Automatic Processing Combination Equipment for Visual Recognition of Electrocardiogram Electrode Patches

Through the design of the automatic processing combination equipment for visual recognition of the electrocardiogram electrode sheet, the full automation production is achieved using the visual recognizer and driving mechanism, which solves the problems of hygiene and low efficiency in the production process of the electrode sheet, and improves product quality and yield.

CN112209133BActive Publication Date: 2025-08-01LINHAI JINZHENG MACHINERY
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Patent Information

Application Number
CN202011225334.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-11-05
Publication Date
2025-08-01
Estimated Expiration
2040-11-05

AI Technical Summary

Technical Problem

The existing electrode sheet production process requires manual conversion equipment, which makes it difficult to ensure hygiene, uneven product quality, low production efficiency and low yield.

Method used

The automatic processing combination device for visual recognition of electrocardiogram electrode sheets is designed, and the positions of paper rolls and stickers are automatically identified in different working areas through the visual identifier, and the positions of each device are adjusted in combination with the driving mechanism to achieve fully automated production.

Benefits of technology

It improves the hygiene and yield of the electrode sheet, reduces manual intervention, and improves the consistency of production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an automatic processing combination device for visual recognition of electrocardiogram electrode patches, belonging to the technical field of electrode patch production equipment. The device includes a frame, on which a paper roll feeding device, a sticker feeding device, a rubber strip bonding device, an automatic button nailing device, a dispensing and curing device, a film sticking device, a shape trimming device and a recycling device are arranged. Visual recognition devices are respectively arranged between the rubber strip bonding device, the automatic button nailing device and the dispensing and curing device, and between the film sticking device and the shape trimming device. A visual recognition device is also arranged above the recycling device. The present invention adopts full-automatic production, which ensures the product quality and production efficiency of electrocardiogram electrode patches, and avoids the intervention of manual labor during the working process, ensuring the hygiene of electrocardiogram electrode patches. At the same time, visual recognition devices are added between the working areas of the present invention, which can timely adjust the errors caused by different devices during the working process and improve the product quality of electrocardiogram electrode patches.
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Description

Technical Field

[0001] The present invention belongs to the technical field of electrode sheet production equipment, and particularly relates to an electrocardiogram electrode sheet visual recognition automatic processing combination equipment with visual recognition function for producing electrode sheets. Background Art

[0002] An electrode sheet is a medical supply composed of multiple raw materials in combination. There are many types of electrode sheets, including massage electrode sheets, physiotherapy electrode sheets, conductive electrode sheets, self-adhesive electrode sheets, adhesive electrode sheets, non-woven fabric electrode sheets, electrocardiogram electrode sheets, medical electrode sheets, silicone electrode sheets, heating electrode sheets, breast enhancement electrode sheets, and therapeutic instrument connecting wires, etc. As a medical supply, it is necessary to ensure the hygiene of the electrode sheet. The factors affecting the hygiene of the electrode sheet mainly include two aspects: one is the hygiene of the raw materials themselves, and the other is the hygiene problems generated during the production process. The control of the hygiene of the raw materials themselves has been done very well at present. However, during the production process, due to the change of the electrode sheet processing procedures, it is necessary to manually switch equipment several times, and it is impossible to ensure that the electrode sheet is pollution-free during this process.

[0003] At the same time, the current electrode sheet processing equipment usually requires manual intervention, resulting in problems such as uneven electrode sheets, inaccurate cutting, uneven crimping force, low production efficiency, large differences in the performance of individual products, high errors in product technical indicators, and low product qualification rates. Summary of the Invention

[0004] The purpose of the present invention is to overcome the technical problems in the prior art that the motor sheet needs to be manually switched continuously during the production process, and it is impossible to ensure the hygiene and working efficiency of the electrode sheet, etc. The electrocardiogram electrode sheet visual recognition automatic processing combination equipment is provided to avoid manually switching equipment during the production and processing process, improve the product quality of the electrode sheet, and ensure the hygiene and pollution-free of the electrode sheet.

[0005] To solve the above technical problems, the present invention provides an automatic processing combination device for visual recognition of electrocardiogram electrode patches, including a frame. On the frame, there are sequentially arranged a paper roll feeding device, a sticker feeding device, a tape bonding device, an automatic button nailing device, a dispensing and curing device, a film laminating device, an outer shape trimming device, and a recycling device. A first visual recognition device is arranged between the tape bonding device and the automatic button nailing device, a second visual recognition device is arranged between the automatic button nailing device and the dispensing and curing device, a third visual recognition device is arranged between the film laminating device and the outer shape trimming device, and a fourth visual recognition device is arranged above the recycling device. A first driving mechanism for adjusting the horizontal position of the tape bonding device is arranged on the tape bonding device, a second driving mechanism for adjusting the horizontal position of the automatic button nailing device is arranged on the automatic button nailing device, a third driving mechanism for adjusting the horizontal position of the dispensing and curing device is arranged on the dispensing and curing device, a fourth driving mechanism for adjusting the horizontal position of the film laminating device is arranged on the film laminating device, and a fifth driving mechanism for adjusting the horizontal position of the outer shape trimming device is arranged on the outer shape trimming device.

[0006] The paper roll is arranged on the paper roll feeding device, and the sticker is arranged on the sticker feeding device. The paper roll and the sticker pass through the tape bonding device, the automatic button nailing device, the dispensing and curing device, the film laminating device, the outer shape trimming device, and the recycling device in sequence and complete various operations, and finally the electrocardiogram electrode patches are processed. In the present invention, by using the automatic recognition functions of the first visual recognition device, the second visual recognition device, the third visual recognition device, and the fourth visual recognition device in different working areas of the device, the errors caused by each different device during the working process can be adjusted in a timely manner, and the relative positions of the paper roll and the sticker can be adjusted in a timely manner to ensure that the paper roll and the sticker correspond to the processing stations of the device in each device, which can further improve the product quality of the electrocardiogram electrode patches.

[0007] As a further improvement measure of the present invention, the above-mentioned paper roll feeding device includes a paper roll punching mechanism arranged on the frame and a first storage device arranged above the paper roll punching mechanism. A first guide roller is arranged between the paper roll punching mechanism and the first storage device. The paper roll punching mechanism includes a first fixed frame. A first lower die is arranged inside the first fixed frame. A first through hole is opened inside the first lower die. A first upper die is arranged above the first lower die. A first punch corresponding to the first through hole is arranged inside the first upper die. A first driving member for driving the first upper die to move in the vertical direction and a second driving member for driving the first punch to move in the vertical direction are arranged on the first fixed frame.

[0008] As a further improvement measure of the present invention, an adjusting component one for adjusting the tension of the paper roll is provided at one end of the paper roll punching mechanism for feeding. A support plate one is provided at one end of the paper roll punching mechanism for discharging. A notch is formed in the support plate one, and a roller one is arranged in the notch. Fixing pieces one are oppositely arranged on both sides of the support plate one, and a cutter one for cutting the paper roll is rotatably arranged on the fixing pieces one. A receiving roller one corresponding to the support plate one is arranged at the upper end of the frame.

[0009] As a further improvement measure of the present invention, the above sticker feeding device includes a storage device two, a sticker punching mechanism and a conveying mechanism one for conveying stickers, which are sequentially arranged at the lower end of the frame. The sticker punching mechanism includes a fixing frame two. A lower die two is arranged in the fixing frame two, and a through hole two is formed in the lower die two. An upper die two is arranged above the lower die two, and a punch two corresponding to the through hole two is arranged in the upper die two. A driving part three for driving the upper die two to move in the vertical direction and a driving part four for driving the punch two to move in the vertical direction are arranged on the fixing frame two.

[0010] As a further improvement measure of the present invention, the above storage device two is arranged on one side of the sticker punching mechanism for feeding. An adjusting component two for adjusting the tension of the stickers is arranged between the sticker punching mechanism and the storage device two. The conveying mechanism one is arranged on one side of the sticker punching mechanism for discharging. A guiding roller two is arranged at one end of the conveying mechanism one for discharging. A receiving roller two corresponding to the guiding roller two is also arranged at the lower end of the frame.

