Glass silk-screen device

By designing an automated glass silk-screen printing device, the problems of low efficiency and high labor costs in the existing technology are solved, the automatic positioning and cleaning of the glass are realized, the silk-screen quality is improved, and the cost is reduced by multiple uses of ink and convenient replacement of scrapers.

CN223370341UActive Publication Date: 2025-09-23GUANGDONG LIANGXING NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202423107215.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-09-23
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing glass screen printing equipment is inefficient, has high labor costs, and is difficult to achieve automated transportation and precise positioning, resulting in a high rate of defective products.

Method used

A glass screen printing device is designed, which includes a moving component, a positioning component, a cleaning component, an ink filling component, an ink pushing component, a driving component and an installation component. Through motor drive and automatic control, the device can realize the positioning and cleaning of the glass, the collection and multiple utilization of ink, and the replacement of the scraper, thereby improving production efficiency and reducing costs.

Benefits of technology

It realizes the automatic positioning and cleaning of glass, improves the quality of silk screen printing, reduces labor costs, reduces the occurrence of defective products, and reduces the overall cost of use through multiple uses of ink and convenient replacement of scrapers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass silk-screen device, and particularly relates to the technical field of silk-screen devices, which comprises a moving component, the upper part of the moving component is fixedly connected with a control panel, the upper part of the moving component is fixedly connected with a positioning component, the upper part of the positioning component is fixedly connected with a cleaning component, and the upper part of the moving component is fixedly connected with an ink loading component. The lower portion of the ink containing assembly is slidably connected with an ink pushing assembly, the upper portion of the ink containing assembly is fixedly connected with a driving assembly, and the inner surface of the ink containing assembly is fixedly connected with a net plate. According to the glass silk-screen device disclosed by the utility model, the glass can be positioned, corrected and wiped to adjust the state of the glass to be optimal while the glass is moved through the designed positioning assembly and cleaning assembly, so that the possibility of defective products during silk-screen is reduced; and the ink containing assembly can collect ink for silk-screen printing for use, so that the use frequency of the ink is increased, and the cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of screen printing devices, in particular to a glass screen printing device. Background Art

[0002] With the continuous development of society and the rapid advancement of scientific and technological innovation, the field of mechanical technology has also been widely used in many production and manufacturing fields and real life. For example, glass. Now with the improvement of people's living standards, glass has been integrated into people's daily lives and can be seen everywhere. In order to meet the needs of customers, it is often necessary to engrave patterns on glass. The technology commonly used to engrave patterns on glass is silk screen printing. Silk screen printing is a process of squeezing the hanging plate during printing to transfer the ink through the mesh that does not match the image and text to the substrate, forming the same image and text as the original. Most of the existing silk screens are printed manually by skilled workers. This printing method is inefficient and cannot adapt to large-scale production. A small number of large enterprises use dedicated silk screen printing equipment for printing, but these equipment have complex structures, resulting in high manufacturing costs and difficult for small and medium-sized enterprises to apply.

[0003] Chinese Patent Publication No. CN206067136U discloses a glass silk-screen printing device, which mainly includes a workbench for placing glass and a movable frame slidably connected to the workbench. The movable frame is provided with supporting legs on both sides, and the two supporting legs are provided with a crossbeam spanning the two supporting legs. At the same time, the crossbeam is provided with a plurality of lifting cylinders arranged at evenly spaced intervals in the transverse direction. The lower end of the piston rod of the lifting cylinder is connected to a connecting member, and the lower side of the connecting member has a groove for connecting a clamp for clamping a scraper. The scraper is used to evenly apply paint on the glass placed on the workbench in conjunction with the forward and backward movement of the movable frame on the workbench. The movable frame for silk-screen printing of the utility model has a simple structure, with two sides connected to guide rails, and a lifting cylinder is provided on the frame. The scraper for silk-screen printing is connected to the lower side of the cylinder. The scraper is evenly applied to the paint by the forward and backward movement of the movable frame, completing the silk-screen printing. The simple structure of the device makes its manufacturing cost low, and it is suitable for small and medium-sized enterprises.

