realize material transportation and auxiliary cleaning.
[0038] The transport mechanism 100 includes a conveyor frame 101, a drive motor 102 is fixedly connected to the left side of the front of the conveyor frame 101, the output end of the drive motor 102 passes through the inner side of the conveyor frame 101 and is fixedly connected to a drive roller 103, the back side of the drive roller 103 is movably connected to the left side of the inner wall of the conveyor frame 101, a tensioning roller 104 is provided on the right side of the interior of the conveyor frame 101, both sides of the tensioning roller 104 are fixedly connected to the right sides of both sides of the inner wall of the conveyor frame 101, a conveyor belt 105 is provided inside the conveyor frame 101, and the conveyor belt 105 is sleeved on the surface of the drive roller 103 and the tensioning roller 104.
[0039] The cleaning mechanism 200 includes a driving gear 201. There are two driving gears 201. The driving gear 201 is fixedly connected to a driving rod 202 inside. The inner side of the driving rod 202 penetrates the interior of the conveying frame 101 and is fixedly connected to both sides of the tensioning roller 104. The bottom of the driving gear 201 is meshed with a driven gear 203. The inner side of the driven gear 203 is movably connected to the bottom of the right side of both sides of the conveying frame 101. The bottom of the inner side of the driven gear 203 is fixedly connected to a driving shaft 204. The surface of the driving shaft 204 The sleeve is provided with a driving sleeve 205, the left side of the driving sleeve 205 is slidably connected to the transmission rod 206, the outer side of the transmission rod 206 is fixedly connected to the limit plate 207, the back of the transmission rod 206 is fixedly connected to the piston rod 208, the right side of the bottom of the conveyor frame 101 is fixedly connected to the water spray barrel 209, the water spray barrel 209 is movably connected to the piston block 210, the bottom of the piston block 210 is fixedly connected to the top of the piston rod 208, the inner side of the piston rod 208 is fixedly connected to the teeth 211, and the teeth 211 are provided with a plurality of The conveyor frame 101 is provided with a suspension rod 212 on both sides of the right side of the bottom, and the two sides of the suspension rod 212 are fixedly connected to the two sides of the inner side of the water spray barrel 209. The bottom of the outer side of the suspension rod 212 is movably connected with a transmission gear 213. The two sides of the transmission gear 213 are engaged with the teeth 211. The right side of the bottom of the conveyor frame 101 is fixedly connected with a water-blocking sleeve 214. The water-blocking sleeve 214 is sleeved on the bottom of the conveyor belt 105 surface. The bottom of both sides of the water-blocking sleeve 214 is provided with a high-pressure nozzle 215. The high-pressure nozzle 215 is connected to the water spray barrel 209, and a scraper 216 is provided inside the water blocking jacket 214. The top of the scraper 216 contacts the bottom of the conveyor belt 105, and the two sides of the scraper 216 are fixedly connected to the two sides of the inner wall of the water blocking jacket 214. The bottom of the water blocking jacket 214 is fixedly connected to the recovery mechanism 300, the outer side of the piston rod 208 is fixedly connected to the flattening assembly 217, the right side of the bottom of the conveying rack 101 is fixedly connected to the dehumidification assembly 218, and the top of the right high-pressure nozzle 215 is fixedly connected to the self-cleaning assembly 219.
[0040] The flattening assembly 217 includes a connecting frame 217a, the bottom of the inner wall of the connecting frame 217a is fixedly connected to the outer side of the piston rod 208, the top of the inner wall of the connecting frame 217a is fixedly connected to the flattening plate 217b, and the inner side of the flattening plate 217b is fixedly connected to the extension plate 217c.
[0041] The dehumidification component 218 includes a blowing box 218a, the two sides of the top of the blowing box 218a are fixedly connected to the two sides of the right side of the bottom of the conveying rack 101, and a blowing groove 218b is provided on the top of the blowing box 218a. There are three blowing grooves 218b and they are equidistantly distributed. The bottom of the blowing box 218a is connected to an air guide pipe 218c, and the other end of the air guide pipe 218c is connected to the bottom of the water spray barrel 209. The blowing box 218a is connected to the water spray barrel 209 through the air guide pipe 218c.
