An automatic packaging production device for basket frame fasteners
By designing an automated packaging production device, and utilizing the coordinated work of components such as conveyor belts, film-coating components, and cutting components, the problem of low automation in basket frame fixing packaging was solved, continuous production was achieved, and production efficiency was improved.
Patent Information
- Application Number
- CN202311296670.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-09
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2043-10-09
AI Technical Summary
In the existing technology, the packaging process of basketball hoop fasteners requires manual operation throughout, resulting in low automation and extended production time.
Design an automated packaging production device that includes a packaging box, a feeding assembly, a film coating assembly, an edge-gathering assembly, and a cutting assembly. Through the coordinated work of components such as a conveyor belt, an unwinding roller, a hot press roller, and a serrated cutter, the device achieves continuous automated packaging of basket frame fixtures.
It enables continuous and automated packaging of basket frame fasteners, improving production efficiency, reducing the need for manual operation, and is suitable for packaging films of different widths.
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Figure CN117141814B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of sports equipment manufacturing, and in particular to an automatic packaging production device for basketball hoop fasteners. Background Technology
[0002] Basketball hoops are essential facilities for basketball courts, typically consisting of a backboard and backboard supports, and are installed at the center of both ends of the court along its length. They come in various types, including hydraulic, mobile, fixed, and suspended, but regardless of the type, basketball hoops must ensure sufficient strength and rigidity.
[0003] For some small, wall-mounted basketball hoops for home use, a mounting bracket is required during assembly to connect the hoop to the wall. (See reference...) Figure 1 A basketball hoop fixing component 01 is generally in the shape of a long and narrow triangular plate, and mounting holes 011 are provided on the three corners of the basketball hoop fixing component 01.
[0004] After processing the basketball hoop fasteners, individual wrapping is required to facilitate transportation and reduce the possibility of surface wear and dust adhesion during transport and sales. However, due to the irregular shape of the basketball hoops, the packaging process must be completed entirely manually, resulting in low automation and extended production time. Summary of the Invention
[0005] In order to achieve continuous and automated packaging of basketball hoop fasteners, this application provides an automated packaging production apparatus for basketball hoop fasteners.
[0006] The automatic packaging production device for basket frame fasteners provided in this application adopts the following technical solution:
[0007] An automatic packaging production device for basket rack fasteners includes a packaging machine housing, a feeding assembly, a film-coating assembly, an edge-gathering assembly, and a cutting assembly. The feeding assembly is disposed on one side of the packaging machine housing. The film-coating assembly, edge-gathering assembly, and cutting assembly are sequentially disposed on the packaging machine housing along the feeding direction of the feeding assembly. The feeding assembly includes a feeding conveyor belt, one end of which is connected to the packaging machine housing along its length. The film-coating assembly includes an unwinding roller, which is rotatably disposed on the packaging machine housing. A packaging film is wound onto the unwinding roller. The edge-gathering assembly includes a winding plate frame, a hot-press roller, and two edge-gathering plates. The two edge-gathering plates are symmetrically arranged along the central axis of the feeding conveyor belt. The edge-gathering plates are disposed below the unwinding roller. The end of the edge-gathering plate closest to the feeding conveyor belt is horizontally positioned, while the other ends of the two edge-gathering plates facing downwards. The packaging film is pressed below the edge-gathering plate, and the take-up plate frame is located on the side of the edge-gathering plate away from the feeding conveyor belt. An edge-gathering groove is formed on the take-up plate frame along the length of the feeding conveyor belt. An inlet for the take-up plate frame, communicating with the edge-gathering groove, is formed on the side of the take-up plate closest to the edge-gathering plate. The take-up plate frame is located below the packaging film, and both sides of the packaging film in the width direction enter the edge-gathering groove through the inlet. A hot-pressing roller is located on the bottom surface of the take-up plate frame, and several hot-pressing rollers are symmetrically arranged along the edge-gathering groove. The cutting assembly includes a corrugated hot-pressing strip and a serrated cutting blade. The corrugated hot-pressing strip is arranged in a direction perpendicular to the edge-gathering groove, and the serrated cutting blade is arranged on the corrugated hot-pressing strip along its length. A driving component for moving the corrugated hot-pressing strip is provided on the packaging machine housing.
