Automatic device and method for dispensing and packaging conductive adhesive tape
By designing an automatic material dispensing and packaging device, photoelectric sensors and push-button switches are used to realize the automatic counting and bagging of conductive adhesive strips, solving the problem of low efficiency of manual operation and realizing efficient automated material dispensing and accurate counting of conductive adhesive strips.
Patent Information
- Application Number
- CN202310491824.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-05
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2043-05-05
AI Technical Summary
In the existing technology, the process of dispensing and bagging conductive adhesive strips relies on manual operation, which results in slow bagging speed, low efficiency and difficulty in accurately controlling the quantity.
Design an automatic material dispensing and packaging device for conductive adhesive strips, including a conveyor table, a conveyor belt, a counting mechanism, a pressing component, and a material guiding unit. Automatic counting and bagging are achieved through photoelectric sensors and pressing switches, and the automatic material dispensing and accurate counting of conductive adhesive strips are achieved through the rotation and lifting mechanism of the material guiding unit.
It has enabled automated dispensing and boxing of conductive adhesive strips, improving bagging speed and accuracy, reducing manual counting errors, and increasing production efficiency.
Smart Images

Figure CN117002822B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of conductive adhesive strip processing and packaging technology, and in particular to an automatic material dispensing, boxing, and packaging device and method for conductive adhesive strips. Background Technology
[0002] Conductive rubber strips, commonly known as zebra strips, are formed by alternating layers of conductive and insulating silicone rubber followed by vulcanization. Conductive rubber connectors offer stable and reliable performance, and are simple and efficient to manufacture and assemble. They are widely used in connecting LCD displays and circuit boards in products such as game consoles, telephones, electronic watches, calculators, and instruments, as well as for sealing between the device body and its cover.
[0003] Currently, during the processing of conductive adhesive strips, the strips are first cut into thin strips by cutting tools. After quality inspection and screening, they are then sorted and bagged. This sorting and bagging process is generally done manually. This method is not only slow and inefficient, but also requires manual counting of each bagged strip. Furthermore, human error is inevitable under long working hours, making it difficult to accurately control the number of bags per cycle. Therefore, to address this problem, an automatic sorting, boxing, and packaging device and method for conductive adhesive strips is proposed. Summary of the Invention
[0004] The purpose of this invention is to solve the problems mentioned in the background art of the prior art, and to propose an automatic dispensing, boxing and packaging device and method for conductive adhesive strips.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: an automatic dispensing and packaging device for conductive adhesive strips, comprising a conveyor table and a package located on both sides of the top of the conveyor table.
[0006] The system includes a connected mounting groove, with a conveyor belt flush with the top and sides of the conveyor platform installed between the inner walls of the mounting groove. A supportable mounting plate one is located above the top of the conveyor platform, and a supportable mounting plate two is located above one side of the conveyor platform. The system also includes: a counting mechanism positioned between the top of the conveyor platform and the top of mounting plate one; a pressing component vertically corresponding to the counting mechanism on the top of mounting plate one and connected to one side of mounting plate one; and a material guiding unit integrating lifting and rotating gripping, installed between the top and bottom of mounting plate two, capable of reciprocating circular motion along the top of the conveyor belt and the bottom of mounting plate two. When the material guiding unit performs a counter-clockwise circular motion along the bottom of mounting plate two to the top of the conveyor belt, it can horizontally overlap with the pressing component, allowing the pressing component to simultaneously descend synchronously with the material guiding unit, grip the conductive rubber strip, and also press to activate the counting mechanism.
[0007] Preferably, the counting mechanism includes a concave fixing frame fixed to the top of the conveyor table by screws. Multiple horizontally aligned and equidistant photoelectric sensors are mounted on the side of the concave fixing frame corresponding to the conveyor belt.
[0008] One end of the device is fitted with a concave mounting bracket and has a wire. The other end of the wire is electrically connected to a connector located on the top of the concave mounting bracket. The top of the connector is electrically connected to a connecting bus, and the other end of the connecting bus is electrically connected to a push switch mounted on the top of the mounting plate.
[0009] Preferably, at least three photoelectric sensors are mounted on the surface of the concave fixing frame, and a support tube corresponding to the top of the concave fixing frame is fixed on the surface of the push switch, with the inner wall of the support tube in contact with the surface of the connecting bus.