[0042] The self-cleaning assembly 219 includes a first tension spring 219a, and several first tension springs 219a are provided and distributed at equal distances. One end of the first tension spring 219a is fixedly connected to the top of the right high-pressure nozzle 215, the right high-pressure nozzle 215 is movably connected to the right side of the inner wall of the water-blocking sleeve 214, and the left side of the left high-pressure nozzle 215 is fixedly connected to the left side of the inner wall of the water-blocking sleeve 214. The other end of the first tension spring 219a is fixedly connected to the right side of the inner wall of the water-blocking sleeve 214, and both sides of the bottom of the right high-pressure nozzle 215 are fixedly connected with a first pull rope 219b. The left side of the outer side of the transmission gear 213 is fixedly connected to an extension rod 219c, and the other end of the first pull rope 219b passes through the water-blocking sleeve 214 and is fixedly connected to the outer side of the extension rod 219c.
[0043] Specifically, the driving motor 102 is started to drive the conveyor belt 105 to convey the upper material to the right.
[0044] Specifically, when the conveyor belt 105 is conveying materials, the water in the water spray barrel 209 is injected into the high-pressure nozzle 215 and sprayed upward, so that the sprayed high-pressure water flow can flush the bottom of the conveyor belt 105, thereby cleaning the attached materials. At the same time, the water-blocking sleeve 214 can prevent water resources from splashing to the outside and causing the outside ground to be wet. At the same time, the scraper 216 can be used to scrape the bottom of the conveyor belt 105 during the flushing process, so that some materials that are difficult to flush can be scraped off, avoiding the bottom of the conveyor belt 105 that is retracted to the left from being attached to materials and accumulating too much attachment, resulting in excessive weight on the conveyor belt 105 and affecting the conveying efficiency.
[0045] Specifically, when the two groups of piston rods 208 move up and down respectively, they will drive the two pressing plates 217b to press down and flatten respectively, so as to avoid uneven distribution of materials on the conveyor belt 105, which will cause the thicker parts to increase the friction with the conveyor belt 105 and thus reduce the conveying efficiency of the conveyor belt 105. The extension plate 217c can then be used to flatten the material in the gap between the two pressing plates 217b, so as to avoid the situation where some materials are not flattened.
[0046] Specifically, when the water spray barrel 209 pumps water, air will be blown towards the position of the conveyor belt 105 that is being cleaned. The rapid fluidity of the airflow can quickly dehumidify the cleaned portion of the conveyor belt 105. When the water spray barrel 209 sprays water, suction will be generated on the outside air. In the process of the outside air entering the inside of the blowing box 218a, airflow will also be generated and these airflows will be used to assist in dehumidifying the cleaned portion of the conveyor belt 105.
[0047] Specifically, during the rotation of the transmission gear 213, the high-pressure nozzle 215 on the right side will be continuously pulled to flip to a certain angle to the lower left, so that the high-pressure nozzle 215 on the right side will also flush the right side of the scraper 216 during the process of spraying high-pressure water flow, thereby preventing too much material from adhering to the surface of the scraper 216 and affecting the scraping effect.
[0048] Furthermore, the drive motor 102 on the conveyor frame 101 is started to drive the drive roller 103 to rotate, and then the drive roller 103 drives the tensioned conveyor belt 105 to bypass the drive roller 103 and the tensioning roller 104 to form a closed loop and move. At this time, the conveyor belt 105 will also drive the tensioning roller 104 to rotate, and then the conveyor belt 105 can drive the material above to be transported to the right.
[0049] Furthermore, during the rotation of the tensioning roller 104, the driving gear 201 is driven to rotate through the driving rod 202, and then the driving gear 201 drives the driven gear 203 engaged at the bottom to rotate, and then the driven gear 203 drives the inner driving shaft 204 to rotate, so that the driving shaft 204 drives the driving sleeve 205 to move up, down, left and right during the rotation process. At this time, the driving shaft 204 will also slide inside the driving sleeve 205, and the sliding connection between the transmission rod 206 and the driving sleeve 205 is utilized, so that the driving sleeve 205 can only drive the transmission rod 206 during the movement of the driving sleeve 205. 206 moves upward, and then the transmission rod 206 will drive the piston rod 208 on the right to move upward, so that the water in the piston rod 208 on the right can be squeezed upward, thereby injecting the water in the water spray barrel 209 on the right into the high-pressure nozzle 215 and spraying it upward, so that the sprayed high-pressure water flow can flush the bottom of the conveyor belt 105, thereby cleaning the attached materials, and at the same time, the water-blocking sleeve 214 can prevent water resources from splashing to the outside and causing the outside ground to be wetted. In the process of the piston rod 208 on the right moving upward, it will synchronously drive the corresponding connected teeth 211 to move upward, and then use the teeth 211 and the hanging The transmission gear 213 on the rod 212 is engaged, so that the teeth 211 on the right drive the transmission gear 213 to rotate to the left, and then the transmission gear 213 drives the teeth 211 on the left to move downward, and then the teeth 211 on the left drive the piston rod 208 on the left to move downward, so that the piston rod 208 on the left drives the corresponding piston block 210 to move downward, and then low pressure is formed above the inside of the water spray barrel 209 on the left, so that the connected water source is pumped into the water spray barrel 209 for standby, and when the piston rod 208 on the right moves downward to pump water, the teeth 211 and the transmission gear 213 can drive the left side. The piston rod 208 drives the corresponding piston block 210 to move upward and injects the water in the water spray barrel 209 into the high-pressure nozzle 215 and sprays high-pressure water flow upward, and then uses the high-pressure water flow to clean the materials attached to the bottom of the conveyor belt 105. This reciprocating motion can ensure uninterrupted flushing of the bottom of the conveyor belt 105. At the same time, the scraper 216 can be used to scrape the bottom of the conveyor belt 105 during the flushing process, so as to scrape off some materials that are difficult to flush, and avoid the bottom of the conveyor belt 105 that is retracted to the left from being attached to materials and accumulating too much attachment, resulting in excessive weight on the conveyor belt 105 and affecting the conveying efficiency.
