An automatic conveying device for fluorinated bottles

By designing an automatic fluorinated bottle conveyor equipment including collection funnel, bottle upper conveyor belt, bottle cleaning turntable assembly and other components, the low efficiency and pollution problems caused by manual bottle cleaning and transportation are solved, and the stable, neat transportation and efficient production of fluorinated bottles are achieved.

CN118894348BActive Publication Date: 2025-06-03SHANDONG JUHUAN PACKAGING MATERIALS CO LTD
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Patent Information

Application Number
CN202411284640.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-06-03
Estimated Expiration
2044-09-13

AI Technical Summary

Technical Problem

In the existing fluorinated bottle production field, manual bottle handling and transportation lead to slow speed, waste of labor costs, and easily contaminate the fluorinated bottle. The equipment is prone to collision and friction during bottle handling, resulting in bottle damage.

Method used

An automatic fluorinated bottle conveying equipment is designed, including a collection funnel, a bottle conveyor belt, a bottle turntable assembly, a frame assembly, a bottle split conveyor, a conveying adjustment assembly, a bottle entrainment assembly and a conveying diverting assembly. Through the coordinated work of these components, the automatic conveying and neat arrangement of the fluorinated bottles can be achieved.

Benefits of technology

The stability and neat arrangement of fluorinated bottles during the transportation process are achieved, production efficiency is improved, bottle damage risk is reduced, and manual intervention and adjustment time is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of fluorinated bottle transportation, and in particular provides an automatic fluorinated bottle transportation device. The automatic fluorinated bottle transportation device includes a collection funnel, an upper bottle conveyor belt, a bottle arranging turntable assembly, a frame assembly, a bottle separating and conveying assembly, a conveying adjustment assembly, a bottle arranging clamping belt assembly, and a conveying diversion assembly. The present invention can efficiently discharge the fluorinated bottles from the bottle arranging turntable assembly smoothly and flow orderly into the subsequent bottle arranging clamping belt assembly, effectively avoiding the accumulation and collision of fluorinated bottles during the transition process, thereby ensuring the stability and orderly arrangement of the bottles during transportation, and through the clamping and extrusion functions of the fifth conveyor belt, the fluorinated bottles can be gradually arranged neatly during transportation, ensuring the stability of the fluorinated bottles during transportation, improving production efficiency, stabilizing the transportation process, reducing the risk of bottle damage, and ensuring the neat arrangement and accurate transportation of fluorinated bottles.
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Description

Technical Field

[0001] The present invention relates to the technical field of fluorinated bottle transportation, and particularly provides an automatic fluorinated bottle transportation device. Background Art

[0002] Fluorinated bottles are common containers currently used to store chemical liquids, pesticide emulsifiable concentrates, or perfume essences. They have strong corrosion resistance, good sealing performance, and are lightweight. In the existing fluorinated bottle production field, manual methods are mostly used for bottle sorting and transportation. Due to the special nature of the items to be stored in fluorinated bottles, a high level of cleanliness is required. Manual transportation not only has a slow speed and wastes labor costs but also easily contaminates the fluorinated bottles. Existing bottle sorting and transportation equipment is prone to collisions and friction during bottle sorting, especially in the area where the bottle sorting clamp is docked with the bottle sorting tray. It is extremely easy for fluorinated bottles to collide with each other intensively, resulting in damage and cracks in the fluorinated bottles, causing economic losses and delaying the transportation efficiency of the overall device. Summary of the Invention

[0003] Based on this, it is necessary to provide an automatic fluorinated bottle transportation device to solve at least one technical problem in the background art.

[0004] An automatic fluorinated bottle transportation device includes a collection funnel, an upper bottle conveyor belt, a bottle sorting turntable assembly, a frame assembly, a bottle separation and transportation assembly, a transportation adjustment assembly, a bottle sorting clamp assembly, and a transportation diversion assembly. The collection funnel is installed at one end inside the installation ground. A reflux funnel protrudes from the inner top of the collection funnel. Multiple fluorinated bottles are placed in the inner cavity of the collection funnel. The upper bottle conveyor belt is installed at the top of the outer end of the collection funnel. The frame assembly is installed at the outer end of the installation ground away from the collection funnel. The bottle sorting turntable assembly is installed inside the frame assembly and is located directly below the output end of the upper bottle conveyor belt. The upper bottle conveyor belt is used to intermittently transport multiple fluorinated bottles in the inner cavity of the collection funnel to the bottle sorting turntable assembly. An extension frame protrudes from one end of the frame assembly adjacent to the collection funnel. The bottle separation and transportation assembly is installed at the end of the frame assembly away from the collection funnel. The transportation adjustment assembly is installed in the extension frame. The bottle sorting clamp assembly is installed at the other end of the frame assembly and in the transportation adjustment assembly. The transportation diversion assembly is installed at one end of the transportation adjustment assembly adjacent to the collection funnel, and an inverted bottle transportation funnel is arranged inside the transportation diversion assembly. The inverted bottle transportation funnel is located directly above the reflux funnel. The transportation diversion assembly is used to arrange and transport multiple fluorinated bottles and return the fluorinated bottles that have been inverted to the collection funnel through the inverted bottle transportation funnel and the reflux funnel.

[0005] As a further improvement of the present invention, the bottle arranging turntable assembly includes a turntable drive box, a turntable drive shaft, a bottle arranging turntable and a bottle arranging guide plate. The turntable drive box is installed at the inner bottom of the frame assembly. A turntable drive motor is arranged in the inner cavity of the turntable drive box. An installation chassis is arranged on the top of the turntable drive box. A plurality of rollers are convexly arranged along the circumferential direction on the outer edge of the top surface of the installation chassis. A limiting cylinder is arranged on the outer wall of the installation chassis. A bottle arranging discharge groove is concavely arranged inside the limiting cylinder. A first rotation hole is concavely arranged in the middle of the top surface of the installation chassis. The first rotation hole communicates with the inner cavity of the turntable drive box. The middle part of the turntable drive shaft is rotatably installed in the first rotation hole. The bottom end of the turntable drive shaft is connected to the output shaft of the turntable drive motor. The middle part of the bottom surface of the bottle arranging turntable is connected to the top end of the turntable drive shaft, and the outer edge of the bottom surface of the bottle arranging turntable is attached to the plurality of rollers. One end of the bottle arranging guide plate is rotatably installed at one end of the bottle arranging discharge groove adjacent to the collection funnel. The cross-sectional shape of the bottle arranging guide plate is an inverted "V" shape. Two linkage connection cylinders are convexly arranged along the length direction in the middle of the inner side of the bottle arranging guide plate.

[0006] As a further improvement of the present invention, the bottle-sorting and conveying assembly includes a bottle-sorting mounting block, a bottle-sorting conveying top plate, two bottle-sorting conveying sliding columns, a bottle-sorting conveying bottom plate, a steering device, a bottle-sorting adjusting screw, a bottle-sorting adjusting strip, and a bottle-rejecting roller. The top surface of the bottle-sorting mounting block is mounted on the top surface of the inner cavity of the frame assembly at the end away from the collection funnel. A longitudinal adjusting chute is recessed in the middle of the top surface of the bottle-sorting mounting block. A bottle-sorting adjusting sliding column protrudes from the end of the top surface of the bottle-sorting conveying top plate away from the collection funnel. The bottle-sorting adjusting sliding column is slidably mounted in the longitudinal adjusting chute. A second rotation hole is recessed in the middle of the top surface of the bottle-sorting conveying top plate. The top ends of the two bottle-sorting conveying sliding columns are respectively mounted at both ends of the bottom surface of the bottle-sorting conveying top plate. The inner sides of both ends of the top surface of the bottle-sorting conveying bottom plate are respectively connected to the bottom ends of the two bottle-sorting conveying sliding columns. A linkage mounting column protrudes from the outer side of the bottom surface of the bottle-sorting conveying bottom plate near the collection funnel. A linkage extension plate is rotatably provided at the bottom end of the linkage mounting column. A first linkage wheel is rotatably provided at the outer end of the linkage extension plate. A third rotation hole is recessed in the other end of the outer side of the bottom surface of the bottle-sorting conveying bottom plate. The steering device is mounted on the outer side of the top surface of the bottle-sorting conveying bottom plate at the end away from the collection funnel. The input shaft at the bottom of the steering device passes through the third rotation hole and protrudes from the bottom surface of the bottle-sorting conveying bottom plate. A second linkage wheel is rotatably provided on the input shaft of the steering device. The output shaft of the steering device is provided at the end away from the collection funnel, and a third linkage wheel is rotatably provided on the output shaft of the steering device. A bottle-sorting mounting vertical plate is provided at the end of the steering device away from the collection funnel. A tension adjusting column protrudes from the bottom of the bottle-sorting mounting vertical plate. A tension adjusting strip is rotatably provided at the outer end of the tension adjusting column through a torsion spring. A fourth linkage wheel is rotatably provided on the tension adjusting strip. The bottom end of the bottle-sorting adjusting screw is rotatably mounted in the middle of the outer side of the top surface of the bottle-sorting conveying bottom plate. The top end of the bottle-sorting adjusting screw is rotatably mounted in the second rotation hole. An adjusting handwheel is provided at the top end of the bottle-sorting adjusting screw. Both ends of the bottle-sorting adjusting strip are respectively slidably mounted in the two bottle-sorting conveying sliding columns. A threaded hole is recessed in the middle of the top surface of the bottle-sorting adjusting strip. The bottle-sorting adjusting screw is rotatably provided in the threaded hole. A rotating mounting cylinder protrudes from the inner side of the bottle-sorting adjusting strip. One end of the bottle-rejecting roller is rotatably mounted in the rotating mounting cylinder. A fifth linkage wheel is provided at the outer end of the bottle-rejecting roller. A first rotating belt is sleeved on the fifth linkage wheel, the fourth linkage wheel, and the third linkage wheel to achieve transmission connection. A plurality of bottle-rejecting plates protrude along the circumferential direction at the other end of the outer wall of the bottle-rejecting roller.

