A feeding device for the production of trace element fertilizers
By designing feeding equipment for the production of trace element fertilizers, and using material shaking tunnel components and drive track components, the problem of incomplete feeding of material packages is solved, the rapid disassembly and uniform input of materials is achieved, and the feeding efficiency is improved.
Patent Information
- Application Number
- CN202510039187.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2045-01-10
AI Technical Summary
During the production process of trace element fertilizers, when the raw material packaging bag is disassembled and fed, the material is likely to remain in the dead corners of the equipment, resulting in incomplete feeding.
A feeding equipment for the production of trace element fertilizers is designed, including equipment abutment, material shaking tunnel assembly and material shaking drive track assembly. Through the coordination of material shaking tunnel assembly and material shaking drive track assembly, the material package is cut by an open circular saw, and the combination of electric feeding track and material grabbing parts can be achieved to erect, clamp and shake out the material package.
It realizes rapid disassembly and evenly puts the material package, avoids material residues in the equipment blind spots, and improves feeding efficiency and integrity.
Smart Images

Figure CN119527673B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of material feeding, and specifically relates to a feeding device for the production of trace element fertilizers. Background Art
[0002] Trace element fertilizers, usually simply referred to as micronutrient fertilizers. They are fertilizers containing trace nutrient elements, and the absorption and consumption by crops are small (compared with macronutrient fertilizers). Although the amount of trace elements required by crops is very small, like macronutrient elements, they are equally important for crops and cannot be replaced by each other. The application of micronutrient fertilizers can only exert its fertilizer effect on the basis of nitrogen, phosphorus, and potassium fertilizers. During the production of trace element fertilizers, the packaging bags of raw materials all have large-capacity adhesive tapes, and when unpacking and feeding, the materials in the material bags cannot be quickly added into the processing equipment, and it is easy to leave materials in the dead corners of the materials. Summary of the Invention
[0003] In view of the deficiencies of the prior art, the present invention provides a feeding device for the production of trace element fertilizers, which solves the problems raised in the background art.
[0004] To achieve the above objectives, the present invention is realized through the following technical solutions: A feeding device for the production of trace element fertilizers, including an equipment base, a material shaking tunnel assembly, and a material shaking drive track assembly. One end of the equipment base is integrally provided with a base hollow frame, the material shaking tunnel assembly is fixedly installed on the upper end of the base hollow frame, and the material shaking drive track assembly is fixedly installed on the material shaking tunnel assembly;
[0005] One end of the material shaking tunnel assembly is fixedly installed with a first feeding belt frame, a first feeding belt is arranged on the first feeding belt frame, and a second feeding belt is fixedly installed at one end of the first feeding belt frame.
[0006] Preferably, a material storage hopper is fixedly installed on the upper end of the equipment base, two feeding track brackets are fixedly installed on the edge of the upper end of the equipment base, a first feeding track is fixedly installed on the upper end of the feeding track bracket, and a second feeding track is slidably installed on the upper end of the first feeding track;
[0007] A moving trolley is slidably installed on the upper end of the second feeding track, a feeding elevator is fixedly installed on the moving trolley, and a feeding claw is fixedly installed on the output end of the feeding elevator.
[0008] Preferably, a feeding channel is fixedly arranged on the side of the equipment base, and two material bag standing frames are fixedly installed on the upper end of the first feeding belt frame.
[0009] Preferably, the vibrating material tunnel assembly includes: a tunnel assembly support frame, a tunnel outer shell, a feeding funnel, a feeding pipe, a feeding flat plate, an opening feeding plate, a cutting opening table, an opening circular saw, a circular saw driving motor, and a material bag striking plate;
[0010] The upper end of the tunnel assembly support frame is fixedly installed with a tunnel outer shell. One end of the tunnel outer shell is fixedly installed with a feeding flat plate. In the middle of the feeding flat plate, a cutting opening table is fixedly installed. On the upper end of the cutting opening table, two opening feeding plates are fixedly installed. In the middle of the cutting opening table, an opening circular saw is rotatably installed. On the side of the feeding flat plate, a circular saw driving motor is fixedly installed. On both inner walls of the tunnel outer shell, material bag striking plates are fixedly installed.
