CN209794838U - Efficient automatic screen printing machine - Google Patents

Efficient automatic screen printing machine Download PDF

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Publication number
CN209794838U
CN209794838U CN201821830702.2U CN201821830702U CN209794838U CN 209794838 U CN209794838 U CN 209794838U CN 201821830702 U CN201821830702 U CN 201821830702U CN 209794838 U CN209794838 U CN 209794838U
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China
Prior art keywords
screen printing
slide rail
plate
support
lifting cylinder
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Active
Application number
CN201821830702.2U
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Chinese (zh)
Inventor
张健
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kunshan Blending Machinery Co Ltd
Original Assignee
Kunshan Blending Machinery Co Ltd
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Priority to CN201821830702.2U priority Critical patent/CN209794838U/en
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Publication of CN209794838U publication Critical patent/CN209794838U/en
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Abstract

The utility model discloses a high-efficiency automatic screen printing machine, a screen printing plate is arranged on a workbench, a base station is arranged on one side of the screen printing plate, a material moving plate and a material feeding plate are arranged on the base station, the base station is provided with a first support, the first support is provided with a first slide rail, the first slide rail is provided with a first mounting plate, the first mounting plate is provided with a first sucker part, the workbench is provided with a second support, the second support is provided with a second slide rail, the second slide rail is provided with a second mounting plate, the second mounting plate is provided with a second sucker part, the horizontal axes of the first slide rail and the second slide rail are mutually vertical, one side of the screen printing plate is provided with a motion platform, the motion platform is provided with a printing mechanism, one side of the motion platform is provided with a clamping part, and the clamping part can move to the position above the screen printing plate; first slide rail and second slide rail mutually perpendicular reduce the shared length of loading attachment, reduce occupation space.