[0050] Furthermore, in the process of the two groups of piston rods 208 moving up and down respectively, the two movable frames will be driven to move up and down respectively, and then the two movable frames moving up and down will drive the corresponding pressing plates 217b to move up and down, so that the materials transported above the conveyor belt 105 can be continuously pressed down and flattened by the two pressing plates 217b, avoiding uneven distribution of materials on the conveyor belt 105, resulting in thicker parts increasing friction with the conveyor belt 105 and thus reducing the conveying efficiency of the conveyor belt 105. The extension plate 217c can then be used to flatten the material in the gap between the two pressing plates 217b, avoiding the situation where some materials are not flattened.
[0051] Furthermore, when the piston rod 208 drives the piston block 210 to move downward, the piston block 210 will squeeze and discharge the air inside the water spray barrel 209 downward, and transmit it to the blowing slot 218b opened on the blowing box 218a through the air duct 218c and blow it out. At this time, the blown air will blow to the part of the conveyor belt 105 that is being cleaned. The fast flow of the airflow can quickly dehumidify the part of the conveyor belt 105 that is being cleaned. When the piston rod 208 drives the piston block 210 to move upward, the lower half of the water spray barrel 209 will be evacuated. At this time, the outside air will enter the interior of the air duct 218c and the interior of the water spray barrel 209 through the blowing slot 218b opened on the blowing box 218a. In the process of the outside air entering the interior of the blowing box 218a, airflow will also be generated and these airflows will be used to assist in dehumidifying the part of the conveyor belt 105 that is being cleaned.
[0052] Furthermore, during the rotation of the transmission gear 213, the extension rod 219c will be driven to rotate, so that the extension rod 219c can continuously pull or loosen one end of the first pull rope 219b. When one end of the first pull rope 219b is pulled, the other end of the first pull rope 219b will pull the high-pressure nozzle 215 on the right to flip to a certain angle to the lower left, so that the high-pressure nozzle 215 on the right will also flush the right side of the scraper 216 during the process of spraying high-pressure water, to prevent too much material from adhering to the surface of the scraper 216 and affecting the scraping effect. At the same time, the first tension spring 219a is pulled to generate tension. When the first pull rope 219b is loose, the tension of the first tension spring 219a can be released, thereby pulling the high-pressure nozzle 215 on the right to reset, so that the high-pressure nozzle 215 on the right can be reset and used.
[0053] It should be noted that the water spray barrel 209 is connected to the high-pressure nozzle 215 through a hose and a one-way valve. The one-way valve here can only allow water to flow out but not in, so as to prevent the suction force generated by the water spray barrel 209 from acting on the high-pressure nozzle 215 when pumping water.
[0054] Example 3 Reference Figure 1 、 3 , 5, 7, is the third embodiment of the present invention, which provides a recovery mechanism 300 to recycle the water used for cleaning.
[0055] The recovery mechanism 300 includes a water tank 301, the top of the water tank 301 is fixedly connected to the bottom of the water blocking sleeve 214, the water tank 301 is connected to the water spray barrel 209, and a recovery groove 302 is opened at the bottom of the inner wall of the water blocking sleeve 214. The recovery groove 302 is opened to the interior of the water tank 301. The interior of the recovery groove 302 is inlaid with a filter plate 303, and the left side of the top of the filter plate 303 is movably connected to an anti-blocking component 304.
