Anti-allergy die cutting device for application

By precisely controlling the die-cutting pressure and material positioning through the guided positioning pressure die-cutting component, the problems of low die-cutting accuracy and poor versatility of existing application die-cutting devices are solved, and high-precision and high-efficiency application die-cutting is achieved.

CN224074542UActive Publication Date: 2026-04-03HAINAN JASMINE PHARMACEUTICAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing die-cutting devices for adhesive dressings have low cutting accuracy and poor versatility, making it difficult to effectively control cutting pressure and temperature, resulting in damage to the surface of the adhesive dressing and poor performance.

Method used

The guided positioning pressure die-cutting assembly includes a working chamber, a conveying groove, a lifting groove, a lifting column, a positioning frame, a guide plate, a fixing frame, a pneumatic column, a telescopic frame, and a die-cutting blade. By precisely controlling the die-cutting pressure and material positioning, the die-cutting accuracy and versatility are improved.

Benefits of technology

It improves the precision and versatility of die-cutting, reduces the risk of damage to the surface of the adhesive material, and ensures the quality of die-cutting and the effectiveness of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of application production equipment, in particular to an anti-allergy die cutting device for an application, which comprises an operating table and a guide positioning type pressure die cutting component, the guide positioning type pressure die cutting component comprises a working cavity, a conveying groove, a jacking groove, a jacking column and a positioning frame, the working cavity is fixedly connected with the operating table, and the conveying groove is fixedly connected with the jacking column. The conveying groove is fixedly connected with the operation table and located in the center of the interior of the operation table, the jacking groove is fixedly connected with the operation table and located in the center of the interior of the operation table, the jacking column is detachably connected with the operation table and located in the operation table, and the positioning frame is detachably connected with the jacking column and located above the jacking column. By additionally arranging the guide positioning type pressure die cutting assembly, the problems that an existing application die cutting device is low in die cutting precision and poor in universality in the die cutting process are effectively solved.
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Description

Technical Field

[0001] This utility model relates to the field of patch production equipment technology, and in particular to a patch anti-allergy die-cutting device. Background Technology

[0002] Adhesive dressings are widely used in medical, cosmetic, and other fields, and their quality and effectiveness are of paramount importance. Die-cutting is one of the key processes in the production of adhesive dressings, as its quality directly affects the dressing's performance and user experience.

[0003] Traditional die-cutting devices often cannot effectively control the die-cutting pressure and temperature during the die-cutting process, which can damage the surface of the dressing material and increase the risk of allergies to users. In addition, traditional devices have low die-cutting precision, which can easily lead to problems such as uneven dressing edges and large dimensional errors. This not only affects the appearance of the product, but may also result in poor contact between the dressing and the skin, affecting the effectiveness of use. Furthermore, existing devices are difficult to accurately die-cut dressings of different specifications and materials, resulting in poor versatility.

[0004] Therefore, there is an urgent need to design an anti-sensitivity die-cutting device that can effectively improve die-cutting accuracy and versatility. Utility Model Content

[0005] The purpose of this invention is to provide an anti-allergy die-cutting device for adhesive application, which solves the problems of low die-cutting accuracy and poor versatility in the existing adhesive application die-cutting devices.

[0006] To achieve the above objectives, this utility model employs an anti-allergy die-cutting device for application, comprising an operating table and a guide-positioning pressure die-cutting assembly. The guide-positioning pressure die-cutting assembly includes a working chamber, a conveying groove, a lifting groove, a lifting column, and a positioning frame. The working chamber is fixedly connected to the operating table and located above the interior of the operating table. The conveying groove is fixedly connected to the operating table and located at the interior center of the operating table, and is positioned below the interior center of the working chamber. The lifting groove is fixedly connected to the operating table and located at the interior center of the operating table, and is positioned below the interior center of the conveying groove. The lifting column is detachably connected to the operating table and located inside the operating table, and is positioned at the interior center of the lifting groove. The positioning frame is detachably connected to the lifting column and located above the lifting column, and the positioning frame and the conveying groove are on the same horizontal line.

[0007] The guided positioning pressure die-cutting assembly further includes a guide plate, which is detachably connected to the positioning frame and located on the upper side of the positioning frame, and the guide plate is perpendicular to the positioning frame.