Description

Efficient automatic screen printing machine
Technical Field
The utility model relates to a printing machine technical field specifically is a high-efficient automatic screen printing machine.
Background
The screen printing belongs to stencil printing, and the principle of stencil printing is that when a printing plate (a stencil plate or a stencil base of other plate is provided with perforated paper capable of passing through printing ink) is printed, the printing ink is transferred to a printing stock (paper, ceramic and the like) through the perforations of the stencil plate by certain pressure to form images or characters, and the printing mode has great flexibility and wide applicability.
Along with the improvement of degree of automation, automatic feeding prints and has become the big production trend, generally adopts the mode of assembly line material loading to place the article of waiting to print and carry out automated printing on the silk screen printing bench, but the space that linear type assembly line was occupied is bigger, and the speed of material loading is slower simultaneously, has influenced the efficiency of silk screen printing.
SUMMERY OF THE UTILITY MODEL
the utility model aims at providing a high-efficiency automatic screen printing machine, which has the functions of automatic feeding, automatic printing and automatic blanking, and has high automation degree and high screen printing efficiency; first slide rail and second slide rail mutually perpendicular reduce the shared length of loading attachment, reduce occupation space.
In order to achieve the above purpose, the utility model adopts the technical scheme that: a high-efficiency automatic screen printer comprises a workbench, wherein a screen printing plate is arranged on the workbench, a base station is detachably arranged on one side of the workbench, a material moving plate and a material feeding plate are arranged on the base station, a first support is arranged on one side, far away from the screen printing plate, of the base station, a first slide rail is arranged on the first support, a first mounting plate is arranged on the first slide rail in a sliding manner, a first sucker part is arranged on the first mounting plate and is driven to reciprocate above the material moving plate and the material feeding plate through a first motor arranged on the first support, a second support is arranged on the workbench and is provided with a second slide rail, a second mounting plate is arranged on the second slide rail in a sliding manner, a second sucker part is arranged on the second mounting plate and is driven to reciprocate above the material moving plate and the screen printing plate through a second motor arranged on the second support, the horizontal axis mutually perpendicular of first slide rail and second slide rail, one side of silk screen printing board is equipped with motion platform, the last printing mechanism that is equipped with of motion platform, printing mechanism includes print head and silk screen template, silk screen template detachable sets up in the tight piece of clamp that is located the motion platform both sides, the print head is located the top of silk screen template, and this print head can slide at the up end of silk screen template with silk screen template looks butt, one side of keeping away from the second support on the workstation is equipped with the third support, be equipped with the third slide rail on the third support, the gliding third mounting panel that is equipped with on the third slide rail, be equipped with on the third mounting panel and press from both sides the portion of getting, the portion of getting can move to silk screen printing board top.
As a further optimization, the first suction head part comprises a first lifting cylinder, a first connecting frame and a first suction head, the first lifting cylinder is arranged on the first mounting plate, the first suction head is arranged on the first connecting frame, and the first lifting cylinder drives the first connecting frame to move up and down.
As a further optimization, the second sucking disc part comprises a second lifting cylinder, a second connecting frame and a second sucking head, the second lifting cylinder is arranged on the second mounting plate, the second sucking head is arranged on the second connecting frame, and the second lifting cylinder drives the second connecting frame to move up and down.
As a further optimization, the motion platform comprises a vertical support arranged on the workbench, a vertical slide rail is arranged on the vertical support, a horizontal support is arranged on the vertical slide rail in a sliding manner, a horizontal slide rail is arranged on the horizontal support, a connecting column is arranged on the horizontal slide rail in a sliding manner, and the printing head is arranged on the connecting column.
As a further optimization, the printing head comprises an installation block fixed on the connecting column, a first scraper blade and a second scraper blade are arranged at the lower end of the installation block side by side, and the first scraper blade and the second scraper blade are respectively connected with a third lifting cylinder and a fourth lifting cylinder which are arranged on the installation block.
