Automatic batching apparatus for compound fertilizer production

By using partitions, fixed components and filter parts in automatic batching equipment, waste and pollution caused by batching drop in compound fertilizer production is solved, and an environmentally friendly and efficient batching process is achieved.

WO2025138362A1PCT designated stage expired Publication Date: 2025-07-03JIANGXI HONGDA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/072866
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-27
Filing Date
2024-01-17
Publication Date
2025-07-03

AI Technical Summary

Technical Problem

In the production of composite fertilizers, the ingredients are easily dropped during the transfer process, resulting in waste and environmental pollution, affecting the normal production.

Method used

An automatic batching equipment is designed, including partitions, fixing components, discharge components and filter parts. The partition space is separated by partitions, fixed components and fixed partitions, and the discharge components control the proportion of batching discharge. The filter parts collect and purify dust to avoid pollution and waste.

Benefits of technology

While proportional ingredients are made in the production of compound fertilizers, it reduces waste of ingredients and environmental pollution, ensuring the environmental protection and efficiency of production.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN2024072866_03072025_PF_FP_ABST
    Figure CN2024072866_03072025_PF_FP_ABST
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Abstract

An automatic batching apparatus for compound fertilizer production, comprising a batching bin (1), and further comprising a plurality of partition plates (2), the plurality of partition plates (2) being all arranged in the batching bin (1) and used for separating the space in the batching bin (1). When the automatic batching apparatus for compound fertilizer production is in use, a user can divide the batching bin (1) into a plurality of chambers by means of the partition plates (2) on the basis of the number of kinds of ingredients, so as to adapt to simultaneous proportioning of a plurality of different ingredients. A fan (112) provided at the bottom of the batching bin (1) can collect dust generated during compound fertilizer production, and allows the dust to enter a collecting cylinder (111); when dust in air enters the collecting cylinder (111), the dust will be blown toward a filter screen (113) under the action of the fan (112), the filter screen (113) filters the dust in air, and then the fan (112) will continue to bring the filtered air out, so as to leave the dust in air on one side of the filter screen (113), thus achieving filtration and purification of dust generated during compound fertilizer production, and ensuring the environmental protection performance of processing.
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Description

Automatic batching equipment for compound fertilizer production Technical Field

[0001] The invention relates to the technical field of compound fertilizer production, in particular to automatic batching equipment for compound fertilizer production. Background Art

[0002] Compound fertilizer refers to a chemical fertilizer containing two or more nutrients of nitrogen, phosphorus and potassium. Compound fertilizer has the advantages of high nutrient content, few by-components and good physical properties. It plays a very important role in balanced fertilization, improving fertilizer utilization and promoting high and stable yields of crops. However, we have found in actual life that during the production of compound fertilizer, it is necessary to use a batching machine to mix the compound fertilizer ingredients in proportion. When the existing automatic batching machine is in use, some ingredients in the batching bin will be squeezed out of the conveyor belt during the process of being conveyed to the next step by the conveyor belt, and then fall to the ground or between the conveyor belt and the conveyor belt support frame, resulting in waste of ingredients. If the ingredients dropped on the ground are not handled in time, they will also pollute nearby water sources and affect the nearby environment. For this reason, we propose an automatic batching equipment for compound fertilizer production. Summary of the Invention

[0003] A technical problem to be solved by the present application is: how to avoid environmental pollution and waste of ingredients in the process of automatic proportioning of compound fertilizer without affecting the normal production of compound fertilizer.

[0004] In order to solve the above technical problems, the present invention provides an automatic batching equipment for compound fertilizer production, including a batching bin and a

[0005] A plurality of partitions are provided, and the plurality of partitions are all provided in the batching bin, for separating the space in the batching bin;

[0006] A fixing assembly, disposed in the batching bin, for fixing the plurality of partitions;

[0007] A discharge assembly is provided in the batching bin and is used to control the batching to be discharged from the batching bin in proportion;

[0008] A filter element is provided below the batching bin and is used to collect and filter dust generated in the production of compound fertilizer. The filter element includes a collecting cylinder provided at the bottom of the batching bin, a fan provided in the collecting cylinder, and a filter provided in the collecting cylinder.