[0011] Preferably, the output shaft of the circular saw driving motor is coaxially and fixedly connected to the opening circular saw.
[0012] Preferably, the vibrating driving track assembly includes: an electric feeding track, an electric track dust cover, an electric track support frame, a conducting rod, a conducting electrode plate, a material grabbing member, a translation and pressing track, a steering rack, and a throwing material rack;
[0013] A number of electric track support frames are fixedly installed on the outer sides of both electric feeding tracks. On the outer end of one of the electric feeding tracks, two conducting rods are fixedly installed. The inner ends of the conducting rods are fixedly installed with conducting electrode plates;
[0014] An electric track dust cover is fixedly installed on the upper end of the electric feeding track. A material grabbing member is slidably arranged in the electric feeding track. A translation and pressing track is fixedly installed on the lower section of the electric feeding track. A steering rack is arranged on the upper section of one of the electric feeding tracks and a throwing material rack is arranged on the lower section.
[0015] Preferably, voltages are connected to both the conducting rod and the conducting electrode plate.
[0016] Preferably, the material grabbing member includes: a grabbing member cross frame, a follow-up mounting bearing, a pressing touch table, a throwing material bearing seat, a rotating driving gear, a material taking claw mounting frame, a fixed claw upper seat, a rotating claw upper seat, a pressing table connecting cylinder, a bearing seat connecting rod, a clamping knob, a clamping buckle, and a reset top spring;
[0017] Follow-up mounting bearings are fixedly installed at both ends of the grabbing member cross frame. The lower end of the grabbing member cross frame is integrally provided with a pressing table connecting cylinder. At the top end inside the pressing table connecting cylinder, a clamping buckle is fixedly installed. A bearing seat connecting rod is slidably arranged inside the pressing table connecting cylinder. The upper end of the bearing seat connecting rod is integrally provided with a clamping knob. A reset top spring is sleeved on the bearing seat connecting rod;
[0018] The lower end of the bearing block connecting rod is fixedly connected with a downward pressing touch table. A material throwing bearing block is arranged at the lower end of the downward pressing touch table. A rotating drive gear is arranged at the lower end of the material throwing bearing block. The lower end of the rotating drive gear is fixedly connected with a material taking claw mounting frame. A fixed claw upper seat is fixedly installed at one end of the material taking claw mounting frame. A rotating claw upper seat is rotatably arranged at the other end of the material taking claw mounting frame.
[0019] Preferably, a fixed clamping claw is integrally arranged at the lower end of the fixed claw upper seat. A flipping clamping claw is integrally arranged at the lower end of the rotating claw upper seat. Claw spikes are integrally arranged at the lower ends of the fixed clamping claw and the flipping clamping claw. Electric contact rods are arranged on the sides of the fixed clamping claw and the flipping clamping claw.
[0020] Preferably, a material clamping fixing plate is integrally arranged at the lower end of the fixed clamping claw. A material clamping flipping plate is integrally arranged at the lower end of the flipping clamping claw;
[0021] A material clamping relay is integrally arranged on the inner surface of the material clamping fixing plate. A relay cartridge is fixedly installed at the front end of the material clamping relay. A clamping top spring is fixedly installed at the inner bottom end of the relay cartridge. A clamping spring piece is arranged on the inner surface of the relay cartridge. A material clamping chuck is fixedly installed on the inner surface of the material clamping flipping plate.
