CN213082696U - Ink tank structure for vacuum coating rainbow printing - Google Patents

Ink tank structure for vacuum coating rainbow printing Download PDF

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Publication number
CN213082696U
CN213082696U CN202021156606.1U CN202021156606U CN213082696U CN 213082696 U CN213082696 U CN 213082696U CN 202021156606 U CN202021156606 U CN 202021156606U CN 213082696 U CN213082696 U CN 213082696U
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China
Prior art keywords
connecting plate
substrate
ink tank
sliding
groove
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CN202021156606.1U
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Chinese (zh)
Inventor
李孝一
刘金玉
沈如强
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Hangzhou Hengda Printing Packing Co ltd
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Hangzhou Hengda Printing Packing Co ltd
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Abstract

The utility model provides an ink tank structure for vacuum coating rainbow printing belongs to printing machine ink tank technical field. It has solved the convenient scheduling problem of clearing up of current printing machine china ink groove portion. This an ink tank structure for vacuum coating rainbow printing, including the groove body, the both sides portion of groove body is provided with the pterygoid lamina, is formed with the cavity between pterygoid lamina and the groove body, is provided with baffle and scraper blade on the groove body, and the baffle can slide between the pterygoid lamina and separate into a plurality of regions with the cavity, and the scraper blade both ends are connected and can be carried out on the pterygoid lamina and slide with baffle direction of motion mutually perpendicular. The utility model has the advantages of reasonable structure and convenient cleaning.