[0010] Preferably, the surface of the support tube is provided with a wiring port, and a support strip is fixed between the surface of the support tube and the side corresponding to the concave fixing frame.
[0011] Preferably, the pressing assembly includes an L-shaped fixing frame fixed to one side of the mounting plate. A telescopic spring is fixed to the top of the L-shaped fixing frame, and a circular block is fixed to the other end of the telescopic spring. A square sliding rod is fixed to the bottom of the circular block and sleeved inside the telescopic spring. The other end of the square sliding rod slides through to the bottom wall of the L-shaped fixing frame and is fixed to a triangular connecting block. A pressing head vertically corresponding to the pressing switch is fixed to the bottom of the triangular connecting block. A concave bracket overlapping with the material guiding unit is fixed to the surface of the triangular connecting block.
[0012] Preferably, the material guiding unit includes a rotating mechanism, which includes a drive unit installed between the top and bottom of the mounting plate two. A pulley one is fixed to the output end of the drive unit. A matching transmission toothed belt is connected to the surface of the pulley one. A matching pulley two is connected to the inner surface of the transmission toothed belt. A connecting rod is fixed between the top and bottom of the pulley two. The bottom end of the connecting rod is connected to the top of the mounting plate two through a bearing. A square slide rod two is slidably connected between the top end of the connecting rod and the bottom of the mounting plate two. A horizontally corresponding guide plate is fixed to the bottom of the square slide rod two. At least three horizontally corresponding and equidistantly distributed pneumatic grippers are installed on the bottom of the guide plate.
[0013] Preferably, the material guiding unit further includes a lifting mechanism, which includes a cylinder installed between the top and bottom of the mounting plate two. An adjusting plate is fixed to the output end of the cylinder at the top of the mounting plate two, and the bottom of the adjusting plate is connected to the top of the square slide rod two through a bearing.
[0014] Preferably, inclined support frames are fixed to both the front and rear surfaces of the first mounting plate, and the surfaces of the inclined support frames are fixedly connected to the top of the conveyor table by screws. Two symmetrical L-shaped support frames are fixed to the back of the second mounting plate, and a support plate fixed to one side of the conveyor table is fixed to the bottom of the L-shaped support frames.
[0015] Preferably, the top of the support plate is provided with a receiving box corresponding to the bottom of the second mounting plate, and the top of the receiving box is open.
[0016] The present invention also provides a method of using an automatic dispensing, boxing, and packaging device for conductive adhesive strips, comprising the following steps:
[0017] S1: By setting the material guiding unit, which integrates lifting and rotating gripping, above the conveyor table on the unloading side, the material guiding unit can easily convey and grip the conductive rubber strips on the surface of the conveyor belt. When making a clockwise circular motion, the conductive rubber strips gripped in the material guiding unit are unloaded horizontally below the bottom of the mounting plate two.
[0018] S2: At the top of the conveyor table, at the position where the material guiding unit grabs the conductive rubber strips from the conveyor belt surface, a corresponding counting mechanism is designed so that the counting mechanism can count the material guiding unit while it is grabbing the conductive rubber strips.
[0019] S3: The control switch in the counting mechanism is designed on the top of the mounting plate 1, and a pressing component corresponding to the control switch in the counting mechanism is designed on one side of the mounting plate 1. When the material guide unit moves counterclockwise from below the bottom of the mounting plate 2, it can overlap with the pressing component designed on one side of the mounting plate 1. This ensures that the pressing component can press and drive the counting mechanism by the switch in the counting mechanism located on the top of the mounting plate 1 under the lifting and lowering of the material guide unit. This allows the material guide unit to grab the conductive rubber strips on the conveyor belt surface while simultaneously counting.
