Conveying device for adhesive tape packaging
By using technical means such as telescopic struts and directional baffles in the tape conveying device, the problems of residual tape pollution and unstable conveying of tape are solved, accurate positioning and automatic grasping of tape are achieved, and the conveying efficiency and device life are improved.
Patent Information
- Application Number
- CN202510536027.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2025-06-24
AI Technical Summary
After the tape is sliced, the tape is not easy to disengage due to the residual glue spill, and the residual glue contaminates the conveyor belt, damages the coating, and increases the risk of aging.
The tape is tightly pushed and fixed to the inner wall of the tape cylinder to prevent the tape cutting surface from touching the surface of the conveying device, and the tape positioning structure composed of the directional baffle and the trigger rotor are used to achieve accurate positioning and automatic grasping of the tape.
It effectively avoids the adhesive tape sticking to the surface of the conveyor belt, prevents the contamination and damage of the conveyor belt, improves the stability and efficiency of the tape conveyor, and extends the service life of the conveyor device.
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Figure CN120191572A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of tape packaging, and particularly to a conveying device for tape packaging. Background Art
[0002] The manufacturing process of tapes includes steps such as glue coating, winding, slitting, etc. After slitting, it is necessary to use a vision inspection instrument to inspect the tape size and shape and then bag it. During this process, the tape is transferred over a short distance by a conveyor belt, and a vision inspection instrument is installed on the side of the conveyor belt so that the tape is visually inspected while being conveyed. Traditional tapes generally use a belt conveyor for short-distance transfer.
[0003] When a traditional conveyor belt is used for short-distance transfer in tape packaging work, since the cut surface of the tape will overflow with residual glue, when the cut surface of the tape fits against the surface of the conveying device, it will adhere to the conveying device due to the overflow of residual glue, resulting in the tape being difficult to detach from the surface of the conveying device; if the residual glue overflowing from the cut surface of the tape adheres to the surface of the conveyor belt, it will contaminate the surface of the conveyor belt. The cleaning work of the residual glue is cumbersome, and it is also easy to damage the coating on the surface of the conveyor belt body, accelerating the aging of the conveying device. Summary of the Invention
[0004] The present invention provides a conveying device for tape packaging to solve the problems that when a traditional conveyor belt is used for short-distance transfer in tape packaging work, since the cut surface of the tape will overflow with residual glue, when the cut surface of the tape fits against the surface of the conveying device, it will adhere to the conveying device due to the overflow of residual glue, resulting in the tape being difficult to detach from the surface of the conveying device; if the residual glue overflowing from the cut surface of the tape adheres to the surface of the conveyor belt, it will contaminate the surface of the conveyor belt. The cleaning work of the residual glue is cumbersome, and it is also easy to damage the coating on the surface of the conveyor belt body, accelerating the aging of the conveying device.
[0005] The present invention provides a conveying device for tape packaging, which specifically includes: a conveyor support base, above which a conveyor frame is installed. Inside the conveyor frame, two frame rotating shafts are rotatably connected. The frame rotating shafts are fixedly connected with two driving belt pulleys. A conveyor belt is installed on the two driving belt pulleys on both sides. The rear end of the left frame rotating shaft is connected to the rotating shaft of a conveying driving member. Inside the conveyor frame, a directional baffle is connected through a baffle connecting frame. A tape inner cylinder supporting cylinder is fixedly connected to the outer side of the conveyor belt. Inside the tape inner cylinder supporting cylinder, a triggering rotating rod is rotatably connected. One end of the triggering rotating rod facing the center of the conveyor frame is rotatably connected to a bearing through a rotating link. Two elliptical push plates are installed on the triggering rotating rod through interference fit. The lower end of the triggering rotating rod is fixedly connected with a rotating rod reset disk. Inside the tape inner cylinder supporting cylinder, there is a torsion spring connecting disk. The top of the torsion spring connecting disk is fixedly connected with a reset torsion spring. The upper end of the reset torsion spring is fixedly connected with the rotating rod reset disk. Four side guiding openings are opened on the wall of the tape inner cylinder supporting cylinder. A telescopic supporting rod is slidably connected inside the side guiding openings. Above the telescopic supporting rod, there is a supporting rod sliding top pin. The lower end of the supporting rod sliding top pin is slidably connected to the elliptical push plate.
