Inner guide rail laminating machine

The automated design of the inner guide rail bonding machine solves the problems of low production efficiency and poor precision caused by manual operation, realizes continuous production of inner adhesive strips for transfer belts, improves production efficiency and product stability, and is suitable for transfer belts of various specifications.

CN223791026UActive Publication Date: 2026-01-13SUZHOU CHUANGYISHENG IND CO LTD
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Patent Information

Application Number
CN202520283638.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-01-13
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

Existing transfer belt internal adhesive strip machines rely on manual operation, resulting in low production efficiency, high cost, poor product precision and stability, low yield, and difficulty in adapting to different specifications of transfer belts.

Method used

Design an internal guide rail bonding machine, including a product tensioning component, an adjustment component, an external pressing component, and an internal bonding component. Through automated control, it realizes continuous production of adhesive strips and is adaptable to transfer belts of different specifications.

Benefits of technology

It enables continuous production of the inner adhesive strip of the transfer belt, improves production efficiency and reduces costs, ensures the bonding accuracy and stability of the product, and has wide adaptability, and can be used for transfer belts of various specifications.

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Abstract

The utility model relates to an inner guide rail laminating machine. A product tightening assembly is used for tightening a to-be-pasted product; the adjusting assembly is used for adjusting the position of the outer pressing assembly so that the outer pressing assembly can be close to or away from the product tightening assembly. The outer pressing assembly is used for applying pressure to the outer surface of the to-be-pasted product in the state of being close to the product tightening assembly, so that the to-be-pasted product is pressed on the inner attaching assembly; the inner attaching assembly is used for loading the adhesive tape so as to be matched with the outer pressing assembly to attach the adhesive tape to the inner surface of the to-be-pasted product. The continuous production process of sticking the adhesive tape in the transfer printing belt is realized, and the product can be stuck at one time, so that the production efficiency is improved, the production cost is reduced, the product to be stuck does not need to be repeatedly clamped, the product sticking precision is ensured as far as possible, the product stability and the yield are kept as far as possible, and the product quality is improved. The device can be suitable for sticking adhesive tapes in transfer belts of various specifications; and automatic continuous production can be realized by matching with automatic control equipment.
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Description

Technical Field

[0001] This application relates to the field of adhesive strip bonding, and in particular to an internal guide rail bonding machine. Background Technology

[0002] A transfer belt is a type of belt used in the printing industry. Its main function is to transfer the printed image from the printing plate onto the printing material. Compared to traditional printing methods, using a transfer belt allows for more precise printing without damaging the printed material.

[0003] Because the transfer belts require high stress during operation, domestic manufacturers generally increase their durability by adding reinforcing adhesive strips inside. However, machines that apply adhesive strips to transfer belts are typically manual, applying strips to one side at a time, preventing continuous production. This results in low efficiency and high costs; furthermore, repeated clamping of products degrades the bonding accuracy, leading to decreased product stability and a lower yield rate.

[0004] Moreover, this is a manual operation, and the quality is relatively unstable. It is closely related to the skill level, workload, and condition of the employees, and is highly dependent on the operators, resulting in high labor costs and low yield. Utility Model Content

[0005] Therefore, it is necessary to provide an inner guide rail bonding machine.

[0006] One embodiment of this application is an inner guide rail bonding machine, which includes a product tensioning assembly, an adjustment assembly, an outer pressing assembly, and an inner bonding assembly;

[0007] The product tensioning component is used to tension the product to be pasted.

[0008] The adjustment component is used to adjust the position of the external pressing component so that the external pressing component is closer to or further away from the product tensioning component;

[0009] The external pressing component is used to apply pressure to the outer surface of the product to be pasted when it is close to the product tensioning component, so as to press the product to be pasted onto the inner bonding component.

[0010] The inner bonding assembly is used to load the adhesive strip, so as to cooperate with the outer pressing assembly to apply the adhesive strip to the inner surface of the product to be bonded.