[0056] The anti-blocking component 304 includes a brush strip 304a, the bottom of the brush strip 304a contacts the left side of the bottom of the filter plate 303, and the left side of the brush strip 304a is fixedly connected to a second tension spring 304b. Several second tension springs 304b are provided and are distributed at equal distances. The other end of the second tension spring 304b is fixedly connected to the bottom of the left side of the inner wall of the water-blocking sleeve 214, and the two sides of the right side of the brush strip 304a are fixedly connected to the second pull rope 304c. The other end of the second pull rope 304c passes through the water-blocking sleeve 214 and is fixedly connected to the top of both sides of the left connecting frame 217a. Collection components 304d are provided on the left and right sides of the bottom of the inner wall of the water-blocking sleeve 214.
[0057] The collecting component 304d includes a collecting tank 304d-1, which is opened to the interior of the water tank 301. A collecting net 304d-2 is provided inside the collecting tank 304d-1. The left and right sides of the top of the collecting net 304d-2 are fixedly connected with a clamping strip 304d-3, and the clamping strip 304d-3 is clamped to the collecting tank 304d-1.
[0058] Specifically, when the high-pressure nozzle 215 sprays water to clean the conveyor belt 105, the water that is blocked by the blocking cover and flows down can flow downward through the recovery groove 302 to the water storage tank 301 for recycling.
[0059] Specifically, when the movable frame moves up and down, the brush bar 304a will be driven to move back and forth to brush the impurities filtered on the filter plate 303 to the left and right sides, thereby preventing the impurities filtered on the filter plate 303 from affecting the efficiency of the subsequent filter plate 303 in filtering recycled water.
[0060] Specifically, impurities on both sides can fall into the interior of the collecting net 304d-2 through the collecting groove 304d-1 for collection. At the same time, the collecting net 304d-2 can drain the impurities, so that the water contained in the impurities can continue to be filtered into the water storage tank 301 for use. The card strip 304d-3 is then connected to the collecting groove 304d-1 to facilitate the user to take out the collecting net 304d-2 and pour out the impurities in the collecting net 304d-2 when there are too many impurities collected in the collecting net 304d-2.
[0061] Furthermore, in the process of the high-pressure nozzle 215 spraying water to clean the conveyor belt 105, the water that is blocked by the blocking cover and flows down can flow downward through the recovery trough 302 to the water tank 301 for recovery, and the water that needs to be sprayed by the water barrel 209 can be used by the water recovered in the water tank 301 (the water tank 301 can be filled with the required water in the initial state), and the filter plate 303 is used to filter the recovered water to remove impurities, thereby avoiding the presence of foreign matter in the recovered water resources affecting the extraction of the water barrel 209.
[0062] Furthermore, during the upward movement of the movable frame on the left, one end of the second pull rope 304c will be pulled, so that the other end of the second pull rope 304c will pull the brush strip 304a to move to the right, so that the brush strip 304a will brush the impurities filtered on the filter plate 303 to the right and clean them. At the same time, the second tension spring 304b will be pulled to generate tension, and during the downward movement of the movable frame on the left, the second pull rope 304c will be loosened, and then the tension of the second tension spring 304b will be released and pull the brush strip 304a to move to the left and reset. During the resetting process of the brush strip 304a, the impurities filtered on the filter plate 303 will be brushed to the left and cleaned, thereby avoiding excessive impurities filtered on the filter plate 303 affecting the subsequent efficiency of the filter plate 303 in filtering recycled water.
[0063] Furthermore, when the brush bar 304a moves left and right to clean the impurities filtered on the top of the filter plate 303 to both sides, the impurities on both sides can fall into the interior of the collection net 304d-2 through the collection groove 304d-1 for collection. At the same time, the collection net 304d-2 can drain the impurities, so that the water contained in the impurities can continue to be filtered into the water tank 301 for use, and then the card bar 304d-3 is connected to the collection groove 304d-1, so that the user can pull out the card bar 304d-3 from the collection groove 304d-1 when there are too many impurities collected in the collection net 304d-2, thereby taking out the collection net 304d-2 and pouring out the impurities in the collection net 304d-2.
[0064] It should be noted that the water spray barrel 209 is connected to the water tank 301 through a hose and a one-way valve. The one-way valve here can only allow water to flow out but not in, so as to prevent the water spray barrel 209 from pouring water back into the water tank 301 when spraying water.
[0065] The remaining structures are the same as those of Example 2.
[0066] Example 4 Reference Figures 1 to 7 , which is the fourth embodiment of the present invention. This embodiment is different from the third embodiment in that: this embodiment provides a transportation device and method for agricultural fertilizer production.
