Attaching and slitting all-in-one machine
By designing an integrated attaching and slitting machine, the attaching and slitting of transfer belts is automated, solving the problems of large precision errors and reliance on manual labor in traditional processes, thereby improving production efficiency and product quality and reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional transfer belts have large single-sided precision errors after repair, resulting in reduced durability, abnormal noise after machine installation, low production efficiency, reduced product yield, reliance on operator skill, and high production costs.
The application and slitting machine is integrated with a centering and alignment cutting mechanism, a product tensioning component and an adhesive module to achieve the integration of application and slitting functions. The tape application and cutting are completed in one go through an automated process, eliminating the need for secondary positioning and transfer processes.
It improved production efficiency, enhanced product quality stability and yield, reduced production costs, and decreased reliance on operators.
Smart Images

Figure CN224062146U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of transfer belts, and in particular to an integrated attaching and slitting 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] According to the functional requirements of the transfer belt, the product width needs to be adjusted. However, after adjustment, the single-sided precision error is large, which reduces the durability of the transfer belt and causes abnormal noise after the machine is installed. Therefore, the transfer belt needs to be covered with polyethylene terephthalate (PET) tape to increase the belt's durability.
[0004] In traditional processes, the transfer belt is first applied with PET tape on one machine, then the product is removed and placed on a separate cutting machine for slitting. The transfer of the transfer belt to the slitting machine after applying the tape requires precise secondary positioning and carries the risk of increased product defect rates during the transfer process. Furthermore, the quality is relatively unstable and highly dependent on the operator's skill level, workload, and condition. Therefore, this process results in low production efficiency, reduced product yield, and high production costs. Utility Model Content
[0005] Therefore, it is necessary to provide an integrated attaching and slitting machine.
[0006] One embodiment of this application is an adhesive application and slitting machine, which includes a centering alignment and cutting mechanism, a product tensioning component, and an adhesive application module.
[0007] The product tensioning assembly is used to tension the product to be cut.
[0008] The adhesive application module is used to apply tape to the product to be cut near the product tensioning component, and to cut the tape away from the product tensioning component after the tape application is completed.
[0009] The centering and alignment cutting mechanism is used to approach the product tensioning assembly to cut the product to be cut, and to move away from the product tensioning assembly after cutting is completed.
[0010] The aforementioned integrated applicator and slitting machine, through the coordination of a centering alignment and cutting mechanism, a product tensioning component, and an adhesive application module, facilitates the integrated operation of applicator and slitting functions. Furthermore, it enables automated applicator and slitting processes, allowing for one-time applicator application, thus improving production efficiency. The entire production process eliminates the need for secondary positioning of the product to be slitted, reducing positioning requirements and eliminating the transfer process. This enhances product quality stability and reduces manpower requirements, resulting in higher production efficiency, higher product yield, and lower production costs compared to traditional technologies.
[0011] In some embodiments, the product tensioning assembly includes a motor, a power rotation shaft, and a tensioning up-and-down movement module;
[0012] The motor and the power rotating shaft are respectively mounted on the tensioning up-and-down moving module, and the tensioning up-and-down moving module is used to adjust the position of the power rotating shaft.
[0013] The motor is connected to the power rotating shaft and is used to tension the product to be cut via the power rotating shaft.
[0014] As an example, the motor also drives the tensioning up-and-down moving module to adjust the position of the tensioning up-and-down moving module so as to tension the product to be cut via the power rotation shaft.
[0015] In some embodiments, the adhesive application module includes a torque motor, left and right adhesive film assemblies, a left and right adhesive application moving structure adjustment distance module, an adhesive tape mounting shaft, an adhesive tape locking cylinder, and a blade cutting cylinder.
[0016] The tape mounting shaft and the left and right adhesive film assemblies are used to jointly mount the tape, and the tape locking cylinder is used to tighten the tape between the tape mounting shaft and the left and right adhesive film assemblies.
[0017] The torque motor drives the left and right adhesive film groups to move the left and right adhesive film groups along the left and right adhesive moving structure adjustment distance module so that the tape is aligned with the product to be cut.