[0011] The aforementioned internal guide rail bonding machine, through the coordinated use of product tensioning components, adjustment components, external pressing components, and internal bonding components, achieves a continuous production process for bonding adhesive strips inside the transfer belt. It can bond products in one pass, thereby improving production efficiency and reducing production costs. Furthermore, it eliminates the need for repeated clamping of products to be bonded, thus ensuring product bonding accuracy and maximizing product stability and yield. It also boasts wide adaptability, suitable for bonding adhesive strips inside transfer belts of various specifications. Furthermore, when combined with automated control equipment, it can achieve automated continuous production, enabling automatic adhesive strip bonding within the transfer belt.

[0012] In some embodiments, the product tensioning assembly includes a servo motor, a tensioning cylinder, a power shaft, and a driven wheel;

[0013] The product to be pasted is fitted over the drive shaft and the driven wheel;

[0014] The tensioning cylinder drives the driven wheel to tension the product to be pasted outside the drive shaft and the driven wheel;

[0015] The servo motor is connected to the power shaft so that the product to be pasted rotates around the power shaft and the driven wheel through the cooperation of the power shaft and the driven wheel.

[0016] In some embodiments, the adjustment assembly includes a slide rail and front and rear cylinders for the pressure roller;

[0017] The external pressing assembly is slidably mounted on the slide rail, and the front and rear cylinders of the pressure roller are connected to the external pressing assembly for adjusting the position of the external pressing assembly on the slide rail.

[0018] In some embodiments, the adjustment assembly further includes a product width adjustment micrometer and a product width lock.

[0019] The product width lock head is used to adjust the product width adjustment micro head to be in a released or locked state.

[0020] The product width adjustment micro-head is used to adjust the pressing position of the outer pressing component according to the width of the product to be pasted in the loose state, so that the outer pressing component applies pressure to the outer surface of the product to be pasted when it is close to the product tensioning component, so as to press the product to be pasted onto the inner bonding component.

[0021] In some embodiments, the external pressing assembly includes a first measuring regulator, a second measuring regulator, a pressure roller lifting cylinder, a first pre-pressure roller, and a second pressure roller;

[0022] The first measuring adjuster is used to adjust the position of the first preload wheel;

[0023] The second measuring regulator is used to adjust the position of the second pressure wheel;

[0024] The upper and lower lifting cylinders of the pressure rollers respectively drive the first pre-pressure roller and the second pressure roller, so that when the product is close to the product tensioning component, the first pre-pressure roller pre-presses the product to be pasted onto the inner bonding component, and the second pressure roller presses the pre-pressed product onto the inner bonding component.

[0025] In some embodiments, there are two external pressing components, including a first external pressing component and a second external pressing component. The second external pressing component is adjustable relative to the first external pressing component to adjust the relative pressing position of the first external pressing component and the second external pressing component according to the width of the product to be pasted.

[0026] In some embodiments, the external pressing assembly further includes a support member slidably disposed on the adjusting assembly, and the first and second external pressing assemblies are disposed on the support member; or...

[0027] Both the first and second measuring regulators are micro micrometers.

[0028] In some embodiments, the inner bonding assembly includes a clamping bonding element and a micrometer head for adjusting the bonding strip precision;

[0029] The clamping and bonding component is used to load the adhesive strip, so as to cooperate with the external pressing component to apply the adhesive strip to the inner surface of the product to be bonded;

[0030] The precision adjustment micrometer head for the adhesive strip is connected to the clamping and bonding component and is used to adjust the position of the clamping and bonding component.

[0031] In some embodiments, the clamping fitting is provided with an inner strip slot for loading the adhesive strip; or,

[0032] The inner bonding assembly further includes a waste roll motor disposed on the clamping bonding member; or...

[0033] The number of clamping and bonding components is two, including a first clamping and bonding component and a second clamping and bonding component. The tape precision adjustment micron head is used to adjust the position of the second clamping and bonding component relative to the first clamping and bonding component, so as to adjust the relative distance between the first clamping and bonding component and the second clamping and bonding component according to the width of the product to be pasted.

[0034] In some embodiments, the inner guide rail bonding machine further includes a frame, on which the product tensioning assembly, the adjustment assembly, the outer pressing assembly, and the inner bonding assembly are respectively disposed. Attached Figure Description

[0035] To more clearly illustrate the technical solutions in the embodiments of this application or the conventional technology, the drawings used in the description of the embodiments or the conventional technology will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0036] Figure 1 This is a structural schematic diagram of an embodiment of the inner guide rail bonding machine described in this application.