[0004] However, the glass screen printing device described in the above patent document is complicated and inefficient in actual use. It cannot automatically transport the glass and requires manual loading and unloading, which increases labor costs. In addition, the glass still needs to be manually positioned, which may result in positioning errors, thereby increasing the occurrence of defective products. Utility Model Content

[0005] The main purpose of the utility model is to provide a glass screen printing device, which can effectively solve the problems of labor cost and glass positioning.

[0006] In order to achieve the above purpose, the technical solution adopted by the utility model is:

[0007] A glass silk-screen printing device comprises a moving component, wherein the upper portion of the moving component is fixedly connected to a control panel, the upper portion of the moving component is fixedly connected to glass, the upper portion is fixedly connected to a positioning component, the upper portion of the positioning component is fixedly connected to a cleaning component, the upper portion of the moving component is fixedly connected to an ink filling component, the lower portion of the ink filling component is slidably connected to an ink pushing component, the upper portion of the ink filling component is fixedly connected to a driving component, the outer surface of the driving component is slidably connected to a mounting component, and the inner surface of the ink filling component is fixedly connected to a screen.

[0008] Preferably, the moving component includes a base, the four corners of the lower end of the base are fixedly connected to support legs, the rear side wall of the inner cavity of the base is fixedly connected to a motor 1, the output end of the motor 1 is fixedly connected to a pulley through a coupling, there are four pulleys, one end of the inner cavity of the base is rotatably connected to a shaft, the front pulley and the rear pulley are fixedly connected by the shaft, and the outer surfaces of the pulleys at the same end are commonly wrapped with a belt.

[0009] Preferably, the positioning assembly includes a support frame, the lower end of the support frame is fixedly connected to the upper end of the base, and the top wall of the inner cavity of the support frame is rotatably connected to a roller.

[0010] Preferably, the cleaning assembly includes a support plate, the lower end of the support plate is fixedly connected to the upper end of the support frame, the lower end of the support plate is fixedly connected to two connecting plates, and the ends of the two connecting plates close to each other are rotatably connected to a plurality of roller rags.

[0011] Preferably, the ink filling assembly includes an electric telescopic rod, the lower ends of the two electric telescopic rods are fixedly connected to the upper end of the base, the upper ends of the two electric telescopic rods are fixedly connected to a mounting plate 1, the front part of the upper end of the mounting plate 1 is provided with an ink storage groove extending from the upper end to the lower end, the left and right parts of the upper end of the mounting plate 1 are provided with movable grooves, and the rear part of the upper end of the mounting plate 1 is provided with a dispersion groove.

[0012] Preferably, the ink pushing assembly includes a spring 1, the upper end of the spring 1 is fixedly connected to the lower end of the mounting plate, the lower end of the spring is fixedly connected to a pushing block, and the pushing block is slidably connected to the ink storage tank.

[0013] Preferably, the driving assembly includes a second mounting plate, the lower ends of the two second mounting plates are fixedly connected to the first mounting plate, the second mounting plate, the front end of the second mounting plate located in the front is fixedly connected to the second motor, the output end of the second motor is fixedly connected to the reciprocating screw through a coupling, the ends of the two second mounting plates close to each other are commonly fixedly connected to two limit rods, and the rear end of the reciprocating screw is rotatably connected to the front end of the second mounting plate located at the rear.

[0014] Preferably, the mounting assembly includes a mounting plate three, the three holes provided on the mounting plate three are respectively slidably connected to the outer surface of the reciprocating screw and the outer surfaces of the two limit rods, the inner cavity of the mounting plate three is slidably connected to a scraper, the right side wall of the inner cavity of the mounting plate three is fixedly connected to a plurality of clips, the inner surfaces of the plurality of clips are slidably connected to pins, the upper end of the pin is fixedly connected to a connecting rod, the end of the pin and the inner cavity of the mounting plate three that are close to each other is commonly fixedly connected to a spring two, and the upper end of the connecting rod is fixedly connected to a pull pin.

[0015] Preferably, the two moving grooves both have a slope from back to front, and the dispersion groove has a slope from the center to both sides.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] The utility model can realize positioning correction and wiping of the glass while moving the glass by means of the positioning component and the cleaning component, thereby adjusting the state of the glass to the best, thereby reducing the possibility of defective products during silk screen printing, and the ink filling component can collect the ink used for silk screen printing, thereby increasing the number of times the ink is used and reducing costs.

