Efficient ink-jet printer

By introducing the ink restriction structure and automatic inkjet structure into the high-efficiency inkjet printer, the problems of ink splashing and cumbersome operation are solved, automatic and fast inkjet coding is achieved, and the use effect and efficiency of the inkjet printer are improved.

CN223370401UActive Publication Date: 2025-09-23QINGDAO ZHENCHANG IND & TRADE CO LTD
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Patent Information

Application Number
CN202423071987.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-09-23
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing high-efficiency inkjet printers are prone to causing ink splashing and polluting the environment during the coding process. They are also cumbersome to operate and difficult to achieve automated and rapid coding, which affects their effectiveness and efficiency.

Method used

An efficient inkjet printer is designed, which includes an inkjet ink restriction structure and an automatic inkjet printing structure. The splashing ink is intercepted by a slider and a bolt-fixed blocking plate, and automatic inkjet printing, automatic identification and feeding are realized by using a laser identifier and a hydraulic pump.

Benefits of technology

It effectively reduces the pollution of ink splash to the environment, improves the use effect of the inkjet printer, and greatly improves the speed and efficiency of inkjet printing through automated operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ink-jet printing machines, in particular to an efficient ink-jet printing machine which comprises an ink-jet printing machine base, a goods conveying belt and a top plate, the ink-jet printing machine base is fixedly arranged on the side, away from the goods conveying belt, of the outer wall, and an ink-jet printing control host is fixedly installed above the ink-jet printing machine base. A code spraying ink limiting structure is arranged at the front end of the top plate, and an automatic code spraying structure is arranged above the code spraying machine base. According to the efficient ink-jet printing machine, one end of the upper portion of a connecting plate can be driven to be screwed into a sliding block through a first bolt to be fixed, meanwhile, the first bolt can abut against the inner side of an adjusting groove after penetrating through the sliding block, a blocking plate and the inner side of the connecting plate can be fixedly connected through screwing of two second bolts, and meanwhile the blocking plate can intercept the front portion of an ink nozzle; and by utilizing a structure for intercepting splashed ink, the high-efficiency ink-jet printer can adapt to more conditions, damage and pollution to the surrounding environment caused by the splashed ink are reduced, and the use effect of the high-efficiency ink-jet printer is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of inkjet printers, in particular to a high-efficiency inkjet printer. Background Art

[0002] After the processed products are completed, they need to be stamped and marked on the packaging so that they can be traced when quality problems arise later. The inkjet printer uses the principle of charged ink particles deflected by a high-voltage electric field to print patterns, text and numbers on the surfaces of various objects. It is a high-tech product integrating mechatronics. Its products are widely used in the food industry, cosmetics industry, pharmaceutical industry, automobile parts processing industry, wire and cable industry, aluminum-plastic pipe industry, tobacco and alcohol industry and other fields.

[0003] For example, the announcement number "CN206678584U" is called a high-efficiency inkjet printer. Through the use of a hydraulic pump and a control button, people can quickly adjust the height of the inkjet printer, thereby improving the working efficiency of the inkjet printer. However, the existing high-efficiency inkjet printer adopts a height-adjustable method to realize inkjet coding operations on goods of different models and sizes. However, there is no good protective shielding structure in front of the inkjet printer's ink nozzle. This will result in the inkjet printer working. There must be goods that need to be coded within a certain distance in front of the nozzle. Otherwise, the high-speed ink will be sprayed far away without a code to receive the goods, causing pollution and damage to the nearby environment, affecting the use effect of the high-efficiency inkjet printer.

