Multifunctional rubberizing tool

By designing a multi-functional glue tool, combining winding components and optional glue device, the problem of single function of traditional glue device is solved, and flexible switching of multiple glue modes is achieved, reducing the time and cost of changing tooling, and improving production efficiency.

CN223175385UActive Publication Date: 2025-08-01FARO AUTOMATION (SUZHOU) CO LTD
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Patent Information

Application Number
CN202422930420.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-08-01
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Traditional glue patching devices have a single function and cannot meet the glue patching needs in different scenarios, resulting in frequent tool replacements consuming and costly, reducing production efficiency.

Method used

A multi-functional glue tool is designed, including a mounting frame, a winding assembly, a first and a second glue tool assembly, a clamping assembly, a guide assembly and a drive assembly. The first or second glue tool assembly can be selected to work, realize at least two modes to meet different glue tooling needs without changing the tooling.

Benefits of technology

It has achieved a variety of glue pasting requirements in different target locations and environments, reducing the time to replace the workpiece, reducing production costs and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multifunctional rubberizing tool which comprises a mounting rack, a winding assembly; the first rubberizing assembly comprises a first rubberizing wheel and a first cutter; the second rubberizing assembly is rotationally connected with the mounting frame and comprises a rotating frame, a second rubberizing wheel and a second cutter, the second rubberizing wheel and the second cutter are mounted on the rotating frame, and the second rubberizing wheel can press and attach the target object to the target position; one end of the driving assembly is connected to the mounting frame, the other end of the driving assembly is connected with the second rubberizing assembly, and the driving assembly is used for driving the second rubberizing assembly to rotate to make the second rubberizing wheel close to or away from the target position; the rubberizing tool is configured to have at least two modes that the first rubberizing assembly or the second rubberizing assembly can be selected to press and attach the target object to the target position, so that various different rubberizing requirements in different target positions and different working environments are met, the tool does not need to be replaced, and the working efficiency is improved. The time consumed by frequently replacing the tool or adjusting the equipment lock is reduced, the production cost is reduced, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of gluing, in particular to a multifunctional gluing tooling. Background Art

[0002] In the fields of industrial production and manufacturing, such as in the fields of tapes, packaging, etc., it is often necessary to perform gluing operations on various targets. Traditional gluing devices have relatively single functions and limited capabilities, and cannot meet the gluing requirements in different scenarios.

[0003] Therefore, it is necessary to improve the existing technology to overcome the defects in the existing technology. Summary of the Utility Model

[0004] In view of this, an embodiment of the present application provides a multifunctional gluing tooling for solving at least one problem in the background art, including:

[0005] A mounting frame;

[0006] A winding assembly, including a first winding disk, a second winding disk and a recovery disk mounted on the mounting frame, the first winding disk and the second winding disk are respectively used for winding the target object, and the first winding disk, the second winding disk and the recovery disk can all rotate relative to the mounting frame under the action of an external force;

[0007] A first gluing assembly, including a first pressing wheel and a first cutter mounted on the mounting frame, the first pressing wheel can press the target object onto the target position;

[0008] A second gluing assembly, rotatably connected to the mounting frame, including a rotating frame and a second pressing wheel and a second cutter mounted on the rotating frame, the second pressing wheel can press the target object onto the target position;

[0009] A driving assembly, one end connected to the mounting frame and the other end connected to the second gluing assembly, for driving the second gluing assembly to rotate so that the second pressing wheel approaches or moves away from the target position;

[0010] The gluing tooling is configured to have at least two modes in which the first gluing assembly or the second gluing assembly can be selected to press the target object onto the target position.

[0011] Optionally, in the above multifunctional gluing tooling, the first cutter is a half cutter.

[0012] Optionally, in the above multifunctional gluing tooling, the gluing tooling further includes a clamping assembly mounted on the mounting frame, the clamping assembly includes a clamping seat and a resisting seat, the target object can pass through between the clamping seat and the resisting seat, and the resisting seat can move relative to the clamping seat under the action of an external force to clamp or release the target object.

