Synchronous lifting structure of rubber roller and die cutting module for die cutting machine
By designing a synchronous lifting structure for the rubber roller used in the die-cutting machine and the die-cutting module, the problem of load bearing when adjusting the height of the existing die-cutting machine is solved, and safer and more reliable material transportation and more flexible adjustment are achieved.
Patent Information
- Application Number
- CN202421789848.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-26
AI Technical Summary
When adjusting the height of the existing die-cutter, the main body part is lifted together, resulting in a large load bearing and high power requirements, and a lack of a product that is safe, reliable and convenient to convey qualified materials.
A synchronous lifting structure between the rubber roller and the die-cutting module is designed. By setting up a die-cutting component, a rubber roller assembly and a feeding component, the linkage assembly between the die-cutting component and the rubber roller assembly is realized to reduce the overall load-bearing pressure.
This structure reduces lifting weight, optimizes the die-cut conveying layout, is easy to adjust and use, and is practical and economical.
Smart Images

Figure CN222831968U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a die-cutting machine, in particular to a synchronous lifting structure of a rubber roller and a die-cutting module used in the die-cutting machine. Background Art
[0002] Die-cutting machine is also called die-cutting machine, cutting machine, CNC punching machine, mainly used for die-cutting (full cutting, half cutting), creasing and hot stamping, laminating, automatic waste discharge of some corresponding non-metallic materials, self-adhesive, EVA, double-sided adhesive, electronics, mobile phone rubber pads, etc. Die-cutting machine uses steel knife, hardware mold, steel wire (or template carved from steel plate), and applies a certain pressure through the embossing plate to roll and cut the printed product or cardboard into a certain shape. It is an important equipment for post-printing packaging processing and molding. When adjusting the height, the existing products often lift the main part together, which has a large load-bearing capacity and high power requirements. There is a lack of a product that is safe and reliable to use and convenient for conveying qualified materials. Utility Model Content
[0003] In view of the deficiencies of the existing technology, the utility model provides a synchronous lifting structure of a rubber roller and a die-cutting module for a die-cutting machine.
[0004] In order to achieve the above-mentioned purpose, the technical solution adopted by the utility model is: a synchronous lifting structure of a rubber roller and a die-cutting module for a die-cutting machine, comprising a die-cutting component, a rubber roller component and a feeding component arranged in sequence, the die-cutting component and the rubber roller component are assembled and lifted in linkage, a support component for installing the rubber roller component is provided on the side of the die-cutting component, a positioning component is provided under the feeding component, the support component comprises a connecting plate, a horizontal plate and a vertical plate fixedly connected to the die-cutting component, the vertical plate is in a triangular shape, the vertical plate and the connecting plate are both arranged under the horizontal plate, the rubber roller assembly comprises a stand, a fixed roller and a movable roller, the stand comprises a movable groove arranged at the top and a fixed hole arranged at the bottom, the fixed roller is fixedly assembled at the fixed hole, and the movable groove is provided with a notch for the movable roller to be placed in the top of the stand.
[0005] The feeding assembly includes a base frame, a base foot, a cross bar, a slide rail, a slide seat, a positioning rod, a positioning seat and a pressure seat. The base frames are arranged in pairs and in parallel. The slide seat, slide rail, cross bar, base foot and base frame are fixedly connected in sequence. The two ends of the positioning rod are respectively connected to the slide seat. The positioning seat and the positioning rod, and the slide seat and the slide rail are limited and slidably matched.
[0006] The feeding assembly also includes a column and a limit plate. The column is fixedly connected to the cross bar. The limit plate is arranged above the column, and the limit plate is in abutment contact with the column.
[0007] The limiting plate has curved limiting parts at two opposite ends, and the limiting parts are radially blocked and limited with the pillars.
[0008] The positioning seat and the pressure seat are fixedly connected by fasteners. The pressure seat is a T-shaped structure and is provided with a strip groove for installing the fasteners.
[0009] The feeding assembly also includes a motor, a worm wheel, a worm and a linkage seat which are sequentially assembled in linkage, and the linkage seat is fixedly connected to the slide seat.
