Quickly-assembled replaceable shoe midsole printing code and ink adding mechanism

CN224791795UActive Publication Date: 2026-09-25南海
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Patent Information

Application Number
CN202522418124.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-14
Publication Date
2026-09-25
Estimated Expiration
2035-11-14

AI Technical Summary

Technical Problem

[0003]为了克服背景技术的缺点与不足之处,本实用新型提供一种快装可更换的鞋子中底印码及加墨机构,解决现有鞋底中层在印码加工时,不能快速有效进行印码机构的更换和安装,以及无法进行有效快速合理加墨的技术问题

Benefits of technology

[0011]本实用新型具有以下有益效果:该中底印码及加墨机构采用可快速拆装的结构,在使用过程中能够快速安装、更换印码头,操作方便,效率高,使用效果好,有效提高装置的生产效率。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a quick -mounting replaceable shoe middle sole printing code and ink adding mechanism. Mainly solve the technical problem that the existing shoe sole middle layer can not carry out the replacement and installation of printing code mechanism quickly and effectively when printing code processing. Including printing code mechanism, the printing code mechanism includes air cylinder, locating block, press screw rod, quick -mounting top block, elastic part, quick -mounting plug and printing code head, the locating block is fixedly connected with air cylinder, the quick -mounting top block and elastic part are located in the locating block, the printing code head is fixed with the connector that extends into the locating block, the connector is equipped with the open slot on, the press screw rod is connected in quick -mounting top block in open slot, and the quick -mounting top block is with connector snap fit cooperation. This middle sole printing code and ink adding mechanism adopts the structure of quick -mounting, can install, replace printing code head in the use process, and the operation is convenient, and the efficiency is high, and the use effect is good, and still have the function of adding ink to printing code head, effectively improve the production efficiency of device.
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Description

Technical Field

[0001] This utility model relates to a shoe sole processing equipment, and more particularly to a quick-release and replaceable shoe midsole printing and ink-adding mechanism. Background Technology

[0002] The midsole is part of the shoe sole structure, located between the outsole and insole. Its main functions are to provide cushioning, support, and stability. It is usually fixed in place during shoe manufacturing and cannot be removed. The difference between the midsole and the insole is that the insole is removable, located inside the shoe, and in direct contact with the sole of the foot to increase comfort. Insoles can be replaced or washed to maintain hygiene and comfort inside the shoe. The sole consists of the insole, the semi-insole (half-insole), and the shank. The shank and semi-insole (half-insole) are reinforced with rivets, shaped by a molding machine, and then trimmed and cut to form the rigid component at the back of the last. Its length and width are based on a half-insole, with the hook position 10mm from the back edge, and the front portion accounting for 55% of the foot length. The insole material can be recycled leather or polyethylene, etc. Insole coding is a process used in production for specification marking and counting management (e.g., automatic coding devices improve efficiency); some brands use it as a technological identifier or quality inspection basis. Currently, existing coding devices, due to structural limitations, are inconvenient to disassemble and replace, resulting in decreased production efficiency and wasted manpower. Furthermore, adding ink to the coding device is inconvenient and lacks automation. Summary of the Invention

[0003] In order to overcome the shortcomings and deficiencies of the prior art, this utility model provides a quick-install and replaceable shoe midsole printing and ink-adding mechanism, which solves the technical problems of existing shoe midsole printing process where the printing mechanism cannot be quickly and effectively replaced and installed, and where effective, quick and reasonable ink-adding is not possible.

[0004] The technical solution of this utility model is: a quick-release and replaceable shoe midsole printing and ink-filling mechanism, including a bracket, a midsole placed on the bracket, and a base. The base is equipped with a printing mechanism, which includes a cylinder, a positioning block, a pressing screw, a quick-release top block, an elastic element, a quick-release plug, and a printing stop. The positioning block is fixedly connected to the cylinder. The printing stop is located below the positioning block and corresponds to the midsole on the bracket. The quick-release top block and the elastic element are located inside the positioning block. An insertable part is fixed on the printing stop. The connector of the positioning block has an opening slot. The pressing screw passes through one end of the positioning block and is connected to the quick-release top block through the opening slot. The quick-release plug is fixed to the other end of the positioning block. The elastic element is located between the quick-release top block and the quick-release plug. The quick-release top block is engaged with the connector in a direction perpendicular to the axis of the pressing screw. Pressing the pressing screw pushes the quick-release top block to disengage from the connector and compresses the elastic element, thus causing the connector of the printing plate to detach from the positioning block.