[0013] Optionally, for the above-mentioned multi-functional adhesive application tooling, the tooling further includes a guiding component, and the guiding component includes a first air cylinder and a guiding member connected to the first air cylinder;

[0014] The tooling further includes a pressing plate disposed above the second adhesive pressing wheel. The target object is adapted to pass between the pressing plate and the guiding member and then be disposed around the second adhesive pressing wheel. The first air cylinder can drive the guiding member to approach or move away from the pressing plate.

[0015] Optionally, for the above-mentioned multi-functional adhesive application tooling, the guiding component further includes a second air cylinder installed on the rotating frame. The lower part of the second air cylinder is connected to the first air cylinder and can drive the first air cylinder and the guiding member to move up and down to pull the end of the target object to move downward;

[0016] The guiding member is located above the second cutting knife.

[0017] Optionally, for the above-mentioned multi-functional adhesive application tooling, the second cutting knife is a full cutting knife.

[0018] Optionally, for the above-mentioned multi-functional adhesive application tooling, the tooling further includes a power transmission component installed on the mounting frame, including a first roller and a second roller. The target object can pass between the first roller and the second roller, and the rotation directions of the first roller and the second roller are opposite.

[0019] Optionally, for the above-mentioned multi-functional adhesive application tooling, the first roller is a driving wheel connected to a first motor, and the second roller is a driven wheel of the first roller.

[0020] Optionally, for the above-mentioned multi-functional adhesive application tooling, the adhesive application tooling further includes a storage component installed on the mounting frame. The storage component includes a slide rail installed on the mounting frame in the height direction and a sliding wheel adapted to the slide rail. The target object is sequentially disposed around the sliding wheel and the second adhesive pressing wheel, and the sliding wheel can move upward along the slide rail under the pulling force of the target object.

[0021] Optionally, for the above-mentioned multi-functional adhesive application tooling, the storage component further includes a first photoelectric detection component and a second photoelectric detection component installed on the mounting frame in the height direction. Both the first photoelectric detection component and the second photoelectric detection component are used to detect the position of the sliding wheel.

[0022] Compared with the prior art, the present application has the following beneficial effects: By providing a first winding disc, a second winding disc and a recovery disc, it is possible to conveniently wind different target objects, providing sufficient material supply for the gluing operation and offering different types of materials. Combining the first gluing assembly and the second gluing assembly enables the entire tooling to select either the first gluing assembly or the second gluing assembly to work, realizing at least two working modes, thereby meeting various gluing requirements in different target positions and different working environments without the need to replace the tooling, reducing the time consumed by frequently replacing the tooling or adjusting the equipment, lowering the production cost, and improving the work efficiency. Description of the Drawings

[0023] Figure 1 is a schematic structural diagram of the multifunctional gluing tooling shown in this embodiment;

[0024] Figure 2 is a schematic structural diagram of the second gluing assembly shown in this embodiment;

[0025] Figure 3 is a schematic diagram of the first working mode shown in this embodiment;

[0026] Figure 4 is a schematic diagram of the second working mode shown in this embodiment;

[0027] Figure 5 is a schematic diagram of the third working mode shown in this embodiment.

[0028] Reference Signs:

[0029] 1 - mounting bracket;

[0030] 2 - winding assembly, 21 - first winding disc, 22 - second winding disc, 23 - recovery disc;

[0031] 3 - first gluing assembly, 31 - first pressure wheel, 32 - first cutter;

[0032] 4 - second gluing assembly, 41 - second pressure wheel, 42 - second cutter;

[0033] 5 - driving assembly;

[0034] 6 - clamping assembly, 61 - clamping seat, 62 - abutting seat;

[0035] 7 - guiding assembly, 71 - first cylinder, 72 - guiding member, 73 - second cylinder;

[0036] 8 - power transmission assembly, 81 - first roller, 82 - second roller;

