Uniform-sorting material receiving device for manufacturing automobile sealing strip aggregates

By designing a feed collecting device for automobile seal strip pellet manufacturing including feed hopper, feeding assembly, shaking assembly, sorting box and driving assembly, the problems of low sorting work efficiency and inconvenient material collection in the prior art are solved, and efficient and uniform material sorting and collection are achieved.

CN120080450APending Publication Date: 2025-06-03JIANGSU DAWU PLASTIC IND CO LTD
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Patent Information

Application Number
CN202510465783.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-06-03

AI Technical Summary

Technical Problem

During the manufacturing process of existing automobile seal strip pellets, the sorting work efficiency is low, and the sorting and recycling device is inconvenient to collect materials.

Method used

A feeding device including a feed hopper, a feeding assembly, a shaking assembly, a sorting box and a drive assembly is designed. The feeding assembly uniformly conveys the material into the sorting box through multiple arc-shaped grooves. The sorting box is sorted through side leakage holes and bottom leakage holes, and achieves uniform sorting and collection of material particles through rotation and shaking mechanisms.

Benefits of technology

It improves the efficiency and uniformity of material particle sorting, simplifies the collection process of material particle, and makes sorting and recycling more convenient.

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Abstract

The invention discloses a material receiving device for manufacturing automobile sealing strip aggregates with a uniform sorting function, belongs to the technical field of material receiving devices, and aims to solve the problems that in the prior art, a plurality of screening frames are used for screening respectively, the sorting working efficiency is low, and a sorting and recycling device is inconvenient to take materials and comprises a feeding hopper, and fixing frames are fixedly connected to the two sides of the feeding hopper; material particles are conveyed from a rectangular discharging opening through a conical opening, a first motor feeding roller rotates, and therefore the materials are evenly conveyed into a sorting box through a plurality of arc-shaped grooves. The sorting box is provided with a side leakage hole and a bottom leakage hole which are different in hole diameter, the toothed plate slides back and forth to enable the sorting box to shake for sorting, when the bottom leakage hole is used for screening, the sealing plate is in an open state and used for receiving material particles falling from the feeding hopper, the side plate seals the side leakage hole, and when the sorting box rotates, the sealing plate is closed, the side plate is opened, screening is conducted through the side leakage hole, and screening is conducted. And the sorted material particles fall into the first material box and the second material box, so that material taking is convenient.
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Description

Technical Field

[0001] The present invention relates to the technical field of material receiving devices, and particularly to a material receiving device for manufacturing automotive sealing strip pellets with uniform sorting. Background Art

[0002] When manufacturing automotive sealing strip pellets, multiple categories of pellets need to be sorted. In the past, multiple screening boxes were used for screening respectively, resulting in low sorting efficiency and inconvenient material taking for the sorting and recycling device. For this reason, we propose a material receiving device for manufacturing automotive sealing strip pellets with uniform sorting to solve the above problems. Summary of the Invention

[0003] The purpose of the present invention is to provide a material receiving device for manufacturing automotive sealing strip pellets with uniform sorting, so as to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solution: A material receiving device for manufacturing automotive sealing strip pellets with uniform sorting, including a feed hopper. Both sides of the feed hopper are fixedly connected with fixed frames. The bottom ends of the fixed frames are fixedly connected with a material receiving box. A feeding component is rotatably installed in the feed hopper. The feeding component is fixedly connected with the fixed frames. The feeding component is drivingly connected with a shaking component. The shaking component is fixedly connected to the inner wall of the fixed frames. The bottom ends of the fixed frames are slidably installed with a sorting box and a rotating component. The sorting box is arranged at the bottom end of the feed hopper. The shaking component is snap-connected to the sorting box. The rotating component is fixedly connected to the sorting box. A driving component is slidably installed on one side of the sorting box. A linkage component is rotatably hinged on one side of the sorting box. The driving component is fixedly connected to the linkage component.

[0005] As a preferred technical solution of the present invention, fixed plates are fixedly provided on both sides of the feed hopper. One end of the fixed plates is fixedly connected with the fixed frames. A conical opening is arranged at the upper end of the feed hopper. A rectangular blanking opening is arranged at the bottom end of the feed hopper. The inner wall of the upper end of the rectangular blanking opening is rotatably connected with the feeding component.