[0006] Further, the left end of the conveyor support base is connected with a feeding sliding table through a bracket. The feeding sliding table is inclined to the right. The slideway above the feeding sliding table is tapered from left to right. The right end opening of the slideway of the feeding sliding table is located below the left end of the conveyor frame.
[0007] Further, the directional baffle is parallel to the upper surface of the conveyor belt. The left end of the directional baffle is bent outward to process a baffle wedge opening with a flared structure.
[0008] Further, a limiting wheel groove is circumferentially opened on the wheel surface of the driving belt pulley. Two belt body limiting strips are provided on the inner surface of the conveyor belt. The belt body limiting strips are inserted into the limiting wheel groove and are in clearance fit with each other. A belt body socket with a circular hole structure is penetrated through the conveyor belt.
[0009] Further, the upper end of the tape inner cylinder supporting cylinder is connected with a supporting cylinder limiting ring through a screw. The lower end of the supporting cylinder limiting ring is inserted into the belt body socket. The bottom opening of the tape inner cylinder supporting cylinder is installed with a supporting cylinder bottom plate through a screw. The torsion spring connecting disk is fixedly connected to the center of the supporting cylinder bottom plate.
[0010] Further, a first torsion spring socket is opened on the edge of the upper surface of the torsion spring connecting disk. The bottom end of the reset torsion spring is tightly inserted into the first torsion spring socket. A second torsion spring insertion hole is opened on the edge of the lower surface of the rotating rod reset disk. The top end of the reset torsion spring is tightly inserted into the second torsion spring insertion hole.
[0011] Further, when the triggering rotating rod moves to the lower section along with the conveyor belt, the linkage push wheel rolls and connects with the directional baffle, and the rotating link is parallel to the directional baffle.
[0012] Furthermore, when the triggering rotary rod moves to the upper section along with the conveyor belt, the rotating connecting rod is perpendicular to the front surface of the conveyor frame.
[0013] Furthermore, the elliptical push plate is an elliptical plate body, an elliptical push plate slide groove is opened on the upper surface of the elliptical push plate, the long axes of the two push plate slide grooves in the same trigger rotary rod are perpendicular to each other, and the end of the support rod sliding ejector pin is slidably connected to the push plate slide groove.
[0014] The present invention provides a conveying device for tape packaging, which has the following beneficial effects: The adhesive tape is fixed to the conveyor belt by tightly pushing the inner wall of the tape cylinder with the telescopic struts. In this process, the surface of the conveyor belt body is prevented from contacting the tape cutting surface, thereby preventing the tape cutting surface from adhering to the surface of the tape body and being difficult to detach. At the same time, it is prevented that the residual adhesive overflowing from the tape cutting surface adheres to the surface of the tape body and is difficult to remove. This prevents the outer layer of the conveyor belt body from being damaged due to cleaning the residual adhesive. The adhesive tape is accurately positioned by tightly fitting the four telescopic struts that are synchronously pushed from the inside to the outside with the inner cylinder surface of the tape, thereby ensuring that the center of the tape does not deviate, preventing the tape from shaking during transportation, and improving the stability of the tape transportation.
[0015] In addition, a directional baffle is provided inside the belt conveying device. As the conveyor belt rotates counterclockwise, the belt inner tube support tube and the trigger rotary rod are driven to rotate counterclockwise in the conveyor frame. When a group of belt positioning structures composed of the belt inner tube support tube, the trigger rotary rod and the telescopic support rod are not positioned for the belt, the trigger rotary rod, under the action of the reset torsion spring, makes the rotating connecting rod perpendicular to the front surface of the conveyor frame. When the group of belt positioning structures rotates to the left end of the conveyor belt and rotates from top to bottom, the belt inner tube support tube is inserted into the belt tube at the tapered mouth at the right end of the feed slide. and drag it to the right. During this process, the linked push wheel enters the wedge of the baffle and contacts the inclined surface of the wedge of the baffle. As the conveyor belt continues to run, the group of belt positioning structures moves to the right, causing the linked push wheel to rotate left under the obstacle of the directional baffle, driving the trigger rotary rod and the elliptical push plate to rotate ninety degrees. The sliding ejector pin of the support rod moves outward following the change in the direction of the push plate slide slot, causing the telescopic support rod to move outward to achieve push-up positioning, thereby realizing the automatic grabbing action of the tape drum, and the object can be grabbed without setting multiple groups of grippers in the conveyor belt.