[0037] Figure 2 for Figure 1 Another schematic diagram of the embodiment shown.

[0038] Figure 3 for Figure 2 Another schematic diagram of the embodiment shown.

[0039] Figure 4 for Figure 1 The illustrated embodiment shows a schematic diagram of the application of some structures.

[0040] Figure 5 for Figure 4 Another schematic diagram of the embodiment shown.

[0041] Figure 6 for Figure 5 Another schematic diagram of the embodiment shown.

[0042] Figure 7 for Figure 6 Another schematic diagram of the embodiment shown.

[0043] Figure 8 for Figure 4 A schematic diagram of the structure of the first external pressing component in the embodiment shown.

[0044] Figure 9 for Figure 8 Another schematic diagram of the embodiment shown.

[0045] Figure 10 for Figure 9 Another schematic diagram of the embodiment shown.

[0046] Figure 11 for Figure 10 Another schematic diagram of the embodiment shown.

[0047] Figure 12 for Figure 11 Another schematic diagram of the embodiment shown.

[0048] Figure 13 for Figure 4 A schematic diagram of the internal bonding component in the embodiment shown.

[0049] Figure 14 for Figure 13 Another schematic diagram of the embodiment shown.

[0050] Figure 15 for Figure 14 Another schematic diagram of the embodiment shown.

[0051] Figure 16 for Figure 15 Another schematic diagram of the embodiment shown.

[0052] Reference numerals: Inner guide rail bonding machine 100, product tensioning assembly 110, servo motor 111, tensioning cylinder 112, power shaft 113, driven wheel 114, adjusting assembly 120, slide rail 121, pressure roller front and rear cylinder 122, product width adjustment micrometer head 123, product width lock head 124, outer pressing assembly 130, first measuring adjuster 131, second measuring adjuster 132, pressure roller up and down lifting cylinder 133, first pre-pressure roller 134, second pressure roller 135, first outer pressing assembly 136, second outer pressing assembly 137, support component 138, inner bonding assembly 140, first clamping bonding component 141, second clamping bonding component 142, strip precision adjustment micrometer head 143, inner strip slot 144, waste material roll motor 145, frame 150, product to be processed 200. Detailed Implementation

[0053] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0054] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on the other component or there may be an intermediate component. When a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intermediate component present. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application's specification are for illustrative purposes only and do not represent the only possible implementation.

[0055] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0056] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature and the second feature are in indirect contact through an intermediate medium. Furthermore, "above," "over," and "on top" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0057] Unless otherwise defined, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. The term "and or" as used in this application includes any and all combinations of one or more of the associated listed items.

[0058] This application discloses an inner guide rail bonding machine, which includes some or all of the technical features of the following embodiments; that is, the inner guide rail bonding machine includes some or all of the following structures. In one embodiment of this application, an inner guide rail bonding machine includes a product tensioning component, an adjusting component, an outer pressing component, and an inner bonding component; the product tensioning component is used to tension the product to be bonded; the adjusting component is used to adjust the position of the outer pressing component so that the outer pressing component is closer to or farther away from the product tensioning component; the outer pressing component is used to apply pressure to the outer surface of the product to be bonded when it is close to the product tensioning component, so as to press the product to be bonded onto the inner bonding component; the inner bonding component is used to load an adhesive strip to cooperate with the outer pressing component to bond the adhesive strip to the inner surface of the product to be bonded. The aforementioned internal guide rail bonding machine, through the coordinated use of product tensioning components, adjusting components, external pressing components, and internal bonding components, achieves a continuous production process for bonding adhesive strips inside the transfer belt. It can bond products in one pass, thereby improving production efficiency and reducing production costs. Furthermore, it eliminates the need for repeated clamping of products to be bonded, thus ensuring product bonding accuracy and maximizing product stability and yield. It also boasts wide adaptability, suitable for bonding adhesive strips inside transfer belts of various specifications. Furthermore, by integrating it with automated control equipment, automated continuous production can be achieved, enabling automatic adhesive strip bonding within the transfer belt. The following section will discuss... Figures 1 to 16 The inner guide rail bonding machine will be described in detail.