[0006] As a preferred technical solution of the present invention, the fixed frames include a first L-shaped seat and a second L-shaped seat. The bottom ends of the first L-shaped seat and the second L-shaped seat are fixedly connected with the material receiving box. The side of the first L-shaped seat is fixedly connected with the feeding component. A first chute is opened at the bottom end of the first L-shaped seat. A second chute and a third chute are opened on the second L-shaped seat. The sorting box is slidably connected in the first chute. The rotating component is slidably connected in the second chute. The shaking component is fixedly connected to the inside of the first L-shaped seat.

[0007] As a preferred technical solution of the present invention, the feeding assembly includes a first motor, the first motor is fixedly arranged outside the first L-shaped seat, the output end of the first motor movably penetrates through the first L-shaped seat and is fixedly connected with a first gear, the first gear is meshed with a second gear, the second gear is rotatably connected to the feeding hopper and is drivingly connected with a feeding roller, the feeding roller is rotatably arranged at the upper inner wall of the rectangular blanking port, a plurality of arc grooves are formed on the surface of the feeding roller, the surface of the feeding roller is in fit connection with the inner wall of the rectangular blanking port, and the output end of the first motor is drivingly connected with a shaking assembly.

[0008] As a preferred technical solution of the present invention, the shaking assembly includes a belt mechanism and two first U-shaped blocks. The upper pulley of the belt mechanism is drivingly connected with the first motor, the bottom pulley of the belt mechanism is drivingly connected with a half-face gear, the half-face gear is rotatably connected with a support block, the bottom end of the support block is fixedly connected with the first L-shaped seat, the half-face gear is meshed with a toothed plate, both ends of the toothed plate are slidably connected with guide blocks, the inner sides of the guide blocks are fixedly connected with the first L-shaped seat, both ends of the toothed plate are fixedly connected with L-shaped bars, one of the L-shaped bars is fixedly connected with a first U-shaped block, and the other first U-shaped block is slidably arranged inside the second chute, and the sorting box is movably clamped inside the first U-shaped block.

[0009] As a preferred technical solution of the present invention, side leakage holes and bottom leakage holes are respectively formed on both sides and the bottom surface of the sorting box, two sealing plates are rotatably hinged on the upper surface of the sorting box, the sealing plates are rotatably hinged to a linkage assembly, convex strips are rotatably hinged at both bottom ends of the sorting box, the convex strips are slidably arranged inside the first chute, one end of the convex strip is fixedly connected with a rotating assembly, the other end of the convex strip is fixedly connected with a second U-shaped block, a first pin shaft is movably clamped inside the second U-shaped block, the first pin shaft is fixedly connected with the sorting box, second pin shafts are fixedly arranged on both sides of the sorting box, the second pin shafts are movably clamped inside the first U-shaped block, two strip-shaped grooves are formed on both sides of the sorting box, a fourth chute is formed on one side of the sorting box, a driving assembly is slidably installed inside the fourth chute, two side plates are slidably arranged on both inner walls of the sorting box, a cross plate is fixedly arranged between the side plates, and one end of the side plate is slidably arranged inside the strip-shaped groove.

[0010] As a preferred technical solution of the present invention, the driving assembly includes a second motor, an installation seat is fixedly arranged at the bottom end of the second motor, the inner side of the installation seat is fixedly connected with the sorting box, the output end of the second motor is fixedly connected with a third gear, the output end of the second motor penetrates through the sorting box and is fixedly connected with a lead screw, one end of the lead screw is rotatably arranged inside the inner wall of the sorting box, reverse threads and forward threads are formed on the lead screw, the reverse threads and the forward threads are respectively in threaded connection with the cross plate, the third gear is meshed with a rack, the rack is slidably arranged inside the fourth chute, and the upper end of the rack is fixedly connected with the linkage assembly.

[0011] As a preferred technical solution of the present invention, the linkage assembly includes a hydraulic strut. The two ends of the hydraulic strut are respectively rotatably hinged to the sorting box and the sealing plate. A guide plate is slidably clamped outside the hydraulic strut. A rectangular groove is formed on the surface of the guide plate, and a rack is fixedly connected to the bottom end of the guide plate.

[0012] As a preferred technical solution of the present invention, the rotating assembly includes a third motor. One end of the third motor is fixedly connected with a convex slide seat. The bottom end of the convex slide seat is slidably arranged in the third chute. The output end of the third motor is rotatably connected with a fixed block. The bottom end of the fixed block is fixedly connected with a convex strip. The output end of the third motor is fixedly connected with the bottom end of one side of the sorting box.