[0005] The connector is provided with a slot on one side of the quick-release top block, and the quick-release top block is provided with a locking platform. The locking platform extends into the slot to form a locking engagement between the quick-release top block and the connector.

[0006] The slots are "V" shaped and are spaced apart at the upper and lower ends of the connector. The mounting platforms are "V" shaped and are distributed on the quick-release top block to fit together with the "V" shaped slots.

[0007] The quick-release top block has a strip groove on its side, and the positioning block has a locking element that passes through the strip groove to restrict the circumferential rotation of the quick-release top block.

[0008] The quick-release plug is threadedly connected to the positioning block. The quick-release plug has a groove. One end of the elastic element is located in the groove, and the other end is pressed against the quick-release top block.

[0009] The base is provided with an ink filling mechanism, which includes a rotary telescopic cylinder, a rotating arm, and an ink cartridge. The rotary telescopic cylinder is connected to a rotary telescopic rod, the rotating arm is connected to the rotary telescopic rod, and the ink cartridge is connected to the rotating arm. When the rotary telescopic cylinder is activated, it drives the ink cartridge to rotate to the corresponding position below the printing dock via the rotating arm. The rotary telescopic cylinder also drives the ink cartridge to move upward and contact the printing dock.

[0010] A tray is fixed on the rotating arm, and a baffle is provided on one side of the tray. The ink cartridge is placed in the tray and fits against the baffle.

[0011] The present invention has the following advantages: the bottom printing code and ink filling mechanism adopts a quick-disassembly structure, which can quickly install and replace the printing plate during use, making it convenient to operate, efficient, and effective, thus improving the production efficiency of the device. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of this utility model.

[0013] Figure 2 This is an enlarged view of the structure at point A in this utility model.

[0014] Figure 3 This is a schematic diagram of the printing mechanism in this utility model.

[0015] Figure 4 This is a schematic diagram of the internal structure of the printing code mechanism in this utility model.

[0016] Figure 5 This is a schematic diagram of the internal structure of the printing code mechanism in this utility model.

[0017] Figure 6 This is a schematic diagram of the quick-installation top block in this utility model.

[0018] Figure 7 This is a schematic diagram of the structure of the Sino-Indian wharf of this utility model.

[0019] In the diagram, 1 is the bracket, 2 is the base, 3 is the printing cylinder, 4 is the positioning block, 5 is the pressing screw, 6 is the quick-release top block, 7 is the elastic element, 8 is the quick-release plug, 9 is the printing dock, 10 is the connector, 11 is the opening slot, 12 is the slot, 13 is the slot, 14 is the slot, 15 is the strip groove, 16 is the locking element, 17 is the groove, 18 is the rotary telescopic cylinder, 19 is the rotating arm, 21 is the rotary telescopic rod, 20 is the ink cartridge, 22 is the tray, and 23 is the edge guard. Detailed Implementation

[0020] The following describes further embodiments of this utility model: As shown in the figure, a quick-release and replaceable shoe midsole printing and ink-filling mechanism includes a bracket 1, a midsole 2 placed on the bracket 1, and a base 3 fixed to the bracket 1. The base 3 is equipped with a printing mechanism, which includes a printing cylinder 4, a positioning block 5, a pressing screw 6, a quick-release top block 7, an elastic element 8, a quick-release plug 9, and a printing stop 10. The positioning block 5 is fixedly connected to the printing cylinder 4. The printing stop 10 is located below the positioning block 5 and corresponds to the midsole 2. The quick-release top block 7 and the elastic element 8 are located inside the positioning block 5. An insertable part is fixed to the printing stop 10. The connector 11 of the positioning block has an opening groove 12. The pressing screw 6 passes through one end of the positioning block 5 and is connected to the quick-release top block 7 through the opening groove 12. The quick-release plug 9 is fixed to the other end of the positioning block 5. The elastic element 8 is located between the quick-release top block 7 and the quick-release plug 9. The quick-release top block 7 is engaged with the connector 11 in a direction perpendicular to the axis of the pressing screw 6. Pressing the pressing screw 6 pushes the quick-release top block 7 to disengage from the connector 11 and compresses the elastic element, thus causing the connector of the printing pad 10 to disengage from the positioning block 5. In use, when the printing pad needs to be replaced, pressing the pressing screw pushes the quick-release top block to move and compresses the elastic element, causing the quick-release top block to disengage from the connector. Because the connector has an open slot, the connector can detach from the positioning block. During installation, pressing the screw inserts the connector of the printing pad into the positioning block and releasing the quick-release top block, the quick-release top block locks the connector in place under the action of the elastic element. According to the above scheme, the indentation printing and ink filling mechanism adopts a quick-disassembly structure, which allows for quick installation and replacement of the printing pad during use. It is convenient to operate, efficient, and effective, effectively improving the production efficiency of the device.

