Preparation equipment and preparation method of acupuncture point magnetic therapy patch

By designing an automated equipment for the preparation of acupuncture magnetic therapy patches, the paste is die-cut and cut between the release paper and the non-woven fabric using a die-cutting column, which solves the inefficiency and paste waste caused by manual intervention in the traditional production process, and achieves an efficient and resource-saving production process.

CN120206587AInactive Publication Date: 2025-06-27MUDANJIANG MEDICAL UNIV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510435297.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the production process of traditional acupoint magnetic therapy patches, there is more manual intervention, resulting in low production efficiency and serious waste of paste.

Method used

A preparation equipment for acupuncture magnetic therapy patches was designed to die-cut and cut the paste between the release paper and the non-woven fabric through a die-cutting column to achieve automated production and reduce manual intervention.

Benefits of technology

Improve production efficiency, reduce waste of paste, and achieve resource conservation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120206587A_ABST
    Figure CN120206587A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of magnetic therapy patch production equipment, in particular to an acupoint magnetic therapy patch preparation device and a preparation method thereof.The acupoint magnetic therapy patch preparation device comprises a stirring pool and a sealing extrusion plate, a partition plate sliding groove is formed in the bottom of the stirring pool, and a paste injection partition plate mechanism is slidably arranged in the partition plate sliding groove; a release paper conveying mechanism and a non-woven fabric conveying mechanism are arranged on the stirring pool, the release paper conveying mechanism comprises release paper, the non-woven fabric conveying mechanism comprises non-woven fabric, and the release paper and the non-woven fabric are sequentially arranged under the stirring pool. The pasty fluid is just located above the die cutting column between the release paper and the non-woven fabric, the pasty fluid is subjected to die cutting through the die cutting column, on one hand, the pasty fluid can be flatly laid and extruded between the release paper and the non-woven fabric to be bonded and subjected to die cutting, manual adjustment is not needed in the whole processing process, and the processing efficiency is improved; and compared with a traditional mode that the pasty fluid is fully paved and then cut, the effect of saving the pasty fluid is achieved, and the purpose of saving resources is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a preparation device and a preparation method of an acupoint magnetic therapy patch, belonging to the technical field of magnetic therapy patch production equipment. Background Art

[0002] The principle of the acupoint magnetic therapy patch is mainly based on the combination of traditional Chinese medicine meridian theory and magnetic field effect. The magnetic field stimulates acupoints, regulates the flow of qi and blood, improves microcirculation, relieves muscle tension, promotes metabolism, and its curative effects cover sedation and hypnosis, pain relief, promoting blood circulation to remove blood stasis, dispelling wind and cold, and regulating endocrine. The acupoint magnetic therapy patch is a medicated patch used to treat diabetes. Because of its low cost and small side effects, it has a wide range of applications.

[0003] During the production process of the acupoint magnetic therapy patch, the raw materials need to be crushed and mixed, and then sprayed and cut. In the traditional production process of magnetic therapy patches, manual intervention is often carried out in the forming and die-cutting link. For example, the non-woven fabric is placed first, and the release paper is placed after the paste injection is completed, and then die-cutting is carried out, which is time-consuming and laborious, and the production efficiency is low. Moreover, in the traditional die-cutting process, the paste is evenly spread on the carrier first, and then cut into a certain size, and the remaining part will cause waste of the paste.

[0004] Therefore, it is urgent to improve the preparation device of the acupoint magnetic therapy patch to solve the above existing problems. Summary of the Invention

[0005] The purpose of the present invention is to provide a preparation device and a preparation method of an acupoint magnetic therapy patch. The paste is just above the die-cutting column between the release paper and the non-woven fabric. The paste is die-cut by the die-cutting column. On the one hand, the paste can be evenly spread and extruded between the release paper and the non-woven fabric for bonding and die-cutting. The whole processing process does not require manual adjustment, which improves the processing efficiency. Moreover, compared with the traditional method of spreading the paste and then cutting, it has the effect of saving the paste and achieves the purpose of saving resources.

[0006] In order to achieve the above purpose, the main technical solutions adopted by the present invention include:

[0007] A preparation device for an acupoint magnetic therapy patch, comprising a stirring tank and a sealed extrusion plate slidably arranged inside the stirring tank. A partition chute is opened at the bottom of the stirring tank, and a paste injection partition mechanism is slidably arranged inside the partition chute. A plurality of uniformly distributed paste discharge holes of the stirring tank are opened inside the stirring tank, and the paste discharge holes of the stirring tank are communicated with the partition chute and extend to the bottom of the stirring tank. The paste injection partition mechanism includes a hollow partition and a partition driving motor, and the partition driving motor is used to horizontally push the hollow partition. The hollow partition is provided with partition paste injection holes corresponding to the paste discharge holes of the stirring tank. When the paste injection partition mechanism is displaced, the paste injection partition mechanism is used to seal the paste discharge holes of the stirring tank;

[0008] A release paper conveying mechanism and a non-woven fabric conveying mechanism are arranged on the stirring tank. The release paper conveying mechanism includes release paper, and the non-woven fabric conveying mechanism includes non-woven fabric. The release paper and the non-woven fabric are sequentially arranged directly below the stirring tank. A die-cutting support plate is slidably arranged directly below the non-woven fabric conveying mechanism. A plurality of uniformly distributed die-cutting columns are arranged on the upper side surface of the die-cutting support plate, and a cutting edge is fixedly arranged on the upper side surface of the die-cutting column. Die-cutting holes corresponding to the die-cutting columns are opened at the bottom of the paste discharge holes of the stirring tank. When the die-cutting support plate is braked upward, the die-cutting columns are stuck inside the die-cutting holes.

