Tape pasting device set of corner edge box sealing machine

By optimizing the structural design of the tape applicator assembly of the corner sealing machine, the problems of tape application accuracy, material adaptability, and ease of maintenance have been solved, achieving an efficient and stable sealing process and improving the service life and production efficiency of the equipment.

CN223850982UActive Publication Date: 2026-01-30XIAMEN YANGZHEN HEALTH FOOD CO LTD
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Patent Information

Application Number
CN202423284404.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-30
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

The existing corner sealing machine tape applicator assembly has significant deficiencies in tape application accuracy, material adaptability, speed efficiency, maintenance convenience, and intelligence, which affect equipment performance and production efficiency.

Method used

By optimizing the structural design, including opening a through hole on the upper part of the patch and connecting it with a hexagonal nut, fitting a patch wheel on the outside of the patch shaft, setting a fixing protrusion and a protective shell, opening a through hole on the mounting plate and fixing it with screws and matching nuts, and using components such as fixing pins and hook springs, the precise positioning and stability of the patch are achieved.

Benefits of technology

It improves the accuracy and stability of tape application, extends the service life of equipment, reduces maintenance costs, enhances production efficiency and safety, adapts to different sizes of cartons, and meets diverse packaging needs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a tape sticking device group of a corner edge box sealing machine, which comprises a tape sticking sheet, a through hole is arranged on the upper portion of the tape sticking sheet, a hexagon nut penetrates through the through hole to be connected with a tape sticking shaft, a tape sticking wheel is sleeved outside the tape sticking shaft, three grooves are arranged on the tape sticking wheel around a circle center point array, fixed salient points are arranged in the grooves, and a protective shell is arranged outside the fixed salient points. A gasket, a spring and a lock catch are sequentially arranged on the front end face of the patch shaft, two holes are formed in the lower portion of the patch belt, the mounting plate fixes the patch belt piece through the holes, a plurality of through holes are formed in the mounting plate, and the left side and the right side of the through hole formed in the front side of the mounting plate are fixed through screws and matched nuts respectively. A buckle piece is arranged on one side of the matching nut, a fixing pin is arranged on the other side of the hole, fixed to the tape attaching piece, of the installation plate, a hook spring is installed on the end face of one side of the fixing pin, and two through holes are further formed in the side, facing the screw, of the hole where the fixing pin is located, of the installation plate.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of carton sealing machine, especially relates to a tape applicator group of corner edge carton sealing machine. BACKGROUND

[0002] The tape applicator group of corner edge carton sealing machine is a key component of the equipment, responsible for accurately adhering sealing tape to the edge of the carton to ensure the integrity and safety of the package. With the rapid development of e-commerce and logistics industry, the demand for carton sealing machines is increasing, and the performance of the tape applicator group directly affects the packaging efficiency and quality. However, the current tape applicator group still has some significant defects in technology, which limits its performance in practical application and widespread promotion.

[0003] The existing tape applicator group often has deficiencies in tape precision. Although most equipment designs consider the positioning and tensioning of the tape, in actual operation, due to the diversity of paper box material, shape and size, the tape adhesion effect often cannot reach the ideal state. For example, when dealing with irregular or damaged cartons, the tape may not adhere evenly, resulting in poor sealing effect. This precision problem not only affects the appearance of the sealing, but also may cause the carton to crack or collapse during transportation, affecting the safety of the product.

[0004] The limitation of the tape applicator group in material adaptability is also obvious. Different types of sealing tape (such as paper, plastic or transparent tape) have differences in thickness, adhesion and flexibility, while the existing tape applicator group is often designed for specific types of sealing tape, lacking universality. In the production process, if different types of sealing tape need to be replaced, the operator often needs to make tedious adjustments and settings, which not only increases the complexity of operation, but also reduces production efficiency. Therefore, improving the universality and adaptability of the tape applicator group can better meet the diversified packaging needs.

[0005] The existing technology also has limitations in tape speed and efficiency. Although the introduction of automated equipment has improved production efficiency, many tape applicator groups still cannot meet the overall requirements of the production line in terms of speed when facing high production demand. During peak periods, the running speed of the equipment may not match the production demand, causing bottlenecks in the production line and affecting the overall production efficiency. In addition, the tape applicator group may have tape jamming or breaking during the tape process, which not only causes equipment downtime, but also increases the frequency of manual intervention, further reducing production efficiency.