[0007] As a further improvement of the present invention, the conveying and adjusting assembly includes a directional conveying element, a conveying adjusting element, a driven conveying element, and a height adjusting element. The directional conveying element is mounted on the outer side of the extension frame. The conveying adjusting element is mounted in the directional conveying element. The driven conveying element is mounted in the conveying adjusting element and is located inside the extension frame. The height adjusting element is mounted in the conveying adjusting element.

[0008] As a further improvement of the present invention, both the directional conveying element and the driven conveying element include a conveying installation box, two conveying installation columns, two first conveying wheels and two second conveying wheels. First sliding holes are recessed at four corners of the side wall of the conveying installation box. A driven sliding hole is recessed in the middle of one end of the side wall of the conveying installation box adjacent to the bottle arranging turntable assembly. A conveying threaded hole is recessed in the middle of the other end of the side wall of the conveying installation box of the driven conveying element. A preset rotation hole is recessed in the middle of the side wall of the conveying installation box of the directional conveying element. The preset rotation hole is arranged opposite to the conveying threaded hole. Fourth rotation holes are respectively recessed at both ends of the top surface of the conveying installation box. The two conveying installation columns are respectively rotatably installed in the two fourth rotation holes. The two first conveying wheels are respectively installed at the bottom ends of the two conveying installation columns. A second conveyor belt is sleeved between the two first conveying wheels. The two second conveying wheels are respectively installed at the top ends of the two conveying installation columns. Clamping installation columns are respectively arranged at both ends of the conveying installation box. The bottom of the conveying installation box of the directional conveying element is installed on the outside of the extension frame.

[0009] As a further improvement of the present invention, the conveying adjustment element includes a main motor, two conveying adjustment installation columns, four conveying adjustment sliding columns, a driven sliding column, a conveying threaded rod, a conveying tensioning table and a tensioning rotating shaft. The main motor is installed at one end of the conveying installation box of the directional conveying element adjacent to the bottle arranging turntable assembly. The bottom ends of the two conveying adjustment installation columns are respectively installed at both ends of the inner side of the extension frame. The outer ends of the four conveying adjustment sliding columns are respectively installed in the four first sliding holes of the directional conveying element. The inner ends of the four conveying adjustment sliding columns are respectively installed at the top and bottom of the two conveying adjustment installation columns. The conveying installation box of the driven conveying element is slidably installed in the four conveying adjustment sliding columns through the four first sliding holes therein. One end of the driven sliding column is installed in the driven sliding hole of the directional conveying element. The other end of the driven sliding column is installed in the middle of the conveying adjustment installation column adjacent to the bottle arranging turntable assembly. The inner end of the conveying threaded rod is rotatably installed in the middle of the conveying adjustment installation column away from the bottle arranging turntable assembly. The outer end of the conveying threaded rod passes through the conveying threaded hole and is rotatably installed in the preset rotation hole. A hand crank is arranged at the outer end of the conveying threaded rod. The conveying tensioning table is installed on the inner side of the extension frame and is located between the two conveying adjustment installation columns. The top end of the tensioning rotating shaft is rotatably installed on the bottom surface of the conveying installation box of the driven conveying element. A tensioning linkage plate is arranged at the bottom end of the tensioning rotating shaft. A tension spring is arranged between the middle of the tensioning linkage plate and the conveying tensioning table. A conveying tensioning wheel is convexly arranged on the top surface of the tensioning linkage plate. A third conveyor belt is sleeved between the conveying tensioning wheel, the output shaft of the main motor and the two first conveying wheels adjacent to the bottle arranging turntable assembly.

[0010] As a further improvement of the present invention, the height adjustment element includes two linkage mounting boxes, a height adjustment plate, three adjustment vertical plates, a first feeding slide plate and a second feeding slide plate. The tops of the two linkage mounting boxes are respectively slidably mounted in two conveying adjustment sliding columns. A linkage threaded hole is provided at the bottom end of one of the linkage mounting boxes, and the linkage threaded hole is rotatably provided in the middle of the conveying threaded rod. The bottom end of the other linkage mounting box is slidably mounted in the middle of the driven sliding column. The two ends of the height adjustment plate are respectively mounted on the outer sides of the two linkage mounting boxes. Three sliding mounting columns are arranged along the length direction on the inner side of the height adjustment plate. A vertical adjustment groove is recessed in the middle of the side wall of each adjustment vertical plate, and the three vertical adjustment grooves are respectively mounted in the three sliding mounting columns. A compression spring is provided between each sliding mounting column and the top surface of the vertical adjustment groove. The two ends of the bottom surface of the first feeding slide plate are respectively mounted on the tops of the two adjustment vertical plates far from the bottle arranging turntable assembly. The middle of the second feeding slide plate is rotatably mounted on the top of the other adjustment vertical plate. One end of the second feeding slide plate far from the bottle arranging turntable assembly is clamped in the first feeding slide plate.

[0011] As a further improvement of the present invention, a placement plate protrudes from one end of the first feeding slide plate adjacent to the bottle arranging turntable assembly. A strip-shaped groove is recessed at the bottom of the end wall of the placement plate, and an arc surface is recessed at the outer edge of the strip-shaped groove. A transition plate is rotatably provided at the top of the outer end of the placement plate. One end of the second feeding slide plate far from the bottle arranging turntable assembly is inserted into the strip-shaped groove, and one end of the bottom surface of the transition plate abuts against the top surface of the second feeding slide plate.

[0012] As a further improvement of the present invention, the bottle arranging clamping assembly includes a directional clamping element and a transverse clamping element. The directional clamping element is mounted on the outer side of the frame assembly and in the directional conveying element, and the transverse clamping element is mounted on the inner side of the frame assembly and in the driven conveying element. Both the directional clamping element and the transverse clamping element include a clamping mounting cross bar, a plurality of roller columns and a plurality of clamping rollers. The middle of the clamping mounting cross bar and one end far from the bottle arranging turntable assembly are respectively mounted on the tops of two clamping mounting columns. The plurality of roller columns are respectively mounted along the length direction on the inner bottom of the clamping mounting cross bar. The plurality of clamping rollers are respectively rotatably mounted at the bottom ends of the plurality of roller columns. A fifth transmission belt is sleeved between the plurality of clamping rollers and the two second conveying wheels to achieve transmission connection. A sixth conveyor belt is sleeved between the first linkage wheel, the second linkage wheel and the clamping roller at the end adjacent to the bottle arranging turntable assembly.

[0013] As a further improvement of the present invention, a stable adjustment sliding column is slidably arranged at the bottom surface of the clamping installation cross bar of the directional clamping element adjacent to one end of the bottle arranging turntable assembly. A restoring spring is arranged between the bottom end of the stable adjustment sliding column and the bottom surface of the clamping installation cross bar. A resisting wheel is arranged at the inner bottom end of the stable adjustment sliding column, and the outer wall of the resisting wheel is attached to the bottom surface of the second feeding slide plate adjacent to one end of the bottle arranging turntable assembly. A height limiting plate protrudes from the inner side of the clamping installation cross bar of the directional clamping element adjacent to one end of the bottle arranging turntable assembly, and the height limiting plate is located directly above the adjacent end of the second feeding slide plate to the bottle arranging turntable assembly. A torsion spring shaft protrudes from the middle of the inner side of the clamping installation cross bar of the directional clamping element, and a lever is arranged at the inner end of the torsion spring shaft. The lever is located directly above the first feeding slide plate. Two pushing columns protrude from the outer side of the clamping installation cross bar of the transverse movement clamping element adjacent to one end of the bottle arranging turntable assembly, and the two pushing columns are respectively connected to the two linkage connecting cylinders.