[0018] The utility model can realize replacement of the scraper when it is damaged by providing the installation component, thereby avoiding the situation where the scraper cannot be replaced when the scraper is damaged, resulting in replacement of most parts, thereby reducing the use cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0020] Figure 2 It is a schematic cross-sectional view of the overall structure of the present invention;

[0021] Figure 3 This is a schematic cross-sectional view of the overall structure of the present invention from another perspective;

[0022] Figure 4 This is a schematic diagram of the overall structure of the ink pushing component of the utility model;

[0023] Figure 5 For the utility model Figure 3 Enlarged schematic diagram of point A in the middle.

[0024] In the figure: 1. Moving assembly; 11. Base; 12. Support leg; 13. Motor 1; 14. Pulley; 15. Shaft; 16. Belt; 2. Control panel; 3. Glass; 4. Cleaning assembly; 41. Support plate; 42. Connecting plate; 43. Roller cloth; 5. Positioning assembly; 51. Support frame; 52. Roller; 6. Ink loading assembly; 61. Mounting plate 1; 62. Ink storage tank; 63. Moving tank; 64. Dispersion tank; 65. Electric telescopic rod; 7. Ink pushing assembly; 71. Push block; 72. Spring 1; 8. Driving assembly; 81. Motor 2; 82. Mounting plate 2; 83. Reciprocating screw; 84. Limit rod; 9. Mounting assembly; 91. Mounting plate 3; 92. Pull pin; 93. Spring 2; 94. Connecting rod; 95. Latch; 96. Buckle; 97. Scraper; 10. Screen. DETAILED DESCRIPTION

[0025] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0026] like Figure 1 As shown, a glass screen printing device includes a moving component 1, a control panel 2 is fixedly connected to the upper portion of the moving component 1, a glass 3 is fixedly connected to the upper portion of the moving component 1, a positioning component 5 is fixedly connected to the upper portion of the positioning component 5, a cleaning component 4 is fixedly connected to the upper portion of the moving component 1, an ink filling component 6 is fixedly connected to the upper portion of the ink filling component 6, an ink pushing component 7 is slidably connected to the lower portion of the ink filling component 6, a driving component 8 is fixedly connected to the upper portion of the ink filling component 6, a mounting component 9 is slidably connected to the outer surface of the driving component 8, and a screen 10 is fixedly connected to the inner surface of the ink filling component 6

[0027] When implementing this solution, the operator first places the glass 3 on the upper part of the moving component 1, and then pours ink into the ink filling component 6. Thereafter, the moving component 1 is started through the control panel 2 to move the glass 3. When the glass 3 moves to the positioning component 5, the positioning component 5 will correct the position of the glass 3. At the same time, the cleaning component 4 will wipe off the dust on the glass 3. When the glass 3 moves to the bottom of the screen 10, the ink filling component 6 moves downward to the surface of the glass 3. At this time, the ink pushing component 7 will move upward to push the ink out of the ink filling component 6. After that, the driving component 8 can be started through the control panel 2. The driving component 8 will screen-print the ink on the glass 3 through the screen 10. Finally, the glass 3 can be taken out.

[0028] Specifically, in order to move the glass 3, as Figure 1 and Figure 2As shown, in this solution, the moving component 1 includes a base 11, and the four corners of the lower end of the base 11 are fixedly connected to support legs 12, and the rear side wall of the inner cavity of the base 11 is fixedly connected to a motor 13, and the output end of the motor 13 is fixedly connected to a pulley 14 through a coupling. There are four pulleys 14, and one end of the inner cavity of the base 11 that is close to each other is rotatably connected to a shaft 15. The front pulley 14 and the rear pulley 14 are fixedly connected by the shaft 15, and the outer surfaces of the pulleys 14 at the same end are commonly wound with a belt 16.

[0029] When this solution is implemented, the operator first starts the motor 13 through the control panel 2. At this time, the motor 13 will drive the pulley 14, the shaft 15 and the belt 16 to rotate together, so that the glass 3 can be moved.

[0030] Specifically, in order to correct and clean the glass 3, as Figure 2 As shown, in this solution, the positioning assembly 5 includes a support frame 51, the lower end of the support frame 51 is fixedly connected to the upper end of the base 11, and the top wall of the inner cavity of the support frame 51 is rotatably connected to a roller 52.

