A driving device for installing a blade assembly for a laser knife mold

CN224601547UActive Publication Date: 2026-08-07XINDONGTAI (XIAMEN) LASER KNIFE MOULD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XINDONGTAI (XIAMEN) LASER KNIFE MOULD CO LTD
Filing Date
2025-09-16
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0002]激光刀模的刀片组件在安装至刀模基板的过程中,随着嵌入部分的增加,其摩擦所导致的阻力也随之增加,导致刀片组件的装配难度较大,为了完成对刀片组件的安装,很多时候往往只能通过手持器械敲击刀片组件的方式以对刀片组件进行嵌装

Benefits of technology

1)刀片组件的装配过程中,首先将刀模基板固定于本实用新型的工作台上,然后,本实用新型的升降驱动机构驱动衔接板、卡接板整体延伸至刀模基板的刀片安装槽上部,再手动将刀片组件固定到位,使固接于刀片组件上的牵拉板的卡接部分别插接于同一组卡接板之间,再通过卡接板限位组件对同一组卡接板进行固定;最后超声换能器启动振动,并通过升降驱动机构驱动衔接板下行,即可使刀片组件在高频振动状态下顺利插接进入刀模基板的刀片安装槽内。从而有效对激光刀模的刀片组件进行快速安装,且能够有效确保刀片组件在装配过程中不会出现刃口受损的情况。

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Abstract

The utility model relates to a kind of driving device for the blade assembly installation of laser cutter mould, comprising: several pull plates, are fixed to the bottom of blade assembly according to interval, the two sides of the pull plate are respectively provided with corresponding clamping portion outside convex;Blade pulling mechanism includes workbench, the workbench can be lifted and is provided with several groups of corresponding clamping plate of the pull plate, the protruding portion that the clamping plate is respectively provided with clamping to the clamping portion on the pull plate, and the clamping plate is connected to the output shaft end of corresponding lifting drive mechanism by corresponding link plate;Ultrasonic transducer, fixedly installed on the link plate;Clamping plate limiting assembly, after the same group of clamping plate clamping to the clamping portion of corresponding pull plate, the clamping plate limiting assembly is fixed to the same group of clamping plate.The utility model can quickly install the blade assembly of laser cutter mould, and can effectively ensure that blade assembly does not appear the situation that cutting edge is damaged in assembly process.
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Description

Technical Field

[0001] This utility model relates to the field of blade assembly installation technology for laser die-cutting molds, specifically to a driving device for installing blade assemblies for laser die-cutting molds, which is mainly used to fix and embed the blade assembly onto the corresponding die-cutting mold substrate. Background Technology

[0002] During the installation of laser die-cutting blade assemblies onto the die substrate, the frictional resistance increases with the amount of embedded material, making assembly more difficult. Often, the only way to install the blade assemblies is by tapping them with hand tools. Improper tapping can damage the cutting edge of the blade, and in severe cases, render the entire blade assembly unusable, causing significant problems. Furthermore, manual assembly of laser die-cutting blade assemblies is inefficient.

[0003] Therefore, the research objective of this utility model is to design a drive device for installing laser die-cutting blade components that can quickly install the blade components and effectively ensure that the blade components will not be damaged during the assembly process. Summary of the Invention

[0004] In view of the technical problems existing in the prior art, the present invention provides a driving device for mounting blade assembly for laser die-cutting, which can effectively solve the technical problems existing in the prior art.

[0005] The technical solution of this utility model is: A driving device for mounting a blade assembly for laser die-cutting includes: Several tension plates are fixed at intervals to the bottom of the blade assembly of the laser die-cutting mold, and corresponding snap-fit ​​parts are respectively provided on both sides of the tension plates. The blade pulling mechanism includes a worktable for supporting the die substrate of the laser die-cutting mold. Several sets of snap-fit ​​plates corresponding to the pulling plate are vertically and elliptically arranged on the worktable. Each snap-fit ​​plate is provided with a protrusion that snaps onto the snap-fit ​​portion of the pulling plate, and the snap-fit ​​plate is connected to the output shaft end of the corresponding lifting drive mechanism through a corresponding connecting plate. At least one ultrasonic transducer is fixedly mounted on the connecting plate, and the ultrasonic transducer is connected to an external ultrasonic generator. The snap-fit ​​plate limiting assembly fixes the same set of snap-fit ​​plates after they are snapped onto the snap-fit ​​part of the corresponding tension plate. The protrusions of the snap-fit ​​plates are respectively fixedly fastened to the snap-fit ​​parts of the corresponding tension plates.