[0009] Preferably, the release paper is connected with a release paper electric roller and a release paper transmission roller. The release paper electric roller is used to wind up the release paper, and both the release paper electric roller and the release paper transmission roller are fixedly arranged on the stirring tank through a first fixed connecting rod;

[0010] A guide roller groove is opened on the bottom side surface of the stirring tank, and a guide roller is rotatably arranged inside the guide roller groove. The guide roller abuts against the release paper;

[0011] The non-woven fabric is connected with a non-woven fabric electric roller and a non-woven fabric transmission roller. The non-woven fabric electric roller is used to wind up the non-woven fabric, and both the non-woven fabric electric roller and the non-woven fabric transmission roller are fixedly arranged on the stirring tank through a second fixed connecting rod.

[0012] Preferably, the release paper is arranged directly above the non-woven fabric. When the die-cutting support plate is braked upward, the die-cutting columns press the non-woven fabric and the release paper into the die-cutting holes.

[0013] Preferably, one end of the hollow partition is connected with a C-shaped driving member. A driving tooth is arranged on the C-shaped driving member, and a partition driving gear is arranged at the output end of the partition driving motor. The partition driving gear is meshed with the driving tooth and is used to horizontally push the paste injection partition mechanism;

[0014] A motor fixing rod is fixedly connected to the partition driving motor, and the motor fixing rod is fixedly arranged on the outer side surface of the stirring tank.

[0015] Preferably, support frames are fixedly arranged on both side surfaces of the stirring tank, a protective plate is fixedly arranged above the support frames, a motor fixing rod is fixedly connected to the middle of the support frames, a material taking limiting block is connected to the bottom of the motor fixing rod through a die-cutting electric telescopic rod, die-cutting plate chutes are formed at both ends of the die-cutting support plate, and the die-cutting plate chutes are slidably connected to the material taking limiting block. When the die-cutting electric telescopic rod brakes, the die-cutting support plate moves upward;

[0016] Symmetrically distributed die-cutting plate handles are arranged on the bottom side surface of the die-cutting support plate.

[0017] Preferably, the upper part of the support frame is connected to the sealing extrusion plate through an extrusion electric telescopic rod. The extrusion electric telescopic rod is used to vertically pull the sealing extrusion plate. When the extrusion electric telescopic rod brakes, the sealing extrusion plate is slidably arranged inside the stirring tank.

[0018] Preferably, two stirring mechanisms are rotatably arranged on the sealing extrusion plate. The stirring mechanism includes a stirring wheel and a stirring driven gear connected through a transmission shaft. A stirring wheel chuck is arranged on the sealing extrusion plate, a stirring wheel rotating groove corresponding to the stirring wheel chuck is arranged on the stirring wheel, and the stirring wheel chuck is rotatably arranged inside the stirring wheel rotating groove;

[0019] A plurality of uniformly distributed stirring rod sliding holes are arranged on the stirring wheel, and stirring rods are slidably arranged inside the stirring rod sliding holes.

[0020] Preferably, a stirring rod limiting block is connected to the top of the stirring rod, a stirring block is connected to the bottom of the stirring rod, and a stirring block groove corresponding to the stirring block is arranged on the bottom side surface of the stirring wheel at the stirring rod sliding holes.

[0021] Preferably, a stirring motor is fixedly arranged on the sealing extrusion plate between the two stirring mechanisms. A stirring driving gear is arranged at the output end of the stirring motor. The stirring driving gear is meshed and connected with the stirring driven gear, and the stirring driving gear is used to rotate the stirring mechanism.

[0022] A preparation method of an acupoint magnetic therapy patch includes the following steps:

[0023] Step 1: Raw material input. The sealing extrusion plate is lifted upward through the extrusion electric telescopic rod, and the acupoint magnetic therapy patch material is put into the inside of the stirring tank together. At the same time, the partition paste injection hole on the hollow partition is arranged in a dislocation manner with the paste discharge hole of the stirring tank;

[0024] Step 2: Material stirring. The sealing extrusion plate is moved downward by the extrusion electric telescopic rod to cover the port of the stirring tank.

[0025] Then start the stirring motor on the sealing extrusion plate. After the stirring motor starts, drive two stirring driven gears to rotate through the stirring drive gear. While the stirring driven gears are rotating, drive the stirring wheel to rotate through the transmission shaft. The stirring rods slide into the interior of the stirring tank under the action of gravity and stir the raw materials into a paste.

[0026] Step 3: Die-cutting and forming. After stirring, the paste is die-cut and formed. Specifically:

[0027] Continue to start the extrusion electric telescopic rod to slide the sealing extrusion plate into the interior of the stirring tank to extrude the paste. After the paste injection hole on the partition plate corresponds to the paste discharge hole of the stirring tank, the paste is extruded onto the non-woven fabric through the paste discharge hole of the stirring tank. While extruding the paste, start the die-cutting electric telescopic rod to move the die-cutting posts on the die-cutting support plate to the bottom of the non-woven fabric.