[0022] The present invention provides a feeding device for the production of trace element fertilizers. It has the following beneficial effects:
[0023] (1) In the present invention, the materials with packages are placed in the material storage hopper after being disassembled and put in. Then, they are driven to move horizontally through the first feeding track on the feeding track support, and driven to move vertically through the second feeding track. The feeding claws at the lower end of the feeding elevator grab the materials with package boards and place them correctly on the second feeding belt. After being transported to the top end, the material packages are overturned. The two material bag standing frames support the material packages upright. Then, the material packages are driven into the material shaking tunnel assembly by the material shaking drive track assembly to be disassembled and put into the equipment below;
[0024] (2) In the present invention, the first feeding belt can assist the material shaking drive track assembly to transport the material packages. When entering the material shaking tunnel assembly, first, the circular saw drive motor is started to drive the opening circular saw to rotate, cut the material package from the lower end, and clamp the material package by the opening feeding plates on both sides to prevent the materials from leaking. After entering the tunnel housing, the driven and rotating material package is thrown against the material bag striking plate, so that the materials in the dead corners of the material package can be shaken out;
[0025] (3) The present invention drives the material gripping member thereon to move through the electric feeding track. When it stops above the material bag standing rack, two power connection contact rods thereon contact the power connection electrode plate, so that it can be powered on and the voltage can be conducted to the clamping relay. After the magnetic repulsive force is generated, the magnet of the clamping chuck itself is pushed out, causing the flipping clamping jaw to flip and opening a gap with the fixed clamping jaw. After piercing and clamping the material package through the clamping jaw spikes, the clamping chuck is clamped in the relay cartridge again through the clamping spring piece, so that the material package can be clamped.
[0026] (4) The present invention starts the electric feeding track. After pressing down the pressing trigger table through the translation pressing rail, the reset top spring can be pressed down through the bearing seat connecting rod, so that the clamping knob can be disengaged from the clamping buckle. After the rotating drive gear meshes with the discharging rack, it can rotate through the discharging bearing seat, so that the material in the material package can be shaken out by hitting the material bag striking plate during rotation. Description of the Drawings
[0027] Figure 1 is a schematic diagram of the overall structure of the present invention;
[0028] Figure 2 is a schematic diagram of the structure from another perspective in the present invention;
[0029] Figure 3 is a schematic diagram of the structure of the material shaking tunnel assembly in the present invention;
[0030] Figure 4 is a front view schematic diagram of the material shaking tunnel assembly in the present invention;
[0031] Figure 5 in the present invention Figure 4 is a schematic cross-sectional structure diagram of line a-a;
[0032] Figure 6 is a schematic diagram of the structure of the material shaking drive track assembly in the present invention;
[0033] Figure 7 is a schematic diagram of the structure of the material shaking drive track assembly from another perspective in the present invention;
[0034] Figure 8 is a side view schematic diagram of the material shaking drive track assembly in the present invention;
[0035] Figure 9 in the present invention Figure 8 is a schematic cross-sectional structure diagram of line b-b;
[0036] Figure 10 is a schematic diagram of the structure of the material gripping member in the present invention;
[0037] Figure 11Schematic side view structure of the material grabbing part in the present invention;
[0038] Figure 12 For the present invention Figure 11 Schematic cross-sectional structure of line c-c in it;
[0039] Figure 13 For the present invention Figure 12 Enlarged schematic structure of part A in it;
[0040] Figure 14 Schematic front view structure of the material grabbing part in the present invention;
[0041] Figure 15 For the present invention Figure 14 Schematic cross-sectional structure of line d-d in it;
[0042] Figure 16 For the present invention Figure 15 Enlarged schematic structure of part B in it.