[0011] As a further improvement measure of the present invention, the above rubber strip bonding device includes a fixing frame three. A guiding roller three for conveying the paper roll is arranged at one end of the fixing frame three for discharging. A conveying mechanism two for conveying stickers is arranged at one end of the fixing frame three for feeding. A pressing rod is arranged between the guiding roller three and the conveying mechanism two. A guiding roller four corresponding to the pressing rod is arranged on the fixing frame three. A guiding roller five is arranged at the output end of the conveying mechanism two. A receiving roller three corresponding to the guiding roller five is also arranged at the lower end of the frame.

[0012] As a further improvement measure of the present invention, the above-mentioned automatic button nailing device includes a fourth fixed frame. On both sides of the fourth fixed frame, there are respectively a first vibrating disk and a second vibrating disk for placing magnetic buttons. On the fourth fixed frame, there is an upper mounting table connected to the first vibrating disk. An installation hole one is opened in the upper mounting table. A third punch is arranged in the installation hole one. A through hole three is opened at one end of the third punch in contact with the magnetic button. The through hole three is connected to a first air extraction pump through a first connecting pipe. On the fourth fixed frame, there is a lower mounting table connected to the second vibrating disk. An installation hole two is opened in the lower mounting table. A fourth punch is arranged in the installation hole two. A through hole four is opened at one end of the fourth punch in contact with the magnetic button. The through hole four is connected to a second air extraction pump through a second connecting pipe. On the fourth fixed frame, there is a fifth driving part for driving the third punch and the fourth punch to move towards each other. At the discharging end of the automatic button nailing device, there is a second support plate. A first groove is opened on the second support plate along the feeding direction. On both sides of the first groove, there are first limiting parts for determining the horizontal position of the paper roll.

[0013] As a further improvement measure of the present invention, a first channel is opened on the above-mentioned upper mounting table. One end of the first channel is communicated with the first vibrating disk, and the other end of the first channel is communicated with the installation hole one. A first pushing part and a sixth driving part for driving the first pushing part to move in the first channel are inserted in the first channel. A second channel is opened on the lower mounting table. One end of the second channel is communicated with the second vibrating disk, and the other end of the second channel is communicated with the installation hole two. A second pushing part and a seventh driving part for driving the second pushing part to move in the second channel are inserted in the second channel.

[0014] As a further improvement measure of the present invention, the above-mentioned glue dispensing and curing device includes a glue dispensing mechanism and a curing box. The glue dispensing mechanism includes a glue dispensing head and a storage barrel for placing glue arranged on the frame. The glue dispensing head is connected to the storage barrel through a third connecting pipe. The glue dispensing mechanism also includes an eighth driving part for driving the glue dispensing head to move in the vertical direction. The curing box includes a support table arranged on the frame, a box body arranged on the support table, and baking lamps arranged in the box body. Opposite through holes five are opened at the lower ends of the two side walls of the box body. One end of the support table is provided with a third support plate. The third support plate is arranged below the glue dispensing head. A second groove is opened on the third support plate along the feeding direction. On both sides of the second groove, there are second limiting parts for determining the horizontal position of the paper roll. The other end of the support table is provided with a fourth support plate. A third groove is opened on the fourth support plate along the feeding direction. On both sides of the third groove, there are third limiting parts for determining the horizontal position of the paper roll.

[0015] As a further improvement measure of the present invention, the above-mentioned film laminating device includes a fixing frame five, on which a supporting plate five, a pressing mechanism one, a pressing mechanism two and a supporting plate six are sequentially arranged along the feeding direction. Above the pressing mechanism two, there is a heating mechanism for deforming the plastic sealing strip. The heating mechanism includes a hot air blower and a suction mold arranged oppositely. One end face of the suction mold facing the hot air blower is provided with a circular groove, and a through hole six is opened in the circular groove. The through hole six is connected to a suction pump three through a connecting pipe four. A storage device three corresponding to the heating mechanism is arranged at the upper end of the frame, and an adjusting component three for adjusting the tension of the plastic sealing strip is arranged between the heating mechanism and the storage device three.

[0016] As a further improvement measure of the present invention, a groove four is opened on the above-mentioned supporting plate five along the feeding direction. On both sides of the groove four, there are position-limiting parts four for determining the horizontal position of the paper roll. Above the supporting plate five, there is a fixing part two, and a cutting tool two for cutting the paper roll is rotatably arranged on the fixing part two. At one end of the supporting plate five, there is a roller two corresponding to the cutting tool two. A winding roller four is arranged at the upper end of the frame. A groove five is opened on the supporting plate six along the feeding direction. On both sides of the groove five, there are position-limiting parts five for determining the horizontal position of the paper roll.

[0017] As a further improvement measure of the present invention, the above-mentioned pressing mechanism one includes a synchronous belt one and a synchronous belt two with mutually attached outer surfaces. On the fixing frame five, there is a transmission component one for driving the synchronous belt one and the synchronous belt two to rotate synchronously. The pressing mechanism two includes a synchronous belt three and a synchronous belt four with mutually attached outer surfaces. On the fixing frame five, there is a transmission component two for driving the synchronous belt three and the synchronous belt four to rotate synchronously.

[0018] As a further improvement measure of the present invention, the above-mentioned outer shape trimming device includes a fixing frame six. Inside the fixing frame six, there is a lower mold three. A through hole seven is opened in the lower mold three. Above the lower mold three, there is a punch five corresponding to the through hole seven and a driving part nine for driving the punch five to move in the vertical direction. A through hole eight corresponding to the through hole seven is opened at the lower end of the fixing frame six. A winding roller five is arranged at the upper end of the frame.

[0019] As a further improvement measure of the present invention, at the feeding end of the fixing frame six, there is a pressing component for pressing the paper roll.

[0020] As a further improvement measure of the present invention, the above-mentioned recycling device includes a transmission belt 901 arranged below the lower mold three, and a driving motor for driving the transmission belt 901 to transmit is arranged on the transmission belt 901.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. By sequentially arranging a paper roll feeding device, a sticker feeding device, a tape bonding device, an automatic button nailing device, a dispensing and curing device, a film laminating device, a contour trimming device, and a recycling device on the frame, the present invention performs fully automatic processing and production on paper rolls and stickers, avoiding manual intervention during the working process and ensuring the hygiene of electrocardiogram electrode patches; 2. The present invention adds a visual recognizer one, a visual recognizer two, a visual recognizer three, and a visual recognizer four between the working areas. By automatically recognizing paper rolls and stickers in different working areas of this device, the product quality of electrocardiogram electrode patches is ensured, and the yield rate of electrocardiogram electrode patches is improved; 3. From the feeding of paper rolls and stickers to the recycling and sorting after the processing and production of electrocardiogram electrode patches, the present invention adopts fully automatic production, improving work efficiency and ensuring the product performance of electrocardiogram electrode patches. Brief Description of the Drawings

[0022] Figure 1 is one of the perspective views of the present invention.

[0023] Figure 2 is another perspective view of the present invention.

[0024] Figure 3 is one of the enlarged perspective views of the paper roll feeding device, sticker feeding device, tape bonding device, and automatic button nailing device in the present invention.

[0025] Figure 4 is another enlarged perspective view of the paper roll feeding device, sticker feeding device, tape bonding device, and automatic button nailing device in the present invention.

[0026] Figure 5 is the third enlarged perspective view of the paper roll feeding device, sticker feeding device, tape bonding device, and automatic button nailing device in the present invention.

[0027] Figure 6 is the enlarged front view of the paper roll feeding device, sticker feeding device, tape bonding device, and automatic button nailing device in the present invention.

[0028] Figure 7 is one of the enlarged perspective views of the dispensing and curing device in the present invention.

[0029] Figure 8 is another enlarged perspective view of the dispensing and curing device in the present invention.

[0030] Figure 9 is one of the enlarged perspective views of the film laminating device, contour trimming device, and recycling device in the present invention.

