A Teflon tape packaging thermoforming machine

By designing a Teflon tape packaging thermoplastic machine, using a width adjustment unit, a stacking unit and a pushing unit, combined with the inclined guide table of the guide component, the problem of poor adaptability of existing equipment to tapes of different specifications is solved, automatic unloading and continuous assembly line are realized, and production efficiency and stability are improved.

CN120553230BActive Publication Date: 2025-09-26TAIXING YONGSHENG FLUOROPLASTIC PROD CO LTD
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Patent Information

Application Number
CN202511044504.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2025-09-26
Estimated Expiration
2045-07-29

AI Technical Summary

Technical Problem

Existing Teflon tape packaging equipment has poor adaptability to tapes of different specifications, low degree of material unloading automation, and poor assembly line connection, resulting in low production efficiency and cumbersome operation, making it difficult to meet the needs of large-scale and flexible production.

Method used

A Teflon tape packaging thermoforming machine was designed, which includes a main assembly, a guide assembly, and a feeding structure. The width adjustment unit, stacking unit, and pushing unit are used to automatically process tapes of different specifications. The inclined guide table of the guide assembly is combined with non-powered conveying to form a continuous production line and reduce manual intervention.

Benefits of technology

It achieves flexible adaptability to tapes of different specifications, improves packaging efficiency and stability, reduces changeover and maintenance costs, and meets the needs of mass production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of plastic sealing packaging. The present invention discloses a Teflon tape packaging thermoplastic machine, comprising a main body component, a guide component and a blanking structure. The guide component is fixedly arranged on the left side of the main body component, the guide component corresponds to the main body component, and the blanking structure is movably arranged on the guide component. The present invention has strong adaptability to specifications and is compatible with multiple types of tapes. It can process Teflon tapes of different specifications through simple adjustment, significantly improving the versatility of the equipment, automating the blanking control, accurately adjusting the blanking quantity, and controlling the intermittent blanking of a single roll or multiple rolls of tape, thereby improving production flexibility. The faulty module can be quickly located during equipment maintenance. No professional tools are required during the adjustment process, thereby reducing maintenance difficulty and cost, adapting to the rapid debugging requirements in large-scale production, reducing labor intensity, and being particularly suitable for mass production scenarios to ensure the stability and consistency of packaging quality.
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Description

Technical Field

[0001] The invention relates to the technical field of plastic sealing packaging, in particular to a Teflon tape packaging thermoplastic machine. Background Art

[0002] Teflon tape is widely used in industrial production due to its high-temperature resistance and corrosion resistance. However, existing Teflon tape packaging equipment faces many technical bottlenecks in practical applications. For example, traditional packaging equipment is usually designed for tapes of a single diameter or width. When processing Teflon tapes of different specifications, manual adjustment of the equipment structure or even replacement of components is often required, resulting in low production efficiency and cumbersome operation. Due to different packaging, a packaging bag may contain multiple rolls of tape. Existing equipment has difficulty in achieving precise feeding control of single or multiple rolls of tape, and often relies on manual stacking and delivery, increasing labor costs. Some equipment has complex structures and cumbersome adjustment components, making it difficult to quickly adapt to different production needs. The maintenance cost is high and cannot meet the requirements of large-scale and flexible production. Summary of the Invention

[0003] The present invention provides a Teflon tape packaging thermoplastic machine, which solves the problems of poor adaptability of existing equipment to tapes of different specifications, low degree of material unloading automation, and poor assembly line connection, realizes the process of stacking, guiding, bagging and plastic sealing of tapes, and improves packaging efficiency and stability. To achieve the purpose of the present invention, the following technical scheme is adopted.

[0004] In order to solve the above-mentioned problem, the present invention provides the following technical solution: a Teflon tape packaging thermoplastic machine, comprising a main body component, a guide component and a blanking structure, wherein the guide component is fixedly arranged on the left side of the main body component, the guide component corresponds to the main body component, and the blanking structure is movably arranged on the guide component; the blanking structure is used for stacking and loading tapes of different diameters or widths, and can realize single or multiple rolls of tape blanking, the guide component is used to automatically guide the tape to the main body component, transport it to the right through the main body component, and perform bagging and plastic sealing.