[0004] At the same time, the existing high-efficiency inkjet printers need to adopt a structure that can adjust the height and corresponding position to facilitate the completion of the inkjet operation. However, in actual use, the high-efficiency inkjet printer requires the operator to carry different goods to align them in front of the ink nozzle of the inkjet printer, and then start the inkjet printer to realize the inkjet process. Therefore, each time the inkjet printer is used, the operator must complete the repeated operations of taking the goods, aligning the ink nozzle, starting the inkjet printer and changing the goods. It is difficult to achieve the effect of automatic and fast coding by the inkjet printer, which reduces the working efficiency of the high-efficiency inkjet printer. Utility Model Content

[0005] The utility model aims to solve the problems of poor use effect and low working efficiency of existing high-efficiency inkjet printers, and proposes a high-efficiency inkjet printer.

[0006] To achieve the above purpose, the present invention provides the following technical solutions:

[0007] An efficient inkjet printer is designed, comprising an inkjet printer base, a cargo conveyor belt and a top plate. The inkjet printer base is fixedly arranged on the side of the outer wall away from the cargo conveyor belt, a inkjet printer control host is fixedly installed above the inkjet printer base, a inkjet printer ink limiting structure is provided at the front end of the top plate, and an automatic inkjet printer structure is provided above the inkjet printer base.

[0008] Preferably, the coding ink limiting structure includes an adjustment groove and a blocking plate. The adjustment groove is fixedly opened on both sides of the outer wall of the top plate. The inner sides of the two adjustment grooves are slidably connected with sliders. The internal threads of the two sliders are connected with a first bolt. The other end of the first bolt is tightly pressed against the inner wall of the adjustment groove. A connecting plate is movably connected between the inner side of the first bolt and the outer wall of the slider. The inner sides of the other ends of the two connecting plates are threadedly connected with two second bolts, and the inner sides of the two second bolts are threadedly connected with a blocking plate.

[0009] Preferably, a laser identifier is fixedly connected to the lower end of the top plate, the lower end of the laser identifier is arranged opposite to the upper side of the cargo conveyor belt, and the blocking plate is arranged on the upper side of the cargo conveyor belt.

[0010] Preferably, the automatic coding structure includes a cylinder and an electric push rod, and multiple cylinders are fixedly installed on the top of the inkjet printer base, and the tops of multiple cylinders are fixedly connected to a support platform, and an electric push rod is fixedly installed above the support platform. A hydraulic pump is fixedly installed at the front end of the electric push rod, and an ink nozzle is fixedly installed at the end of the hydraulic pump, and the front end of the ink nozzle is arranged opposite to the top of the cargo conveyor belt.

[0011] Preferably, an inkjet printer ink supply structure is provided below the hydraulic pump, and the inkjet printer ink supply structure includes a feeding port and a feeding pipe. The feeding pipe is fixedly connected to the lower end of the hydraulic pump, and the other end of the feeding pipe is fixedly connected to the inside of the inkjet printer control host. An ink supply pump is fixedly installed on the outer wall of the feeding pipe, and the feeding port is fixedly opened on the outer wall of the inkjet printer control host.

[0012] Preferably, the top plate is fixedly mounted on the top of the support platform, and a plurality of self-locking universal wheels are fixedly mounted on the lower end of the inkjet printer base.

[0013] The utility model proposes a high-efficiency inkjet printer, which has the beneficial effects of: the upper end of the connecting plate can be driven to be screwed into the slider for fixation through the first bolt, and the first bolt will be pressed against the inner side of the adjustment slot after passing through the slider, and the blocking plate and the inner side of the connecting plate can be fixed by screwing the two second bolts. At the same time, the blocking plate can be intercepted in front of the ink nozzle, and the structure of intercepting splashing ink can adapt to more situations, reduce the damage and pollution of the surrounding environment caused by ink splashing, and improve the use effect of the high-efficiency inkjet printer.