As a further optimization, the clamping part comprises connecting rods and clamping cylinders, the connecting rods are arranged on the third mounting plate in a sliding manner, and the clamping cylinders are fixed on the connecting rods, and the number of the clamping cylinders is two.
As further optimization, the middle part of base station is equipped with the cavity, move the flitch setting in the cavity top, should move and be equipped with a plurality of spacing waist holes that vertically run through its body on the flitch, be equipped with lifting unit and spacing portion in the cavity, lifting unit includes elevator motor and lifter, the lifter links to each other with moving the flitch, spacing portion includes the mount pad, be equipped with a plurality of telescopic cylinder on the mount pad, be equipped with on the telescopic cylinder with spacing waist hole assorted spacing post, spacing post is at spacing waist downthehole reciprocating motion under telescopic cylinder's drive.
As a further optimization, a limiting baffle is arranged in the concave cavity, a plurality of limiting grooves for containing the limiting columns to move in a reciprocating mode are formed in the limiting baffle, a through hole is formed in the middle of the limiting baffle, and the lifting rod penetrates through the through hole.
As a further optimization, the number of the limiting columns is four to eight.
As a further optimization, the base platform is provided with a dust adhering roller, and the dust adhering roller is driven by a translation motor arranged on the base platform to reciprocate on the upper end face of the material moving plate.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. The automatic feeding, printing and blanking device has the functions of automatic feeding, automatic printing and automatic blanking, and is high in automation degree and high in screen printing efficiency;
2. The first slide rail and the second slide rail are respectively provided with a first sucker part and a second sucker part, and the two sucker parts respectively work independently and are mutually cooperated to improve the feeding rate;
3. The direction with first slide rail and second slide rail sets up to mutually perpendicular's form, can improve the material loading form into "L" type by the linear type, reduces the shared length of loading attachment, reduces occupation space.
Drawings
fig. 1 is a structural diagram of the present invention.
Fig. 2 is the connecting structure diagram of the workbench, the material moving plate and the material loading frame.
Fig. 3 is a connection structure diagram of the moving platform, the printing mechanism and the clamping part of the present invention.
Fig. 4 is a position relationship diagram of the base station and the material moving plate of the present invention.
In the figure, 1, a workbench; 2. screen printing; 3. a base station; 4. a material moving plate; 5. feeding plates; 6. a motion platform; 7. a print head; 9. a gripping section; 11. a first bracket; 12. a first slide rail; 13. a first motor; 14. a first mounting plate; 21. a second bracket; 22. a second slide rail; 23. a second motor; a second mounting plate; 30. a concave cavity; 33. a limit baffle; 41. limiting waist holes; 61. a vertical support; 62. a vertical slide rail; 63. a horizontal support; 64. a horizontal slide rail; 65. connecting columns; 66. a clamping block; 71. mounting blocks; 72. a first squeegee; 73. a second squeegee; 74. a third lifting cylinder; 75. a fourth lifting cylinder; 81. a third support; 82. a third slide rail; 83. a third motor; 84. a third mounting plate; 91. a connecting rod; 92. a clamping cylinder; 141. a first lifting cylinder; 142. a first connecting frame; 143. a first suction head; 241. a second lifting cylinder; 242. a second link frame; 243. a second suction head; 311, a lifting motor; 312. a lifting rod; 321. a mounting seat; 322. a telescopic cylinder; 323. a limiting column; 331. a limiting groove; 332. a through hole; 341. a translation motor; 342. a dust-sticking roller.
Detailed Description
The following are specific embodiments of the present invention, and the technical solutions of the present invention will be further described with reference to the accompanying drawings, but the present invention is not limited to these embodiments.
As shown in fig. 1 to 4, a high-efficient automatic screen printer comprises a workbench 1, a screen printing plate 2 is arranged on the workbench 1, a base platform 3 is detachably arranged on one side of the workbench 1, a material moving plate 4 and a material feeding plate 5 are arranged on the base platform 3, a first support 11 is arranged on one side, far away from the screen printing plate 2, of the base platform 3, a first slide rail 12 is arranged on the first support 11, a first mounting plate 14 is arranged on the first slide rail 12 in a sliding manner, a first suction cup part is arranged on the first mounting plate 14, the first suction cup part is driven to reciprocate above the material moving plate 4 and the material feeding plate 5 by a first motor 13 arranged on the first