[0059] In some embodiments, an inner guide rail bonding machine 100, such as... Figure 1 and Figure 2 As shown, it includes a product tensioning assembly 110, an adjustment assembly 120, an outer pressing assembly 130, and an inner bonding assembly 140; combined with Figure 4 and Figure 5The product tensioning assembly 110 is used to tension the product 200 to be pasted; the adjusting assembly 120 is used to adjust the position of the outer pressing assembly 130 so that the outer pressing assembly 130 is closer to or farther away from the product tensioning assembly 110; the outer pressing assembly 130 is used to apply pressure to the outer surface of the product 200 to be pasted when it is close to the product tensioning assembly 110, so as to press the product 200 to be pasted onto the inner bonding assembly 140; the inner bonding assembly 140 is used to load adhesive strips so as to cooperate with the outer pressing assembly 130 to attach the adhesive strips to the inner surface of the product 200 to be pasted. This design, through the cooperation of the product tensioning component 110, the adjusting component 120, the external pressing component 130, and the internal bonding component 140, realizes a continuous production process for bonding adhesive strips inside the transfer belt. It can bond the product in one go, thereby improving production efficiency and reducing production costs. Moreover, it eliminates the need to repeatedly clamp the product 200 to be bonded, thus ensuring the product bonding accuracy as much as possible, thereby maintaining product stability and yield rate. It also has the advantage of wide adaptability and can be applied to bonding adhesive strips inside transfer belts of various specifications, such as 4A specification transfer belts. Based on this, with the addition of automated control equipment, automated continuous production can be realized, realizing the automatic bonding process of adhesive strips inside the transfer belt.

[0060] To achieve fully automated production of a complete product, in some embodiments, the inner guide rail bonding machine 100 further includes a power supply component and a control component. The power supply component is connected to the product tensioning component 110, the adjustment component 120, the outer pressing component 130, and the inner bonding component 140, respectively, for supplying power. The control component is connected to the power supply component, the product tensioning component 110, the adjustment component 120, the outer pressing component 130, and the inner bonding component 140, respectively, for controlling the product tensioning component 110 to tension the product 200 to be bonded, the adjustment component 120 to adjust the position of the outer pressing component 130, the outer pressing component 130 to apply pressure to the outer surface of the product 200 to be bonded, and the position of the inner bonding component 140. As an example, the control component includes a microcontroller, a touch screen, and an industrial computer, etc. Those skilled in the art will understand that the control component and its specific control method can be directly purchased externally or implemented using existing control schemes. The relevant embodiments in this application are for use only and do not involve program development. This structural design facilitates the control of the product tensioning assembly 110, the adjustment assembly 120, the outer pressing assembly 130, and the inner bonding assembly 140 of the inner guide rail bonding machine 100, thereby achieving the corresponding functional design.

[0061] To facilitate the overall structure of the inner guide rail bonding machine 100, in some embodiments, such as Figure 2 and Figure 3 As shown, the inner guide rail bonding machine 100 also includes a frame 150, on which the product tensioning assembly 110, the adjusting assembly 120, the outer pressing assembly 130, and the inner bonding assembly 140 are respectively mounted. This design allows all components of the inner guide rail bonding machine 100 to form a single unit, facilitating its production, fabrication, and transportation, and also making it easier to operate the product tensioning assembly 110, the adjusting assembly 120, the outer pressing assembly 130, and the inner bonding assembly 140.

