High-precision beer machine for production of standing card

CN224738417UActive Publication Date: 2026-09-11DONGGUAN KONGTONG PRINTING TECH CO LTD
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Patent Information

Application Number
CN202521874453.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-01
Publication Date
2026-09-11
Estimated Expiration
2035-09-01

AI Technical Summary

Technical Problem

[0004]上述技术方案虽然能够通过在需要更换裁切刀时,取下固定销杆,将刀架以及模切刀通过固定滑槽滑出,将新的刀架滑入固定滑槽,再将固定销杆对刀架进行固定,使得模切刀进行快速拆卸处理,但是其说明书中并未说明固定销杆是活动插接还是螺接固定或者其他方式,如果是活动插接方式,则刀架的安装并不稳定,如果是螺接固定方式,那么每次更换刀架时,均需要手动拧松固定销杆,其操作较为麻烦,为此,我们提供一种立牌生产的高精度啤机来解决此问题

Benefits of technology

1、通过刀架上端的卡块卡入到卡槽中,通过压缩空气进入气筒并推动活塞杆的活塞下移,从而使得活塞杆下移并压缩第二弹簧,而活塞杆下端的锥型压块下移并向外推压斜板,随后斜板带动压板以及插柱进行位移,直至插柱穿过通孔插入到卡块外侧的第二插孔中,便于对卡块及其下端的刀架进行插接固定,方便对切刀组件进行快速的安装,便于提高安装效率;

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Abstract

The utility model discloses a high accuracy beer machine of standing card production, including support board, the upper end of support board is installed hydraulic cylinder, the output of hydraulic cylinder penetrates support board and is installed fixed plate, the below of fixed plate is provided with support mechanism, the upper end of support mechanism is installed fixed assembly, fixed assembly is fixed with fixed plate screw joint, support mechanism includes tool apron, the upper end of tool apron is provided with a group of through slot and four groups of clamping slot, the upper end of tool apron is installed with clamping assembly, the lower extreme of tool apron is provided with cutting knife subassembly, compared with prior art, the utility model discloses the structure design is reasonable, and the practicality is strong, the beer machine of the die cutting of standing card is convenient to the quick replacement of different shape cutting knife subassembly and disassembly, the die cutting of the required different shape standing card on blank is convenient, effectively improved the use effect.
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Description

Technical Field

[0001] This utility model relates to the field of standee die-cutting technology, specifically a high-precision die-cutting machine for standee production. Background Technology

[0002] Die-cutting machines, also known as die-cutting machines, are mainly used for die-cutting various non-metallic materials, self-adhesive labels, EVA, double-sided tape, acrylic standees, etc. Die-cutting machines use a template carved from a steel knife to apply a certain pressure through a printing plate to cut the printed material into a certain shape.

[0003] A search revealed a die-cutting mechanism and machine disclosed in patent publication number CN223130885U. The die-cutting mechanism includes a base plate, a support frame fixedly mounted on the top of the base plate, a top plate fixedly mounted on the top of the support frame, a drive motor fixedly mounted on one side of the support frame, a conveyor roller rotatably connected to the middle of the support frame, mounting grooves located on the front and rear sides of the conveyor roller fixedly mounted inside the support frame, limit grooves formed on both sides of the mounting grooves, fixing bolts slidably connected inside the limit grooves, one end of the fixing bolts threadedly connected to a material conveying groove located inside the mounting grooves, the output end of the drive motor being drively connected to one end of the conveyor roller, a lifting cylinder fixedly mounted on the top of the top plate, a lifting plate fixedly mounted inside the support frame on the movable end of the lifting cylinder, a fixing groove formed at the bottom of the lifting plate, a blade holder fixedly mounted at the bottom of the lifting plate via the fixing groove, a fixing pin abutting against the blade holder at one end of the lifting plate, and a die-cutting blade fixedly mounted above the conveyor roller at the bottom of the blade holder.