[0067] Start the drive motor 102 on the conveyor frame 101 to drive the drive roller 103 to rotate, and then drive the tensioned conveyor belt 105 through the drive roller 103 to bypass the drive roller 103 and the tensioning roller 104 to form a closed loop and move. At this time, the conveyor belt 105 will also drive the tensioning roller 104 to rotate, and then the conveyor belt 105 can drive the material above to be transported to the right.
[0068] During the rotation of the tensioning roller 104, the driving gear 201 is driven to rotate through the driving rod 202, and then the driving gear 201 drives the driven gear 203 engaged at the bottom to rotate, and then the driven gear 203 drives the inner driving shaft 204 to rotate, so that the driving shaft 204 can move up and down and left and right by driving the driving sleeve 205 during the rotation. At this time, the driving shaft 204 will also slide inside the driving sleeve 205, and the sliding connection between the transmission rod 206 and the driving sleeve 205 is utilized, so that the driving sleeve 205 can only drive the transmission rod 206 to move up and down and left and right during the movement. The transmission rod 206 drives the piston rod 208 on the right to move upward, so that the water in the piston rod 208 on the right can be squeezed upward, thereby injecting the water in the water spray barrel 209 on the right into the high-pressure nozzle 215 and spraying it upward, so that the high-pressure water flow can flush the bottom of the conveyor belt 105, thereby cleaning the attached materials. At the same time, the water-blocking sleeve 214 can prevent water resources from splashing to the outside and causing the outside ground to be wetted. In the process of the piston rod 208 on the right moving upward, the corresponding connected teeth 211 will be synchronously driven to move upward, and then the teeth 211 and the boom 21 are used to connect to each other. 2 is engaged, so that the teeth 211 on the right drive the transmission gear 213 to rotate to the left, and then the transmission gear 213 drives the teeth 211 on the left to move downward, and then the teeth 211 on the left drive the piston rod 208 on the left to move downward, so that the piston rod 208 on the left drives the corresponding piston block 210 to move downward, and then low pressure is formed above the inside of the water spray barrel 209 on the left, so that the connected water source is drawn into the water spray barrel 209 for standby, and when the piston rod 208 on the right moves downward to pump water, the teeth 211 and the transmission gear 213 can drive the left piston rod 208 to move downward. The plug rod 208 drives the corresponding piston block 210 to move upward and injects the water in the water spray barrel 209 into the high-pressure nozzle 215 and sprays high-pressure water flow upward, and then uses the high-pressure water flow to clean the materials attached to the bottom of the conveyor belt 105. This reciprocating movement can ensure uninterrupted flushing of the bottom of the conveyor belt 105. At the same time, the scraper 216 can be used to scrape the bottom of the conveyor belt 105 during the flushing process, so as to scrape off some materials that are difficult to flush, and avoid the bottom of the conveyor belt 105 that is retracted to the left from being attached to materials and accumulating too much attachment, resulting in excessive weight on the conveyor belt 105 and affecting the conveying efficiency.
[0069] When the two groups of piston rods 208 move up and down respectively, the two movable frames will be driven to move up and down respectively. Then, the two movable frames that move up and down respectively will drive the corresponding pressing plates 217b to move up and down, so that the materials conveyed above the conveyor belt 105 can be continuously pressed down and flattened by the two pressing plates 217b, avoiding uneven distribution of materials on the conveyor belt 105, resulting in thicker parts increasing the friction with the conveyor belt 105 and reducing the conveying efficiency of the conveyor belt 105. The extension plate 217c can then be used to flatten the materials in the gap between the two pressing plates 217b, avoiding the situation where some materials are not flattened.
[0070] When the piston rod 208 drives the piston block 210 to move downward, the piston block 210 will squeeze and discharge the air inside the water spray barrel 209 downward, and transmit it to the blowing slot 218b opened on the blowing box 218a through the air duct 218c and blow it out. At this time, the blown air will blow to the part of the conveyor belt 105 that is being cleaned. The fast flow of the airflow can quickly dehumidify the part of the conveyor belt 105 that is being cleaned. When the piston rod 208 drives the piston block 210 to move upward, the lower half of the water spray barrel 209 will be evacuated. At this time, the outside air will enter the air duct 218c and the water spray barrel 209 through the blowing slot 218b opened on the blowing box 218a. In the process of the outside air entering the blowing box 218a, airflow will also be generated and these airflows will be used to assist in dehumidifying the part of the conveyor belt 105 that is being cleaned.