[0013] As a preferred technical solution of the present invention, the receiving box is provided with a first material box and a second material box. The number of the first material boxes is two, and they are arranged on both sides of the second material box.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. The material particles are conveyed through the rectangular blanking port from the conical opening, and the feeding roller of the first motor rotates, so as to uniformly feed the material through a plurality of arc-shaped grooves into the sorting box; 2. The sorting box is provided with side leakage holes and bottom leakage holes with different pore sizes. The reciprocating sliding of the toothed plate can make the sorting box shake for sorting. When the bottom leakage hole is screened, the sealing plate is in an open state to receive the material particles falling from the feed hopper, and the side plate closes the side leakage hole. When the sorting box rotates, the sealing plate closes and the side plate opens, and the screening is carried out through the side leakage hole. The sorted material particles fall into the first material box and the second material box for easy material taking. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a schematic diagram of the feeding assembly of the present invention; Figure 3 is the structure of the present invention Figure 2 The enlarged schematic diagram at A in; Figure 4 is a schematic diagram of the sorting box of the present invention; Figure 5 is the structure of the present invention Figure 4 The enlarged schematic diagram at B in; Figure 6 is the structure of the present invention Figure 4 The enlarged schematic diagram at C in; Figure 7 is a schematic diagram of the driving assembly of the present invention.

[0016] In the figure: 1. Feeding hopper; 11. Fixed plate; 12. Conical opening; 13. Rectangular blanking opening; 2. Fixed frame; 21. First L-shaped seat; 22. Second L-shaped seat; 23. First sliding groove; 24. Second sliding groove; 25. Third sliding groove; 3. Feeding assembly; 31. First motor; 32. First gear; 32. Second gear; 34. Feeding roller; 341. Arc groove; 4. Shaking assembly; 41. Belt mechanism; 42. Half-face gear; 43. Rack; 44. Guide block; 45. Support block; 46. L-shaped strip; 47. First U-shaped block; 5. Sorting box; 51. Side leakage hole; 52. Sealing plate; 53. Bottom leakage hole; 54. Convex strip; 541. Second U-shaped block; 542. First pin shaft; 55. Second pin shaft; 56. Fourth sliding groove; 57. Strip-shaped groove; 58. Side plate; 581. Cross plate; 6. Driving assembly; 61. Second motor; 62. Mounting seat; 63. Third gear; 64. Rack; 65. Lead screw; 651. Reverse thread; 652. Forward thread; 7. Linkage assembly; 71. Hydraulic strut; 72. Guide plate; 721. Rectangular groove; 8. Material receiving box; 81. First material box; 82. Second material box; 9. Rotating assembly; 91. Third motor; 92. Convex sliding seat; 93. Fixed block. Detailed implementation mode

[0017] 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. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0018] Embodiment: As Figure 1-7 shown, the present invention provides a material receiving device for manufacturing automobile sealing strip pellets with uniform sorting, including a feeding hopper 1. Fixed frames 2 are fixedly connected to both sides of the feeding hopper 1. A material receiving box 8 is fixedly connected to the bottom end of the fixed frame 2. A feeding assembly 3 is rotatably installed in the feeding hopper 1. The feeding assembly 3 is fixedly connected to the fixed frame 2. The feeding assembly 3 is drivingly connected to a shaking assembly 4. The shaking assembly 4 is fixedly connected to the inner wall of the fixed frame 2. A sorting box 5 and a rotating assembly 9 are slidably installed at the bottom end of the fixed frame 2. The sorting box 5 is located at the bottom end of the feeding hopper 1. The shaking assembly 4 is snap-connected to the sorting box 5. The rotating assembly 9 is fixedly connected to the sorting box 5. A driving assembly 6 is slidably installed on one side of the sorting box 5. A linkage assembly 7 is rotatably hinged on one side of the sorting box 5. The driving assembly 6 is fixedly connected to the linkage assembly 7. Thus, by placing the pellets into the feeding hopper 1, the feeding assembly 3 conveys the materials into the sorting box 5, and the sorting box 5 sorts them into the material receiving box 8 to complete the material receiving.