[0037] 9 - Storage component, 91 - Slide rail, 92 - Slide wheel, 93 - First photoelectric detection component, 94 - Second photoelectric detection component;

[0038] 10 - Transition wheel. Detailed implementation

[0039] The exemplary embodiments disclosed in the present application will be described in more detail below. In the following description, numerous specific details are given to provide a more thorough understanding of the present application. However, it will be apparent to those skilled in the art that the present application may be practiced without one or more of these details. In other instances, some well-known technical features are not described to avoid confusion with the present application; that is, not all features of the actual embodiments are described here, and the well-known functions and structures are not described in detail.

[0040] It should be understood that when an element or layer is referred to as "on", "adjacent to", "connected to" or "coupled to" another element or layer, it can be directly on, adjacent to, connected or coupled to the other element or layer, or there may be intervening elements or layers. In contrast, when an element is referred to as "directly on", "directly adjacent to", "directly connected to" or "directly coupled to" another element or layer, there are no intervening elements or layers. It should be understood that although the terms first, second, third, etc. may be used to describe various elements, components, regions, layers and / or parts, these elements, components, regions, layers and / or parts should not be limited by these terms. These terms are only used to distinguish one element, component, region, layer or part from another element, component, region, layer or part. Thus, without departing from the teachings of the present application, the first element, component, region, layer or part discussed below may be referred to as the second element, component, region, layer or part. And when discussing the second element, component, region, layer or part, it does not mean that the present application necessarily has a first element, component, region, layer or part.

[0041] Spatial relationship terms such as "under", "below", "beneath", "underneath", "above", "over", etc. are used here for convenience in description to describe the relationship of one element or feature shown in the figure with other elements or features. It should be understood that, in addition to the orientation shown in the figure, the spatial relationship terms are intended to also include different orientations of the device in use and operation.

[0042] The purpose of the terms used herein is only to describe specific embodiments and is not a limitation of the present application. As used herein, the singular forms "a", "an", and "the" are also intended to include the plural forms unless the context clearly dictates otherwise. It should also be understood that the terms "comprising" and / or "including", when used in this specification, identify the presence of features, integers, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups. As used herein, the term "and / or" includes any and all combinations of the related listed items.

[0043] To thoroughly understand the present application, detailed steps and detailed structures will be presented in the following description to illustrate the technical solution of the present application. The preferred embodiments of the present application are described in detail below. However, in addition to these detailed descriptions, the present application may also have other embodiments.

[0044] Please refer to Figure 1 - Figure 2 As shown, the multi-functional adhesive tooling shown in a preferred embodiment of the present application is used to attach a target object to a target position. Among them, the target object can be different types of adhesive tapes, and the target position can be the surface of a wall, a table, a floor, or other objects. The type of the target object and the target position can both be selected according to actual needs, and no specific limitations are imposed thereon here.

[0045] In the actual use process, due to different use environments, the attachment requirements for different types of target objects or the same type of target objects also vary. For example, the target object includes an adhesive layer and a base paper. In one use environment, it is necessary to attach the adhesive layer to the target position, while the base paper needs to be recycled; for example, it is necessary to adhere the object to be attached to the target position through the adhesive layer.

[0046] In another use environment, it is necessary to attach the adhesive layer to the target position, and the base paper needs to cover the target position together with the adhesive layer without the need for base paper recycling; for example, only transport after adhering the adhesive layer to the target position, and there is no attachment requirement for the time being.

[0047] In yet another use environment, two types of target objects are required, and the two target objects are respectively defined as the first type of target object and the second type of target object. Among them, the width of the second type of target object is greater than the width of the first type of target object. At this time, the attachment requirement is to attach the adhesive layer of the first type of target object to the target position, recycle the base paper of the first type of target object, and then attach the second type of target object to the adhesive layer of the first type of target object. It should be noted that at this time, the second type of target object is the base paper without an adhesive layer. For example, transport after adhering the adhesive layer to the target position, which is convenient for other personnel to tear off the base paper covering the adhesive layer later and prevent dust from adhering to the edge of the adhesive layer during transportation.