[0018] The left and right adhesive moving structure adjustment distance module is used to adjust the distance between the tape and the product to be cut, so as to apply the tape to the product to be cut;
[0019] The blade-cutting cylinder is used to cut the tape and move it away from the product tensioning assembly when the tape has been applied.
[0020] In some embodiments, the adhesive application module further includes an adhesive tape pressure roller shaft, which cooperates with the adhesive tape locking cylinder to jointly tighten the adhesive tape between the adhesive tape mounting shaft and the left and right adhesive film assemblies.
[0021] In some embodiments, the left and right adhesive film groups include a left adhesive film group and a right adhesive film group. The number of the tape mounting shaft and the torque motor are both two. The left adhesive film group, one tape mounting shaft, and one torque motor form a first adhesive application structure, and the right adhesive film group, another tape mounting shaft, and another torque motor form a second adhesive application structure.
[0022] In some embodiments, the left adhesive film group and the right adhesive film group are respectively provided with tape limiting grooves to limit the position of the tape on the left adhesive film group or the right adhesive film group.
[0023] In some embodiments, the adhesive application module further includes a first adhesive tape guide wheel and a second adhesive tape guide wheel, which together cooperate with the adhesive tape mounting shaft and the left and right adhesive film assemblies to jointly install the adhesive tape.
[0024] As an example, the first tape guide wheel is adjacent to the tape locking cylinder, and the second tape guide wheel is adjacent to the tape mounting shaft.
[0025] In some embodiments, the centering and alignment cutting mechanism includes a translation module and a cutting module;
[0026] The translation module is used to move closer to the product tensioning assembly and away from the product tensioning assembly;
[0027] The cutting module is mounted on the translation module and is used to cut the product to be cut when it is close to the product tensioning component.
[0028] In some embodiments, the translation module includes an adjustment module for the left cutter translation and an adjustment module for the right cutter translation, and the cutting module includes an adjustment module for the left cutter up and down and an adjustment module for the right cutter up and down;
[0029] The adjusting left cutter up and down module is disposed on the adjusting left cutter translation module. The adjusting left cutter translation module is used to adjust the translation of the adjusting left cutter up and down module. The adjusting left cutter up and down module is used to move up and down to cut the product to be cut.
[0030] The right cutter up-and-down adjustment module is disposed on the right cutter translation module. The right cutter translation module is used to adjust the translation of the right cutter up-and-down adjustment module. The right cutter up-and-down adjustment module is used to move up and down to cut the product to be cut.
[0031] Both the left and right cutting blade adjustment modules are equipped with blade impact buffer cylinders and cutting blade bases. The blade impact buffer cylinders are used to prevent impacts when the left or right cutting blade adjustment modules are moving up and down. The cutting blade bases are used to mount the cutting blades of the left or right cutting blade adjustment modules.
[0032] In some embodiments, the bonding and slitting machine further includes a control device and a frame. The centering alignment cutting mechanism, the product tensioning assembly, the adhesive application module and the control device are respectively disposed on the frame. The control device is connected to the centering alignment cutting mechanism, the product tensioning assembly and the adhesive application module respectively. Attached Figure Description
[0033] 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.
[0034] Figure 1 This is a schematic diagram of an embodiment of the bonding and slitting machine described in this application.
[0035] Figure 2 for Figure 1 The illustrated embodiment is shown in the following diagram.
[0036] Figure 3 for Figure 1 Another schematic diagram of the partial structure of the embodiment shown.
[0037] Figure 4 for Figure 1 Another schematic diagram of the embodiment shown.
[0038] Figure 5 for Figure 1 A schematic diagram of the centering and alignment cutting mechanism in the embodiment shown.
[0039] Figure 6 for Figure 5 Another schematic diagram of the embodiment shown.
[0040] Figure 7 for Figure 6 Another schematic diagram of the embodiment shown.
[0041] Figure 8 for Figure 7 Another schematic diagram of the embodiment shown.
[0042] Figure 9 for Figure 1 A schematic diagram of the product tensioning assembly in the embodiment shown.
[0043] Figure 10 for Figure 9 Another schematic diagram of the embodiment shown.