[0008] By adopting the above technical solution, the basket frame fixing components are placed one by one on the top surface of the feeding conveyor belt. Driven by the feeding conveyor belt, the basket frame fixing components move to below the edge-collecting plate. Simultaneously, the packaging film wound on the unwinding roller passes below the edge-collecting plate and contacts the basket frame fixing components. The downward-extending edge of the edge-collecting plate extends beyond both sides of the packaging film's width direction and presses down the edges of the packaging film. The two edges of the pressed packaging film enter the edge-collecting groove through the film inlet at one end of the winding plate frame. The hot-pressing roller presses the two packaging film edges entering the edge-collecting groove together, forming a cylindrical shape that wraps around the basket frame fixing components. The cylindrical packaging film moves to below the corrugated hot-pressing plate, which contacts the packaging film regularly. The corrugated hot-pressing strips segment the packaging film, separating the individual basket frame fixing components. A serrated cutting blade cuts off the segmented parts, dividing the packaging film into individual packages. Through the coordinated operation of the packaging machine casing, feeding assembly, film coating assembly, edge-gathering assembly, and cutting assembly, the continuous and automated packaging of basket frame fixing components can be achieved.
[0009] Optionally, the feeding assembly further includes a feeding box and abutting posts. The feeding conveyor belt is disposed in the feeding box. One end of the feeding box in the length direction is connected to the packaging machine box. Several abutting posts are evenly spaced along the length direction on the surface of the feeding conveyor belt. A sliding groove is formed on the top surface of the feeding box in the length direction, and the abutting posts extend out of the feeding box through the sliding groove.
[0010] By adopting the above technical solution, when feeding the basket frame fixing components, each component is placed one by one on the top surface of the feeding box. Driven by the feeding conveyor belt, the abutment column pushes each individual basket frame fixing component towards the film-coating assembly and the edge-gathering assembly, achieving equidistant conveying of the basket frame fixing components. Because the basket frame fixing plates maintain equal distances, subsequent packaging cutting is facilitated.
[0011] Optionally, a discharge conveyor belt is connected to the side of the packaging machine housing away from the feeding component, and a discharge hopper is connected to the end of the discharge conveyor belt away from the packaging machine housing.
[0012] By adopting the above technical solution, the discharge conveyor belt transports the packaged individual basket frame fixtures out and discharges them through the discharge hopper.
[0013] Optionally, the film coating assembly further includes a first tension roller and a second tension roller, which are rotatably mounted on the packaging machine housing and arranged parallel to the unwinding roller. The first tension roller and the second tension roller are staggered in the vertical direction, and the packaging film passes around the first tension roller and the second tension roller in sequence and extends to the bottom of the edge-receiving plate.
[0014] By adopting the above technical solution, the first tensioning roller and the second tensioning roller tension the packaging film, reducing the possibility of the packaging film breaking during discharge.
[0015] Optionally, the edge-gathering assembly further includes a connecting plate, a lower pressure plate, a guide rod, and a bidirectional screw. Two connecting plates and two lower pressure plates are provided and connected to each other. The connecting plates and the lower pressure plates are vertically arranged along the length of the edge-gathering groove. The guide rod is horizontally connected to the vertical side wall of the packaging machine box. The guide rod passes through the two connecting plates and is slidably connected to them. One end of the bidirectional screw is rotatably connected to the vertical side wall of the packaging machine box. The two connecting plates are threadedly connected to the two opposite threaded segments on the bidirectional screw. The two edge-gathering plates are connected to the two lower pressure plates one to one.
[0016] By employing the above technical solution, the lower pressure plate guides the packaging film, directing it towards the bottom of the edge-sealing plate. For packaging films of different widths, the edge-sealing width needs to be adjusted according to actual production requirements. By turning the bidirectional screw, the two connecting plates move closer or further apart along the length of the guide rod under the drive of the bidirectional screw, thus adjusting the spacing between the edge-sealing plates.
[0017] Optionally, a limiting plate is connected to the top surface of the feeding box along the length direction, and one limiting plate is symmetrically arranged on each side of the sliding groove.