[0014] After the cargo conveyor is connected to the power supply and started, it can transport the cargo that needs to be coded. When the cargo moves to the bottom of the laser identifier, the laser identifier senses the presence of the coded cargo and uses the guide to transmit the signal to the coding control host. The hydraulic pump generates pressure to push the internal stored ink forward from the ink nozzle. The structure that can automatically feed and automatically identify and start the inkjet printer to complete the coding operation accelerates the cargo coding speed, and ultimately improves the working efficiency of the high-efficiency inkjet printer. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a three-dimensional schematic diagram of the utility model;

[0016] Figure 2 for Figure 1 A front cross-sectional schematic diagram of ;

[0017] Figure 3 for Figure 1 A schematic cross-sectional view of the top surface;

[0018] Figure 4 for Figure 2 Enlarged cross-sectional view of part A in the middle;

[0019] Figure 5 for Figure 2 Enlarged cross-sectional view of part B in the middle;

[0020] Figure 6 for Figure 2 Enlarged cross-sectional view of part C in the middle.

[0021] In the figure: 1. Inkjet printer base, 2. Cargo conveyor belt, 3. Inkjet printer control host, 4. Top plate, 5. Inkjet printer ink limiting structure, 51. Adjustment slot, 52. Slider, 53. First bolt, 54. Connecting plate, 55. Blocking plate, 56. Second bolt, 6. Automatic inkjet printer structure, 61. Cylinder, 62. Support platform, 63. Electric push rod, 64. Hydraulic pump, 65. Ink nozzle, 7. Inkjet printer ink supply structure, 71. Feeding port, 72. Ink supply pump, 73. Feeding pipe, 8. Laser identifier, 9. Self-locking universal wheel. DETAILED DESCRIPTION

[0022] The present invention will be further described below with reference to the accompanying drawings:

[0023] Example 1;

[0024] See also Figure 1-6In this embodiment, a high-efficiency inkjet printer includes a printer base 1, a cargo conveyor belt 2 and a top plate 4. The printer base 1 is fixedly arranged on the side of the outer wall away from the cargo conveyor belt 2. The cargo conveyor belt 2 is assembled with a toothed belt and a toothed pulley. The cargo conveyor belt 2 can transport the goods that need to be coded at a uniform speed, which can relieve the tediousness of manual feeding. A printer control host 3 is fixedly installed above the printer base 1. The printer control host 3 adopts the existing technology disclosed in the comparative document publication number "CN206678584U" and is named a high-efficiency inkjet printer. The printer control host 3 can use the circuit to control the coordinated work of the cylinder 61, the electric push rod 63, the hydraulic pump 64 and the laser identifier 8. The front end of the top plate 4 is provided with a printer ink limiting structure 5, and the top of the printer base 1 is provided with an automatic printer structure 6.

[0025] The coding ink limiting structure 5 includes an adjusting groove 51 and a blocking plate 55. The adjusting groove 51 is fixedly opened on both sides of the outer wall of the top plate 4. The inner sides of the two adjusting grooves 51 are slidably connected with sliders 52. The sliders 52 on both sides can slide left and right along the inside of the adjusting groove 51. The internal threads of the two sliders 52 are connected with a first bolt 53. The first bolt 53 can drive the upper end of the connecting plate 54 to be screwed into the slider 52 for fixing. At the same time, the first bolt 53 will be pressed against the inner side of the adjusting groove 51 after passing through the slider 52, so that the position of the slider 52 and the connecting plate 54 can be fixed. The other end of the first bolt 53 is pressed against the inner wall of the adjusting groove 51.

[0026] A connecting plate 54 is movably connected between the inner side of the first bolt 53 and the outer wall of the slider 52. The other end of the connecting plate 54 extends below the top plate 4. By screwing two second bolts 56, a blocking plate 55 can be fixed to the inner side of the connecting plate 54. The blocking plate 55 is vertically set below the top plate 4. At the same time, the blocking plate 55 can intercept in front of the ink nozzle 65. When the ink nozzle sprays ink but there is no cargo in front, the ink will be blocked by the blocking plate 55 and will not splash to the outside. The other ends of the two connecting plates 54 are threadedly connected to two second bolts 56. The blocking plate 55 is threadedly connected to the inner side of the two second bolts 56.