[0019] Further, fixed plates 11 are provided on both sides of the feed hopper 1. One end of the fixed plate 11 is fixedly connected to a fixed frame 2. A conical opening 12 is provided at the upper end of the feed hopper 1, and a rectangular blanking opening 13 is provided at the bottom end of the feed hopper 1. A feeding assembly 3 is rotatably connected to the inner wall of the upper end of the rectangular blanking opening 13, so that the feeding assembly 3 can convey the material particles in the conical opening 12 from the rectangular blanking opening 13.

[0020] Further, the fixed frame 2 includes a first L-shaped seat 21 and a second L-shaped seat 22. The bottom ends of the first L-shaped seat 21 and the second L-shaped seat 22 are fixedly connected to a material receiving box 8, so that the first L-shaped seat 21 and the second L-shaped seat 22 are fixedly installed. The side of the first L-shaped seat 21 is fixedly connected to the feeding assembly 3. A first chute 23 is provided at the bottom end of the first L-shaped seat 21. A second chute 24 and a third chute 25 are provided on the second L-shaped seat 22. A sorting box 5 is slidably connected in the first chute 23. A rotating assembly 9 is slidably connected in the second chute 24. A shaking assembly 4 is fixedly connected to the inner side of the first L-shaped seat 21, so that the rotating assembly 9 enables the sorting box 5 to rotate, and the shaking assembly 4 shakes the sorting box 5.

[0021] Further, the feeding assembly 3 includes a first motor 31. The first motor 31 is fixedly provided on the outer side of the first L-shaped seat 21. The output end of the first motor 31 movably penetrates through the first L-shaped seat 21 and is fixedly connected to a first gear 32. The first gear 32 is meshed with a second gear 33. The second gear 33 is rotatably connected to the feed hopper 1 and is drivingly connected to a feed roller 34. The feed roller 34 is rotatably provided at the inner wall of the upper end of the rectangular blanking opening 13. A plurality of arc-shaped grooves 341 are provided on the surface of the feed roller 34. The surface of the feed roller 34 is in fit connection with the inner wall of the rectangular blanking opening 13. The output end of the first motor 31 is drivingly connected to the shaking assembly 4, so that the first motor 31 drives the first gear 32 and the second gear 33 to rotate, and the feed roller 34 rotates, so as to uniformly convey materials through the plurality of arc-shaped grooves 341.

[0022] Further, the shaking assembly 4 includes a belt mechanism 41 and two first U-shaped blocks 47. The upper pulley of the belt mechanism 41 is drivingly connected to the first motor 31, and the bottom pulley of the belt mechanism 41 is drivingly connected to a half-face gear 42. The half-face gear 42 is rotatably connected to a support block 45. The bottom end of the support block 45 is fixedly connected to a first L-shaped seat 21. The half-face gear 42 is meshed with a toothed plate 43. The two ends of the toothed plate 43 are slidably connected to guide blocks 44. The inner sides of the guide blocks 44 are fixedly connected to the first L-shaped seat 21. The two ends of the toothed plate 43 are fixedly connected with L-shaped strips 46. One first U-shaped block 47 is fixedly connected to the L-shaped strip 46, and the other first U-shaped block 47 is slidably arranged inside the second chute 24. The sorting box 5 is movably clamped inside the first U-shaped block 47. Thus, the first motor 31 drives the belt mechanism 41 to rotate, causing the half-face gear 42 to drive the toothed plate 43 to slide back and forth.