support 11, a second support 21 is arranged on the workbench 1, a second slide rail 22 is arranged on the second support 21, a second mounting plate 24 is arranged on the second slide rail 22 in a sliding manner, a second suction cup part is arranged on the second mounting plate 24, and the second suction cup part is driven to reciprocate above the material moving plate 4 and the screen printing plate 2 by a second The horizontal axes of the first slide rail 12 and the second slide rail 22 are perpendicular to each other, one side of the screen printing plate 2 is provided with the moving platform 6, the moving platform 6 is provided with a printing mechanism, the printing mechanism comprises a printing head 7 and a screen template, the screen template is detachably arranged in a clamping block 66 positioned on two sides of the moving platform 6, the printing head 7 is positioned above the screen template, the printing head 7 can be abutted to the screen template and can slide on the upper end face of the screen template, one side of the workbench 1, which is far away from the second support 21, is provided with a third support 81, the third support 81 is provided with a third slide rail 82, the third slide rail 82 is provided with a third mounting plate 84 in a sliding manner, the third mounting plate 84 is provided with a clamping part 9, and the clamping part 9 can move to the position.
The directions of the first slide rail 12 and the second slide rail 22 are set to be perpendicular to each other, so that the feeding form can be changed from a linear type to an L shape, the length occupied by a feeding device is reduced, and the occupied space is reduced; the first slide rail 11 and the second slide rail 12 are respectively provided with a first sucker part and a second sucker part which respectively work independently and are mutually cooperated to improve the feeding rate; meanwhile, the printing head 7 reciprocates on the moving platform 6 to complete an automatic silk-screen printing process, the clamping part 9 completes automatic blanking, the automation degree is high, and the working efficiency is greatly improved.
The first sucking disc part comprises a first lifting cylinder 141, a first connecting frame 142 and a first sucking head 143, the first lifting cylinder 141 is arranged on the first mounting plate 14, the first sucking head 143 is arranged on the first connecting frame 142, the first lifting cylinder 141 drives the first connecting frame 142 to move up and down, and the first lifting cylinder 141 drives the first sucking head 143 to move up and down to complete lifting of a product to be printed on the feeding plate 5.
The second sucking disc part comprises a second lifting cylinder 241, a second connecting frame 242 and a second sucking head 243, the second lifting cylinder 241 is arranged on the second mounting plate 24, the second sucking head 243 is arranged on the second connecting frame 242, the second lifting cylinder 241 drives the second connecting frame 242 to move up and down, and the second lifting cylinder 241 drives the second sucking head 243 to move up and down to complete the lifting of the product to be printed from the material moving plate 4.
Motion platform 6 is equipped with vertical slide rail 62 including setting up vertical support 61 on workstation 1 on vertical support 61, can be equipped with horizontal stand 63 on the vertical slide rail 62 that slides, is equipped with horizontal slide rail 64 on the horizontal stand 63, can be equipped with spliced pole 65 on the horizontal slide rail 64 that slides, and print head 7 sets up on spliced pole 65, and motion platform 6 drives print head 7 reciprocating motion in vertical direction and horizontal direction, accomplishes the silk screen printing action.
The printing head 7 comprises a mounting block 71 fixed on the connecting column 65, a first scraper 72 and a second scraper 73 are arranged at the lower end of the mounting block 71 side by side, the first scraper 72 and the second scraper 73 are respectively connected with a third lifting cylinder 74 and a fourth lifting cylinder 75 arranged on the mounting block 71, a silk-screen printing process is carried out when the printing head 7 moves towards the direction of the material moving plate 4, at the moment, the third lifting cylinder 74 drives the first scraper 72 to be positioned at the lower position and abut against a silk-screen printing template, and the fourth lifting cylinder 75 drives the second scraper 73 to be positioned at the upper position; after the silk screen printing is finished, the third lifting cylinder 74 drives the first scraper 72 to be located at the upper position, and the fourth lifting cylinder 75 drives the second scraper 73 to be located at the lower position and to be abutted against the silk screen printing template, so that the printing ink is scraped back.
The clamping part 9 comprises a connecting rod 91 and two clamping cylinders 92, the connecting rod 91 is slidably arranged on the third mounting plate 84, and the two clamping cylinders 92 are fixed on the connecting rod 91 and used for automatically taking printed products after silk screen printing is finished.