[0009] In some embodiments, the fixing assembly includes a plurality of clamping members arranged in the ingredient bin for clamping adjacent partitions, a plurality of limiting members are arranged in the ingredient bin for limiting the positions of the plurality of partitions, and a pre-discharge member is arranged in the ingredient bin for pre-discharging the ingredients in the ingredient bin.

[0010] In some embodiments, the clamping member includes a fixed column arranged in the ingredient bin, a fixed plate is arranged on the outside of the fixed column, the fixed plate is an equilateral polygon, a plurality of clamping grooves are opened on the outside of the fixed plate, a plurality of the clamping grooves are relatively arranged with rotating shafts, and a clamping plate is arranged on the outside of the plurality of rotating shafts, a clamping torsion spring is arranged on the outside of the plurality of rotating shafts, and a plurality of clamping torsion springs are connected to adjacent clamping plates, every two adjacent clamping plates in the plurality of clamping plates form a group, and the two clamping plates in each group of clamping plates are relatively arranged.

[0011] In some embodiments, the limiting member includes a limiting plate arranged on the outside of the fixed plate, and the multiple partitions are slidably arranged in the corresponding limiting plates. A load-bearing plate is provided in the ingredient bin, and a limiting groove is provided on the top of the load-bearing plate for use with the multiple partitions.

[0012] In some embodiments, the pre-arrangement part includes a plurality of pre-arrangement grooves opened in the load-bearing plate, a plurality of first sliding grooves are opened in the load-bearing plate, a first synchronization ring is rotatably arranged in the load-bearing plate, a plurality of first sliding plates are arranged on the outside of the first synchronization ring, and the plurality of first sliding plates are all slidably arranged in adjacent first sliding grooves.

[0013] In some embodiments, the discharge assembly includes an auxiliary component arranged in the ingredient bin, which is used to assist in the discharge of ingredients in the ingredient bin. A control component is provided in the ingredient bin, which is used to control the discharge of ingredients in the ingredient bin. A driving component is provided under the ingredient bin, which is used to provide power for the discharge of ingredients in the ingredient bin.

[0014] In some embodiments, the auxiliary parts include multiple auxiliary grooves opened at the bottom of the material mixing bin, a second sliding groove is opened at the bottom of the material mixing bin, a second synchronization ring is rotatably arranged in the material mixing bin, and multiple second sliding plates are arranged on the outside of the second synchronization ring, and the multiple second sliding plates are all slidably arranged in adjacent second sliding grooves.

[0015] In some embodiments, the control member includes a round rod rotatably set at the bottom of the feeding bin, an auxiliary plate is set on the top of the round rod, a material baffle plate is set between the load-bearing plate and the bottom of the feeding bin, a control block is set on the top of the auxiliary plate, a control rod is slidably set in the control block, and the control rod is set through one end of the auxiliary plate, a control spring is set in the control block, a first control plate is set at the bottom of the first synchronization ring, and a second control plate is set on the top of the second synchronization ring.

[0016] In some embodiments, the driving member includes a driving motor arranged at the end of the round rod away from the auxiliary plate, the driving motor is a stepping motor, the first control plate is provided with a first control groove for use with the control rod, the second control plate is provided with a second control groove, an extrusion plate is provided in the baffle plate, the top of the extrusion plate is fitted with the bottom of the first control plate, and the side of the extrusion plate away from the first control plate is a slope.

[0017] In some embodiments, the driving member includes a power motor arranged at the end of the round rod away from the auxiliary plate, the first control plate is provided with a plurality of first control grooves for use with the control rod, the second control plate is provided with a plurality of second control grooves, and the baffle plate is provided with a plurality of extrusion plates equidistantly arranged with the round rod as the axis, the plurality of extrusion plates are all fitted with the bottom of the first control plate, and the side of the plurality of extrusion plates away from the first control plate is a slope.