[0023] Further, side leakage holes 51 and bottom leakage holes 53 are respectively formed on both sides and the bottom surface of the sorting box 5, and the aperture sizes of the side leakage holes 51 and the bottom leakage holes 53 are different. Two sealing plates 52 are rotatably hinged to the upper surface of the sorting box 5. The sealing plates 52 are rotatably hinged to a linkage assembly 7. Convex strips 54 are rotatably hinged to the bottom ends of both ends of the sorting box 5. The convex strips 54 are slidably arranged inside the first chute 23. One end of the convex strip 54 is fixedly connected to a rotating assembly 9, and the other end of the convex strip 54 is fixedly connected to a second U-shaped block 541. A first pin shaft 542 is movably clamped inside the second U-shaped block 541, and the first pin shaft 542 is fixedly connected to the sorting box 5. Second pin shafts 55 are fixedly arranged on both sides of the sorting box 5, and the second pin shafts 55 are movably clamped inside the first U-shaped block 47. Through the first pin shaft 542 being movably clamped inside the second U-shaped block 541 and the second pin shaft 55 being movably clamped inside the first U-shaped block 47, and one end of the sorting box 5 being rotatably hinged to the convex strip 54, the sorting box 5 can rotate. Two strip-shaped grooves 57 are formed on both sides of the sorting box 5. A fourth chute 56 is formed on one side of the sorting box 5. A driving assembly 6 is slidably installed inside the fourth chute 56. Two side plates 58 are slidably arranged on the inner walls of both sides of the sorting box 5. A cross plate 581 is fixedly arranged between the side plates 58. One end of the side plate 58 is slidably arranged inside the strip-shaped groove 57. Thus, when the bottom leakage holes 53 are used for screening, the toothed plate 43 drives the sorting box 5 to shake back and forth. At this time, the sealing plates 52 are in an open state, and the side plates 58 close the side leakage holes 51. When the sorting box 5 rotates 90 degrees, the sealing plates 52 close, and the side plates 58 slide along the strip-shaped grooves 57, so as to perform screening through the side leakage holes 51.

[0024] Further, the driving assembly 6 includes a second motor 61. A mounting seat 62 is fixedly provided at the bottom end of the second motor 61. The inner side of the mounting seat 62 is fixedly connected to the sorting box 5. The output end of the second motor 61 is fixedly connected to a third gear 63. The output end of the second motor 61 penetrates through the sorting box 5 and is fixedly connected to a lead screw 65. One end of the lead screw 65 is rotatably arranged on the inner wall of the sorting box 5. Reverse threads 651 and forward threads 652 are provided on the lead screw 65. The reverse threads 651 and the forward threads 652 are respectively threadedly connected to cross plates 581. The third gear 63 is meshed with a rack 64. The rack 64 is slidably arranged in a fourth chute 56. The upper end of the rack 64 is fixedly connected to a linkage assembly 7. Thus, the second motor 61 respectively threadedly connects the cross plates 581 through the reverse threads 651 and the forward threads 652 on the lead screw 65, so that the two cross plates 581 slide the side plates 58 reversely.

[0025] Further, the linkage assembly 7 includes a hydraulic strut 71. The two ends of the hydraulic strut 71 are respectively rotatably hinged to the sorting box 5 and the sealing plate 52. A guide plate 72 is slidably clamped outside the hydraulic strut 71. A rectangular groove 721 is provided on the surface of the guide plate 72. The bottom end of the guide plate 72 is fixedly connected to the rack 64. Thus, the rack 64 drives the guide plate 72 to move up and down, and drives the hydraulic strut 71 to rotate through the rectangular groove 721, so that the sealing plate 52 rotates along the sorting box 5.

[0026] Further, the rotating assembly 9 includes a third motor 91. A convex sliding seat 92 is fixedly connected to one end of the third motor 91. The bottom end of the convex sliding seat 92 is slidably arranged in a third chute 25. The output end of the third motor 91 is rotatably connected to a fixing block 93. The bottom end of the fixing block 93 is fixedly connected to a convex strip 54. The output end of the third motor 91 is fixedly connected to the bottom end of one side of the sorting box 5. Thus, the third motor 91 drives the sorting box 5 to rotate.

[0027] Further, the material receiving box 8 is provided with a first material box 81 and a second material box 82. The number of the first material boxes 81 is two, and they are arranged on both sides of the second material box 82.