[0028] Then drag the completed release paper to directly above the paste through the release paper electric roller, so that the paste is between the release paper and the non-woven fabric. Continue to start the die-cutting electric telescopic rod to squeeze the die-cutting posts together with the release paper, the paste, and the non-woven fabric into the die-cutting hole. While die-cutting the paste, cut the release paper and the fixed connecting rod II.

[0029] Move the die-cutting support plate downward through the die-cutting electric telescopic rod and remove the die-cut and formed paste.

[0030] Then replace the cut non-woven fabric through the non-woven fabric electric roller, and replace the release paper after the paste is extruded for a new round of die-cutting and forming operations.

[0031] The present invention has at least the following beneficial effects:

[0032] 1. During the paste injection process, the movement of the paste injection partition mechanism can quantitatively measure the paste. During paste injection, move the hollow partition plate so that the paste injection hole on the partition plate and the paste discharge hole of the stirring tank are on the same vertical axis. Then the paste will be discharged through the paste discharge hole of the stirring tank and the paste injection hole on the partition plate in sequence. When stirring, the paste injection hole on the partition plate and the paste discharge hole of the stirring tank are arranged in a staggered manner, so the discharge of the paste can be avoided. In addition, the paste can be intercepted through the paste injection hole on the partition plate to prevent the quality of the paste injection from being too large.

[0033] 2. The paste is also exactly above the die-cutting posts between the release paper and the non-woven fabric. When the die-cutting support plate moves upward, the die-cutting posts first squeeze the non-woven fabric, and then the paste, release paper, and non-woven fabric are all squeezed into the die-cutting holes together. On the one hand, the paste can be spread and squeezed between the release paper and the non-woven fabric for bonding. On the other hand, after extrusion, the cut paste, release paper, and non-woven fabric can be cut by the cutting edges on the die-cutting posts. After cutting, the material-taking limit block is moved downward by the die-cutting electric telescopic rod, and the cut finished product and the die-cutting support plate are lowered together, and then the finished product can be taken off. Therefore, during the entire processing process, there is no need to manually adjust the release paper and the non-woven fabric, which improves the processing efficiency. Moreover, compared with the traditional method of covering the paste and then cutting, it has the effect of saving paste and achieves the purpose of saving resources.

[0034] 3. During the paste injection process, since a certain aperture is left on the release paper after die-cutting by the die-cutting posts, the release paper is not replaced at this time. When injecting the paste, the paste is sprayed on the non-woven fabric through the aperture on the release paper, and then the release paper is replaced. The specific process of replacement is as follows: The cut release paper is wound up by the release paper electric roller, and then the complete release paper is covered on the paste.

[0035] 4. During stirring, the stirring blocks on the stirring rod slide into the interior of the stirring pool under the action of gravity to stir the raw materials inside the stirring pool. After stirring ends, while the sealing and extrusion plate moves downward, in order not to affect the extrusion and paste injection, the stirring blocks at the bottom of the stirring rod enter the interior of the stirring block groove and squeeze the paste to complete the purpose of paste injection and improve the efficiency of paste injection. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation of the present application. In the drawings:

[0037] Figure 1 is a partial cross-sectional view of the present invention;

[0038] Figure 2 is the partial structure of the present invention Figure 1 ;

[0039] Figure 3 is the structure diagram of the release paper conveying mechanism of the present invention;

[0040] Figure 4 is the structure diagram of the paste injection partition mechanism of the present invention;

[0041] Figure 5 is the three-dimensional view of the die-cutting support plate of the present invention Figure 1 ;

[0042] Figure 6Isometric view of the die-cutting support plate of the present invention Figure 2 ;

[0043] Figure 7 Partial structure of the present invention Figure 2 ;

[0044] Figure 8 Structure of the stirring mechanism of the present invention Figure 1 ;

[0045] Figure 9 Structure of the stirring mechanism of the present invention Figure 2 ;

[0046] Figure 10 Partial structure of the present invention Figure 3 ;

[0047] Figure 11 Isometric view of the present invention.

[0048] In the figure, 1, stirring pool; 101, paste discharge hole of the stirring pool; 102, guide roller groove; 103, guide roller; 104, partition chute; 105, die-cutting hole; 2, sealing and extrusion plate; 201, stirring wheel chuck; 3, stirring mechanism; 301, stirring wheel; 302, transmission shaft; 303, driven stirring gear; 304, rotating groove of the stirring wheel; 305, sliding hole of the stirring rod; 306, block groove of the stirring block; 4, stirring rod; 401, limit block of the stirring rod; 402, stirring block; 5, stirring motor; 501, driving gear of the stirring motor; 6, release paper conveying mechanism; 601, electric roller for release paper; 602, transmission roller for release paper; 603, release paper; 604, fixed connecting rod 1; 7, non-woven fabric conveying mechanism; 701, electric roller for non-woven fabric; 702, transmission roller for non-woven fabric; 703, non-woven fabric; 704, fixed connecting rod 2; 8, paste injection partition mechanism; 801, hollow partition; 802, partition driving motor; 803, C-shaped driving part; 804, driving tooth; 805, driving gear of the partition; 806, paste injection hole of the partition; 9, die-cutting support plate; 901, die-cutting column; 902, die-cutting plate chute; 903, handle of the die-cutting plate; 10, support frame; 11, motor fixing rod; 12, material taking limit block; 13, die-cutting electric telescopic rod; 14, extrusion electric telescopic rod; 15, protective plate. Detailed implementation manners

[0049] The following will cooperate with the drawings and embodiments to elaborate in detail the implementation manners of the present application, so as to fully understand how the present application uses technical means to solve technical problems and achieve the realization process of technical effects and implement accordingly.