[0014] The beneficial effects of the present invention are as follows:

[0015] 1. The present invention can use the bottle arranging turntable assembly, the frame assembly, the bottle separating and conveying assembly, the conveying adjustment assembly, the bottle arranging and clamping assembly and the conveying and diverting assembly to efficiently discharge the fluorinated bottles from the bottle arranging turntable assembly smoothly and flow into the subsequent bottle arranging and clamping assembly orderly, effectively avoiding the accumulation and collision of the fluorinated bottles during the transition process, thus ensuring the stability and neat arrangement of the bottles during the conveying process. Through the clamping and extrusion functions of the fifth conveyor belt, the fluorinated bottles can be gradually arranged neatly during the conveying process, ensuring the stability of the fluorinated bottles during transportation, improving the production efficiency, stabilizing the conveying process, reducing the risk of bottle damage, and ensuring the neat arrangement and accurate conveying of the fluorinated bottles.

[0016] 2. The present invention can accurately adjust according to the height and diameter of the fluorinated bottles, enabling the fluorinated bottles to smoothly pass through the transition position between the bottle arranging turntable assembly and the bottle arranging and clamping assembly and ensuring the clamping and conveying effects of the two fifth conveyor belts on the fluorinated bottles. It avoids the conveying problems caused by the mismatch of bottle sizes, helps to adapt to fluorinated bottles of different sizes, ensures the stability and consistency during the clamping and conveying process, improves the flexibility and versatility of the production line, and reduces the adjustment time and manual intervention during the production process. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a three-dimensional schematic diagram of an embodiment of the present invention.

[0018] Figure 2 It is a three-dimensional schematic diagram of another embodiment of the present invention.

[0019] Figure 3 It is a three-dimensional schematic diagram of the bottle arranging turntable assembly and the bottle separating and conveying assembly in an embodiment of the present invention.

[0020] Figure 4A three-dimensional schematic diagram of the bottle-sorting and conveying assembly in an embodiment of the present invention.

[0021] Figure 5 A three-dimensional schematic diagram of the bottle-aligning guide plate, bottle-sorting and conveying assembly, conveying adjustment assembly, and bottle-aligning clamping assembly in an embodiment of the present invention.

[0022] Figure 6 A three-dimensional schematic diagram of the conveying adjustment assembly in an embodiment of the present invention.

[0023] Figure 7 A three-dimensional schematic diagram of the conveying adjustment assembly and the bottle-aligning clamping assembly in an embodiment of the present invention.

[0024] Figure 8 A three-dimensional schematic diagram of the conveying adjustment assembly in another embodiment of the present invention.

[0025] Figure 9 An internal schematic diagram of the conveying adjustment assembly and the bottle-aligning clamping assembly in an embodiment of the present invention.

[0026] Figure 10 It is Figure 9 An enlarged view of part A in

[0027] In the figure:

[0028] 10. Collection funnel; 11. Return funnel; 20. Upper bottle conveyor belt; 30. Bottle arranging turntable assembly; 32. Turntable drive box; 35. Turntable drive shaft; 33. Bottle arranging turntable; 34. Bottle arranging guide plate; 321. Turntable drive motor; 322. Installation chassis; 323. Roller; 324. Limiting cylinder; 325. Bottle arranging discharge chute; 326. First rotation hole; 341. Linkage connection cylinder; 40. Frame assembly; 41. Extension frame; 50. Bottle separating conveyor assembly; 51. Bottle separating installation block; 52. Bottle separating conveyor top plate; 53. Bottle separating conveyor sliding column; 54. Bottle separating conveyor bottom plate; 55. Bottle separating adjusting screw; 56. Bottle separating adjusting strip; 57. Steering gear; 58. Bottle separating rejection roller; 551. Adjusting handwheel; 511. Longitudinal adjusting chute; 521. Bottle separating adjusting sliding column; 541. Linkage installation column; 542. First linkage wheel; 571. Second linkage wheel; 572. Third linkage wheel; 574. Tension adjusting column; 575. Bottle separating installation vertical plate; 576. Fourth linkage wheel; 577. Tension adjusting strip; 561. Threaded hole; 562. Rotating installation cylinder; 581. Fifth linkage wheel; 59. First transmission belt; 582. Bottle separating rejection plate; 70. Conveyor adjusting assembly; 71. Directional conveyor element; 72. Conveyor adjusting element; 73. Driven conveyor element; 74. Height adjusting element; 751. Conveyor installation box; 752. Conveyor installation column; 753. First conveyor wheel; 754. Second conveyor wheel; 755. First sliding hole; 758. Driven sliding hole; 759. Conveyor threaded hole; 756. Fourth rotation hole; 757. Second conveyor belt; 750. Clamping installation column; 720. Main motor; 721. Conveyor adjusting installation column; 722. Conveyor adjusting sliding column; 723. Driven sliding column; 724. Conveyor threaded rod; 725. Conveyor tensioning table; 726. Tensioning rotating shaft; 727. Rocking handle; 728. Tensioning linkage plate; 729. Conveyor tensioning wheel; 77. Tensile spring; 76. Third conveyor belt; 741. Linkage installation box; 742. Height adjusting plate; 743. Adjusting vertical plate; 744. First feed slide plate; 745. Second feed slide plate; 746. Linkage threaded hole; 747. Vertical adjusting groove; 79. Sliding installation column; 748. Placing plate; 749. Strip-shaped groove; 740. Arc surface; 78. Transition plate; 60. Bottle arranging clamping assembly; 61. Directional clamping element; 63. Transverse clamping element; 641. Clamping installation cross bar; 642. Roller column; 643. Clamping roller; 644. Fifth transmission belt; 645. Sixth conveyor belt; 65. Stable adjusting sliding column; 66. Supporting wheel; 67. Height limiting plate; 68. Torsion spring shaft; 681. Poking rod; 69. Pushing column; 80. Conveyor diverting assembly; 81. Inverted bottle conveying funnel. Detailed implementation manners

[0029] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. Preferred embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided so that the disclosure of the present invention can be understood more thoroughly and comprehensively.

[0030] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present invention.

[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present invention belongs. The terms used herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0032] Please refer to Figures 1 to 10, A fluorinated bottle automatic conveying device, including a collection funnel 10, an upper bottle conveyor belt 20, a bottle arranging turntable assembly 30, a frame assembly 40, a bottle separating and conveying assembly 50, a conveying adjustment assembly 70, a bottle arranging clamping assembly 60 and a conveying shunt assembly 80. The collection funnel 10 is installed at one end inside the installation ground. A reflux hopper 11 protrudes from the inner top of the collection funnel 10. A plurality of fluorinated bottles are placed in the inner cavity of the collection funnel 10. The upper bottle conveyor belt 20 is installed at the top of the outer end of the collection funnel 10. The frame assembly 40 is installed at one end outside the installation ground away from the collection funnel 10. The bottle arranging turntable assembly 30 is installed inside the frame assembly 40, and the bottle arranging turntable assembly 30 is located directly below the output end of the upper bottle conveyor belt 20. The upper bottle conveyor belt 20 is used to intermittently convey a plurality of fluorinated bottles in the inner cavity of the collection funnel 10 to the bottle arranging turntable assembly 30. One end of the frame assembly 40 adjacent to the collection funnel 10 also protrudes with an extension frame 41. The bottle separating and conveying assembly 50 is installed at one end of the frame assembly 40 away from the collection funnel 10. The conveying adjustment assembly 70 is installed in the extension frame 41. The bottle arranging clamping assembly 60 is installed at the other end of the frame assembly 40 and in the conveying adjustment assembly 70. The conveying shunt assembly 80 is installed at one end of the conveying adjustment assembly 70 adjacent to the collection funnel 10, and an inverted bottle conveying hopper 81 is arranged inside the conveying shunt assembly 80. The inverted bottle conveying hopper 81 is located directly above the reflux hopper 11. The conveying shunt assembly 80 is used to arrange and convey a plurality of fluorinated bottles and return the fluorinated bottles that have been inverted to the collection funnel 10 through the inverted bottle conveying hopper 81 and the reflux hopper 11.

[0033] The bottle arranging turntable assembly 30 includes a turntable drive box 32, a turntable drive shaft 35, a bottle arranging turntable 33 and a bottle arranging guide plate 34. The turntable drive box 32 is installed at the bottom inside the frame assembly 40. A turntable drive motor 321 is arranged in the inner cavity of the turntable drive box 32. An installation chassis 322 is arranged at the top of the turntable drive box 32. A plurality of rollers 323 protrude along the circumferential direction from the outer edge of the top surface of the installation chassis 322. A limiting cylinder 324 is arranged on the outer wall of the installation chassis 322. A bottle arranging discharge groove 325 is recessed inside the limiting cylinder 324. A first rotation hole 326 is recessed in the middle of the top surface of the installation chassis 322. The first rotation hole 326 communicates with the inner cavity of the turntable drive box 32. The middle of the turntable drive shaft 35 is rotatably installed in the first rotation hole 326. The bottom end of the turntable drive shaft 35 is connected to the output shaft of the turntable drive motor 321. The middle of the bottom surface of the bottle arranging turntable 33 is connected to the top end of the turntable drive shaft 35, and the outer edge of the bottom surface of the bottle arranging turntable 33 fits on a plurality of rollers 323. One end of the bottle arranging guide plate 34 is rotatably installed at one end of the bottle arranging discharge groove 325 adjacent to the collection funnel 10. The cross-sectional shape of the bottle arranging guide plate 34 is an inverted "V" shape. Two linkage connection cylinders 341 protrude along the length direction in the middle of the inner side of the bottle arranging guide plate 34.