[0020] Compared with the prior art, the present invention provides an automatic dispensing, boxing and packaging device for conductive adhesive strips, which has the following beneficial effects:
[0021] This automatic conductive adhesive strip dispensing and packaging device, by designing the pressing component directly above the pressing switch, ensures that the guide plate in the guiding unit, each time it makes a 180-degree counterclockwise circular motion from below the bottom of the mounting plate two to above the conveyor belt, can horizontally overlap with the concave bracket in the pressing component. Then, with the cooperation of the lifting mechanism in the guiding unit, the pressing component and the guiding unit can descend synchronously, making it easier for the guiding unit to grasp the adhesive strips conveyed on the surface of the conveyor belt. At the same time, it can also drive the pressing component to drive the counting mechanism to count the conductive adhesive strips grasped by the guiding unit. Finally, when the conductive adhesive strip grasped by the guiding unit makes a 180-degree clockwise circular motion from above the conveyor belt to below the bottom of the mounting plate two, the grasped conductive adhesive strip can be guided into the receiving box. At this time, the counting mechanism is also in the closed state when the pressing component returns to its initial position. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the overall structure of an automatic dispensing, boxing, and packaging device for conductive adhesive strips proposed in this invention.
[0023] Figure 2 This is a schematic diagram of the connection structure between the conveyor table and the counting mechanism of an automatic dispensing, boxing, and packaging device for conductive adhesive strips proposed in this invention.
[0024] Figure 3 This is a schematic diagram of the connection structure between the mounting plate and the pressing component of an automatic dispensing and boxing packaging device for conductive adhesive strips proposed in this invention.
[0025] Figure 4 This is a schematic diagram of the counting mechanism structure of an automatic dispensing, boxing, and packaging device for conductive adhesive strips proposed in this invention;
[0026] Figure 5 This is a schematic diagram of the pressing component structure of an automatic dispensing and packaging device for conductive adhesive strips proposed in this invention;
[0027] Figure 6 This is an exploded view of the connection between the square slide bar and the L-shaped fixing frame of an automatic dispensing and packaging device for conductive adhesive strips proposed in this invention.
[0028] Figure 7 This is a schematic diagram of the material guiding unit structure of an automatic material dispensing and boxing packaging device for conductive adhesive strips proposed in this invention;
[0029] Figure 8 This is a schematic diagram of the connection structure between the rotating mechanism and the lifting mechanism of an automatic dispensing and boxing packaging device for conductive adhesive strips proposed in this invention.
[0030] In the diagram: 1. Conveyor table; 2. Mounting slot; 3. Conveyor belt; 4. Mounting plate one; 5. Mounting plate two; 6. Counting mechanism; 61. Concave fixing bracket; 62. Photoelectric sensor; 63. Wire; 64. Terminal block; 65. Connecting bus; 66. Push switch; 7. Push assembly; 71. L-shaped fixing bracket; 72. Telescopic spring; 73. Circular block; 74. Square slide bar one; 75. Triangular connecting block; 76. Push head; 77. Concave bracket; 8. 81. Material guiding unit; 812. Rotating mechanism; 813. Drive unit; 814. Belt pulley one; 815. Transmission toothed belt; 816. Belt pulley two; 817. Connecting rod; 818. Square slide bar two; 819. Material guiding plate; 820. Pneumatic gripper; 821. Lifting mechanism; 822. Cylinder; 823. Adjusting plate; 9. Support tube; 10. Connection port; 11. Support bar; 12. Inclined support frame; 13. L-shaped support frame; 14. Support plate; 15. Receiving box. Detailed Implementation
[0031] The technical solutions 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 only some embodiments of the present invention, and not all embodiments.
[0032] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0033] Example 1
[0034] Reference Figures 1-8An automatic dispensing and packaging device for conductive adhesive strips includes a conveyor table 1 and a mounting groove 2 formed on the top of the conveyor table 1, connecting both sides. A conveyor belt 3, flush with the top and sides of the conveyor table 1, is installed between the inner walls of the mounting groove 2. A supportable mounting plate 4 is provided above the top of the conveyor table 1, and a supportable mounting plate 5 is provided above one side of the conveyor table 1. Inclined support frames 12 are fixed to the front and rear surfaces of the mounting plate 4, and the surfaces of the inclined support frames 12 are fixedly connected to the top of the conveyor table 1 by screws. Two symmetrical L-shaped support frames 13 are fixed to the back of the mounting plate 25. A support plate 14 fixed to one side of the conveyor table 1 is fixed to the bottom of the L-shaped support frames 13. A receiving box 15 corresponding to the bottom of the mounting plate 25 is provided on the top of the support plate 14. The top of 5 is open and includes: a counting mechanism 6, which is located between the top of the conveyor table 1 and the top of the mounting plate 4; a pressing component 7, which is vertically positioned above the counting mechanism 6 on the top of the mounting plate 4 and connected to one side of the mounting plate 4; and a material guiding unit 8, which integrates lifting and rotating gripping, is installed between the top and bottom of the mounting plate 5 and can perform a 180-degree counterclockwise circular motion between the top of the conveyor belt 3 and the bottom of the mounting plate 5. When the material guiding unit 8 performs a 180-degree counterclockwise circular motion between the bottom of the mounting plate 5 and the top of the conveyor belt 3, it can horizontally overlap with the pressing component 7, so that the pressing component 7 can also be used to press and start the counting mechanism 6 while the material guiding unit 8 is synchronously descending and gripping the conductive rubber strip.
