Nozzle mounting mechanism for crystal mark printer

By designing a 60-degree tilt-mounted nozzle installation mechanism on the crystal standard printer, the problem of slow printing speed caused by traditional vertical installation is solved, and the stability and printing speed of the nozzle are improved.

CN223131638UActive Publication Date: 2025-07-22GUANGZHOU TUSHENG DIGITAL EQUIP CO LTD
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Patent Information

Application Number
CN202422616515.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-07-22
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

The vertical installation of the traditional Epson I3200U1HD nozzle on a crystal standard printer causes slow printing speed and reduces printing efficiency.

Method used

A nozzle mounting mechanism for crystal standard printers is designed. By tilting the adjustment seat 60 degrees relative to the moving assembly and setting the nozzle in its inner cavity, the nozzle is driven to move the nozzle in 60 degrees, thereby increasing the length of the nozzle hole.

Benefits of technology

Improves the stability and printing speed of the nozzle, enhances the length of each section and column of nozzle holes, thereby increasing the printing speed.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223131638U_ABST
    Figure CN223131638U_ABST
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Abstract

The utility model discloses a nozzle mounting mechanism for a crystal mark printer, and relates to the technical field of printer equipment. The spray head mounting mechanism for the crystal mark printer comprises a moving assembly, an adjusting seat is arranged in an inner cavity of the moving assembly, the overlook angle of the adjusting seat is 60 degrees relative to the overlook angle of the moving assembly, a spray head is arranged in an inner cavity of the adjusting seat, the adjusting seat comprises a convex plate inserted into the inner cavity of the moving assembly, and the convex plate is connected with the moving assembly. According to the utility model, the adjusting seat is fixedly arranged on the moving assembly at an angle of 60 degrees, so that the spray head is also arranged at an angle of 60 degrees relative to the moving assembly, and when the moving assembly moves, the spray head can be synchronously driven to move at an angle of 60 degrees; at the moment, the nozzle can increase the length of each section and each column of spray holes in the nozzle, and then the printing speed can be increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of printer equipment, and particularly relates to a nozzle installation mechanism for a crystal label printer. Background Technique

[0002] The Epson I3200U1HD nozzle is a high-performance industrial nozzle, commonly used in the UV printing field. It performs excellently especially when making high-precision and high-quality printing products such as crystal labels. The I3200U1HD nozzle has a resolution of up to 600 npi (dots per inch), capable of achieving fine printing effects, and is very suitable for the printing requirements of crystal labels and other products that require high-definition patterns. It also supports 2 to 4 levels of variable ink droplet technology, and the ink droplet size can be selected from 3.8 pl to 12.5 pl, making the printed pattern have rich layering and delicate details.

[0003] However, the traditional Epson I3200U1HD nozzle crystal labels are all vertically installed, resulting in a slow printing speed and thus reducing its printing efficiency. Therefore, we propose a nozzle installation mechanism for a crystal label printer to solve the above existing problems. Content of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides a nozzle installation mechanism for a crystal label printer, which solves the problem that the traditional Epson I3200U1HD nozzle crystal labels are all vertically installed, resulting in a slow printing speed and thus reducing its printing efficiency.

[0005] To achieve the above objectives, the utility model is realized through the following technical solutions: A nozzle installation mechanism for a crystal label printer includes a moving component, an adjustment seat is arranged in the inner cavity of the moving component, the top view angle of the adjustment seat is set at 60 degrees relative to the top view angle of the moving component, and a nozzle is arranged in the inner cavity of the adjustment seat.

[0006] Preferably, the adjustment seat includes a convex plate inserted into the inner cavity of the moving component. An installation groove for installing the nozzle is opened at the middle position on the top surface of the convex plate. A plurality of internal threaded tubes for installing and fixing the nozzle are arranged on the top surface of the convex plate and around the installation groove;

[0007] First installation holes are opened at the four corner positions on the top surface of the convex plate. Installation screws are installed in the inner cavities of the first installation holes, and the bottom ends of the installation screws are connected to the moving component.

[0008] Preferably, positioning grooves for clamping the nozzle are opened on both sides of the inner cavity of the installation groove.

