Gluing and V-group pressing forming structure

The V-shaped gluing and pressing structure with automatic unwinding and equidistant material pushing solves the problem of material deformation or breakage during the cutting process, realizes fully automated processing, improves production efficiency and cutting accuracy, and reduces costs and labor intensity.

CN120755928APending Publication Date: 2025-10-10KUNSHAN LIPU ELECTRONIC RUBBER CO LTD
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Patent Information

Application Number
CN202510757336.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

In the prior art, the material strip is easily deformed or broken during the cutting process, which affects the cutting accuracy and production efficiency, and requires manual operation, resulting in high costs and labor intensity.

Method used

The glue pressing V-type forming structure with automatic unwinding and equidistant pushing is adopted, including unwinding mechanism, cutting mechanism, conveying mechanism and pushing mechanism, to realize fully automatic loading, cutting and unloading, ensuring that the material belt remains relaxed during transportation to prevent deformation or breakage.

Benefits of technology

It realizes fully automated strip processing, improves production efficiency, reduces labor costs and labor intensity, and ensures stable strip transportation and cutting accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of automatic processing, in particular to a rubberizing and V-group pressing forming structure. The unwinding mechanism unwinds the material belt to the conveying rail, the lifting assembly drives the material pushing support to abut against the material belt on the conveying rail, and the transverse moving assembly drives the material pushing support to push the material belt towards the cutting mechanism so as to convey the material belt on the conveying rail to the cutting mechanism at equal intervals. The cutting mechanism carries out blanking processing on a material belt on the conveying track to obtain an adhesive tape product, the carrying mechanism transfers the blanked adhesive tape product, full-automatic feeding, cutting and discharging are achieved, manual operation is not needed in the whole process, therefore, the processing efficiency is improved during mass production, and meanwhile the labor cost, the processing cost and the labor intensity of workers are reduced. The unwinding mechanism and the material pushing mechanism are matched to unwind the material belt, so that automatic active unwinding and equal-distance material pushing are achieved, it is ensured that the material belt is kept in a loose state for feeding, the material belt is not subjected to too large force, deformation or breakage of the material belt is prevented, and efficient and stable conveying of the material belt is achieved.
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Description

Technical Field

[0001] The invention relates to the technical field of automated processing, and in particular to a glue-applied V-pressed structure. Background Art

[0002] Most tapes are stored in rolls. In industrial production, the rolls must be cut into sheets before being applied to equipment or products. Manual loading and cutting significantly reduces efficiency. Therefore, most manufacturers use automated equipment for both loading and cutting.

[0003] At present, the material strip is generally cut once every time the material strip moves a fixed distance. For this purpose, passive unwinding of the material tray is often adopted, and the pulling mechanism directly pulls the material tray for a fixed distance each time before cutting. The material strip is usually thin. During the pulling process, it not only has to bear its own gravity, but also has to drive the entire material tray to rotate, causing the material strip to be easily deformed or broken. At the same time, the cut tape product will affect the accuracy of the cut tape product after being pulled, which will not only affect the material removal work of the sheet tape, but also directly affect the production efficiency and quality. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a V-shaped forming structure for gluing that can realize fully automatic loading, cutting and unloading, improve processing efficiency, and adopt self-active unwinding and equidistant pushing to prevent deformation or breakage of the material strip.

[0005] In order to solve the above technical problems, the technical solution adopted by the present invention to solve the technical problems is:

[0006] A glue-laminated V-pressed structure comprising:

[0007] A processing frame, on which a conveyor track for conveying the material belt is provided;

[0008] An unwinding mechanism is arranged opposite to the processing frame, and is used to unwind the material strip onto the conveying track;

[0009] A cutting mechanism is provided above the conveying track, and is used for punching the material strip on the conveying track to obtain a tape product;

[0010] A transport mechanism is provided on the processing frame, and is used to transport the stamped tape product;

[0011] The pushing mechanism is arranged between the cutting mechanism and the unwinding mechanism, and the pushing mechanism includes a pushing rack and a pushing support. The pushing rack is arranged on the processing rack, and a transverse movement component is provided on the pushing rack. The transverse movement component is driven and connected to the lifting component, and the pushing support is driven and connected to the lifting component. The lifting component is used to drive the pushing support to abut against the material belt on the conveying track, and the transverse movement component is used to drive the pushing support toward the cutting mechanism to transfer the material belt on the conveying track to the cutting mechanism at equal distances.