[0034] The bottle-dividing conveying assembly 50 includes a bottle-dividing mounting block 51, a bottle-dividing conveying top plate 52, two bottle-dividing conveying sliding columns 53, a bottle-dividing conveying bottom plate 54, a steering gear 57, a bottle-dividing adjusting screw 55, a bottle-dividing adjusting bar 56 and a bottle-dividing rejection roller 58. The top surface of the bottle-dividing mounting block 51 is mounted on the top surface of the inner cavity of the frame assembly 40 at the end away from the collection funnel 10. A longitudinal adjusting chute 511 is recessed in the middle of the top surface of the bottle-dividing mounting block 51. A bottle-dividing adjusting sliding column 521 protrudes from the end of the top surface of the bottle-dividing conveying top plate 52 away from the collection funnel 10. The bottle-dividing adjusting sliding column 521 is slidably mounted in the longitudinal adjusting chute 511. A second rotation hole is recessed in the middle of the top surface of the bottle-dividing conveying top plate 52. The top ends of the two bottle-dividing conveying sliding columns 53 are respectively mounted at both ends of the bottom surface of the bottle-dividing conveying top plate 52. The inner sides of the top surface of the bottle-dividing conveying bottom plate 54 are respectively connected to the bottom ends of the two bottle-dividing conveying sliding columns 53. A linkage mounting column 541 protrudes from the outer side of the bottom surface of the bottle-dividing conveying bottom plate 54 near the end of the collection funnel 10. A linkage extension plate is rotatably provided at the bottom end of the linkage mounting column 541. A first linkage wheel 542 is rotatably provided at the outer end of the linkage extension plate. A third rotation hole is recessed at the other end of the outer side of the bottom surface of the bottle-dividing conveying bottom plate 54. The steering gear 57 is mounted on the outer side of the top surface of the bottle-dividing conveying bottom plate 54 at the end away from the collection funnel 10. And the input shaft at the bottom of the steering gear 57 passes through the third rotation hole and protrudes from the bottom surface of the bottle-dividing conveying bottom plate 54. A second linkage wheel 571 is rotatably provided on the input shaft of the steering gear 57. The output shaft of the steering gear 57 is provided at the end away from the collection funnel 10. And a third linkage wheel 572 is rotatably provided on the output shaft of the steering gear 57. A bottle-dividing mounting vertical plate 575 is provided at the end of the steering gear 57 away from the collection funnel 10. A tension adjusting column 574 protrudes from the bottom of the bottle-dividing mounting vertical plate 575. A tension adjusting bar 577 is rotatably provided at the outer end of the tension adjusting column 574 through a torsion spring. A fourth linkage wheel 576 is rotatably provided on the tension adjusting bar 577. The bottom end of the bottle-dividing adjusting screw 55 is rotatably mounted in the middle of the outer side of the top surface of the bottle-dividing conveying bottom plate 54. The top end of the bottle-dividing adjusting screw 55 is rotatably mounted in the second rotation hole. An adjusting hand wheel 551 is provided at the top end of the bottle-dividing adjusting screw 55. Both ends of the bottle-dividing adjusting bar 56 are respectively slidably mounted in the two bottle-dividing conveying sliding columns 53. And a threaded hole 561 is recessed in the middle of the top surface of the bottle-dividing adjusting bar 56. And the bottle-dividing adjusting screw 55 is rotatably provided in the threaded hole 561. A rotation mounting cylinder 562 protrudes from the inner side of the bottle-dividing adjusting bar 56. One end of the bottle-dividing rejection roller 58 is rotatably mounted in the rotation mounting cylinder 562. And a fifth linkage wheel 581 is provided at the outer end of the bottle-dividing rejection roller 58. A plurality of bottle-dividing rejection plates 582 protrude along the circumferential direction at the other end of the outer wall of the bottle-dividing rejection roller 58. A first rotating belt 59 is sleeved on the fifth linkage wheel 581, the fourth linkage wheel 576 and the third linkage wheel 572 to realize transmission connection.

[0035] The conveying and adjusting assembly 70 includes a directional conveying element 71, a conveying adjusting element 72, a driven conveying element 73 and a height adjusting element 74. The directional conveying element 71 is installed outside the extension frame 41. The conveying adjusting element 72 is installed in the directional conveying element 71. The driven conveying element 73 is installed in the conveying adjusting element 72 and is located inside the extension frame 41. The height adjusting element 74 is installed in the conveying adjusting element 72.

[0036] Both the directional conveying element 71 and the driven conveying element 73 include a conveying mounting box 751, two conveying mounting posts 752, two first conveying wheels 753 and two second conveying wheels 754. First sliding holes 755 are recessed at four corners of the side wall of the conveying mounting box 751. A driven sliding hole 758 is recessed in the middle of one end of the side wall of the conveying mounting box 751 adjacent to the bottle arranging turntable assembly 30. A conveying threaded hole 759 is recessed in the middle of the other end of the side wall of the conveying mounting box 751 of the driven conveying element 73. A preset rotation hole is recessed in the middle of the side wall of the conveying mounting box 751 of the directional conveying element 71. The preset rotation hole is arranged opposite to the conveying threaded hole 759. Fourth rotation holes 756 are recessed at both ends of the top surface of the conveying mounting box 751. The two conveying mounting posts 752 are respectively rotatably installed in the two fourth rotation holes 756. The two first conveying wheels 753 are respectively installed at the bottom ends of the two conveying mounting posts 752. A second conveyor belt 757 is sleeved between the two first conveying wheels 753. The two second conveying wheels 754 are respectively installed at the top ends of the two conveying mounting posts 752. Clamping mounting posts 750 are respectively arranged at both ends of the conveying mounting box 751. The bottom of the conveying mounting box 751 of the directional conveying element 71 is installed outside the extension frame 41.

[0037] The conveying adjustment element 72 includes a main motor 720, two conveying adjustment mounting columns 721, four conveying adjustment sliding columns 722, a driven sliding column 723, a conveying threaded rod 724, a conveying tensioning table 725 and a tensioning rotating shaft 726. The main motor 720 is installed at one end of the conveying mounting box 751 of the directional conveying element 71 adjacent to the bottle arranging turntable assembly 30. The bottom ends of the two conveying adjustment mounting columns 721 are respectively installed at both ends inside the extension frame 41. The outer ends of the four conveying adjustment sliding columns 722 are respectively installed in the four first sliding holes 755 of the directional conveying element 71. The inner ends of the four conveying adjustment sliding columns 722 are respectively installed at the top and bottom of the two conveying adjustment mounting columns 721. And the conveying mounting box 751 of the driven conveying element 73 is slidably installed in the four conveying adjustment sliding columns 722 through the four first sliding holes 755 therein. One end of the driven sliding column 723 is installed in the driven sliding hole 758 of the directional conveying element 71, and the other end of the driven sliding column 723 is installed in the middle of the conveying adjustment mounting column 721 adjacent to the bottle arranging turntable assembly 30. The inner end of the conveying threaded rod 724 is rotatably installed in the middle of the conveying adjustment mounting column 721 away from the bottle arranging turntable assembly 30. The outer end of the conveying threaded rod 724 passes through and is rotatably installed in a preset rotating hole through the conveying threaded hole 759. And a hand crank 727 is arranged at the outer end of the conveying threaded rod 724. The conveying tensioning table 725 is installed inside the extension frame 41 and between the two conveying adjustment mounting columns 721. The top end of the tensioning rotating shaft 726 is rotatably installed on the bottom surface of the conveying mounting box 751 of the driven conveying element 73. A tensioning linkage plate 728 is arranged at the bottom end of the tensioning rotating shaft 726. A tension spring 77 is arranged between the middle of the tensioning linkage plate 728 and the conveying tensioning table 725. A conveying tensioning wheel 729 protrudes from the top surface of the tensioning linkage plate 728. A third conveyor belt 76 is sleeved between the conveying tensioning wheel 729, the output shaft of the main motor 720 and the two first conveyor wheels 753 adjacent to the bottle arranging turntable assembly 30.