[0008] The guide positioning pressure die-cutting assembly further includes a fixing frame, which is detachably connected to the operating table and located at the upper center of the operating table, and the fixing frame is disposed above the working cavity.

[0009] The guided positioning pressure die-cutting assembly further includes a pneumatic column, a telescopic frame, and a die-cutting blade. The pneumatic column is detachably connected to the fixed frame and is located above the center of the fixed frame. One end of the telescopic frame passes through the fixed frame and is detachably connected to the pneumatic column, and is located below the pneumatic column. The other end of the telescopic frame is located below the fixed frame. The die-cutting blade is detachably connected to the telescopic frame and is located below the telescopic frame. The die-cutting blade is positioned above the positioning frame and the guide plate.

[0010] The guide positioning pressure die-cutting assembly also includes a sealing plate, which is detachably connected to the operating table and located above the operating table. The sealing plate is disposed on one side of the fixed frame and is also disposed above the working cavity.

[0011] This utility model discloses an anti-allergy die-cutting device for adhesive application, comprising an operating table and a guide-positioning pressure die-cutting assembly. The guide-positioning pressure die-cutting assembly includes a working chamber, a conveying groove, a lifting groove, a lifting column, and a positioning frame. The working chamber is fixedly connected to the operating table and located inside and above the operating table. The conveying groove is fixedly connected to the operating table and located inside and at the center of the operating table, and is located inside and below the working chamber. The lifting groove is fixedly connected to the operating table and located inside the operating table, and is located below and below the center of the conveying groove. The lifting column is detachably connected to the operating table and located inside the operating table, and is located inside and at the center of the lifting groove. The positioning frame is detachably connected to the lifting column and located above the lifting column, and is at the same horizontal line as the conveying groove. By adding the guide-positioning pressure die-cutting assembly, the problems of low die-cutting accuracy and poor versatility in the existing adhesive application die-cutting devices are effectively solved. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0014] Figure 2 This is a top view of the entire utility model.

[0015] Figure 3 This is a utility model Figure 2 A cross-sectional view of the AA line structure.

[0016] 101-Operating table, 102-Working chamber, 103-Transfer trough, 104-Lifting trough, 105-Lifting column, 106-Positioning frame, 107-Guide plate, 108-Fixing frame, 109-Pneumatic column, 110-Telescopic frame, 111-Die-cutting knife, 112-Sealing plate. Detailed Implementation

[0017] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0018] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the overall structure of this utility model. Figure 2 This is a top view of the entire utility model. Figure 3 This is a utility model Figure 2 A cross-sectional view of the AA line structure.

[0019] This utility model provides an anti-allergy die-cutting device for adhesive application, including an operating table 101 and a guide-positioning pressure die-cutting assembly. The guide-positioning pressure die-cutting assembly includes a working chamber 102, a conveying groove 103, a lifting groove 104, a lifting column 105, a positioning frame 106, a guide plate 107, a fixing frame 108, a pneumatic column 109, a telescopic frame 110, a die-cutting blade 111, and a sealing plate 112. This solution solves the problems of low die-cutting accuracy and poor versatility in existing adhesive application die-cutting devices. It is understood that, in use, the adhesive application material to be die-cut is first placed on the conveying groove 103, which smoothly transports the material to the working area. The conveying trough 103 is located at the internal center of the operating table 101 and below the working cavity 102, ensuring that the application material is conveyed in a stable environment. When the application material is conveyed to the designated position, the lifting column 105 takes effect. The lifting column 105 is detachably connected to the operating table 101 and located at the internal center of the lifting trough 104. Operation allows the lifting column 105 to move upwards, thereby lifting the positioning frame 106 along with the application material upwards until the positioning frame 106 and the conveying trough 103 are at the same horizontal line. At this point, the application material is precisely positioned in the die-cutting working area. The guide plate 107, vertically arranged on one side above the positioning frame 106, guides the application material during positioning... The guide plate 107 plays an auxiliary role in the process. It is detachably connected to the positioning frame 106, which facilitates the replacement and adjustment of different specifications of the dressing material. It can guide and limit the edge of the dressing material, further improving the accuracy of the dressing material positioning. The fixing frame 108 is detachably connected to the operating table 101 and is located above the center of the operating table 101 and above the working chamber 102, providing a stable installation base for components such as the air pressure column 109. The air pressure column 109 is installed above the center of the fixing frame 108. When a work command is received, the air pressure column 109 drives the telescopic frame 110 to move downward. One end of the telescopic frame 110 is detachably connected to the air pressure column 109, and the other end... The end passes through the fixing frame 108 and is positioned below it, allowing it to telescopically extend under the action of the pneumatic column 109. The die-cutting blade 111 is detachably connected to the telescopic frame 110 and located below it. As the telescopic frame 110 moves downward, the die-cutting blade 111 gradually approaches the dressing material above the positioning frame 106 and the guide plate 107. Because the pneumatic column 109 can precisely control the descending pressure of the telescopic frame 110, the die-cutting blade 111 can die-cut the dressing material with appropriate pressure, effectively avoiding damage to the dressing material surface due to excessive pressure, reducing the risk of user allergies, and also improving the die-cutting accuracy. The sealing plate 112 is detachably connected to the operating table 101.Located above the operating table 101 and on one side of the fixed frame 108, above the working cavity 102, the lifting column 105 provides a certain degree of protection and enclosure for the working cavity 102, preventing dust and other debris from entering the working area and affecting the die-cutting quality. After completing one die-cutting operation, the lifting column 105 descends, the positioning frame 106 and the application material return to their initial positions, and the conveying trough 103 continues to transport the next section of application material, repeating the above die-cutting process. Furthermore, when it is necessary to die-cut application materials of different specifications and materials, the positioning frame 106, the guide plate 107, and the die-cutting blade 111 can be disassembled and replaced, and the equipment parameters adjusted to adapt to different die-cutting requirements, thereby improving the versatility of the die-cutting device.