[0006] The bottom of the snap-fit ​​plate is fixedly welded with corresponding connecting plates arranged in a cross shape. The connecting plates are made of spring steel plates, and the bottom of the connecting plates are fixed to the connecting plate.

[0007] The snap-fit ​​plate and the connecting plate are respectively provided with corresponding connecting slots on opposite sides. The snap-fit ​​plate and the connecting plate are connected into a whole through the connecting slots, and the connection between the snap-fit ​​plate and the connecting plate is fixed by corresponding welds.

[0008] The snap-fit ​​plate limiting assembly includes an integrally formed limiting plate connected to the opposite side of the same set of snap-fit ​​plates. The limiting plates of the same set of snap-fit ​​plates are respectively detachably installed with corresponding fixing plates. After the protrusion of the snap-fit ​​plate is snapped into the snap-fit ​​part of the pull plate, the fixing plate is fixedly connected between the corresponding limiting plates to form a fixed limit on the limiting plate.

[0009] The limiting plate is provided with a number of corresponding guide holes in the horizontal direction, and the fixing plate is provided with corresponding pins. After the fixing plate is fixedly abutted against the limiting plate, the pins are fixedly inserted into the guide holes of the limiting plate.

[0010] The upper surface of the worktable is provided with limiting components for fixing the die substrate of the laser die.

[0011] The limiting component includes an abutment cylinder fixedly installed on the upper surface of the workbench, with the piston rod end of the abutment cylinder facing inward and fixedly connected to a corresponding rubber block.

[0012] The workbench is supported and installed by corresponding legs, and the workbench is provided with a through hole at a position corresponding to the snap-fit ​​plate for the snap-fit ​​plate to pass through.

[0013] The lifting drive mechanism uses a hydraulic cylinder.

[0014] Compared with the prior art, the advantages and positive effects of this utility model are as follows: 1) During the assembly of the blade assembly, the die-cutting base plate is first fixed on the worktable of this invention. Then, the lifting drive mechanism of this invention drives the connecting plate and the snap-fit ​​plate to extend to the upper part of the blade mounting groove of the die-cutting base plate. The blade assembly is then manually fixed in place, so that the snap-fit ​​parts of the pull plate fixed to the blade assembly are respectively inserted between the same set of snap-fit ​​plates. The snap-fit ​​plate limiting components then fix the same set of snap-fit ​​plates. Finally, the ultrasonic transducer starts vibration, and the lifting drive mechanism drives the connecting plate downward, allowing the blade assembly to be smoothly inserted into the blade mounting groove of the die-cutting base plate under high-frequency vibration. This effectively and quickly installs the blade assembly of the laser die-cutting mold and effectively ensures that the blade assembly will not be damaged during the assembly process.

[0015] 2) The bottom of the snap-fit ​​plate of this utility model is cross-shaped and welded with corresponding connecting plates. The connecting plates are made of spring steel plates, and the bottom of the connecting plates are fixed to the connecting plates. The snap-fit ​​plates are connected and installed by the connecting plates made of spring steel plates to form a stable swing connection at the bottom of the snap-fit ​​plates. When the snap-fit ​​part of the pull plate is inserted into the protrusion of the corresponding snap-fit ​​plate, the snap-fit ​​plate is pushed outward and tilted, while the connecting plates made of spring steel plates are adapted to form a certain arc bend, so as to facilitate the smooth snap-fit ​​of the snap-fit ​​part of the pull plate. After the snap-fit ​​part of the pull plate is snapped in place, the snap-fit ​​plate limiting component is installed in place to form a fixed limit on the corresponding snap-fit ​​plate, which can ensure the limiting stability of the snap-fit ​​plate when the blade assembly is pulled down by high-frequency vibration, thereby effectively ensuring the practical effect of this utility model.

[0016] 3) The snap-fit ​​plate and the connecting plate of this utility model are respectively provided with corresponding connecting slots on opposite sides. The snap-fit ​​plate and the connecting plate are connected into a whole through the connecting slots, and the connection between the snap-fit ​​plate and the connecting plate is fixed by corresponding welds. This can effectively ensure the connection stability of the snap-fit ​​plate and the connecting plate, so as to ensure the smooth progress of the high-frequency vibration pulling process. It can also ensure that the outward tilting of the snap-fit ​​plate and the adaptive bending of the connecting plate can be smoothly implemented, thereby further ensuring the practical effect of this utility model.