[0006] The existing tape applicator group also lacks design in terms of maintenance and care. Many devices are not designed with sufficient consideration for the convenience of daily maintenance, resulting in complex and time-consuming repair processes when failures occur. This maintenance difficulty not only increases labor costs, but also may cause extended downtime of the equipment, affecting production efficiency. In particular, in large-scale production environments, the reliability and ease of maintenance of equipment are particularly important, therefore, improving the maintainability and design rationality of the tape applicator group is a problem to be solved.

[0007] The existing technology lags behind in terms of intelligence and data feedback. Although some new tape applicator groups have begun to introduce intelligent monitoring systems, most devices still rely on traditional manual operation, lacking real-time monitoring and data analysis functions. This makes it difficult for operators to obtain real-time status of the equipment during production, and unable to discover and handle potential problems in a timely manner. In addition, the lack of intelligent management system makes it difficult to analyze and optimize production data, limiting the further improvement of production efficiency. Therefore, combining modern information technology to realize intelligent management of the tape applicator group will be an important trend in future development.

[0008] The tape applicator group of the corner sealing machine still has significant defects in terms of tape application accuracy, material adaptability, tape application speed, maintenance convenience and intelligence level. These problems not only affect the performance and service life of the equipment, but also reduce the efficiency and safety of the packaging process. Therefore, in-depth research and improvement of these technical defects will help to improve the overall performance of the tape applicator group to better meet the needs of the modern packaging industry. Practical new type content

[0009] The utility model provides a kind of tape applicator group of corner sealing machine, solve the problem of inaccurate tape positioning, tape wheel wear and short service life in the process of taping, improve the stability and reliability of taping by optimizing structure design.

[0010] The technical scheme of the utility model is such that a kind of tape applicator group of corner edge sealing machine, including that the upper part of adhesive tape piece is provided with through-hole, hexagon nut is connected with the adhesive tape axle by passing through through-hole, adhesive tape axle is equipped with adhesive tape wheel outside, the three grooves of three grooves of the array of circle center point of adhesive tape wheel, fixed convex point is arranged in groove, protective shell is arranged outside fixed convex point, the front end surface of adhesive tape axle is sequentially provided with gasket, spring and lock catch, the lower part of adhesive tape piece is provided with two holes, and installation plate is fixed adhesive tape piece by hole, a plurality of through-holes are formed in installation plate, and the through-hole formed in the front side of installation plate is fixed by screw and matching nut respectively on the left and right sides, the side of matching nut is provided with buckle, the other side of the hole fixed with adhesive tape piece on installation plate is provided with fixed pin, the side surface of fixed pin is installed with hook spring, the hole of fixed pin on installation plate is provided with two through-holes to the side of screw, and L-shaped bending frame is arranged on the two through-holes, limit plate is installed on the side end face of the side of L-shaped bending frame away from through-hole, and baffle is arranged on limit plate.

[0011] The conventional tape sticking equipment often faces the problem of inaccurate positioning of adhesive tape piece during use, resulting in unsatisfactory tape sticking effect and affecting the sealing quality. Many existing equipment is relatively simple in the design of tape sticking wheel, lacks effective protection against wear and tear, resulting in frequent replacement of wheels and increased maintenance costs. In contrast, the present tape applicator group ensures the stability and adjustability of the adhesive tape piece by providing a through-hole in the upper part of the adhesive tape piece and connecting it with the adhesive tape axle using a hexagon nut, thereby improving the precision and consistency of the tape sticking. The adhesive tape wheel equipped outside the adhesive tape axle adopts a design of three grooves arrayed around the circle center point, which not only provides multiple tape contact points and increases the adhesion of the tape, but also ensures more accurate positioning of the tape by setting fixed convex points, avoiding the problem of insecure sealing caused by the displacement of the tape position.