[0018] By adopting the above technical solution, the limiting plate limits and guides the basketball frame fixing parts, reducing the possibility of the basketball frame fixing parts falling off the loading box when it moves.
[0019] Optionally, the packaging machine is provided with a cutting gantry. The driving component includes a rotating plate, a cutting motor, and a cutting shaft. The cutting shaft is horizontally connected to the middle position of the rotating plate and is rotatably connected to the cutting gantry. The cutting motor is connected to the cutting gantry and is drivenly connected to the cutting shaft. A corrugated heat-pressing strip is provided on each of the opposite sides of the rotating plate, and the corrugated heat-pressing strip is arranged parallel to the cutting shaft.
[0020] By adopting the above technical solution, the cutting motor drives the cutting shaft and the rotating plate to rotate periodically. Each time the corrugated hot pressing strip and the serrated cutting blade pass over the table of the packaging machine, the hot-pressed cylindrical packaging film is hot-pressed and cut once. By adjusting the speed of the cutting motor to match the feeding speed of the plate frame fixing parts, the packaging film is cut into individual packages.
[0021] Optionally, an elastic pressure plate is connected to the guide rod, and the end of the elastic pressure plate away from the guide rod extends downward at an angle and abuts against the winding plate frame.
[0022] By adopting the above technical solution, the elastic pressure plate presses the rolled-up cylindrical packaging wood against the winding board frame, so that both sides of the packaging film in the width direction can fully contact and be hot-pressed together with the hot roller.
[0023] In summary, this application includes at least one of the following beneficial technical effects:
[0024] 1. Through the cooperation of the packaging machine box, feeding component, film covering component, edge gathering component and cutting component, the continuous automatic packaging of basket frame fixing parts can be achieved;
[0025] 2. The connection plate, bidirectional screw, and guide rod enable adjustment of the edge-sealing plate spacing, allowing the edge-sealing plate to be used with packaging films of different widths;
[0026] 3. The elastic pressure plate allows the two sides of the packaging film in the width direction to fully contact the hot pressure roller and adhere together by heat. Attached Figure Description
[0027] Figure 1 This is a structural schematic diagram illustrating a basketball hoop fixing frame in an embodiment of this application.
[0028] Figure 2 This is a schematic diagram illustrating the structure of an automatic packaging production device for basket frame fasteners, as described in this application.
[0029] Figure 3 This is a structural schematic diagram illustrating the coating component and the edge-trimming component in the embodiments of this application.
[0030] Figure 4 This is a schematic diagram illustrating the structure of the segmentation component in the embodiments of this application.
[0031] Figure 5 yes Figure 4 Enlarged view of part A in the middle.
[0032] Figure 6 This is a structural schematic diagram illustrating the finished product of the basket frame fixing component packaging in the embodiments of this application.
[0033] Explanation of reference numerals in the attached drawings: 01, basket frame fixing component; 011, mounting hole; 1, packaging machine casing; 101, casing body; 102, conveyor table; 103, support table; 104, inspection box door; 105, handle; 2, feeding assembly; 21, feeding box; 22, feeding conveyor belt; 23, abutment post; 24, limit plate; 25, sliding groove; 3, laminating assembly; 31, unwinding roller; 32, first tension roller; 33, second tension roller; 34, laminating frame; 35, guide roller; 36, laminating roller; 4, edge finishing assembly; 41, connecting plate; 42, pressing down. 43. Plate; 44. Guide rod; 45. Bidirectional screw; 46. Edge trimming plate; 47. Rewinding plate frame; 48. Connecting shaft; 59. Hot press roller; 50. Cutting assembly; 51. Cutting gantry; 52. Support roller; 53. Cutting shaft; 54. Rotating plate; 55. Cutting motor; 56. Corrugated hot press strip; 57. Serrated cutter; 6. Discharge conveyor belt; 7. Edge trimming groove; 8. Film inlet; 9. Elastic pressure plate; 10. Insertion groove; 11. Insertion strip; 12. Mounting bolt; 13. Receiving groove; 14. Connecting spring; 15. Discharge hopper; 16. Serrated edge. Detailed Implementation
[0034] The following is in conjunction with the appendix Figure 1-6 This application will be further described in detail below. An embodiment of this application provides an automatic packaging production apparatus for basketball hoop fasteners, which achieves continuous automatic packaging of basketball hoop fasteners 01.