[0009] Preferably, gaps are formed on both sides of the top surface of the convex plate and at the middle position. Pressing plates are arranged in the cavities of the two gaps. On both sides of the bottom surface of the cavities of the two gaps, first screw holes are formed, and the two first screw holes extend to the bottom surface of the convex plate.

[0010] On both sides of the top surface of the pressing plate, limit screws are arranged, and the bottom ends of the limit screws are connected to the inner cavities of the first screw holes.

[0011] Preferably, the moving component includes a trolley bottom plate. A clamping groove is formed on the top surface of the trolley bottom plate, and a through hole is formed on the bottom surface of the inner cavity of the clamping groove.

[0012] At the four corner positions of the inner cavity of the clamping groove, second screw holes for installing the installation screws are formed. On both sides of the side walls of the two short sides of the trolley bottom plate, third screw holes are formed.

[0013] Preferably, the clamping groove is formed in an inclined manner, and the long side in the top view of the clamping groove and the long side in the top view of the trolley bottom plate are arranged at 60 degrees.

[0014] Beneficial effects

[0015] The utility model provides a nozzle installation mechanism for a crystal label printer. Compared with the prior art, the following beneficial effects are achieved:

[0016] For the nozzle installation mechanism of the crystal label printer, through the moving component, it can not only be installed on the moving trolley of the printer, but also the adjusting seat can be installed and fixed at 60 degrees. Then, through the adjusting seat, the nozzle can be stably fixed. Since the adjusting seat is installed and fixed at 60 degrees on the moving component, at this time, the nozzle is also installed at 60 degrees relative to the moving component. Therefore, when the moving component moves, the nozzle can be synchronously driven to move in a 60-degree manner. At this time, the nozzle can increase the length of each row and each column of spray holes on it, thereby improving the printing speed. Brief description of the drawings

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 It is a schematic diagram of the bottom surface structure of the utility model;

[0019] Figure 3 It is an exploded structure schematic diagram of the utility model;

[0020] Figure 4 It is a schematic diagram of the structure of the adjusting seat of the utility model;

[0021] Figure 5 It is a schematic diagram of the bottom surface structure of the adjusting seat of the utility model;

[0022] Figure 6 Schematic diagram of the mobile component structure of the present utility model;

[0023] Figure 7 Schematic diagram of the bottom structure of the mobile component of the present utility model.

[0024] In the figure: 1, nozzle; 2, adjustment seat; 21, convex plate; 22, mounting groove; 23, positioning groove; 24, internal thread tube; 25, first mounting hole; 26, notch; 27, pressing plate; 28, first screw hole; 3, mobile component; 31, trolley bottom plate; 32, card slot; 33, through hole; 34, second screw hole; 35, third screw hole. Specific embodiments

[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0026] Please refer to Figures 1-3 , the present utility model provides a technical solution: a nozzle mounting mechanism for a crystal label printer, including a mobile component 3. An adjustment seat 2 is arranged in the inner cavity of the mobile component 3. The top view angle of the adjustment seat 2 is set at 60 degrees relative to the top view angle of the mobile component 3. A nozzle 1 is arranged in the inner cavity of the adjustment seat 2;

[0027] Through the mobile component 3, it can not only be installed on the mobile trolley of the printer, but also the adjustment seat 2 can be installed and fixed at 60 degrees. Then, through the adjustment seat 2, the nozzle 1 can be stably fixed. Since the adjustment seat 2 is installed and fixed at 60 degrees on the mobile component 3, at this time, the nozzle 1 is also installed at 60 degrees relative to the mobile component 3. Therefore, when the mobile component 3 moves, the nozzle 1 can be synchronously driven to move in a 60-degree manner. At this time, the nozzle 1 can increase the length of each row and each column of spray holes on it, thereby improving the printing speed.