[0038] The height adjustment element 74 includes two linkage mounting boxes 741, a height adjustment plate 742, three adjustment vertical plates 743, a first feeding slide plate 744 and a second feeding slide plate 745. The tops of the two linkage mounting boxes 741 are respectively slidably mounted in the two conveying adjustment slide columns 722. A linkage threaded hole 746 is provided at the bottom end of one of the linkage mounting boxes 741, and the linkage threaded hole 746 is rotatably provided in the middle of the conveying threaded rod 724. The bottom end of the other linkage mounting box 741 is slidably mounted in the middle of the driven slide column 723. Both ends of the height adjustment plate 742 are respectively mounted on the outer sides of the two linkage mounting boxes 741. Three sliding mounting columns 79 are arranged along the length direction on the inner side of the height adjustment plate 742. A vertical adjustment groove 747 is concavely provided in the middle of the side wall of each adjustment vertical plate 743. The three vertical adjustment grooves 747 are respectively mounted in the three sliding mounting columns 79, and a compression spring is provided between the top surface of each sliding mounting column 79 and the vertical adjustment groove 747. The two ends of the bottom surface of the first feeding slide plate 744 are respectively mounted on the tops of the two adjustment vertical plates 743 away from the bottle aligning turntable assembly 30. The middle of the second feeding slide plate 745 is rotatably mounted on the top of the other adjustment vertical plate 743. One end of the second feeding slide plate 745 away from the bottle aligning turntable assembly 30 is clamped in the first feeding slide plate 744.

[0039] One end of the first feeding slide plate 744 adjacent to the bottle aligning turntable assembly 30 protrudes with a placement plate 748. A strip-shaped groove 749 is concavely provided at the bottom of the end wall of the placement plate 748. An arc surface 740 is concavely provided on the outer edge of the strip-shaped groove 749. A transition plate 78 is rotatably provided at the top of the outer end of the placement plate 748. One end of the second feeding slide plate 745 away from the bottle aligning turntable assembly 30 is inserted into the strip-shaped groove 749, and one end of the bottom surface of the transition plate 78 abuts against the top surface of the second feeding slide plate 745.

[0040] The bottle aligning clamping component 60 includes an orientation clamping element 61 and a transverse movement clamping element 63. The orientation clamping element 61 is mounted on the outer side of the frame assembly 40 and in the orientation conveying element 71. The transverse movement clamping element 63 is mounted on the inner side of the frame assembly 40 and in the driven conveying element 73. Both the orientation clamping element 61 and the transverse movement clamping element 63 include a clamping mounting cross bar 641, a plurality of roller columns 642 and a plurality of clamping rollers 643. The middle and one end of the clamping mounting cross bar 641 away from the bottle aligning turntable assembly 30 are respectively mounted on the tops of the two clamping mounting columns 750. The plurality of roller columns 642 are respectively mounted along the length direction at the bottom of the inner side of the clamping mounting cross bar 641. The plurality of clamping rollers 643 are respectively rotatably mounted at the bottoms of the plurality of roller columns 642, and a fifth transmission belt 644 is sleeved between the plurality of clamping rollers 643 and the two second conveying wheels 754 to achieve transmission connection. A sixth conveyor belt 645 is sleeved between the first linkage wheel 542, the second linkage wheel 571 and the clamping roller 643 at one end adjacent to the bottle aligning turntable assembly 30.

[0041] A stabilizing adjustment sliding column 65 is slidably arranged adjacent to one end of the bottle aligning turntable assembly 30 on the bottom surface of the clamping installation cross bar 641 of the directional clamping element 61. A restoring spring is arranged between the bottom end of the stabilizing adjustment sliding column 65 and the bottom surface of the clamping installation cross bar 641. A resisting wheel 66 is arranged at the inner bottom end of the stabilizing adjustment sliding column 65, and the outer wall of the resisting wheel 66 is attached to the bottom surface of the second feeding slide plate 745 adjacent to one end of the bottle aligning turntable assembly 30. A height limiting plate 67 protrudes from the inner side of the clamping installation cross bar 641 of the directional clamping element 61 adjacent to one end of the bottle aligning turntable assembly 30, and the height limiting plate 67 is located directly above the adjacent end of the second feeding slide plate 745 to the bottle aligning turntable assembly 30. A torsion spring shaft 68 protrudes from the middle of the inner side of the clamping installation cross bar 641 of the directional clamping element 61. A lever 681 is arranged at the inner end of the torsion spring shaft 68, and the lever 681 is located directly above the first feeding slide plate 744. Two pushing columns 69 protrude from the outer side of the clamping installation cross bar 641 of the transverse movement clamping element 63 adjacent to one end of the bottle aligning turntable assembly 30, and the two pushing columns 69 are respectively rotatably connected to the two linkage connecting cylinders 341.

[0042] For example, in one embodiment: during use, a plurality of fluorinated bottles are placed in the collection funnel 10. Subsequently, the bottle loading conveyor belt 20 is started, and the bottle loading conveyor belt 20 places a plurality of fluorinated bottles on the bottle aligning turntable 33 and the limiting cylinder 324 of the bottle aligning turntable assembly 30. Subsequently, the turntable driving motor 321 is started, so that the turntable driving shaft 35 rotates around the first rotation hole 326, causing the bottle aligning turntable 33 to rotate accordingly. As a result, a plurality of fluorinated bottles entering it move to the outer edge of the bottle aligning turntable 33 under the action of its centrifugal force and flow out from the bottle aligning discharge slot 325 under the guidance of the bottle aligning guide plate 34. Subsequently, the main motor 720 is started, and the third conveyor belt 76 is used to rotate two first conveyor wheels 753 adjacent to the bottle aligning turntable assembly 30. The two first conveyor wheels 753 respectively use two second conveyor belts 757 to synchronously rotate four first conveyor wheels 753. As a result, four conveyor installation columns 752 rotate synchronously, four second conveyor wheels 754 rotate synchronously, two fifth drive belts 644 rotate accordingly, a plurality of clamping rollers 643 rotate accordingly, and the sixth conveyor belt 645 rotates accordingly. Then, the power is transmitted to the first linkage wheel 542 and the second linkage wheel 571, causing the third linkage wheel 572 to rotate. The power is transmitted to the fifth linkage wheel 581 through the first rotation belt 59, causing the bottle separating and rejecting roller 58 to rotate. Then, the bottle separating and rejecting roller 58 and a plurality of bottle separating and rejecting plates 582 are used to arrange and convey the fluorinated bottles flowing out from the bottle aligning discharge slot 325 between the two fifth drive belts 644, and the fluorinated bottles flowing out are gradually squeezed and guided by the clamping of the two fifth drive belts 644 to be conveyed as flatly arranged fluorinated bottles, preventing the fluorinated bottles from piling up and colliding during the transition between the bottle aligning turntable assembly 30 and the bottle aligning clamping assembly 60.

[0043] Subsequently, when the two fifth conveyor belts 644 grip and transport the fluorinated bottles, since the middle part of the inner side of the clamping mounting cross bar 641 of the directional clamping element 61 is convexly provided with a torsion spring shaft 68, the inner end of the torsion spring shaft 68 is provided with a lever 681, and the lever 681 is located directly above the first feeding slide plate 744, the height position of the fluorinated bottles between the two fifth conveyor belts 644 will be adjusted by pressing, ensuring that the bottom surface of the fluorinated bottles can effectively slide and fit on the second feeding slide plate 745 and the first feeding slide plate 744 for transportation.

[0044] For example, in one embodiment: Before use, according to the height and diameter of the fluorinated bottles, the adjusting handwheel 551 can be rotated to make the bottle separating adjusting screw 55 rotate. Since the bottle separating adjusting screw 55 is rotatably arranged in the threaded hole 561 of the bottle separating adjusting strip 56, the bottle separating adjusting strip 56 moves up and down along the two bottle separating conveying sliding columns 53, and then the bottle separating and removing roller 58 moves accordingly, thus ensuring that the fluorinated bottles can be quickly pushed into the bottle arranging and clamping assembly 60 by the bottle separating and removing roller 58.

[0045] Meanwhile, the handle 727 can be rotated to make the conveying threaded rod 724 rotate. Since the outer end of the conveying threaded rod 724 is arranged in the conveying threaded hole 759, the middle part of the conveying threaded rod 724 is arranged in the linkage threaded hole 746, the rotation of the conveying threaded rod 724 will make the conveying mounting box 751 of the driven conveying element 73 move along the four conveying adjusting sliding columns 722. At the same time, the two linkage mounting boxes 741 will also move synchronously along the two conveying adjusting sliding columns 722 at the top, and then the height adjusting plate 742 moves accordingly, making the first feeding slide plate 744 and the second feeding slide plate 745 move synchronously, thereby realizing the synchronous adjustment of the position between the directional clamping element 61 and the transverse clamping element 63 according to the diameter of the fluorinated bottles, and further ensuring the clamping and conveying effect of the two fifth conveyor belts 644 on the fluorinated bottles. At the same time, when the transverse clamping element 63 moves, since the two push columns 69 are respectively connected to the two linkage connecting cylinders 341, the bottle arranging guide plate 34 will move synchronously. Also, since the cross-sectional shape of the bottle arranging guide plate 34 is an inverted "V" shape, the outflow angle of the fluorinated bottles from the bottle arranging discharge groove 325 is synchronously adjusted.