[0004] While the aforementioned technical solution allows for quick disassembly of the die-cutting blade by removing the fixing pin when the cutting blade needs to be replaced, sliding the blade holder and die-cutting blade out through the fixing groove, sliding the new blade holder into the fixing groove, and then fixing the blade holder with the fixing pin, the instruction manual does not specify whether the fixing pin is a movable plug-in, screw-in, or other method. If it is a movable plug-in method, the installation of the blade holder is not stable. If it is a screw-in method, the fixing pin needs to be manually loosened every time the blade holder is replaced, which is quite cumbersome. Therefore, we provide a high-precision die-cutting machine manufactured by Lipai to solve this problem. Utility Model Content

[0005] To overcome the shortcomings mentioned above, this utility model aims to provide a high-precision die-cutting machine for stand-up sign production that can solve the aforementioned problems.

[0006] To achieve the above objectives, this utility model provides the following technical solution: A high-precision die-cutting machine for stand-up sign production includes a support plate, a hydraulic cylinder is installed at the upper end of the support plate, the output end of the hydraulic cylinder passes through the support plate and is installed with a fixing plate, a support mechanism is provided below the fixing plate, and a fixing component is installed at the upper end of the support mechanism, the fixing component is screwed and fixed to the fixing plate. The support mechanism includes a blade holder, the upper end of which is provided with a set of through slots and four sets of retaining slots, the upper end of which is equipped with a retaining assembly, and the lower end of which is provided with a cutting assembly. The cutting assembly includes a blade holder, with four sets of locking blocks connected to the upper end of the blade holder. Each locking block is inserted into the inner cavity of a slot. The cutting body is installed at the lower end of the blade holder. Each locking block has a second insertion hole on its outer side. A through hole is provided between the slot and the through groove. The locking assembly passes through the through hole and is inserted into the second insertion hole.

[0007] As a further embodiment of this utility model: the lower end of the support plate is provided with an inner groove, the upper end of the fixing plate is symmetrically connected with positioning columns, and the upper end of the support plate is provided with positioning holes for insertion.

[0008] As a further embodiment of this utility model: the fixing component includes four sets of fixing posts installed on the upper end of the tool holder, the upper end of each fixing post is connected to a threaded post, each threaded post penetrates the fixing plate and is screwed with a nut, and each nut is located in the inner cavity of the inner groove.

[0009] As a further embodiment of this utility model: the snap-fit ​​assembly includes a mounting plate installed on the upper end of the knife holder, an air cylinder installed on the upper end of the mounting plate, an air inlet pipe installed on the upper end of the air cylinder, a solenoid valve installed on the outer side of the air inlet pipe, a piston rod movably arranged in the inner cavity of the air cylinder, a second spring symmetrically connected to the lower end of the piston rod, the lower end of the second spring installed at the bottom end of the inner cavity of the air cylinder, a conical pressure block connected to the lower end of the piston rod, four sets of pressure plates arranged in the inner cavity of the through groove, each pressure plate being connected to the inner cavity of the through groove through a third spring, an inclined plate integrally connected to the upper end of each pressure plate, and a post connected to one side of each pressure plate, each post passing through a through hole and being inserted into a second insertion hole.

[0010] As a further embodiment of this utility model: the lower end of each pressure plate is connected to a slider, and the bottom of the inner cavity of the through groove is provided with a sliding groove that slides in contact with it.

[0011] As a further embodiment of this utility model: an exhaust pipe is connected to the lower outer side of the intake pipe, and an electric exhaust valve is installed on the outer side of the exhaust pipe.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. The upper end of the blade holder is engaged with the slot. Compressed air enters the air cylinder and pushes the piston rod downward, which in turn moves the piston rod downward and compresses the second spring. The conical pressure block at the lower end of the piston rod moves downward and pushes the inclined plate outward. Then the inclined plate drives the pressure plate and the insert to move until the insert passes through the through hole and is inserted into the second insertion hole on the outside of the blade holder. This facilitates the insertion and fixing of the blade holder and the blade holder at the lower end, and makes it easy to quickly install the cutting blade assembly, thereby improving installation efficiency. 2. By disassembling and replacing the cutter body of different models, the solenoid valve is closed and the electric exhaust valve is opened to discharge compressed air. The second spring automatically rebounds and resets, driving the piston rod and the conical pressure block to move upward and reset. The third spring automatically rebounds and resets, driving the pressure plate and the insert post to reset. This facilitates the removal of the locking block and the replacement of the cutter assembly, effectively improving the efficiency of quick installation and disassembly of the cutter assembly and making it easy to use. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model; Figure 2 This is a partial cross-sectional, disassembled, three-dimensional structural schematic diagram of this utility model; Figure 3 This is a half-sectional view of the support mechanism and a three-dimensional structural diagram of the cutting blade assembly of this utility model; Figure 4 This is a cross-sectional view and a three-dimensional structural diagram of the snap-fit ​​component of this utility model; Figure 5 This is a top-view three-dimensional structural diagram of the tool holder of this utility model.