[0012] The protective shell arranged outside the fixed convex point effectively prevents the wear and tear of the tape sticking wheel during use, prolonging the service life of the equipment. Traditional tape sticking equipment often neglects the protection of the tape sticking wheel, which is easily damaged in a high-intensity working environment, increasing the maintenance and replacement costs of the equipment. The protective shell design of the present equipment reduces the direct impact of the external environment on the tape sticking wheel through physical barriers, ensuring its stability and durability during long-term use.

[0013] In terms of structure, the installation plate design of the tape applicator group also differs from existing technology. The installation plate of traditional equipment usually lacks flexibility and is difficult to adapt to different types of adhesive tape pieces. However, the installation plate of the present equipment is provided with multiple through-holes, allowing for multi-angle fixation through screws and matching nuts, making the installation and removal of adhesive tape pieces more convenient. At the same time, the buckle design on one side of the matching nut enhances the fixing effect, avoiding the loosening phenomenon caused by vibration during the tape sticking process, further improving the stability of the equipment.

[0014] The setting of the fixing pin and the hook spring installed on one side of the end face thereof provides additional support and elasticity for the label applicator group, enhancing the flexibility of the label. Traditional label equipment often has poor adaptability when processing different specifications of cartons, while the present equipment, through the setting of the L-shaped bending frame and the limiting plate, can maintain good positioning when processing cartons of various sizes, ensuring the uniformity and accuracy of the label. This adaptive design enables the equipment to work efficiently in different situations, meeting the diverse market demand.

[0015] The label applicator group of the present corner and edge sealing machine overcomes the problems of inaccurate positioning, severe wear and poor adaptability in the label process of traditional equipment through innovative structural design and functional optimization, significantly improving the stability and reliability of the label, and providing a more efficient and stable solution for the sealing operation.

[0016] As a preferred embodiment, the rear side of the mounting plate is provided with a mounting pad, the front and rear sides of the mounting pad are provided with through holes, and a sleeve through hole is protrudingly arranged on one side of the mounting pad. The through hole on the front side of the mounting pad is fixed to the mounting plate by a fastening screw.

[0017] As a preferred embodiment, the sleeve through hole in the mounting pad is provided with a gasket at each end, and a pad fixing pin is installed on the gasket away from the mounting plate.

[0018] As a preferred embodiment, the sleeve through hole of the mounting pad is provided with a mounting through hole below, a rubber ring and a rubber ring fixing pin are arranged in the mounting through hole, and the mounting pad is fixedly connected to the fixing plate by the rubber ring fixing pin. The connecting plate is arranged on the rear side of the side end face of the mounting plate.

[0019] As a preferred embodiment, the through hole on the rear side of the mounting pad is sequentially provided with a fixing shaft, a matching sleeve and a rubber sleeve away from the mounting plate. The rubber sleeve is provided with a matching sleeve on each side. The matching sleeve and the rubber sleeve are cylindrical structures with through holes in the middle, and are fixed by the fixing shaft.

[0020] The beneficial effects of the present application are as follows: the innovative design of the equipment improves the accuracy of the tape, ensuring that each carton is evenly attached during sealing, thereby enhancing the sealing quality. Through precise tape positioning, the problems of carton damage and insecure sealing caused by improper tape are reduced, thereby improving the packaging safety of the product and reducing the risk of damage during transportation. Secondly, the structural design of the patch wheel and the application of the protective shell effectively prolong the service life of the equipment, reducing the frequent replacement and maintenance costs caused by the wear of the patch wheel. This durability allows enterprises to save a large amount of maintenance costs during long-term operation, improving the economy of the equipment.

[0021] The flexible design of the mounting plate allows the equipment to adapt to different specifications of the patch, facilitating quick replacement and adjustment, greatly improving production efficiency. The operator can complete the tape task more quickly when using the equipment, reducing the time loss caused by complex operation. This efficiency improvement directly promotes the operation of the production line and improves the overall work efficiency.

[0022] The stability and safety of the equipment have also been improved. Through the design of the fixing pin and the hook spring, the stability of the tape applicator group during operation is ensured, reducing the risk of failure caused by vibration or impact. This safety not only protects the safety of the operator, but also avoids production interruptions caused by equipment failure, ensuring smooth production flow. Finally, the efficient operation of the equipment brings considerable economic benefits to the enterprise. By improving the tape efficiency and reducing the maintenance cost, the enterprise can maintain strong competitiveness in the fierce market competition and increase market share. The tape applicator group of the corner sealing machine improves the tape accuracy, prolongs the service life of the equipment, improves the operation convenience and safety, provides important technical support and economic benefits for the production and operation of the enterprise, and contributes to improving the overall productivity and market competitiveness. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative labor.