[0031] For further information, see Figure 2 The cleaning component 4 includes a support plate 41, the lower end of the support plate 41 is fixedly connected to the upper end of the support frame 51, the lower end of the support plate 41 is fixedly connected to two connecting plates 42, and the ends of the two connecting plates 42 close to each other are rotatably connected to a plurality of roller rags 43.

[0032] When this solution is implemented, when the glass 3 passes through the positioning assembly 5, the plurality of rollers 52 rotate under the movement of the glass 3 so that the glass 3 can continue to move. Since the rollers 52 rotate in place, the position of the glass 3 will be changed so that the subsequent silk screen printing orientation will not be wrong.

[0033] The roller cloth 43 can clean the surface of the glass 3 while the glass 3 changes its orientation, and wipe off the dust on the surface of the glass 3, thereby improving the quality of the silk screen.

[0034] Specifically, in order to be able to screen print glass 3, as Figure 2 、 Figure 3 As shown in the cleaning assembly 4, in this scheme, the ink filling assembly 6 includes an electric telescopic rod 65, the lower ends of the two electric telescopic rods 65 are fixedly connected to the upper end of the base 11, and the upper ends of the two electric telescopic rods 65 are fixedly connected to a mounting plate 61. The front part of the upper end of the mounting plate 61 is provided with an ink storage groove 62 extending from the upper end to the lower end, the left and right parts of the upper end of the mounting plate 61 are provided with movable grooves 63, and the rear part of the upper end of the mounting plate 61 is provided with a dispersion groove 64.

[0035] For further information, see Figure 4 The ink pushing assembly 7 includes a spring 72, the upper end of the spring 72 is fixedly connected to the lower end of the mounting plate 61, the lower end of the spring 72 is fixedly connected to a pushing block 71, and the pushing block 71 is slidably connected to the ink storage tank 62.

[0036] For further information, see Figure 3 The drive assembly 8 includes a mounting plate 82, the lower ends of the two mounting plates 82 are fixedly connected to the mounting plate 1 61, the mounting plate 82, the front end of the mounting plate 82 located in the front is fixedly connected to the motor 81, the output end of the motor 81 is fixedly connected to the reciprocating screw 83 through a coupling, and the ends of the two mounting plates 82 close to each other are fixedly connected to two limit rods 84, and the rear end of the reciprocating screw 83 is rotatably connected to the front end of the mounting plate 82 located in the rear.

[0037] For further information, see Figure 3 The moving grooves 63 all have a slope from back to front, and the dispersion grooves 64 have a slope from the center to both sides.

[0038] During the implementation of this solution, the glass 3 is moved to the right below the screen 10. At this time, the electric telescopic rod 65 is activated through the control panel 2, causing the ink loading assembly 6, ink pushing assembly 7 and driving assembly 8 to descend together. When the screen 10 contacts the surface of the glass 3, the electric telescopic rod 65 is closed. At the same time, the pushing block 71 is pressed by the base 11, so the spring 1 72 contracts, and the pushing block 71 rises to push the ink in the ink tank 62 out. Since the screen 10 is not higher than the mounting plate 1 61, the ink does not appear on the surface of the mounting plate 1 61.

[0039] When the ink is pushed out, the second motor 81 can be started, and the second motor 81 will drive the second mounting plate 82 to rotate, and finally drive the mounting assembly 9 to move back and forth to scrape the ink so that the ink is screen-printed on the glass 3, thus completing the effect of screen printing on the glass 3;

[0040] Since the dispersion groove 64 is raised and has an arc, when the ink scraped by the installation component 9 reaches the dispersion groove 64, the dispersion groove 64 will move the ink to both sides. When it moves to the ink storage groove 62, the ink storage groove 62 will allow the ink to return to the ink storage groove 62, thus achieving multiple uses of ink to avoid waste.