[0050] As Figures 1 - 11As shown in the figure, the preparation equipment for the acupoint magnetic therapy patch provided in this embodiment includes a stirring tank 1 and a sealed extrusion plate 2 slidably arranged inside the stirring tank 1. A partition chute 104 is opened at the bottom of the stirring tank 1, and a paste injection partition mechanism 8 is slidably arranged inside the partition chute 104. A number of uniformly distributed paste discharge holes 101 are opened inside the stirring tank 1. The paste discharge holes 101 of the stirring tank are communicated with the partition chute 104 and extend to the bottom of the stirring tank 1. During the paste preparation, the raw materials are directly put into the inside of the stirring tank 1, and after the paste is stirred, it is directly discharged through the paste discharge holes 101 at the bottom of the stirring tank 1. The structure is simple, and the processing efficiency is improved. The paste injection partition mechanism 8 includes a hollow partition 801 and a partition driving motor 802. The partition driving motor 802 is used to horizontally push the hollow partition 801. A partition paste injection hole 806 corresponding to the paste discharge hole 101 of the stirring tank is opened on the hollow partition 801. When the paste injection partition mechanism 8 is displaced, the paste injection partition mechanism 8 is used to seal the paste discharge hole 101 of the stirring tank. During the paste injection process, the amount of the paste can be quantitatively measured through the movement of the paste injection partition mechanism 8. When injecting the paste, by moving the hollow partition 801, the partition paste injection hole 806 and the paste discharge hole 101 of the stirring tank are on the same vertical axis, and then the paste will be discharged through the paste discharge hole 101 of the stirring tank and the partition paste injection hole 806 in sequence. During stirring, the partition paste injection hole 806 and the paste discharge hole 101 of the stirring tank are arranged in a staggered manner, so the discharge of the paste can be avoided. In addition, the paste can be intercepted through the partition paste injection hole 806 to prevent the quality of the injected paste from being too large;

[0051] After the paste is discharged, a release paper conveying mechanism 6 and a non-woven fabric conveying mechanism 7 are arranged on the stirring tank 1. The release paper conveying mechanism 6 includes a release paper 603, and the non-woven fabric conveying mechanism 7 includes a non-woven fabric 703. The release paper 603 and the non-woven fabric 703 are sequentially arranged directly below the stirring tank 1. When injecting the paste, the paste is first dropped onto the non-woven fabric 703. That is to say, after the previous die-cutting is completed, the hollow release paper 603 is not replaced. When injecting the paste, the paste directly passes through the hollow release paper 603 and drops onto the non-woven fabric 703. After the injection of the paste is completed, the hollow release paper 603 is replaced. After the replacement, the paste stays between the non-woven fabric 703 and the release paper 603. A die-cutting support plate 9 is slidably arranged directly below the non-woven fabric conveying mechanism 7. A plurality of evenly distributed die-cutting columns 901 are arranged on the upper side surface of the die-cutting support plate 9. A cutting edge is fixedly arranged on the upper side surface of the die-cutting column 901. A die-cutting hole 105 corresponding to the die-cutting column 901 is opened at the bottom of the paste discharge hole 101 of the stirring tank. Among them, when the die-cutting support plate 9 moves upward and brakes, the die-cutting column 901 is stuck inside the die-cutting hole 105. The release paper 603 is arranged directly above the non-woven fabric 703. Among them, when the die-cutting support plate 9 moves upward and brakes, the die-cutting column 901 presses the non-woven fabric 703 and the release paper 603 into the die-cutting hole 105. The paste is just above the die-cutting column 901 between the release paper 603 and the non-woven fabric 703. When the die-cutting support plate 9 moves upward, the die-cutting column 901 first squeezes the non-woven fabric 703, and then the paste, the release paper 603 and the non-woven fabric 703 are squeezed into the die-cutting hole 105 together. On the one hand, the paste can be spread and squeezed between the release paper 603 and the non-woven fabric 703 for adhesion. On the other hand, after the extrusion, the cutting edge on the die-cutting column 901 can also cut the adhered paste, release paper 603 and non-woven fabric 703;

[0052] After cutting, the die-cutting electric telescopic rod 13 moves the material taking limit block 12 downward, and the cut finished product and the die-cutting support plate 9 descend together, and then the finished product can be taken off. Therefore, during the entire processing process, there is no need to manually adjust the release paper 603 and the non-woven fabric 703, which improves the processing efficiency. Moreover, compared with the traditional method of covering the paste and then cutting, it has the effect of saving the paste and achieves the purpose of saving resources.