Description

Ink tank structure for vacuum coating rainbow printing
Technical Field
The utility model belongs to the technical field of printing machine china ink groove, a china ink groove structure for vacuum coating rainbow printing is related to.
Background
Rainbow printing is called cross color printing, separation color printing, color-sandwiched printing, multi-color cross printing, etc., which is a printing method capable of obtaining more than two kinds of inks with different color phases by one-time printing, and the position and thickness of a partition or a splint determine the uniqueness of the color of a printed product, so the printing method is widely used as anti-counterfeiting printing.
In order to facilitate use, partition plates in the existing color separation ink tank can be freely detached, the proportion of each printing ink is realized by freely adjusting the partition plates, and although the partition plates are freely arranged, the problem of ink tank separation is solved, after the partition plates are arranged, a proper scraper for ink tank cleaning is difficult to arrange in the ink tank, so that the inconvenience of ink tank cleaning is caused.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the above-mentioned problem, provide an china ink groove structure for vacuum coating rainbow printing rational in infrastructure, convenient clearance.
In order to achieve the above purpose, the utility model adopts the following technical proposal:
the utility model provides an china ink groove structure for vacuum coating rainbow printing, includes the groove body, its characterized in that, the both sides portion of groove body is provided with the pterygoid lamina, pterygoid lamina and groove body between be formed with the cavity, the groove body on be provided with baffle and scraper blade, the baffle can slide between the pterygoid lamina and separate into a plurality of regions with the cavity, the scraper blade both ends connect and to slide on the pterygoid lamina with baffle direction of motion mutually perpendicular.
In the above ink tank structure for vacuum coating rainbow printing, the tank body includes a first substrate and a first connecting plate disposed on an upper portion of the first substrate, the first substrate and the first connecting plate are disposed in an inclined manner, an upper end of the partition plate is movably connected to the first connecting plate, and a lower end of the partition plate is in sealing contact with a surface of the first substrate.
In the ink tank structure for vacuum coating rainbow printing, the partition plate comprises a second substrate in contact with the first substrate and a second connecting plate matched with the first connecting plate, a transition folded plate is connected between the second connecting plate and the first connecting plate, and a through groove for a scraper to pass through is formed between the transition folded plate and the first substrate.
In the ink tank structure for vacuum coating rainbow printing, the first connecting plate is provided with a sliding groove which is transversely arranged, and the second connecting plate is provided with a sliding piece which is matched with the sliding groove and can slide in the sliding groove and realize the fixation of the first connecting plate and the second connecting plate.
In the ink tank structure for vacuum coating rainbow printing, the sliding part comprises a sliding rod and a sliding block arranged on the sliding rod, a thread is processed at the end part of the sliding rod, which is far away from the sliding block, and a screw hole matched with the thread is formed in the second connecting plate.
In the above ink tank structure for vacuum coating rainbow printing, the diameter of the sliding rod is smaller than the width of the sliding groove, and the diameter of the sliding block is larger than the width of the sliding groove.
In the ink tank structure for vacuum coating rainbow printing, a sealing element is arranged on the inner surface of the second substrate, which is in contact with the first substrate, and the sealing element is arranged along the length direction of the second substrate.
In the ink tank structure for vacuum coating rainbow printing, the cross section of the sealing element is C-shaped, and the center of the sealing element is fixedly connected to the second substrate
In the ink tank structure for vacuum coating rainbow printing, the scraper comprises a third substrate and a third connecting block connected to the third substrate, two ends of the third substrate are movably connected to the wing plates, the third connecting block is connected to the top of the third substrate and can slide along the length direction of the third substrate, and the third connecting block is matched with the through groove.
In the ink tank structure for vacuum coating rainbow printing, the wing plates on two sides of the first substrate are provided with clamping grooves for clamping the end part of the third substrate.
Compared with the prior art, the utility model has the advantages of:
1. the utility model discloses be provided with baffle and scraper blade on the groove body, the baffle can slide between the pterygoid lamina and separate into a plurality of regions with the cavity, and the scraper blade both ends are connected and can be carried out on the pterygoid lamina and slide with baffle direction of motion mutually perpendicular, can set up baffle and scraper blade simultaneously in this regional inslot body, and baffle and scraper blade independent motion mutually noninterfere have easy operation, the advantage of convenient clearance.
2. The utility model discloses be formed with the groove of wearing that supplies the scraper blade to pass between transition folded plate and the first base plate, the scraper blade fixes a position fixedly through wearing the groove, simple structure, convenient operation.
3. The utility model discloses a slider includes the slide bar and sets up the slider on the slide bar, and the tip processing that slider one side was kept away from to the slide bar has the screw with screw thread matched with on the second connecting plate, realizes direction and fixed effect, convenient operation through the slide bar.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a connecting structure diagram of the middle groove body and the partition plate of the present invention.
Fig. 3 is a structural connection diagram of the sliding member of the present invention.
Fig. 4 is a structural connection diagram of the sealing member of the present invention.
In the figure, 1, a tank body; 2. a wing plate; 3. a cavity; 4. a partition plate; 5. a squeegee; 6. a first substrate; 7. a first connecting plate; 8. a second substrate; 9. a second connecting plate; 10. a transition folded plate; 11. penetrating a groove; 12. a chute; 13. a slider; 14. a slide bar; 15. a slider; 16. a seal member; 17. a third substrate; 18. a third connecting block; 19. a clamping groove.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings.