[0035] Reference Figure 2 and Figure 3 An automatic packaging production device for basket frame fixing components includes a packaging machine housing 1, a feeding assembly 2, a film covering assembly 3, an edge-gathering assembly 4, a cutting assembly 5, and a discharge conveyor belt 6. The packaging machine housing 1 includes a housing body 101, a conveyor table 102, and a support platform 103. The housing body 101 is equipped with a maintenance door 104 for inspecting its internal structure, and a handle 105 is provided on the maintenance door 104. The conveyor table 102 and the support platform 103 are located on one of the vertical side walls of the housing body 101, and the support platform 103 is placed on the ground.
[0036] Reference Figure 2 The feeding assembly 2 includes a feeding box 21, a feeding conveyor belt 22, abutment posts 23, and a limiting plate 24. One end of the feeding box 21 is connected to one end of the conveyor table 102 along its length. The feeding conveyor belt 22 is positioned within the feeding box 21 along its length. A sliding groove 25 is formed on the top surface of the feeding box 21 along its length. Several abutment posts 23 are fixedly connected at equal intervals along the length of the feeding conveyor belt 22. The abutment posts 23 located on the top surface of the feeding conveyor belt 22 protrude from the feeding box 21 through the sliding groove 25. The limiting plate 24 is bolted to the top surface of the feeding box 21 along its length. One limiting plate 24 is symmetrically arranged on each side of the sliding groove 25.
[0037] Reference Figure 2 and Figure 3 The laminating assembly 3 is disposed on one of the vertical side walls of the machine body 101 and located above the end of the loading box 21 near the conveyor table 102. The laminating assembly 3 includes an unwinding roller 31, a first tensioning roller 32, a second tensioning roller 33, a laminating frame 34, a guide roller 35, and a laminating roller 36. The unwinding roller 31 is horizontally rotatably connected to the vertical side wall of the machine body 101, and the packaging film is wound onto the unwinding roller 31. The first tensioning roller 32 and the second tensioning roller 33 are horizontally rotatably connected to the vertical side wall of the machine body 101. The first tensioning roller 32 and the second tensioning roller 33 are arranged parallel to the unwinding roller 31 and are staggered in the vertical direction, and the packaging film passes over the first tensioning roller 32 and the second tensioning roller 33 in sequence. The laminating frame 34 is connected to the vertical side wall of the machine body 101. The laminating frame 34 is positioned below the second tension roller 33 and is inclined, with its bottom end tilted towards the feeding box 21. A guide roller 35 is rotatably connected to the higher end of the laminating frame 34, and a laminating roller 36 is rotatably connected to the lower end of the laminating frame 34. The packaging film passing through the second tension roller 33 sequentially passes over the guide roller 35 and the laminating roller 36.
[0038] Reference Figure 3The edge-gathering assembly 4 includes a connecting plate 41, a lower pressure plate 42, a guide rod 43, a bidirectional screw 44, an edge-gathering plate 45, a winding plate frame 46, a connecting shaft 47, and a hot press roller 48. The edge-gathering assembly 4 is located below the second tension roller 33. Two guide rods 43 are fixedly connected in parallel to the vertical side wall of the machine body 101. One end of the bidirectional screw 44 is rotatably connected to the vertical side wall of the machine body 101, and the bidirectional screw 44 has threaded sections with opposite thread directions. Two connecting plates 41, two lower pressure plates 42, and two edge-gathering plates 45 are provided. The two connecting plates 41 are vertically parallel along the length of the feeding conveyor belt 22. The guide rod 43 passes through the two connecting plates 41 and is slidably connected to them. The two connecting plates 41 correspond one-to-one with the threaded sections of the bidirectional screw 44 with opposite thread directions and are threadedly connected.