[0027] The sliders 52 on both sides can slide left and right along the inside of the adjustment groove 51, and the first bolt 53 can drive the upper end of the connecting plate 54 to be screwed into the slider 52 for fixation. At the same time, the first bolt 53 will be pressed against the inner side of the adjustment groove 51 after passing through the slider 52, so that the position of the slider 52 and the connecting plate 54 can be fixed.

[0028] The other end of the connecting plate 54 extends below the top plate 4. The blocking plate 55 can be fixed to the inner side of the connecting plate 54 by screwing two second bolts 56. The blocking plate 55 will be vertically set below the top plate 4. At the same time, the blocking plate 55 can intercept in front of the ink nozzle 65. When the ink nozzle sprays ink but there is no goods in front, the ink will be blocked by the blocking plate 55 and will not splash to the outside. The structure of intercepting splashing ink can adapt to more situations, reduce the damage and pollution of the surrounding environment caused by ink splashing, and improve the use effect of the high-efficiency inkjet printer.

[0029] A laser identifier 8 is fixedly connected to the lower end of the top plate 4. The laser identifier 8 is a relatively mature technical means at this stage. The laser identifier 8 realizes measurement by the interaction between the laser beam and the object. When the laser beam is irradiated on the surface of the object, it will interact with the surface of the object and reflect or scatter out. By measuring the reflection or scattering of the laser beam, the position and information of the object can be obtained. After the cargo conveyor belt 2 is connected to the power supply and started, it can transport the cargo that needs to be coded. In this way, when the cargo moves to the bottom of the laser identifier 8, the laser identifier 8 senses the presence of the coded cargo and uses the guide to transmit the signal to the coding control host 7. The lower end of the laser identifier 8 is arranged opposite to the upper side of the cargo conveyor belt 2, and the blocking plate 55 is arranged on the upper side of the cargo conveyor belt 2;

[0030] The automatic coding structure 6 includes a cylinder 61 and an electric push rod 63. Multiple cylinders 61 are fixedly installed on the top of the inkjet printer base 1. After the cylinder 61 is connected to the power supply and started, it can push the upper support platform 62 up and down to change the coding height of the inkjet printer. The top of the multiple cylinders 61 is fixedly connected to the support platform 62, and the electric push rod 63 is fixedly installed above the support platform 62. After the electric push rod 63 is connected to the power supply, it can drive the front-end hydraulic pump 64 to slide back and forth, thereby controlling the distance between the ink nozzle 65 and the goods that need to be coded. The front end of the electric push rod 63 is fixedly installed with a hydraulic pump 64.

[0031] After receiving the signal from the laser identifier 8, the inkjet control host 71 starts the hydraulic pump 64. The hydraulic pump 64 generates pressure to push the ink stored inside to be ejected forward from the ink nozzle 65. Then the cargo conveyor 2 continues to drive the cargo forward. The laser identifier 8 cooperates with the inkjet control host 3 to continuously complete the above operations. The end of the hydraulic pump 64 is fixedly mounted with the ink nozzle 65. The front end of the ink nozzle 65 is arranged opposite to the top of the cargo conveyor 2.

[0032] After the cylinder 61 is connected to the power supply and started, it pushes the upper support platform 62 up and down to change the inkjet printer's inkjet height. After the electric push rod 63 is connected to the power supply, it can drive the front hydraulic pump 64 to slide back and forth, thereby controlling the distance between the ink nozzle 65 and the goods that need to be coded. After the cargo conveyor belt 2 is connected to the power supply and started, it can transport the goods that need to be coded. In this way, when the goods move to the bottom of the laser identifier 8, the laser identifier 8 senses the presence of the coded goods and will use the guide to transmit the signal to the inkjet printer control host 7. After receiving the signal sent by the laser identifier 8, the inkjet printer control host 71 will start the hydraulic pump 64. The hydraulic pump 64 generates pressure to push the internally stored ink to be sprayed forward from the ink nozzle 65, and then the cargo conveyor belt 2 continues to drive the goods forward. The laser identifier 8 cooperates with the inkjet printer control host 3 to continuously complete the above operations. Through the structure that can automatically feed and automatically identify and start the inkjet printer to complete the inkjet printer operation, the cargo coding speed is accelerated, and ultimately the working efficiency of the high-efficiency inkjet printer is improved.