[0062] To improve the adhesion of the adhesive strip, in some embodiments, such as Figure 5 and Figure 6 As shown, the product tensioning assembly 110 includes a servo motor 111, a tensioning cylinder 112, a power shaft 113, and a driven wheel 114; (Comparison) Figure 2 and Figure 3 The product to be pasted 200 is sleeved outside the power shaft 113 and the driven wheel 114; the tensioning cylinder 112 drives and connects to the driven wheel 114, so that the product to be pasted 200 is tensioned outside the power shaft 113 and the driven wheel 114; the servo motor 111 drives and connects to the power shaft 113, so that the product to be pasted 200 rotates around the power shaft 113 and the driven wheel 114 through the cooperation of the power shaft 113 and the driven wheel 114. It can be understood that in various embodiments of this application, the rotation may not be a circular motion, but rather a change in position of the product to be pasted 200 relative to the power shaft 113 and the driven wheel 114 under the action and constraint of the power shaft 113 and the driven wheel 114, and therefore can also be referred to as movement. This structural design, when the adhesive strip is applied to the product 200, achieves relative tension of the product 200 by adjusting the relative position of the drive shaft 113 and the driven wheel 114. That is, through the cooperation of the drive shaft 113 and the driven wheel 114, the product 200 is tensioned outside the drive shaft 113 and the driven wheel 114. Under the action of the servo motor 111 and the tensioning cylinder 112, the product 200 rotates around the drive shaft 113 and the driven wheel 114.

[0063] To facilitate accurate linear control of the position of the external pressing assembly 130, in some embodiments, such as Figure 5 and Figure 6As shown, the adjustment assembly 120 includes a slide rail 121 and front and rear cylinders 122 for the pressure roller; the external pressing assembly 130 is slidably disposed on the slide rail 121, and the front and rear cylinders 122 drive and connect the external pressing assembly 130 to adjust the position of the external pressing assembly 130 on the slide rail 121. It is understood that in the various embodiments of this application, the terms front and rear, left and right, and up and down are relative positional relationships, used to reflect different directions of movement, rather than as strict positional or movement limitations. This structural design, by driving the external pressing assembly 130 to slide along the slide rail 121 via the front and rear cylinders 122, allows for convenient and accurate adjustment of the position of the external pressing assembly 130, thereby adjusting the position of the pressure roller of the external pressing assembly 130 in the extension direction of the slide rail 121, thus achieving linear control of the position of the external pressing assembly 130.

[0064] To accommodate the width of the product 200 to be pasted, in some embodiments, such as Figure 6 and Figure 7 As shown, the adjustment assembly 120 also includes a product width adjustment micro-head 123 and a product width locking head 124. The product width locking head 124 is used to adjust the product width adjustment micro-head 123 to a released or locked state. In the released state, the product width adjustment micro-head 123 is used to adjust the pressing position of the outer pressing assembly 130 according to the width of the product 200 to be pasted, so that the outer pressing assembly 130, when close to the product tensioning assembly 110, applies pressure to the outer surface of the product 200 to be pasted, thereby pressing the product 200 onto the inner bonding assembly 140. This structural design facilitates adjusting the pressing position of the outer pressing assembly 130 according to the actual size of the product 200 to be pasted, for example, by adjusting the position of the pressure roller of the outer pressing assembly 130 to change its pressing position. Figure 6 and Figure 7 In the illustrated embodiment, by adjusting the positions of the first pre-pressure roller 134 and the second pressure roller 135 of the outer pressing component 130, the pressing position of the outer pressing component 130 is adjusted, so that the outer pressing component 130 can be pressed more accurately onto the outer surface of the product to be pasted 200. In other words, the outer pressing component 130 can cooperate more accurately with the inner bonding component 140, applying force from both the inner and outer surfaces of the inner bonding component 140 to the product to be pasted, so that the adhesive strip is accurately pasted onto the inner surface of the product to be pasted 200.

[0065] In some embodiments, the number of the external pressing components 130 is two, such as... Figure 6 and Figure 7As shown, the external pressing assembly 130 includes a first external pressing assembly 136 and a second external pressing assembly 137. The second external pressing assembly 137 is adjustable relative to the first external pressing assembly 136 to adjust the relative pressing position of the first external pressing assembly 136 and the second external pressing assembly 137 according to the width of the product to be pasted 200. In an embodiment with a product width adjustment micro-head 123 and a product width locking head 124, the product width adjustment micro-head 123 is used to adjust the position of the second external pressing assembly 137 according to the width of the product to be pasted 200 in the released state, thereby changing the pressing position of the second external pressing assembly 137 relative to the first external pressing assembly 136. This allows the first external pressing assembly 136 and the second external pressing assembly 137 to apply pressure to the outer surface of the product to be pasted 200 at two positions when they are close to the product tensioning assembly 110, thereby pressing the product to be pasted 200 onto the product tensioning assembly 110. The two adhesive strips are applied to the inner surface of the product 200 to be bonded, thus enabling rapid bonding of the two adhesive strips in one go. This realizes a continuous production process for bonding adhesive strips inside the transfer belt, allowing the product to be bonded in one go, further improving production efficiency and reducing production costs. Moreover, since the product is bonded in one go without the need to repeatedly clamp the product 200 to be bonded, the bonding accuracy of the product is further guaranteed, thereby maintaining product stability and yield as much as possible. It also has the advantage of wide adaptability and can be used for bonding adhesive strips inside transfer belts of various specifications.