[0018] The present invention has at least the following beneficial effects:

[0019] During use, the user can divide the ingredient bin into multiple cavities through partitions according to the number of ingredient types, so that it is suitable for mixing multiple different ingredients at the same time. The fan installed at the bottom of the ingredient bin can collect the dust generated during the production of compound fertilizer and allow the dust to enter the collection cylinder. When the dust in the air enters the collection cylinder, it will be blown to the filter under the action of the fan. The filter will filter the dust in the air, and then the fan will continue to bring out the filtered air, so that the dust in the air will remain on one side of the filter, thereby filtering and purifying the dust generated during the production of compound fertilizer and ensuring the environmental protection of the processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] FIG1 is a schematic diagram of the overall structure of the present invention;

[0021] FIG2 is a schematic structural diagram of a discharge assembly according to the present invention;

[0022] FIG3 is a side sectional view of the collecting tube structure of the present invention;

[0023] FIG4 is a schematic diagram of the structure of the fixing assembly of the present invention;

[0024] FIG5 is a schematic cross-sectional view of the structure of the batching bin of the present invention;

[0025] FIG6 is a schematic diagram of the enlarged structure of the area of ​​FIG5A of the present invention;

[0026] FIG7 is an exploded schematic diagram of a partial structure of a clamping member according to the present invention;

[0027] FIG8 is an exploded schematic diagram of the pre-arrangement structure of the present invention;

[0028] FIG9 is a schematic diagram of the structure of a driving member of the present invention;

[0029] FIG10 is a schematic diagram of the enlarged structure of area B in FIG9 of the present invention;

[0030] FIG11 is a schematic diagram of the structure of the control component of the present invention;

[0031] FIG12 is an exploded schematic diagram of the auxiliary component structure of the present invention;

[0032] FIG13 is a schematic diagram of the auxiliary plate structure of the present invention;

[0033] FIG14 is a schematic diagram of the control spring structure of the present invention;

[0034] FIG15 is a schematic structural diagram of Example 2 of the present invention;

[0035] FIG16 is a schematic diagram of the structure of an extruded plate according to the present invention;

[0036] FIG17 is a schematic diagram of the structure of the second control slot of the present invention.

[0037] In the figure: 1-dosing bin; 2-partition plate; 3-fixing assembly; 4-clamping member; 41-fixing column; 42-fixing plate; 43-clamping groove; 44-rotating shaft; 45-clamping plate; 46-clamping torsion spring; 5-limiting member; 51-limiting plate; 52-load-bearing plate; 53-limiting groove; 6-pre-discharge member; 61-pre-discharge groove; 62-first sliding groove; 63-first synchronizing ring; 64-first sliding plate; 7-discharge assembly; 8-auxiliary member; 81-auxiliary groove; 82-second sliding groove; 83-second synchronizing ring; 84-second sliding plate; 9-control member; 91-round rod; 92-auxiliary plate; 93-blocking plate; 94-control block; 95-control rod; 96-control spring; 97-first control plate; 98-second control plate; 10-driving member; 101-driving motor; 102-first control slot; 103-second control slot; 104-extrusion plate; 105-power motor; 11-filter element; 111-collecting cylinder; 112-fan; 113-filter. Implementation Method

[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Example

[0039] Please refer to Figures 1-14. The present invention provides a technical solution: an automatic batching equipment for compound fertilizer production, including a batching bin 1 and a

[0040] A plurality of partitions 2 are provided, and the plurality of partitions 2 are all provided in the batching bin 1 to separate the space in the batching bin 1;

[0041] A fixing assembly 3 is provided in the batching bin 1 and is used to fix the plurality of partitions 2;

[0042] The discharge assembly 7 is provided in the batching bin 1 and is used to control the batching to be discharged from the batching bin 1 in proportion;

[0043] The filter element 11 is arranged below the batching bin 1 and is used to collect and filter the dust generated during the production of compound fertilizer. The filter element 11 includes a collecting cylinder 111 arranged at the bottom of the batching bin 1, and a fan 112 is arranged in the collecting cylinder 111. A filter screen 113 is arranged in the collecting cylinder 111. The fan 112 arranged below the batching bin 1 can collect the dust generated during the production of compound fertilizer and allow the dust to enter the collecting cylinder 111. When the dust in the air enters the collecting cylinder 111, it will be blown to the filter screen 113 under the action of the fan 112. The filter screen 113 will filter the dust in the air, and then the fan 112 will continue to take out the filtered air, so that the dust in the air remains on the side of the filter screen 113, thereby filtering and purifying the dust generated during the production of compound fertilizer.