[0033] Working principle:

[0034] When using a high-efficiency inkjet printer, it can print out pre-set label text and code the produced or packaged goods, making it easier to trace the source if there are any problems with the goods later.

[0035] Ink restriction structure of high-efficiency inkjet printer:

[0036] The sliders 52 on both sides can slide left and right along the inside of the adjustment slot 51, and the first bolt 53 can drive the upper end of the connecting plate 54 to be screwed into the slider 52 for fixing. At the same time, the first bolt 53 will be pressed against the inner side of the adjustment slot 51 after passing through the slider 52, so that the position of the slider 52 and the connecting plate 54 can be fixed. The other end of the connecting plate 54 extends below the top plate 4. The blocking plate 55 can be fixed to the inner side of the connecting plate 54 by screwing the two second bolts 56. The blocking plate 55 will be vertically set below the top plate 4. At the same time, the blocking plate 55 can intercept in front of the ink nozzle 65. When the ink nozzle sprays ink but there is no goods in front, the ink will be blocked by the blocking plate 55 and will not splash to the outside.

[0037] Automatic coding process of efficient inkjet printer:

[0038] After the cylinder 61 is connected to the power supply and started, it can push the upper support platform 62 up and down to change the coding height of the inkjet printer. After the electric push rod 63 is connected to the power supply, it can drive the front hydraulic pump 64 to slide back and forth, thereby controlling the distance between the ink nozzle 65 and the goods that need to be coded. After the cargo conveyor belt 2 is connected to the power supply and started, it can transport the goods that need to be coded. In this way, when the goods move to the bottom of the laser identifier 8, the laser identifier 8 senses the presence of the coded goods and will use the guide to transmit the signal to the coding control host 7. After receiving the signal sent by the laser identifier 8, the coding control host 71 will start the hydraulic pump 64. The hydraulic pump 64 generates pressure to push the internally stored ink out of the ink nozzle 65 to spray forward, and then the cargo conveyor belt 2 continues to drive the goods forward, and the laser identifier 8 cooperates with the coding control host 3 to continuously complete the above operations.

[0039] Example 2:

[0040] See also Figure 1-6 In this embodiment, a high-efficiency inkjet printer further includes an inkjet printer ink supply structure 7 provided below the hydraulic pump 64. The inkjet printer ink supply structure 7 includes a feeding port 71 and a feeding pipe 73. The feeding pipe 73 is fixedly connected to the lower end of the hydraulic pump 64. The other end of the feeding pipe 73 is fixedly connected to the inside of the inkjet printer control host 3. An ink supply pump 72 is fixedly installed on the outer wall of the feeding pipe 73. After the ink supply pump 72 is connected to the power supply and started, it can supply ink to the hydraulic pump 64 along the feeding pipe 73. Through the hydraulic pump 64 is used to squeeze and spray out the ink, and the feeding port 71 is fixedly opened on the outer wall of the inkjet printer control host 3. An ink cartridge for carrying ink is provided inside the inkjet printer control host 3. The feeding port 71 can replenish the ink raw materials inside the ink cartridge. The top plate 4 is fixedly installed on the top of the support platform 62, and a plurality of self-locking universal wheels 9 are fixedly installed at the lower end of the inkjet printer base 1. The self-locking universal wheels 9 belong to the more mature technology at this stage. They are made of wheels that can be locked and fixed on the ground at any time, and can also push the upper inkjet printer base 1 to move.