[0041] Specifically, in order to replace the scraper 97, as Figure 5As shown, in this solution, the mounting assembly 9 includes a mounting plate three 91, and the three holes opened in the mounting plate three 91 are respectively slidably connected to the outer surface of the reciprocating screw 83 and the outer surface of the two limit rods 84, and the inner cavity of the mounting plate three 91 is slidably connected to a scraper 97, and the right side wall of the inner cavity of the mounting plate three 91 is fixedly connected to a plurality of clips 96, and the inner surfaces of the plurality of clips 96 are slidably connected to a pin 95, and the upper end of the pin 95 is fixedly connected to a connecting rod 94, and the pin 95 and the end of the inner cavity of the mounting plate three 91 close to each other are commonly fixedly connected to a spring two 93, and the upper end of the connecting rod 94 is fixedly connected to a pull pin 92.

[0042] When this solution is implemented, the operator first pulls the pull pin 92 upward with one hand to shrink the spring 2 93 and the latch 95 leaves the inner cavity of the scraper 97. Then the operator can pull out the scraper 97 with the other hand, and then insert the new scraper 97 into the inner cavity of the mounting plate 3 91. Then, the operator releases both hands at the same time, and the spring 2 93 will stretch again to drive the latch 95 back into the inner cavity of the scraper 97, thus achieving the effect of replacing the scraper 97.

[0043] In summary, the implementation process of this plan is as follows:

[0044] The operator first places the glass 3 on the upper part of the moving component 1, and then pours ink into the ink filling component 6. After that, the motor 13 is started through the control panel 2. At this time, the motor 13 will drive the pulley 14, the shaft 15 and the belt 16 to rotate together, so that the glass 3 can be moved. When the glass 3 moves to the positioning component 5, a number of rollers 52 rotate under the movement of the glass 3 so that the glass 3 can continue to move. Since the rollers 52 rotate in situ, the position of the glass 3 will be changed so that the subsequent silk screen printing orientation will not be wrong. The roller cloth 43 will clean the surface of the glass 3 while the glass 3 changes its orientation, wipe off the dust on the surface of the glass 3, thereby improving the quality of the silk screen printing.

[0045] When the glass 3 moves to just below the screen 10, the electric telescopic rod 65 is activated through the control panel 2, causing the ink loading assembly 6, the ink pushing assembly 7 and the driving assembly 8 to descend together. When the screen 10 contacts the surface of the glass 3, the electric telescopic rod 65 is closed. At the same time, the pushing block 71 is pressed by the base 11, so the spring 1 72 contracts, and the pushing block 71 rises to push out the ink in the ink tank 62. When the ink is pushed out, the motor 2 81 can be started, and the motor 2 81 will drive the mounting plate 2 82 to rotate, and finally drive the mounting assembly 9 to move back and forth to scrape the ink so that the ink is silk-screened on the glass 3, thus completing the silk-screen printing effect on the glass 3.

[0046] Since the dispersion groove 64 is convex and has an arc, the ink scraped by the installation component 9 will move the ink to both sides when it reaches the dispersion groove 64. When it moves to the ink storage groove 62, the ink storage groove 62 will allow the ink to return to the ink storage groove 62, thereby achieving multiple use of ink to avoid waste. The ink filling component 6 moves downward to the surface of the glass 3. At this time, the ink pushing component 7 will move upward to push the ink out of the ink filling component 6. After that, the driving component 8 can be started through the control panel 2. The driving component 8 will pass the ink through the screen plate 10 and screen print it on the glass 3. Finally, the glass 3 can be taken out.

[0047] When the scraper 97 is to be replaced, the operator first pulls the pull pin 92 upward with one hand to shrink the spring 2 93 and the latch 95 leaves the inner cavity of the scraper 97. Then the operator can pull out the scraper 97 with the other hand, and then insert the new scraper 97 into the inner cavity of the mounting plate 3 91. Then, the operator releases both hands at the same time, and the spring 2 93 will stretch again to drive the latch 95 back into the inner cavity of the scraper 97, thus achieving the effect of replacing the scraper 97.

[0048] It should be noted that the specific installation methods of the springs, motors, etc., the connection methods of the circuits, and the control methods used in the present invention are all conventional designs and will not be elaborated in detail in the present invention.

[0049] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in this invention is defined by the appended claims and their equivalents.