[0005] Preferably, the main body assembly includes a base, a first conveyor belt assembly, a bag opening machine body, a second conveyor belt assembly, a laminator body and a third conveyor belt assembly; the first conveyor belt assembly is fixedly arranged on the upper wall of the base and close to the left end, the bag opening machine body is fixedly arranged on the base and is located on the right side of the first conveyor belt assembly, the bag opening machine body is matched with the first conveyor belt assembly and are in the same horizontal plane, the second conveyor belt assembly is fixedly arranged on the right side of the bag opening machine body, and the left end of the second conveyor belt assembly is matched with the right side of the bag opening machine body, the laminator body is fixedly arranged on the right side of the second conveyor belt assembly, and the laminator body is matched with the right end of the second conveyor belt assembly, the third conveyor belt assembly is fixedly arranged on the right side of the laminator body, and the left end of the third conveyor belt assembly is matched with the right side of the laminator body.

[0006] The lifting mechanism is a bottom rotatable plate, and the lifting mechanism is a bottom rotatable plate, and the lifting mechanism is a bottom rotatable plate, and the lifting mechanism is a bottom rotatable plate.

[0007] Preferably, the unloading structure includes a width adjusting unit, a stacking unit and a pushing unit; the width adjusting unit is movably arranged at the left end of the guide platform, the stacking unit is movably arranged on the width adjusting unit, and the pushing unit is fixedly arranged on the width adjusting unit.

[0008] The lifting mechanism is a lifting mechanism, and the lifting mechanism is a lifting mechanism, and the lifting mechanism is a lifting mechanism. The lifting mechanism is a lifting mechanism, and the lifting mechanism is a lifting mechanism. The lifting mechanism is a lifting mechanism, and the lifting mechanism is a lifting mechanism.

[0009] Preferably, the stacking unit includes a pair of width-adjusting screws, a pair of clamps and a pair of baffles; the pair of width-adjusting screws are movably inserted into the adjusting slots, and the rotating handles on the width-adjusting screws correspond to the driving ports, one end of the pair of clamps are movably inserted into the adjusting slots, and one end of the clamps is screwed to the width-adjusting screws, the other end of the clamps is arc-shaped, and a discharge port is provided on the right side wall of the clamps near one end, the pair of baffles are concave, and one end of the pair of baffles are symmetrically arranged on the upper walls at both ends of the unloading seat, and the baffles correspond to the discharge ports respectively, the other end of the baffle is located on the right side of the discharge port, and the other end of the baffle is located between the clamps.

[0010] Preferably, the pushing unit includes a supporting seat, an electric slide rail and a pushing rack; the supporting seat is fixedly arranged at the middle of the left side wall of the unloading seat, and a second telescopic opening corresponding to the telescopic opening is opened in the middle of the supporting seat. One end of the electric slide rail is fixedly arranged on the supporting seat and is located between the height-adjusting tray and the adapter rack. The electric slide rail corresponds to the middle of the height-adjusting tray. One end of the pushing rack is movable through the sliding opening and is fixedly arranged on the electric slide rail. The other end of the pushing rack is movable through the first telescopic opening and the second telescopic opening respectively.

[0011] Preferably, the pusher rack can movably pass through between the clamping plates, and the pusher rack passes through between the blocking rods.

[0012] Preferably, the height-adjusting support plate can be raised and lowered on the pushing rack through a sliding opening.

[0013] The Teflon tape packaging thermoforming machine proposed by the present invention has the following beneficial effects:

[0014] 1. The width adjustment unit drives the height adjustment of the pallet by the height adjustment screw, which can adjust the blanking thickness to adapt to tapes of different widths. The width adjustment screw of the stacking unit drives the clamping plate to move, and the spacing is precisely adjusted to adapt to the stacking limit of tapes of different diameters. There is no need to replace the main structure of the equipment. Simple adjustments can handle Teflon tapes of different specifications, significantly improving the versatility of the equipment and reducing the cost and time of changeovers when producing multiple specifications.