[0043] Wherein, 1. Equipment base; 2. Base hollow frame; 3. Material shaking tunnel assembly; 301. Tunnel assembly support frame; 302. Tunnel outer shell; 303. Feeding funnel; 304. Feeding pipe; 305. Feeding flat plate; 306. Open feeding plate; 307. Cutting opening table; 308. Opening circular saw; 309. Circular saw driving motor; 310. Material bag hitting plate; 4. Material shaking driving track assembly; 401. Electric feeding track; 402. Electric track dust cover; 403. Electric track support frame; 404. Conductive connecting rod; 405. Conductive electrode plate; 406. Material grabbing part; 4061. Grabbing part cross frame; 4062. Follow-up mounting bearing; 4063. Pressing touch table; 4064. Material throwing bearing seat; 4065. Rotating driving gear; 4066. Material taking claw mounting frame; 4067. Fixed claw upper seat; 4068. Rotating claw upper seat; 4069. Fixed clamping claw; 40610. Flipping clamping claw; 40611. Claw spike; 40612. Conductive contact rod; 40613. Pressing table connecting cylinder; 40614. Bearing seat connecting rod; 40615. Clamping button; 40616. Clamping buckle; 40617. Reset top spring; 40618. Clamping material fixing plate; 40619. Clamping material relay; 40620. Relay clamping cylinder; 40621. Clamping top spring; 40622. Clamping spring piece; 40623. Clamping material flipping plate; 40624. Clamping material chuck; 407. Translational pressing rail; 408. Steering rack; 409. Material throwing rack; 5. First feeding belt frame; 6. First feeding belt; 7. Second feeding belt; 8. Feeding channel; 9. Material storage hopper; 10. Material bag standing frame; 11. Discharging track support; 12. First discharging track; 13. Second discharging track; 14. Mobile trolley; 15. Discharging elevator; 16. Discharging lifting claw. Detailed Implementation Manner
[0044] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0045] As Figures 1 to 2 shown, an input device for producing trace element fertilizers provided by an embodiment of the present invention includes an equipment base 1, a material shaking tunnel assembly 3, and a material shaking drive track assembly 4. One end of the equipment base 1 is integrally provided with a base hollow frame 2. The material shaking tunnel assembly 3 is fixedly installed at the upper end of the base hollow frame 2. The material shaking drive track assembly 4 is fixedly installed on the material shaking tunnel assembly 3. One end of the material shaking tunnel assembly 3 is fixedly installed with a first feeding belt frame 5. A first feeding belt 6 is arranged on the first feeding belt frame 5. One end of the first feeding belt frame 5 is fixedly installed with a second feeding belt 7. A material storage hopper 9 is fixedly installed at the upper end of the equipment base 1. Two discharging track brackets 11 are fixedly installed at the upper edge of the equipment base 1. A first discharging track 12 is fixedly installed at the upper end of the discharging track bracket 11. A second discharging track 13 is slidably installed at the upper end of the first discharging track 12. A moving trolley 14 is slidably installed at the upper end of the second discharging track 13. A discharging elevator 15 is fixedly installed on the moving trolley 14. A discharging gripper 16 is fixedly installed at the output end of the discharging elevator 15. A feeding channel 8 is fixedly arranged on the side of the equipment base 1. Two material bag standing frames 10 are fixedly installed at the upper end of the first feeding belt frame 5.
[0046] In the above technical solution, the materials to be put in separately are placed in the material storage hopper 9 together with the packaging. Subsequently, it is driven horizontally by the first discharging track 12 on the discharging track bracket 11, and driven vertically by the second discharging track 13. The discharging gripper 16 at the lower end of the discharging elevator 15 grabs the materials and places them upright on the second feeding belt 7. After being transported to the top end, the material package is overturned. The two material bag standing frames 10 hold the material package upright. Subsequently, the material package is driven into the material shaking tunnel assembly 3 by the material shaking drive track assembly 4 to be disassembled and put into the equipment below.