[0020] In this specific embodiment, the working chamber 102 is fixedly connected to the operating table 101 and located above the inside of the operating table 101. The conveying groove 103 is fixedly connected to the operating table 101 and located at the center inside the operating table 101, and the conveying groove 103 is located below the inside of the working chamber 102. The lifting groove 104 is fixedly connected to the operating table 101 and located at the center inside the operating table 101, and the lifting groove 104 is located below the center inside the conveying groove 103. The lifting column 105 is detachably connected to the operating table 101 and located inside the operating table 101, and the lifting column 105 is located at the center inside the lifting groove 104. The positioning frame 106 is detachably connected to the lifting column 105 and located above the lifting column 105, and the positioning frame 106 and the conveying groove 103 are on the same horizontal line.

[0021] The guide plate 107 is detachably connected to the positioning frame 106 and is located on the upper side of the positioning frame 106, and the guide plate 107 is perpendicular to the positioning frame 106.

[0022] Secondly, the fixing frame 108 is detachably connected to the operating table 101 and is located at the upper center of the operating table 101, and the fixing frame 108 is disposed above the working cavity 102.

[0023] Meanwhile, the pneumatic column 109 is detachably connected to the fixed frame 108 and is located above the center of the fixed frame 108. One end of the telescopic frame 110 passes through the fixed frame 108 and is detachably connected to the pneumatic column 109, and is located below the pneumatic column 109. The other end of the telescopic frame 110 is located below the fixed frame 108. The die-cutting blade 111 is detachably connected to the telescopic frame 110 and is located below the telescopic frame 110. The die-cutting blade 111 is located above the positioning frame 106 and the guide plate 107.

[0024] In addition, the sealing plate 112 is detachably connected to the operating table 101 and is located above the operating table 101. The sealing plate 112 is disposed on one side of the fixing frame 108 and is also disposed above the working chamber 102.