[0031] Figure 10 is Figure 9 the enlarged view of part I in

[0032] Figure 11 It is the second enlarged three-dimensional view of the film pasting device, the outer shape edge trimming device, and the recycling device in the present invention.

[0033] Explanation of the attached reference numerals: 1 - frame, 101 - Vision Recognizer 1, 102 - Vision Recognizer 2, 103 - Vision Recognizer 3, 104 - Vision Recognizer 4, 2 - Paper Roll Loading Device, 201 - Paper Roll Punching Mechanism, 202 - Storage Bin 1, 203 - Guide Roller 1, 204 - Fixed Frame 1, 205 - Lower Die 1, 206 - Through Hole 1, 207 - Upper Die 1, 208 - Driving Part 1, 209 - Adjusting Component 1, 210 - Support Plate 1, 211 - Roller 1, 212 - Fixing Part 1, 213 - Tool 1, 214 - Take-up Roller 1, 215 - Friction Wheel 1, 216 - Support Plate 7, 217 - Fastening Piece 1, 218 - Pressing Plate 1, 219 - Elastic Piece 1, 220 - Limiting Piece 6, 221 - Connecting Shaft 1, 222 - Tool Fixing Frame 1, 223 - Friction Wheel 2, 3 - Sticker Loading Device, 301 - Storage Bin 2, 302 - Conveying Mechanism 1, 303 - Fixed Frame 2, 304 - Lower Die 2, 305 - Upper Die 2, 306 - Driving Part 3, 307 - Adjusting Component 2, 308 - Guide Roller 2, 309 - Take-up Roller 2, 310 - Guide Roller 6, 311 - Support Plate 8, 312 - Fastening Piece 2, 313 - Pressing Plate 2, 314 - Elastic Piece 2, 315 - Fixed Frame 7, 316 - Pressing Roller 1, 317 - Pressing Roller 2, 318 - Stepper Motor 1, 319 - Friction Wheel 4, 320 - Ring-shaped Pressing Piece 1, 321 - Friction Wheel 3, 4 - Adhesive Tape Bonding Device, 401 - Fixed Frame 3, 402 - Guide Roller 3, 403 - Conveying Mechanism 2, 404 - Pressing Rod, 405 - Guide Roller 4, 406 - Guide Roller 5, 40722 - Driving part X, 723 - Friction wheel VI, 724 - Feeding roller, 725 - Pressing plate III, 726 - Pressing plate IV, 727 - Fastener III, 728 - Limiting part VII, 729 - Connecting shaft II, 730 - Tool fixing bracket II, 731 - Friction wheel VII, 8 - Outer shape punching device, 801 - Fixing bracket VI, 802 - Lower die III, 803 - Through hole VII, 804 - Punch V, 805 - Driving part IX, 806 - Material receiving roller V, 807 - Pressing assembly, 808 - Friction wheel VIII, 809 - Pressing part I, 810 - Pressing part II, 9 - Recycling device, 901 - Transmission belt, 902 - Driving motor., Detailed implementation manners

[0034] The present invention will be further described below with reference to the accompanying drawings.

[0035] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention. On the contrary, the present invention covers any alternatives, modifications, equivalent methods and solutions made within the spirit and scope of the present invention defined by the claims. Further, in order to enable the public to have a better understanding of the present invention, some specific details are described in detail in the following detailed description of the present invention. Those skilled in the art can fully understand the present invention without the description of these details. It should be noted that the terms "horizontal", "upper", "lower" and similar expressions used herein are only for the purpose of illustration.

[0036] As Figures 1 to 11 shown in the visual recognition automatic processing combination equipment for electrocardiogram electrode patches, which includes a frame 1. A paper roll feeding device 2, a sticker feeding device 3, a tape bonding device 4, an automatic button nailing device 5, a dispensing and curing device 6, a film laminating device 7, an outer shape punching device 8 and a recycling device 9 are sequentially arranged on the frame 1. The paper roll is arranged on the paper roll feeding device 2, and the sticker is arranged on the sticker feeding device 3. The paper roll and the sticker pass through the tape bonding device 4, the automatic button nailing device 5, the dispensing and curing device 6, the film laminating device 7, the outer shape punching device 8 and the recycling device 9 in sequence and complete various operations, and finally complete the processing and manufacturing of the electrocardiogram electrode patches.

[0037] In this embodiment, in order to improve the accuracy of the automatic processing and combination equipment for visual recognition of electrocardiogram electrode patches, reduce the waste of raw materials caused by errors in each working area and the processing failure of electrocardiogram electrode patches, a first visual recognition device 101 is arranged between the tape bonding device 4 and the automatic button nailing device 5, a second visual recognition device 102 is arranged between the automatic button nailing device 5 and the dispensing and curing device 6, a third visual recognition device 103 is arranged between the film sticking device 7 and the contour trimming device 8, and a fourth visual recognition device 104 is arranged above the recycling device 9. Through the automatic recognition functions of the first visual recognition device 101, the second visual recognition device 102, the third visual recognition device 103 and the fourth visual recognition device 104 in different working areas of this equipment, the errors caused by each different device during the working process can be adjusted in time, and the relative positions of the paper roll and the sticker can be adjusted in time to ensure that the paper roll and the sticker correspond to the processing stations of the device in each device, which can further improve the product quality of the electrocardiogram electrode patches.

[0038] In order to facilitate the adjustment of the positional relationship and distance between each device, a first driving mechanism for adjusting the horizontal position of the tape bonding device 4 is arranged on the tape bonding device 4. The first driving mechanism includes a first cylinder for driving the tape bonding device 4 to move forward and backward and a second cylinder for driving the tape bonding device 4 to move left and right. A second driving mechanism for adjusting the horizontal position of the automatic button nailing device 5 is arranged on the automatic button nailing device 5. The second driving mechanism includes a third cylinder for driving the automatic button nailing device 5 to move forward and backward and a fourth cylinder for driving the automatic button nailing device 5 to move left and right. A third driving mechanism for adjusting the horizontal position of the dispensing and curing device 6 is arranged on the dispensing and curing device 6. The third driving mechanism includes a fifth cylinder for driving the dispensing and curing device 6 to move forward and backward and a sixth cylinder for driving the dispensing and curing device 6 to move left and right. A fourth driving mechanism for adjusting the horizontal position of the film sticking device 7 is arranged on the film sticking device 7. The fourth driving mechanism includes a seventh cylinder for driving the film sticking device 7 to move forward and backward and an eighth cylinder for driving the film sticking device 7 to move left and right. A fifth driving mechanism for adjusting the horizontal position of the contour trimming device 8 is arranged on the contour trimming device 8. The fifth driving mechanism includes a ninth cylinder for driving the contour trimming device 8 to move forward and backward and a tenth cylinder for driving the contour trimming device 8 to move left and right. For example, when the first visual recognition device 101 recognizes that the positions of the paper roll and the sticker do not correspond, the horizontal position of the automatic button nailing device 5 on the frame 1 is adjusted through the driving action of the first driving mechanism, so that the automatic button nailing device 5 and the tape bonding device 4 are on the same horizontal line, and the distance between the automatic button nailing device 5 and the tape bonding device 4 is just right to make the paper roll and the sticker correspond one by one, so as to realize the bonding between the paper roll and the sticker; the second visual recognition device 102, the third visual recognition device 103 and the fourth visual recognition device 104 are used to recognize the positions of the magnetic buttons on the paper roll, and respectively adjust the positional relationship between the automatic button nailing device 5 and the dispensing and curing device 6, between the film sticking device 7 and the contour trimming device 8, and the position of the recycling device 9 on the frame 1.

[0039] As Figures 1 to 6 shown, the paper roll loading device 2 includes a paper roll punching mechanism 201 disposed on the frame 1 and a first storage device 202 disposed above the paper roll punching mechanism 201. The first storage device 202 is rotatably disposed at the upper end of the frame 1. A first friction wheel 215 is provided on the first storage device 202 to prevent the first storage device 202 from slipping during rotation and affecting the discharging efficiency. A first guide roller 203 is provided between the paper roll punching mechanism 201 and the first storage device 202.