[0044] The fixing component 3 includes a plurality of clamping members 4 arranged in the batching bin 1 for clamping adjacent partitions 2, a plurality of limiting members 5 are arranged in the batching bin 1 for limiting the positions of the plurality of partitions 2, and a pre-discharge member 6 is arranged in the batching bin 1 for pre-discharging the ingredients in the batching bin 1.

[0045] The clamping member 4 includes a fixed column 41 arranged in the batching bin 1, a fixed plate 42 is arranged on the outside of the fixed column 41, the fixed plate 42 is an equilateral polygon, a plurality of clamping grooves 43 are opened on the outside of the fixed plate 42, a rotating shaft 44 is arranged in each of the plurality of clamping grooves 43, and a clamping plate 45 is arranged on the outside of each of the plurality of rotating shafts 44, a clamping torsion spring 46 is arranged on the outside of each of the plurality of rotating shafts 44, and a plurality of clamping torsion springs 46 are connected to adjacent clamping plates 45, and every two adjacent clamping plates 45 in the plurality of clamping plates 45 form a group, and the two clamping plates 45 in each group of clamping plates 45 are arranged relative to each other. When the partition 2 is stuck in the limiting groove 53, the partition 2 is close to the fixed plate 42. One end of the partition 2 will be stuck in the clamping groove 43 provided on the fixed plate 42, and the side of the partition 2 close to the fixed plate 42 will fit with the fixed plate 42, so that the ingredients on both sides of the partition 2 will not be mixed together. When the partition 2 is inserted into the clamping groove 43, the partition 2 will squeeze one end of the two clamping plates 45, so that the two clamping plates 45 are rotated through the rotating shaft 44 to fix the partition 2. The clamping torsion spring 46 arranged on the outside of the rotating shaft 44 can control the corresponding clamping plate 45 to reset after the partition 2 is pulled out. Its function is to prevent the two clamping plates 45 from rotating in the opposite direction due to inertia or gravity, while controlling the two clamping plates 45 to reset for users to reuse.

[0046] The limiting member 5 includes a limiting plate 51 arranged on the outside of the fixed plate 42, and multiple partitions 2 are slidably arranged in the corresponding limiting plates 51. A load-bearing plate 52 is provided in the ingredient bin 1, and a limiting groove 53 is provided on the top of the load-bearing plate 52 for use with multiple partitions 2. When the user needs to distribute the space in the ingredient bin 1, the partition 2 is inserted into the limiting plate 51, and the partition 2 is stuck in the limiting groove 53 on the load-bearing plate 52, so that when the partition 2 enters the ingredient bin 1, the position of the partition 2 is limited by the limiting plate 51 and the limiting groove 53. Its function is to prevent the partition 2 from swinging left and right after being inserted into the ingredient bin 1, and will not cause the ingredient bin 1 to squeeze the partition 2 crooked after the ingredients enter the ingredient bin 1.

[0047] The pre-arrangement part 6 includes a plurality of pre-arrangement grooves 61 provided in the load-bearing plate 52, a plurality of first sliding grooves 62 provided in the load-bearing plate 52, a first synchronization ring 63 is rotatably provided in the load-bearing plate 52, a plurality of first sliding plates 64 are provided on the outside of the first synchronization ring 63, and the plurality of first sliding plates 64 are all slidably provided in adjacent first sliding grooves 62. When the first control plate 97 rotates, the first control plate 97 will drive the first synchronization ring 63 on its top to rotate, and then the first synchronization ring 63 will drive the plurality of first sliding plates 64 on its outside to rotate, and make the plurality of first sliding plates 64 slide out of the corresponding first sliding grooves 62, so that the plurality of first sliding plates 64 block the pre-arrangement grooves 61. Its function is to prevent the ingredients in the batching bin 1 from being discharged through the pre-arrangement grooves 61, and to prevent the ingredients in the batching bin 1 from being directly discharged through the auxiliary grooves 81.