[0053] Further, as Figure 1 、 Figure 2 and Figure 3As shown, a release paper electric roller 601 and a release paper driving roller 602 are connected to the release paper 603. The release paper electric roller 601 is used for winding the release paper 603. Both the release paper electric roller 601 and the release paper driving roller 602 are fixedly arranged on the mixing tank 1 through a first fixed connecting rod 604. The release paper electric roller 601 and the release paper driving roller 602 are arranged on the mixing tank 1 through the first fixed connecting rod 604, improving the overall stability of the release paper conveying mechanism 6. A guide roller groove 102 is formed on the bottom side of the mixing tank 1. A guide roller 103 is rotatably arranged inside the guide roller groove 102. The guide roller 103 abuts against the release paper 603. When the release paper 603 rotates, the release paper 603 abuts against the guide roller 103 inside the guide roller groove 102 to play a certain guiding role, and at the same time, it avoids the release paper 603 from rubbing against the bottom of the mixing tank 1, improving the processing quality;

[0054] During the paste injection process, since a certain aperture is left after the die-cutting post 901 cuts the release paper 603, the release paper 603 is not replaced at this time. During paste injection, the paste is sprayed on the non-woven fabric 703 through the aperture on the release paper 603, and then the release paper 603 is replaced. The specific replacement process is as follows: the release paper electric roller 601 winds the cut release paper 603, and then covers the complete release paper 603 on the paste;

[0055] After the cutting is completed, the non-woven fabric conveying mechanism 7 is started to replace the non-woven fabric 703. A non-woven fabric electric roller 701 and a non-woven fabric driving roller 702 are connected to the non-woven fabric 703. The non-woven fabric electric roller 701 is used for winding the non-woven fabric 703. Both the non-woven fabric electric roller 701 and the non-woven fabric driving roller 702 are fixedly arranged on the mixing tank 1 through a second fixed connecting rod 704. By starting the non-woven fabric electric roller 701 on the non-woven fabric conveying mechanism 7 to wind the cut non-woven fabric 703, the structure is simple and no manual adjustment is required, improving the convenience of use. The non-woven fabric conveying mechanism 7 is fixed on the mixing tank 1 through the second fixed connecting rod 704, improving the stability of the non-woven fabric conveying mechanism 7.

[0056] Furthermore, for the convenience of paste injection, such as Figure 1 、 Figure 2 and Figure 4As shown, one end of the hollow partition 801 is connected to a C-shaped driving member 803. A driving tooth 804 is provided on the C-shaped driving member 803. The output end of the partition driving motor 802 is provided with a partition driving gear 805. The partition driving gear 805 is meshed and connected with the driving tooth 804 and is used to horizontally push the paste injection partition mechanism 8. By horizontally pushing the paste injection partition mechanism 8, the start and stop of paste injection can be realized, and the purpose of automatic paste injection can be achieved. Specifically: during stirring, the partition paste injection hole 806 on the hollow partition 801 is not on the same vertical axis as the paste discharge hole 101 of the stirring tank. The hollow partition 801 seals the paste discharge hole 101 of the stirring tank, facilitating the stirring of raw materials. During paste injection, when the horizontal paste injection partition mechanism 8 is pushed, the partition paste injection hole 806 corresponds to the paste discharge hole 101 of the stirring tank to achieve the purpose of paste injection;

[0057] During the process of horizontally pushing the hollow partition 801, the partition driving motor 802 on the paste injection partition mechanism 8 is started. The partition driving motor 802 drives the driving gear 804 on the C-shaped driving member 803 through the partition driving gear 805. During paste injection, the partition paste injection hole 806 corresponds to the paste discharge hole 101 of the stirring tank. When not injecting paste, the partition paste injection hole 806 is misaligned with the paste discharge hole 101 of the stirring tank. A motor fixing rod 11 is fixedly connected to the partition driving motor 802. The motor fixing rod 11 is fixedly arranged on the outer side of the stirring tank 1. The partition driving motor 802 is fixed on the stirring tank 1 through the motor fixing rod 11, improving the stability of the partition driving motor 802;

[0058] As Figure 5 、 Figure 6 and Figure 11 shown, support frames 10 are fixedly arranged on both side surfaces of the stirring tank 1. A protective plate 15 is fixedly arranged above the support frames 10. The middle part of the support frame 10 is fixedly connected with a motor fixing rod 11. The bottom of the motor fixing rod 11 is connected with a material taking limit block 12 through a die-cutting electric telescopic rod 13. Die-cutting plate chutes 902 are opened at both ends of the die-cutting support plate 9. The die-cutting plate chutes 902 are slidably connected with the material taking limit block 12. When the die-cutting electric telescopic rod 13 is braked, the die-cutting support plate 9 moves upward. Symmetrically distributed die-cutting plate handles 903 are arranged on the bottom surface of the die-cutting support plate 9. After paste injection is completed, the die-cutting support plate 9 is pulled out through the die-cutting plate handles 903 on the die-cutting support plate 9, facilitating the collection of the finished products on the die-cutting posts 901 and improving the convenience of use.