[0039] Reference Figure 3 Each pressure plate 42 is vertically fixedly connected to the bottom edge of each connecting plate 41, and each edge trimming plate 45 is fixedly connected to the bottom edge of each pressure plate 42. The edge trimming plates 45 are located on the side of the pressure plates 42 that are far apart from each other. The end of the edge trimming plate 45 closest to the feeding box 21 is horizontally positioned, and the other end gradually extends downward and bends.
[0040] Reference Figure 3 and Figure 4 A take-up plate frame 46 is mounted on the conveyor table 102, extending along the length of the feed box 21. A take-up groove 7 is formed along the length of the take-up plate frame 46, passing through both ends of the take-up plate frame 46. A film inlet 8, communicating with the take-up groove 7, is formed on the side of the take-up plate frame 46 closest to the feed box 21. Several connecting shafts 47 are vertically rotatably connected to the bottom surface of the take-up plate frame 46. Two rows of connecting shafts 47 are symmetrically arranged on both sides of the take-up groove 7, with the take-up groove 7 as the axis of symmetry. A hot press roller 48 is fixedly sleeved on each connecting shaft 47. A drive source (not shown in the attached diagram) for driving the hot press roller 48 is provided on the conveyor table 102. An elastic pressure plate 9 is provided on one of the guide rods 43, with the end of the elastic pressure plate 9 extending downwards at an angle away from the guide rod 43 and abutting against the top surface of the take-up plate frame 46.
[0041] Reference Figure 3-5The slitting assembly 5 is mounted on the support platform 103. The slitting assembly 5 includes a slitting gantry 51, a support roller 52, a slitting shaft 53, a rotating plate 54, a slitting motor 55, a corrugated hot-pressing strip 56, and a serrated cutting blade 57. The slitting gantry 51 is mounted on the support platform 103, and the support roller 52 is rotatably connected to the slitting gantry 51. The top surface of the support roller 52 is at the same height as the winding plate frame 46. The slitting shaft 53 is rotatably connected to the rotating plate 54 at its center position and is rotatably connected to the slitting gantry 51. The slitting motor 55 is fixedly connected to the slitting gantry 51 and is drively connected to the slitting shaft 53. The rotating plate 54 has insertion slots 10 on both opposite sides in the vertical direction. An insertion strip 11 is provided along the length of the corrugated hot-pressing strip 56 on the side facing away from the corrugated surface. The insertion strip 11 is inserted into the insertion slot 10. A mounting bolt 12 for fixing the insertion strip 11 is threaded onto the rotating plate 54. A receiving groove 13 for accommodating a serrated cutting blade 57 is provided on the side of the corrugated hot-pressing strip 56 facing away from the insertion strip 11. One side of the serrated cutting blade 57 is slidably disposed in the receiving groove 13. A connecting spring 14 is provided at the bottom of the receiving groove 13, and the end of the connecting spring 14 away from the bottom of the receiving groove 13 is connected to the serrated cutting blade 57. In its natural state, the cutting edge of the serrated cutting blade 57 protrudes above the corrugated hot-pressing strip 56. When the rotating plate 54 rotates to a certain angle, the corrugated hot-pressing strip 56 comes into contact with the supporting roller 52.
[0042] Reference Figure 2 The discharge conveyor belt 6 is connected to the side of the support platform 103 away from the conveyor platform 102, and the height of the discharge conveyor belt 6 is the same as the height of the top of the support roller 52. The end of the discharge conveyor belt 6 away from the cutting gantry 51 is rotatably connected to the discharge hopper 15, and the open end of the discharge hopper 15 is inclined downward.
[0043] Reference Figure 2 and Figure 3 When packaging the basketball hoop fixing component 01, several basketball hoop fixing components 01 are placed one by one between the two abutment posts 23 of the feeding box 21, and the basketball hoop fixing components 01 are positioned between the two limiting plates 24. Driven by the feeding conveyor belt 22, the abutment posts 23 push the basketball hoop fixing components 01 along the length of the sliding groove 25 toward the film coating assembly 3. The setting of the limiting plates 24 realizes the limiting and guiding of the basketball hoop fixing frame, reducing the possibility of the basketball hoop fixing components 01 falling off the feeding box 21 during the conveying process.