[0048] The discharge assembly 7 includes an auxiliary component 8 arranged in the batching bin 1, which is used to assist in the discharge of the ingredients in the batching bin 1. A control component 9 is provided in the batching bin 1, which is used to control the discharge of the ingredients in the batching bin 1. A driving component 10 is provided below the batching bin 1 to provide power for the discharge of the ingredients in the batching bin 1.

[0049] The auxiliary part 8 includes a plurality of auxiliary grooves 81 opened at the bottom of the ingredient bin 1, a second sliding groove 82 is opened at the bottom of the ingredient bin 1, a second synchronous ring 83 is rotatably arranged in the ingredient bin 1, and a plurality of second sliding plates 84 are arranged on the outside of the second synchronous ring 83. The plurality of second sliding plates 84 are all slidably arranged in adjacent second sliding grooves 82. When the second synchronous ring 83 rotates, the second synchronous ring 83 will drive the plurality of second sliding plates 84 on its outside to slide, so that the plurality of second sliding plates 84 slide into the second sliding groove 82, thereby fully opening the auxiliary groove 81. Its function is to allow the ingredients under the load-bearing plate 52 to be discharged from the ingredient bin 1 through the auxiliary groove 81, and the ingredients flowing out through the auxiliary groove 81 can be directly poured into the equipment for stirring the ingredients, thereby avoiding waste and environmental pollution when the ingredients are transported by the conveyor belt.

[0050] The control member 9 includes a round rod 91 that is rotatably arranged at the bottom of the batching bin 1, an auxiliary plate 92 is arranged on the top of the round rod 91, a material blocking plate 93 is arranged between the load-bearing plate 52 and the bottom of the batching bin 1, a control block 94 is arranged on the top of the auxiliary plate 92, a control rod 95 is slidingly arranged in the control block 94, and the control rod 95 is arranged through one end of the auxiliary plate 92, a control spring 96 is arranged in the control block 94, a first control plate 97 is arranged at the bottom of the first synchronizer ring 63, and a second control plate 98 is arranged on the top of the second synchronizer ring 83. When the partition 2 is fixed, the drive motor 101 is turned on, and the drive motor 10 1 will drive the round rod 91 at its output end to rotate. When the round rod 91 rotates, the round rod 91 will drive the auxiliary plate 92 at one end thereof to rotate together. When the auxiliary plate 92 rotates, it will drive the control block 94 on its outer side to rotate together. When the control block 94 rotates, the control rod 95 sliding in the control block 94 will drive the first control plate 97 to rotate through the first control groove 102. When the first control plate 97 rotates, the first control plate 97 will drive the first synchronous ring 63 on its top to rotate, and then the first synchronous ring 63 will drive the multiple first sliding plates 64 on its outer side to rotate, and the multiple first sliding plates 64 The first and second control plates 98 are pressed together and the second and second control plates 98 are pressed together, so that the second and second control plates 98 are pressed together. The second synchronous ring 83 is driven to rotate. When the second synchronous ring 83 rotates, the second synchronous ring 83 will drive the multiple second sliding plates 84 on its outside to slide, so that the multiple second sliding plates 84 slide into the second sliding groove 82, thereby fully opening the auxiliary groove 81. The baffle plate 93 arranged at the bottom of the load-bearing plate 52 can separate different types of ingredients and prevent the ingredients from affecting the rotation of the auxiliary plate 92. The control spring 96 arranged on the outside of the control rod 95 can reset the control rod 95 and insert it into the first control groove 102 again after the control rod 95 is released from the extrusion plate 104.