[0071] During the rotation of the transmission gear 213, the extension rod 219c is driven to rotate, so that the extension rod 219c can continuously pull or loosen one end of the first pull rope 219b. When one end of the first pull rope 219b is pulled, the other end of the first pull rope 219b will pull the high-pressure nozzle 215 on the right to flip to a certain angle to the lower left, so that the high-pressure nozzle 215 on the right will also flush the right side of the scraper 216 during the process of spraying high-pressure water flow, to prevent too much material from adhering to the surface of the scraper 216 and affecting the scraping effect. At the same time, the first tension spring 219a is pulled to generate tension. When the first pull rope 219b is loose, the tension of the first tension spring 219a can be released, thereby pulling the high-pressure nozzle 215 on the right to reset, so that the high-pressure nozzle 215 on the right can be reset and used.
[0072] While the high-pressure nozzle 215 is spraying water to clean the conveyor belt 105, the water that is blocked by the blocking cover and flows down can flow downward through the recovery trough 302 to the water tank 301 for recovery, and the water that needs to be sprayed by the water barrel 209 can be used by the water recovered in the water tank 301 (the water tank 301 can be filled with the required water in the initial state), and the filter plate 303 is used to filter the recovered water to remove impurities, thereby avoiding the presence of foreign matter in the recovered water resources affecting the extraction of the water barrel 209.
[0073] During the upward movement of the movable frame on the left, one end of the second pull rope 304c will be pulled, so that the other end of the second pull rope 304c will pull the brush strip 304a to move to the right, so that the brush strip 304a will brush the impurities filtered on the filter plate 303 to the right and clean them. At the same time, the second tension spring 304b is pulled to generate tension, and during the downward movement of the movable frame on the left, the second pull rope 304c will be loosened, and then the tension of the second tension spring 304b will be released and pull the brush strip 304a to move to the left and reset. During the resetting process of the brush strip 304a, the impurities filtered on the filter plate 303 will be brushed to the left and cleaned, thereby preventing the impurities filtered on the filter plate 303 from excessively affecting the efficiency of the subsequent filter plate 303 in filtering recycled water.
[0074] When the brush bar 304a moves left and right to clean the impurities filtered on the top of the filter plate 303 to both sides, the impurities on both sides can fall into the interior of the collection net 304d-2 through the collection groove 304d-1 for collection. At the same time, the collection net 304d-2 can drain the impurities, so that the water contained in the impurities can continue to be filtered into the water storage tank 301 for use, and then the card bar 304d-3 is connected to the collection groove 304d-1, so that the user can pull out the card bar 304d-3 from the collection groove 304d-1 when there are too many impurities collected in the collection net 304d-2, thereby taking out the collection net 304d-2 and pouring out the impurities in the collection net 304d-2.
[0075] When the movable frame moves up and down, the limiting seat 217d can limit the movable frame in the front, back, left and right directions, so that the movable frame will not deviate during the up and down movement, thereby ensuring the movement stability of the movable frame.
[0076] During the process of the drive shaft 204 rotating to drive the drive sleeve 205 to move up and down, the inner side of the anti-rotation block 220 is slidably connected to the top and bottom of the drive sleeve 205, so that the drive sleeve 205 can be rotationally limited without affecting the left and right movement of the drive sleeve 205, thereby preventing the drive shaft 204 from rotating while driving the drive sleeve 205 to rotate, resulting in the drive sleeve 205 being unable to smoothly drive the transmission rod 206 to move up and down.
[0077] In summary, during the transportation process using the transportation mechanism 100, the cleaning mechanism 200 will be started for synchronous cleaning, and the self-cleaning component 219, the flattening component 217 and the dehumidification component 218 will also be started for self-cleaning, material flattening and dehumidification of the conveyor belt 105, and the recycling mechanism 300 can also be used to recycle wastewater.
[0078] It is important to note that the configuration and arrangement of the present application, as illustrated in various exemplary embodiments, are illustrative only. Although only a few embodiments are described in detail in this disclosure, those reading this disclosure will readily appreciate that numerous modifications are possible without materially departing from the novel aspects and advantages of the subject matter described herein. For example, variations in the size, dimensions, structure, shape, and proportions of various components, as well as parameter values such as temperature, pressure, mounting arrangements, use of materials, color, and orientation are possible. For example, components shown as integrally formed may be constructed from multiple parts or components, the positions of components may be inverted or otherwise altered, and the nature, number, or position of discrete components may be modified or changed. Therefore, all such modifications are intended to be encompassed within the scope of this invention. The order or sequence of any process or method steps may be altered or reordered according to alternative embodiments. In the claims, any "means-plus-function" clause is intended to cover structures that perform the functions described herein, and not only structural equivalence but also equivalent structures. Other substitutions, modifications, changes, and omissions may be made in the design, operating conditions, and arrangement of the exemplary embodiments without departing from the scope of this invention. Therefore, the present invention is not limited to the specific embodiments, but extends to a variety of modifications that still fall within the scope of the appended claims. In addition, in order to provide a concise description of the exemplary embodiments, not all features of the actual embodiment may be described, that is, those features that are not relevant to the best mode presently contemplated for carrying out the invention, or those features that are not relevant to implementing the invention.