As shown in fig. 1 to 4, an ink tank structure for vacuum coating rainbow printing comprises a tank body 1, wing plates 2 are arranged on two sides of the tank body 1, a cavity 3 is formed between each wing plate 2 and the tank body 1, a partition plate 4 and a scraper 5 are arranged on the tank body 1, each partition plate 4 can slide between the wing plates 2 to separate the cavity 3 into a plurality of areas, and two ends of each scraper 5 are connected to the wing plates 2 to slide in a direction perpendicular to the movement direction of the partition plate 4.
In this embodiment, be provided with baffle 4 and scraper blade 5 on groove body 1, baffle 4 can slide between pterygoid lamina 2 and separate into a plurality of regions with cavity 3, and scraper blade 5 both ends are connected and can be carried out on pterygoid lamina 2 with the 4 direction of motion mutually perpendicular's of baffle sliding, can set up baffle 4 and scraper blade 5 simultaneously in groove body 1 region, and baffle 4 and scraper blade 5 independent motion mutually noninterfere have easy operation, the advantage of convenient clearance.
In this embodiment, the tank body 1 includes a first base plate 6 and a first connecting plate 7 disposed on the upper portion of the first base plate 6, the first base plate 6 and the first connecting plate 7 are disposed in an inclined manner, the upper end of the partition plate 4 is movably connected to the first connecting plate 7, and the lower end of the partition plate 4 is in sealing contact with the surface of the first base plate 6.
The partition plate 4 comprises a second base plate 8 contacted with the first base plate 6 and a second connecting plate 9 matched with the first connecting plate 7, a transition folded plate 10 is connected between the second connecting plate 9 and the first connecting plate 7, and a through groove 11 for the scraper 5 to pass through is formed between the transition folded plate 10 and the first base plate 6. The scraper 5 is positioned and fixed through the through groove 11, and the scraper is simple in structure and convenient to operate.
The first connecting plate 7 is provided with a sliding groove 12 which is transversely arranged, the second connecting plate 9 is provided with a sliding part 13 which is matched with the sliding groove 12, can slide in the sliding groove 12 and can fix the first connecting plate 7 and the second connecting plate 9, in further detail, the sliding part 13 comprises a sliding rod 14 and a sliding block 15 which is arranged on the sliding rod 14, the end part of the sliding rod 14, which is far away from the sliding block 15, is processed with a thread, and the second connecting plate 9 is provided with a screw hole which is matched with the thread.
When slider 13 is under initial condition, not locking with spout 12, second connecting plate 9 can freely move on spout 12 through slider 13, plays the effect of direction, when needs fix the position of baffle 4, makes the inside that the screw thread on slider 13 further penetrated the screw through rotating slider 15, when slider 15 whole card was located on the lower terminal surface of first connecting plate 7, realizes fixing of groove body 1 and baffle 4.
Preferably, the sliding rod 14 has a diameter smaller than the groove width of the slide groove 12 in order to facilitate the sliding of the sliding rod 14, while the slider 15 has a diameter larger than the groove width of the slide groove 12 in order to allow better abutting fixation.
In this embodiment, a sealing member 16 is disposed on the inner surface of the second substrate 8 contacting the first substrate 6, the sealing member 16 is disposed along the length direction of the second substrate 8, preferably, the sealing member 16 is C-shaped as a whole, and the center of the sealing member 16 is fixedly connected to the second substrate 8. When the partition plate 4 is fixedly connected with the groove body 1, an extruding process is arranged between the first substrate 6 and the second substrate 8, and the sealing effect is guaranteed to be achieved through a deformation process of the sealing element 16.
In this embodiment, the scraper 5 includes a third base plate 17 and a third connecting block 18 connected to the third base plate 17, two ends of the third base plate 17 are movably connected to the wing plates 2, the third connecting block 18 is connected to the top of the third base plate 17 and can slide along the length direction of the third base plate 17, the third connecting block 18 is adapted to the through groove 11, and the wing plates 2 on two sides of the first base plate 6 are provided with a clamping groove 19 for clamping the end of the third base plate 17.
The scraper 5 is clamped in the clamping groove 19 through the third base plate 17, and is clamped in the through groove 11 through the third connecting block 18 to realize fixation, and in order that the third connecting block 18 can be matched with the through groove 11, the third connecting block 18 is movably connected onto the third base plate 17, and the third connecting block 18 also performs corresponding position adjustment according to different positions of the movement of the partition plate 4.
The utility model discloses a theory of operation does: be provided with baffle 4 and scraper blade 5 on the groove body 1, baffle 4 can slide between pterygoid lamina 2 and separate into a plurality of regions with cavity 3, 5 both ends of scraper blade are connected and can be carried out the slip with 4 direction of motion mutually perpendicular of baffle on pterygoid lamina 2, can set up baffle 4 and scraper blade 5 in groove body 1 region simultaneously, baffle 4 and 5 independent motion mutually noninterfere of scraper blade, the china ink groove is when using, baffle 4 position this moment is adjusted during, be in fixed position department, scraper blade 5 sets up in the upper portion of groove body 1, third base plate 17 is fixed in wearing groove 11 through the card of third connecting block 18, when the china ink groove needs to be cleared up, scraper blade 5 can freely reciprocate after taking off baffle 4, realize wiping on groove body 1 surface, third connecting block 18 plays the effect of a handle.
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.
Although the terms channel body 1, flap 2, cavity 3, partition 4, scraper 5, first base plate 6, first connecting plate 7, second base plate 8, second connecting plate 9, transition flap 10, through slot 11, slide slot 12, slider 13, slide rod 14, slider 15, seal 16, third base plate 17, third connecting plate 18, slot 19, etc. are used more herein, the possibility of using other terms is not excluded. These terms are used merely to more conveniently describe and explain the nature of the present invention and should not be interpreted as imposing any additional limitations that are contrary to the spirit of the present invention.