[0044] Figure 11 for Figure 10 Another schematic diagram of the embodiment shown.
[0045] Figure 12 for Figure 11 Another schematic diagram of the embodiment shown.
[0046] Figure 13 for Figure 1 A schematic diagram of the adhesive application module in the embodiment shown.
[0047] Figure 14 for Figure 13 Another schematic diagram of the embodiment shown.
[0048] Figure 15 for Figure 14 Another schematic diagram of the embodiment shown.
[0049] Figure 16 for Figure 15 Another schematic diagram of the embodiment shown.
[0050] Reference numerals: 100, 110, 111, 112, 113, 114, 115, 116, 12, 12, 13, 14, 15, 16, 12, 12, 13, 14, 15, 16, 12, 12, 12, 13, 14, 15, 16, 12, 12, 12, 12, 13 ... Detailed Implementation
[0051] 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.
[0052] 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.
[0053] 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.
[0054] 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.
[0055] 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.
[0056] This application discloses an integrated applicator and slitting machine, which includes some or all of the technical features of the following embodiments; that is, the integrated applicator and slitting machine includes some or all of the following structures. In one embodiment of this application, an integrated applicator and slitting machine includes a centering alignment cutting mechanism, a product tensioning assembly, and an adhesive applicator module; the product tensioning assembly is used to tension the product to be slitted; the adhesive applicator module is used to approach the product tensioning assembly to apply tape to the product to be slitted, and to cut the tape and move it away from the product tensioning assembly after the tape is applied; the centering alignment cutting mechanism is used to approach the product tensioning assembly to cut the product to be slitted, and to move away from the product tensioning assembly after cutting. The aforementioned integrated bonding and slitting machine, through the coordination of a centering alignment and cutting mechanism, a product tensioning component, and an adhesive application module, facilitates the integrated operation of bonding and slitting functions. Furthermore, it enables automated bonding and slitting processes, allowing for one-time product bonding, thus improving production efficiency. The entire production process eliminates the need for secondary positioning of the product to be slit, reducing positioning requirements and eliminating the transfer process. This improves product quality stability and reduces manpower requirements, resulting in higher production efficiency, higher product yield, and lower production costs compared to traditional technologies. The following section will further elaborate on this point. Figures 1 to 16 The bonding and slitting integrated machine will be described in detail.
[0057] In some embodiments, an attachment and slitting machine 100, such as... Figure 1 As shown, it includes a centering and alignment cutting mechanism 110, a product tensioning assembly 120, and an adhesive application module 130; combined with Figure 2 The product tensioning assembly 120 is used to tension the product 200 to be cut; combined with Figure 3 and Figure 4The adhesive application module 130 is used to apply the tape to the product to be cut 200 near the product tensioning assembly 120, and to cut the tape away from the product tensioning assembly 120 after the tape application is completed; the centering alignment cutting mechanism 110 is used to cut the product to be cut 200 near the product tensioning assembly 120, and to move away from the product tensioning assembly 120 after the cutting is completed. This structural design, where the bonding and slitting integrated machine 100 works in conjunction with the centering alignment cutting mechanism 110, the product tensioning component 120, and the adhesive module 130, facilitates the integrated coordination of bonding and slitting functions. It also enables automated bonding and slitting processes, allowing products to be bonded in one go, improving production efficiency. Furthermore, the entire production process eliminates the need for secondary positioning of the product to be slitted 200, thus reducing positioning requirements and eliminating the transfer process of the product to be slitted 200 during production. This improves the quality stability of the final processed product, reduces manpower requirements, and saves labor costs. Therefore, compared to traditional technologies, it offers advantages such as high production efficiency, high product yield, and low production costs.