[0059] Furthermore, as Figure 1 、 Figure 2 、 Figure 7As shown, the upper part of the support frame 10 is connected to the sealing extrusion plate 2 through the extrusion electric telescopic rod 14. The extrusion electric telescopic rod 14 is used to vertically pull the sealing extrusion plate 2. When the extrusion electric telescopic rod 14 is braked, the sealing extrusion plate 2 is slidably arranged inside the mixing tank 1. There is a sealing extrusion plate 2 above the mixing tank 1. The extrusion electric telescopic rod 14 can cover and seal the port of the sealing extrusion plate 2. At the same time, when the sealing extrusion plate 2 slides inside the mixing tank 1, it can extrude the paste, which is convenient for paste injection.

[0060] Moreover, a stirring mechanism 3 is also arranged on the sealing extrusion plate 2. The raw materials inside the mixing tank 1 are stirred through the stirring mechanism 3, such as Figure 8 , Figure 9 and Figure 10 As shown, two stirring mechanisms 3 are rotatably arranged on the sealing extrusion plate 2. The stirring mechanism 3 includes a stirring wheel 301 and a stirring driven gear 303 connected through a transmission shaft 302. A stirring wheel chuck 201 is opened on the sealing extrusion plate 2. A stirring wheel rotating groove 304 corresponding to the stirring wheel chuck 201 is opened on the stirring wheel 301. The stirring wheel chuck 201 is rotatably arranged inside the stirring wheel rotating groove 304. When the stirring driven gear 303 on the stirring mechanism 3 rotates, the stirring wheel 301 is driven to rotate inside the stirring wheel chuck 201 through the transmission shaft 302. A plurality of uniformly distributed stirring rod sliding holes 305 are opened on the stirring wheel 301. A stirring rod 4 is slidably arranged inside the stirring rod sliding hole 305. While the stirring wheel 301 rotates, the raw materials are stirred through the stirring rods 4 on the stirring wheel 301. The multiple stirring rods 4 make the stirring more sufficient. The top of the stirring rod 4 is connected with a stirring rod limiting block 401, and the bottom of the stirring rod 4 is connected with a stirring block 402. A stirring block groove 306 is opened on the bottom side of the stirring wheel 301 at the stirring rod sliding hole 305. The stirring block groove 306 corresponds to the stirring block 402. During stirring, the stirring block 402 on the stirring rod 4 slides into the inside of the mixing tank 1 under the action of gravity to stir the raw materials inside the mixing tank 1. After stirring, when the sealing extrusion plate 2 moves downward, in order not to affect the extrusion and paste injection, the stirring block 402 at the bottom of the stirring rod 4 enters into the stirring block groove 306 and extrudes the paste, achieving the purpose of paste injection and improving the efficiency of paste injection.

[0061] In addition, for the convenience of stirring, such as Figure 2 and Figure 10As shown in the figure, a stirring motor 5 is fixedly arranged on the sealing and pressing plate 2 between two stirring mechanisms 3. A stirring drive gear 501 is arranged at the output end of the stirring motor 5. The stirring drive gear 501 is meshed and connected with a stirring driven gear 303. The stirring drive gear 501 is used to rotate the stirring mechanism 3. A stirring motor 5 is fixedly arranged between two stirring mechanisms 3. By rotating the stirring motor 5, the stirring drive gear 501 is driven to rotate, and at the same time, the stirring driven gear 303 is driven to rotate, so as to achieve the purpose of stirring by the stirring rod 4.

[0062] As Figures 1 - 11 shown, the preparation method of the preparation equipment for the acupoint magnetic therapy patch provided in this embodiment includes the following steps:

[0063] Step 1: Raw material input. The sealing and pressing plate 2 is lifted upward by the extrusion electric telescopic rod 14, and the acupoint magnetic therapy patch material is put into the inside of the stirring pool 1 together. At the same time, the partition paste injection hole 806 on the hollow partition plate 801 is arranged in a dislocation manner with the stirring pool paste discharge hole 101.

[0064] Step 2: Material stirring. The sealing and pressing plate 2 is moved downward by the extrusion electric telescopic rod 14 to cover the port of the stirring pool 1.

[0065] Then, the stirring motor 5 on the sealing and pressing plate 2 is started. After the stirring motor 5 is started, the two stirring driven gears 303 are driven to rotate by the stirring drive gear 501. While the stirring driven gear 303 is rotating, the stirring wheel 301 is driven to rotate by the transmission shaft 302. The stirring rod 4 slides into the inside of the stirring pool 1 under the action of gravity and stirs the raw materials into a paste.

[0066] Step 3: Die cutting and forming. After the stirring is completed, the paste is die cut and formed. Specifically:

[0067] Continue to start the extrusion electric telescopic rod 14 to slide the sealing and pressing plate 2 into the inside of the stirring pool 1 to extrude the paste. After the partition paste injection hole 806 corresponds to the stirring pool paste discharge hole 101, the paste is extruded onto the non-woven fabric 703 through the stirring pool paste discharge hole 101. While extruding the paste, the die cutting electric telescopic rod 13 is started to move the die cutting column 901 on the die cutting support plate 9 to the bottom of the non-woven fabric 703.

[0068] Then, the completed release paper 603 is dragged to the upper part of the paste by the release paper electric roller 601, so that the paste is in the middle of the release paper 603 and the non-woven fabric 703. Continue to start the die cutting electric telescopic rod 13 to squeeze the die cutting column 901 together with the release paper 603, the paste and the non-woven fabric 703 into the die cutting hole 105, and cut the release paper 603 and the fixed connecting rod two 704 while die cutting the paste.