[0024] Figure 1 The explosion diagram of the present application. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0026] Embodiment:

[0027] As Figure 1 shown, a tape applicator group of a corner sealing machine, including the upper part of the tape piece 2 is provided with a through hole, the hexagon nut 1 passes through the through hole and is connected with the tape piece shaft 3, the tape piece shaft 3 is externally sleeved with the tape piece wheel 6, the tape piece wheel 6 is arrayed with three grooves around the center point, the fixed convex point 5 is arranged in each groove, the fixed convex point 5 is externally provided with the protective shell 4, the front end surface of the tape piece shaft 3 is sequentially provided with the gasket 7, the spring 8 and the lock catch 9, the lower part of the tape piece 2 is provided with two holes, the mounting plate 11 fixes the tape piece 2 through the holes, the mounting plate 11 is provided with a plurality of through holes, the through holes provided on the front side of the mounting plate 11 are fixed in position through the screws 10 and the matching nuts 12 respectively on the left and right sides, one side of the matching nut 12 is provided with the buckle 13, the other side of the hole for fixing the tape piece 2 on the mounting plate 11 is provided with the fixed pin 14, the hook spring 15 is installed on the end surface of one side of the fixed pin 14, the hole for the fixed pin 14 on the mounting plate 11 is further provided with two through holes on the side of the screw 10, the L-shaped bending frame 16 is arranged on the two through holes, the limit plate 17 is installed on the side end surface of the side away from the through hole of the L-shaped bending frame 16, the baffle 18 is arranged on the limit plate 17.

[0028] The tape applicator group of the corner sealing machine described in the present application is mainly used for automatically attaching sealing tape during the sealing process to improve the sealing efficiency and quality. The working principle and process can be described in detail through specific implementation scenarios to better understand the operation mode of the device.

[0029] In actual sealing operation, the tape applicator group is a crucial component of the corner sealing machine. The upper part of the tape piece is provided with a through hole, and the hexagon nut is connected with the tape piece shaft through the through hole, ensuring that the tape piece can rotate stably and flexibly during work. The tape piece wheel externally sleeved with the tape piece shaft is a key component for realizing automatic tape application. There are three grooves arrayed around the center point on the tape piece wheel, and these grooves are designed to accommodate and fix the tape. Fixed convex points are arranged in each groove, and protective shells are further arranged outside these convex points to prevent damage caused by friction or other external forces during tape application.

[0030] At the front end of the tape applicator group, a gasket, a spring, and a lock are sequentially arranged. The gasket provides a certain buffer to prevent excessive impact force when starting the tape. The spring is responsible for maintaining the tension of the tape applicator to ensure smooth attachment of the tape to the carton. The lock is used to lock and release the tape to ensure precise control of the tape usage when needed.

[0031] The lower part of the tape piece is provided with two holes for fixing it through the mounting plate. The mounting plate is provided with a plurality of through holes, which are designed to facilitate the fixing of the position through screws and matching nuts, thereby ensuring the stability of the tape applicator during operation. The matching nut is provided with a buckle on one side, which can provide additional support and enhance the structural stability.

[0032] On the mounting plate, the other side of the hole where the tape piece is fixed is provided with a fixed pin. The fixed pin is used to firmly connect the other components of the tape applicator group with the mounting plate to ensure that it does not shift during work. A hook spring is installed on the side end face of the fixed pin, which is used to enhance the flexibility of the components, allowing the tape applicator group to automatically adapt to different working conditions during work.

[0033] To further enhance the functionality of the tape applicator group, two through holes are provided on the mounting plate on the side of the screw where the fixed pin is located, and an L-shaped bending bracket is arranged on the two through holes. The design of the L-shaped bending bracket allows the tape applicator group to better adapt to the corner shape of the carton during the application of the tape, ensuring that the tape is attached more evenly and firmly. A limiting plate is installed on the side end face of the L-shaped bending bracket away from the through hole, which ensures accurate positioning of the tape applicator group during work and prevents excessive or insufficient application of the tape.