The middle part of the base station 3 is provided with a concave cavity 30, the material moving plate 4 is arranged above the concave cavity 30, the material moving plate 4 is provided with a plurality of limit waist holes 41 longitudinally penetrating through the body, the concave cavity 30 is internally provided with a lifting part and a limit part, the lifting part comprises a lifting motor 311 and a lifting rod 312, the lifting rod 312 is connected with the material moving plate 4, the limit part comprises a mounting seat 321, the mounting seat 321 is provided with a plurality of telescopic cylinders 322, the telescopic cylinders 322 are provided with limit columns 323 matched with the limit waist holes 41, the limit columns 323 reciprocate in the limit waist holes 41 under the driving of the telescopic cylinders 322, the concave cavity 30 is internally provided with a limit baffle 33, the limit baffle 33 is provided with a plurality of limit grooves 331 for accommodating the limit columns 323 to reciprocate, a through hole 332 is formed in the middle of the plate, the lifting rod 312 penetrates through the through hole 332, and the lifting motor 311 drives the material moving plate 4 to ascend by a certain height, so that the second sucking disc part can conveniently suck the products to be printed; the telescopic cylinder 322 drives the limiting column 323 to move in the limiting waist hole 41, and can correct the position of a product to be printed placed on the moving plate 4, so that the product can be positioned under the second sucking disc part, and the sucking is convenient.
the number of the limiting columns 323 is four to eight.
Be equipped with the dust-binding roller 342 on the base station 3, the dust-binding roller 342 is moving flitch 4 up end reciprocating motion through the translation motor 341 drive that sets up on base station 3, and when waiting to print the product and place to move flitch 4 by first sucking disc portion on, dust-binding roller 342 is once reciprocating motion on waiting to print the product, accomplishes the dust and glues and get, improves the cleanliness on waiting to print the product surface.
The working principle is as follows:
The first lifting cylinder 141 moves downwards, the first sucking disc part sucks a product to be printed on the feeding frame 5, and the first lifting cylinder 141 moves upwards and moves towards the direction of the material moving plate 4 under the driving of the first motor 13; when the first lifting cylinder 141 moves downwards above the material moving plate 4, the first sucking disc part places the product to be printed on the material moving plate 4, and the first cylinder 141 resets; after the dust-sticking roller 342 reciprocates to stick dust on a product to be printed for one time under the drive of the translation motor 341, the telescopic cylinder 322 corrects the position of the product to be printed on the material-moving plate 4 by driving the limit column 323 to enable the product to be printed to be placed on the material-moving plate 4, the lifting motor 311 drives the material-moving plate 4 to move upwards for a certain height to reach the height same as that of the screen-printing plate 2, the second lifting cylinder 241 moves downwards, the second sucking disc part sucks the product to be printed, the second sucking disc part rises, the second sucking disc part moves towards the direction of the screen-printing plate 2 under the drive of the second motor 23, when the product is moved to the upper part of the screen-printing plate 2, the second lifting cylinder 241 descends, the product to be printed is placed on the screen-printing plate 4, the second lifting cylinder 241 resets to complete one-time automatic feeding, and in the process, the first sucking disc part continuously sucks the product to be printed and; the printing head 7 moves downwards on the vertical rail 61 by driving and moves to be abutted with a product to be printed on the screen printing plate 2, the third lifting cylinder 74 drives the first scraper 72 to be positioned at the lower position and abutted with the screen printing template, the fourth lifting cylinder 75 drives the second scraper 73 to be positioned at the upper position and moves towards the direction of the material moving plate 4 to complete the screen printing process; after the silk screen printing is finished, the third lifting cylinder 74 drives the first scraper 72 to be positioned at the upper position, and the fourth lifting cylinder 75 drives the second scraper 73 to be positioned at the lower position and abutted against the silk screen printing template, so that the printing ink is scraped back; the printing head 7 is driven to move upwards on the vertical rail 61, the clamping part 9 is driven by the third motor 83 to move downwards to the position of the screen printing plate 2, and the clamping cylinder 92 finishes clamping and resetting of a printed product and finishes automatic blanking.
the base station 3 is detachably connected with the workbench 1, so that the material loading side can be conveniently recombined or adjusted, and the applicability of the screen printing machine is improved.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (10)