[0012] In one embodiment of the present invention, two blocks are provided on the pusher rack, and a limiting channel is formed between the two blocks. A limiting block is provided on the transverse movement assembly, and the limiting block is passed through the limiting channel.

[0013] In one embodiment of the present invention, the transverse movement assembly includes a transverse movement frame, a slide rail is provided on the transverse movement frame, a sliding frame is slidably provided on the slide rail, the lifting assembly is provided on the sliding frame, the sliding frame is driven and connected to a sliding cylinder, and the sliding cylinder drives the lifting assembly on the sliding frame to reciprocate along the slide rail.

[0014] In one embodiment of the present invention, the lifting assembly includes a lifting plate, a guide plate is slidably provided on the lifting plate, the guide plate is driven and connected to the guide cylinder on the lifting plate, a lifting inclined slot is provided on the guide plate, a lifting rod is passed through the lifting plate, the pushing bracket is connected to the lifting rod, the lifting rod is perpendicular to the movement direction of the guide plate, a guide pin is provided on the lifting rod, the guide pin is passed through the lifting inclined slot, and the lifting inclined slot is obliquely arranged on the guide plate.

[0015] In one embodiment of the present invention, a pushing rod is provided on the pushing bracket, and the pushing rod has multiple mounting ends, and a pushing rod is vertically provided on at least one mounting end. The pushing rod is arranged relative to the hole position on the material belt, and the lifting component drives the pushing rod to be inserted into the hole position of the material belt, and the transverse movement component drives the pushing bracket toward the cutting mechanism to transmit the material belt equidistantly.

[0016] In one embodiment of the present invention, the conveying track includes a track plate, a track groove for transmitting the material belt is provided on the track plate, guide plates are provided on both sides of the track groove, a transmission gap is provided between the two guide plates to leak out the tape product on the material belt, and a conveying channel for guiding the two sides of the material belt is formed between the track plate and the guide plate, and the guide plate and the track plate are provided with guide grooves matching the push rod, and the push rod is inserted into the guide groove.

[0017] In an embodiment of the present application, the cutting mechanism comprises a support frame and a cutting platform below the support frame, the cutting platform is communicated with the conveying track, the support frame is provided with a cutting cylinder, the cutting cylinder is drivingly connected with a driving block, the driving block is slidably arranged on the support frame, the driving block is provided with a cutter seat, the cutter seat is provided with a cutting tool matched with the adhesive tape product, the cutting platform is provided with a discharge port, the discharge port is provided with fixed tools matched with the cutting tool on both sides, and the cutting cylinder drives the cutting tool to cooperate with the fixed tools to cut the adhesive tape on the discharge port to punch the single adhesive tape product.

[0018] In an embodiment of the present application, the support frame is provided with a limiting rod matched with the driving block, the cutter seat is provided with a guide rod, the cutting platform is provided with a guide sleeve matched with the guide rod, the guide rod is arranged through the guide sleeve, the cutter seat is provided with a positioning rod on both sides, the cutting platform is provided with a positioning hole matched with the positioning rod, and the positioning rod is arranged through the positioning hole so that the free end of the positioning rod is inserted into the hole of the adhesive tape.

[0019] In an embodiment of the present application, the unwinding mechanism comprises a material placing frame, the material placing frame is provided with a material placing roller and a tensioning roller, the material placing roller is provided with a fixer for fixing the adhesive tape roll, the material placing roller is drivingly connected with a material placing motor, and the material placing roller is provided below with a material receiving box.