[0040] The paper roll punching mechanism 201 includes a first fixed frame 204. A first lower die 205 is disposed inside the first fixed frame 204. A through hole 206 is formed inside the first lower die 205. A first upper die 207 is disposed above the first lower die 205. A punch 1 corresponding to the through hole 206 is disposed inside the first upper die 207. A first driving member 208 for driving the first upper die 207 to move in the vertical direction and a second driving member for driving the punch 1 to move in the vertical direction are provided on the first fixed frame 204. The first driving member 208 is set as an eleventh cylinder, and the second driving member is set as a twelfth cylinder. Place the paper roll in the first storage device 202, and convey the paper roll to between the first lower die 205 and the first upper die 207 through the first guide roller 203. The first driving member 208 drives the first upper die 207 to move towards the first lower die 205. The lower surface of the first upper die 207 contacts the upper surface of the paper roll, and the first upper die 207 presses the paper roll. The purpose is to prevent the paper roll from moving during stamping and affecting the punching effect. The second driving member drives the punch 1 to move towards the first lower die 205 until the punch 1 penetrates the paper roll, so that a circular hole 1 of the same size as the through hole 206 appears on the paper roll.

[0041] In this embodiment, in order to adjust the horizontal height of the paper roll according to actual needs, ensure the pressing effect of the upper die on the paper roll, and prevent damage to the paper roll during the punching process. As a solution, a first adjusting screw for driving the first lower die 205 to move in the vertical direction is provided below the first lower die 205. The up-and-down movement of the first lower die 205 is realized by rotating the first adjusting screw, so as to adjust the horizontal height of the paper roll. In order to prevent the first adjusting screw from loosening or other reasons during the working process, which may affect the horizontal height of the first lower die 205, a first adjusting nut is sleeved outside the first adjusting screw. A first fixing screw for fixing the position of the first adjusting screw is arranged radially along the first adjusting nut. As another solution, a third channel is opened vertically in the first lower die 205. A cushion block corresponding to the first punch is arranged in the third channel. A first through hole 206 is arranged in the cushion block. A second adjusting screw for driving the cushion block to move in the third channel is provided below the first lower die 205. The up-and-down movement of the cushion block is realized by rotating the second adjusting screw, so as to adjust the horizontal height of the paper roll. In order to prevent the second adjusting screw from loosening or other reasons during the working process, which may affect the horizontal height of the cushion block, a second adjusting nut is sleeved outside the second adjusting screw. A second fixing screw for fixing the position of the second adjusting screw is arranged radially along the second adjusting nut.

[0042] An adjusting component one 209 for adjusting the tension of the paper roll is arranged at the feeding end of the paper roll punching mechanism 201. In this embodiment, the adjusting component one 209 includes a seventh support plate 216 arranged at the feeding end of the paper roll punching mechanism 201. A first pressing plate 218 is arranged on the seventh support plate 216 through a first fastener 217. The paper roll passes through the gap between the seventh support plate 216 and the first pressing plate 218. An elastic member one 219 is arranged between the first fastener 217 and the first pressing plate 218. The size of the gap between the seventh support plate 216 and the first pressing plate 218 is adjusted by the elasticity of the elastic member one 219, so that the opposite side surfaces of the first pressing plate 218 and the seventh support plate 216 are in contact with each other, which plays a pressing role on the paper roll, and at the same time does not affect the conveying of the paper roll, ensuring the conveying speed of the paper roll. In order to ensure the horizontal position of the paper roll on the seventh support plate 216 during the conveying process, a sixth limiting member 220 is further arranged on the seventh support plate 216. The sixth limiting member 220 is arranged on both sides of the seventh support plate 216. The paper roll passes through between the sixth limiting members 220.

[0043] One end of the paper roll punching mechanism 201 for discharging is provided with a first support plate 210. A notch is formed in the first support plate 210, and a first roller 211 is arranged in the notch. On both sides of the first support plate 210, first fixing members 212 are oppositely arranged. A first cutter 213 for cutting the paper roll is rotatably arranged on the first fixing members 212. The first cutter 213 only cuts a layer of protective paper on the upper surface of the paper roll, and the cutting width is the same as the width of the sticker after punching. In this embodiment, a first connecting shaft 221 is arranged between the first fixing members 212. A first cutter fixing frame 222 is rotatably arranged on the first connecting shaft 221, and the first cutter 213 is arranged on the first cutter fixing frame 222. In order to adjust the distance between the first cutters 213 according to the actual size of the paper roll, a ring-shaped fixing block 1 for determining the horizontal position of the first cutter fixing frame 222 on the first connecting shaft 221 is also arranged on the first connecting shaft 221. In order to realize the recycling of the paper roll after cutting, a first receiving roller 214 corresponding to the first support plate 210 is arranged at the upper end of the frame 1. The first receiving roller 214 is rotatably arranged at the upper end of the frame 1, and a second friction wheel 223 is arranged on the first receiving roller 214 to prevent the first receiving roller 214 from slipping during rotation and affecting the recycling efficiency.

[0044] As Figures 1 to 6 As shown in the figure, the sticker feeding device 3 includes a second storage device 301, a sticker punching mechanism and a first conveying mechanism 302 for conveying the paper roll, which are sequentially arranged at the lower end of the frame 1. The second storage device 301 is rotatably arranged at the lower end of the frame 1. A third friction wheel 321 is arranged on the second storage device 301 to prevent the second storage device 301 from slipping during rotation and affecting the discharging efficiency. A sixth guide roller 310 is arranged between the second storage device 301 and the sticker punching mechanism.

[0045] The sticker punching mechanism includes a second fixed frame 303. Inside the second fixed frame 303, there is a second lower die 304. A through hole two is provided inside the second lower die 304. Above the second lower die 304, there is a second upper die 305. Inside the second upper die 305, there is a second punch corresponding to the through hole two. On the second fixed frame 303, there is a third driving member 306 for driving the second upper die 305 to move in the vertical direction and a fourth driving member for driving the second punch to move in the vertical direction. The third driving member 306 is set as the thirteenth cylinder, and the fourth driving member is set as the fourteenth cylinder. Place the sticker in the second storage device 301. The sticker is conveyed between the second lower die 304 and the second upper die 305 through the sixth guide roller 310. The third driving member 306 drives the second upper die 305 to move towards the second lower die 304. The lower surface of the second upper die 305 contacts the upper surface of the sticker, and the second upper die 305 presses the sticker. The purpose is to prevent the sticker from moving during the punching process and affecting the stamping effect. The fourth driving member drives the second punch to move towards the second lower die 304 until the second punch punches out the required round hole two on the sticker. In this embodiment, the second punch punches out a small round hole two corresponding to the round hole one on the sticker. The round hole two penetrates the sticker. At the same time, the second punch punches out a round hole three with a diameter larger than the round hole two on the sticker. The round hole three and the round hole two are concentric circles, and the round hole three only penetrates the sticky layer of the sticker and does not penetrate the entire sticker.

[0046] The second storage device 301 is arranged on the feeding side of the sticker punching mechanism. Between the sticker punching mechanism and the second storage device 301, there is an adjustment component two 307 for adjusting the tightness of the sticker. In this embodiment, the adjustment component two 307 includes an eighth support plate 311 arranged at one end of the sticker punching mechanism for feeding. On the eighth support plate 311, there is a second pressing plate 313 through a second fastener 312. Between the second fastener 312 and the second pressing plate 313, there is a second elastic member 314. Due to the elasticity of the second elastic member 314, the opposite sides of the eighth support plate 311 and the second pressing plate 313 are attached to each other, and at the same time, there is a gap between the eighth support plate 311 and the second pressing plate 313 through which the sticker can pass. While pressing the sticker, it does not affect the conveyance of the sticker and can effectively control the conveyance speed of the sticker. The sixth guide roller 310 is arranged between the second storage device 301 and the eighth support plate 311. The sticker enters the gap between the second pressing plate 313 and the eighth support plate 311 from the second storage device 301 through the sixth guide roller 310, and then enters the first conveying mechanism 302.