[0046] For example, in one embodiment: when fluorinated bottles of different batches and different heights pass through the first feeding slide plate 744 and the second feeding slide plate 745, since the fluorinated bottles of different heights are pressed down and held by the dial rod 681, after the fluorinated bottles have been held against the bottom surface of the second feeding slide plate 745, the different heights of the fluorinated bottles will generate different downward pressures on the second feeding slide plate 745. Also, since the three adjusting vertical plates 743 are respectively installed in the three sliding mounting columns 79 through the vertical adjusting grooves 747, and a compression spring is provided between the sliding mounting column 79 and the top surface of the vertical adjusting groove 747, the second feeding slide plate 745 can be tilted and moved according to different downward pressures. At the same time, since one end of the second feeding slide plate 745 away from the bottle arranging turntable assembly 30 is inserted into the strip-shaped groove 749, and one end of the bottom surface of the transition plate 78 abuts against the top surface of the second feeding slide plate 745, the second feeding slide plate 745 and the transition plate 78 will follow and be tilted and moved, thereby realizing the inclined transition adjustment of the second feeding slide plate 745, the transition plate 78 and the first feeding slide plate 744 according to fluorinated bottles of different heights, so as to reduce the possibility of the fluorinated bottles falling down during the conveying process of gradually arranging and aligning them.

[0047] Installation process: Install the collection funnel 10 at one end inside the installation ground, install the upper bottle conveyor belt 20 at the top of the outer end of the collection funnel 10, install the frame assembly 40 at one end of the outer side of the installation ground away from the collection funnel 10, install the turntable drive box 32 at the inner bottom of the frame assembly 40, rotatably install the middle part of the turntable drive shaft 35 in the first rotation hole 326, connect the bottom end of the turntable drive shaft 35 to the output shaft of the turntable drive motor 321, connect the middle part of the bottom surface of the bottle arranging turntable 33 to the top end of the turntable drive shaft 35, and the outer edge of the bottom surface of the bottle arranging turntable 33 is attached to a plurality of rollers 323. One end of the bottle arranging guide plate 34 is rotatably installed at one end of the bottle arranging discharge chute 325 adjacent to the collection funnel 10. Install the top surface of the bottle dividing mounting block 51 at the top surface of the inner cavity of the frame assembly 40 at one end away from the collection funnel 10. Slide the bottle dividing adjusting slide column 521 in the longitudinal adjusting chute 511. The top ends of the two bottle dividing conveying slide columns 53 are respectively installed at both ends of the bottom surface of the bottle dividing conveying top plate 52. The inner sides of both ends of the top surface of the bottle dividing conveying bottom plate 54 are respectively connected to the bottom ends of the two bottle dividing conveying slide columns 53. Install the diverter 57 at one end of the outer side of the top surface of the bottle dividing conveying bottom plate 54 away from the collection funnel 10, and the input shaft at the bottom of the diverter 57 passes through the third rotation hole and protrudes from the bottom surface of the bottle dividing conveying bottom plate 54. The output shaft of the diverter 57 is arranged at one end away from the collection funnel 10. Rotatably install the bottom end of the bottle dividing adjusting screw 55 at the middle of the outer side of the top surface of the bottle dividing conveying bottom plate 54, and rotatably install the top end of the bottle dividing adjusting screw 55 in the second rotation hole. Slide both ends of the bottle dividing adjusting strip 56 in the two bottle dividing conveying slide columns 53 respectively, and the bottle dividing adjusting screw 55 is rotatably arranged in the threaded hole 561. Rotatably install one end of the bottle dividing rejection roller 58 in the rotating mounting cylinder 562. Rotatably install the two conveying mounting columns 752 in the two fourth rotation holes 756 respectively. Install the two first conveying wheels 753 at the bottom ends of the two conveying mounting columns 752 respectively. Install the two second conveying wheels 754 at the top ends of the two conveying mounting columns 752 respectively. Install the bottom of the conveying mounting box 751 of the directional conveying element 71 at the outside of the extension frame 41. Install the main motor 720 at one end of the conveying mounting box 751 of the directional conveying element 71 adjacent to the bottle arranging turntable assembly 30. Install the bottom ends of the two conveying adjusting mounting columns 721 at both ends of the inner side of the extension frame 41 respectively. Install the outer ends of the four conveying adjusting slide columns 722 in the four first slide holes 755 of the directional conveying element 71 respectively. Install the inner ends of the four conveying adjusting slide columns 722 at the top and bottom of the two conveying adjusting mounting columns 721 respectively. And the conveying mounting box 751 of the driven conveying element 73 is slidably installed in the four conveying adjusting slide columns 722 through the four first slide holes 755 therein. Install one end of the driven slide column 723 in the driven slide hole 758 of the directional conveying element 71, and install the other end of the driven slide column 723 at the middle of the conveying adjusting mounting column 721 adjacent to the bottle arranging turntable assembly 30. Rotatably install the inner end of the conveying screw rod 724 at the middle of the conveying adjusting mounting column 721 away from the bottle arranging turntable assembly 30.The outer end of the conveying threaded rod 724 is passed through the conveying threaded hole 759 and is rotatably installed in the preset rotating hole. The conveying tensioning platform 725 is installed on the inner side of the extension frame 41 and is located between the two conveying adjustment mounting columns 721. The top of the tensioning shaft 726 is rotatably installed on the bottom surface of the conveying mounting box 751 of the driven conveying element 73. The tops of the two linkage mounting boxes 741 are respectively slidably installed in the two conveying adjustment sliding columns 722, and the linkage threaded hole 746 is rotatably set in the middle of the conveying threaded rod 724. The bottom end of the other linkage mounting box 741 is slidably installed in the middle of the driven sliding column 723. The two ends of the height adjustment plate 742 are respectively installed on the outsides of the two linkage mounting boxes 741. The three vertical adjustment slots 747 are respectively installed in the three sliding mounting columns 79. The first feeding slide plate 74 The two ends of the bottom surface are respectively mounted on the top of the two adjustment vertical plates 743 away from the bottle unscrambling turntable assembly 30, the middle of the second feed slide plate 745 is rotatably mounted on the top of the other adjustment vertical plate 743, and the end of the second feed slide plate 745 away from the bottle unscrambling turntable assembly 30 is inserted into the strip groove 749, the middle of the entrainment mounting horizontal bar 641 and the end away from the bottle unscrambling turntable assembly 30 are respectively mounted on the top of the two entrainment mounting columns 750, a plurality of roller columns 642 are respectively mounted on the inner bottom of the entrainment mounting horizontal bar 641 along the length direction, a plurality of clamping rollers 643 are respectively rotatably mounted on the bottom ends of a plurality of roller columns 642, the outer wall of the holding wheel 66 is attached to the bottom of the second feed slide plate 745 adjacent to the bottle unscrambling turntable assembly 30, and the two push columns 69 are respectively connected to the two linkage connection cylinders 341.

[0048] The present invention can achieve:

[0049] 1. The present invention can utilize the bottle unscrambling turntable assembly 30, the frame assembly 40, the bottle separation conveying assembly 50, the conveying adjustment assembly 70, the bottle unscrambling entraining assembly 60 and the conveying diversion assembly 80 to efficiently discharge the fluorinated bottles from the bottle unscrambling turntable assembly 30 and orderly flow them into the subsequent bottle unscrambling entraining assembly 60, effectively avoiding the accumulation and collision of the fluorinated bottles during the transition process, thereby ensuring the stability and neat arrangement of the bottles during the conveying process, and through the clamping and squeezing function of the fifth transmission belt 644, the fluorinated bottles can be gradually arranged neatly during the conveying process, ensuring that the fluorinated bottles remain stable during transportation, improving production efficiency, stabilizing the conveying process, reducing the risk of bottle damage, and ensuring the neat arrangement and accurate conveying of the fluorinated bottles.

[0050] 2. The present invention can be accurately adjusted according to the height and diameter of the fluorination bottle, enabling the fluorination bottle to smoothly pass through the transition position between the bottle arranging turntable assembly 30 and the bottle arranging clamping assembly 60 and ensuring the clamping and conveying effect of the two fifth conveyor belts 644 on the fluorination bottle. This avoids the conveying problems caused by the mismatch of bottle sizes, helps to adapt to fluorination bottles of different sizes, ensures the stability and consistency during the clamping and conveying processes, improves the flexibility and versatility of the production line, and reduces the adjustment time and manual intervention during the production process.