[0079] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.
Claims
1. A transport device for agricultural fertilizer production, characterized by: include, A transport mechanism (100) comprises a transport frame (101), wherein a driving motor (102) is fixedly connected to the left side of the front of the transport frame (101), an output end of the driving motor (102) passes through the inner side of the transport frame (101) and is fixedly connected to a driving roller (103), a back side of the driving roller (103) is movably connected to the left side of the inner wall of the transport frame (101), a tensioning roller (104) is provided on the right side of the interior of the transport frame (101), both sides of the tensioning roller (104) are fixedly connected to the right sides of both sides of the inner wall of the transport frame (101), a conveyor belt (105) is provided inside the transport frame (101), and the conveyor belt (105) is sleeved on the surfaces of the driving roller (103) and the tensioning roller (104), and; A cleaning mechanism (200) includes a driving gear (201), two of which are provided. A driving rod (202) is fixedly connected to the interior of the driving gear (201). The inner side of the driving rod (202) penetrates the interior of the conveying frame (101) and is fixedly connected to both sides of the tensioning roller (104). A driven gear (203) is meshed with the bottom of the driving gear (201). The inner side of the driven gear (203) is movably connected to the bottom of the right sides of both sides of the conveying frame (101). The bottom of the inner side of the driven gear (203) is fixedly connected to a driving shaft (204). The surface of the driving shaft (204) The sleeve is provided with a driving sleeve (205), the left side of the interior of the driving sleeve (205) is slidably connected to a transmission rod (206), the outer side of the transmission rod (206) is fixedly connected to a limit plate (207), the back side of the transmission rod (206) is fixedly connected to a piston rod (208), the right side of the bottom of the conveying frame (101) is fixedly connected to a water spray barrel (209), the interior of the water spray barrel (209) is movably connected to a piston block (210), the bottom of the piston block (210) is fixedly connected to the top of the piston rod (208), the inner side of the piston rod (208) is fixedly connected to teeth (211), and the teeth (211) are provided with a plurality of The conveying frame (101) is provided with a suspension rod (212) on both sides of the right side of the bottom, and the two sides of the suspension rod (212) are fixedly connected to the two sides of the inner side of the water spray barrel (209). The bottom of the outer side of the suspension rod (212) is movably connected to a transmission gear (213), and the two sides of the transmission gear (213) are meshed with the teeth (211). The right side of the bottom of the conveying frame (101) is fixedly connected to a water blocking sleeve (214), and the water blocking sleeve (214) is sleeved on the bottom of the surface of the conveyor belt (105). The bottom of both sides of the water blocking sleeve (214) is provided with a high-pressure nozzle (215). The high-pressure nozzle ( 215) is connected to the water spray barrel (209), a scraper (216) is provided inside the water blocking jacket (214), the top of the scraper (216) contacts the bottom of the conveyor belt (105), and both sides of the scraper (216) are fixedly connected to both sides of the inner wall of the water blocking jacket (214), the bottom of the water blocking jacket (214) is fixedly connected to a recovery mechanism (300), the outer side of the piston rod (208) is fixedly connected to a flattening assembly (217), the right side of the bottom of the conveyor frame (101) is fixedly connected to a dehumidification assembly (218), and the top of the high-pressure nozzle (215) on the right side is fixedly connected to a self-cleaning assembly (219).
2. The transport device for agricultural fertilizer production according to claim 1, characterized in that: The recovery mechanism (300) comprises a water storage tank (301), the top of the water storage tank (301) is fixedly connected to the bottom of the water blocking sleeve (214), the water storage tank (301) is communicated with the water spray barrel (209), a recovery groove (302) is provided at the bottom of the inner wall of the water blocking sleeve (214), the recovery groove (302) is opened to the interior of the water storage tank (301), a filter plate (303) is embedded in the interior of the recovery groove (302), and an anti-blocking component (304) is movably connected to the left side of the top of the filter plate (303).
3. The transport device for agricultural fertilizer production according to claim 2, characterized in that: The flattening assembly (217) comprises a connecting frame (217a), the bottoms of both sides of the inner wall of the connecting frame (217a) are fixedly connected to the outer side of the piston rod (208), the top of the inner wall of the connecting frame (217a) is fixedly connected to a flat plate (217b), and the inner side of the flat plate (217b) is fixedly connected to an extension plate (217c).