[0044] Reference Figure 2-4When the basket frame fixing component 01 moves below the film coating assembly 3, the packaging film wound on the unwinding roller 31 sequentially passes over the first tension roller 32, the second tension roller 33, the turning roller 35, and the film coating roller 36, and is pressed onto the top surface of the basket frame fixing component 01 by the two lower pressure plates 42. The arrangement of the first tension roller 32 and the second tension roller 33 reduces the possibility of the packaging film failing to feed properly due to excessive or insufficient tension. The two edge-receiving plates 45, with their opposite sides, press down on both sides of the packaging film in the width direction and wrap the basket frame fixing component 01 within them. The two edges of the pressed packaging film enter the edge-receiving groove 7 through the film inlet 8, and the two rows of hot-pressing rollers 48 on both sides of the edge-receiving groove 7 heat-press the edges of the packaging film on both sides of the width direction together, and the packaging film is processed into a cylindrical shape and wraps the basket frame fixing component 01 within it.
[0045] Reference Figure 3 For packaging films of different widths, the two connecting plates 41 and two edge-gathering plates 45 move along the length of the guide rod 43 towards each other or away from each other under the drive of the two-way screw 44, thereby adjusting the distance between the two edge-gathering plates 45 and making the device suitable for packaging films of various widths. The elastic pressure plate 9 presses the cylindrical packaging film against the winding plate frame 46, allowing both sides of the packaging film in the width direction to enter the edge-gathering groove 7 for heat pressing.
[0046] Reference Figure 4-6 The rotating hot press roller 48 pulls the packaging film toward the cutting gantry 51, and the output shaft of the cutting motor 55 rotates periodically. The cutting shaft 53 and the rotating plate 54 rotate under the drive of the cutting motor 55. When the corrugated hot press strip 56 connected to the edge of the rotating plate 54 contacts the support roller 52, the corrugated hot press strip 56 heat-presses the cylindrical packaging film and separates the individual basket holders 01. The serrated cutter 57 connected to the corrugated hot press strip 56 cuts the packaging into individual packages. When cutting the packaging, the serrated cutter 57 slides in the receiving groove 13, and the connecting spring 14 shortens to accumulate elastic potential energy. The serrated cutter 57 cuts serrated edges 16 on the packaging, making it easier for the user to tear the packaging. The cut individual packages move to the discharge conveyor belt 6 for transport, and the packaged basket holders 01 are discharged and collected through the discharge port.
[0047] The implementation principle of the automatic packaging production device for basketball rack fasteners in this application embodiment is as follows: When packaging the basketball rack fasteners 01, several basketball rack fasteners 01 are placed one by one between the two abutting posts 23 of the feeding box 21. The abutting posts 23 push the basketball rack fasteners 01. The setting of the limiting plate 24 realizes the limiting and guiding of the basketball rack fasteners, reducing the possibility of the basketball rack fasteners 01 falling off the feeding box 21 during the conveying process.
[0048] The two edge-gathering plates 45, facing away from each other, press down on both sides of the packaging film in the width direction and wrap the basket frame fixing member 01 within them. The two sides of the pressed packaging film enter the edge-gathering groove 7 through the film inlet 8, and the two rows of hot press rollers 48 on both sides of the edge-gathering groove 7 heat-press the edges of the packaging film on both sides of the width together.
[0049] The elastic pressure plate 9 presses the cylindrical packaging film against the winding plate frame 46, allowing both sides of the packaging film in the width direction to enter the edge-gathering groove 7 for heat pressing. The cutting shaft 53 and the rotating plate 54 rotate under the drive of the cutting motor 55. When the corrugated heat-pressing strip 56 connected to the edge of the rotating plate 54 contacts the support roller 52, the corrugated heat-pressing strip 56 heat-presses the cylindrical packaging film and separates the individual basket frame fixing members 01. The serrated cutting blade 57 connected to the corrugated heat-pressing strip 56 cuts the packaging into individual packages.