[0048] However, in the prior art, when different attaching requirements are needed, different attaching jigs need to be replaced to achieve different attaching requirements. Frequent replacement of jigs is time-consuming and laborious, and the cost is relatively high, which reduces the production efficiency.

[0049] To solve the above technical problems, in this embodiment, referring to Figure 1 - Figure 2 as shown, the multi-functional attaching jig includes a mounting frame 1, a winding assembly 2, a first attaching assembly 3, a second attaching assembly 4, and a driving assembly 5. Among them, the first attaching assembly 3 includes a first pressing rubber wheel 31 and a first cutting knife 32 mounted on the mounting frame 1. The first pressing rubber wheel 31 can press the target object onto the target position. The second attaching assembly 4 is rotatably connected to the mounting frame 1 and includes a rotating frame and a second pressing rubber wheel 41 and a second cutting knife 42 mounted on the rotating frame. The second pressing rubber wheel 41 can press the target object onto the target position. One end of the driving assembly 5 is connected to the mounting frame 1, and the other end is connected to the second attaching assembly 4 for driving the second attaching assembly 4 to rotate so that the second pressing rubber wheel approaches or moves away from the target position. The attaching jig is configured to have at least two modes in which the first attaching assembly 3 or the second attaching assembly 4 can be selected to press the target object onto the target position to meet different attaching requirements without replacing other attaching jigs.

[0050] It can be understood that when using the first attaching assembly 3 for attaching, the driving assembly 5 drives the second attaching assembly 4 away from the target position, so that only the first attaching assembly 3 contacts the target position. At this time, in the horizontal direction, the position of the first attaching assembly 3 is lower than that of the second attaching assembly 4. When using the second attaching assembly 4 for attaching, the driving assembly 5 drives the second attaching assembly 4 to move closer to the target position. At this time, in the horizontal direction, the position of the second attaching assembly 4 is lower than that of the first attaching assembly 3, so that only the second attaching assembly 4 contacts the target position.

[0051] It should be noted that the winding assembly 2 includes a first winding disc 21, a second winding disc 22, and a recovery disc 23 mounted on the mounting frame 1. The first winding disc 21 and the second winding disc 22 are respectively used for winding the target object. The first winding disc 21, the second winding disc 22, and the recovery disc 23 can all rotate relative to the mounting frame 1 under the action of an external force, for example, they can be driven by a motor or rotated manually. Among them, the target objects wound by the first winding disc 21 and the second winding disc 22 can be the same or different, and can be changed according to actual needs.

[0052] Specifically, the gluing tooling further includes a clamping assembly 6 installed on the mounting frame 1. The clamping assembly 6 includes a clamping seat 61 and a resisting seat 62. The target object can pass through the space between the clamping seat 61 and the resisting seat 62. The resisting seat 62 can move relative to the clamping seat 61 under an external force to press or release the target object, so that the target object can be fixed in place, preventing the target object from moving during the gluing process and ensuring the accuracy of gluing. In this embodiment, an air cylinder provides the external force for the resisting seat 62.

[0053] In an alternative embodiment, the first cutting knife 32 is a half-cutting knife to facilitate partial cutting of the target object; the second cutting knife 42 is a full-cutting knife to achieve complete cutting of the target object.

[0054] The tooling further includes a guiding assembly 7. The guiding assembly 7 includes a first air cylinder 71 and a guiding member 72 connected to the first air cylinder 71. The tooling further includes a pressing plate disposed above the second rubber pressing wheel 41. The target object is adapted to pass between the pressing plate and the guiding member 72 and then be wound around the second rubber pressing wheel 41. The first air cylinder 71 can drive the guiding member 72 to approach or move away from the pressing plate, so that during the gluing process, the guiding member 72 can guide the extending direction of the target object, ensuring that the target object can be accurately wound around the second rubber pressing wheel 41, and preventing the remaining target object from retracting when the second cutting knife 42 cuts the target object under the second rubber pressing wheel 41.