[0010] The base is provided with a lifting member for adjusting height and being threadedly connected.
[0011] Beneficial effects of the utility model: the synchronous lifting structure of the rubber roller and the die-cutting module for the die-cutting machine provided by the utility model reduces the lifting weight, optimizes the die-cutting and conveying layout, avoids the overall bearing pressure brought by the traditional structure, is convenient for adjustment and use, and is practical and economical. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a front view and a three-dimensional structural schematic diagram of the utility model;
[0013] Figure 2 It is a schematic diagram of a partially enlarged front view of the utility model;
[0014] Figure 3 It is a schematic diagram of the front two-half three-dimensional structure of the utility model;
[0015] Figure 4 It is a schematic diagram of the second partial enlarged structure of the front view of the utility model;
[0016] Figure 5 It is a schematic diagram of the semi-stereoscopic structure of the utility model when viewed from above. DETAILED DESCRIPTION
[0017] like Figure 1-Figure 5 As shown, a synchronous lifting structure of a rubber roller and a die-cutting module for a die-cutting machine includes a die-cutting assembly 1, a rubber roller assembly 2 and a feeding assembly 3 arranged in sequence. The die-cutting assembly 1 and the rubber roller assembly 2 are assembled and lifted in linkage. A support assembly 4 for installing the rubber roller assembly 2 is provided on the side of the die-cutting assembly 1, and a positioning assembly 5 is provided below the feeding assembly 3. The rubber roller assembly 2 is externally mounted and assembled in linkage through the support assembly 4, and lifted together when adjustment is required. The positioning assembly 5 is also adjusted according to the needs, and can also assist in the transportation of materials.
[0018] The support assembly 4 includes a connecting plate 6, a horizontal plate 7 and a vertical plate 8 which are fixedly connected to the die-cutting assembly 1. The vertical plate 8 is in a triangular shape. The vertical plate 8 and the connecting plate 6 are both arranged below the horizontal plate 7. The rubber roller assembly 2 includes a vertical frame 9, a fixed roller 10 and a movable roller 11. The vertical frame 9 includes a movable groove 12 arranged at the top and a fixed hole 13 arranged at the bottom. The fixed roller 10 is fixedly assembled at the fixed hole 13. The movable groove 12 is provided with a notch at the top of the vertical frame 9 for the movable roller 11 to be placed. The vertical plate 8 plays the role of a triangular support, and the connecting plate 6 and the horizontal plate 7 strengthen the connection and fixation in the horizontal and vertical directions. Here, the rubber roller assembly 2 uses a more flexible assembly method for easy disassembly and assembly, that is, the movable roller 11 is pressed down by its own gravity and can be directly taken out from the notch above as needed.
[0019] The feeding assembly 3 includes a base frame 14, a foot 15, a crossbar 16, a slide rail 17, a slide seat 18, a positioning rod 19, a positioning seat 20 and a pressing seat 21. The base frame 14 is arranged in pairs and in parallel. The slide seat 18, the slide rail 17, the crossbar 16, the base frame 15 and the base frame 14 are fixedly connected in sequence. The two ends of the positioning rod 19 are respectively connected to the slide seat 18. The positioning seat 20 and the positioning rod 19, and the slide seat 18 and the slide rail 17 are limited and slidably matched. The base frame 14 has a basic height. The base 15 can adjust the height in this embodiment, and the cooperation of the crossbar 16, the slide rail 17 and the slide seat 18 can adjust the horizontal position. The positioning rod 19 and the positioning seat 20 and the pressing seat 21 can also adjust the horizontal position. The slide seat 18 and the positioning seat 20 can move horizontally and vertically on the horizontal plane, and the pressing seat 21 can press down and position the material.