[0051] The above-described embodiments only represent several embodiments of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the invention patent shall be subject to the appended claims.

Claims

1. An automatic conveying device for fluorinated bottles, characterized in that: The invention comprises a collecting funnel (10), a bottle conveyor belt (20), a bottle unscrambling turntable assembly (30), a frame assembly (40), a bottle distributing conveying assembly (50), a conveying regulating assembly (70), a bottle unscrambling entraining belt assembly (60) and a conveying diversion assembly (80), wherein the collecting funnel (10) is installed at one end of the inner side of the installation ground, a reflux hopper (11) is protrudingly provided on the inner top of the collecting funnel (10), a plurality of fluorinated bottles are placed in the inner cavity of the collecting funnel (10), the bottle conveyor belt (20) is installed at the top of the outer end of the collecting funnel (10), the frame assembly (40) is installed at one end of the outer side of the installation ground away from the collecting funnel (10), the bottle unscrambling turntable assembly (30) is installed on the inner side of the frame assembly (40), and the bottle unscrambling turntable assembly (30) is located directly below the output end of the bottle conveyor belt (20), and the bottle conveyor belt (20) is used to transfer the plurality of fluorinated bottles in the inner cavity of the collecting funnel (10) to the inner cavity of the collecting funnel (10). The bottles are transported to the bottle unscrambling turntable assembly (30) at intervals; an extension frame (41) is protruding from one end of the frame assembly (40) adjacent to the collecting funnel (10); a bottle separation conveying assembly (50) is mounted on one end of the frame assembly (40) away from the collecting funnel (10); a conveying regulating assembly (70) is mounted in the extension frame (41); a bottle unscrambling entraining assembly (60) is mounted on the other end of the frame assembly (40) and in the conveying regulating assembly (70); a conveying diversion assembly (80) is mounted on one end of the conveying regulating assembly (70) adjacent to the collecting funnel (10); a bottle inverting conveying bucket (81) is disposed inside the conveying diversion assembly (80); the bottle inverting conveying bucket (81) is located directly above the reflux bucket (11); the conveying diversion assembly (80) is used to arrange and convey a plurality of fluorinated bottles and return the inverted fluorinated bottles to the collecting funnel (10) through the bottle inverting conveying bucket (81) and the reflux bucket (11); The bottle unscrambling turntable assembly (30) comprises a turntable drive box (32), a turntable drive shaft (35), a bottle unscrambling turntable (33) and a bottle unscrambling guide plate (34). The turntable drive box (32) is mounted on the inner bottom of the frame assembly (40). A turntable drive motor (321) is arranged in the inner cavity of the turntable drive box (32). A mounting chassis (322) is arranged on the top of the turntable drive box (32). A plurality of rollers (323) are convexly arranged along the circumferential direction on the outer edge of the top surface of the mounting chassis (322). A limiting cylinder (324) is arranged on the outer wall of the mounting chassis (322). A bottle unscrambling discharge groove (325) is concavely arranged on the inner side of the limiting cylinder (324). A first rotation hole (326) is concavely arranged in the middle of the top surface of the mounting chassis (322). ), the first rotating hole (326) is communicated with the internal cavity of the turntable drive box (32), the middle part of the turntable drive shaft (35) is rotatably mounted in the first rotating hole (326), the bottom end of the turntable drive shaft (35) is connected to the output shaft of the turntable drive motor (321), the middle part of the bottom surface of the bottle unscrambling turntable (33) is connected to the top end of the turntable drive shaft (35), and the outer edge of the bottom surface of the bottle unscrambling turntable (33) is attached to a plurality of rollers (323), one end of the bottle unscrambling guide plate (34) is rotatably mounted on one end of the bottle unscrambling discharge trough (325) adjacent to the collecting funnel (10), the cross-section of the bottle unscrambling guide plate (34) is in an inverted "V" shape, and two linkage connection cylinders (341) are protrudingly provided on the middle part of the inner side of the bottle unscrambling guide plate (34) along the length direction.

2. The automatic conveying equipment for fluorinated bottles according to claim 1 is characterized in that: The bottle separation conveying assembly (50) comprises a bottle separation mounting block (51), a bottle separation conveying top plate (52), two bottle separation conveying slide columns (53), a bottle separation conveying bottom plate (54), a diverter (57), a bottle separation adjusting screw (55), a bottle separation adjusting bar (56) and a bottle separation rejecting roller (58). The top surface of the bottle separation mounting block (51) is mounted on the top surface of the inner cavity of the frame assembly (40) at one end away from the collecting funnel (10). A longitudinal adjusting slide groove (511) is concavely provided in the middle of the top surface of the bottle separation mounting block (51). A bottle separation adjusting slide column (521) is convexly provided on the top surface of the bottle separation conveying top plate (52) at one end away from the collecting funnel (10). The bottle separation adjusting slide column (521) is slidably mounted in the longitudinal adjusting slide groove (511). A second rotation hole is concavely provided in the middle of the top surface of the bottle conveying top plate (52), the top ends of the two bottle conveying slide columns (53) are respectively mounted on the two ends of the bottom surface of the bottle conveying top plate (52), the two ends of the inner side of the top surface of the bottle conveying bottom plate (54) are respectively connected to the bottom ends of the two bottle conveying slide columns (53), a linkage mounting column (541) is convexly provided on the outer side of the bottom surface of the bottle conveying bottom plate (54) adjacent to one end of the collecting funnel (10), a linkage extension plate is rotatably provided on the bottom end of the linkage mounting column (541), a first linkage wheel (542) is rotatably provided on the outer end of the linkage extension plate, a third rotation hole is concavely provided on the other end of the outer side of the bottom surface of the bottle conveying bottom plate (54), a diverter (57) is mounted on the outer side of the top surface of the bottle conveying bottom plate (54) away from one end of the collecting funnel (10), and the diverter (57) is The input shaft at the bottom of the bottle conveying bottom plate (54) is inserted through the third rotating hole and protrudes from the bottom surface of the bottle conveying bottom plate (54). The input shaft of the steering gear (57) is rotatably provided with a second linkage wheel (571). The output shaft of the steering gear (57) is arranged at an end away from the collecting funnel (10), and the output shaft of the steering gear (57) is rotatably provided with a third linkage wheel (572). The end of the steering gear (57) away from the collecting funnel (10) is provided with a bottle conveying vertical plate (575). The bottom of the bottle conveying vertical plate (575) is convexly provided with a tensioning adjustment column (574). The outer end of the tensioning adjustment column (574) is rotatably provided with a tensioning adjustment strip (577) through a torsion spring. The tensioning adjustment strip (577) is rotatably provided with a fourth linkage wheel (576). The bottle conveying adjustment screw The bottom end of the rod (55) is rotatably mounted on the middle part of the outer side of the top surface of the bottle separation conveying bottom plate (54), the top end of the bottle separation adjusting screw (55) is rotatably mounted in the second rotating hole, the top end of the bottle separation adjusting screw (55) is provided with an adjusting hand wheel (551), the two ends of the bottle separation adjusting bar (56) are respectively slidably mounted in the two bottle separation conveying sliding columns (53), and the middle part of the top surface of the bottle separation adjusting bar (56) is concavely provided with a threaded hole (561), and the bottle separation adjusting screw (55) is rotatably mounted in the threaded hole (561), the inner side of the bottle separation adjusting bar (56) is convexly provided with a rotating mounting cylinder (562), one end of the bottle separation rejecting roller (58) is rotatably mounted in the rotating mounting cylinder (562), and the outer end of the bottle separation rejecting roller (58) is provided with a fifth linkage wheel (581),A first rotating belt (59) is sleeved on the fifth linkage wheel (581), the fourth linkage wheel (576) and the third linkage wheel (572) to achieve transmission connection, and a plurality of bottle separation and rejection plates (582) are protrudingly provided along the circumferential direction on the other end of the outer wall of the bottle separation and rejection roller (58).

3. The automatic conveying device for fluorinated bottles according to claim 2 is characterized in that: The conveying adjustment component (70) comprises a directional conveying element (71), a conveying adjustment element (72), a driven conveying element (73) and a height adjustment element (74); the directional conveying element (71) is mounted on the outside of the extension frame (41); the conveying adjustment element (72) is mounted in the directional conveying element (71); the driven conveying element (73) is mounted in the conveying adjustment element (72) and is located on the inside of the extension frame (41); and the height adjustment element (74) is mounted in the conveying adjustment element (72).