[0058] In some of these embodiments, such as Figure 1 As shown, the bonding and slitting integrated machine 100 also includes a control device 150 and a frame 160. The centering alignment cutting mechanism 110, the product tensioning assembly 120, the adhesive application module 130, and the control device 150 are respectively disposed on the frame 160. The control device 150 is connected to the centering alignment cutting mechanism 110, the product tensioning assembly 120, and the adhesive application module 130, respectively. The control device 150 is used to control the operation of the centering alignment cutting mechanism 110, the product tensioning assembly 120, and the adhesive application module 130. As an example, the control device 150 includes a microcontroller, a touch screen, and an industrial computer, etc. Those skilled in the art will understand that the control device 150 and its specific control method can be directly purchased externally or implemented using existing control schemes. The relevant embodiments of this application are for use only and do not involve program development. This structural design is beneficial for the overall transportation, protection and application of the bonding and slitting machine 100, and also facilitates the control of the centering and alignment cutting mechanism 110, the product tensioning assembly 120 and the adhesive module 130 of the bonding and slitting machine 100.
[0059] In various embodiments, the centering alignment cutting mechanism 110 is used to approach the product tensioning assembly 120 to cut the product 200 to be cut, and to move away from the product tensioning assembly 120 after cutting. In some embodiments, the centering alignment cutting mechanism 110 includes a translation module and a cutting module; the translation module is used to approach and move away from the product tensioning assembly 120; the cutting module is disposed on the translation module and is used to cut the product 200 to be cut while approaching the product tensioning assembly 120. With this structural design, when cutting is required, the centering alignment cutting mechanism 110 or its cutting module approaches the product tensioning assembly 120 until it reaches a position where cutting is possible, and then cuts the product 200 to be cut; and after cutting is completed, the centering alignment cutting mechanism 110 or its cutting module will also move away to avoid blocking the handling of the cut product, and also to facilitate the adjustment of the position of the product 200 to be cut.
[0060] In some of these embodiments, such as Figure 5 and Figure 6 As shown, the translation module includes a left cutter translation adjustment module 111 and a right cutter translation adjustment module 113, and the cutting module includes a left cutter up-and-down adjustment module 112 and a right cutter up-and-down adjustment module 114; the left cutter up-and-down adjustment module 112 is disposed on the left cutter translation adjustment module 111, and the left cutter translation adjustment module 111 is used to adjust the translation of the left cutter up-and-down adjustment module 112, and the left cutter up-and-down adjustment module 112 is used to move up and down to cut the product 200 to be cut; combined with Figure 7 and Figure 8 The right cutter up / down adjustment module 114 is mounted on the right cutter translation adjustment module 113. The right cutter translation adjustment module 113 is used to adjust the translation of the right cutter up / down adjustment module 114. The right cutter up / down adjustment module 114 is used to move up and down to cut the product 200 to be cut. Both the left cutter up / down adjustment module 112 and the right cutter up / down adjustment module 114 are equipped with a blade impact buffer cylinder 115 and a cutting blade base 116. The blade impact buffer cylinder 115 is used to prevent impact when the left cutter up / down adjustment module 112 or the right cutter up / down adjustment module 114 is moving up and down. The cutting blade base 116 is used to mount the cutting blades of the left cutter up / down adjustment module 112 or the right cutter up / down adjustment module 114. It is understood that in each embodiment, left / right, up / down, and front / back are relative positional relationships used to indicate different directions of movement, rather than as strict positional or movement limitations. This structural design allows for independent cutting from both the left and right sides without interference, further improving production efficiency compared to single-sided cutting.
[0061] To ensure the best possible cutting effect for the product 200 to be slit, in some embodiments, such as... Figure 9 and Figure 10 As shown, the product tensioning assembly 120 includes a motor 121, a power rotation shaft 122, and a tensioning up-and-down moving module 123; combined with Figure 11 and Figure 12 The motor 121 and the power rotation shaft 122 are respectively mounted on the tensioning up-and-down moving module 123. The tensioning up-and-down moving module 123 is used to adjust the position of the power rotation shaft 122. The motor 121 drives and connects to the power rotation shaft 122, and is used to tension the product 200 to be cut via the power rotation shaft 122. As an example, the motor 121 also drives and connects to the tensioning up-and-down moving module 123, and is used to adjust the position of the tensioning up-and-down moving module 123 so as to tension the product 200 to be cut via the power rotation shaft 122. This structural design, on the one hand, adjusts the position of the power rotation shaft 122 appropriately by tightening the up-and-down moving module 123 to roughly tighten the product to be cut 200; then, the power rotation shaft 122 is driven to rotate by the motor 121, thereby further tightening the product to be cut 200. Therefore, it can ensure that the product to be cut 200 is in a macroscopically tightened state when it is cut by the centering and alignment cutting mechanism 110, thereby ensuring the accurate cutting effect of the product to be cut 200 as much as possible.