[0041] Working principle:

[0042] The other end of the feed pipe 73 is fixedly connected to the interior of the inkjet printer control host 3. An ink supply pump 72 is fixedly installed on the outer wall of the feed pipe 73. After the ink supply pump 72 is connected to the power supply and started, it can supply ink to the hydraulic pump 64 along the feed pipe 73, and the ink is squeezed and sprayed out through the hydraulic pump 64. The feeding port 71 is fixedly opened on the outer wall of the inkjet printer control host 3. An ink cartridge that carries ink is provided inside the inkjet printer control host 3. The feeding port 71 can replenish the ink raw materials inside the ink cartridge.

[0043] While the present invention has been shown and described with reference to preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein within the scope of the claims.

Claims

1. A high-efficiency inkjet printer, comprising an inkjet printer base (1), a cargo conveyor belt (2) and a top plate (4), wherein the inkjet printer base (1) is fixedly arranged on a side of an outer wall away from the cargo conveyor belt (2), and is characterized in that: A coding control host (3) is fixedly mounted above the coding machine base (1), a coding ink limiting structure (5) is provided at the front end of the top plate (4), and an automatic coding structure (6) is provided above the coding machine base (1).

2. The high-efficiency inkjet printer according to claim 1, characterized in that: The inkjet printing ink limiting structure (5) comprises an adjusting groove (51) and a blocking plate (55), wherein the adjusting groove (51) is fixedly opened on both sides of the outer wall of the top plate (4), the inner sides of the two adjusting grooves (51) are slidably connected to sliders (52), the inner sides of the two sliders (52) are threadedly connected to first bolts (53), the other ends of the first bolts (53) are tightly abutted against the inner wall of the adjusting groove (51), a connecting plate (54) is movably sleeved between the inner side of the first bolt (53) and the outer wall of the slider (52), the inner sides of the other ends of the two connecting plates (54) are threadedly connected to two second bolts (56), and the inner sides of the two second bolts (56) are threadedly connected to the blocking plate (55).

3. The high-efficiency inkjet printer according to claim 2, characterized in that: The lower end of the top plate (4) is fixedly connected to a laser identifier (8), the lower end of the laser identifier (8) is arranged opposite to the upper side of the cargo conveyor belt (2), and the blocking plate (55) is arranged on one side above the cargo conveyor belt (2).

4. The high-efficiency inkjet printer according to claim 1, characterized in that: The automatic inkjet printing structure (6) includes a cylinder (61) and an electric push rod (63), wherein a plurality of the cylinders (61) are fixedly mounted on the top of the inkjet printer base (1), the tops of the plurality of the cylinders (61) are fixedly connected to a support platform (62), an electric push rod (63) is fixedly mounted above the support platform (62), a hydraulic pump (64) is fixedly mounted on the front end of the electric push rod (63), an ink nozzle (65) is fixedly mounted on the end of the hydraulic pump (64), and the front end of the ink nozzle (65) is arranged opposite to the top end of the cargo conveyor belt (2).

5. The high-efficiency inkjet printer according to claim 4, characterized in that: An inkjet printer ink supply structure (7) is provided below the hydraulic pump (64), and the inkjet printer ink supply structure (7) includes a feeding port (71) and a feeding pipe (73), wherein the feeding pipe (73) is fixedly connected to the lower end of the hydraulic pump (64), and the other end of the feeding pipe (73) is fixedly connected to the interior of the inkjet printer control host (3), an ink supply pump (72) is fixedly installed on the outer wall of the feeding pipe (73), and the feeding port (71) is fixedly opened on the outer wall of the inkjet printer control host (3).

6. The high-efficiency inkjet printer according to claim 1, characterized in that: The top plate (4) is fixedly mounted on the top of the support platform (62), and a plurality of self-locking universal wheels (9) are fixedly mounted on the lower end of the inkjet printer base (1).

Citation Information

Patent Citations

  • Efficient inkjet printing machine

    CN206678584U