[0047] The first conveying mechanism 302 is arranged on one side of the outlet of the sticker punching mechanism. In this embodiment, the first conveying mechanism 302 includes a seventh fixed frame 315. On the seventh fixed frame 315, a first pressing roller 316 and a second pressing roller 317 which are rotationally matched are arranged. On the seventh fixed frame 315, a first stepping motor 318 for driving the first pressing roller 316 to rotate is also arranged. The first stepping motor 318 drives the first pressing roller 316 to rotate, driving the second pressing roller 317 to rotate synchronously. By setting the program of the first stepping motor 318, the sticker is conveyed to the next working area at a certain speed, ensuring the one-to-one pasting of the sticker and the paper roll. At one end of the outlet of the first conveying mechanism 302, a second guiding roller 308 is arranged. Through the second guiding roller 308, the smoothness of the sticker during conveying is ensured and the sticker is tensioned and positioned. At the lower end of the frame 1, a second collecting roller 309 corresponding to the second guiding roller 308 is also arranged. The second collecting roller 309 is rotatably arranged at the lower end of the frame 1. A fourth friction wheel 319 is arranged on the second collecting roller 309. The fourth friction wheel 319 is used to prevent the second collecting roller 309 from slipping during rotation, affecting the recycling efficiency. The sticky layer of the sticker is torn off and recycled to the position of the second collecting roller 309, while the third round hole is left on the non-sticky layer of the sticker and is conveyed to the next working area to be pasted with the punched paper roll. In order to prevent the sticky layer of the sticker from being torn off together with the third round hole during the tearing process, in this embodiment, at one end of the outlet of the first conveying mechanism 302, a first annular pressing member 320 corresponding to the third round hole is also arranged. The first annular pressing member 320 is arranged between the first conveying mechanism 302 and the second guiding roller 308. During the conveying of the sticker, the first annular pressing member 320 presses the third round hole in the sticker to prevent the third round hole from being torn off, affecting the subsequent adhesion with the paper roll.

[0048] As Figures 1 to 6 shown, the rubber strip bonding device 4 includes a third fixed frame 401. At one end of the outlet of the third fixed frame, a third guiding roller 402 for conveying the paper roll is arranged. At one end of the inlet of the third fixed frame, a second conveying mechanism 403 for conveying the sticker is arranged. In this embodiment, the second conveying mechanism 403 includes a third pressing roller 408 and a fourth pressing roller 409 which are rotationally matched. A second stepping motor 410 for driving the third pressing roller 408 to rotate is arranged on the third pressing roller 408. A pressing rod 404 is arranged between the third guiding roller 402 and the second conveying mechanism 403. A fourth guiding roller 405 corresponding to the pressing rod 404 is arranged on the third fixed frame 401. A fifth guiding roller 406 is arranged at the output end of the second conveying mechanism 403. At the lower end of the frame 1, a third collecting roller 407 corresponding to the fifth guiding roller 406 is also arranged. The third collecting roller 407 is rotatably arranged at the lower end of the frame 1. A fifth friction wheel 411 is arranged on the third collecting roller 407. The fifth friction wheel 411 is used to prevent the third collecting roller 407 from slipping during rotation, affecting the recycling efficiency.

[0049] Above the third material guiding roller 402 and the pressing rod 404, a fixing plate 412 is provided. A first gap is provided between the third material guiding roller 402 and the fixing plate 412, and a second gap is provided between the pressing rod 404 and the fixing plate 412. The paper roll sequentially passes through the second gap and the first gap along the feeding direction. The punched sticker passes through the second gap via the fourth material guiding roller 405. The conveying direction of the sticker is opposite to that of the paper roll. The pressing rod 404 presses the sticker, causing the third round hole on the sticker to be torn off from the sticker and adhered to the paper roll, and the second round hole on the sticker corresponds to the first round hole on the paper roll. The completed sticker enters the second conveying mechanism 403 and is recycled to the third winding roller 407 via the fifth material guiding roller 406, realizing the adhesion of the paper roll and the sticker and the recycling process of the sticker.

[0050] As Figures 1 to 6 shown, the automatic button nailing device 5 includes a fourth fixing frame 501. On both sides of the fourth fixing frame 501, a first vibrating disk 502 and a second vibrating disk 503 for placing magnetic buttons are respectively provided. The first vibrating disk 502 and the second vibrating disk 503 are used to realize the feeding of the magnetic buttons with automatic directional sorting. An upper mounting table 504 connected to the first vibrating disk 502 is provided on the fourth fixing frame 501. A first linear feeder 515 is provided on the first vibrating disk 502. The first vibrating disk 502 and the upper mounting table 504 are connected through the first linear feeder 515. A first mounting hole is opened in the upper mounting table 504. A third punch is provided in the first mounting hole. A third through hole is opened at one end of the third punch in contact with the magnetic button. The third through hole is connected to a first air suction pump through a first connecting pipe. A lower mounting table 505 connected to the second vibrating disk 503 is provided on the fourth fixing frame 501. A second linear feeder 512 is provided on the lower mounting table 505. The second vibrating disk 503 and the lower mounting table 505 are connected through the second linear feeder 512. A second mounting hole is opened in the lower mounting table 505. A fourth punch is provided in the second mounting hole. A fourth through hole is opened at one end of the fourth punch in contact with the magnetic button. The fourth through hole is connected to a second air suction pump through a second connecting pipe. A fifth driving member for driving the third punch and the fourth punch to move towards each other is provided on the fourth fixing frame 501. The fifth driving member includes a fifteenth cylinder 513 for driving the third punch to move in the vertical direction and a sixteenth cylinder 514 for driving the fourth punch to move in the vertical direction.

[0051] The magnetic buttons in the first vibrating bowl 502 rise along the spiral track in the first vibrating bowl 502 under the vibration action of the first vibrating bowl 502, and are neatly arranged in sequence and enter the first linear feeder 515, and are accurately conveyed to the first mounting hole in the upper mounting table 504. The air extraction pump starts to extract air, so that the magnetic buttons are adsorbed on the third punch to prevent the magnetic buttons from falling. The magnetic buttons in the second vibrating bowl 503 rise along the spiral track in the second vibrating bowl 503 under the vibration action of the second vibrating bowl 503, and are neatly arranged in sequence and enter the second linear feeder 512, and are accurately conveyed to the second mounting hole in the lower mounting table 505. The air extraction pump two starts to extract air, so that the magnetic buttons are adsorbed on the fourth punch to prevent the magnetic buttons from falling. After there is a magnetic button in both the upper mounting table 504 and the lower mounting table 505, the cylinder fifteen 513 drives the third punch to move towards the lower mounting table 505, and the cylinder sixteen 514 drives the fourth punch to move towards the upper mounting table 504, so that the upper and lower two magnetic buttons pass through the first round hole in the paper roll and the second round hole in the sticker, and are buckled together to complete the operation of nailing the electrocardiogram electrode patch.

[0052] In order to prevent multiple magnetic buttons from being sent into the upper mounting table 504 or the lower mounting table 505 together during the conveying process to achieve the operation of nailing one by one, in the present invention, a first channel is opened on the upper mounting table 504. One end of the first channel is communicated with the first vibrating bowl 502, and the other end of the first channel is communicated with the first mounting hole. A first pushing member 509 and a sixth driving member 510 for driving the first pushing member 509 to move in the first channel are inserted in the first channel. The sixth driving member 510 is set as a seventeenth cylinder. A second channel is opened on the lower mounting table 505. One end of the second channel is communicated with the second vibrating bowl 503, and the other end of the second channel is communicated with the second mounting hole. A second pushing member and a seventh driving member 511 for driving the second pushing member to move in the second channel are inserted in the second channel. The seventh driving member 511 is set as an eighteenth cylinder. The magnetic buttons in the first vibrating bowl 502 are conveyed to the first channel, and the sixth driving member 510 drives the first pushing member 509 to move in the first channel, and pushes the magnetic buttons into the first mounting hole. The first pushing member 509 can only push one magnetic button each time. Through the system control of the sixth driving member 510, only after the processing of the previous magnetic button is completed, the first pushing member 509 can be started again to push the next magnetic button. Similarly, the magnetic buttons in the second vibrating bowl 503 are conveyed to the second channel, and the seventh driving member 511 drives the second pushing member to move in the second channel, and pushes the magnetic buttons into the second mounting hole. The second pushing member can only push one magnetic button each time. Through the system control of the seventh driving member 511, only after the processing of the previous magnetic button is completed, the second pushing member can be started again to push the next magnetic button. Thus, the discharging speed and quantity of the magnetic buttons are controlled to ensure the success rate of nailing.