[0066] To facilitate the overall movement of the first external pressing assembly 136 and the second external pressing assembly 137, in some embodiments, such as Figure 6 As shown, the external pressing assembly 130 further includes a support member 138, which is slidably disposed on the adjusting assembly 120. The first external pressing assembly 136 and the second external pressing assembly 137 are disposed on the support member 138. As an example, in an embodiment with a slide rail 121 and front and rear cylinders 122 of the pressure roller, the support member 138 is slidably disposed on the slide rail 121, and the front and rear cylinders 122 of the pressure roller are driven to connect to the support member 138, so as to drive the support member 138 to slide on the slide rail 121, thereby driving the first external pressing assembly 136 and the second external pressing assembly 137 to move as a whole on the slide rail 121, so that the first external pressing assembly 136 and the second external pressing assembly 137 move as a whole relative to the inner bonding assembly 140, thereby ensuring the pressing consistency of the first external pressing assembly 136 and the second external pressing assembly 137.

[0067] In some of these embodiments, such as Figure 8 and Figure 9 As shown, the external pressure assembly 130 includes a first measuring regulator 131, a second measuring regulator 132, a pressure roller lifting cylinder 133, a first pre-pressure roller 134, and a second pressure roller 135; combined with Figure 10 The first measuring adjuster 131 is used to adjust the position of the first preload roller 134; the second measuring adjuster 132 is used to adjust the position of the second pressure roller 135; combined with Figure 11 and Figure 12 The lifting cylinders 133 drive the first pre-pressure roller 134 and the second pressure roller 135 respectively. When the product is close to the product tensioning assembly 110, the first pre-pressure roller 134 pre-presses the product 200 to be bonded onto the inner bonding assembly 140, and the second pressure roller 135 presses the pre-pressed product 200 onto the inner bonding assembly 140. In this embodiment, both the first measuring adjuster 131 and the second measuring adjuster 132 are micrometers with micrometer measuring heads. These heads, also called micrometers or micrometer screw gauges, are used to measure the position of the first pre-pressure roller 134 or the second pressure roller 135 as accurately as possible, thereby achieving accurate position adjustment.

[0068] In some of these embodiments, such as Figure 13 and Figure 14 As shown, the inner bonding assembly 140 includes a clamping bonding component and a micro-head 143 for adjusting the adhesive strip precision. The clamping bonding component is used to load the adhesive strip, so as to cooperate with the outer pressing assembly 130 to apply the adhesive strip to the inner surface of the product 200 to be bonded. The micro-head 143 for adjusting the adhesive strip precision is connected to the clamping bonding component and is used to adjust the position of the clamping bonding component. Figure 15 and Figure 16In this embodiment, the number of clamping and bonding components is two, including a first clamping and bonding component 141 and a second clamping and bonding component 142. The strip precision adjustment micron head 143 is used to adjust the position of the second clamping and bonding component 142 relative to the first clamping and bonding component 141, so as to adjust the relative distance between the first clamping and bonding component 141 and the second clamping and bonding component 142 according to the width of the product to be pasted 200. This structural design is beneficial to accurately apply the two adhesive strips to the inner surface of the product to be pasted 200, thereby achieving rapid pasting of the two adhesive strips in one go. Therefore, it realizes a continuous production process for pasting adhesive strips inside the transfer belt, which can paste the product in one go, further improving production efficiency and reducing production costs. Moreover, since the product is pasted in one go without repeatedly clamping the product to be pasted 200, it further ensures the product bonding accuracy, thereby maintaining product stability and yield as much as possible. At the same time, it has the advantage of wide adaptability and can be applied to pasting adhesive strips inside transfer belts of various specifications.