[0034] A baffle is provided on the limiting plate, which can further control the attachment position of the tape to ensure the accuracy of the tape attachment on the carton. The cooperation of these components allows the tape applicator group to achieve efficient and automated carton sealing during actual operation.

[0035] The tape applicator group of this corner sealing machine can realize automatic tape application during the sealing process through reasonable structural design and efficient work flow, improve sealing efficiency, reduce labor costs, and ensure the quality and stability of the tape. Its working process from tape guiding, fixing, and attaching to final output forms an efficient and automated sealing production line, which meets the modern packaging needs and has wide application prospects and important practical significance.

[0036] The rear side of the mounting plate 11 is provided with a mounting pad 19, and the side end face of the mounting pad 19 is provided with a through hole in front and back respectively, and the side end face of the mounting pad 19 is provided with a sleeve through hole, and the through hole of the front side of the mounting pad 19 is fixed with the mounting plate 11 through a fastening screw 20.

[0037] In the technical solution, the design of the mounting plate has obvious innovation and practicality compared with the prior art. First, the rear side of the mounting plate 11 is provided with a mounting pad 19, which can effectively enhance the stability of the overall structure. In the prior art, the connection between the mounting plate and other components often depends on simple bolts or welding methods, which may result in insufficient connection strength or lack of flexibility. The present solution forms a more stable connection by providing a mounting pad 19 at the rear of the mounting plate 11. The side end face of the mounting pad 19 is provided with a through hole, so that during installation, it can be fixed with the mounting plate 11 through a fastening screw 20. This design not only improves the reliability of the connection, but also simplifies the installation process and reduces the risk of installation errors caused by improper human operation. At the same time, the design of the sleeve through hole provides more space for adjusting and aligning other components, enhancing the flexibility of the system. Compared with the prior art, the common connection method often lacks adjustment space, making it difficult to meet complex installation requirements in actual application.

[0038] The sleeve through hole of the mounting pad 19 is provided with a gasket 21 at both ends, and the gasket 21 away from the mounting plate 11 is provided with a pad fixing pin 22. In the mounting pad 19, the sleeve through hole is provided with a gasket 21 at both ends, which is not common in the prior art. The gasket can effectively disperse the pressure exerted by the fastening screw 20, reducing material fatigue or damage caused by pressure concentration. At the same time, the gasket 21 away from the mounting plate 11 is provided with a pad fixing pin 22, which not only enhances the fixing effect of the gasket, but also increases the stability of the overall structure. In the prior art, additional fixing pins are not usually provided on the gasket, which may cause the connected parts to loosen or shift in a high load or vibration environment. The present solution ensures the stability and reliability of each component during long-term use, greatly improving the service life and safety of the equipment by providing a pad fixing pin 22 on the gasket.

[0039] The sleeve through hole of the mounting pad 19 is provided with a mounting through hole below, and the rubber ring 23 and the rubber ring fixing pin 24 are arranged in the mounting through hole. The rubber ring fixing pin 24 is used to assist the mounting pad 19 to be fixedly connected to the connecting plate 28. The connecting plate 28 is arranged at the rear part of the side end face of the mounting plate 11. The sleeve through hole of the mounting pad 19 is provided with a mounting through hole below, and the rubber ring 23 and the rubber ring fixing pin 24 are arranged in the mounting through hole. This design further enhances the flexibility and safety of the connection. The introduction of the rubber ring can effectively absorb vibration and impact, reducing the influence of the external environment on the equipment. Compared with the metal connecting piece commonly used in the prior art, the use of the rubber ring can significantly improve the buffering effect and sealing performance of the connection, prevent dust and moisture from entering, and ensure the normal operation of the internal components. The setting of the rubber ring fixing pin 24 ensures the stability of the rubber ring and avoids the situation of falling off or displacement during use. The prior art often ignores the diversity of materials and the flexibility of connection, resulting in poor application effect in complex environment. By combining the rubber material, the adaptability of the structure is improved.