[0062] To improve the accuracy of adhesive application, in some embodiments, such as Figure 13 and Figure 14As shown, the adhesive application module 130 includes a torque motor 131, left and right adhesive film assemblies, a left and right adhesive application moving structure adjustment distance module 134, an adhesive tape mounting shaft 136, an adhesive tape locking cylinder 137, and a blade cutting cylinder 138. The adhesive tape mounting shaft 136 and the left and right adhesive film assemblies are used to jointly install the adhesive tape. The adhesive tape locking cylinder 137 is used to tighten the adhesive tape between the adhesive tape mounting shaft 136 and the left and right adhesive film assemblies. The torque motor 131 drives the left and right adhesive film assemblies... The adhesive film assembly is used to move the left and right adhesive film assemblies along the left and right adhesive moving structure adjustment distance module 134 so that the tape is aligned with the product to be cut 200; the left and right adhesive moving structure adjustment distance module 134 is used to adjust the distance between the tape and the product to be cut 200 so that the tape is applied to the product to be cut 200; the blade cutting cylinder 138 is used to cut the tape and move it away from the product tensioning assembly 120 when the tape is applied. This structural design uses a tape-locking cylinder 137 in conjunction with a tape mounting shaft 136 and left and right adhesive film assemblies to lock the tape. A torque motor 131 adjusts the position of the left and right adhesive film assemblies, and a distance adjustment module 134 adjusts the distance between the tape and the product to be cut 200 through a left and right adhesive moving structure, thereby achieving tape application. Then, a blade-cutting cylinder 138 drives the cutting blade in the blade-cutting cylinder 138 to cut the tape. Finally, the blade-cutting cylinder 138 and its cutting blade are moved away from the product tensioning assembly 120, that is, away from the product to be cut 200, to make room and avoid obstructing the subsequent centering and alignment cutting mechanism 110 from cutting the tape-covered product to be cut 200.
[0063] In some embodiments, combined Figure 15 and Figure 16The adhesive application module 130 further includes an adhesive tape pressure roller shaft 139, which cooperates with the adhesive tape locking cylinder 137 to jointly tighten the adhesive tape between the adhesive tape mounting shaft 136 and the left and right adhesive film groups. In this embodiment, the left and right adhesive film groups include a left adhesive film group 132 and a right adhesive film group 133. There are two adhesive tape mounting shafts 136 and two torque motors 131. The left adhesive film group 132, together with one adhesive tape mounting shaft 136 and one torque motor 131, forms the first adhesive application structure. The right adhesive film group 133, together with another adhesive tape mounting shaft 136 and another torque motor 131, forms the second adhesive application structure. That is, the adhesive application module 130 includes two sets of film application devices. One set is a left adhesive application film group 132 equipped with an adhesive tape mounting shaft 136 and a torque motor 131, and the other set is a right adhesive application film group 133 equipped with another adhesive tape mounting shaft 136 and another torque motor 131. The two torque motors 131 respectively adjust the left adhesive application film group 132 and the right adhesive application film group 133 to move along the left and right adhesive application moving structure adjustment distance module 134 so that the adhesive tape is aligned with the product to be cut 200. The two adhesive tape mounting shafts 136 are used to realize the conveying and pasting of the two sets of adhesive tapes, which helps to improve the processing efficiency of the adhesive application and cutting machine 100.