[0014] The reference numerals and names in the figure are as follows: Support plate-1, hydraulic cylinder-2, fixing plate-3, positioning post-4, fixing post-5, support mechanism-6, blade holder-61, snap-fit ​​assembly-62, mounting plate-621, air cylinder-622, air inlet pipe-623, solenoid valve-624, exhaust pipe-625, electric exhaust valve-626, piston rod-627, conical pressure block-628, second spring-629, third spring-6210, pressure plate-6211, inclined plate-6212, insert post-6213, slider-6214, slot-63, through slot-610, through hole-611, sliding groove-612, cutting blade assembly-7, blade holder-71, cutting blade body-74, snap-fit ​​block-75, second insert hole-76, threaded post-8, nut-9, inner groove-10. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0016] Please see Figure 1-5 A high-precision die-cutting machine for stand-up paddleboard production includes a support plate 1, a hydraulic cylinder 2 installed at the upper end of the support plate 1, the output end of the hydraulic cylinder 2 passing through the support plate 1 and being mounted on a fixing plate 3, an inner groove 10 provided at the lower end of the support plate 1, positioning columns 4 symmetrically connected at the upper end of the fixing plate 3, and positioning holes for interlocking with the upper end of the support plate 1.

[0017] When the fixed plate 3 is moved downward by the output end of the hydraulic cylinder 2, the positioning pin 4 at the upper end of the fixed plate 3 moves in a limited position in the positioning hole, which effectively improves the displacement stability of the fixed plate 3.

[0018] A support mechanism 6 is provided below the fixed plate 3. A fixing component is installed at the upper end of the support mechanism 6. The fixing component is screwed to the fixed plate 3. The fixing component includes four sets of fixing posts 5 installed at the upper end of the tool holder 61. The upper end of each fixing post 5 is connected to a threaded post 8. Each threaded post 8 penetrates the fixed plate 3 and is screwed with a nut 9. Each nut 9 is located in the inner cavity of the inner groove 10.

[0019] The fixing post 5 at the upper end of the tool holder 61 is screwed and fixed after passing through the fixing plate 3 via the threaded post 8, which facilitates the detachable installation of the tool holder 61 and makes it easy to disassemble and replace it.

[0020] The support mechanism 6 includes a tool holder 61. The upper end of the tool holder 61 is provided with a set of through slots 610 and four sets of retaining slots 63. A retaining assembly 62 is installed on the upper end of the tool holder 61. The retaining assembly 62 includes a mounting plate 621 installed on the upper end of the tool holder 61. An air cylinder 622 is installed on the upper end of the mounting plate 621. An air inlet pipe 623 is installed on the upper end of the air cylinder 622. A solenoid valve 624 is installed on the outside of the air inlet pipe 623. An exhaust pipe 625 is connected to the lower part of the outside of the air inlet pipe 623. An electric exhaust valve 626 is installed on the outside of the exhaust pipe 625. A piston rod 627 is movably arranged inside the air cylinder 622. Symmetrically connected to the lower end of the piston rod 627 are... The lower end of the second spring 629 is installed at the bottom of the inner cavity of the air cylinder 622. The lower end of the piston rod 627 is connected to the conical pressure block 628. The inner cavity of the through groove 610 is provided with four sets of pressure plates 6211. The pressure plates 6211 are all connected to the inner cavity of the through groove 610 through the third spring 6210. The upper end of each pressure plate 6211 is integrally connected with an inclined plate 6212. The lower end of each pressure plate 6211 is connected with a slider 6214. The bottom of the inner cavity of the through groove 610 is provided with a sliding groove 612 that slides with it. One side of each pressure plate 6211 is connected with a post 6213. The post 6213 passes through the through hole 611 and is inserted into the second insertion hole 76.