[0047] As Figure 1 、 Figures 3 to 5As shown in the figure, the material shaking tunnel assembly 3 includes: a tunnel assembly support frame 301, a tunnel outer shell 302, a feeding hopper 303, a feeding pipe 304, a feeding flat plate 305, an opening feeding plate 306, a cutting opening table 307, an opening circular saw 308, a circular saw driving motor 309, and a material bag hitting plate 310; the upper end of the tunnel assembly support frame 301 is fixedly installed with the tunnel outer shell 302, one end of the tunnel outer shell 302 is fixedly installed with the feeding flat plate 305, the cutting opening table 307 is fixedly installed in the middle of the feeding flat plate 305, two opening feeding plates 306 are fixedly installed at the upper end of the cutting opening table 307, the opening circular saw 308 is rotatably installed in the middle of the cutting opening table 307, the circular saw driving motor 309 is fixedly installed on the side of the feeding flat plate 305, the material bag hitting plates 310 are fixedly installed on the inner walls of both sides of the tunnel outer shell 302, and the output shaft of the circular saw driving motor 309 is coaxially and fixedly connected to the opening circular saw 308.
[0048] In the above technical solution, the first feeding belt 6 can assist the material shaking driving track assembly 4 to transport the material packages. When entering the material shaking tunnel assembly 3, first start the circular saw driving motor 309 to drive the opening circular saw 308 to rotate, cut the material package from the lower end, and first clamp the material package through the opening feeding plates 306 on both sides to prevent the material from spilling. After entering the tunnel outer shell 302, the driven and rotating material package is thrown against the material bag hitting plate 310, so that the material in the dead corner of the material package can be shaken out.
[0049] As Figure 1 , Figures 6 to 9 shown in the figure, the material shaking driving track assembly 4 includes: an electric feeding track 401, an electric track dust cover 402, an electric track support frame 403, a conducting rod 404, a conducting electrode plate 405, a material grabbing member 406, a translation pressing track 407, a steering rack 408, and a material throwing rack 409; a number of electric track support frames 403 are fixedly installed on the outer sides of the two electric feeding tracks 401, two conducting rods 404 are fixedly installed at the outer end of one of the electric feeding tracks 401, and a conducting electrode plate 405 is fixedly installed at the inner end of the conducting rod 404; an electric track dust cover 402 is fixedly installed at the upper end of the electric feeding track 401, a material grabbing member 406 is slidably arranged in the electric feeding track 401, a translation pressing track 407 is fixedly installed at the lower section of the electric feeding track 401, a steering rack 408 is arranged at the upper section of one of the electric feeding tracks 401 and a material throwing rack 409 is arranged at the lower section, and voltages are connected to both the conducting rod 404 and the conducting electrode plate 405.
[0050] As Figure 7 , Figures 10 to 16As shown in the figure, the material gripping member 406 includes: a gripping member cross frame 4061, a follower mounting bearing 4062, a downward pressing trigger platform 4063, a material throwing bearing seat 4064, a rotation driving gear 4065, a material picking claw mounting frame 4066, a fixed claw upper seat 4067, a rotating claw upper seat 4068, a downward pressing platform connecting cylinder 40613, a bearing seat connecting rod 40614, a clamping knob 40615, a clamping buckle 40616, and a reset top spring 40617; Follower mounting bearings 4062 are fixedly installed at both ends of the gripping member cross frame 4061, a downward pressing platform connecting cylinder 40613 is integrally provided at the lower end of the gripping member cross frame 4061, a clamping buckle 40616 is fixedly installed at the inner top end of the downward pressing platform connecting cylinder 40613, a bearing seat connecting rod 40614 is slidably arranged inside the downward pressing platform connecting cylinder 40613, a clamping knob 40615 is integrally provided at the upper end of the bearing seat connecting rod 40614, and a reset top spring 40617 is sleeved on the bearing seat connecting rod 40614; The lower end of the bearing seat connecting rod 40614 is fixedly connected to a downward pressing trigger platform 4063, a material throwing bearing seat 4064 is arranged at the lower end of the downward pressing trigger platform 4063, a rotation driving gear 4065 is arranged at the lower end of the material throwing bearing seat 4064, a material picking claw mounting frame 4066 is fixedly connected to the lower end of the rotation driving gear 4065, a fixed claw upper seat 4067 is fixedly installed at one end of the material picking claw mounting frame 4066, a rotating claw upper seat 4068 is rotatably arranged at the other end of the material picking claw mounting frame 4066, a fixed clamping claw 4069 is integrally provided at the lower end of the fixed claw upper seat 4067, a flipping clamping claw 40610 is integrally provided at the lower end of the rotating claw upper seat 4068, clamping claw spikes 40611 are integrally provided at the lower ends of both the fixed clamping claw 4069 and the flipping clamping claw 40610, electrical connection contact rods 40612 are arranged on the sides of both the fixed clamping claw 4069 and the flipping clamping claw 40610, a material clamping fixing plate 40618 is integrally provided at the lower end of the fixed clamping claw 4069, and a material clamping flipping plate 40623 is integrally provided at the lower end of the flipping clamping claw 40610; A material clamping relay 40619 is integrally provided on the inner surface of the material clamping fixing plate 40618, a relay cartridge 40620 is fixedly installed at the front end of the material clamping relay 40619, a clamping top spring 40621 is fixedly installed at the inner bottom end of the relay cartridge 40620, a clamping spring piece 40622 is arranged on the inner surface of the relay cartridge 40620, and a material clamping chuck 40624 is fixedly installed on the inner surface of the material clamping flipping plate 40623.