4. The transport device for agricultural fertilizer production according to claim 3, characterized in that: The dehumidification component (218) includes a blowing box (218a), the two sides of the top of the blowing box (218a) are fixedly connected to the two sides of the right side of the bottom of the conveying rack (101), the top of the blowing box (218a) is provided with a blowing groove (218b), and the blowing grooves (218b) are provided with three and are distributed at equal distances, the bottom of the blowing box (218a) is connected to an air guide pipe (218c), the other end of the air guide pipe (218c) is connected to the bottom of the water spray barrel (209), and the blowing box (218a) is connected to the water spray barrel (209) through the air guide pipe (218c).
5. The transport device for agricultural fertilizer production according to any one of claims 2 to 4, characterized in that: The self-cleaning component (219) comprises a first tension spring (219a), wherein a plurality of the first tension springs (219a) are provided and are distributed at equal distances, one end of the first tension spring (219a) is fixedly connected to the top of the high-pressure nozzle (215) on the right side, the high-pressure nozzle (215) on the right side is movably connected to the right side of the inner wall of the water-blocking sleeve (214), the left side of the high-pressure nozzle (215) on the left side is fixedly connected to the left side of the inner wall of the water-blocking sleeve (214), the other end of the first tension spring (219a) is fixedly connected to the right side of the inner wall of the water-blocking sleeve (214), both sides of the bottom of the high-pressure nozzle (215) on the right side are fixedly connected to a first pull rope (219b), the left side of the outer side of the transmission gear (213) is fixedly connected to an extension rod (219c), and the other end of the first pull rope (219b) passes through the water-blocking sleeve (214) and is fixedly connected to the outer side of the extension rod (219c).
6. The transport device for agricultural fertilizer production according to claim 5, characterized in that: The anti-blocking component (304) comprises a brush strip (304a), the bottom of the brush strip (304a) contacts the left side of the bottom of the filter plate (303), the left side of the brush strip (304a) is fixedly connected to a second tension spring (304b), a plurality of the second tension springs (304b) are provided and are distributed at equal distances, the other end of the second tension spring (304b) is fixedly connected to the bottom of the left side of the inner wall of the water-blocking sleeve (214), both sides of the right side of the brush strip (304a) are fixedly connected to a second pull rope (304c), the other end of the second pull rope (304c) passes through the water-blocking sleeve (214) and is fixedly connected to the top of both sides of the connecting frame (217a) on the left side, and a collecting component (304d) is provided on both the left and right sides of the bottom of the inner wall of the water-blocking sleeve (214).
7. The transport device for agricultural fertilizer production according to claim 6, characterized in that: The collecting component (304d) comprises a collecting trough (304d-1), the collecting trough (304d-1) being opened to the interior of the water storage tank (301), a collecting net (304d-2) being provided inside the collecting trough (304d-1), a clamping strip (304d-3) being fixedly connected to the left and right sides of the top of the collecting net (304d-2), and the clamping strip (304d-3) being clamped to the collecting trough (304d-1).
8. The transport device for agricultural fertilizer production according to claim 3, characterized in that: Both sides of the inner wall of the connecting frame (217a) are slidably connected to the limiting seat (217d), the inner side of the limiting seat (217d) is fixedly connected to the right side of both sides of the conveying frame (101), the top and bottom of the inner side of the limiting plate (207) are fixedly connected to the anti-rotation block (220), and the inner side of the anti-rotation block (220) is slidably connected to the top and bottom of the driving sleeve (205).
9. A method for transporting agricultural fertilizers using a transport device, characterized in that: The transport device for agricultural fertilizer production according to any one of claims 1 to 8 further comprises: The transport mechanism (100) is activated to transport the material, and the cleaning mechanism (200) is activated to clean the conveyor belt (105); Start the tabletting component to flatten the material, start the dehumidification component (218) to dry the conveyor belt (105), and start the self-cleaning component (219) to self-clean; Wastewater generated during cleaning is recovered through a recovery mechanism (300).
10. The method for transporting agricultural fertilizers according to claim 9, characterized in that: include, The transport mechanism (100) is activated to transport the material to the right, and the cleaning mechanism (200) is activated to clean the surface of the conveyor belt (105) retracted to the left, and the self-cleaning component (219) is activated for self-cleaning; During the cleaning process, the sheet pressing component is activated to flatten the material being transported above the conveyor belt (105), and the dehumidifying component (218) is activated to dehumidify the cleaned portion of the surface of the conveyor belt (105); Wastewater generated during cleaning is recovered and filtered through a recovery mechanism (300), thereby ensuring the recycling of the wastewater.
Citation Information
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