[0020] In an embodiment of the present application, the carrying mechanism comprises a carrying frame, the carrying frame is provided with a carrying cylinder, the carrying cylinder is drivingly connected with a carrying support, the free end of the carrying support is provided with a material taking cylinder, the material taking cylinder is drivingly connected with a material taking suction nozzle, and the material taking cylinder drives the material taking suction nozzle to suck the punched adhesive tape product.

[0021] The present application has the following beneficial effects:

[0022] The unwinding mechanism of the present invention unwinds the material strip onto the conveyor track, the lifting component drives the pushing bracket to abut the material strip on the conveyor track, and the transverse component then drives the pushing bracket toward the cutting mechanism to transfer the material strip on the conveyor track to the cutting mechanism at equal intervals. The cutting mechanism punches the material strip on the conveyor track to obtain a tape product, and the conveying mechanism transports the punched tape product to realize fully automatic loading, cutting and unloading, without the need for manual operation throughout the process, thereby improving processing efficiency in mass production and reducing labor costs, processing costs and labor intensity at the same time; the unwinding mechanism cooperates with the pushing mechanism to unwind the material strip, so that it can realize self-active unwinding and equidistant pushing, ensuring that the material strip is maintained in a relaxed state for feeding, so that the material strip is not subjected to too much force, preventing the material strip from deformation or breakage, and realizing efficient and stable conveying of the material strip. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a schematic diagram of a glue-applied V-pressed structure of the present invention.

[0024] Figure 2 It is a schematic diagram of the pushing mechanism of the present invention.

[0025] Figure 3 It is a schematic diagram of the transverse movement component of the present invention.

[0026] Figure 4 It is a schematic diagram of the cutting mechanism of the present invention.

[0027] Figure 5 It is a schematic diagram of the cutting platform of the present invention.

[0028] Explanation of the reference numerals in the figure: 1. Processing frame; 2. Unwinding mechanism; 21. Unwinding frame; 22. Unwinding roller; 23. Unwinding motor; 24. Material strip and reel; 25. Fixer; 26. Tensioning roller; 27. Material receiving box; 3. Conveying track; 31. Track plate; 32. Guide plate; 33. Guide slot; 34. Track slot; 35. Conveying channel; 4. Pushing mechanism; 41. Lifting plate; 42. Guide plate; 43. Guide cylinder; 44. Lifting chute; 45. Lifting rod; 46. Guide pin; 47. Pushing bracket; 48. Pushing rod; 49. Pushing rod; 5. Cutting mechanism; 51. Support frame; 52. Cutting cylinder; 53. Drive block; 54. Tool holder; 55. Cutting tool; 56. Cutting platform; 57. Limit rod; 58. Guide rod; 59. Guide sleeve; 591. Discharge port; 592. Fixed tool; 593. Positioning rod; 594. Positioning hole; 6. Transport mechanism; 61. Transport frame; 62. Transport cylinder; 63. Transport bracket; 64. Transport bracket; 65. Material pick-up support plate; 66. Material pick-up nozzle; 7. Transverse movement assembly; 71. Sliding cylinder; 72. Sliding frame; 73. Transverse movement frame; 74. Slide rail; 75. Limit block. DETAILED DESCRIPTION

[0029] The present invention will be further described below with reference to the accompanying drawings and specific embodiments so that those skilled in the art can better understand the present invention and implement it. However, the embodiments are not intended to limit the present invention.

