Ink-jet printer with detachable module
Through the modularly designed inkjet printer, the problem of limited application scope of existing inkjet printer equipment is solved, the components are standardized and easy to interchange, and the production efficiency is improved and maintenance costs are reduced.
Patent Information
- Application Number
- CN202422290171.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The existing inkjet printers are fixed large equipment and cannot meet the needs of different products and inks, resulting in limited application scope of equipment and difficult components to be interchangeable and upgraded.
Design a printer with detachable module, including load-bearing chassis, adjustment and assembly components and classified inkjet components. The modular design is realized through the limiting groove ring, counterweight plate, support slant rod, U-shaped connection plate, universal pulley and other structures, which is convenient and quick replacement and upgrade.
Improves the adaptability and flexibility of equipment, reduces downtime, reduces maintenance costs, ensures that the various components are standardized and easy to interchange, and adapts to diversified production needs.
Smart Images

Figure CN223173810U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of inkjet coding, in particular to an inkjet printer with detachable modules. Background Art
[0002] An inkjet printer is a device that uses software control to perform non-contact marking on products. It mainly works by using continuous inkjet technology or drop-on-demand inkjet technology, and can print information such as text, graphics, barcodes, etc. on the surfaces of various materials such as paper, plastic, metal, etc. The invention and application of inkjet printers have greatly improved production efficiency, reduced the error rate of manual marking, and are widely used in multiple industries such as food, medicine, daily chemicals, electronics, and automobiles.
[0003] However, most of the existing inkjet printers are fixed large-scale devices during use, resulting in the ability to only meet the needs of specific products and specific inks, reducing the applicable range of the device, unable to ensure the standardization of each component, and not being easy to interchange and upgrade.
[0004] Therefore, in view of the fact that the above inkjet printers cannot ensure the standardization of each component and are not easy to interchange and upgrade during use, an inkjet printer with detachable modules can be designed. By using modularization, each component can be independently replaced or upgraded, improving the adaptability and flexibility of the device. Summary of the Utility Model
[0005] In order to overcome the problems that inkjet printers can only meet the needs of specific products and specific inks during use, reducing the applicable range of the device, unable to ensure the standardization of each component, and not being easy to interchange and upgrade.
[0006] The technical solution of the utility model is: an inkjet printer with detachable modules, including a load-bearing chassis, and also including an adjustment and disassembly component and a classification inkjet component. The adjustment and disassembly component for meeting the needs of different products and inks includes a limit rotation groove ring, a counterweight plate, a support diagonal rod, a U-shaped connecting plate, a universal wheel, a limit rotation block, an automatic lifting column, a working plate, a limit enclosure plate, a support adjustment plate, an adjustment slider, and a clamping arc plate; the limit rotation groove ring is welded to the lower end of the load-bearing chassis.
[0007] Preferably, the modules can be quickly replaced, improving production efficiency, meeting the needs of different products and different inks, expanding the applicable range of the device, adapting to diversified production, ensuring the standardization of each component, being easy to interchange and upgrade, quickly adapting to changes in production requirements, reducing downtime caused by equipment replacement or maintenance, and also reducing long-term maintenance costs.
[0008] Preferably, a counterweight plate is fixedly connected to the lower end of the load-bearing chassis; a support diagonal rod is fixedly connected to the lower end of the load-bearing chassis; a U-shaped connecting plate is fixedly connected to the lower end of the support diagonal rod. By pushing the device, the universal pulley inside the U-shaped connecting plate at the lower end of the support diagonal rod rotates, so that the device can quickly reach the required position, facilitating inkjetting in the later stage.
[0009] Preferably, a universal pulley is arranged inside the U-shaped connecting plate; a limiting rotating block is rotatably connected inside the limiting rotating groove ring; an automatic lifting column is arranged at the upper end of the limiting rotating block. The counterweight plate at the lower end of the load-bearing chassis can increase the weight of the device chassis, improve the stability of the device, and reduce the risk of the device tipping over.
[0010] Preferably, a working plate is arranged at the upper end of the automatic lifting column; a limiting fence is arranged at the upper end of the working plate; a support adjusting plate is arranged at the upper end of the working plate. According to the need of the jetting position, the limiting rotating block rotates inside the limiting rotating groove ring, and at the same time, the automatic lifting column at the upper end of the limiting rotating groove ring rises and falls, so as to perform inkjetting work more accurately.