[0069] To facilitate the assembly of the adhesive strip to be pasted, in some embodiments, such as Figure 13 and Figure 14 As shown, the clamping and bonding component is provided with an inner strip slot 144 for loading the adhesive strip; in the embodiment having a first clamping and bonding component 141 and a second clamping and bonding component 142, the first clamping and bonding component 141 and the second clamping and bonding component 142 are respectively provided with the inner strip slot 144. As an example, during the pressing process, the first pre-pressure roller 134 of the outer pressing assembly 130 first contacts the inner adhesive strip slot 144 of the clamping and bonding component from the outer and inner surfaces of the product 200 to be bonded, respectively, so that the adhesive strip on the inner adhesive strip slot 144 is pre-adhered to the inner surface of the product 200 to be bonded. Then, the first pre-pressure roller 134 is removed, and the second pressure roller 135 of the outer pressing assembly 130 then contacts the inner adhesive strip slot 144 of the clamping and bonding component from the outer and inner surfaces of the product 200 to be bonded, respectively, so that the adhesive strip on the inner adhesive strip slot 144 is affixed to the inner surface of the product 200 to be bonded.

[0070] To facilitate the collection of the protective film layer after the adhesive strip has been applied, in some embodiments, such as Figure 13 and Figure 14 As shown, the inner bonding assembly 140 also includes a waste material roll motor 145 disposed on the clamping bonding component. This structural design helps to avoid excess waste material from hindering subsequent processing.

[0071] In some embodiments, the adhesive strip in the inner bonding component 140 can also be called an inner bonding strip. It can be first installed on a fixture and held in place, for example, by turning on a vacuum pump to hold the inner bonding strip in place. Moreover, the design of the inner bonding component 140 and its inner bonding strip slot 144 in various embodiments allows the inner guide rail bonding machine 100 to use bonding strips of different thicknesses. As an example, the pressure rollers of the outer pressing component 130 include a first pre-pressure roller 134 and a second pressure roller 135, and the pressure value of the pressure rollers can be adjusted from 0 kg to 1000 kg. As an example, with a spindle tail concentricity of less than 0.02, the inner guide rail bonding machine 100 can apply the inner bonding strip of the product in one go, improving the accuracy of the final product and production efficiency. In practice, it can achieve the quality requirements of high adhesion and can apply the product in one go, thus improving production efficiency.

[0072] It should be noted that other embodiments of this application also include an internal guide rail bonding machine formed by combining the technical features of the above embodiments.

[0073] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0074] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the scope of protection of this application. Therefore, the patent protection scope of this application should be determined by the appended claims.

Claims

1. An inner guide rail bonding machine (100), characterized in that, It includes a product tensioning assembly (110), an adjustment assembly (120), an external pressing assembly (130), and an internal bonding assembly (140). The product tensioning component (110) is used to tension the product (200) to be pasted. The adjustment component (120) is used to adjust the position of the external pressing component (130) so that the external pressing component (130) is closer to or further away from the product tensioning component (110). The outer pressing assembly (130) is used to apply pressure to the outer surface of the product to be pasted (200) in a state close to the product tensioning assembly (110) to press the product to be pasted (200) onto the inner bonding assembly (140); The inner bonding assembly (140) is used to load the adhesive strip to cooperate with the outer pressing assembly (130) to apply the adhesive strip to the inner surface of the product to be bonded (200).

2. The inner guide rail bonding machine (100) according to claim 1, characterized in that, The product tensioning assembly (110) includes a servo motor (111), a tensioning cylinder (112), a power shaft (113), and a driven wheel (114). The product to be pasted (200) is fitted over the drive shaft (113) and the driven wheel (114); The tensioning cylinder (112) drives the driven wheel (114) to tension the product to be pasted (200) outside the power shaft (113) and the driven wheel (114); The servo motor (111) drives the power shaft (113) so that the product to be pasted (200) rotates around the power shaft (113) and the driven wheel (114) through the cooperation of the power shaft (113) and the driven wheel (114).