[0035] In this invention, in order to facilitate the automatic bagging of conductive adhesive strips conveyed on the surface of the conveyor belt 3 while also accurately counting the number of conductive adhesive strips bagged, a material guiding unit 8 is designed above the front side of the conveyor table 1. With the cooperation of the rotating mechanism 81 and the lifting mechanism 82 of the material guiding unit 8, the conductive adhesive strips conveyed on the surface of the conveyor belt 3 can be automatically loaded into the receiving box 15. Furthermore, a counting mechanism 6 is designed between the top of the conveyor table 1 and the top of the mounting plate 4. With the cooperation of the material guiding unit 8, the pressing component 7 can enable the counting mechanism 6 to automatically count the conductive adhesive strips gripped by the rotating mechanism 81.
[0036] Example 2
[0037] Reference Figures 2-6 Based on Embodiment 1, the counting mechanism 6 includes a concave fixing frame 61 fixed to the top of the conveyor table 1 by screws. Multiple horizontally aligned and equidistantly positioned photoelectric sensors 62 are mounted on the side of the concave fixing frame 61 corresponding to the conveyor belt 3. One end of each photoelectric sensor 62, attached to the concave fixing frame 61, is provided with a wire 63, and the other end of the wire 63 is electrically connected to the concave fixing frame 61.
[0038] A connector 64 is provided on the top of the concave bracket 61. The top of the connector 64 is electrically connected to a connecting bus 65. The other end of the connecting bus 65 is electrically connected to a push switch 66 installed on the top of the mounting plate 4. At least three photoelectric sensors 62 are installed on the surface of the concave bracket 61. A corresponding support tube 9 is fixed on the surface of the push switch 66, located above the top of the concave bracket 61. The inner wall of the support tube 9 is in contact with the surface of the connecting bus 65. A wiring port 10 is provided on the surface of the support tube 9. A support strip 11 is fixed between the surface of the support tube 9 and the corresponding side of the concave bracket 61.
[0039] In this invention, multiple photoelectric sensors 62, which are horizontally and equidistantly designed on the surface of the concave fixing frame 61, are electrically connected to the connector 64 via corresponding wires 63. The connector 64 is electrically connected to the push switch 66 via the connecting bus 65. Thus, when the pressing assembly 7, in cooperation with the material guiding unit 8, presses the push switch 66 by pressing the push switch 66, the photoelectric sensors 62 in the counting mechanism 6 can simultaneously count the gripping conductive rubber strips conveyed on the surface of the conveyor belt 3 by the air gripper 818. This is more accurate than manual counting.
[0040] Example 3
[0041] Reference Figures 5-6 Based on Embodiment 1, the pressing assembly 7 includes an L-shaped fixing frame 71 fixed to one side of the mounting plate 4. A telescopic spring 72 is fixed to the top of the L-shaped fixing frame 71, and a circular block 73 is fixed to the other end of the telescopic spring 72. A square slide rod 74 sleeved inside the telescopic spring 72 is fixed to the bottom of the circular block 73. The other end of the square slide rod 74 slides through to the bottom wall of the L-shaped fixing frame 71 and is fixed with a triangular connecting block 75. A pressing head 76 vertically corresponding to the pressing switch 66 is fixed to the bottom of the triangular connecting block 75. A concave bracket 77 overlapping with the material guiding unit 8 is fixed to the surface of the triangular connecting block 75.