[0015] 2. The pusher unit's electric slide drives the pusher rack to reciprocate, and the height adjustment tray on the pusher rack is raised and lowered to control the intermittent unloading of single or multiple rolls of tape. This achieves precise control of the unloading quantity, avoids errors caused by manual intervention, meets different packaging requirements (such as individual packaging of a single roll or group packaging of multiple rolls), and improves production flexibility.

[0016] 3. The inclined guide platform of the guide assembly uses the belt's own gravity to achieve unpowered conveying. Together with the first conveyor belt of the main assembly, the bag-opening machine body, the second conveyor belt, the laminator body, and the third conveyor belt, it forms a continuous production line, eliminating the need for additional power to drive the conveying process. The production line operation shortens the process connection time, avoids tape jamming or deviation, and significantly improves overall packaging efficiency.

[0017] 4. The width adjustment unit, stacking unit, and pusher unit adopt a detachable modular structure (such as a center plate and side baffles connected by bolts), and the adjustment components (screws and slide rails) are easy to operate. During equipment maintenance, the faulty module can be quickly located, and the adjustment process does not require professional tools, reducing maintenance difficulty and cost, and adapting to the rapid debugging needs in large-scale production.

[0018] 5. The entire process from tape unloading, guiding, bag opening to plastic sealing does not require manual intervention. The pushing unit and the guiding component are automatically connected, and the main component completes the packaging process; it reduces manual operation errors and labor intensity, which is especially suitable for large-scale production scenarios and ensures the stability and consistency of packaging quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the assembly structure of the present invention;

[0020] Figure 2 for Figure 1 Schematic diagram of the local structure in;

[0021] Figure 3 This is a schematic diagram of the assembly structure of the main components of the present invention;

[0022] Figure 4 This is a schematic diagram of the assembly structure of the guide assembly of the present invention;

[0023] Figure 5 This is a schematic diagram of the split structure of the blanking structure of the present invention;

[0024] Figure 6 This is a schematic diagram of the assembly structure of the blanking structure of the present invention;

[0025] Figure 7 It is a schematic diagram of the assembly structure of the blanking structure and the guiding component of the present invention.

[0026] In the figure: 1. Main body assembly, 11. Base, 12. First conveyor belt assembly, 13. Bag-opening machine body, 14. Second conveyor belt assembly, 15. Laminator body, 16. Third conveyor belt assembly, 2. Guide assembly, 21. Guide frame, 22. Guide platform, 23. Hydraulic cylinder, 24. Centering plate, 25. Side baffle, 26. Bolt, 3. Width adjustment unit, 31. Unloading seat, 32. Height adjustment screw, 33. Height adjustment support plate, 34. Adapter frame, 4. Stacking unit, 41. Width adjustment screw, 42. Clamp, 43. Baffle, 5. Pushing unit, 51. Bearing seat, 52. Electric slide rail, 53. Pushing frame, 61. First telescopic opening, 62. Second telescopic opening, 63. Lifting slot, 71. Drive opening, 72. Sliding opening, 73. Adjustment slot. DETAILED DESCRIPTION

[0027] The following is combined with Figure 1-Figure 7 A detailed description of the specific implementation of the present invention is given below.

[0028] Embodiment, the present invention provides a technical solution: a Teflon tape packaging thermoplastic machine, including a main body component 1, a guide component 2 and a blanking structure, the guide component 2 is fixedly arranged on the left side of the main body component 1, the guide component 2 corresponds to the main body component 1, and the blanking structure is movably arranged on the guide component 2; the blanking structure is used for stacking and loading tapes of different diameters or widths, and can realize single roll or multiple rolls of tape blanking, the guide component 2 is used to automatically guide the tape to the main body component 1, and transport it to the right through the main body component 1 to perform bagging and plastic sealing.