[0020] The feeding assembly 3 also includes a column 22 and a limit plate 23. The column 22 is fixedly connected to the cross bar 16. The limit plate 23 is arranged above the column 22, and the limit plate 23 is in contact with the column 22. The material is directly supported by the limit plate 23, and the support height can be adjusted by the column 22. The multiple adjustments are convenient to use and will not produce a large load-bearing weight. The limit plate 23 has a curved limit portion 24 at the opposite ends, and the limit portion 24 and the column 22 are radially blocked and limited. The limit portion 24 plays a limiting role. Generally, the column 22 is arranged at the four corners for positioning. The positioning seat 20 is fixedly connected to the pressure seat 21 by fasteners. The pressure seat 21 is a T-shaped structure, and a strip groove for fastener installation is provided on the pressure seat 21. The pressure seat 21 is inverted to press the material, and then fastened by a screw.
[0021] The feeding assembly 3 also includes a motor, a worm gear, a worm 27 and a linkage seat 28 which are sequentially assembled in linkage, and the linkage seat 28 is fixedly connected to the slide 18. The cooperation of the worm gear 27 is a mature technical means, and the conversion of the transmission direction drives the slide 18 to move. The base 15 is provided with a height-adjusting and threaded lifting member, which is one embodiment, convenient for adjustment, and will not be elaborated and limited here.
[0022] In the description of the present invention, it should be noted that the terms "center", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as limitations on the present invention. At the same time, the basic principles, main features and advantages of the present invention are shown and described above, which should be understood by technicians in this industry.
Claims
1. A synchronous lifting structure of a rubber roller and a die-cutting module for a die-cutting machine, comprising a die-cutting assembly, a rubber roller assembly and a feeding assembly arranged in sequence, characterized in that: The die-cutting assembly and the rubber roller assembly are assembled and lifted in linkage. A support assembly for installing the rubber roller assembly is provided on the side of the die-cutting assembly. A positioning assembly is provided below the feeding assembly. The support assembly includes a connecting plate, a horizontal plate and a vertical plate that are fixedly connected to the die-cutting assembly. The vertical plate is triangular in shape. The vertical plate and the connecting plate are both arranged below the horizontal plate. The rubber roller assembly includes a stand, a fixed roller and a movable roller. The stand includes a movable groove provided on the top and a fixed hole provided on the bottom. The fixed roller is fixedly assembled at the fixed hole. The movable groove is provided with a notch for the movable roller to be placed in the top of the stand.
2. A synchronous lifting structure of a rubber roller and a die-cutting module for a die-cutting machine as claimed in claim 1, characterized in that: The feeding assembly includes a base frame, a base foot, a cross bar, a slide rail, a slide seat, a positioning rod, a positioning seat and a pressure seat. The base frames are arranged in pairs and in parallel. The slide seat, slide rail, cross bar, base foot and base frame are fixedly connected in sequence. The two ends of the positioning rod are respectively connected to the slide seat. The positioning seat and the positioning rod, and the slide seat and the slide rail are limited and slidably matched.
3. The synchronous lifting structure of the rubber roller and the die-cutting module for a die-cutting machine as claimed in claim 2, characterized in that: The feeding assembly also includes a column and a limit plate. The column is fixedly connected to the cross bar. The limit plate is arranged above the column, and the limit plate is in abutment contact with the column.
4. The synchronous lifting structure of the rubber roller and the die-cutting module for a die-cutting machine as claimed in claim 3, characterized in that: The limiting plate has curved limiting parts at two opposite ends, and the limiting parts are radially blocked and limited with the pillars.
5. The synchronous lifting structure of the rubber roller and the die-cutting module for a die-cutting machine as claimed in claim 2, characterized in that: The positioning seat and the pressure seat are fixedly connected by fasteners. The pressure seat is a T-shaped structure and is provided with a strip groove for installing the fasteners.
6. The synchronous lifting structure of the rubber roller and the die-cutting module for a die-cutting machine as claimed in claim 2, characterized in that: The feeding assembly also includes a motor, a worm wheel, a worm and a linkage seat which are sequentially assembled in linkage, and the linkage seat is fixedly connected to the slide seat.
7. The synchronous lifting structure of the rubber roller and the die-cutting module for a die-cutting machine as claimed in claim 2, characterized in that: The base is provided with a lifting member for adjusting height and being threadedly connected.