[0055] Further, the guiding assembly 7 further includes a second air cylinder 73 installed on the rotating frame. The lower part of the second air cylinder 73 is connected to the first air cylinder 71 and can drive the first air cylinder 71 and the guiding member 72 to move up and down to pull the end of the target object downward; the guiding member 72 is located above the second cutting knife 42. The purpose of this setting is that when the second cutting knife 42 cuts the target object located under the second rubber pressing wheel 41, the second air cylinder 73 can drive the guiding member 72 to move downward, so as to pull down the end of the remaining target object to the position of the second rubber pressing wheel 41, facilitating the next gluing work of the second rubber pressing wheel 41.

[0056] In an alternative embodiment, the tooling further includes a power transmission assembly 8 installed on the mounting frame 1, including a first roller 81 and a second roller 82. The target object can pass between the first roller 81 and the second roller 82, and the rotating directions of the first roller 81 and the second roller 82 are opposite, so that the rotation of the first roller 81 and the second roller 82 can provide a transmission force for the target object passing through them, ensuring that the target object can be smoothly unwound from the winding assembly 2, pass through various components, and reach the target position.

[0057] Further, the first roller 81 is a driving wheel connected to the first motor, and the second roller 82 is a driven wheel of the first roller 81. With this arrangement, on the one hand, the structure of the entire adhesive pasting tooling can be simplified, reducing costs; on the other hand, by only controlling the rotation direction and speed of one motor, the conveying speed and direction of the target object can be controlled, and problems such as unstable conveying caused by different rotational speeds of the two rollers will not occur. In this embodiment, the first roller 81 and the second roller 82 have the same diameter.

[0058] In an alternative embodiment, the adhesive pasting tooling further includes a material storage assembly 9 installed on the mounting bracket 1. The material storage assembly 9 includes a slide rail 91 installed on the mounting bracket 1 in the height direction and a sliding wheel 92 adapted to the slide rail 91. The target object is sequentially wound around the sliding wheel 92 and the second pressure adhesive wheel 41, and the sliding wheel 92 can move upward along the slide rail 91 under the pulling force of the target object. During the process of attaching the target object to the target position, the sliding wheel 92 can move on the slide rail 91 as the target object moves, serving the functions of storing the target object and buffering the target object. When the target object on the winding assembly 2 is exhausted, the pressure adhesive wheel will not suddenly stop working, but continue to pull the target object wound around the sliding wheel 92 to continue working, so as to facilitate the staff to replace the target object on the winding assembly 2 or give the staff a certain reaction time to face the problem of shutdown.

[0059] Further, the material storage assembly 9 further includes a first photoelectric detection component 93 and a second photoelectric detection component 94 installed on the mounting bracket 1 in the height direction. Both the first photoelectric detection component 93 and the second photoelectric detection component 94 are used to detect the position of the sliding wheel 92. It should be noted that the sliding wheel 92 will move along the slide rail 91 under the pulling force of the target object at the pressure adhesive wheel, and its moving distance depends on the pulling force received; during the normal adhesive pasting process, if there is a target object on the winding assembly 2, the first roller 81 and the second roller 82 continuously pull out the target object on the winding assembly 2 and convey it to the second pressure adhesive wheel 41; if there is no material of the target object on the winding assembly 2, the sliding wheel 92 will gradually move upward along the slide rail 91; if the first photoelectric detection component 93 detects the existence of the sliding wheel 92, it indicates that the sliding wheel 92 is subjected to a relatively large pulling force, and at this time it is determined that there is no target object on both the winding assembly 2 and the material storage assembly 9.