[0042] In this invention, when the concave bracket 77 coincides with the guide plate 817, the pressing component 7 can move vertically downwards via the cylinder 821 in the guiding unit 8, allowing the concave bracket 77 and the guide plate 817 to descend simultaneously. Furthermore, without affecting the gripper 818 in the guiding unit 8's gripping of the conductive adhesive strips conveyed on the conveyor belt 3, the pressing head 76 at the bottom of the triangular connecting block 75 on the surface of the concave bracket 77 can also press the pressing switch 66 mounted on the top of the mounting plate 4, thereby enabling the photoelectric sensor 62 in the counting mechanism 6 to simultaneously count the conductive adhesive strips gripped by the gripper 818. When the guide plate 817 rotates to above the top opening of the receiving box 15, the concave bracket 77 can then be extended by the telescopic spring. Under the spring force reset of 72, the square slide bar 74 slides vertically upwards along the inner bottom wall and top of the L-shaped fixed frame 71, driving the concave bracket 77 back to its initial position, disconnecting the connection between the pressing head 76 and the pressing switch 66. This allows the counting mechanism 6 to be in a closed state when the guiding unit 8 is not gripping the conductive rubber strip conveyed on the surface of the conveyor belt 3, reducing the energy wastage caused by continuous operation of the counting mechanism 6. Furthermore, the concave bracket 77 can continue to work repeatedly with the guiding unit 8 when it returns to its initial position. Additionally, it should be noted that the photoelectric sensor 62 and the pressing switch 66 for counting can be any commercially available and recognized model, and the overall length of the conveyor table 1 is not limited to the attached... Figure 1 and two The distance shown in the figure should be similar to a conveyor belt 3 in an assembly line.
[0043] Example 4
[0044] Reference Figures 7-8 Based on Embodiment 1, the material guiding unit 8 includes a rotating mechanism 81. The rotating mechanism 81 includes a drive unit 811 installed between the top and bottom of the mounting plate 2 5. A pulley 1 812 is fixed to the output end of the drive unit 811. A matching transmission toothed belt 813 is connected to the surface of the pulley 1 812. A matching transmission toothed belt 813 is connected to the inner surface of the transmission toothed belt 813.
[0045] The belt pulley 814 is equipped with a connecting rod 815 fixed between its top and bottom. The bottom end of the connecting rod 815 is connected to the top of the mounting plate 5 via a bearing. A square slide rod 816 is slidably connected between the top end of the connecting rod 815 and the bottom end of the mounting plate 5. A horizontally corresponding guide plate 817 is fixed to the bottom of the square slide rod 816. The bottom of the guide plate 817...
[0046] At least three horizontally corresponding and equidistantly distributed pneumatic grippers 818 are installed. The material guiding unit 8 also includes a lifting mechanism 82. The lifting mechanism 82 includes a cylinder 821 installed between the top and bottom of the mounting plate 2 5. An adjusting plate 822 is fixed to the output end of the cylinder 821 located at the top of the mounting plate 2 5. The bottom of the adjusting plate 822 is connected to the top of the square slide bar 2 816 through a bearing.
[0047] In this invention, the rotating mechanism 81 is designed to allow the pneumatic gripper 818 to switch back and forth between the top of the conveyor belt 3 and the mounting plate 2 5 located in the receiving box 15. This facilitates the automatic introduction of the conductive adhesive strip conveyed on the surface of the conveyor belt 3 into the receiving box 15, replacing manual labor. In use, when one side of the guide plate 817 overlaps and adheres to the inner wall of the concave bracket 77, the cylinder 821 can drive the square slide rod 2 816 to slide along the pre-set square groove inside the connecting rod 815, so that the guide plate 817 and the overlapping concave... The bracket 77 simultaneously moves vertically downwards until the gripper 818 grips the conductive strip positioned on the concave block of the conveyor belt 3. At this time, the pressing head 76 at the bottom of the triangular connecting block 75 also contacts the pressing switch 66, which drives the photoelectric sensor 62 to count the conductive strips gripped by the gripper 818. When the conductive strips gripped by the gripper 818 need to be introduced into the receiving box 15, the guide plate 817 is driven clockwise from the top of the conveyor belt 3 by the rotating mechanism 81. The 180-degree circular motion of the air gripper 818 at the bottom of the guide plate 817 allows the conductive rubber strip gripped by the air gripper 818 to be horizontally aligned above the top opening of the receiving box 15. Under the adjustment of the cylinder 821, the conductive rubber strip gripped by the air gripper 818 is guided into the receiving box 15 for loading. After unloading, the conductive rubber strip gripped by the air gripper 818 is rotated 180 degrees counterclockwise between the bottom of the mounting plate 817 and the top opening of the receiving box 15 via the rotating mechanism 81, ensuring that the guide plate 817 is horizontally aligned with the concave bracket 77. The pre-set positions between the inner walls allow the material guide unit 8 to effectively replace manual labor in automatically distributing and bagging the conductive strips conveyed on the surface of the conveyor table 1. At the same time, the material guide unit 8 works in conjunction with the pressing component 7 to press and drive the counting mechanism 6. The advantage of this design is that it avoids the problem of the counting mechanism 6 working continuously and wasting power. It ensures that the counting mechanism 6 only needs to count when the material guide unit 8 is grabbing the conductive strips. This also allows for accurate recording of the number of conductive strips loaded into the docking box 15.