[0028] Refer to Figures 3-5, the adjustment seat 2 includes a convex plate 21 inserted into the inner cavity of the moving component 3. An installation groove 22 for installing the nozzle 1 is provided at the middle position on the top surface of the convex plate 21. A plurality of internal threaded tubes 24 for installing and fixing the nozzle 1 are arranged on the top surface of the convex plate 21 and around the installation groove 22. First installation holes 25 are provided at the four corner positions on the top surface of the convex plate 21. Installation screws are installed in the inner cavities of the first installation holes 25, and the bottom ends of the installation screws are connected to the moving component 3. Positioning grooves 23 for clamping the nozzle 1 are provided on both sides of the inner cavity of the installation groove 22. Notches 26 are provided at the middle positions on both sides of the top surface of the convex plate 21. Pressure plates 27 are arranged in the inner cavities of the two notches 26. First screw holes 28 are provided on both sides of the bottom surface of the inner cavities of the two notches 26, and the two first screw holes 28 extend to the bottom surface of the convex plate 21. Limiting screws are arranged on both sides of the top surface of the pressure plate 27, and the bottom ends of the limiting screws are connected to the inner cavities of the first screw holes 28;

[0029] Through the convex plate 21 in the adjustment seat 2, it can be inserted into the inner cavity of the moving component 3, and the nozzle 1 can be clamped and installed through the installation groove 22 and the positioning groove 23. And through the internal threaded tube 24, it can cooperate with the fixing screw on the nozzle 1, so as to be able to install and fix the nozzle 1, and then improve the stability of the use of the nozzle 1. At the same time, through the first installation hole 25, it can cooperate with the installation screw to fix the convex plate 21 on the moving component 3, and then improve the stability of the use of the convex plate 21. Through the pressure plate 27, the wiring extended from the nozzle 1 can be clamped and positioned through the first screw hole 28 and the limiting screw, and then the wiring on the nozzle 1 can be prevented from loosening.

[0030] Refer to Figures 3-7 , the moving component 3 includes a trolley bottom plate 31. A card slot 32 is provided on the top surface of the trolley bottom plate 31. A through hole 33 is provided on the bottom surface of the inner cavity of the card slot 32. Second screw holes 34 for installing installation screws are provided at the four corner positions of the inner cavity of the card slot 32. Third screw holes 35 are provided on both sides of the side walls of the two short sides of the trolley bottom plate 31. The card slot 32 is arranged in an inclined manner, and the long side of the top view of the card slot 32 and the long side of the top view of the trolley bottom plate 31 are arranged at 60 degrees;

[0031] Through the trolley bottom plate 31 in the moving component 3, it can be fixed on the printer moving trolley through the second screw hole 34, and the convex plate 21 can be clamped and installed through the card slot 32 and the through hole 33. And through the second screw hole 34, the installation screw can be installed, so as to be able to install and fix the convex plate 21, and then improve the stability of the use of the convex plate 21. Since the card slot 32 is arranged in an inclined manner, and the long side of the top view of the card slot 32 and the long side of the top view of the trolley bottom plate 31 are arranged at 60 degrees, the nozzle 1 located on the convex plate 21 is also arranged at 60 degrees. At this time, the nozzle 1 can increase the length of each row and each column of spray holes on it, and then improve the printing speed.

[0032] During operation, by moving component 3, it can be installed on the moving trolley of the printer, and the adjusting seat 2 can be installed and fixed at an angle of 60 degrees. Then, through the adjusting seat 2, the nozzle 1 can be stably fixed. Since the adjusting seat 2 is installed and fixed on the moving component 3 at an angle of 60 degrees, the nozzle 1 is also installed at an angle of 60 degrees relative to the moving component 3 at this time. Therefore, when the moving component 3 moves, it can synchronously drive the nozzle 1 to move at an angle of 60 degrees. At this time, the nozzle 1 can increase the length of each row and column of spray holes on it, thereby improving the printing speed.

[0033] Through the convex plate 21 in the adjusting seat 2, it can be inserted into the inner cavity of the moving component 3 and can also be snap-fitted and installed on the nozzle 1 through the installation groove 22 and the positioning groove 23. And through the internal thread pipe 24, it can cooperate with the fixing screw on the nozzle 1, so as to be able to install and fix the nozzle 1, thereby improving the stability of the nozzle 1 during use. At the same time, through the first installation hole 25, it can cooperate with the installation screw to fix the convex plate 21 on the moving component 3, thereby improving the stability of the convex plate 21 during use. Through the pressing plate 27, the wiring harness extended from the nozzle 1 can be clamped and positioned through the first screw hole 28 and the limit screw, thereby preventing the wiring harness on the nozzle 1 from loosening.