[0060] As described above, in this embodiment, the multifunctional adhesive pasting tooling further includes a plurality of idler wheels 10. In each working mode, different target objects can be wound around the idler wheels 10 as needed. The positions and winding methods of each idler wheel 10 will not be specifically introduced here. During actual operation, corresponding effects can be achieved.

[0061] In summary, the multifunctional adhesive pasting tooling shown in this embodiment has three working modes.

[0062] In one of the working modes, refer to Figure 3, it is necessary to attach the adhesive layer b of the target object a to the target position, and the backing paper c of the target object needs to be recycled; the working process of the first working mode is as follows: the target object a is wound around the first winding disc 21, and the target object a unwound from the first winding disc 21 passes between the clamping seat 61 and the abutting seat 62, then winds around one of the idler wheels 10 and passes through the first pressure roller 31. The operator makes the adhesive layer b contact the target position, and the abutting seat 62 is driven to move relative to the clamping seat 61 so that it releases the target object a, and then gluing is performed. When the gluing tooling moves to a certain specified position, the abutting seat 62 is driven to move relative to the clamping seat 61 so that it presses the target object a, and the external force drives the first cutting knife 32 to move to cut the adhesive layer b of the target object a, while the backing paper c will not be cut by the cutting knife. The backing paper c winds around the recovery disc 23 through the idler wheel 10. While gluing, the recovery disc 23 rotates to complete the recovery of the backing paper c while attaching the adhesive layer b to the target position.

[0063] In another working mode, refer to Figure 4 , it is necessary to attach the target object a to the target position, and the backing paper does not need to be recycled in this mode. The working process of the second working mode is as follows: the target object a is wound around the second winding disc 22, passes through several idler wheels 10, then passes between the first roller 81 and the second roller 82, and then passes through the sliding wheel 92 and winds around the idler wheel 10 on the rotating frame, and finally passes through the guiding member 72 and the pressing plate and is located below the second pressure roller 41. The operator makes the adhesive layer of the target object a contact the target position for gluing. When the gluing tooling moves to a certain specified position, the guiding member 72 is driven by the first air cylinder 71 to move towards the pressing plate to press the target object a on the pressing plate, and then the second cutting knife 42 performs a full cut on the target object a. Then the second air cylinder 73 drives the first air cylinder 71 and the pressing plate to move downward, so as to pull down the end of the remaining target object a to make it located below the second pressure roller 41 for the next gluing. In this mode, it should be noted that during the gluing process, the sliding wheel 92 will move along the slide rail 91 under the tension. When the sliding wheel 92 disengages from the second photoelectric detection member 94 located below, the first roller 81 and the second roller 82 rotate to provide a conveying force to pull out the target object a from the second winding disc 22 and supply it to the storage component 9 until the sliding wheel 92 returns to the position of the second photoelectric detection member 94; if the first photoelectric detection member 93 detects the presence of the sliding wheel 92, it can be understood that the target object in the second winding disc 22 is exhausted, and at this time the gluing tooling pauses working.

[0064] In yet another working mode, refer to Figure 5, it is necessary to laminate the adhesive layer b of the first type of target object a with the second type of target object c and then attach it to the target position, and then recycle the backing paper d of the first type of target object. The working process of the third working mode is as follows: The first type of target object a is wound around the first winding disc 21, and the second type of target object c is wound around the second winding disc 22. At this time, the second type of target object c is the backing paper without an adhesive layer. After the first type of target object a is wound around the first winding disc 21, it passes between the first roller 81 and the second roller 82. At the same time, after the second type of target object c is wound around the second winding disc 22, it also passes between the first roller 81 and the second roller 82, so that the adhesive layer b of the first type of target object a adheres to the second type of target object c. Then, the backing paper d of the first type of target object a after passing through the first roller 81 and the second roller 82 is wound around the recycling component. After the adhesive layer b of the first type of target object a adheres to the second type of target object c, it successively passes around the sliding wheel 92 and the idler wheel 10 on the rotating frame and is located below the second pressure roller 41. This gluing process is the same as that of the second working mode and will not be elaborated here. In this mode, the width of the second type of target object is greater than the width of the adhesive layer of the first type of target object to prevent dust from falling on the adhesive layer.