[0030] Reference Figure 1-5 As shown, a glue-applied V-pressed structure comprises:

[0031] A processing frame 1 is provided with a conveying track 3 for conveying the material belt;

[0032] An unwinding mechanism 2 is arranged opposite to the processing frame 1 and is used to unwind the material strip onto the conveying track 3;

[0033] A cutting mechanism 5 is provided above the conveying track 3 and is used for punching the material strip on the conveying track 3 to obtain a tape product;

[0034] A transport mechanism 6 is provided on the processing frame 1 and is used to transport the stamped tape product;

[0035] The pushing mechanism 4 is arranged between the cutting mechanism 5 and the unwinding mechanism 2. The pushing mechanism 4 includes a pushing rack and a pushing bracket 47. The pushing rack is arranged on the processing rack 1. The pushing rack is provided with a transverse movement component 7. The transverse movement component 7 is driven and connected to the lifting component. The pushing bracket 47 is driven and connected to the lifting component. The lifting component is used to drive the pushing bracket 47 to abut against the material belt on the conveying track 3. The transverse movement component 7 is used to drive the pushing bracket 47 toward the cutting mechanism 5 to transfer the material belt on the conveying track 3 to the cutting mechanism 5 at equal intervals.

[0036] The unwinding mechanism 2 of the present invention unwinds the material strip onto the conveyor track 3, and the lifting component drives the pushing bracket 47 to abut the material strip on the conveyor track 3. The transverse movement component 7 then drives the pushing bracket 47 toward the cutting mechanism 5 to transfer the material strip on the conveyor track 3 to the cutting mechanism 5 at equal intervals. The cutting mechanism 5 punches the material strip on the conveyor track 3 to obtain a tape product, and the conveying mechanism 6 transfers the punched tape product to realize fully automatic loading, cutting and unloading, without manual operation throughout the process, thereby improving processing efficiency in mass production and reducing labor costs, processing costs and labor intensity; the unwinding mechanism 2 cooperates with the pushing mechanism 4 to unwind the material strip, so that it can realize self-active unwinding and equidistant pushing, ensuring that the material strip is maintained in a relaxed state for feeding, so that the material strip is not subjected to too much force, preventing the material strip from deformation or breakage, and realizing efficient and stable conveying of the material strip.

[0037] In one embodiment of the present invention, two blocks are provided on the pusher rack, and a limiting channel is formed between the two blocks. A limiting block 75 is provided on the transverse movement component 7, and the limiting block 75 is passed through the limiting channel.

[0038] Specifically, the length of the limiting channel is less than or equal to the length of the guide slot 33, which can avoid the push rod 49 from contacting the guide slot 33. The relative accuracy of the push rod 49 and the hole position on the material belt improves the accuracy of equidistant transmission. The limiting block 75 is arranged on the limiting channel, which can limit the pushing length of the material belt and ensure the pushing accuracy of each tape product.

[0039] In one embodiment of the present invention, the transverse movement assembly 7 includes a transverse movement frame 73, a slide rail 74 is provided on the transverse movement frame 73, a sliding frame 72 is slidably provided on the slide rail 74, the lifting assembly is provided on the sliding frame 72, the sliding frame 72 is driven and connected to the sliding cylinder 71, and the sliding cylinder 71 drives the lifting assembly on the sliding frame 72 to reciprocate along the slide rail 74.

[0040] Specifically, the sliding cylinder 71 drives the lifting plate 41 on the sliding frame 72 to move, so that the pushing rod 49 moves from the initial end of the guide slot 33 to the end end close to the cutting mechanism 5 to transport the material strip to the discharge port 591 of the cutting platform 56, thereby realizing equidistant transmission of the material strip, so that the material strip will not be subjected to too much force, preventing the material strip from deformation or breakage.

[0041] In one embodiment of the present invention, the lifting assembly includes a lifting plate 41, on which a guide plate 42 is slidably provided, and the guide plate 42 is driven and connected to the guide cylinder 43 on the lifting plate 41, and a lifting chute 44 is provided on the guide plate 42, and a lifting rod 45 is passed through the lifting plate 41, and the pushing bracket 47 is connected to the lifting rod 45, and the lifting rod 45 is perpendicular to the movement direction of the guide plate 42, and a guide pin 46 is provided on the lifting rod 45, and the guide pin 46 is passed through the lifting chute 44, and the lifting chute 44 is obliquely arranged on the guide plate 42.