[0016] In addition, it has the function of fixed-point material discharge of workpieces. When the inner tube of the tape support tube reaches the right end of the conveyor frame, the linked push wheel disengages from the directional baffle, triggering the rotary rod and the elliptical push plate to reset under the elastic force of the reset torsion spring. The sliding connection between the support rod sliding pin and the push plate slide groove makes the telescopic support rod retract inward, ending the grabbing of the tape tube and making the tape tube fall into the packaging container below in a straightened state, which is convenient for the automatic straightening of the tape and improves the tape packaging efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.
[0018] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.
[0019] In the drawings: Figure 1 A schematic diagram showing the overall structure of the present application is shown; Figure 2 A schematic diagram showing the structure of the bottom of the present application is shown; Figure 3 A schematic diagram showing the structure inside the conveyor belt of the present application is shown; Figure 4 A schematic diagram showing the structure of the conveyor belt of the present application is shown; Figure 5 A schematic diagram showing the structure of the conveyor frame of the present application is shown; Figure 6 A schematic diagram showing the structure when the inner cylinder support cylinder of the tape of the present application is separated from the support cylinder bottom plate is shown; Figure 7 A schematic diagram showing the structure of the telescopic support rod in the retracted state of the present application is shown; Figure 8 A schematic diagram showing the structure of the telescopic support rod in the ejected state of the present application is shown; Figure 9 A schematic diagram showing the structure of the elliptical push plate of the present application is shown; Figure 10 A schematic diagram showing the present application Figure 3 in the front view structure is shown; Figure 11 A schematic diagram showing the Figure 3 partial enlarged structure at position A in the present application is shown; Figure 12 A schematic diagram showing the Figure 3 partial enlarged structure at position B in the present application is shown.
[0020] Reference numerals: 1. Conveyor support base; 2. Conveyor frame; 201. Frame rotating shaft; 202. Driving pulley; 203. Limiting wheel groove; 204. Baffle connecting frame; 3. Conveyor driving member; 4. Directional baffle; 401. Baffle wedge opening; 5. Conveyor belt; 501. Belt limiting strip; 502. Belt socket; 6. Inner cylinder support cylinder of the belt; 601. Support cylinder limiting ring; 602. Support cylinder bottom plate; 603. Side guide opening; 604. Torsion spring connecting plate; 605. First torsion spring socket; 606. Reset torsion spring; 7. Trigger rotating rod; 701. Rotating connecting rod; 702. Linkage push wheel; 703. Elliptical push plate; 704. Push plate sliding groove; 705. Rotating rod reset plate; 706. Second torsion spring jack; 8. Telescopic support rod; 801. Support rod sliding thimble; 9. Feeding slide table. Detailed implementation manner
[0021] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.
[0022] Example 1: Please refer to Figures 1 to 12 : The present invention provides a conveying device for tape packaging, comprising: a conveyor support base 1, above which a conveyor frame 2 is installed. Inside the conveyor frame 2, two frame rotating shafts 201 are rotatably connected. The frame rotating shafts 201 are fixedly connected with two driving pulleys 202. A conveyor belt 5 is installed on the two driving pulleys 202 on both sides. The rear end of the left frame rotating shaft 201 is connected to the rotating shaft of a conveying driving member 3. Inside the conveyor frame 2, a directional baffle 4 is connected through a baffle connecting frame 204. Outside the conveyor belt 5, a tape inner cylinder supporting cylinder 6 is fixedly connected. Inside the tape inner cylinder supporting cylinder 6, a triggering rotating rod 7 is rotatably connected. One end of the triggering rotating rod 7 facing the center of the conveyor frame 2 is rotatably connected through a rotating link 701 to a bearing. Two elliptical push plates 703 are installed on the triggering rotating rod 7 through interference fit. The lower end of the triggering rotating rod 7 is fixedly connected with a rotating rod reset disk 705. Inside the tape inner cylinder supporting cylinder 6, a torsion spring connecting disk 604 is provided. At the top of the torsion spring connecting disk 604, a reset torsion spring 606 is fixedly connected. The upper end of the reset torsion spring 606 is fixedly connected with the rotating rod reset disk 705. Four side guiding openings 603 are formed on the wall of the tape inner cylinder supporting cylinder 6. Inside the side guiding openings 603, a telescopic supporting rod 8 is slidably connected. Above the telescopic supporting rod 8, there is a supporting rod sliding ejector pin 801. The lower end of the supporting rod sliding ejector pin 801 is slidably connected to the elliptical push plate 703. By driving the frame rotating shaft 201 to rotate through the conveying driving member 3, the conveyor belt 5 as a whole is driven to rotate counterclockwise. Through the conveyor belt 5, a tape positioning structure composed of multiple tape inner cylinder supporting cylinders 6, triggering rotating rods 7, and telescopic supporting rods 8 is driven to rotate counterclockwise in a cycle, and the tape in the feeding slide 9 is smoothly conveyed to the right.