[0050] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A basket holder fastener automatic packaging production device, characterized in that: The utility model provides packaging machine case, feeding assembly, film laminating assembly, edge closing assembly and cutting assembly, feeding assembly sets up in one side of packaging machine case, film laminating assembly, edge closing assembly and cutting assembly are sequentially arranged on packaging machine case along the feeding direction of feeding assembly, feeding assembly includes feeding conveyor belt, and one end of length direction of feeding conveyor belt is connected with packaging machine case, film laminating assembly includes unwinding roller, and unwinding roller rotation is arranged on packaging machine case, and the film is wound on unwinding roller, edge closing assembly includes winding frame, hot press roller and two edge closing plates, and two edge closing plates are symmetrically arranged along the central axis direction of feeding conveyor belt, and edge closing plate is arranged below unwinding roller, and one end of edge closing plate close to feeding conveyor belt is horizontally arranged, and the side of the other end of two edge closing plates away from each other extends downward and is arranged, and the film is pressed below edge closing plate, and winding frame is arranged on the side of edge closing plate away from feeding conveyor belt, and winding frame is provided with edge closing groove along the length direction of feeding conveyor belt, and winding frame is provided with film inlet port communicated with edge closing groove on the side close to edge closing plate, and winding frame is arranged below the film, and the both sides of film width direction enter edge closing groove through film inlet port, and hot press roller is arranged on the bottom surface of winding frame, and a plurality of hot press rollers are symmetrically arranged along edge closing groove, and cutting assembly includes corrugated hot press strip and sawtooth cutting knife, and corrugated hot press strip is arranged along the direction perpendicular to edge closing groove, and sawtooth cutting knife is arranged on corrugated hot press strip along the length direction, and the drive part for driving corrugated hot press strip to move is arranged on packaging machine case, and feeding assembly further includes feeding box and abutting column, and feeding conveyor belt is arranged in feeding box, and one end of length direction of feeding box is connected with packaging machine case, and a plurality of abutting columns are equidistantly arranged along the length direction on the surface of feeding conveyor belt, and the top surface of feeding box is provided with sliding groove along the length direction, and abutting column extends out of feeding box through sliding groove, and edge closing assembly further includes connecting plate, lower pressing plate, guide rod and bidirectional screw rod, and the connecting plate and lower pressing plate are both provided with two and are connected one by one, and the connecting plate and lower pressing plate are both vertically arranged along the length direction of edge closing groove, and guide rod is horizontally connected on the vertical side wall of packaging machine case, and guide rod penetrates two connecting plates and is slidably connected with them, and one end of bidirectional screw rod is rotationally connected on the vertical side wall of packaging machine case, and two connecting plates are threadedly connected with the opposite two thread segments on bidirectional screw rod, and two edge closing plates are connected with two lower pressing plates one by one, and elastic pressing plate is connected on guide rod, and elastic pressing plate is connected on guide rod, and the end away from guide rod of elastic pressing plate extends downward and is abuttingly connected with winding frame.
2. The automatic packaging production device for a basket fixing member according to claim 1, characterized by: The packaging box is connected with an ejection conveyor belt away from one side of the feeding assembly, and an ejection hopper is connected to one end of the ejection conveyor belt away from the packaging box.
3. The automatic basket holder fixing member packaging production device according to claim 1, characterized in that: The film covering assembly further comprises a first tensioning roller and a second tensioning roller, which are rotationally arranged on the packaging box and parallel to the unwinding roller, and the first tensioning roller and the second tensioning roller are arranged in a staggered manner in the vertical direction, and the packaging film sequentially passes the first tensioning roller and the second tensioning roller and extends below the edge closing plate.
4. The automatic basket holder packaging production device according to claim 1, characterized in that: The top surface of the feeding box is connected with a limiting plate along the length direction, and one limiting plate is symmetrically arranged on each side of the sliding groove.
5. The automatic basket holder packaging production device according to claim 1, characterized in that: The packaging box is provided with a cutting gantry, the driving member comprises a rotating plate, a cutting motor and a cutting shaft, the cutting shaft is horizontally connected to the middle position of the rotating plate, the cutting shaft is rotationally connected with the cutting gantry, the cutting motor is connected to the cutting gantry and is drivingly connected with the cutting shaft, and a corrugated hot pressing strip is arranged on each of the opposite sides of the rotating plate, and the corrugated hot pressing strip is arranged in parallel with the cutting shaft.
Citation Information
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