Claims

1. A glass screen printing device, comprising a moving assembly (1), characterized in that: The upper portion of the movable component (1) is fixedly connected to a control panel (2), the upper portion of the movable component (1) is fixedly connected to a glass (3), the upper portion is fixedly connected to a positioning component (5), the upper portion of the positioning component (5) is fixedly connected to a cleaning component (4), the upper portion of the movable component (1) is fixedly connected to an ink filling component (6), the lower portion of the ink filling component (6) is slidably connected to an ink pushing component (7), the upper portion of the ink filling component (6) is fixedly connected to a driving component (8), the outer surface of the driving component (8) is slidably connected to a mounting component (9), and the inner surface of the ink filling component (6) is fixedly connected to a screen plate (10).

2. A glass screen printing device according to claim 1, characterized in that: The moving assembly (1) includes a base (11), the four corners of the lower end of the base (11) are fixedly connected to support legs (12), the rear side wall of the inner cavity of the base (11) is fixedly connected to a motor 1 (13), the output end of the motor 1 (13) is fixedly connected to a pulley (14) through a coupling, and there are four pulleys (14). One end of the inner cavity of the base (11) close to each other is rotatably connected to a shaft (15), the front pulley (14) and the rear pulley (14) are fixedly connected through the shaft (15), and the outer surfaces of the pulleys (14) at the same end are commonly wound and connected with a belt (16).

3. A glass screen printing device according to claim 2, characterized in that: The positioning assembly (5) comprises a support frame (51), the lower end of the support frame (51) is fixedly connected to the upper end of the base (11), and the top wall of the inner cavity of the support frame (51) is rotatably connected to a roller (52).

4. A glass screen printing device according to claim 3, characterized in that: The cleaning assembly (4) comprises a support plate (41), the lower end of the support plate (41) being fixedly connected to the upper end of the support frame (51), the lower end of the support plate (41) being fixedly connected to two connecting plates (42), and the ends of the two connecting plates (42) close to each other being rotatably connected to a plurality of roller rags (43).

5. The glass screen printing device according to claim 2, characterized in that: The ink filling assembly (6) includes an electric telescopic rod (65), the lower ends of the two electric telescopic rods (65) are fixedly connected to the upper end of the base (11), the upper ends of the two electric telescopic rods (65) are fixedly connected to a mounting plate (61), the front portion of the upper end of the mounting plate (61) is provided with an ink storage groove (62) extending from the upper end to the lower end, the left and right portions of the upper end of the mounting plate (61) are provided with a moving groove (63), and the rear portion of the upper end of the mounting plate (61) is provided with a dispersion groove (64).

6. A glass screen printing device according to claim 5, characterized in that: The ink pushing assembly (7) includes a spring (72), the upper end of the spring (72) is fixedly connected to the lower end of the mounting plate (61), the lower end of the spring (72) is fixedly connected to a pushing block (71), and the pushing block (71) is slidably connected to the ink storage tank (62).

7. The glass screen printing device according to claim 5, characterized in that: The driving assembly (8) includes a second mounting plate (82), the lower ends of the two second mounting plates (82) are fixedly connected to the first mounting plate (61), the front end of the second mounting plate (82) located at the front is fixedly connected to the second motor (81), the output end of the second motor (81) is fixedly connected to the reciprocating screw (83) through a coupling, and the ends of the two second mounting plates (82) close to each other are fixedly connected to two limit rods (84), and the rear end of the reciprocating screw (83) is rotatably connected to the front end of the second mounting plate (82) located at the rear.

8. The glass screen printing device according to claim 7, characterized in that: The mounting assembly (9) includes a mounting plate three (91), the three holes opened in the mounting plate three (91) are respectively slidably connected to the outer surface of the reciprocating screw (83) and the outer surface of the two limit rods (84), the inner cavity of the mounting plate three (91) is slidably connected to a scraper (97), the right side wall of the inner cavity of the mounting plate three (91) is fixedly connected to a plurality of buckles (96), the inner surfaces of the plurality of buckles (96) are slidably connected to a latch (95), the upper end of the latch (95) is fixedly connected to a connecting rod (94), the latch (95) and the end of the inner cavity of the mounting plate three (91) close to each other are fixedly connected to a spring two (93), and the upper end of the connecting rod (94) is fixedly connected to a pull pin (92).

9. The glass screen printing device according to claim 5, characterized in that: The two moving grooves (63) both have a slope from the back to the front, and the dispersion groove (64) has a slope from the center to both sides.

Citation Information

Patent Citations

  • Glass silk -printing device

    CN206067136U