[0023] In an embodiment of the present disclosure, the left end of the conveyor support base 1 is connected with a feeding slide 9 through a bracket. The feeding slide 9 is inclined to the right. The slideway above the feeding slide 9 is tapered from left to right. The right end opening of the slideway of the feeding slide 9 is located below the left end of the conveyor frame 2. The cut tape falls into the feeding slide 9 and slides towards the tapered opening position along the inclined surface structure of the feeding slide 9. When the conveyor belt 5 drives the tape inner cylinder supporting cylinder 6 to rotate, the tape inner cylinder supporting cylinder 6 is inserted into the inner part of the tape inner cylinder, and the tape is dragged to the right along with the rotation of the conveyor belt 5, so that the tape follows the tape inner cylinder supporting cylinder 6 to move straight to the right after leaving the tapered opening of the slideway of the feeding slide 9.
[0024] In an embodiment of the present disclosure, a limiting wheel groove 203 is formed in a surrounding manner on the wheel surface of the driving pulley 202. On the inner surface of the conveyor belt 5, two belt body limiting strips 501 are provided. The belt body limiting strips 501 are embedded in the limiting wheel groove 203 and are in clearance fit with each other. A belt body socket 502 with a circular hole structure is formed through the conveyor belt 5. Through the arrangement of the belt body limiting strips 501 and the limiting wheel groove 203, the running stability of the conveyor belt 5 in the conveyor frame 2 can be improved, the probability of the conveyor belt 5 breaking away from the driving pulley 202 can be reduced, and the running stability of the conveyor belt 5 can be improved.
[0025] In an embodiment of the present disclosure, a support cylinder limit ring 601 is connected to the upper end of the tape inner cylinder support cylinder 6 by screws. The lower end of the support cylinder limit ring 601 is inserted into the tape body socket 502. A support cylinder bottom plate 602 is installed at the bottom opening of the tape inner cylinder support cylinder 6 by screws. The torsion spring connection disk 604 is fixedly connected to the center of the support cylinder bottom plate 602. The support cylinder limit ring 601, the support cylinder bottom plate 602, and the tape inner cylinder support cylinder 6 are assembled by screws, which is convenient for assembling internal components such as the telescopic support rod 8, the elliptical push plate 703, the rotating rod reset disk 705, and the reset torsion spring 606, and is conducive to improving the assembly efficiency of the equipment.