[0053] One end of the automatic button nailing device 5 where materials are discharged is provided with a second support plate 507. A first groove is formed in the second support plate 507 along the feeding direction. The size of the first groove is the same as that of the magnetic button. The first groove is provided to facilitate the transportation of the magnetic button on the second support plate 507 and can also position the paper roll. On both sides of the first groove, there are first limit members 508 for determining the horizontal position of the paper roll.

[0054] As Figure 1 , Figure 2 , Figure 7 and Figure 8 shown, the dispensing and curing device 6 includes a dispensing mechanism and a curing box. The dispensing mechanism includes a dispensing head 601 and a storage barrel 602 for placing glue, which is arranged on the frame 1. The dispensing head 601 is connected to the storage barrel 602 through a third connecting pipe 603. The glue enters the dispensing head 601 through the third connecting pipe 603 to perform dispensing on the paper roll. In order to adjust the height between the dispensing head 601 and the paper roll according to actual needs, the dispensing mechanism further includes an eighth driving member 604 for driving the dispensing head 601 to move in the vertical direction. The eighth driving member 604 is set as a nineteenth cylinder. The curing box includes a support platform 605 arranged on the frame 1, a box body 606 arranged on the support platform 605, and baking lamps arranged in the box body 606. In this embodiment, the baking lamps are set as ultraviolet lamps to dry the glue on the paper roll by using the baking lamps. In order to enable the paper roll to pass through the box body 606, through holes five 607 are formed at the lower ends of the two side walls of the box body 606. One end of the support platform 605 is provided with a third support plate 608. The third support plate 608 is arranged below the dispensing head 601. A second groove 609 is formed in the third support plate 608 along the feeding direction. The size of the second groove 609 is the same as that of the magnetic button. The second groove 609 is provided to facilitate the transportation of the magnetic button on the third support plate 608. On both sides of the second groove 609, there are second limit members 610 for determining the horizontal position of the paper roll. The other end of the support platform 605 is provided with a fourth support plate 611. A third groove 612 is formed in the fourth support plate 611 along the feeding direction. The size of the third groove 612 is the same as that of the magnetic button. The third groove 612 is provided to facilitate the transportation of the magnetic button on the support platform 605. On both sides of the third groove 612, there are third limit members 613 for determining the horizontal position of the paper roll.

[0055] As Figure 1 , Figure 2 , Figure 9 , Figure 10 , Figure 11As shown in the figure, the film laminating device 7 includes a fifth fixing frame 701. Along the feeding direction on the fifth fixing frame 701, a fifth support plate 702, a first pressing mechanism, a second pressing mechanism, and a sixth support plate 703 are sequentially arranged. Above the second pressing mechanism, there is a heating mechanism for deforming the plastic sealing strip. The heating mechanism includes a hot air blower 704 and a suction model 705 arranged oppositely. One end face of the suction model 705 facing the hot air blower 704 is provided with a circular groove. A sixth through hole is opened in the circular groove. The sixth through hole is connected to a third air extraction pump through a fourth connecting pipe. The other end of the suction model 705 is provided with a tenth driving part 722 for driving the suction model 705 to eject towards the hot air blower 704. The tenth driving part 722 is set as a twentieth cylinder. At the upper end of the frame 1, there is a third storage device 706 corresponding to the heating mechanism. A sixth friction wheel 723 is arranged on the third storage device 706 to prevent the third storage device 706 from slipping during rotation and affecting the feeding efficiency.

[0056] A third adjusting component 707 for adjusting the tension of the plastic sealing strip is arranged between the heating mechanism and the third storage device 706. In this embodiment, the third adjusting component 707 includes a feeding roller 724, a third pressing plate 725, and a fourth pressing plate 726. The third pressing plate 725 is fixed on the fifth fixing frame 701. The fourth pressing plate 726 is fixed on the third pressing plate 725 through a third fastener 727. The plastic sealing strip passes through the gap between the third pressing plate 725 and the fourth pressing plate 726. On both sides of the third pressing plate 725, there are also seventh limiting parts 728 for determining the longitudinal position of the plastic sealing strip.

[0057] The paper roll after dotting and curing is conveyed to the fifth support plate 702 along the feeding direction. The paper roll is pressed by the first pressing mechanism to ensure the firmness of the paper roll. The plastic sealing strip is placed at the third storage device 706. The plastic sealing strip is conveyed to the heating mechanism through the third adjusting component 707. The tenth driving part 722 is started to drive the suction model 705 to eject towards the hot air blower 704. The hot air blower 704 is started to heat the plastic sealing strip to make it soft. At this time, the third air extraction pump sucks air to make the plastic sealing strip closely adhere to the surface of the suction model 705 and deform. A shape identical to the circular groove on the suction model 705 is generated on the deformed plastic sealing strip. Through the conveying action of the film laminating device 7, the paper roll and the heated and deformed plastic sealing strip are conveyed into the second pressing mechanism together for combined pressing. Finally, the film-laminated paper roll is discharged from the sixth support plate 703 and conveyed to the next working area.

[0058] A groove four is formed in the fifth support plate 702 along the feeding direction, and limiting members four 709 for determining the horizontal position of the paper roll are arranged on both sides of the groove four. A second fixing member 710 is arranged above the fifth support plate 702, and a second cutter 711 for cutting the paper roll is rotatably arranged on the second fixing member 710. The second cutter 711 only cuts a layer of protective paper on the upper surface of the paper roll. A second roller 712 corresponding to the second cutter 711 is arranged at one end of the fifth support plate 702. In this embodiment, one end of the second fixing member 710 is fixed to the fifth fixing frame 701, a second connecting shaft 729 is arranged at the other end of the second fixing member 710, a second cutter fixing frame 730 is rotatably arranged on the second connecting shaft 729, and the second cutter 711 is arranged on the second cutter fixing frame 730. In order to adjust the distance between the first cutters 213 according to the actual size of the paper roll, a second annular fixing block for determining the horizontal position of the second cutter fixing frame 730 on the second connecting shaft 729 is also arranged on the second connecting shaft 729. A fourth receiving roller 713 is arranged at the upper end of the frame 1, and the fourth receiving roller 713 is used for recycling the waste of the cut paper roll. A seventh friction wheel 731 is arranged on the fourth receiving roller 713, and the seventh friction wheel 731 is used to prevent the fourth receiving roller 713 from slipping during the recycling process and affecting the recycling efficiency. A groove five is formed in the sixth support plate 703 along the feeding direction, and the size of the groove five is the same as that of the magnetic button. The groove five is provided to satisfy the transportation of the magnetic button on the sixth support plate 703, and limiting members five 715 for determining the horizontal position of the paper roll are arranged on both sides of the groove five.