[0011] Preferably, an adjusting slider is slidably connected inside the support adjusting plate; a clamping arc plate is arranged at the upper end of the adjusting slider. The storage box is placed in the limiting fence on the working plate in a limited way, and the required ink box is placed in the storage box. The partition plate serves the purpose of classification.
[0012] Preferably, the classified inkjetting assembly includes a storage box, a partition plate, an ink box, a feeding pipe, a suction pump, a telescopic pipe, an ink tank, and a nozzle; the storage box is arranged inside the limiting fence; a partition plate is arranged inside the storage box. The feeding pipe is inserted into the ink box, and the ink tank is fixedly placed on the clamping arc plate on the adjusting slider. The suction pump at the upper end of the feeding pipe is started.
[0013] Preferably, the ink box is placed in the storage box in a limited way; a feeding pipe is arranged inside the storage box; a suction pump is arranged at the upper end of the feeding pipe; a telescopic pipe is arranged at the side end of the suction pump; an ink tank is connected to the side end of the telescopic pipe; a nozzle is installed at the side end of the ink tank. The ink is sprayed out through the ink tank by a suitable nozzle, ensuring that each component is standardized, easy to interchange and upgrade, can quickly adapt to changes in production requirements, reduce the downtime caused by equipment replacement or maintenance, and at the same time can also reduce the long-term maintenance cost.
[0014] The beneficial effects of the present utility model are:
[0015] 1. This new type can quickly replace modules, improve production efficiency, meet the needs of different products and different inks, expand the applicable range of the equipment, adapt to diversified production, ensure that each component is standardized, easy to interchange and upgrade, can quickly adapt to changes in production requirements, reduce the downtime caused by equipment replacement or maintenance, and at the same time can also reduce the long-term maintenance cost;
[0016] 2. The driving device rotates the universal pulleys inside the U-shaped connecting plate at the lower end of the supporting diagonal rod, enabling the device to quickly reach the required position, facilitating inkjetting in the later stage. The counterweight plate at the lower end of the load-bearing chassis can increase the weight of the device chassis, improve the stability of the device, and reduce the risk of the device tipping over. According to the needs of the spraying position, the limit rotating block rotates within the limit rotating groove ring, and at the same time, the automatic lifting column at the upper end of the limit rotating groove ring rises and falls, thus enabling more accurate inkjetting work.
[0017] 3. The storage box is placed in a limited position within the limit retaining plate on the working plate. The required ink box is placed inside the storage box. The partition serves the purpose of classification. The feeding pipe is inserted into the ink box, and the ink tank is placed and fixed on the engaging arc plate on the adjusting slider. The suction pump at the upper end of the feeding pipe is started, enabling the ink to be ejected through a suitable nozzle after passing through the ink tank, ensuring that each component is standardized, easy to interchange and upgrade, capable of quickly adapting to changes in production requirements, reducing downtime caused by equipment replacement or maintenance, and also reducing long-term maintenance costs. Description of the Drawings
[0018] Figure 1 Shows the overall structural schematic diagram of the present utility model;
[0019] Figure 2 Shows the structural schematic diagram of the support adjustment structure of the present utility model;
[0020] Figure 3 Shows the structural schematic diagram of the disassembly and assembly structure of the present utility model;
[0021] Figure 4 Shows the structural schematic diagram of the classified inkjet component of the present utility model.