[0034] Through the trolley bottom plate 31 in the moving component 3, it can be fixed on the moving trolley of the printer through the second screw hole 34, and can also be snap-fitted and installed on the convex plate 21 through the card slot 32 and the through hole 33. And through the second screw hole 34, the installation screw can be installed, so as to be able to install and fix the convex plate 21, thereby improving the stability of the convex plate 21 during use. Since the card slot 32 is opened in an inclined manner, and the long side of the top view of the card slot 32 and the long side of the top view of the trolley bottom plate 31 are set at an angle of 60 degrees, the nozzle 1 located on the convex plate 21 is also set at an angle of 60 degrees at this time. At this time, the nozzle 1 can increase the length of each row and column of spray holes on it, thereby improving the printing speed.

[0035] In summary, by installing and fixing the adjusting seat 2 on the moving component 3 at an angle of 60 degrees, the nozzle 1 is also installed at an angle of 60 degrees relative to the moving component 3 at this time. Therefore, when the moving component 3 moves, it can synchronously drive the nozzle 1 to move at an angle of 60 degrees. At this time, the nozzle 1 can increase the length of each row and column of spray holes on it, thereby improving the printing speed.

[0036] At the same time, the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

Claims

1. A nozzle mounting mechanism for a crystal label printer, characterized in that: It includes a moving component (3). An adjusting seat (2) is arranged in the inner cavity of the moving component (3). The downward viewing angle of the adjusting seat (2) is set at 60 degrees relative to the downward viewing angle of the moving component (3). A spray head (1) is arranged in the inner cavity of the adjusting seat (2).

2. The nozzle mounting mechanism for a crystal label printer according to claim 1, characterized in that: The adjusting seat (2) includes a convex plate (21) inserted into the inner cavity of the moving component (3). An installation groove (22) for installing the spray head (1) is formed in the middle of the top surface of the convex plate (21). A plurality of internal threaded pipes (24) for installing and fixing the spray head (1) are arranged on the top surface of the convex plate (21) and around the installation groove (22). First installation holes (25) are formed at the four corner positions of the top surface of the convex plate (21). Installation screws are installed in the inner cavities of the first installation holes (25), and the bottom ends of the installation screws are connected to the moving component (3).

3. The nozzle mounting mechanism for a crystal label printer according to claim 2, wherein: Positioning grooves (23) for clamping the spray head (1) are formed on both sides of the inner cavity of the installation groove (22).

4. The nozzle mounting mechanism for a crystal label printer according to claim 2, characterized in that: Notches (26) are formed in the middle of both sides of the top surface of the convex plate (21). Pressure plates (27) are arranged in the inner cavities of the two notches (26). First screw holes (28) are formed on both sides of the bottom surface of the inner cavities of the two notches (26), and the two first screw holes (28) extend to the bottom surface of the convex plate (21). Limit screws are arranged on both sides of the top surface of the pressure plate (27), and the bottom ends of the limit screws are connected to the inner cavities of the first screw holes (28).

5. The nozzle mounting mechanism for a crystal label printer according to claim 2, characterized in that: The moving component (3) includes a trolley bottom plate (31). A clamping groove (32) is formed on the top surface of the trolley bottom plate (31). A through hole (33) is formed on the bottom surface of the inner cavity of the clamping groove (32). Second screw holes (34) for installing the installation screws are formed at the four corner positions of the inner cavity of the clamping groove (32). Third screw holes (35) are formed on both sides of the side walls of the two short sides of the trolley bottom plate (31).

6. The nozzle mounting mechanism for a crystal label printer according to claim 5, characterized in that: The clamping groove (32) is formed in an inclined manner, and the long side of the downward view of the clamping groove (32) is set at 60 degrees relative to the long side of the downward view of the trolley bottom plate (31).