[0029] As a further solution of the present invention, the main body component 1 includes a base 11, a first conveyor belt component 12, a bag-opening machine body 13, a second conveyor belt component 14, a plastic sealing machine body 15 and a third conveyor belt component 16; the first conveyor belt component 12 is fixedly arranged on the upper wall of the base 11 and close to the left end, the bag-opening machine body 13 is fixedly arranged on the base 11 and is located on the right side of the first conveyor belt component 12, the bag-opening machine body 13 is matched with the first conveyor belt component 12 and is on the same horizontal plane, the second conveyor belt component 14 is fixedly arranged on the right side of the bag-opening machine body 13, and the left end of the second conveyor belt component 14 is aligned with the bag-opening machine body 13. The right sides are relatively connected and fit together. The laminator body 15 is fixedly arranged on the right side of the second conveyor belt assembly 14, and the laminator body 15 is matched with the right end of the second conveyor belt assembly 14. The third conveyor belt assembly 16 is fixedly arranged on the right side of the laminator body 15, and the left end of the third conveyor belt assembly 16 is matched with the right side of the laminator body 15. Supported by the base 11, the tape is conveyed to the right by the first conveyor belt assembly 12 into the packaging bag opened by the bag-opening machine body 13, and the packaged bag is moved to the laminator body 15 by means of the second conveyor belt assembly 14 for heat sealing, and finally guided out by the third conveyor belt assembly 16.

[0030] More specifically, after the first conveyor belt assembly 12 is started, the tape guided out by the blanking structure is conveyed to the right until the tape enters the packaging bag opened by the bag opening machine body 13; after the bag opening machine body 13 completes the packaging bag opening and accommodates the tape, the second conveyor belt assembly 14 moves the bag body to the right to the laminator body 15, and the laminator body 15 performs hot-melt plastic sealing on the bag opening. Then, the third conveyor belt assembly 16 guides the finished tape to the subsequent workstation, completing the entire packaging process. The packaging table is delivered to the bag opening machine body 13, and the packaging bag can be opened by manual or other robotic arms through the symmetrical vacuum adsorption of the bag opening machine body 13.

[0031] As a further solution of the present invention, the guide assembly 2 includes a pair of guide frames 21, a guide platform 22, a hydraulic cylinder 23, a pair of centering plates 24, a pair of side baffles 25 and a plurality of bolts 26; the pair of guide frames 21 are all T-shaped, and the bottom ends of the pair of guide frames 21 are symmetrically arranged on the upper wall of the left end of the base 11, the guide platform 22 is L-shaped, one end of the guide platform 22 is tilted between the top ends of the guide frames 21, and the other end of the guide platform 22 is horizontally located on the left side of the first conveyor belt assembly 12, and the other end of the guide platform 22 is located above the left end of the first conveyor belt assembly 12, one end of the hydraulic cylinder 23 is movably arranged between the left ends of the guide frames 21, and the hydraulic cylinder 23 is tilted to the left, and one end of a pair of centering plates 24 is movably arranged by bolts 26 On the upper wall of one end of the guide platform 22, and symmetrically located at the front and rear ends, a pair of centering plates 24 can be tilted relative to each other, and one end of a pair of side baffles 25 are symmetrically clamped on the other end of the guide platform 22, and the other end of the side baffles 25 fits in with the upper wall of the guide platform 22, and a number of bolts 26 are movably screwed on the lower wall of one end of the side baffles 25 and pressed against the lower wall of the guide platform 22; the guide platform 22 is supported by the guide frame 21 and the hydraulic cylinder 23 is movably placed. The belt can be movably dropped onto the first conveyor belt assembly 12 by the tilted guide platform 22, the belt is centered by the centering plate 24, and is blocked from sliding down by the side baffles 25. The side baffles 25 and the centering plate 24 can be adjusted by bolts 26 to fit belts of different diameters.

[0032] More specifically, the tape guided out by the unloading structure slides down through the inclined end of the guide platform 22, automatically rolls toward the horizontal end along the inclined surface, and finally falls onto the first conveyor belt assembly 12; a pair of centering plates 24 adjust the inclination angle through bolts 26, and correct the left and right position of the tape during the sliding process to ensure that the tape moves along the center line of the guide platform 22; the side baffles 25 are fixed to the horizontal end of the guide platform 22 by bolts 26, forming a limiting structure on both sides to prevent the tape from shifting during the process of sliding to the first conveyor belt assembly 12.

[0033] As a further solution of the present invention, the unloading structure includes a width adjustment unit 3, a stacking unit 4 and a pushing unit 5; the width adjustment unit 3 is movably arranged at the left end of the guide platform 22, the stacking unit 4 is movably arranged on the width adjustment unit 3, and the pushing unit 5 is fixedly arranged on the width adjustment unit 3.