[0022] Description of the Reference Numerals: 1. Load-bearing chassis; 201. Limit rotating groove ring; 202. Counterweight plate; 203. Supporting diagonal rod; 204. U-shaped connecting plate; 205. Universal pulley; 206. Limit rotating block; 207. Automatic lifting column; 208. Working plate; 209. Limit retaining plate; 210. Support adjustment plate; 211. Adjusting slider; 212. Engaging arc plate; 301. Storage box; 302. Partition; 303. Ink box; 304. Feeding pipe; 305. Suction pump; 306. Flexible pipe; 307. Ink tank; 308. Nozzle. Detailed Embodiment
[0023] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0024] Please refer to Figures 1-4, this utility model provides an embodiment: an inkjet printer with detachable modules, including a load-bearing chassis 1, and also including an adjustment and disassembly component and a classification inkjet component. The adjustment and disassembly component is used to meet the adjustment and disassembly requirements of different products and ink needs. The adjustment and disassembly component includes a limit rotation groove ring 201, a counterweight plate 202, a support inclined rod 203, a U-shaped connecting plate 204, a universal wheel 205, a limit rotation block 206, an automatic lifting column 207, a working plate 208, a limit enclosing plate 209, a support adjustment plate 210, an adjustment slider 211, and a clamping arc plate 212. The lower end of the load-bearing chassis 1 is welded with a limit rotation groove ring 201, which can quickly replace modules, improve production efficiency, meet different product and ink requirements, expand the applicable range of the equipment, adapt to diversified production, ensure the standardization of each component, be easy to interchange and upgrade, quickly adapt to changes in production requirements, reduce downtime caused by equipment replacement or maintenance, and also reduce long-term maintenance costs.
[0025] Please refer to Figures 2-3 , in this embodiment, the lower end of the load-bearing chassis 1 is fixedly connected with a counterweight plate 202; the lower end of the load-bearing chassis 1 is fixedly connected with a support inclined rod 203; the lower end of the support inclined rod 203 is fixedly connected with a U-shaped connecting plate 204, and a universal wheel 205 is arranged inside the U-shaped connecting plate 204; the limit rotation block 206 is rotatably connected inside the limit rotation groove ring 201; an automatic lifting column 207 is arranged at the upper end of the limit rotation block 206, and a working plate 208 is arranged at the upper end of the automatic lifting column 207; a limit enclosing plate 209 is arranged at the upper end of the working plate 208; a support adjustment plate 210 is arranged at the upper end of the working plate 208, and an adjustment slider 211 is slidably connected inside the support adjustment plate 210; a clamping arc plate 212 is arranged at the upper end of the adjustment slider 211. By pushing the device, the universal wheel 205 inside the U-shaped connecting plate 204 at the lower end of the support inclined rod 203 rotates, so that the equipment can quickly reach the required position, facilitating the subsequent inkjetting. The counterweight plate 202 at the lower end of the load-bearing chassis 1 can increase the weight of the device chassis, improve the stability of the device, and reduce the risk of equipment overturning. According to the need of the jetting position, the limit rotation block 206 rotates inside the limit rotation groove ring 201, and at the same time, the automatic lifting column 207 at the upper end of the limit rotation groove ring 201 rises and falls, so as to perform inkjetting work more accurately.
[0026] Please refer to Figure 4, in this embodiment, the classification inkjet component includes a storage box 301, a partition 302, an ink box 303, a feeding pipe 304, a suction pump 305, a telescopic pipe 306, an ink tank 307, and a nozzle 308; the storage box 301 is arranged inside the limiting enclosure 209; a partition 302 is arranged inside the storage box 301, and the ink box 303 is placed in the storage box 301 in a limited manner; the feeding pipe 304 is arranged inside the storage box 301; a suction pump 305 is arranged at the upper end of the feeding pipe 304; a telescopic pipe 306 is arranged at the side end of the suction pump 305; the side end of the telescopic pipe 306 is connected to an ink tank 307; a nozzle 308 is installed at the side end of the ink tank 307. The storage box 301 is placed in the limiting enclosure 209 on the working plate 208 in a limited manner, and the required ink box 303 is placed in the storage box 301. The partition 302 is for classification purposes. The feeding pipe 304 is inserted into the ink box 303, and the ink tank 307 is placed and fixed on the clamping arc plate 212 on the adjusting slider 211. The suction pump 305 at the upper end of the feeding pipe 304 is started, so that the ink passes through the ink tank 307 and is ejected through a suitable nozzle 308, ensuring that each component is standardized, easy to interchange and upgrade, can quickly adapt to changes in production requirements, reduce downtime caused by equipment replacement or maintenance, and also reduce long-term maintenance costs.