[0026] Embodiment 2: On the basis of Embodiment 1, the directional baffle 4 is parallel to the upper surface of the conveyor belt 5. A baffle wedge opening 401 with a flared structure is processed by bending the left end of the directional baffle 4 outward. A first torsion spring socket 605 is formed at the edge of the upper surface of the torsion spring connection disk 604. The bottom end of the first torsion spring socket 605 is closely inserted into the bottom end of the reset torsion spring 606. A second torsion spring insertion hole 706 is formed at the edge of the lower surface of the rotating rod reset disk 705. The top end of the second torsion spring insertion hole 706 is closely inserted into the top end of the reset torsion spring 606. The linkage push wheel 702 that triggers the rotating rod 7 in the lower section of the conveyor belt 5 is in rolling connection with the directional baffle 4, and the rotating link 701 is parallel to the directional baffle 4. The rotating link 701 that triggers the rotating rod 7 in the upper section of the conveyor belt 5 is perpendicular to the front surface of the conveyor frame 2. The elliptical push plate 703 is an elliptical disk body. An elliptical push plate chute 704 is formed on the upper surface of the elliptical push plate 703. The major axes of the two push plate chutes 704 in the same trigger rotating rod 7 are perpendicular to each other. The end of the support rod sliding thimble 801 is slidably connected to the push plate chute 704. Under normal conditions, under the action of the reset torsion spring 606, the angle of the trigger rotating rod 7 and the orientation of the rotating link 701 are supported, so that the angles of the two elliptical push plates 703 are fixed, and the support rod sliding thimble 801 is kept at the short-axis end position of the push plate chute 704, so that the telescopic support rod 8 is in a state of being contracted inside the side guide opening 603. When the tape inner cylinder support cylinder 6 is inserted into the tape cylinder, as the tape inner cylinder support cylinder 6 moves to the right, the linkage push wheel 702 enters the baffle wedge opening 401 and contacts the inclined surface of the baffle wedge opening 401. As the conveyor belt 5 continues to operate and moves this set of tape positioning structures to the right, the linkage push wheel 702 rotates to the left under the obstruction of the directional baffle 4, driving the trigger rotating rod 7 and the elliptical push plate 703 to rotate 90 degrees. The support rod sliding thimble 801 moves outward following the change in the orientation of the push plate chute 704, so that the support rod sliding thimble 801 slides to the major-axis end of the push plate chute 704, and the telescopic support rod 8 moves outward, realizing the automatic grasping action of the tape cylinder.
[0027] Working principle of this embodiment: After the tape is slit by the slitting device, it falls into the feeding slide table 9. The tape slides to the right along the inclined plane of the slideway of the feeding slide table 9 to the conical opening position and is locked under the influence of the opening width. The conveying driving member 3 is started, and the conveyor belt 5 is driven by the conveying driving member 3 to rotate counterclockwise, so that the tape inner cylinder supporting cylinder 6 at the lower left end is inserted into the tape cylinder at the right opening position of the slideway of the feeding slide table 9, and the tape is dragged to the right with the drive of the conveyor belt 5, so that the tape disengages from the conical opening of the feeding slide table 9. At the same time, other tapes in the feeding slide table 9 slide to the conical opening position at the right end of the slideway of the feeding slide table 9, waiting to cooperate with the next group of tape inner cylinder supporting cylinders 6. As the tape inner cylinder supporting cylinder 6 moves to the right, the linkage push wheel 702 enters the baffle wedge opening 401 and contacts the inclined plane of the baffle wedge opening 401. As the conveyor belt 5 continues to operate and moves the tape positioning structure of this group to the right, the linkage push wheel 702 rotates counterclockwise under the obstruction of the directional baffle 4, driving the trigger rotating rod 7 and the elliptical push plate 703 to rotate 90 degrees. The reset torsion spring 606 is deformed by the torsion force, so that the support rod sliding ejector pin 801 transfers from the short axis end point of the push plate chute 704 to the long axis end point of the push plate chute 704, pushing the telescopic support rod 8 outwards. The outer end of the telescopic support rod 8 is closely attached to the inner cylinder surface of the tape cylinder, realizing the automatic grasping action of the tape cylinder. When the tape is smoothly conveyed to the right end of the conveying rack 2 with the rotation of the conveyor belt 5, the linkage push wheel 702 reaches the right end of the directional baffle 4 and loses the limitation. The trigger rotating rod 7 returns to its original angle under the elastic force of the reset torsion spring 606. As the elliptical push plate 703 rotates and resets, the support rod sliding ejector pin 801 slides from the long axis end point of the push plate chute 704 to the short axis end point of the push plate chute 704, causing the four telescopic support rods 8 to contract towards the inside of the tape inner cylinder supporting cylinder 6 and separate from the inner cylinder surface of the tape, ending the grasping of the tape, and making the tape fall vertically downwards into the packaging container under the action of gravity, improving the convenience of the tape packaging work.
[0028] In this article, the following points need to be noted: 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.