[0017] 4) The snap-fit ​​plate limiting assembly of this utility model includes an integrally formed limiting plate connected to opposite sides of the same group of snap-fit ​​plates. Corresponding fixing plates are detachably installed between the limiting plates of the same group of snap-fit ​​plates. After the fixing plates are fixedly connected to the corresponding limiting plates, they can fix and limit the limiting plates. When it is necessary to restrict the position of the snap-fit ​​plate, the fixing plate can be directly installed into place. When the snap-fit ​​part of the tension plate needs to be inserted downwards into the protrusions of the corresponding snap-fit ​​plate, or when the snap-fit ​​plate needs to be disengaged from the limiting connection of the tension plate, the fixing plate can be removed, allowing the snap-fit ​​plate to be in a free state, thereby effectively ensuring the practical effect of this utility model.

[0018] 5) The limiting plate of this utility model is provided with several corresponding guide holes in the horizontal direction, and the fixing plate is provided with matching pins. After the fixing plate is fixedly abutted against the limiting plate, the pins are fixedly inserted into the guide holes of the limiting plate, making the overall operation very convenient. Moreover, after the fixing plate is installed in place, it can form an adaptive swing between the corresponding limiting plates, thereby adapting to the transmission of ultrasonic vibration and increasing the amplitude to a certain extent, thereby enhancing the amount of ultrasonic vibration transmitted to the blade assembly and improving the insertion and connection efficiency of the blade assembly. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of this utility model.

[0020] Figure 2 This is a diagram showing the usage state of this utility model.

[0021] Figure 3 for Figure 2 The front view.

[0022] Figure 4 This is a schematic diagram of the structure in which the tension plate is fixed to the bottom of the blade assembly.

[0023] Figure 5 This is a schematic diagram of the snap-fit ​​plate limiting assembly.

[0024] Figure 6 This is a schematic diagram of the assembly of the limit component.

[0025] In the attached drawings: 1. Pulling plate, 101. Snap-fit ​​part, 2. Blade assembly, 3. Blade pulling mechanism, 301. Worktable, 302. Snap-fit ​​plate, 3021. Connecting plate, 303. Lifting drive mechanism, 304. Die mold base plate, 4. Ultrasonic transducer, 5. Snap-fit ​​plate limiting assembly, 6. Connecting plate, 7. Weld, 8. Pin, 9. Limiting assembly, 10. Abutment cylinder, 1001. Rubber block, 1002. Support leg, 11. Through hole, 12. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0027] refer to Figure 1-6 A driving device for mounting a blade assembly for laser die-cutting, comprising: Several tension plates 1 are fixed to the bottom of the blade assembly 2 of the laser die at intervals, and corresponding snap-fit ​​parts 101 are respectively provided on both sides of the tension plates 1. The blade pulling mechanism 3 includes a worktable 301 for supporting the die substrate 4 of the laser die. The worktable 301 is provided with a plurality of snap-fit ​​plates 302 corresponding to the pulling plate 1. The snap-fit ​​plates 302 are respectively provided with protrusions 3021 that snap onto the snap-fit ​​portion 101 of the pulling plate 1. The snap-fit ​​plates 302 are connected to the output shaft end of the corresponding lifting drive mechanism 304 through the corresponding connecting plate 303. Two ultrasonic transducers 5 are fixedly installed on the connecting plate 303, and the ultrasonic transducers 5 are connected to an external ultrasonic generator. After the snap-fit ​​plate limiting component 6 snaps the same set of snap-fit ​​plates 302 onto the snap-fit ​​part 101 of the corresponding pull plate 1, the snap-fit ​​plate limiting component 6 fixes the same set of snap-fit ​​plates 302, and the protrusions 3021 of the snap-fit ​​plates 302 are respectively fixedly fastened to the snap-fit ​​part 101 of the corresponding pull plate 1.

[0028] During the assembly of the blade assembly 2, the die-cutting base plate 4 is first fixed on the worktable 301 of this invention. Then, the lifting drive mechanism 304 of this invention drives the connecting plate 303 and the snap-fit ​​plate 302 to extend to the upper part of the blade mounting groove of the die-cutting base plate 4. The blade assembly 2 is then manually fixed in place, so that the snap-fit ​​parts 101 of the pull plate 1 fixed to the blade assembly 2 are respectively inserted between the same set of snap-fit ​​plates 302. The snap-fit ​​plate limiting component 6 then fixes the same set of snap-fit ​​plates 302. Finally, the ultrasonic transducer 5 starts vibrating and drives the connecting plate 303 downward through the lifting drive mechanism 304, so that the blade assembly 2 can be smoothly inserted into the blade mounting groove of the die-cutting base plate 1 under high-frequency vibration. This effectively and quickly installs the blade assembly 2 of the laser die-cutting mold and effectively ensures that the blade assembly 2 will not be damaged during the assembly process.