1. A high-efficiency automatic screen printing machine comprises a workbench (1) and is characterized in that a screen printing plate (2) is arranged on the workbench (1), a base platform (3) is detachably arranged on one side of the workbench (1), a material moving plate (4) and a material feeding plate (5) are arranged on the base platform (3), a first support (11) is arranged on one side, away from the screen printing plate (2), of the base platform (3), a first sliding rail (12) is arranged on the first support (11), a first mounting plate (14) is arranged on the first sliding rail (12) in a sliding manner, a first suction disc part is arranged on the first mounting plate (14) and is driven to reciprocate above the material moving plate (4) and the material feeding plate (5) through a first motor (13) arranged on the first support (11), a second support (21) is arranged on the workbench (1), and a second sliding rail (22) is arranged on the second support (21), the second slide rail (22) is provided with a second mounting plate (24) in a sliding manner, the second mounting plate (24) is provided with a second sucker part, the second sucker part is driven to reciprocate above the material moving plate (4) and the screen printing plate (2) through a second motor (23) arranged on a second support (21), the horizontal axes of the first slide rail (12) and the second slide rail (22) are mutually vertical, one side of the screen printing plate (2) is provided with a moving platform (6), the moving platform (6) is provided with a printing mechanism, the printing mechanism comprises a printing head (7) and a screen stencil, the screen stencil is detachably arranged in clamping blocks (66) on two sides of the moving platform (6), the printing head (7) is arranged above the screen stencil, and the printing head (7) can be abutted against the screen stencil and slide on the upper end face of the screen stencil, keep away from one side of second support (21) on workstation (1) and be equipped with third support (81), be equipped with third slide rail (82) on third support (81), what can slide on third slide rail (82) is equipped with third mounting panel (84), be equipped with on third mounting panel (84) and press from both sides portion of getting (9), press from both sides portion of getting (9) and can move to silk screen printing board (2) top.
2. The high-efficiency automatic screen printing machine according to claim 1, wherein the first suction head part comprises a first lifting cylinder (141), a first connecting frame (142) and a first suction head (143), the first lifting cylinder (141) is arranged on the first mounting plate (14), the first suction head (143) is arranged on the first connecting frame (142), and the first lifting cylinder (141) drives the first connecting frame (142) to move up and down.
3. The high-efficiency automatic screen printing machine according to claim 1, wherein the second suction cup part comprises a second lifting cylinder (241), a second connecting frame (242) and a second suction head (243), the second lifting cylinder (241) is arranged on the second mounting plate (24), the second suction head (243) is arranged on the second connecting frame (242), and the second lifting cylinder (241) drives the second connecting frame (242) to move up and down.
4. The high-efficiency automatic screen printing machine according to claim 1, wherein the moving platform (6) comprises a vertical bracket (61) arranged on the working table (1), a vertical slide rail (62) is arranged on the vertical bracket (61), a horizontal bracket (63) is arranged on the vertical slide rail (62) in a sliding manner, a horizontal slide rail (64) is arranged on the horizontal bracket (63), a connecting column (65) is arranged on the horizontal slide rail (64) in a sliding manner, and the printing head (7) is arranged on the connecting column (65).
5. A high efficiency automatic screen printing machine according to claim 4, wherein the printing head (7) comprises a mounting block (71) fixed on the connection column (65), a first scraper (72) and a second scraper (73) are arranged side by side at the lower end of the mounting block (71), and the first scraper (72) and the second scraper (73) are respectively connected with a third lifting cylinder (74) and a fourth lifting cylinder (75) arranged on the mounting block (71).
6. The high-efficiency automatic screen printing machine according to claim 1, wherein the gripping section (9) comprises a connecting rod (91) and two clamping cylinders (92), the connecting rod (91) being slidably disposed on the third mounting plate (84), and the clamping cylinders (92) being fixed to the connecting rod (91).
7. The high-efficiency automatic screen printing machine according to claim 1, wherein a cavity (30) is formed in the middle of the base (3), the material moving plate (4) is arranged above the cavity (30), a plurality of limiting waist holes (41) longitudinally penetrating through the material moving plate (4) are formed in the material moving plate, a lifting portion and a limiting portion are arranged in the cavity (30), the lifting portion comprises a lifting motor (311) and a lifting rod (312), the lifting rod (312) is connected with the material moving plate (4), the limiting portion comprises a mounting seat (321), a plurality of telescopic cylinders (322) are arranged on the mounting seat (321), limiting columns (323) matched with the limiting waist holes (41) are arranged on the telescopic cylinders (322), and the limiting columns (323) are driven by the telescopic cylinders (322) to reciprocate in the limiting waist holes (41).
8. The automatic screen printing machine according to claim 7, wherein a limiting baffle (33) is arranged in the cavity (30), a plurality of limiting grooves (331) for accommodating the reciprocating movement of the limiting columns (323) are formed in the limiting baffle (33), a through hole (332) is formed in the middle of the limiting baffle, and the lifting rod (312) penetrates through the through hole (332).
9. The high efficiency automatic screen printing machine according to claim 8, wherein the number of the spacing columns (323) is four to eight.
10. The high-efficiency automatic screen printing machine according to claim 1, wherein a dust-sticking roller (342) is provided on the base (3), and the dust-sticking roller (342) is driven by a translation motor (341) provided on the base (3) to reciprocate on the upper end surface of the material moving plate (4).
CN201821830702.2U 2018-11-08 2018-11-08 Efficient automatic screen printing machine Active CN209794838U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821830702.2U CN209794838U (en) 2018-11-08 2018-11-08 Efficient automatic screen printing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821830702.2U CN209794838U (en) 2018-11-08 2018-11-08 Efficient automatic screen printing machine

Publications (1)

Publication Number Publication Date
CN209794838U true CN209794838U (en) 2019-12-17

Family

ID=68816389

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821830702.2U Active CN209794838U (en) 2018-11-08 2018-11-08 Efficient automatic screen printing machine

Country Status (1)

Country Link
CN (1) CN209794838U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109367207A (en) * 2018-11-08 2019-02-22 昆山兑印机械有限公司 A kind of efficient automatic screen printing machine
CN115320237A (en) * 2022-08-17 2022-11-11 湖南亿龙实业有限公司 Automatic paper receiving system for printing

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109367207A (en) * 2018-11-08 2019-02-22 昆山兑印机械有限公司 A kind of efficient automatic screen printing machine
CN115320237A (en) * 2022-08-17 2022-11-11 湖南亿龙实业有限公司 Automatic paper receiving system for printing

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