[0051] In the above technical solution, the material gripping member 406 thereon is driven to move by the electric feeding track 401. When it reaches above the material bag upright rack 10, it stops, and the two power connection contact rods 40612 thereon contact the power connection electrode plate 405, so that it can be powered on and the voltage can be conducted to the clamping relay 40619. After it generates a magnetic repulsive force, the magnet of the clamping chuck 40624 itself is pushed out, so that the flipping jaw 40610 flips, opening a gap with the fixed jaw 4069. After piercing and clamping the material package through the jaw spikes 40611, the clamping chuck 40624 is clamped in the relay cartridge 40620 again through the clamping spring piece 40622, so that the material package can be clamped;
[0052] Subsequently, the electric feeding track 401 is started again. After the pressing touch table 4063 is pressed down by the translation pressing rail 407, the reset top spring 40617 can be pressed down by the bearing seat connecting rod 40614, so that the clamping knob 40615 can be disengaged from the clamping buckle 40616. After the rotating drive gear 4065 meshes with the discharging rack 409, it rotates through the discharging bearing seat 4064, so that the material in the material package can be shaken out by hitting the material bag striking plate 310 during rotation.
[0053] Working principle:
[0054] In the present invention, the materials with the package disassembled are placed in the material storage hopper 9, and then are driven to move horizontally by the first feeding track 12 on the feeding track bracket 11, and are driven to move longitudinally by the second feeding track 13. The feeding lifting claws 16 at the lower end of the feeding elevator 15 grab the material with the package plate and place it correctly on the second feeding belt 7. After being transported to the top end, the material package overturns, and the two material bag upright racks 10 support the material package upright. Subsequently, the material package is driven into the material shaking tunnel assembly 3 by the material shaking drive track assembly 4 to be disassembled and put into the equipment below;
[0055] Among them, the first feeding belt 6 can assist the material shaking drive track assembly 4 to transport the material package. When entering the material shaking tunnel assembly 3, first start the circular saw drive motor 309 to drive the opening circular saw 308 to rotate, cut the material package from the lower end, and clamp the material package by the opening feeding plates 306 on both sides to prevent the material from spilling. After entering the tunnel housing 302, the driven rotating material package hits the material bag striking plate 310, so that the material in the dead corner of the material package can be shaken out;
[0056] Among them, the material grabbing member 406 thereon is driven to move by the electric feeding track 401. It stops when reaching above the material bag standing rack 10, and the two power connection contact rods 40612 thereon contact the power connection electrode plate 405, so that it can be powered on and the voltage can be conducted to the clamping relay 40619. After the magnetic repulsive force is generated, the magnet of the clamping chuck 40624 itself is pushed out, causing the flipping clamping jaw 40610 to flip and opening a gap with the fixed clamping jaw 4069. After the material package is penetrated and clamped by the clamping jaw spikes 40611, the clamping chuck 40624 is clamped in the relay cartridge 40620 again through the clamping spring piece 40622, so that the material package can be clamped;
[0057] Subsequently, the electric feeding track 401 is started again. After the pressing touch table 4063 is pressed down by the translation pressing rail 407, the reset top spring 40617 can be pressed down through the bearing seat connecting rod 40614, so that the clamping button 40615 can be disengaged from the clamping buckle 40616. After the rotating drive gear 4065 meshes with the discharging rack 409, it can rotate through the discharging bearing seat 4064, so that the material in the material package can be shaken out by hitting the material bag striking plate 310 during rotation.