3. The inner guide rail bonding machine (100) according to claim 1, characterized in that, The adjustment assembly (120) includes a slide rail (121) and front and rear cylinders (122) for the pressure roller; The external pressing assembly (130) is slidably disposed on the slide rail (121), and the front and rear cylinders (122) of the pressure roller are connected to the external pressing assembly (130) for adjusting the position of the external pressing assembly (130) on the slide rail (121).

4. The inner guide rail bonding machine (100) according to claim 3, characterized in that, The adjustment assembly (120) also includes a product width adjustment micrometer (123) and a product width lock (124). The product width lock head (124) is used to adjust the product width adjustment micro head (123) to be in the released or locked state; The product width adjustment micro-head (123) is used to adjust the pressing position of the outer pressing assembly (130) according to the width of the product to be pasted (200) in the loose state, so that the outer pressing assembly (130) applies pressure to the outer surface of the product to be pasted (200) in a state close to the product tensioning assembly (110) to press the product to be pasted (200) onto the inner bonding assembly (140).

5. The inner guide rail bonding machine (100) according to claim 1, characterized in that, The external pressing assembly (130) includes a first measuring regulator (131), a second measuring regulator (132), a pressure roller lifting cylinder (133), a first pre-pressure roller (134), and a second pressure roller (135). The first measuring regulator (131) is used to adjust the position of the first preload wheel (134); The second measuring regulator (132) is used to adjust the position of the second pressure wheel (135); The pressure roller lifting cylinder (133) drives the first pre-pressure roller (134) and the second pressure roller (135) respectively, so that when the product is close to the product tensioning assembly (110), the product to be pasted (200) is pre-pressed onto the inner bonding assembly (140) by the first pre-pressure roller (134), and the pre-pressed product to be pasted (200) is pressed onto the inner bonding assembly (140) by the second pressure roller (135).

6. The inner guide rail bonding machine (100) according to claim 5, characterized in that, The number of external pressing components (130) is two, including a first external pressing component (136) and a second external pressing component (137). The second external pressing component (137) is adjustable relative to the first external pressing component (136) to adjust the relative pressing position of the first external pressing component (136) and the second external pressing component (137) according to the width of the product to be pasted (200).

7. The inner guide rail bonding machine (100) according to claim 6, characterized in that, The external pressing assembly (130) further includes a support member (138), which is slidably disposed on the adjusting assembly (120). The first external pressing assembly (136) and the second external pressing assembly (137) are disposed on the support member (138); or, Both the first measuring regulator (131) and the second measuring regulator (132) are micro-micrometers.

8. The inner guide rail bonding machine (100) according to claim 1, characterized in that, The inner bonding assembly (140) includes a clamping bonding component and a micrometer head (143) for adjusting the precision of the bonding strip. The clamping and bonding component is used to load the adhesive strip so as to cooperate with the external pressing assembly (130) to apply the adhesive strip to the inner surface of the product to be bonded (200); The tape precision adjustment micrometer head (143) is connected to the clamping and bonding component and is used to adjust the position of the clamping and bonding component.

9. The inner guide rail bonding machine (100) according to claim 8, characterized in that, The clamping and bonding component is provided with an inner strip slot (144) for loading the adhesive strip; or, The inner bonding assembly (140) further includes a waste roll motor (145) disposed on the clamping bonding member; or, The number of clamping and bonding components is two, including a first clamping and bonding component (141) and a second clamping and bonding component (142). The tape precision adjustment micro head (143) is used to adjust the position of the second clamping and bonding component (142) relative to the first clamping and bonding component (141) so as to adjust the relative distance between the first clamping and bonding component (141) and the second clamping and bonding component (142) according to the width of the product to be pasted (200).

10. The inner guide rail bonding machine (100) according to any one of claims 1 to 9, characterized in that, The inner guide rail bonding machine (100) also includes a frame (150), and the product tensioning component (110), the adjustment component (120), the outer pressing component (130) and the inner bonding component (140) are respectively disposed on the frame (150).