[0034] As a further solution of the present invention, the width adjustment unit 3 includes a blanking seat 31, a height adjustment screw 32, a height adjustment support plate 33 and an adapter frame 34; the blanking seat 31 is concave, and three first telescopic openings 61 are equidistantly provided in the middle of the left side wall of the blanking seat 31, and a driving opening 71 is provided in the middle of the bottom ends of the front and rear side walls of the blanking seat 31, and a lifting slot 63 is provided on the left side wall of the blanking seat 31, and the lifting slot 63 is located behind the first telescopic opening 61, the height adjustment screw 32 movably passes through the lifting slot 63, the height adjustment support plate 33 is movably embedded in the blanking seat 31, and the left end of the height adjustment support plate 33 is movably inserted in the first telescopic opening 61 and the lifting slot 63 respectively, the height adjustment support plate 33 is movably screwed on the height adjustment screw 32 in the lifting slot 63, and the middle of the height adjustment support plate 33 is provided with a lifting slot 63. The sliding openings 72 corresponding to the first telescopic openings 61 are a pair, and the front and rear ends of the middle part of the height-adjusting support plate 33 are symmetrically provided with adjustment slots 73. The adapter frame 34 is fixedly arranged on the lower wall of the right end of the unloading seat 31, and the adapter frame 34 is located below the height-adjusting support plate 33. The adapter frame 34 is movably connected to the left end of the guide platform 22, and the adapter frame 34 is movably connected to the telescopic end of the hydraulic cylinder 23; the height-adjusting support plate 33 is caused to move up and down in the unloading seat 31 by rotating the height-adjusting screw 32, which is used to adjust the unloading of tapes of different thicknesses or quantities. The adapter frame 34 is movably connected to the guide platform 22 and is connected to the hydraulic cylinder 23. With the help of the hydraulic cylinder 23, the unloading seat 31 can be driven to flip, causing the splint 42 in the stacking unit 4 to flip from vertical to left to horizontal, so as to facilitate the delivery of tapes.

[0035] More specifically, the height-adjusting screw 32 is rotated to drive the height-adjusting pallet 33 to move up and down in the lifting slot 63 through threaded transmission. Since the left end of the height-adjusting pallet 33 is inserted into the first telescopic opening 61, its lifting range is limited by the height of the first telescopic opening 61; the upper surface of the height-adjusting pallet 33 is used to carry the stacked tapes. By adjusting its height, the amount of tapes discharged at a single time can be controlled to adapt to different packaging needs.

[0036] As a further solution of the present invention, the stacking unit 4 includes a pair of width-adjusting screws 41, a pair of clamping plates 42 and a pair of blocking rods 43; the pair of width-adjusting screws 41 are movable through the adjusting slots 73, and the turning handles on the width-adjusting screws 41 correspond to the driving ports 71, one end of a pair of clamping plates 42 are movably inserted into the adjusting slots 73, and one end of the clamping plates 42 is screwed to the width-adjusting screws 41, the other end of the clamping plates 42 is arc-shaped, and a discharge port is opened on the right side wall of the clamping plates 42 near one end. The baffles 43 are both concave, and one end of a pair of baffles 43 are symmetrically arranged on the upper walls of the two ends of the unloading seat 31, and the baffles 43 correspond to the discharge ports respectively, and the other end of the baffle 43 is located on the right side of the discharge port, and the other end of the baffle 43 is located between the clamps 42; by rotating the width adjustment screw 41, the clamps 42 are moved in the adjustment groove 73 to adjust different spacings for stacking and limiting tapes of different diameters, and the tape can be moved out of the discharge port, while the tape is continuously blocked above the discharge port.

[0037] More specifically, by rotating the handle of the width-adjusting screw 41, the splint 42 is driven to move horizontally in the adjustment slot 73 through threaded transmission, thereby changing the spacing between a pair of splints 42; when processing a large-diameter tape, the width-adjusting screw 41 rotates outward, and the splints 42 move to both sides to increase the spacing; when processing a small-diameter tape, the width-adjusting screw 41 rotates inward, and the splints 42 move toward the middle to reduce the spacing; the inner contour of the arc-shaped splint 42 fits with the outer circle of the tape, thereby realizing the limited stacking of tapes of different diameters.