[0064] In some of these embodiments, such as Figure 14 As shown, the left and right adhesive film groups are provided with tape limiting grooves 135. As an example, in this embodiment, the left adhesive film group 132 and the right adhesive film group 133 are respectively provided with tape limiting grooves 135 to limit the position of the tape on the left adhesive film group 132 or the right adhesive film group 133. Combined with... Figure 13 In some embodiments, the adhesive application module 130 further includes a first adhesive tape guide wheel 141 and a second adhesive tape guide wheel 142. The first adhesive tape guide wheel 141 and the second adhesive tape guide wheel 142 cooperate with the adhesive tape mounting shaft 136 and the left and right adhesive film assemblies to jointly install the adhesive tape. As an example, the first adhesive tape guide wheel 141 is adjacent to the adhesive tape locking cylinder 137, and the second adhesive tape guide wheel 142 is adjacent to the adhesive tape mounting shaft 136. This structural design, on the one hand, helps to limit the position of the adhesive tape, so that the adhesive tape can be accurately and automatically applied to the product 200 to be cut; on the other hand, it helps to cooperate with the left and right adhesive film assemblies, including the left adhesive film assembly 132 and the right adhesive film assembly 133, to further achieve the most accurate transmission of the adhesive tape through the first adhesive tape guide wheel 141 and the second adhesive tape guide wheel 142, thereby improving the accuracy of automatic adhesive tape application and also helping to improve the quality stability and yield of the processed products.
[0065] The following example illustrates the production process of the bonding and slitting machine 100: First, the operator manually adjusts the machine, i.e., the slitting position of the bonding and slitting machine 100; then, the roll of adhesive tape is installed; the operator places the product 200 to be slitted onto the tensioning shaft of the product tensioning assembly 120, i.e., the power rotation shaft 122, and presses the start button; the machine first applies the outer adhesive tape to the product, then cuts the tape, and the adhesive application module 130 moves back to make way; the centering and alignment cutting mechanism 110 cuts the product; then the operator manually removes the product, or it can be done in conjunction with other automated production equipment.
[0066] With this structural and process design, the machine can apply the PET tape to the transfer belt in one go and directly cut the product. It also realizes the PET tape conveying method and the tensioning of the transfer belt is controlled by servo torque. The automated method of cutting the PET tape improves production efficiency, meets the quality requirements of high adhesion, and can apply the product in one go, thus improving production efficiency.
[0067] It should be noted that other embodiments of this application also include an implementable bonding and slitting machine formed by combining the technical features of the above embodiments.
[0068] 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.
[0069] 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. A laminating and slitting all-in-one machine (100), characterized in that, The centering and positioning cutting mechanism (110), the product tensioning assembly (120) and the adhesive tape applying module (130) are included. The product tensioning assembly (120) is used for tensioning the product to be slit (200). The adhesive tape applying module (130) is used for being close to the product tensioning assembly (120) to apply adhesive tape on the product to be slit (200), and in the state that the adhesive tape is applied, the adhesive tape is cut off and away from the product tensioning assembly (120). The centering and positioning cutting mechanism (110) is used for being close to the product tensioning assembly (120) to cut the product to be slit (200), and in the state that the cutting is completed, away from the product tensioning assembly (120).
2. The laminating and slitting all-in-one machine (100) according to claim 1, characterized in that, The product tensioning assembly (120) includes a motor (121), a power rotating shaft (122) and a tensioning up-and-down moving module (123). The motor (121) and the power rotating shaft (122) are respectively arranged on the tensioning up-and-down moving module (123), and the tensioning up-and-down moving module (123) is used for adjusting the position of the power rotating shaft (122). The motor (121) is drivingly connected with the power rotating shaft (122), and is used for tensioning the product to be slit (200) through the power rotating shaft (122).
3. The apparatus according to claim 1, wherein the apparatus (100) is characterized by: The adhesive tape applying module (130) includes a torsion motor (131), left and right adhesive tape applying film groups, a left and right adhesive tape applying moving structure distance adjusting module (134), an adhesive tape mounting shaft (136), an adhesive tape locking cylinder (137) and a blade cutting cylinder (138). The adhesive tape mounting shaft (136) and the left and right adhesive tape applying film groups are used for jointly mounting the adhesive tape, and the adhesive tape locking cylinder (137) is used for tensioning the adhesive tape between the adhesive tape mounting shaft (136) and the left and right adhesive tape applying film groups. The torsion motor (131) is drivingly connected with the left and right adhesive tape applying film groups, and is used for driving the left and right adhesive tape applying film groups to move along the left and right adhesive tape applying moving structure distance adjusting module (134) to align the adhesive tape with the product to be slit (200). The left and right adhesive tape applying moving structure distance adjusting module (134) is used for adjusting the distance between the adhesive tape and the product to be slit (200) to apply the adhesive tape on the product to be slit (200). The blade cutting cylinder (138) is used for cutting off the adhesive tape and away from the product tensioning assembly (120) in the state that the adhesive tape is applied.