[0021] The lower end of the blade holder 61 is provided with a cutting blade assembly 7, which includes a blade holder 71. The upper end of the blade holder 71 is connected to four sets of locking blocks 75. All locking blocks 75 are inserted into the inner cavity of the slot 63. The lower end of the blade holder 71 is equipped with a cutting blade body 74. The outer side of each locking block 75 is provided with a second insertion hole 76. A through hole 611 is provided between the slot 63 and the through groove 610. The locking component 62 passes through the through hole 611 and is inserted into the second insertion hole 76.

[0022] The tool holder 71 is engaged with the upper end of the locking block 75 into the lower end of the locking groove 63 of the tool holder 61. Then, the solenoid valve 624 is opened and the electric exhaust valve 626 is closed. Compressed air is pumped into the air intake pipe 623 and then enters the inner cavity of the air cylinder 622. The compressed air pushes the piston of the piston rod 627, causing the piston rod 627 to move downwards and compress the second spring 629. The conical pressure block 628 at the lower end of the piston rod 627 moves downwards and contacts the surface of the inclined plate 6212. As the piston rod 627 continues to drive the conical pressure block downwards, the conical pressure block 628 pushes the inclined plate 6212 outwards. The inclined plate 6212 then drives the pressure plate 6211 to move towards the inner wall of the through groove 610. The slider 6214 at the lower end of the pressure plate 6211 moves within the inner cavity of the groove 612, effectively improving the pressure plate 6211's position. The movement stability of 1 is improved. Then, the pressure plate 6211 drives the insertion post 6213 to pass through the through hole 611 and insert into the second insertion hole 76 on the outside of the locking block 75, which facilitates the insertion and fixing of the locking block 75 and the lower end of the knife holder 71. At the same time, the pressure plate 6211 compresses the third spring 6210. When disassembling and replacing the cutter body 74 of different models, by closing the solenoid valve 624 and opening the electric exhaust valve 626, air enters the exhaust pipe 625 through the air intake pipe 623 and finally the compressed air is discharged. The second spring 629 automatically rebounds and resets, and drives the piston rod 627 and the conical pressure block 628 to move upward and reset. The third spring 6210 automatically rebounds and resets, and drives the pressure plate 6211 and the insertion post 6213 to reset, which facilitates the disassembly of the locking block 75 and the replacement of the cutter assembly 7. This effectively improves the efficiency of quick installation and disassembly of the cutter assembly 7 and makes it easy to use.

[0023] Working Principle: When performing die-cutting operations on standees of different shapes, this utility model involves changing the cutter assembly 7. Specifically, the upper end of the cutter holder 71 is engaged with the slot 63 at the lower end of the cutter base 61 via the locking block 75. Then, the solenoid valve 624 is opened and the electric exhaust valve 626 is closed. An external air pump compresses air into the air inlet pipe 623, which then enters the inner cavity of the air cylinder 622. This compressed air pushes the piston of the piston rod 627, causing the piston rod 627 to move downwards and compress the second spring 629. The conical pressure block 628 at the lower end of the piston rod 627 moves downwards and contacts the surface of the inclined plate 6212. As the piston rod 627 continues to drive the conical pressure block downwards, the conical pressure block 628 pushes the inclined plate 6212 outwards. Subsequently, the inclined plate 6212... The moving pressure plate 6211 and the insert post 6213 are displaced until the insert post 6213 passes through the through hole 611 and is inserted into the second insertion hole 76 on the outside of the locking block 75, which facilitates the insertion and fixing of the locking block 75 and the lower end of the blade holder 71. At the same time, the pressure plate 6211 compresses the third spring 6210. When disassembling and replacing the cutter body 74 of different models, by closing the solenoid valve 624 and opening the electric exhaust valve 626, the compressed air is discharged. The second spring 629 automatically rebounds and resets, and drives the piston rod 627 and the conical pressure block 628 to move upward and reset. The third spring 6210 automatically rebounds and resets, and drives the pressure plate 6211 and the insert post 6213 to reset, which facilitates the disassembly of the locking block 75 and the replacement of the cutter assembly 7. This effectively improves the efficiency of quick installation and disassembly of the cutter assembly 7 and makes it easy to use.