4. The automatic conveying device for fluorinated bottles according to claim 3 is characterized in that: The directional conveying element (71) and the driven conveying element (73) both comprise a conveying installation box (751), two conveying installation columns (752), two first conveying wheels (753) and two second conveying wheels (754); first sliding holes (755) are recessed at four corners of the side wall of the conveying installation box (751); a driven sliding hole (758) is recessed at the middle of one end of the side wall of the conveying installation box (751) adjacent to the bottle unscrambling turntable assembly (30); a conveying threaded hole (759) is recessed at the middle of the other end of the side wall of the conveying installation box (751) of the driven conveying element (73); a preset rotation hole is recessed at the middle of the side wall of the conveying installation box (751) of the directional conveying element (71); the preset rotation hole and the conveying threaded hole are connected to each other. The grooved holes (759) are arranged opposite to each other, and fourth rotation holes (756) are respectively recessed at both ends of the top surface of the conveying installation box (751), and the two conveying installation columns (752) are respectively rotatably installed in the two fourth rotation holes (756). The two first conveying wheels (753) are respectively installed at the bottom ends of the two conveying installation columns (752), and a second conveyor belt (757) is sleeved between the two first conveying wheels (753). The two second conveying wheels (754) are respectively installed at the top ends of the two conveying installation columns (752). The two ends of the conveying installation box (751) are respectively provided with entrainment installation columns (750), and the bottom of the conveying installation box (751) of the directional conveying element (71) is installed on the outside of the extension frame (41).

5. The automatic conveying device for fluorinated bottles according to claim 4 is characterized in that: The conveying adjustment element (72) comprises a main motor (720), two conveying adjustment mounting columns (721), four conveying adjustment sliding columns (722), a driven sliding column (723), a conveying threaded rod (724), a conveying tensioning table (725) and a tensioning rotating shaft (726). The main motor (720) is mounted on one end of the conveying mounting box (751) of the directional conveying element (71) adjacent to the bottle unscrambling turntable assembly (30). The bottom ends of the two conveying adjustment mounting columns (721) are respectively mounted on the inner ends of the extension frame (41). The four conveying adjustment sliding columns (722) are respectively mounted on the inner ends of the extension frame (41). ) outer ends are respectively mounted in four first sliding holes (755) of the directional conveying element (71), the inner ends of the four conveying adjustment sliding posts (722) are respectively mounted on the top and bottom of the two conveying adjustment mounting posts (721), and the conveying mounting box (751) of the driven conveying element (73) is slidably mounted in the four conveying adjustment sliding posts (722) through the four first sliding holes (755), one end of the driven sliding post (723) is mounted in the driven sliding hole (758) of the directional conveying element (71), and the other end of the driven sliding post (723) is mounted on the adjacent management The conveying adjustment mounting column (721) of the bottle turntable assembly (30) is rotatably mounted at the middle of the conveying adjustment mounting column (721) away from the bottle unscrambling turntable assembly (30), the inner end of the conveying threaded rod (724) is rotatably mounted at the middle of the conveying adjustment mounting column (721) away from the bottle unscrambling turntable assembly (30), the outer end of the conveying threaded rod (724) is passed through the conveying threaded hole (759) and rotatably mounted in the preset rotation hole, and the outer end of the conveying threaded rod (724) is provided with a shaking handle (727), the conveying tensioning platform (725) is installed on the inner side of the extension frame (41) and is located between the two conveying adjustment mounting columns (721), and the tensioning shaft (726 ) is rotatably mounted on the bottom surface of a conveying mounting box (751) of a driven conveying element (73), a tensioning linkage plate (728) is disposed at the bottom end of a tensioning rotating shaft (726), a tensioning spring (77) is disposed between the middle of the tensioning linkage plate (728) and the conveying tensioning platform (725), a conveying tensioning wheel (729) is convexly disposed on the top surface of the tensioning linkage plate (728), and a third conveyor belt (76) is sleeved between the conveying tensioning wheel (729), the output shaft of the main motor (720) and two first conveying wheels (753) adjacent to the bottle unscrambling turntable assembly (30).

6. The automatic conveying device for fluorinated bottles according to claim 5, characterized in that: The height adjustment element (74) comprises two linkage mounting boxes (741), a height adjustment plate (742), three adjustment vertical plates (743), a first feed slide plate (744) and a second feed slide plate (745). The top ends of the two linkage mounting boxes (741) are respectively slidably mounted in two conveying adjustment slide columns (722). A linkage threaded hole (746) is provided at the bottom end of one of the linkage mounting boxes (741). The linkage threaded hole (746) is rotatably arranged in the middle of the conveying threaded rod (724). The bottom end of the other linkage mounting box (741) is slidably mounted in the middle of the driven slide column (723). Both ends of the height adjustment plate (742) are respectively mounted on the outside of the two linkage mounting boxes (741). The height adjustment plate (742) is provided on the outside of the two linkage mounting boxes (741). 42) three sliding mounting columns (79) are arranged on the inner side along the length direction, a vertical adjusting groove (747) is recessed in the middle of the side wall of each adjusting vertical plate (743), the three vertical adjusting grooves (747) are respectively installed in the three sliding mounting columns (79), and a compression spring is arranged between each sliding mounting column (79) and the top surface of the vertical adjusting groove (747), the two ends of the bottom surface of the first feeding slide plate (744) are respectively installed on the top of the two adjusting vertical plates (743) away from the bottle unscrambling turntable assembly (30), the middle part of the second feeding slide plate (745) is rotatably installed on the top of the other adjusting vertical plate (743), and the end of the second feeding slide plate (745) away from the bottle unscrambling turntable assembly (30) is clamped in the first feeding slide plate (744).

7. The automatic conveying device for fluorinated bottles according to claim 6 is characterized in that: A placement plate (748) is convexly provided at one end of the first feeding slide plate (744) adjacent to the bottle unscrambling turntable assembly (30), a strip groove (749) is concavely provided at the bottom of the end wall of the placement plate (748), an arcuate surface (740) is concavely provided at the outer edge of the strip groove (749), a transition plate (78) is rotatably provided at the top of the outer end of the placement plate (748), and an end of the second feeding slide plate (745) away from the bottle unscrambling turntable assembly (30) is inserted into the strip groove (749), and one end of the bottom surface of the transition plate (78) is abutted against the top surface of the second feeding slide plate (745).

8. The automatic conveying device for fluorinated bottles according to claim 7, characterized in that: The bottle unscrambling entraining assembly (60) comprises a directional entraining element (61) and a transverse entraining element (63). The directional entraining element (61) is installed on the outside of the frame assembly (40) and in the directional conveying element (71). The transverse entraining element (63) is installed on the inside of the frame assembly (40) and in the driven conveying element (73). The directional entraining element (61) and the transverse entraining element (63) both comprise an entraining installation horizontal bar (641), a plurality of roller columns (642) and a plurality of clamping rollers (643). The middle portion of the entraining installation horizontal bar (641) and the end away from the bottle unscrambling turntable assembly (30) are respectively Installed on the top of two entrainment belt installation columns (750), a plurality of roller columns (642) are respectively installed on the inner bottom of the entrainment belt installation horizontal bar (641) along the length direction, a plurality of clamping rollers (643) are respectively rotatably installed on the bottom ends of the plurality of roller columns (642), and a fifth transmission belt (644) is sleeved between the plurality of clamping rollers (643) and the two second conveying wheels (754) to achieve a transmission connection, and a sixth conveying belt (645) is sleeved between the first linkage wheel (542), the second linkage wheel (571) and the clamping roller (643) at one end adjacent to the bottle unscrambling turntable assembly (30).

9. The automatic conveying device for fluorinated bottles according to claim 8, characterized in that: A stabilizing adjustment slide post (65) is slidably arranged on the bottom surface of the entrainment installation horizontal bar (641) of the directional entrainment element (61) adjacent to one end of the bottle unscrambling turntable assembly (30), a restoring spring is arranged between the bottom end of the stabilizing adjustment slide post (65) and the bottom surface of the entrainment installation horizontal bar (641), a holding wheel (66) is arranged on the inner bottom end of the stabilizing adjustment slide post (65), the outer wall of the holding wheel (66) is attached to the bottom surface of the second feeding slide plate (745) adjacent to one end of the bottle unscrambling turntable assembly (30), and a height limiting plate (66) is convexly arranged on the inner side of the entrainment installation horizontal bar (641) of the directional entrainment element (61) adjacent to one end of the bottle unscrambling turntable assembly (30). 7), a height limiting plate (67) is located just above one end of the second feeding slide plate (745) adjacent to the bottle unscrambling turntable assembly (30), a torsion spring shaft (68) is protrudingly provided at the middle of the inner side of the entrainment mounting horizontal bar (641) of the directional entrainment element (61), a shifting rod (681) is provided at the inner end of the torsion spring shaft (68), and the shifting rod (681) is located just above the first feeding slide plate (744), and two push columns (69) are protrudingly provided on the outer side of the entrainment mounting horizontal bar (641) of the transverse entrainment element (63) adjacent to one end of the bottle unscrambling turntable assembly (30), and the two push columns (69) are respectively rotatably connected to the two linkage connection cylinders (341).

Citation Information

Patent Citations

  • BE646651A

  • Foreign bottle detection device

    CA2441687A1