[0042] Specifically, the guide cylinder 43 drives the guide plate 42 to move along the lifting frame. Since the lifting chute 44 is tilted on the guide plate 42, the lifting chute 44 has a high end and a low end, and the high end and the low end have a certain height difference in the vertical direction. The guide pin 46 moves along the high end of the lifting chute 44 toward its low end, so that the lifting rod 45 connected to the guide pin 46 moves downward in the vertical direction along the lifting plate 41, so that the pushing rod 49 on the pushing rod 48 passes through the guide slot 33 and is inserted into the hole position of the material belt, which can quickly position the material belt while ensuring the stability of subsequent pushing.

[0043] In one embodiment of the present invention, a pushing rod 48 is provided on the pushing bracket 47, and the pushing rod 48 has multiple mounting ends, and a pushing rod 49 is vertically provided on at least one mounting end. The pushing rod 49 is arranged relative to the hole position on the material belt, and the lifting component drives the pushing rod 49 to be inserted into the hole position of the material belt, and the transverse movement component 7 drives the pushing bracket 47 toward the cutting mechanism 5 to transmit the material belt equidistantly.

[0044] Specifically, the push rod 49 on the push rod 48 passes through the guide slot 33 and is inserted into the hole position of the material belt. The distance between the initial end and the end end of the guide slot 33 is the distance of the transmission material belt. It is more preferred that the push rod 48 has at least two push rods 49, so that there are push rods 49 on both sides of the push rod 48, which can pull both sides of the material belt synchronously to avoid uneven force on the material belt caused by unilateral pulling, resulting in folding or breakage.

[0045] In one embodiment of the present invention, the conveying track 3 includes a track plate 31, and a track slot 34 for transmitting the material belt is provided on the track plate 31. Guide plates 32 are provided on both sides of the track slot 34. A transmission gap is provided between the two guide plates 32 to leak out the tape product on the material belt. A conveying channel 35 for guiding the two sides of the material belt is formed between the track plate 31 and the guide plate 32. A guide slot 33 matching the pushing rod 49 is provided on the guide plate 32 and the track plate 31, and the pushing rod 49 is passed through the guide slot 33.

[0046] Specifically, the material belt moves through the track slot 34 on the track plate 31, and a conveying channel 35 is formed between the track plate 31 and the guide plate 32 to guide both sides of the material belt. The transmission gap between the two guide plates 32 is used to leak out the tape product on the material belt. At the same time, the guide slot 33 leaks out the holes on the material belt. The push rod 49 on the push rod 48 passes through the guide slot 33 and is inserted into the hole of the material belt. The distance between the initial end and the end end of the guide slot 33 is the distance of the transmission material belt, which can realize equidistant transmission of the material belt and prevent the material belt from deformation or breakage.

[0047] In one embodiment of the present application, the cutting mechanism 5 comprises a support frame 51 and a cutting platform 56 located below the support frame 51, the cutting platform 56 is communicated with the conveying track 3, the support frame 51 is provided with a cutting cylinder 52, the cutting cylinder 52 is drivingly connected with a driving block 53, the driving block 53 is slidingly arranged on the support frame 51, the driving block 53 is provided with a cutter seat 54, the cutter seat 54 is provided with a cutting tool 55 matched with the adhesive tape product, the cutting platform 56 is provided with a discharge port 591, both sides of the discharge port 591 are provided with fixed tools 592 matched with the cutting tool 55, the cutting cylinder 52 drives the cutting tool 55 to cooperate with the fixed tools 592 to cut the adhesive tape on the discharge port 591 to punch the single adhesive tape product.

[0048] Specifically, after the adhesive tape is transmitted to the discharge port 591, the cutting cylinder 52 drives the cutting tool 55 on the driving block 53 to move towards the adhesive tape, the cutting tool 55 cooperates with the fixed tools 592 to cut the adhesive tape on the discharge port 591 to punch and cut the single adhesive tape product on the adhesive tape, after the cutting tool 55 returns to the initial position, the cut adhesive tape product is pushed to the discharge table of the cutting platform 56 in the repeated pushing process of the pushing mechanism 4, realizing efficient and stable rapid cutting of the adhesive tape, improving the production efficiency, and the discharge port 591 on the cutting platform 56 can directly discharge the waste after cutting the adhesive tape, avoiding the waste accumulation affecting the cutting work.