[0069] Move the die-cutting support plate 9 downward through the die-cutting electric telescopic rod 13, and remove the paste formed by die-cutting.

[0070] Then, replace the cut non-woven fabric 703 through the non-woven fabric electric roller 701, and replace the release paper 603 after the paste is extruded, and perform a new round of die-cutting and forming operations.

[0071] As used in the specification and claims, certain terms are used to refer to specific components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not use the difference in names as a way to distinguish components, but use the difference in functions of components as the criterion for distinction. As mentioned throughout the specification and claims, "comprising" is an open-ended term and should be interpreted as "comprising but not limited to". "Substantially" means within an acceptable error range. Those skilled in the art can solve technical problems within a certain error range and basically achieve the technical effect.

[0072] It should be noted that the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a commodity or system including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent in such a commodity or system. Without further limitation, an element defined by the statement "including one..." does not exclude the existence of another identical element in the commodity or system including the element.

[0073] The above description shows and describes several preferred embodiments of the present invention. However, as mentioned above, it should be understood that the present invention is not limited to the form disclosed herein, should not be regarded as excluding other embodiments, but can be used in various other combinations, modifications and environments, and can be within the scope of the inventive concept described herein, and can be changed through the above teachings or the technology or knowledge in related fields. And the changes and variations made by those skilled in the art without departing from the spirit and scope of the present invention should be within the protection scope of the appended claims of the present invention.

Claims

1. A device for preparing an acupoint magnetic therapy patch, comprising a stirring tank (1) and a sealing extrusion plate (2) slidably arranged inside the stirring tank (1), characterized in that: The bottom of the stirring pool (1) is provided with a partition slide groove (104), and a paste injection partition mechanism (8) is slidably arranged inside the partition slide groove (104). A plurality of uniformly distributed stirring pool paste discharge holes (101) are provided inside the stirring pool (1), and the stirring pool paste discharge holes (101) are connected to the partition slide groove (104) and extend to the bottom of the stirring pool (1). The paste injection partition mechanism (8) comprises a hollow partition (801) and a partition drive motor (802), and the partition drive motor (802) is used to horizontally push the hollow partition (801). The hollow partition (801) is provided with a partition paste injection hole (806) corresponding to the stirring pool paste discharge hole (101), and when the paste injection partition mechanism (8) is displaced, the paste injection partition mechanism (8) is used to seal the stirring pool paste discharge hole (101); The stirring pool (1) is provided with a release paper conveying mechanism (6) and a non-woven fabric conveying mechanism (7), the release paper conveying mechanism (6) comprising release paper (603), the non-woven fabric conveying mechanism (7) comprising non-woven fabric (703), the release paper (603) and the non-woven fabric (703) being arranged in sequence directly below the stirring pool (1), a die-cutting support plate (9) being slidably arranged directly below the non-woven fabric conveying mechanism (7), a plurality of evenly distributed die-cutting columns (901) being arranged on the upper side of the die-cutting support plate (9), a knife edge being fixedly arranged on the upper side of the die-cutting column (901), a die-cutting hole (105) corresponding to the die-cutting column (901) being opened at the bottom of the paste discharge hole (101) of the stirring pool, wherein when the die-cutting support plate (9) is braked upward, the die-cutting column (901) is stuck inside the die-cutting hole (105).

2. The preparation device of the acupoint magnetic therapy patch according to claim 1, characterized in that: The release paper (603) is connected to a release paper motorized roller (601) and a release paper transmission roller (602); the release paper motorized roller (601) is used to roll up the release paper (603); the release paper motorized roller (601) and the release paper transmission roller (602) are both fixedly arranged on the stirring tank (1) via a fixed connecting rod 1 (604); A guide roller groove (102) is provided on the bottom side of the stirring tank (1), a guide roller (103) is rotatably arranged inside the guide roller groove (102), and the guide roller (103) abuts against the release paper (603); The non-woven fabric (703) is connected to a non-woven fabric electric roller (701) and a non-woven fabric transmission roller (702); the non-woven fabric electric roller (701) is used to roll up the non-woven fabric (703); and the non-woven fabric electric roller (701) and the non-woven fabric transmission roller (702) are both fixedly arranged on the stirring tank (1) via a second fixed connecting rod (704).

3. The preparation device of the acupoint magnetic therapy patch according to claim 1, characterized in that: The release paper (603) is arranged directly above the non-woven fabric (703), wherein when the die-cutting support plate (9) is braked upward, the die-cutting column (901) presses the non-woven fabric (703) and the release paper (603) into the interior of the die-cutting hole (105).

4. The preparation device of the acupoint magnetic therapy patch according to claim 1, characterized in that: One end of the hollow partition (801) is connected to a C-shaped driving member (803), the C-shaped driving member (803) is provided with a driving tooth (804), the output end of the partition driving motor (802) is provided with a partition driving gear (805), the partition driving gear (805) is meshedly connected with the driving tooth (804), and is used to horizontally push the paste injection partition mechanism (8); The partition drive motor (802) is fixedly connected to a motor fixing rod (11), and the motor fixing rod (11) is fixedly arranged on the outer side of the stirring tank (1).