[0024] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A high-precision beer stand production machine, characterized in that, Includes a support plate (1), a hydraulic cylinder (2) is installed on the upper end of the support plate (1), the output end of the hydraulic cylinder (2) passes through the support plate (1) and is installed with a fixing plate (3), a support mechanism (6) is provided below the fixing plate (3), a fixing component is installed on the upper end of the support mechanism (6), and the fixing component is screwed to the fixing plate (3). The support mechanism (6) includes a blade holder (61), the upper end of which is provided with a set of through grooves (610) and four sets of slots (63), the upper end of which is provided with a snap-fit ​​assembly (62), and the lower end of which is provided with a cutting assembly (7). The cutting assembly (7) includes a blade holder (71), the upper end of which is connected to four sets of locking blocks (75), each locking block (75) being inserted into the inner cavity of the slot (63), the lower end of which is equipped with a cutting body (74), each locking block (75) having a second insertion hole (76) on its outer side, and each slot (63) and through slot (610) having a through hole (611), the locking assembly (62) passing through the through hole (611) and being inserted into the second insertion hole (76).

2. A high-precision beer machine for producing a standing card according to claim 1, characterized in that, The lower end of the support plate (1) is provided with an inner groove (10), the upper end of the fixing plate (3) is symmetrically connected with a positioning column (4), and the upper end of the support plate (1) is provided with a positioning hole for insertion.

3. A high-precision die-cutting machine for stand-up sign production according to claim 2, characterized in that, The fixing assembly includes four sets of fixing posts (5) installed on the upper end of the tool holder (61). The upper end of each fixing post (5) is connected to a threaded post (8). Each threaded post (8) passes through the fixing plate (3) and is screwed with a nut (9). Each nut (9) is located in the inner cavity of the inner groove (10).

4. A high-precision beer machine for production of a standing card according to claim 1, characterized in that, The snap-fit ​​assembly (62) includes a mounting plate (621) mounted on the upper end of the blade holder (61). An air cylinder (622) is mounted on the upper end of the mounting plate (621). An air inlet pipe (623) is mounted on the upper end of the air cylinder (622). A solenoid valve (624) is mounted on the outside of the air inlet pipe (623). A piston rod (627) is movably arranged in the inner cavity of the air cylinder (622). A second spring (629) is symmetrically connected to the lower end of the piston rod (627). The lower end of the second spring (629) is mounted on the air cylinder (622). 2) At the bottom of the inner cavity, the lower end of the piston rod (627) is connected to a conical pressure block (628). The inner cavity of the through groove (610) is provided with four sets of pressure plates (6211). The pressure plates (6211) are all connected to the inner cavity of the through groove (610) through a third spring (6210). The upper end of the pressure plates (6211) is integrally connected with an inclined plate (6212). One side of the pressure plates (6211) is connected with a plug (6213). The plug (6213) passes through the through hole (611) and is inserted into the second plug hole (76).

5. A high-precision die-cutting machine for stand-up sign production according to claim 4, characterized in that, The lower end of each pressure plate (6211) is connected to a slider (6214), and the bottom of the inner cavity of the through groove (610) is provided with a sliding groove (612) that slides with it.

6. A high-precision die-cutting machine for stand-up sign production according to claim 4, characterized in that, An exhaust pipe (625) is connected to the lower outer side of the intake pipe (623), and an electric exhaust valve (626) is installed on the outer side of the exhaust pipe (625).

Citation Information

Patent Citations

  • Die cutting mechanism and die cutting machine

    CN223130885U