[0058] Obviously, the above-mentioned embodiments of the present invention are only examples for clearly explaining the present invention, rather than limitations on the implementation manners of the present invention. For those of ordinary skill in the art, other different forms of changes or variations can be made based on the above description. It is impossible to enumerate all the implementation manners here. Any obvious changes or variations derived from the technical solutions of the present invention still fall within the protection scope of the present invention.
Claims
1. A feeding device for the production of trace element fertilizers, comprising an equipment base (1), a material shaking tunnel assembly (3) and a material shaking drive track assembly (4), characterized in that, One end of the device base (1) is integrally provided with a base hollow frame (2), the vibrating material tunnel assembly (3) is fixedly installed at the upper end of the base hollow frame (2), and the vibrating material driving track assembly (4) is fixedly installed on the vibrating material tunnel assembly (3); One end of the vibrating material tunnel assembly (3) is fixedly installed with a first feeding belt frame (5), a first feeding belt (6) is arranged on the first feeding belt frame (5), and a second feeding belt (7) is fixedly installed at one end of the first feeding belt frame (5); The vibrating material tunnel assembly (3) includes: a tunnel outer shell (302), a cutting opening table (307), an opening circular saw (308), and a material bag striking plate (310). The material bag striking plates (310) are fixedly installed on both inner walls of the tunnel outer shell (302); The vibrating material driving track assembly (4) includes: an electric feeding track (401), an electric track dust cover (402), an electric track support frame (403), a conducting rod (404), a conducting electrode plate (405), a material grabbing member (406), a translation and pressing track (407), a steering rack (408), and a material throwing rack (409); A number of electric track support frames (403) are fixedly installed on the outer sides of both electric feeding tracks (401). Two conducting rods (404) are fixedly installed at the outer end of one of the electric feeding tracks (401), and a conducting electrode plate (405) is fixedly installed at the inner end of the conducting rod (404); An electric track dust cover (402) is fixedly installed at the upper end of the electric feeding track (401). A material grabbing member (406) is slidably arranged inside the electric feeding track (401). A translation and pressing track (407) is fixedly installed at the lower section of the electric feeding track (401). A steering rack (408) is arranged at the upper section of one of the electric feeding tracks (401) and a material throwing rack (409) is arranged at the lower section; The material grabbing member (406) includes: a grabbing member cross frame (4061), a follower mounting bearing (4062), a pressing touch table (4063), a material throwing bearing seat (4064), a rotation driving gear (4065), a material taking claw mounting frame (4066), a fixed claw upper seat (4067), a rotating claw upper seat (4068), a pressing table connecting cylinder (40613), a bearing seat connecting rod (40614), a clamping button (40615), a clamping buckle (40616), and a reset top spring (40617); Follower mounting bearings (4062) are fixedly installed at both ends of the grabbing member cross frame (4061). A pressing table connecting cylinder (40613) is integrally arranged at the lower end of the grabbing member cross frame (4061). A clamping buckle (40616) is fixedly installed at the inner top end of the pressing table connecting cylinder (40613). A bearing seat connecting rod (40614) is slidably arranged inside the pressing table connecting cylinder (40613). A clamping button (40615) is integrally arranged at the upper end of the bearing seat connecting rod (40614). A reset top spring (40617) is sleeved on the bearing seat connecting rod (40614); The lower end of the bearing seat connecting rod (40614) is fixedly connected to a downward pressing trigger platform (4063). A material throwing bearing seat (4064) is arranged at the lower end of the downward pressing trigger platform (4063). A rotating drive gear (4065) is arranged at the lower end of the material throwing bearing seat (4064). The lower end of the rotating drive gear (4065) is fixedly connected to a material taking claw mounting bracket (4066). One end of the material taking claw mounting bracket (4066) is fixedly installed with a fixed claw upper seat (4067). The other end of the material taking claw mounting bracket (4066) is rotatably provided with a rotating claw upper seat (4068); The lower end of the fixed claw upper seat (4067) is integrally provided with a fixed clamping claw (4069). The lower end of the rotating claw upper seat (4068) is integrally provided with a flipping clamping claw (40610). Claw spikes (40611) are integrally arranged at the lower ends of the fixed clamping claw (4069) and the flipping clamping claw (40610). Electric contact rods (40612) are arranged on the sides of the fixed clamping claw (4069) and the flipping clamping claw (40610).