[0029] The bottom of the snap-fit ​​plate 302 is fixedly welded with corresponding connecting plates 7 in a cross-shaped distribution. The connecting plates 7 are made of spring steel plates, and the bottom of the connecting plates 7 are fixed to the connecting plate 303.

[0030] The connecting plate 7, made of spring steel plate, is used to connect and install the snap-fit ​​plate 302, so as to form a stable swing connection at the bottom of the snap-fit ​​plate 302. When the snap-fit ​​part 101 of the pull plate 1 is inserted into the corresponding snap-fit ​​plate 302, the snap-fit ​​plate 302 is pushed outward and tilted, while the connecting plate 7 made of spring steel plate adaptably forms a certain arc bend, so as to facilitate the smooth snap-fit ​​part 101 of the pull plate 1. After the snap-fit ​​part 101 of the pull plate 1 is snapped into place, the snap-fit ​​plate limiting component 6 is installed in place to form a fixed limit on the corresponding snap-fit ​​plate 302, which can ensure the limiting stability of the snap-fit ​​plate 302 when the blade assembly 2 is pulled down by high-frequency vibration, thereby effectively ensuring the practical effect of this utility model.

[0031] The snap-fit ​​plate 302 and the connecting plate 7 are respectively provided with corresponding connecting slots on opposite sides. The snap-fit ​​plate 302 and the connecting plate 7 are connected into a whole through the connecting slots, and the connection between the snap-fit ​​plate 302 and the connecting plate 7 is fixed by corresponding welds 8. This effectively ensures the connection stability of the snap-fit ​​plate 302 and the connecting plate 7, ensuring the smooth progress of the high-frequency vibration pulling process, and also ensures that the outward tilting of the snap-fit ​​plate 302 and the adaptive bending of the connecting plate 7 can be smoothly implemented, thereby further ensuring the practical effect of this utility model.

[0032] The snap-fit ​​plate limiting assembly 6 includes a limiting plate 601 integrally formed and connected to opposite sides of the same set of snap-fit ​​plates 302. The limiting plates 601 of the same set of snap-fit ​​plates 302 are respectively detachably installed with corresponding fixing plates 602. After the protrusion 3021 of the snap-fit ​​plate 302 is snapped into the snap-fit ​​part 101 of the pull plate 1, the fixing plate 602 is fixedly connected between the corresponding limiting plates 601 to form a fixed limit on the limiting plates 601.

[0033] When it is necessary to restrict the position of the snap-fit ​​plate 302, the fixing plate 602 of this utility model can be directly installed into place. When the snap-fit ​​part 101 of the pull plate 1 needs to be inserted into the protrusion 3021 of the corresponding snap-fit ​​plate 302, or when the snap-fit ​​plate 302 needs to be disengaged from the limiting docking of the pull plate 1, the fixing plate 602 can be removed to make the snap-fit ​​plate 302 free, thereby effectively ensuring the practical effect of this utility model.

[0034] The limiting plate 601 has several corresponding guide holes arranged horizontally, and the fixing plate 602 has corresponding pins 9. After the fixing plate 602 is fixedly abutted against the limiting plate 601, the pins 9 are fixedly inserted into the guide holes of the limiting plate 601.

[0035] After the fixing plate 602 of this utility model is fixedly abutted against the limiting plate 601, the pins 9 can be directly fixedly inserted into the guide holes of the limiting plate 601, making the overall operation very convenient. Moreover, after being installed in place, the fixing plate 602 can form an adaptive swing between the corresponding limiting plates 601, thereby adapting to the transmission of ultrasonic vibration and increasing the amplitude to a certain extent, thereby enhancing the amount of ultrasonic vibration transmitted to the blade assembly 2, and improving the insertion and connection efficiency of the blade assembly.

[0036] The upper surface of the worktable 301 is provided with limiting components 10 for fixing the die substrate 4 of the laser die. The limiting components 10 include abutting cylinders 1001 fixedly installed on the upper surface of the worktable 301. The piston rod end of the abutting cylinder 1001 is respectively arranged inward and fixedly connected with corresponding rubber blocks 1002.