[0040] The through hole of the rear side of the mounting pad 19 is sequentially provided with a fixed shaft 25, a matching sleeve 26 and a rubber sleeve 27 away from the mounting plate 11 side. The rubber sleeve 27 is provided with a matching sleeve 26 on both sides. The matching sleeve 26 and the rubber sleeve 27 are cylindrical structures with through holes in the middle, matched and fixed by the fixed shaft 25. The through hole of the rear side of the mounting pad 19 is sequentially provided with a fixed shaft 25, a matching sleeve 26 and a rubber sleeve 27 away from the mounting plate 11 side. This design shows a more complex connection mechanism. The combination of the matching sleeve 26 and the rubber sleeve 27 provides better cooperation and support for the connection. In the prior art, the connection assembly is usually a single structure, which lacks flexibility and adaptability, and is easily affected by external forces, resulting in unstable connection. The matching and fixing by the fixed shaft 25 not only enhances the stability of the connection, but also allows a certain range of motion, adapting to different working environments and conditions. This design performs better in terms of shock resistance and load bearing, and can provide higher safety and reliability in actual application.

[0041] The above is only a preferred embodiment of the present application, and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A taping unit for a gable-top carton erector, the taping unit comprising: The application relates to a label sheet (2) provided with a through hole in the upper portion, a hexagonal nut (1) penetrating through the through hole and connected with a label shaft (3), a label wheel (6) sleeved outside the label shaft (3), three recesses arranged in the circular central point of the label wheel (6), a fixing convex point (5) arranged in the recess, a protection shell (4) arranged outside the fixing convex point (5), a gasket (7), a spring (8) and a lock buckle (9) arranged in sequence on the front end surface of the label shaft (3), two holes formed in the lower portion of the label sheet (2), a mounting plate (11) used for fixing the label sheet (2) through the holes, a plurality of through holes formed in the mounting plate (11), the left and right sides of the through hole formed in the front side of the mounting plate (11) fixed through a screw (10) and a matching nut (12), a buckle (13) arranged on one side of the matching nut (12), a fixing pin (14) arranged on the other side of the hole for fixing the label sheet (2) on the mounting plate (11), a hook spring (15) installed on the end surface of one side of the fixing pin (14), two through holes formed on the side of the screw (10) of the hole for arranging the fixing pin (14) on the mounting plate (11), an L-shaped bending frame (16) arranged on the two through holes, a limiting plate (17) installed on the side end surface of the side, away from the through hole, of the L-shaped bending frame (16), and a baffle (18) arranged on the limiting plate (17).

2. A taping assembly for a gable top carton erector as defined in claim 1 wherein: A mounting gasket (19) is arranged on one side of the rear portion of the mounting plate (11), through holes are formed in the front and back of the side end surface of the mounting gasket (19), a sleeve through hole is formed on the protruding side end surface of the mounting gasket (19), and the through hole on the front side of the mounting gasket (19) is fixed with the mounting plate (11) through a fastening screw (20).

3. A taping assembly for a gable-top carton sealing machine as claimed in claim 2 wherein: A gasket (21) is arranged at the two ends of the sleeve through hole in the mounting gasket (19), and a gasket fixing pin (22) is further arranged on the gasket (21) away from the mounting plate (11).

4. A taping assembly for a gable-top carton sealing machine as claimed in claim 2 wherein: A mounting through hole is arranged below the sleeve through hole of the mounting gasket (19), a rubber ring (23) and a rubber ring fixing pin (24) are arranged in the mounting through hole, the mounting gasket (19) is fixedly connected with a fixing plate (28) through the rubber ring fixing pin (24), and the fixing plate (28) is arranged on the rear portion of the side end surface of the mounting plate (11).

5. A taping assembly for a gable-top carton sealing machine as claimed in claim 2 wherein: A fixing shaft (25), a matching sleeve (26) and a rubber sleeve (27) are arranged in sequence on the through hole on the rear side of the mounting gasket (19) away from the mounting plate (11), the rubber sleeve (27) is provided with the matching sleeve (26) on the two sides, the matching sleeve (26) and the rubber sleeve (27) are cylindrical structures provided with through holes in the middle portions, and the matching and fixing are realized through the fixing shaft (25).