[0051] The driving member 10 includes a driving motor 101 arranged at one end of the round rod 91 away from the auxiliary plate 92. The driving motor 101 is a stepping motor. A first control slot 102 for use with the control rod 95 is provided on the first control plate 97, and a second control slot 103 is provided on the second control plate 98. An extrusion plate 104 is provided in the baffle plate 93. The top of the extrusion plate 104 is in contact with the bottom of the first control plate 97, and the side of the extrusion plate 104 away from the first control plate 97 is an inclined surface. The driving motor 101 model is a 42BYGH series stepping motor. The driving motor 101 drives the round rod 91 to rotate, and then the round rod 91 arranged at the output end of the driving motor 101 drives the first control slot 102 or the second control slot 103 on the first control plate 97 or the second control plate 98 to move, and the extrusion plate 104 can squeeze the control rod 95 when the control rod 95 contacts its bottom. The second control slot 103 is inserted into the second control slot 103 after being squeezed. When the drive motor 101 reverses, the control rod 95 inserted into the second control slot 103 will drive the second control plate 98 to reverse through the second control slot 103, and then the multiple second sliding plates 84 on the outside of the second synchronous ring 83 will slide out of the second sliding slot 82, so that the multiple second sliding plates 84 block the corresponding auxiliary slots 81. When the control rod 95 is released from the squeezing of the squeezing plate 104, the control spring 96 on the outside of the control rod 95 will pop out the control rod 95 and insert the control rod 95 into the first control slot 102, so that the first control plate 97 drives the first synchronous ring 63 to rotate, so that the first synchronous ring 63 drives the multiple first sliding plates 64 on its outside to slide into the corresponding first sliding slot 62, so that the pre-discharge slot 61 is fully opened, and the ingredients in the ingredient bin 1 flow through the pre-discharge slot 61 to the bottom of the load-bearing plate 52.

[0052] During use, when the user needs to distribute the space in the ingredient bin 1, the partition 2 is inserted into the limiting plate 51, and the partition 2 is clamped into the limiting groove 53 on the load-bearing plate 52, so that when the partition 2 enters the ingredient bin 1, the position of the partition 2 is limited by the limiting plate 51 and the limiting groove 53. When the partition 2 is clamped into the limiting groove 53, the end of the partition 2 close to the fixed plate 42 will be clamped into the clamping groove 43 opened on the fixed plate 42, and the side of the partition 2 close to the fixed plate 42 will fit with the fixed plate 42, so that the ingredients on both sides of the partition 2 will not be mixed together. When the partition 2 is inserted into the clamping groove 43, the partition 2 will squeeze one end of the two clamping plates 45, so that the two clamping plates 45 are rotated by the rotating shaft 44 to fix the partition 2. The clamping torsion spring 46 arranged on the outside of the rotating shaft 44 can control the corresponding clamping plate 45 to reset after the partition 2 is pulled out. Its function is to prevent the two clamping plates 45 from rotating in opposite directions due to inertia or gravity, and to control the two clamping plates 45 to reset for the convenience of users to reuse. When the partition 2 is fixed, turn on the drive motor 101, and the drive motor 101 will drive the round rod 91 at its output end to rotate. When the round rod 91 rotates, the round rod 91 will drive the auxiliary plate 92 at one end to rotate together. The auxiliary plate 92 will drive the control block 94 on its outside to rotate together when rotating. When the control block 94 rotates, the control rod 95 sliding in the control block 94 will drive the first control plate 97 to rotate through the first control slot 102. When the first control plate 97 rotates , the first control plate 97 will drive the first synchronous ring 63 on its top to rotate, and then the first synchronous ring 63 will drive the multiple first sliding plates 64 on its outer side to rotate, and make the multiple first sliding plates 64 slide out of the corresponding first sliding grooves 62, so that the multiple first sliding plates 64 block the pre-row grooves 61. When the multiple first sliding plates 64 have completed blocking the pre-row grooves 61, the top of the control rod 95 contacts the extrusion plate 104. Since the extrusion plate 104 is an inclined surface, under the action of the extrusion plate 104, the control rod 95 slides downward in the control block 94 and is inserted into the second control groove 103 in the second control plate 98. At this time, the drive motor 101 continues to rotate, so that the control rod 95 drives the second control plate 98 to rotate through the second control groove 103, and then The second control plate 98 drives the second synchronous ring 83 to rotate. When the second synchronous ring 83 rotates, the second synchronous ring 83 drives the multiple second sliding plates 84 outside it to slide, so that the multiple second sliding plates 84 slide into the second sliding groove 82, thereby fully opening the auxiliary groove 81. When the ingredients under the bearing plate 52 are completely discharged through the auxiliary groove 81, the control drive motor 101 is controlled to reverse. At this time, the control rod 95 inserted into the second control groove 103 will drive the second control plate 98 to reverse through the second control groove 103, thereby causing the multiple second sliding plates 84 outside the second synchronous ring 83 to slide out of the second sliding groove 82, so that the multiple second sliding plates 84 block the corresponding auxiliary grooves 81. When the control rod 95 is released from the extrusion of the extrusion plate 104,The control spring 96 on the outside of the control rod 95 will eject the control rod 95 and insert the control rod 95 into the first control groove 102, so that the first control plate 97 drives the first synchronization ring 63 to rotate, and the first synchronization ring 63 drives the multiple first sliding plates 64 on its outside to slide into the corresponding first sliding grooves 62, so that the pre-discharge groove 61 is fully opened, and the ingredients in the ingredient bin 1 flow through the pre-discharge groove 61 to the bottom of the bearing plate 52. Example