[0037] The workbench 301 is supported and installed by corresponding legs 11, and the workbench 301 is provided with a through hole 12 for the clamping plate 302 to pass through at a position corresponding to the clamping plate 302. The lifting drive mechanism 304 is a drive cylinder.

[0038] The above are merely preferred embodiments of this utility model and are not intended to limit the utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of this utility model without departing from the technical solution of this utility model shall still fall within the protection scope of this utility model.

Claims

1. A driving device for mounting a blade assembly for laser die-cutting, characterized in that, include: Several tension plates (1) are fixed at intervals to the bottom of the blade assembly (2) of the laser die-cutting mold, and corresponding snap-fit ​​parts (101) are respectively provided on both sides of the tension plates (1). The blade pulling mechanism (3) includes a worktable (301) for supporting the die substrate (4) of the laser die. The worktable (301) is provided with several sets of snap-fit ​​plates (302) corresponding to the pulling plate (1). The snap-fit ​​plates (302) are provided with protrusions (3021) that snap onto the snap-fit ​​portion (101) of the pulling plate (1). The snap-fit ​​plates (302) are connected to the output shaft end of the corresponding lifting drive mechanism (304) through the corresponding connecting plate (303). At least one ultrasonic transducer (5) is fixedly installed on the connecting plate (303), and the ultrasonic transducer (5) is connected to an external ultrasonic generator; After the snap-fit ​​plate limiting assembly (6) snaps the same set of snap-fit ​​plates (302) onto the snap-fit ​​part (101) of the corresponding pull plate (1), the snap-fit ​​plate limiting assembly (6) fixes the same set of snap-fit ​​plates (302), and the protrusion (3021) of the snap-fit ​​plate (302) is fixedly fastened to the snap-fit ​​part (101) of the corresponding pull plate (1).

2. The driving device for mounting a blade assembly for laser die-cutting according to claim 1, characterized in that, The bottom of the snap-fit ​​plate (302) is fixedly welded with corresponding connecting plates (7) arranged in a cross shape. The connecting plates (7) are made of spring steel plates, and the bottom of the connecting plates (7) are fixed to the connecting plate (303).

3. The driving device for mounting a blade assembly for laser die-cutting according to claim 2, characterized in that, The snap-fit ​​plate (302) and the connecting plate (7) are respectively provided with corresponding connecting slots on opposite sides. The snap-fit ​​plate (302) and the connecting plate (7) are connected into a whole through the connecting slots, and the connection of the snap-fit ​​plate (302) and the connecting plate (7) is fixed by the corresponding weld (8).

4. The driving device for mounting a blade assembly for laser die-cutting according to claim 1, characterized in that, The snap-fit ​​plate limiting assembly (6) includes a limiting plate (601) integrally formed and connected to the opposite side of the same set of snap-fit ​​plates (302). The limiting plates (601) of the same set of snap-fit ​​plates (302) are respectively detachably installed with corresponding fixing plates (602). After the protrusion (3021) of the snap-fit ​​plate (302) is snapped into the snap-fit ​​part (101) of the pull plate (1), the fixing plate (602) is fixedly connected between the corresponding limiting plates (601) to form a fixed limit on the limiting plate (601).

5. The driving device for mounting a blade assembly for laser die-cutting according to claim 4, characterized in that, The limiting plate (601) is provided with several corresponding guide holes in the horizontal direction, and the fixing plate (602) is provided with corresponding pins (9). After the fixing plate (602) is fixedly abutted against the limiting plate (601), the pins (9) are fixedly inserted into the guide holes of the limiting plate (601).

6. The driving device for mounting a blade assembly for laser die-cutting according to claim 1, characterized in that, The upper surface of the worktable (301) is provided with limiting components (10) for fixing the die substrate (4) of the laser die.

7. The driving device for mounting a blade assembly for laser die-cutting according to claim 6, characterized in that, The limiting component (10) includes an abutment cylinder (1001) fixedly installed on the upper surface of the worktable (301). The piston rod end of the abutment cylinder (1001) is respectively arranged inward and fixedly connected with a corresponding rubber block (1002).

8. The driving device for mounting a blade assembly for laser die-cutting according to claim 1, characterized in that, The workbench (301) is supported and installed by corresponding legs (11), and the workbench (301) is provided with a through hole (12) for the passing of the snap-fit ​​plate (302) at a position corresponding to the snap-fit ​​plate (302).

9. A driving device for mounting a blade assembly for laser die-cutting according to claim 1, characterized in that, The lifting drive mechanism (304) adopts a drive cylinder.