[0048] The present invention also provides a method of using an automatic dispensing, boxing, and packaging device for conductive adhesive strips, comprising the following steps:
[0049] S1: By setting the material guiding unit 8, which integrates lifting and rotating gripping, above the conveyor table 1 on the unloading side, the material guiding unit 8 can easily convey and grip the conductive rubber strip on the surface of the conveyor belt 3. When making a clockwise 180-degree circular motion, the conductive rubber strip gripped in the material guiding unit 8 is unloaded horizontally below the bottom of the mounting plate 2 5.
[0050] S2: Install a corresponding counting mechanism 6 at the position where the material guiding unit 8 grips the conductive rubber strip on the surface of the conveyor belt 3 at the top of the conveyor table 1, so that the counting mechanism 6 can count the material guiding unit 8 while it is gripping the conductive rubber strip.
[0051] S3: The switch controlled by the counting mechanism 6 is designed on the top of the mounting plate 4, and a pressing component 7 corresponding to the control switch in the counting mechanism 6 is designed on one side of the mounting plate 4. When the guide unit 8 moves counterclockwise 180 degrees from below the bottom of the mounting plate 5, it can overlap with the pressing component 7 designed on one side of the mounting plate 4. This ensures that the pressing component 7 can press the switch in the counting mechanism 6 located on the top of the mounting plate 4 to drive the counting mechanism 6 under the lifting and lowering of the guide unit 8. This also enables the guide unit 8 to grasp the conductive rubber strip on the surface of the conveyor belt 3 while simultaneously counting.
[0052] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A device for automatically dispensing and packing conductive adhesive tape into a box, characterized in that, Including the conveying platform and the installation groove that is located two sides intercommunication is set in the top of conveying platform, the inner wall between installation groove is installed with the conveyor belt that is flush with the top of conveying platform and two sides, the top of conveying platform is equipped with the mounting plate 1, the top of conveying platform is equipped with the mounting plate 2 before being located in one side, it further includes: Counting mechanism, between the top of conveying platform and the top of mounting plate 1 is arranged; Pressing assembly, vertically corresponding in the top of the counting mechanism of mounting plate 1 and is connected in one side of mounting plate 1; The material guiding unit with lifting and rotating is integrated, is installed between the top and bottom of mounting plate 2, and can do 180 degrees circular motion between the top of conveyor belt and the bottom of mounting plate 2, and can do 180 degrees circular motion between the top of conveyor belt and the bottom of mounting plate 2; Wherein, the material guiding unit does 180 degrees circular motion between the bottom of mounting plate 2 and the top of conveyor belt, can be horizontally coincided with pressing assembly, makes pressing assembly under the synchronous descent of material guiding unit and also can be used for pressing starting counting mechanism when the material guiding unit is grabbed to conductive adhesive strip; The pressing assembly includes L-shaped fixed frame fixed in one side of mounting plate 1, the top of L-shaped fixed frame is fixed with telescopic spring, the other end of telescopic spring is fixed with circular block, the bottom of circular block is fixed with square slide rod 1 that is sleeved in the inside of telescopic spring, the other end of square slide rod 1 is slid through to the inner bottom wall below L-shaped fixed frame and is fixed with triangular connecting block, the bottom of triangular connecting block is fixed with pressing head that is vertically corresponding with the press switch of counting mechanism, the surface of triangular connecting block is fixed with concave bracket that is coincided with material guiding unit; The material guiding unit includes rotating mechanism, the rotating mechanism includes drive part installed between the top and bottom of mounting plate 2, the output end of drive part is fixed with belt pulley 1, the surface of belt pulley 1 is connected with the transmission belt that is matched, the inner surface of transmission belt is connected with the belt pulley 2 that is matched, the top and bottom of belt pulley 2 are fixed with connecting rod, the bottom end of connecting rod is connected with the top of mounting plate 2 through bearing, the top end of connecting rod and the bottom of mounting plate 2 are slidably connected with square slide rod 2, the bottom of square slide rod 2 is fixed with horizontally transverse corresponding material guiding plate, the bottom of material guiding plate is fixed with at least three horizontal corresponding and equidistantly distributed air claws.