[0053] Please refer to Figures 15-17. The present invention provides a technical solution:

[0054] Different from Example 1, this embodiment provides another implementation of the driving member. The driving member 10 includes a power motor 105 arranged at one end of the round rod 91 away from the auxiliary plate 92. The first control plate 97 is provided with a plurality of first control slots 102 for use with the control rod 95. The second control plate 98 is provided with a plurality of second control slots 103. A plurality of extrusion plates 104 are equidistantly arranged in the baffle plate 93 with the round rod 91 as the axis. The plurality of extrusion plates 104 are all fitted with the bottom of the first control plate 97, and the side of the plurality of extrusion plates 104 away from the first control plate 97 is an inclined surface. When the power motor 105 rotates, the power motor 105 drives the round rod 91 to rotate. 1 causes the auxiliary plate 92 to rotate. When the control block 94 rotates with the auxiliary plate 92, it drives the control rod 95 sliding inside it to move together. When the control rod 95 contacts the bottom of the extrusion plate 104, the control rod 95 slides downward and inserts into the second control groove 103 in the second control plate 98. When the control rod 95 is released from the control of the extrusion plate 104, the control spring 96 controls the control rod 95 to insert into the next first control groove 102, and the bottom of the control rod 95 is released from the control of the second control groove 103. The power motor 105 is different from the drive motor 101. It can rotate continuously in one direction and has a reduced load compared to the drive motor 101.

[0055] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An automatic batching equipment for compound fertilizer production, including a batching bin (1), characterized in that: It also includes partition plates (2), a plurality of which are provided, and the plurality of partition plates (2) are all arranged in the batching bin (1) for separating the space in the batching bin (1); a fixing component (3), arranged in the batching bin (1) for fixing the plurality of partition plates (2); a discharging component (7), arranged in the batching bin (1) for controlling the discharge of the batching from the batching bin (1) in proportion; a filtering member (11), arranged below the batching bin (1) for collecting and filtering the dust generated in the compound fertilizer production. The filtering member (11) includes a collecting cylinder (111) arranged at the bottom of the batching bin (1), a blower (112) arranged in the collecting cylinder (111), and a filter screen (113) arranged in the collecting cylinder (111).

2. The automatic batching equipment for compound fertilizer production according to claim 1, characterized in that: The fixing component (3) includes a plurality of clamping members (4) arranged in the batching bin (1) for clamping adjacent partition plates (2), a plurality of limiting members (5) arranged in the batching bin (1) for limiting the positions of the plurality of partition plates (2), and a pre-discharging member (6) arranged in the batching bin (1) for pre-discharging the batching in the batching bin (1).

3. The automatic batching equipment for compound fertilizer production according to claim 2, characterized in that: The clamping member (4) includes a fixing column (41) arranged in the batching bin (1), a fixing plate (42) arranged on the outer side of the fixing column (41). The fixing plate (42) is an equilateral polygon, and a plurality of clamping grooves (43) are formed on the outer side of the fixing plate (42). A plurality of rotating shafts (44) are oppositely arranged in the plurality of clamping grooves (43), and clamping plates (45) are arranged on the outer sides of the plurality of rotating shafts (44). Clamping torsion springs (46) are arranged on the outer sides of the plurality of rotating shafts (44), and the plurality of clamping torsion springs (46) are all connected to the adjacent clamping plates (45). Every two adjacent clamping plates (45) among the plurality of clamping plates (45) form a group, and the two clamping plates (45) in each group of clamping plates (45) are oppositely arranged.