[0038] As a further solution of the present invention, the pushing unit 5 includes a supporting seat 51, an electric slide rail 52 and a pushing frame 53; the supporting seat 51 is fixedly arranged in the middle of the left side wall of the unloading seat 31, and a second telescopic opening 62 corresponding to the telescopic opening is opened in the middle of the supporting seat 51. One end of the electric slide rail 52 is fixedly arranged on the supporting seat 51 and is located between the height adjustment tray 33 and the adapter frame 34. The electric slide rail 52 corresponds to the middle of the height adjustment tray 33. One end of the pushing frame 53 movably passes through the sliding opening 72 and is fixedly arranged on the electric slide rail 52. The other end of the pushing frame 53 movably passes through the first telescopic opening 61 and the second telescopic opening 62 respectively; the pushing frame 53 is driven to move to the right by the electric slide rail 52, and the tape that fits with the discharge port is pushed by one end of the pushing frame 53, and the other end of the pushing frame 53 moves to under the upper tape for bearing. When the pushing frame 53 is reset, the tape falls due to gravity again.

[0039] More specifically, after the electric slide rail 52 is started, it drives the pusher rack 53 to move to the right, and the front end of the pusher rack 53 moves in the sliding opening 72, extends between the clamps 42 and pushes out the tape from between the discharge openings; the front end of the pusher rack 53 pushes the bottom layer of tape aligned with the discharge opening, so that it moves out of the discharge opening and slides to the guide platform 22, completing the unloading action of a single roll or multiple rolls of tape; when adjusting the width of the tape and the amount of unloading, the height of the support plate 33 is adjusted so that it can be raised and lowered on the pusher rack 53.

[0040] As a further solution of the present invention, the pusher rack 53 can movably pass through between the clamping plates 42 , and the pusher rack 53 passes through between the blocking rods 43 .

[0041] As a further solution of the present invention, the height-adjusting support plate 33 can be raised and lowered on the pusher rack 53 through the sliding opening 72 .

[0042] The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process. The specific operations are as follows.

[0043] The device is stably supported by the base 11. When the device is powered on, the hydraulic cylinder 23 movably provided on the guide frame 21 of the guide assembly 2 is driven to retract. The extension end of the hydraulic cylinder 23 is movably connected to the adapter frame 34, which drives the unloading seat 31 in the width adjustment unit 3 to flip on the guide platform 22, prompting the clamping plate 42 in the stacking unit 4 to flip from a vertical state to a horizontal state.

[0044] According to the diameter of the packaging tape, manually rotate the width adjustment screw 41 located at the driving port 71 to force the clamping plate 42 to move relatively in the adjustment slot 73 to adjust the spacing;

[0045] According to the quantity of unloading and packaging, the height-adjusting screw 32 is rotated to cause the height-adjusting support plate 33 to rise and fall in the lifting groove 63 with the help of the height-adjusting screw 32, that is, the height-adjusting support plate 33 is forced to move in the unloading seat 31, thereby driving the position adjustment of the end of the clamping plate 42 provided with the discharge port in the unloading seat 31, and at the same time, the distance between the other end of the blocking rod 43 and the height-adjusting support plate 33 is adjusted, so that the distance between the other end of the blocking rod 43 and the height-adjusting support plate 33 is consistent with the width and quantity of the unloading tape;

[0046] The rolled tape is placed between the clamping plates 42. When the clamping plates 42 are flipped and reset, the tapes are stacked in the longitudinal direction, and the bottom tape is located on the upper arm of the height-adjusting support plate 33.

[0047] At this time, the electric slide rail 52 on the supporting seat 51 in the pushing unit 5 can be driven to drive the pushing rack 53 to move from left to right, that is, the pushing rack 53 moves from the left side of the clamping plate 42 to the right. The right end of the pushing rack 53 pushes the corresponding adhesive tape to slide to the right and pass through the discharge port and fall onto the guide table 22 of the guide assembly 2.