[0028] Working principle: The material particles are conveyed from the conical opening 12. The first motor 31 drives the first gear 32 and the second gear 33 to rotate, and makes the feeding roller 34 rotate, so as to evenly feed the material into the sorting box 5 through a plurality of arc-shaped grooves 341 via the rectangular blanking port 13. Side leakage holes 51 and bottom leakage holes 53 with different aperture sizes are respectively arranged on the side and bottom of the sorting box 5 for sorting different material particles. The first motor 31 drives the belt mechanism 41 to rotate, so that the half-face gear 42 drives the toothed plate 43 to slide back and forth. The first pin shaft 542 is movably clamped in the second U-shaped block 541, and the second pin shaft 55 is movably clamped in the first U-shaped block 47, and one end of the sorting box 5 is rotatably hinged to the convex strip 54. Therefore, the sorting box 5 can rotate, and the sorting box 5 and the convex strip 54 can slide back and forth along the first chute 23 together through the toothed plate 43. The guide plate 72 is driven to move up and down by the rack 64, and the hydraulic strut 71 is driven to rotate through the rectangular groove 721, so that the sealing plate 52 rotates along the sorting box 5. The second motor 61 is respectively threadedly connected to the cross plates 581 through the reverse thread 651 and the forward thread 652 on the lead screw 65, so that the two cross plates 581 make the side plates 58 slide reversely, realizing the closing or opening of the side leakage holes 51. In addition, the third motor 91 drives the sorting box 5 to rotate. When the bottom leakage holes 53 are used for screening, the toothed plate 43 drives the sorting box 5 to reciprocate and shake. At this time, the sealing plate 52 is in the open state, and the side plates 58 close the side leakage holes 51. When the sorting box 5 rotates 90 degrees, the sealing plate 52 closes, and the side plates 58 slide along the strip-shaped groove 57, so as to screen through the side leakage holes 51. The sorted material particles can fall into the first material box 81 and the second material box 82 for easy material taking.

[0029] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A material collecting device for manufacturing uniformly sorted automobile sealing strip pellets, comprising a feed hopper (1), characterized in that: The feed hopper (1) is fixedly connected to fixed frames (2) on both sides, and a receiving box (8) is fixedly connected to the bottom of the fixed frame (2). A feeding assembly (3) is rotatably installed in the feed hopper (1), and the feeding assembly (3) is fixedly connected to the fixed frame (2). The feeding assembly (3) is transmission-connected to a shaking assembly (4), and the shaking assembly (4) is fixedly connected to the inner wall of the fixed frame (2). A sorting box (5) and a rotating assembly (9) are slidably installed at the bottom of the fixed frame (2). The sorting box (5) is arranged at the bottom of the feed hopper (1), and the shaking assembly (4) is snap-connected to the sorting box (5). The rotating assembly (9) is fixedly connected to the sorting box (5). A driving assembly (6) is slidably installed on one side of the sorting box (5), and a linkage assembly (7) is rotatably hinged on one side of the sorting box (5). The driving assembly (6) is fixedly connected to the linkage assembly (7).

2. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 1, characterized in that: Fixed plates (11) are fixedly provided on both sides of the feed hopper (1), one end of the fixed plate (11) is fixedly connected to a fixed frame (2), a conical opening (12) is provided at the upper end of the feed hopper (1), a rectangular drop opening (13) is provided at the bottom end of the feed hopper (1), and the inner wall of the upper end of the rectangular drop opening (13) is rotatably connected to the feeding assembly (3).

3. A material collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 2, characterized in that: The fixed frame (2) comprises a first L-shaped seat (21) and a second L-shaped seat (22); the bottom ends of the first L-shaped seat (21) and the second L-shaped seat (22) are fixedly connected to a material receiving box (8); the side of the first L-shaped seat (21) is fixedly connected to a material feeding assembly (3); a first slide groove (23) is provided at the bottom end of the first L-shaped seat (21); a second slide groove (24) and a third slide groove (25) are provided on the second L-shaped seat (22); the first slide groove (23) is slidably connected to a sorting box (5); the second slide groove (24) is slidably connected to a rotating assembly (9); and the inner side of the first L-shaped seat (21) is fixedly connected to a shaking assembly (4).

4. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 3, characterized in that: The feeding assembly (3) comprises a first motor (31), the first motor (31) being fixedly arranged on the outside of the first L-shaped seat (21), the output end of the first motor (31) movably passing through the first L-shaped seat (21) and being fixedly connected to a first gear (32), the first gear (32) being meshingly connected to a second gear (33), the second gear (33) being rotatably connected to the feed hopper (1) and being transmission-connected to a feeding roller (34), the feeding roller (34) being rotatably arranged on the inner wall of the upper end of the rectangular blanking opening (13), the surface of the feeding roller (34) being provided with a plurality of arc-shaped grooves (341), the surface of the feeding roller (34) being in close contact with the inner wall of the rectangular blanking opening (13), and the output end of the first motor (31) being transmission-connected to the shaking assembly (4).

5. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 4, characterized in that: The shaking assembly (4) comprises a belt mechanism (41) and two first U-shaped blocks (47); the upper end pulley of the belt mechanism (41) is drivingly connected to the first motor (31); the lower end pulley of the belt mechanism (41) is drivingly connected to a half-face gear (42); the half-face gear (42) is rotatably connected to a support block (45); the bottom end of the support block (45) is fixedly connected to a first L-shaped seat (21); the half-face gear (42) is meshingly connected to a toothed plate (43); both ends of the toothed plate (43) are slidably connected to guide blocks (44); the inner side of the guide block (44) is fixedly connected to the first L-shaped seat (21); both ends of the toothed plate (43) are fixedly connected to an L-shaped bar (46); a first U-shaped block (47) is fixedly connected to the L-shaped bar (46); the other end of the first U-shaped block (47) is slidably arranged inside the second slide groove (24); the first U-shaped block (47) is movably connected to the sorting box (5).

6. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 5, characterized in that: The two sides and the bottom surface of the sorting box (5) are respectively provided with side leakage holes (51) and bottom leakage holes (53); the upper surface of the sorting box (5) is rotatably hinged with two sealing plates (52); the sealing plates (52) are rotatably hinged with a linkage assembly (7); the bottom ends of both ends of the sorting box (5) are rotatably hinged with convex bars (54); the convex bars (54) are slidably arranged in a first slide groove (23); one end of the convex bar (54) is fixedly connected to a rotating assembly (9); the other end of the convex bar (54) is fixedly connected to a second U-shaped block (541); a first pin shaft (542) is movably engaged in the second U-shaped block (541); The first pin shaft (542) is fixedly connected to the sorting box (5), and second pin shafts (55) are fixedly provided on both sides of the sorting box (5), and the second pin shafts (55) are movably engaged in the first U-shaped block (47). Two strip grooves (57) are provided on both sides of the sorting box (5), and a fourth slide groove (56) is provided on one side of the sorting box (5). A driving component (6) is slidably installed in the fourth slide groove (56). Two side plates (58) are slidably provided on the inner walls of both sides of the sorting box (5), and a transverse plate (581) is fixedly provided between the side plates (58), and one end of the side plate (58) is slidably provided in the strip groove (57).

7. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 6, characterized in that: The driving assembly (6) comprises a second motor (61), a mounting seat (62) is fixedly provided at the bottom end of the second motor (61), the inner side of the mounting seat (62) is fixedly connected to the sorting box (5), the output end of the second motor (61) is fixedly connected to the third gear (63), the output end of the second motor (61) passes through the sorting box (5) and is fixedly connected to a screw rod (65), one end of the screw rod (65) is rotatably arranged on the inner wall of the sorting box (5), the screw rod (65) is provided with a reverse thread (651) and a forward thread (652), the reverse thread (651) and the forward thread (652) are respectively threadedly connected to the cross plate (581), the third gear (63) is meshingly connected to a rack (64), the rack (64) is slidably arranged in a fourth slide groove (56), and the upper end of the rack (64) is fixedly connected to the linkage assembly (7).

8. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 7, characterized in that: The linkage assembly (7) comprises a hydraulic support rod (71), the two ends of which are respectively rotatably hinged to the sorting box (5) and the sealing plate (52), the hydraulic support rod (71) being slidably clamped with a guide plate (72) on the outside, a rectangular groove (721) being provided on the surface of the guide plate (72), and the bottom end of the guide plate (72) being fixedly connected to a rack (64).

9. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 6, characterized in that: The rotating assembly (9) comprises a third motor (91), one end of the third motor (91) is fixedly connected to a convex slide seat (92), the bottom end of the convex slide seat (92) is slidably arranged in a third slide groove (25), the output end of the third motor (91) is rotatably connected to a fixed block (93), the bottom end of the fixed block (93) is fixedly connected to a convex bar (54), and the output end of the third motor (91) is fixedly connected to the bottom end of one side of the sorting box (5).

10. A collecting device for manufacturing uniformly sorted automobile sealing strip pellets as claimed in claim 1, characterized in that: The material receiving box (8) is provided with a first material box (81) and a second material box (82), and the first material boxes (81) are two in number and are arranged on both sides of the second material box (82).

Citation Information

Patent Citations

  • Material sieving device and method

    CN106824763A

  • Solid waste sorting and feeding system for magnetization cracking device and using method

    CN119771883A

  • Full-automatic plastic particle sorting machine

    CN212045497U

  • Graded screening equipment for magnetic materials

    CN214637314U

  • Granularity-controllable hesperidin pulverizer

    CN215140653U