[0049] In one embodiment of the present application, the support frame 51 is provided with a limiting rod 57 matched with the driving block 53, the cutter seat 54 is provided with a guide rod 58, the cutting platform 56 is provided with a guide sleeve 59 matched with the guide rod 58, the guide rod 58 is penetratingly arranged on the guide sleeve 59, both sides of the cutter seat 54 are provided with a positioning rod 593, the cutting platform 56 is provided with a positioning hole 594 matched with the positioning rod 593, the positioning rod 593 is penetratingly arranged through the positioning hole 594 so that the free end thereof is inserted into the hole position of the adhesive tape.

[0050] Specifically, the support frame 51 is provided with a limit rod 57 that matches the driving block 53. The limit rod 57 can limit the maximum cutting shape of the cutting tool on the driving block 53 to avoid damage to components caused by collision, thereby ensuring processing safety; the guide rod 58 is passed through the guide sleeve 59, which can guide the cutting tool 55 on the tool seat 54 for secondary movement, thereby improving the cutting accuracy of the cutting tool 55 and the fixed tool 592, and ensuring the accuracy of the material strip cutting; the positioning rod 593 passes through the positioning hole 594 so that its free end is inserted into the hole position of the material strip. The positioning rod 593 first positions the material strip, and the guide rod 58 positions the cutting tool 55, which can ensure the position of the cutting material strip, improve the punching accuracy while avoiding the remaining unprocessed material strip from being subjected to pulling force, and improve the subsequent pushing accuracy.

[0051] In one embodiment of the present invention, the unwinding mechanism 2 includes a unwinding rack 21, on which a unwinding roller 22 and a tensioning roller 26 are provided. The unwinding roller is provided with a fixer 25 for fixing the material strip and material roll 24. The unwinding roller is driven and connected to the unwinding motor 23. A material receiving box 27 is provided under the unwinding roller. The unwinding motor 23 drives the unwinding roller to rotate and unwinds the material strip and material roll 24 thereon to the conveying track 3 via the tensioning roller 26.

[0052] Specifically, the unloading motor 23 drives the unloading roller to rotate and unload the material strip material roll 24 thereon, and the material strip is unwound to the conveyor track 3 via the tensioning roller 26. The material receiving box 27 under the unloading roller can guide the material strip to prevent the material strip from being too long and affecting the cutting process. The unloading motor 23 is used in conjunction with the pushing mechanism 4 to unwind the material strip, so that it can realize self-active unwinding and equidistant pushing, ensuring that the material strip is maintained in a relaxed state for feeding, so that the material strip will not be subjected to too much force, preventing the material strip from deformation or breakage, and realizing efficient and stable conveying of the material strip.

[0053] In one embodiment of the present invention, the conveying mechanism 6 includes a conveying frame 61, a conveying cylinder 62 is provided on the conveying frame 61, the conveying cylinder 62 is driven and connected to the conveying bracket 6463, a material picking cylinder is provided on the free end of the conveying bracket 6463, the material picking cylinder is driven and connected to the material picking support plate 65, a material picking suction nozzle 66 is provided on the material picking support plate 65, and the material picking cylinder drives the material picking suction nozzle 66 to suck the punched tape product.

[0054] Specifically, the cut tape product is pushed onto the discharge table of the cutting platform 56. After the material picking cylinder drives the material picking nozzle 66 to suck the tape product on the discharge table, the transport cylinder 62 drives the tape picking nozzle 66 to transfer the tape product to the next workstation for processing, so that the tape can be intermittently pulled for cutting, and the tape can be cut efficiently, stably and quickly, thereby improving production efficiency.