2. The feeding device for producing trace element fertilizer according to claim 1, wherein, A material storage hopper (9) is fixedly installed at the upper end of the equipment base platform (1). Two material discharging track brackets (11) are fixedly installed at the upper edge of the equipment base platform (1). A first material discharging track (12) is fixedly installed at the upper end of the material discharging track bracket (11). A second material discharging track (13) is slidably installed at the upper end of the first material discharging track (12); A moving trolley (14) is slidably installed at the upper end of the second material discharging track (13). A material discharging elevator (15) is fixedly installed on the moving trolley (14). A material discharging lifting claw (16) is fixedly installed at the output end of the material discharging elevator (15).
3. The feeding device for producing trace element fertilizer according to claim 2, wherein, A feeding channel (8) is fixedly arranged on the side of the equipment base platform (1). Two material bag standing frames (10) are fixedly installed at the upper end of the first feeding belt frame (5).
4. The feeding device for producing trace element fertilizer according to claim 3, characterized in that, The vibrating material tunnel assembly (3) further includes: a tunnel assembly support frame (301), a feeding funnel (303), a feeding pipe (304), a feeding flat plate (305), an opening feeding plate (306), a circular saw drive motor (309); The tunnel assembly support frame (301) is fixedly installed with a tunnel outer shell (302) at the upper end. One end of the tunnel outer shell (302) is fixedly installed with a feeding flat plate (305). A cutting opening platform (307) is fixedly installed in the middle of the feeding flat plate (305). Two opening feeding plates (306) are fixedly installed at the upper end of the cutting opening platform (307). An opening circular saw (308) is rotatably installed in the middle of the cutting opening platform (307). A circular saw drive motor (309) is fixedly installed on the side of the feeding flat plate (305).
5. The feeding device for producing trace element fertilizer according to claim 4, characterized in that, The output shaft of the circular saw drive motor (309) is coaxially and fixedly connected to the opening circular saw (308).
6. The feeding device for producing trace element fertilizer according to claim 5, characterized in that, Voltages are connected to both the electric contact rod (404) and the electric contact plate (405).
7. The feeding device for producing trace element fertilizer according to claim 6, characterized in that, The lower end of the fixed clamping claw (4069) is integrally provided with a clamping material fixing plate (40618). The lower end of the flipping clamping claw (40610) is integrally provided with a clamping material flipping plate (40623); On the inner surface of the clamping material fixing plate (40618), a clamping material relay (40619) is integrally provided. At the front end of the clamping material relay (40619), a relay cartridge (40620) is fixedly installed. At the inner bottom end of the relay cartridge (40620), a clamping top spring (40621) is fixedly installed. On the inner surface of the relay cartridge (40620), a clamping spring piece (40622) is provided. On the inner surface of the clamping material turning plate (40623), a clamping material chuck (40624) is fixedly installed.
Citation Information
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