[0027] When working, first push the device to make the universal pulley 205 in the U-shaped connecting plate 204 at the lower end of the support diagonal rod 203 rotate, so that the equipment can quickly reach the required position, which is convenient for later inkjetting. The counterweight plate 202 at the lower end of the load-bearing chassis 1 can increase the weight of the device chassis, improve the stability of the device, and reduce the risk of equipment tipping. According to the need of the spraying position, make the limiting rotating block 206 rotate in the limiting rotating groove ring 201, and at the same time, the automatic lifting column 207 at the upper end of the limiting rotating groove ring 201 rises and falls, so as to perform inkjet work more accurately. The storage box 301 is placed in the limiting enclosure 209 on the working plate 208 in a limited manner, and the required ink box 303 is placed in the storage box 301. The partition 302 is for classification purposes. The feeding pipe 304 is inserted into the ink box 303, and the ink tank 307 is placed and fixed on the clamping arc plate 212 on the adjusting slider 211. The suction pump 305 at the upper end of the feeding pipe 304 is started, so that the ink passes through the ink tank 307 and is ejected through a suitable nozzle 308, ensuring that each component is standardized, easy to interchange and upgrade, can quickly adapt to changes in production requirements, reduce downtime caused by equipment replacement or maintenance, and also reduce long-term maintenance costs.
[0028] Through the above steps, the module can be replaced quickly, production efficiency can be improved, the needs of different products and different inks can be met, the applicable range of the equipment can be expanded, diversified production can be adapted, all components can be standardized, making them easy to interchange and upgrade. It can quickly adapt to changes in production requirements, reduce downtime caused by equipment replacement or maintenance, and also lower long-term maintenance costs.
Claims
1. An inkjet printer with a detachable module, comprising a load-bearing chassis (1); characterized in that: It also includes an adjustment and disassembly component and a classification inkjet component. The adjustment and disassembly component is used to meet the adjustment and disassembly requirements of different products and inks. The adjustment and disassembly component includes a limit rotation groove ring (201), a counterweight plate (202), a support inclined rod (203), a U-shaped connecting plate (204), a universal pulley (205), a limit rotation block (206), an automatic lifting column (207), a working plate (208), a limit enclosing plate (209), a support adjustment plate (210), an adjustment slider (211), and a clamping arc plate (212); a limit rotation groove ring (201) is welded to the lower end of the load-bearing chassis (1).
2. The inkjet printer with detachable modules according to claim 1, characterized in that: A counterweight plate (202) is fixedly connected to the lower end of the load-bearing chassis (1); a support inclined rod (203) is fixedly connected to the lower end of the load-bearing chassis (1); a U-shaped connecting plate (204) is fixedly connected to the lower end of the support inclined rod (203).
3. The inkjet printer with detachable modules according to claim 2, wherein: A universal pulley (205) is arranged inside the U-shaped connecting plate (204); a limit rotation block (206) is rotatably connected inside the limit rotation groove ring (201); an automatic lifting column (207) is arranged at the upper end of the limit rotation block (206).
4. The inkjet printer with detachable modules according to claim 3, wherein: A working plate (208) is arranged at the upper end of the automatic lifting column (207); a limit enclosing plate (209) is arranged at the upper end of the working plate (208); a support adjustment plate (210) is arranged at the upper end of the working plate (208).
5. The inkjet printer with detachable modules according to claim 4, characterized in that: An adjustment slider (211) is slidably connected inside the support adjustment plate (210); a clamping arc plate (212) is arranged at the upper end of the adjustment slider (211).
6. A coding machine with a detachable module according to claim 1, characterized in that: The classification inkjet component includes a storage box (301), a partition (302), an ink box (303), a feeding through pipe (304), a suction pump (305), a telescopic pipe (306), an ink tank (307), and a nozzle (308); a storage box (301) is arranged inside the limit enclosing plate (209); a partition (302) is arranged inside the storage box (3o1).
7. The inkjet printer with detachable modules according to claim 6, characterized in that: An ink box (303) is placed in a limited position inside the storage box (301); a feeding through pipe (304) is arranged inside the storage box (301); a suction pump (305) is arranged at the upper end of the feeding through pipe (304); a telescopic pipe (306) is arranged at the side end of the suction pump (305); the side end of the telescopic pipe (306) is connected to an ink tank (307); a nozzle (308) is installed at the side end of the ink tank (307).