[0059] In order to press the paper roll, pressing mechanism 1 includes synchronous belt 1 716 and synchronous belt 2 with their outer surfaces in contact. On fixed frame 5 701, there is a transmission component 1 718 for driving synchronous belt 1 716 and synchronous belt 2 to rotate synchronously. In this embodiment, transmission component 1 718 includes a first rotating shaft component and a second rotating shaft component arranged on fixed frame 5 701. The first rotating shaft component is arranged above the second rotating shaft component. The first rotating shaft component includes rotating shaft 1 and rotating shaft 2 that rotate synchronously. Synchronous belt 1 716 is arranged between rotating shaft 1 and rotating shaft 2. The second rotating shaft component includes rotating shaft 3 and rotating shaft 4 that rotate synchronously. Synchronous belt 2 is arranged between rotating shaft 3 and rotating shaft 4. The paper roll passes through the gap between synchronous belt 1 716 and synchronous belt 2. In order to press the paper roll after plastic film packaging, pressing mechanism 2 includes synchronous belt 3 and synchronous belt 4 with their outer surfaces in contact. On fixed frame 5 701, there is a transmission component 2 721 for driving synchronous belt 3 and synchronous belt 4 to rotate synchronously. In this embodiment, transmission component 2 721 includes a fifth rotating shaft component and a sixth rotating shaft component arranged on fixed frame 5 701. The fifth rotating shaft component is arranged above the sixth rotating shaft component. The third rotating shaft component includes rotating shaft 7 and rotating shaft 8 that rotate synchronously. Synchronous belt 3 is arranged between rotating shaft 7 and rotating shaft 8. The fourth rotating shaft component includes rotating shaft 5 and rotating shaft 6 that rotate synchronously. Synchronous belt 4 is arranged between rotating shaft 5 and rotating shaft 6. The paper roll after film plastic packaging passes through the gap between synchronous belt 3 and synchronous belt 4.

[0060] As Figure 1 , Figure 2 , Figure 9 , Figure 10 , Figure 11 shown in the figure, the outer shape trimming device 8 includes fixed frame 6 801. Inside fixed frame 6 801, there is a third lower die 802. A through hole 7 803 is opened in the third lower die 802. Above the third lower die 802, there is a fifth punch 804 corresponding to the through hole 7 803 and a ninth driving part 805 for driving the fifth punch 804 to move in the vertical direction. The ninth driving part 805 is set as the twenty-first air cylinder. At the upper end of the frame 1, there is a fifth material receiving roller 806 for recycling the waste paper roll after trimming. A friction wheel 8 808 is arranged on the fifth material receiving roller 806 to prevent the fifth material receiving roller 806 from slipping during the recycling process and affecting the recycling efficiency. The paper roll after film plastic packaging is conveyed above the third lower die 802 along the feeding direction. The ninth driving part 805 drives the fifth punch 804 to move towards the third lower die 802 to trim the paper roll, and finally an electrocardiogram electrode sheet is obtained, while the excess paper roll is recycled to the fifth material receiving roller 806.

[0061] To ensure the product quality of the electrocardiogram electrode patch and the firmness of the paper roll, sticker, and plastic sealing strip, a pressing assembly 807 for pressing the paper roll is provided at one end of the feeding part of the fixing frame six 801. In this embodiment, the pressing assembly 807 includes a first pressing member 809 and a second pressing member 810 arranged oppositely. The second pressing member 810 is arranged above the first pressing member 809. The lower surface of the first pressing member 809 is fixed to the frame 1. A first blind hole is formed on the upper surface of the first pressing member 809 for placing a magnetic button. The upper surface of the second pressing member 810 is connected to the output end of the ninth driving member 805 through a connecting plate. That is, when the ninth driving member 805 drives the fifth punch 804 to move downward toward the third lower die 802, the second pressing member 810 also moves toward the first pressing member 809. The first pressing member 809 and the second pressing member 810 jointly act to press the paper roll. A second blind hole corresponding to the first blind hole is formed on the lower surface of the second pressing member 810, and the second blind hole is also for placing a magnetic button.

[0062] As Figure 1 , Figure 2 , Figure 9 , Figure 10 , Figure 11 As shown, to facilitate the collection and arrangement of the electrocardiogram electrode patches after punching, the recycling device 9 includes a conveyor belt 901 arranged below the third lower die 802. A driving motor 902 for driving the conveyor belt 901 to move is arranged on the conveyor belt 901. A corresponding eighth through hole is formed at the lower end of the fixing frame six 801 corresponding to the seventh through hole 803. The electrocardiogram electrode patches after punching fall to the conveyor belt 901 from the eighth through hole. By driving the conveyor belt 901 through the driving motor 902, the transmission of the electrocardiogram electrode patches is realized, which is convenient for subsequent collection and arrangement.

[0063] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. For those of ordinary skill in the art, several variations and improvements can be made without departing from the premise of the present invention, and these should also be regarded as belonging to the protection scope of the present invention.

Claims

1. An automatic processing combination device for visual recognition of electrocardiogram electrode patches, including a frame (1), characterized in that, A paper roll loading device (2), a sticker loading device (3), a rubber strip bonding device (4), an automatic button nailing device (5), a dispensing and curing device (6), a film pasting device (7), an outer shape trimming device (8) and a recycling device (9) are sequentially arranged on the frame (1). A first visual recognition device (101) is arranged between the rubber strip bonding device (4) and the automatic button nailing device (5). A second visual recognition device (102) is arranged between the automatic button nailing device (5) and the dispensing and curing device (6). A third visual recognition device (103) is arranged between the film pasting device (7) and the outer shape trimming device (8). A fourth visual recognition device (104) is arranged above the recycling device (9). The second visual recognition device (102), the third visual recognition device (103) and the fourth visual recognition device (104) are used to recognize the positions of magnetic buttons on the paper roll, and respectively adjust the positional relationships between the automatic button nailing device (5) and the dispensing and curing device (6), between the film pasting device (7) and the outer shape trimming device (8), and the position of the recycling device (9) on the frame (1). A first driving mechanism for adjusting the horizontal position of the rubber strip bonding device (4) is arranged on the rubber strip bonding device (4). A second driving mechanism for adjusting the horizontal position of the automatic button nailing device (5) is arranged on the automatic button nailing device (5). A third driving mechanism for adjusting the horizontal position of the dispensing and curing device (6) is arranged on the dispensing and curing device (6). A fourth driving mechanism for adjusting the horizontal position of the film pasting device (7) is arranged on the film pasting device (7). A fifth driving mechanism for adjusting the horizontal position of the outer shape trimming device (8) is arranged on the outer shape trimming device (8). The paper roll loading device (2) includes a paper roll punching mechanism (201) arranged on the frame (1) and a first storage device (202) arranged above the paper roll punching mechanism (201). A first friction wheel (215) is arranged on the first storage device (202). A first guide roller (203) is arranged between the paper roll punching mechanism (201) and the first storage device (202). The paper roll punching mechanism (201) includes a first fixing frame (204). A first lower die (205) is arranged inside the first fixing frame (204). A first through hole (206) is formed inside the first lower die (205). A first upper die (207) is arranged above the first lower die (205). A first punch corresponding to the first through hole (206) is arranged inside the first upper die (207). A first driving member (208) for driving the first upper die (207) to move in the vertical direction and a second driving member for driving the first punch to move in the vertical direction are arranged on the first fixing frame (204). A first adjusting assembly (209) for adjusting the paper roll tension is arranged at the feeding end of the paper roll punching mechanism (201). A first support plate (210) is arranged at the discharging end of the paper roll punching mechanism (201). A notch is formed on the first support plate (210). A first roller (211) is arranged inside the notch. First fixing members (212) are oppositely arranged on both sides of the first support plate (210).A cutter one (213) for cutting a paper roll is rotatably arranged on the fixing part one (212). A winding roller one (214) corresponding to the supporting plate one (210) is arranged at the upper end of the machine frame (1). The rubber strip bonding device (4) includes a fixing frame three (401). A guiding roller three (402) for conveying the paper roll is arranged at the discharging end of the fixing frame three (401). A conveying mechanism two (403) for conveying the sticker is arranged at the feeding end of the fixing frame three (401). A pressing rod (404) is arranged between the guiding roller three (402) and the conveying mechanism two (403). A guiding roller four (405) corresponding to the pressing rod (404) is arranged on the fixing frame three (401). A guiding roller five (406) is arranged at the output end of the conveying mechanism two (403). A winding roller three (407) corresponding to the guiding roller five (406) is further arranged at the lower end of the machine frame (1). A friction wheel five (411) is arranged on the winding roller three (407).