5. The preparation device of the acupoint magnetic therapy patch according to claim 1, characterized in that: Support frames (10) are fixedly arranged on both sides of the stirring tank (1), a protective plate (15) is fixedly arranged on the top of the support frame (10), a motor fixing rod (11) is fixedly connected to the middle of the support frame (10), the bottom of the motor fixing rod (11) is connected to a material taking limit block (12) via a die-cutting electric telescopic rod (13), both ends of the die-cutting support plate (9) are provided with die-cutting plate slide grooves (902), the die-cutting plate slide grooves (902) are slidably connected to the material taking limit block (12), and when the die-cutting electric telescopic rod (13) is braked, the die-cutting support plate (9) moves upward; The bottom side of the die-cutting support plate (9) is provided with symmetrically distributed die-cutting plate handles (903).

6. The preparation device of the acupoint magnetic therapy patch according to claim 5, characterized in that: The upper portion of the support frame (10) is connected to the sealing extrusion plate (2) via an extrusion electric telescopic rod (14), the extrusion electric telescopic rod (14) being used to vertically pull the sealing extrusion plate (2), and when the extrusion electric telescopic rod (14) is braked, the sealing extrusion plate (2) is slidably disposed inside the stirring tank (1).

7. The preparation device of the acupoint magnetic therapy patch according to claim 1, characterized in that: Two stirring mechanisms (3) are rotatably arranged on the sealing extrusion plate (2), the stirring mechanism (3) comprising a stirring wheel (301) and a stirring driven gear (303) connected via a transmission shaft (302), the sealing extrusion plate (2) is provided with a stirring wheel clamp (201), the stirring wheel (301) is provided with a stirring wheel rotating groove (304) corresponding to the stirring wheel clamp (201), and the stirring wheel clamp (201) is rotatably arranged inside the stirring wheel rotating groove (304); The stirring wheel (301) is provided with a plurality of evenly distributed stirring rod sliding holes (305), and stirring rods (4) are slidably arranged inside the stirring rod sliding holes (305).

8. The preparation device of the acupoint magnetic therapy patch according to claim 7, characterized in that: The top of the stirring rod (4) is connected to a stirring rod limiting block (401), the bottom of the stirring rod (4) is connected to a stirring block (402), and the bottom side surface of the stirring wheel (301) is provided with a stirring block groove (306) on the stirring rod sliding hole (305), and the stirring block groove (306) corresponds to the stirring block (402).

9. The preparation device of the acupoint magnetic therapy patch according to claim 7, characterized in that: A stirring motor (5) is fixedly arranged on the sealing extrusion plate (2) between the two stirring mechanisms (3); a stirring drive gear (501) is arranged at the output end of the stirring motor (5); the stirring drive gear (501) is meshingly connected with the stirring driven gear (303); and the stirring drive gear (501) is used to rotate the stirring mechanism (3).

10. A method for preparing an acupoint magnetic therapy patch, characterized in that: The preparation device of the acupoint magnetic therapy patch according to claim 1 comprises the following steps: Step 1: Raw materials are put in. The sealing extrusion plate (2) is lifted upward by squeezing the electric telescopic rod (14) and the acupoint magnetic therapy patch material is put into the stirring pool (1). At the same time, the partition paste injection hole (806) on the hollow partition (801) and the stirring pool paste discharge hole (101) are arranged in a staggered manner; Step 2: Stirring the materials, by squeezing the electric telescopic rod (14) to move the sealing extrusion plate (2) downward to cover the port of the stirring tank (1); Then, the stirring motor (5) on the sealing extrusion plate (2) is started. After the stirring motor (5) is started, the two stirring driven gears (303) are driven to rotate through the stirring driving gear (501). When the stirring driven gears (303) rotate, the stirring wheel (301) is driven to rotate through the transmission shaft (302). The stirring rod (4) slides into the stirring tank (1) under the action of gravity and stirs the raw materials into a paste. Step 3: Die-cutting and molding. After the mixing is completed, the paste is die-cut and molded. Specifically: The extrusion electric telescopic rod (14) is continued to be started to slide the sealing extrusion plate (2) into the interior of the stirring tank (1) to extrude the paste. After the paste injection hole (806) of the partition plate corresponds to the paste discharge hole (101) of the stirring tank, the paste is extruded onto the non-woven fabric (703) through the paste discharge hole (101) of the stirring tank. While the paste is being extruded, the die-cutting electric telescopic rod (13) is started to move the die-cutting column (901) on the die-cutting support plate (9) to the bottom of the non-woven fabric (703); Then, the finished release paper (603) is dragged to the top of the paste by the release paper electric roller (601), so that the paste is between the release paper (603) and the non-woven fabric (703), and the die-cutting electric telescopic rod (13) is started to squeeze the die-cutting column (901) together with the release paper (603), the paste and the non-woven fabric (703) into the die-cutting hole (105), so that the paste is die-cut and the release paper (603) and the second fixed connecting rod (704) are cut at the same time; The die-cutting support plate (9) is moved downward by means of the die-cutting electric telescopic rod (13) to remove the die-cut paste; The cut non-woven fabric (703) is then replaced by a non-woven fabric motorized roller (701), and the release paper (603) is replaced again after the paste is extruded, and a new round of die-cutting and molding operations is performed.