4. The apparatus according to claim 3, wherein the apparatus (100) is characterized in that, The adhesive tape applying module (130) further includes an adhesive tape pressing wheel shaft (139) which cooperates with the adhesive tape locking cylinder (137) to jointly tension the adhesive tape between the adhesive tape mounting shaft (136) and the left and right adhesive tape applying film groups.
5. The apparatus according to claim 3, wherein the apparatus (100) is characterized by: The left and right adhesive film groups comprise a left adhesive film group (132) and a right adhesive film group (133), the number of the adhesive tape mounting shafts (136) and the torsion motors (131) is two, the left adhesive film group (132) and one adhesive tape mounting shaft (136) and one torsion motor (131) form a first adhesive group, and the right adhesive film group (133) and another adhesive tape mounting shaft (136) and another torsion motor (131) form a second adhesive group.
6. The laminating and slitting all-in-one machine (100) according to claim 5, characterized in that, The left adhesive film group (132) and the right adhesive film group (133) are respectively provided with adhesive tape limiting grooves (135) to limit the position of the adhesive tape on the left adhesive film group (132) or the right adhesive film group (133).
7. The apparatus according to claim 3, wherein the apparatus (100) is characterized by: The adhesive film module (130) further comprises a first adhesive tape guide wheel (141) and a second adhesive tape guide wheel (142), the first adhesive tape guide wheel (141) and the second adhesive tape guide wheel (142) cooperate with the adhesive tape mounting shaft (136) and the left and right adhesive film groups to jointly mount the adhesive tape.
8. The apparatus (100) according to claim 1, characterized in that, The centering and aligning cutting mechanism (110) comprises a translation module and a cutting module; The translation module is used for approaching or moving away from the product tensioning assembly (120); The cutting module is arranged on the translation module and is used for cutting the product to be slit (200) in the state of approaching the product tensioning assembly (120).
9. The apparatus according to claim 8, wherein the apparatus (100) is characterized in that, The translation module comprises an adjusting left cutter translation module (111) and an adjusting right cutter translation module (113), and the cutting module comprises an adjusting left cutter up-down module (112) and an adjusting right cutter up-down module (114); The adjusting left cutter up-down module (112) is arranged on the adjusting left cutter translation module (111), the adjusting left cutter translation module (111) is used for adjusting the translation of the adjusting left cutter up-down module (112), and the adjusting left cutter up-down module (112) is used for moving up and down to cut the product to be slit (200); The adjusting right cutter up-down module (114) is arranged on the adjusting right cutter translation module (113), the adjusting right cutter translation module (113) is used for adjusting the translation of the adjusting right cutter up-down module (114), and the adjusting right cutter up-down module (114) is used for moving up and down to cut the product to be slit (200); The adjusting left cutter up-down module (112) and the adjusting right cutter up-down module (114) are both provided with a cutter impact buffering cylinder (115) and a cutting knife base (116), the cutter impact buffering cylinder (115) is used for avoiding impact in the state of moving up and down of the adjusting left cutter up-down module (112) or the adjusting right cutter up-down module (114), and the cutting knife base (116) is used for mounting the cutting knife of the adjusting left cutter up-down module (112) or the adjusting right cutter up-down module (114).
10. The combined sticking and slitting machine (100) according to any one of claims 1 to 9, characterized in that, The attaching and slitting integrated machine (100) further comprises a control device (150) and a rack (160), the centering, aligning and cutting mechanism (110), the product tightening assembly (120), the rubber attaching module (130) and the control device (150) are arranged on the rack (160) respectively, and the control device (150) is connected with the centering, aligning and cutting mechanism (110), the product tightening assembly (120) and the rubber attaching module (130) respectively.