2. The visual recognition automatic processing combination equipment for electrocardiogram electrode sheets according to claim 1, characterized in that, The sticker feeding device (3) includes a second storage device (301), a sticker punching mechanism, and a first conveying mechanism (302) for conveying stickers, which are sequentially arranged at the lower end of the frame (1). The sticker punching mechanism includes a second fixing frame (303). A second lower die (304) is arranged in the second fixing frame (303). A through hole two is opened in the second lower die (304). An upper die two (305) is arranged above the second lower die (304). A punch two corresponding to the through hole two is arranged in the upper die two (305). A third driving member (306) for driving the upper die two (305) to move in the vertical direction and a fourth driving member for driving the punch two to move in the vertical direction are arranged on the second fixing frame (303).

3. The visual recognition automatic processing combination device for electrocardiogram electrode sheets according to claim 2, characterized in that, The second storage device (301) is arranged on one side of the sticker punching mechanism for feeding. An adjusting component two (307) for adjusting the tightness of the stickers is arranged between the sticker punching mechanism and the second storage device (301). The first conveying mechanism (302) is arranged on one side of the sticker punching mechanism for discharging. A second guide roller (308) is arranged at the discharging end of the first conveying mechanism (302). A second collecting roller (309) corresponding to the second guide roller (308) is also arranged at the lower end of the frame (1).

4. The visual recognition automatic processing combination equipment for electrocardiogram electrode patches according to claim 1, characterized in that, The automatic button nailing device (5) includes a fourth fixing frame (501). A first vibrating plate (502) and a second vibrating plate (503) for placing magnetic buttons are respectively arranged on both sides of the fourth fixing frame (501). An upper mounting table (504) connected to the first vibrating plate (502) is arranged on the fourth fixing frame (501). A first mounting hole is opened in the upper mounting table (504). A punch three is arranged in the first mounting hole. A through hole three is opened at one end of the punch three in contact with the magnetic button. The through hole three is connected to a first air suction pump through a first connecting pipe. A lower mounting table (505) connected to the second vibrating plate (503) is arranged on the fourth fixing frame (501). A second mounting hole is opened in the lower mounting table (505). A punch four is arranged in the second mounting hole. A through hole four is opened at one end of the punch four in contact with the magnetic button. The through hole four is connected to a second air suction pump through a second connecting pipe. A fifth driving member for driving the punch three and the punch four to move towards each other is arranged on the fourth fixing frame (501). A second support plate (507) is arranged at the discharging end of the automatic button nailing device (5). A first groove is opened on the second support plate (507) along the feeding direction. A first limiting member (508) for determining the horizontal position of the paper roll is arranged on both sides of the first groove.

5. The visual recognition automatic processing combination device for electrocardiogram electrode sheets according to claim 4, characterized in that A first channel is formed in the upper mounting table (504). One end of the first channel communicates with the first vibrating bowl (502), and the other end of the first channel communicates with the first mounting hole. A first pusher (509) and a sixth driver (510) for driving the first pusher (509) to move in the first channel are inserted into the first channel. A second channel is formed in the lower mounting table (505). One end of the second channel communicates with the second vibrating bowl (503), and the other end of the second channel communicates with the second mounting hole. A second pusher and a seventh driver (511) for driving the second pusher to move in the second channel are inserted into the second channel.

6. The visual recognition automatic processing combination equipment for electrocardiogram electrode patches according to claim 1, characterized in that, The dispensing and curing device (6) includes a dispensing mechanism and a curing box. The dispensing mechanism includes a dispensing head (601) and a material storage barrel (602) for placing glue, which is arranged on the frame (1). The dispensing head (601) is connected to the material storage barrel (602) through a third connecting pipe (603). The dispensing mechanism further includes an eighth driver (604) for driving the dispensing head (601) to move in the vertical direction. The curing box includes a support table (605) arranged on the frame (1), a box body (606) arranged on the support table (605), and a baking lamp arranged in the box body (606). Opposite through holes five (607) are formed at the lower ends of the two side walls of the box body (606). One end of the support table (605) is provided with a third support plate (608), and the third support plate (608) is arranged below the dispensing head (601). A second groove (609) is formed in the third support plate (608) along the feeding direction. Two limiting members two (610) for determining the horizontal position of the paper roll are arranged on both sides of the second groove (609). The other end of the support table (605) is provided with a fourth support plate (611), and a third groove (612) is formed in the fourth support plate (611) along the feeding direction. Two limiting members three (613) for determining the horizontal position of the paper roll are arranged on both sides of the third groove (612).

7. The visual recognition automatic processing combination equipment for electrocardiogram electrode sheets according to claim 1, characterized in that, The film pasting device (7) includes a fifth fixing frame (701). Along the feeding direction, a fifth support plate (702), a first pressing mechanism, a second pressing mechanism, and a sixth support plate (703) are sequentially arranged on the fifth fixing frame (701). Above the second pressing mechanism, a heating mechanism for deforming the plastic sealing strip is provided. The heating mechanism includes a hot air blower (704) and a suction model (705) arranged opposite to each other. A circular groove is formed in the end face of the suction model (705) facing the hot air blower (704). A through hole six is formed in the circular groove. The through hole six is connected to a third air extraction pump through a fourth connecting pipe. A third material storage device (706) corresponding to the heating mechanism is arranged at the upper end of the frame (1). An adjusting component three (707) for adjusting the tension of the plastic sealing strip is arranged between the heating mechanism and the third material storage device (706).

8. The visual recognition automatic processing combination device for electrocardiogram electrode patches according to claim 7, characterized in that, A groove four is formed in the supporting plate five (702) along the feeding direction. Position-limiting members four (709) for determining the horizontal position of the paper roll are arranged on both sides of the groove four. A fixing member two (710) is arranged above the supporting plate five (702). A cutter two (711) for cutting the paper roll is rotatably arranged on the fixing member two (710). A roller two (712) corresponding to the cutter two (711) is arranged at one end of the supporting plate five (702). A winding roller four (713) is arranged at the upper end of the machine frame (1). A groove five is formed in the supporting plate six (703) along the feeding direction. Position-limiting members five for determining the horizontal position of the paper roll are arranged on both sides of the groove five.

9. The visual recognition automatic processing combination device for electrocardiogram electrode sheets according to claim 8, characterized in that, The pressing mechanism one includes a synchronous belt one (716) and a synchronous belt two with mutually attached outer surfaces. A transmission component one (718) for driving the synchronous belt one (716) and the synchronous belt two to rotate synchronously is arranged on the fixing frame five (701). The pressing mechanism two includes a synchronous belt three and a synchronous belt four with mutually attached outer surfaces. A transmission component two (721) for driving the synchronous belt three and the synchronous belt four to rotate synchronously is arranged on the fixing frame five (701).

10. The visual recognition automatic processing combination device for electrocardiogram electrode sheets according to claim 1, characterized in that, The profiling and edge-trimming device (8) includes a fixing frame six (801). A lower die three (802) is arranged inside the fixing frame six (801). A through hole seven (803) is formed in the lower die three (802). A punch five (804) corresponding to the through hole seven (803) and a driving member nine (805) for driving the punch five (804) to move in the vertical direction are arranged above the lower die three (802). A through hole eight corresponding to the through hole seven (803) is formed at the lower end of the fixing frame six (801). A winding roller five (806) is arranged at the upper end of the machine frame (1).

11. The visual recognition automatic processing combination device for electrocardiogram electrode sheets according to claim 10, characterized in that, A pressing component (807) for pressing the paper roll is arranged at the feeding end of the fixing frame six (801).

12. The visual recognition automatic processing combination device for electrocardiogram electrode patches according to claim 11, characterized in that, The recycling device (9) includes a transmission belt (901) arranged below the lower die three (802). A driving motor (902) for driving the transmission of the transmission belt (901) is arranged on the transmission belt (901).

Citation Information

Patent Citations

  • Disposable electrocardio-electrode dotter

    CN107661098A

  • Disposable ECG electrode production device

    CN109454455A

  • Visual wobble-plate adhesive dispensing machine and adhesive dispensing method

    CN110538770A

  • Visual identification and automatic processing combined equipment for electrocardiogram electrode slices

    CN213707158U