[0048] Since the upper tape is blocked by the frame plate and cannot be moved out by force, it is limited between the clamping plates 42. As the tape is pushed out, the left end of the push plate will pass through the clamping plates 42 and carry the upper tape. When the pusher rack 53 is reset, the tape falls due to gravity and is re-stacked on the height-adjusting support plate 33.

[0049] The tape falls onto the guide platform 22, where it slides due to gravity due to the tilt of the guide platform 22. The tape is restrained by the centering plate 24 provided by the bolts 26, and slides along the side baffles 25 to the center, accurately falling onto the first conveyor belt assembly 12. The first conveyor belt assembly 12 moves rightward, driving the tape into the opened bag on the bag-opening machine body 13.

[0050] The packaging bag is then conveyed to the right by the second conveyor belt assembly 14 to the laminator body 15 for hot melt plastic sealing, and finally guided out by the third conveyor belt assembly 16;

[0051] When the pushing rack 53 pushes materials, the unloading rack will move along the sliding opening 72 , and the left end of the unloading rack will move through the first telescopic opening 61 and the second telescopic opening 62 ; when the width adjustment plate moves with the help of the height adjustment screw 32 , it will move on one end of the pushing rack 53 .

[0052] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A Teflon tape packaging thermoplastic machine, characterized in that: It comprises a main body component (1), a guide component (2) and a blanking structure, wherein the guide component (2) is fixedly arranged on the left side of the main body component (1), the guide component (2) corresponds to the main body component (1), and the blanking structure is movably arranged on the guide component (2); The unloading structure is used for stacking and loading tapes of different diameters or widths, and can realize unloading of single or multiple rolls of tapes. The guide assembly (2) is used for automatically guiding the tapes onto the main assembly (1), conveying them to the right through the main assembly (1) and performing bagging and plastic sealing. The guide assembly (2) includes a pair of guide frames (21), a guide platform (22), a hydraulic cylinder (23), a pair of centering plates (24), a pair of side baffles (25), and a plurality of bolts (26); The material discharging structure comprises a width adjustment unit (3), a stacking unit (4) and a material pushing unit (5); the width adjustment unit (3) is movably arranged at the left end of the guide platform (22), the stacking unit (4) is movably arranged on the width adjustment unit (3), and the material pushing unit (5) is fixedly arranged on the width adjustment unit (3); The width adjustment unit (3) includes a blanking seat (31), a height adjustment screw (32), a height adjustment support plate (33) and an adapter frame (34); The material discharging seat (31) is concave, and three first telescopic openings (61) are equidistantly provided in the middle of the left side wall of the material discharging seat (31). A driving opening (71) is provided in the middle of the bottom ends of the front and rear side walls of the material discharging seat (31). A lifting groove (63) is provided on the left side wall of the material discharging seat (31), and the lifting groove (63) is located at the rear side of the first telescopic opening (61). The height adjustment screw (32) movably passes through the lifting groove (63). The height adjustment support plate (33) is movably embedded in the material discharging seat (31), and the left end of the height adjustment support plate (33) is movably inserted into the first telescopic opening (61) and the lifting groove (63). The height-adjusting support plate (33) is movably connected to the height-adjusting screw rod (32) in the lifting groove (63). A sliding opening (72) corresponding to one of the first telescopic openings (61) is provided in the middle of the height-adjusting support plate (33). Adjustment slots (73) are symmetrically provided at the front and rear ends of the middle of the height-adjusting support plate (33). The adapter frame (34) is fixedly arranged on the lower wall of the right end of the blanking seat (31), and the adapter frame (34) is located below the height-adjusting support plate (33). The adapter frame (34) is movably connected to the left end of the guide platform (22), and the adapter frame (34) is movably connected to the telescopic end of the hydraulic cylinder (23); The pushing unit (5) comprises a bearing seat (51), an electric slide rail (52) and a pushing frame (53); The bearing seat (51) is fixedly arranged at the middle of the left side wall of the unloading seat (31), and a second telescopic opening (62) corresponding to the telescopic opening is opened in the middle of the bearing seat (51). One end of the electric slide rail (52) is fixedly arranged on the bearing seat (51) and is located between the height-adjusting support plate (33) and the adapter frame (34). The electric slide rail (52) corresponds to the middle of the height-adjusting support plate (33). One end of the pushing frame (53) is movable through the sliding opening (72) and is fixedly arranged on the electric slide rail (52). The other end of the pushing frame (53) is movable through the first telescopic opening (61) and the second telescopic opening (62).