[0021] In this utility model, as shown in the figure, a slot 13 is provided on the connector 11 and located on one side of the quick-release top block 7. A locking platform 14 is provided on the quick-release top block 7. The locking platform 14 extends into the slot 13, thus forming a locking engagement between the quick-release top block 7 and the connector 11. The connector head has a slot, and the quick-release top block has a locking platform. The locking platform extends into the slot to achieve a locking engagement, preventing the connector from detaching from the positioning block. The locking engagement of the locking platform and slot facilitates assembly and disassembly, ensuring a strong and stable connection.

[0022] In this utility model, as shown in the figure, the slot 13 is a "V" shaped groove and is spaced apart at the upper and lower ends of the connector 11. The locking platform 14 is a "V" shaped locking platform that matches the "V" shaped groove to form a locking fit and is distributed vertically on the quick-release top block 7. The slot is a "V" shaped groove and is spaced apart at the upper and lower ends of the connector. The locking platform is a "V" shaped locking platform that matches the "V" shaped groove to form a locking fit and is distributed vertically on the quick-release top block. The quick-release top block uses upper and lower locking platforms to cooperate with the upper and lower slots of the connector. Both adopt a V-shaped structure to achieve locking, which has a good locking effect, quick disassembly, and is reasonable, thereby effectively improving the replacement and disassembly of the entire printing dock.

[0023] In this invention, as shown in the figure, the quick-release top block 7 has a strip groove 15 on its side, and the positioning block 5 has a locking member 16 that passes through the strip groove 15 to restrict the circumferential rotation of the quick-release top block 7. By providing a strip groove 15 on the side of the quick-release top block 7, and by using a fastener that passes through the positioning block and engages with the strip groove of the quick-release top block 7 to achieve a locking fit, the quick-release top block 7 is prevented from loosening and disengaging due to rotation, thereby effectively improving the firmness, safety, stability, and reliability of the installation.

[0024] In this utility model, as shown in the figure, the quick-install plug 9 is threadedly connected to the positioning block 5. The quick-install plug 9 has a groove 17. One end of the elastic element 8 is located in the groove 17, and the other end presses against the quick-install top block 7. The threaded connection between the quick-install plug 9 and the positioning block 5 facilitates installation, ensures a firm and reliable connection, and allows for easy adjustment of the elastic force of the elastic element. The groove 17 on the quick-install plug 9, with one end of the elastic element 8 located in the groove 17 and the other end pressing against the quick-install top block 7, ensures stable installation of the elastic element and achieves the reliability and rationality of the overall structure.

[0025] In this invention, as shown in the figure, an ink-filling mechanism is provided on the base 3. The ink-filling mechanism includes a rotary telescopic cylinder 18, a rotating arm 19, and an ink cartridge 20. The rotary telescopic cylinder 18 is connected to a rotary telescopic rod 21, the rotating arm 19 is connected to the rotary telescopic rod 21, and the ink cartridge 20 is connected to the rotating arm 19. When the rotary telescopic cylinder 18 is activated, it drives the ink cartridge 20 to rotate below the printing dock 10 via the rotating arm 19. The rotary telescopic cylinder 18 also drives the ink cartridge 20 upwards to contact the printing dock 10. This rotary telescopic cylinder is a cylinder capable of extension, retraction, and rotation. When activated, the cylinder can achieve rotation and extension / retraction via the rotary telescopic rod. When ink needs to be added to the printing dock, the rotary telescopic cylinder 18 is activated by a rotation command, which rotates the rotating arm via the rotary telescopic rod. The rotating arm drives the ink cartridge to rotate below the printing dock. At this time, the rotary telescopic cylinder 18 is activated by a retraction command, which retracts upwards, bringing the ink cartridge closer to the printing dock to achieve the purpose of adding ink to the surface of the printing dock. The above structure enables timely and efficient ink addition to the printing dock, effectively improving equipment processing efficiency, saving manual labor, and increasing production efficiency.