[0029] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0030] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A conveying device for tape packaging, comprising: A conveyor support seat (1), wherein a conveyor frame (2) is installed above the conveyor support seat (1), characterized in that the conveyor frame (2) is internally rotatably connected with two frame rotating shafts (201), the frame rotating shafts (201) are fixedly connected with two driving pulleys (202), and conveyor belts (5) are installed on the driving pulleys (202) on both sides, the rear end of the left frame rotating shaft (201) is connected to the rotating shaft of the conveying driving member (3), the interior of the conveyor frame (2) is connected with a directional baffle (4) through a baffle connecting frame (204), the conveyor belt (5) is externally fixedly connected with a tape inner tube support tube (6), the tape inner tube support tube (6) is internally rotatably connected with a triggering rotary rod (7), and the end of the triggering rotary rod (7) facing the center of the conveyor frame (2) is rotated The connecting rod (701) is rotatably connected to the bearing. The triggering rotary rod (7) is installed with two elliptical push disks (703) by interference fit. The lower end of the triggering rotary rod (7) is fixedly connected with a rotary rod reset disk (705). A torsion spring connecting disk (604) is provided inside the tape inner tube support tube (6). A reset torsion spring (606) is fixedly connected to the top of the torsion spring connecting disk (604). The upper end of the reset torsion spring (606) is fixedly connected to the rotary rod reset disk (705). Four side guide openings (603) are opened on the wall of the tape inner tube support tube (6). A telescopic support rod (8) is slidably connected in the side guide opening (603). A support rod sliding ejector pin (801) is provided above the telescopic support rod (8). The lower end of the support rod sliding ejector pin (801) is slidably connected to the elliptical push disk (703).
2. A conveying device for tape packaging according to claim 1, characterized in that: The left end of the conveyor support seat (1) is connected to a feed slide (9) via a bracket. The feed slide (9) is arranged to be inclined to the right. The slideway above the feed slide (9) is arranged to be gradually reduced from left to right. The right end opening of the slideway of the feed slide (9) is located below the left end of the conveyor frame (2).
3. A conveying device for tape packaging according to claim 1, characterized in that: The directional baffle (4) is parallel to the upper surface of the conveyor belt (5), and the left end of the directional baffle (4) is bent outwards to form a baffle wedge (401) with an expanded structure.
4. A conveying device for tape packaging according to claim 1, characterized in that: A limiting wheel groove (203) is formed around the wheel surface of the driving pulley (202), two belt limiting strips (501) are provided on the inner surface of the conveyor belt (5), the belt limiting strips (501) are embedded in the limiting wheel groove (203) and the two are clearance-matched, and a belt insert (502) is formed in the conveyor belt (5).
5. A conveying device for tape packaging according to claim 4, characterized in that: The upper end of the tape inner tube support tube (6) is connected to a support tube limiting ring (601) via screws, and the lower end of the support tube limiting ring (601) is inserted into the tape body socket (502). The bottom opening of the tape inner tube support tube (6) is installed with a support tube bottom plate (602) via screws, and the torsion spring connecting disc (604) is fixedly connected to the center of the support tube bottom plate (602).
6. The conveying device for tape packaging according to claim 1, characterized in that: The upper surface edge of the torsion spring connecting disk (604) is provided with a first torsion spring socket (605), which is tightly plugged into the bottom end of the reset torsion spring (606); the lower surface edge of the rotary rod reset disk (705) is provided with a second torsion spring socket (706), which is tightly plugged into the top end of the reset torsion spring (606).
7. The conveying device for tape packaging according to claim 1, characterized in that: When the triggering rotating rod (7) moves to the lower section along with the conveyor belt (5), the linkage push wheel (702) rolls to connect with the directional baffle (4), and the rotating connecting rod (701) is parallel to the directional baffle (4).
8. The conveying device for tape packaging according to claim 1, characterized in that: When the triggering rotary rod (7) moves to the upper section along with the conveyor belt (5), the rotating connecting rod (701) is perpendicular to the front surface of the conveyor frame (2).
9. The conveying device for tape packaging according to claim 1, characterized in that: The elliptical push plate (703) is an elliptical plate body, and an elliptical push plate slide groove (704) is provided on the upper surface of the elliptical push plate (703). The long axes of the two push plate slide grooves (704) in the same trigger rotary rod (7) are perpendicular to each other, and the end of the support rod sliding ejector pin (801) is slidably connected to the push plate slide groove (704).
Citation Information
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