4. The automatic batching equipment for compound fertilizer production according to claim 3, characterized in that: The limiting member (5) includes a limiting plate (51) arranged on the outer side of the fixing plate (42), and the plurality of partition plates (2) are all slidably arranged in the corresponding limiting plates (51). A load-bearing plate (52) is arranged in the batching bin (1), and a limiting groove (53) matched with the plurality of partition plates (2) is formed at the top of the load-bearing plate (52).

5. The automatic batching equipment for compound fertilizer production according to claim 4, characterized in that: The pre-discharging member (6) includes a plurality of pre-discharging grooves (61) formed in the load-bearing plate (52), a plurality of first sliding grooves (62) formed in the load-bearing plate (52), a first synchronous ring (63) rotatably arranged in the load-bearing plate (52), and a plurality of first sliding plates (64) arranged on the outer side of the first synchronous ring (63). The plurality of first sliding plates (64) are all slidably arranged in the adjacent first sliding grooves (62).

6. The automatic batching equipment for compound fertilizer production according to claim 5, wherein: The discharging assembly (7) includes an auxiliary member (8) disposed in the batching bin (1) for assisting in discharging the batching in the batching bin (1). A control member (9) is disposed in the batching bin (1) for controlling the discharging of the batching in the batching bin (1). A driving member (10) is disposed below the batching bin (1) for providing power for the discharging of the batching in the batching bin (1).

7. The automatic batching equipment for compound fertilizer production according to claim 6, characterized in that: The auxiliary member (8) includes a plurality of auxiliary grooves (81) formed at the bottom of the batching bin (1). A second sliding groove (82) is formed at the bottom of the batching bin (1). A second synchronous ring (83) is rotatably disposed in the batching bin (1). A plurality of second sliding plates (84) are disposed on the outer side of the second synchronous ring (83). The plurality of second sliding plates (84) are all slidably disposed in the adjacent second sliding grooves (82).

8. The automatic batching equipment for compound fertilizer production according to claim 7, characterized in that: The control member (9) includes a round rod (91) rotatably disposed at the bottom of the batching bin (1). An auxiliary plate (92) is disposed at the top of the round rod (91). A baffle plate (93) is disposed between the bearing plate (52) and the bottom of the batching bin (1). A control block (94) is disposed at the top of the auxiliary plate (92). A control rod (95) is slidably disposed in the control block (94), and the control rod (95) penetrates through one end of the auxiliary plate (92). A control spring (96) is disposed in the control block (94). A first control plate (97) is disposed at the bottom of the first synchronous ring (63). A second control plate (98) is disposed at the top of the second synchronous ring (83).

9. The automatic batching equipment for compound fertilizer production according to claim 8, characterized in that: The driving member (10) includes a driving motor (101) disposed at one end of the round rod (91) away from the auxiliary plate (92). The driving motor (101) is a stepping motor. A first control groove (102) for cooperating with the control rod (95) is formed on the first control plate (97). A second control groove (103) is formed on the second control plate (98). An extrusion plate (104) is disposed in the baffle plate (93). The top of the extrusion plate (104) is in contact with the bottom of the first control plate (97), and the side of the extrusion plate (104) away from the first control plate (97) is an inclined surface.

10. The automatic batching equipment for compound fertilizer production according to claim 9, characterized in that: The driving member (10) includes a power motor (105) disposed at one end of the round rod (91) away from the auxiliary plate (92). A plurality of first control grooves (102) for cooperating with the control rod (95) are formed on the first control plate (97). A plurality of second control grooves (103) are formed on the second control plate (98). A plurality of extrusion plates (104) are equidistantly disposed in the baffle plate (93) with the round rod (91) as the axis. The plurality of extrusion plates (104) are all in contact with the bottom of the first control plate (97), and the side of the plurality of extrusion plates (104) away from the first control plate (97) is an inclined surface.

Citation Information

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