[0026] In this invention, as shown in the figure, a tray 22 is fixed on the rotating arm 19. A retaining edge 23 is provided on one side of the tray 22. The ink cartridge 20 is placed inside the tray 22 and adheres to the retaining edge 23. By setting a tray on the rotating arm, placing the ink cartridge inside the tray and adhering it to the retaining edge, and fixing it to the tray with fasteners, the ink cartridge installation becomes detachable, facilitating maintenance and replacement. Furthermore, the retaining edge on the tray ensures a more secure and stable placement of the ink cartridge, preventing it from loosening.

Claims

1. A quick-release and replaceable shoe midsole printing and ink-filling mechanism, comprising a support (1), wherein a midsole (2) is placed on the support (1), characterized in that: It also includes a base (3), which is fixed to the bracket (1). The base (3) is provided with a coding mechanism, which includes a coding cylinder (4), a positioning block (5), a pressing screw (6), a quick-release top block (7), an elastic element (8), a quick-release plug (9), and a coding dock (10). The positioning block (5) is fixedly connected to the coding cylinder (4). The coding dock (10) is located below the positioning block (5) and corresponds to the middle bottom (2). The quick-release top block (7) and the elastic element (8) are located inside the positioning block (5). A connector (11) is fixed on the coding dock (10) and extends into the positioning block. The positioning block (5) has an opening groove (12). The pressing screw (6) passes through one end of the positioning block (5) and is connected to the quick-release top block (7) through the opening groove (12). The quick-release plug (9) is fixed to the other end of the positioning block (5). The elastic element (8) is located between the quick-release top block (7) and the quick-release plug (9). The quick-release top block (7) is engaged with the connector (11) in a direction perpendicular to the axis of the pressing screw (6). Pressing the pressing screw (6) presses the quick-release top block (7) to disengage from the connector (11) and compresses the elastic element to form the connector of the printing dock (10) to disengage from the positioning block (5).

2. The quick-release and replaceable shoe midsole printing and ink-adding mechanism according to claim 1, characterized in that: The connector (11) is provided with a slot (13) on one side of the quick-release top block (7), and the quick-release top block (7) is provided with a locking platform (14). The locking platform (14) extends into the slot (13) to form a locking fit between the quick-release top block (7) and the connector (11).

3. The quick-release and replaceable shoe midsole printing and ink-adding mechanism according to claim 2, characterized in that: The slot (13) is a "V" shaped slot and is distributed at intervals at the upper and lower ends of the connector (11). The mounting plate (14) is a "V" shaped mounting plate that matches the "V" shaped slot to form a locking fit and is distributed on the quick-release top block (7).

4. The quick-release and replaceable shoe midsole printing and ink-adding mechanism according to claim 1, 2, or 3, characterized in that: The quick-release top block (7) has a strip groove (15) on its side, and the positioning block (5) has a locking element (16) that passes through the strip groove (15) to restrict the circumferential rotation of the quick-release top block (7).

5. The quick-release and replaceable shoe midsole printing and ink-adding mechanism according to claim 1, 2, or 3, characterized in that: The quick-release plug (9) is threadedly connected to the positioning block (5). The quick-release plug (9) has a groove (17). One end of the elastic element (8) is located in the groove (17), and the other end is pressed against the quick-release top block (7).

6. The quick-release and replaceable shoe midsole printing and ink-adding mechanism according to claim 1, 2, or 3, characterized in that: The base (3) is provided with an ink filling mechanism, which includes a rotary telescopic cylinder (18), a rotating arm (19) and an ink cartridge (20). The rotary telescopic cylinder (18) is connected to a rotary telescopic rod (21). The rotating arm (19) is connected to the rotary telescopic rod (21). The ink cartridge (20) is connected to the rotating arm (19). When the rotary telescopic cylinder (18) is activated, it drives the ink cartridge (20) to rotate to the corresponding position below the printing dock (10) through the rotating arm (19). The rotary telescopic cylinder (18) also drives the ink cartridge (20) to move upward and contact the printing dock (10).

7. The quick-release and replaceable shoe midsole printing and ink-adding mechanism according to claim 6, characterized in that: A tray (22) is fixed on the rotating arm (19). A retaining edge (23) is provided on one side of the tray (22). The ink cartridge (20) is placed in the tray (22) and attached to the retaining edge (23).