[0055] Use process

[0056] The discharge motor 23 drives the rotation of the discharge roller to rotate the material tape roll 24 on it, and the material tape is unwound to the conveying track 3 through the tensioning roller 26. The material receiving box 27 below the discharge roller can guide the material tape to avoid the influence of the cutting process caused by the excessive length of the material tape. The material tape moves through the track slot 34 on the track plate 31, and the conveying channel 35 is formed between the track plate 31 and the guide plate 32 to guide the two sides of the material tape. The transmission gap between the two guide plates 32 leaks the adhesive tape product on the material tape, and the guide slot 33 leaks the hole position on the material tape. The guide cylinder 43 drives the guide plate 42 to move along the lifting frame. Since the lifting chute 44 is inclinedly arranged on the guide plate 42, the lifting chute 44 has a high end and a low end, and the high end and the low end have a certain height difference in the vertical direction. The guide pin 46 moves along the high end of the lifting chute 44 towards the low end, so that the lifting rod 45 connected with the guide pin 46 moves downward along the lifting plate 41 in the vertical direction, so that the pushing rod 49 on the pushing rod 48 penetrates through the guide slot 33 and is inserted into the hole position of the material tape. The sliding cylinder 71 drives the lifting plate 41 on the sliding frame 72 to move, so that the pushing rod 49 moves to the end point of the cutting mechanism 5 near the initial end of the guide slot 33 to convey the material tape to the discharge port 591 of the cutting platform 56. The distance between the initial end and the end point of the guide slot 33 is the transmission distance of the material tape, so as to realize the equidistant transmission of the material tape. After the material tape is transmitted to the discharge port 591, the cutting cylinder 52 drives the cutting tool 55 on the driving block 53 to move towards the material tape, and the cutting tool 55 cooperates with the fixed tool 592 to cut the material tape on the discharge port 591, so as to punch and cut the single adhesive tape product on the material tape. After the cutting tool 55 returns to the initial position, the cut adhesive tape product is pushed to the discharge table surface of the cutting platform 56 in the repeated pushing process of the pushing mechanism 4. The taking cylinder drives the adhesive tape product on the taking suction nozzle 66 to be sucked, and then the carrying cylinder 62 drives the adhesive tape product on the taking suction nozzle 66 to be transported to the next station for processing, so as to complete the cutting and feeding of the single adhesive tape product, realize the efficient and stable cutting of the material tape during intermittent pulling, and improve the production efficiency.

[0057] The above-described embodiments are only preferred embodiments for fully illustrating the present application, and the protection scope of the present application is not limited thereto. Any equivalent replacement or transformation made by those skilled in the art on the basis of the present application is within the protection scope of the present application. The protection scope of the present application is subject to the claims.

Claims

1. A glue-pressed V-shaped structure, characterized in that: include: A processing frame, on which a conveyor track for conveying the material belt is provided; An unwinding mechanism is arranged opposite to the processing frame, and is used to unwind the material strip onto the conveying track; A cutting mechanism is provided above the conveying track, and is used for punching the material strip on the conveying track to obtain a tape product; A transport mechanism is provided on the processing frame, and is used to transport the stamped tape product; The pushing mechanism is arranged between the cutting mechanism and the unwinding mechanism, and the pushing mechanism includes a pushing rack and a pushing support. The pushing rack is arranged on the processing rack, and a transverse movement component is provided on the pushing rack. The transverse movement component is driven and connected to the lifting component, and the pushing support is driven and connected to the lifting component. The lifting component is used to drive the pushing support to abut against the material belt on the conveying track, and the transverse movement component is used to drive the pushing support toward the cutting mechanism to transfer the material belt on the conveying track to the cutting mechanism at equal distances.

2. The adhesive-coated V-shaped structure according to claim 1, characterized in that: The pusher rack is provided with two blocks, and a limiting channel is formed between the two blocks. The transverse movement component is provided with a limiting block, and the limiting block is passed through the limiting channel.