[0025] When using this invention, the dressing material to be die-cut is first placed on the conveying groove 103. The conveying groove 103 is responsible for smoothly conveying the dressing material to the working area. Since the conveying groove 103 is located at the internal center of the operating table 101 and below the working cavity 102, it ensures that the dressing material is conveyed in a stable environment. After the dressing material is conveyed to the designated position, the lifting column 105 comes into play. The lifting column 105 is detachably connected to the operating table 101 and is located at the internal center of the lifting groove 104. By operation, the lifting column 105 can be moved upward, thereby lifting the positioning frame 106 together with the dressing material upward until the positioning frame 106 and the conveying groove 104 are aligned. With slots 103 aligned horizontally, the application material is precisely positioned within the die-cutting work area. The guide plate 107, vertically positioned above the positioning frame 106, assists in the material positioning process. The guide plate 107 is detachably connected to the positioning frame 106, facilitating replacement and adjustment for different application material specifications. It guides and limits the edges of the application material, further improving positioning accuracy. The fixing frame 108 is detachably connected to the operating table 101 and located above the center of the operating table 101 and above the working chamber 102, providing a stable mounting base for components such as the pneumatic column 109. The pneumatic column 109 is mounted on the fixing frame 106. At the upper center of position 8, upon receiving a work command, the pneumatic column 109 drives the telescopic frame 110 to move downwards. One end of the telescopic frame 110 is detachably connected to the pneumatic column 109, and the other end passes through the fixed frame 108 and is positioned below it, allowing it to telescopically extend under the action of the pneumatic column 109. The die-cutting blade 111 is detachably connected to the telescopic frame 110 and is located below it. As the telescopic frame 110 moves downwards, the die-cutting blade 111 gradually approaches the application material above the positioning frame 106 and the guide plate 107. Because the pneumatic column 109 can precisely control the downward pressure of the telescopic frame 110, the die-cutting blade 111 can die-cut the application material with appropriate pressure. This effectively avoids damage to the surface of the dressing material due to excessive pressure, reducing the risk of allergies in users, and also improves the die-cutting accuracy. The sealing plate 112 is detachably connected to the operating table 101, located above the operating table 101 and on one side of the fixing frame 108, above the working cavity 102. It can provide a certain degree of protection and sealing for the working cavity 102, preventing dust and other debris from entering the working area and affecting the die-cutting quality. After completing one die-cutting operation, the lifting column 105 descends, the positioning frame 106 and the dressing material return to their initial positions, and the conveying groove 103 continues to transport the next segment of dressing material, repeating the above die-cutting process. In addition, when it is necessary to die-cut dressing materials of different specifications and materials,The equipment parameters can be adjusted by disassembling and replacing components such as the positioning frame 106, the guide plate 107, and the die-cutting blade 111 to adapt to different die-cutting requirements, thereby improving the versatility of the die-cutting device.

[0026] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Those skilled in the art can understand that implementing all or part of the above-described embodiments and making equivalent changes in accordance with the claims of the present utility model are still within the scope of the utility model.

Claims

1. A hypoallergenic die-cutting device for application, comprising an operating table, characterized in that, It also includes a guided positioning pressure die-cutting assembly, which includes a working cavity, a conveying groove, a lifting groove, a lifting column, and a positioning frame. The working cavity is fixedly connected to the operating table and is located inside and above the operating table. The conveying groove is fixedly connected to the operating table and is located inside and at the center of the operating table, and the conveying groove is located inside and below the working cavity. The lifting groove is fixedly connected to the operating table and is located inside and at the center of the operating table, and the lifting groove is located below the center of the conveying groove. The lifting column is detachably connected to the operating table and is located inside the operating table, and the lifting column is located inside and at the center of the lifting groove. The positioning frame is detachably connected to the lifting column and is located above the lifting column, and the positioning frame and the conveying groove are on the same horizontal line.

2. The anti-allergy die-cutting device for application as described in claim 1, characterized in that, The guided positioning pressure die-cutting assembly also includes a guide plate, which is detachably connected to the positioning frame and located on the upper side of the positioning frame, and the guide plate is perpendicular to the positioning frame.

3. The anti-allergy die-cutting device for application as described in claim 2, characterized in that, The guided positioning pressure die-cutting assembly also includes a fixing frame, which is detachably connected to the operating table and located at the upper center of the operating table, and the fixing frame is disposed above the working cavity.

4. The anti-allergy die-cutting device for application as described in claim 3, characterized in that, The guided positioning pressure die-cutting assembly further includes a pneumatic column, a telescopic frame, and a die-cutting blade. The pneumatic column is detachably connected to the fixed frame and is located above the center of the fixed frame. One end of the telescopic frame passes through the fixed frame and is detachably connected to the pneumatic column, and is located below the pneumatic column. The other end of the telescopic frame is located below the fixed frame. The die-cutting blade is detachably connected to the telescopic frame and is located below the telescopic frame. The die-cutting blade is located above the positioning frame and the guide plate.

5. The anti-allergy die-cutting device for application as described in claim 4, characterized in that, The guided positioning pressure die-cutting assembly also includes a sealing plate, which is detachably connected to the operating table and located above the operating table. The sealing plate is disposed on one side of the fixed frame and is also disposed above the working cavity.