2. The automatic packaging device for conductive adhesive tape according to claim 1, characterized in that, The counting mechanism includes concave fixed frame fixed on the top of conveying platform, a plurality of horizontal and equidistantly corresponding photoelectric sensors are installed on the side of concave fixed frame corresponding to the conveyor belt, the photoelectric sensor is fitted with a wire at one end of the concave fixed frame, the other end of the wire is electrically connected with the terminal head arranged on the top of the concave fixed frame, the top of the terminal head is electrically connected with the connection bus, the other end of the connection bus is electrically connected with the press switch installed on the top of the mounting plate 1.
3. The automatic packaging device for conductive adhesive tape according to claim 2, characterized in that, The photoelectric sensor installed on the surface of the concave fixed frame has at least three, the surface of the press switch is fixed with the support tube corresponding to the top of the concave fixed frame, the inner wall of the support tube and the surface of the connection bus are mutually fitted.
4. The apparatus according to claim 3, wherein, The surface of the support pipe is provided with a wiring port, and a support strip is fixed between the surface of the support pipe and the side corresponding to the concave fixing frame.
5. The apparatus according to claim 1, wherein, The material guiding unit further comprises a lifting mechanism, the lifting mechanism comprises a gas cylinder installed between the top and bottom of the second mounting plate, the output end of the gas cylinder fixed on the top of the second mounting plate is provided with an adjusting plate, and the bottom of the adjusting plate is connected with the top end of the second square slide rod through a bearing.
6. The apparatus according to claim 1, wherein, The front and rear surfaces of the first mounting plate are fixed with inclined support frames, the surfaces of the inclined support frames are fixedly connected with the top of the conveying table through screws, the back surface of the second mounting plate is fixed with two symmetrical L-shaped support frames, and the bottom of the L-shaped support frame is fixed with a support plate fixed on one side of the conveying table.
7. The apparatus according to claim 6, wherein, The top of the support plate is provided with a material receiving box corresponding to the bottom of the second mounting plate, and the top of the material receiving box is open.
8. The method of using the apparatus for automatically dispensing and packing conductive adhesive tape into boxes according to claim 1, wherein, The method comprises the following steps: S1: the material guiding unit with lifting and rotating grabbing functions is arranged above the corresponding position in front of the discharging side of the conveying table, so that the material guiding unit can conveniently grab the conductive adhesive tape on the surface of the conveying belt, and when the material guiding unit makes a clockwise 180-degree circular motion, the conductive adhesive tape grabbed by the material guiding unit is horizontally discharged below the bottom of the second mounting plate; S2: a corresponding counting mechanism is designed at the position of the material guiding unit for grabbing the conductive adhesive tape on the surface of the conveying belt, so that the counting mechanism can count while the material guiding unit grabs the conductive adhesive tape; S3: the switch part controlled by the counting mechanism is designed on the top of the first mounting plate, and a pressing assembly corresponding to the switch part of the counting mechanism is designed on one side of the first mounting plate, so that when the material guiding unit makes a counterclockwise 180-degree circular motion below the bottom of the second mounting plate, the pressing assembly on one side of the first mounting plate can coincide with the material guiding unit, and the pressing assembly can press the switch part of the counting mechanism on the top of the first mounting plate to drive the counting mechanism, so that the material guiding unit can count while grabbing the conductive adhesive tape on the surface of the conveying belt.
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