3. The adhesive-coated V-shaped structure according to claim 1, characterized in that: The transverse movement assembly includes a transverse movement frame, a slide rail is provided on the transverse movement frame, a sliding frame is slidably provided on the slide rail, the lifting assembly is arranged on the sliding frame, the sliding frame is driven and connected to a sliding cylinder, and the sliding cylinder drives the lifting assembly on the sliding frame to reciprocate along the slide rail.

4. The adhesive-coated V-shaped structure according to claim 1, characterized in that: The lifting assembly includes a lifting plate, a guide plate is slidably provided on the lifting plate, the guide plate is driven and connected to the guide cylinder on the lifting plate, a lifting inclined slot is provided on the guide plate, a lifting rod is passed through the lifting plate, the pushing bracket is connected to the lifting rod, the lifting rod is perpendicular to the movement direction of the guide plate, a guide pin is provided on the lifting rod, the guide pin is passed through the lifting inclined slot, and the lifting inclined slot is obliquely arranged on the guide plate.

5. The adhesive-coated V-shaped structure according to claim 1, characterized in that: A pushing rod is provided on the pushing bracket, and the pushing rod has multiple mounting ends. A pushing rod is vertically provided on at least one mounting end. The pushing rod is arranged opposite to the hole position on the material belt. The lifting component drives the pushing rod to be inserted into the hole position of the material belt, and the transverse movement component drives the pushing bracket toward the cutting mechanism to transmit the material belt equidistantly.

6. The adhesive-coated V-shaped structure according to claim 5, characterized in that: The conveying track includes a track plate, which is provided with a track slot for transmitting the material belt, and guide plates are provided on both sides of the track slot. A transmission gap is provided between the two guide plates to leak out the tape product on the material belt, and a conveying channel for guiding the two sides of the material belt is formed between the track plate and the guide plate. The guide plate and the track plate are provided with a guide slot matching the push rod, and the push rod is inserted into the guide slot.

7. The adhesive-coated V-shaped structure according to claim 1, characterized in that: The cutting mechanism includes a support frame and a cutting platform located below the support frame, the cutting platform is connected to the conveying track, the support frame is provided with a cutting cylinder, the cutting cylinder is driven and connected to the driving block, the driving block is slidably arranged on the support frame, the driving block is provided with a tool seat, the tool seat is provided with a cutting tool matching the tape product, a discharge port is provided on the cutting platform, and fixed tools matching the cutting tool are provided on both sides of the discharge port, the cutting cylinder drives the cutting tool to cooperate with the fixed tool to cut the material tape on the discharge port to punch out a single tape product.

8. The adhesive-coated V-shaped structure according to claim 7, characterized in that: The support frame is provided with a limit rod matching the driving block, the tool seat is provided with a guide rod, the cutting platform is provided with a guide sleeve matching the guide rod, the guide rod is passed through the guide sleeve, positioning rods are provided on both sides of the tool seat, and the cutting platform is provided with positioning holes matching the positioning rods, the positioning rod passes through the positioning hole so that its free end is inserted into the hole position of the material belt.

9. The adhesive-coated V-shaped structure according to claim 1, characterized in that: The unwinding mechanism includes an unwinding rack, on which a unwinding roller and a tensioning roller are provided. The unwinding roller is provided with a fixture for fixing the material strip and coil. The unwinding roller is drive-connected to the unwinding motor. A material receiving box is provided below the unwinding roller. The unwinding motor drives the unwinding roller to rotate and unwind the material strip and coil on it to the conveying track through the tensioning roller.

10. The adhesive-coated V-shaped structure according to claim 1, characterized in that: The conveying mechanism includes a conveying frame, a conveying cylinder is provided on the conveying frame, the conveying cylinder is driven and connected to the conveying bracket, a material picking cylinder is provided on the free end of the conveying bracket, the material picking cylinder is driven and connected to the material picking nozzle, and the material picking cylinder drives the material picking nozzle to suck the punched tape product.