2. A Teflon tape packaging thermoforming machine according to claim 1, characterized in that: The main body component (1) includes a base (11), a first conveyor belt component (12), a bag-opening machine body (13), a second conveyor belt component (14), a laminator body (15), and a third conveyor belt component (16); The first conveyor belt assembly (12) is fixedly arranged on the upper wall of the base (11) and close to the left end. The bag-opening machine body (13) is fixedly arranged on the base (11) and is located on the right side of the first conveyor belt assembly (12). The bag-opening machine body (13) is matched with the first conveyor belt assembly (12). The second conveyor belt assembly (14) is fixedly arranged on the right side of the bag-opening machine body (13), and the left end of the second conveyor belt assembly (14) is matched with the right side of the bag-opening machine body (13). The laminating machine body (15) is fixedly arranged on the right side of the second conveyor belt assembly (14), and the laminating machine body (15) is matched with the right end of the second conveyor belt assembly (14). The third conveyor belt assembly (16) is fixedly arranged on the right side of the laminating machine body (15), and the left end of the third conveyor belt assembly (16) is matched with the right side of the laminating machine body (15).

3. A Teflon tape packaging thermoforming machine according to claim 2, characterized in that: The pair of guide frames (21) are both T-shaped, and the bottom ends of the pair of guide frames (21) are symmetrically arranged on the upper wall of the left end of the base (11). The guide platform (22) is L-shaped, and one end of the guide platform (22) is tilted and arranged between the top ends of the guide frames (21), and the other end of the guide platform (22) is horizontally located on the left side of the first conveyor belt assembly (12). The other end of the guide platform (22) is located above the left end of the first conveyor belt assembly (12). One end of the hydraulic cylinder (23) is movably arranged between the left ends of the guide frames (21), and the hydraulic cylinder (2 3) tilted to the left, one end of a pair of the centering plates (24) is movably set on the upper wall of one end of the guide platform (22) through the bolts (26), and is respectively located symmetrically at the front and rear ends. The pair of the centering plates (24) can be relatively tilted, one end of a pair of the side baffles (25) is symmetrically clamped on the other end of the guide platform (22), and the other end of the side baffles (25) is fitted with the upper wall of the guide platform (22), and a number of the bolts (26) are movably screwed on the lower wall of one end of the side baffles (25) and pressed against the lower wall of the guide platform (22).

4. A Teflon tape packaging thermoforming machine according to claim 3, characterized in that: The stacking unit (4) comprises a pair of width-adjusting screws (41), a pair of clamping plates (42), and a pair of blocking rods (43); A pair of width-adjusting screw rods (41) are movable through the adjustment slots (73), and the rotating handle on the width-adjusting screw rod (41) corresponds to the driving port (71). One end of a pair of clamping plates (42) is movably inserted into the adjustment slots (73), and one end of the clamping plate (42) is screwed to the width-adjusting screw rod (41). The other end of the clamping plate (42) is arc-shaped, and a discharge port is provided on the right side wall of the clamping plate (42) near one end. The pair of baffle rods (43) are both concave, and one end of the pair of baffle rods (43) are symmetrically arranged on the upper walls of both ends of the unloading seat (31), and the baffle rods (43) correspond to the discharge ports respectively. The other end of the baffle rod (43) is located on the right side of the discharge port, and the other end of the baffle rod (43) is located between the clamping plates (42).

5. A Teflon tape packaging thermoforming machine according to claim 4, characterized in that: The pusher rack (53) is capable of movably passing through between the clamping plates (42), and the pusher rack (53) passes through between the blocking rods (43).

6. A Teflon tape packaging thermoforming machine according to claim 5, characterized in that: The height-adjusting support plate (33) can be raised and lowered on the pusher rack (53) through the sliding opening (72).

Citation Information

Patent Citations

  • Forming adhesive tape arranging and packaging machine

    CN214029438U

  • Adhesive tape packaging thermoplastic machine

    CN221893382U