[0065] Compared with the prior art, the multi-functional gluing tooling of the present application can meet different gluing requirements without replacing other gluing tooling, thereby reducing costs and improving work efficiency.

[0066] The above is only a specific embodiment of the present application. Any improvement made on the premise of the present application's concept is regarded as the protection scope of the present application.

Claims

1. A multi-functional adhesive tooling, characterized in that, Comprising: Mounting bracket; Winding assembly, including a first winding disc, a second winding disc and a recovery disc mounted on the mounting bracket, the first winding disc and the second winding disc are respectively used for winding the target object, and the first winding disc, the second winding disc and the recovery disc can all rotate relative to the mounting bracket under the action of an external force; First adhesive component, including a first pressing rubber wheel and a first cutter mounted on the mounting bracket, the first pressing rubber wheel can press the target object onto the target position; Second adhesive component, rotatably connected to the mounting bracket, including a rotating bracket and a second pressing rubber wheel and a second cutter mounted on the rotating bracket, the second pressing rubber wheel can press the target object onto the target position; Driving component, one end connected to the mounting bracket and the other end connected to the second adhesive component, for driving the second adhesive component to rotate so that the second pressing rubber wheel approaches or moves away from the target position; The adhesive application tooling is configured to have at least two modes of selectively using the first adhesive component or the second adhesive component to press the target object onto the target position.

2. The multi-functional adhesive tooling according to claim 1, wherein The first cutter is a half cutter.

3. The multi-functional adhesive tooling according to claim 1, characterized in that, The adhesive application tooling further includes a clamping component mounted on the mounting bracket, the clamping component includes a clamping seat and a resisting seat, the target object can pass through between the clamping seat and the resisting seat, and the resisting seat can move relative to the clamping seat under the action of an external force to clamp or release the target object.

4. The multi-functional adhesive tooling according to claim 1, wherein The tooling further includes a guiding component, the guiding component includes a first air cylinder and a guiding member connected to the first air cylinder; The tooling further includes a pressing plate arranged above the second pressing rubber wheel, the target object is adapted to pass through between the pressing plate and the guiding member and then be wound around the second pressing rubber wheel, and the first air cylinder can drive the guiding member to approach or move away from the pressing plate.

5. The multifunctional adhesive tooling according to claim 4, wherein The guiding component further includes a second air cylinder mounted on the rotating bracket, the lower part of the second air cylinder is connected to the first air cylinder, and can drive the first air cylinder and the guiding member to move up and down to pull the end of the target object to move downward; The guiding member is located above the second cutter.

6. The multi-functional adhesive tooling according to claim 1, wherein The second cutter is a full cutter.

7. The multifunctional adhesive tooling according to claim 1, wherein The tooling further includes a power transmission component mounted on the mounting bracket, including a first roller and a second roller, the target object can pass through between the first roller and the second roller, and the rotating directions of the first roller and the second roller are opposite.

8. The multifunctional adhesive tooling according to claim 7, wherein, The first roller is a driving wheel connected to a first motor, and the second roller is a driven wheel of the first roller.

9. The multi-functional adhesive tooling according to claim 1, wherein The adhesive application tooling further includes a storage component mounted on the mounting bracket, the storage component includes a slide rail mounted on the mounting bracket in the height direction and a sliding wheel adapted to the slide rail, the target object is sequentially wound around the sliding wheel and the second pressing rubber wheel, and the sliding wheel can move upward along the slide rail under the pulling force of the target object.

10. The multi-functional adhesive tooling according to claim 9, wherein The storage component further includes a first photoelectric detection component and a second photoelectric detection component mounted on the mounting bracket in the height direction, and both the first photoelectric detection component and the second photoelectric detection component are used to detect the position of the sliding wheel.