Claims (10)

1. The utility model provides an china ink groove structure for vacuum coating rainbow printing, includes groove body (1), its characterized in that, the both sides portion of groove body (1) is provided with pterygoid lamina (2), pterygoid lamina (2) and groove body (1) between be formed with cavity (3), groove body (1) on be provided with baffle (4) and scraper blade (5), baffle (4) can slide between pterygoid lamina (2) and separate into a plurality of regions with cavity (3), scraper blade (5) both ends connect and to slide on pterygoid lamina (2) can carry out with baffle (4) direction of motion mutually perpendicular.
2. An ink tank structure for vacuum coated rainbow printing according to claim 1, wherein the tank body (1) comprises a first base plate (6) and a first connecting plate (7) arranged on the upper portion of the first base plate (6), the first base plate (6) and the first connecting plate (7) are arranged obliquely to each other, the upper end of the partition plate (4) is movably connected to the first connecting plate (7), and the lower end of the partition plate (4) is in sealing contact with the surface of the first base plate (6).
3. An ink tank structure for vacuum coating rainbow printing according to claim 2, wherein the partition plate (4) comprises a second substrate (8) contacting the first substrate (6) and a second connecting plate (9) cooperating with the first connecting plate (7), a transition flap (10) is connected between the second connecting plate (9) and the first connecting plate (7), and a through groove (11) for the scraper (5) to pass through is formed between the transition flap (10) and the first substrate (6).
4. An ink tank structure for vacuum coated rainbow printing according to claim 3, wherein the first connecting plate (7) is provided with a sliding slot (12) opened in a transverse direction, and the second connecting plate (9) is provided with a sliding member (13) which is matched with the sliding slot (12) and can slide in the sliding slot (12) and realize the fixation of the first connecting plate (7) and the second connecting plate (9).
5. An ink tank structure for vacuum-coated rainbow printing according to claim 4, wherein the sliding member (13) comprises a sliding rod (14) and a sliding block (15) arranged on the sliding rod (14), the end of the sliding rod (14) far away from the sliding block (15) is threaded, and the second connecting plate (9) is provided with a screw hole matched with the thread.
6. An ink tank structure for vacuum-coated rainbow printing according to claim 5, wherein the sliding rod (14) has a diameter smaller than the tank width of the sliding tank (12), and the sliding block (15) has a diameter larger than the tank width of the sliding tank (12).
7. An ink tank structure for vacuum coated rainbow printing according to claim 3, wherein the second substrate (8) is provided with a sealing member (16) on the inner surface contacting the first substrate (6), the sealing member (16) being provided along the length of the second substrate (8).
8. A gutter structure for vacuum coated rainbow printing according to claim 7, wherein the sealing member (16) has a C-shaped cross-section, and the sealing member (16) is fixedly attached to the second substrate (8) at the center thereof.
9. The ink tank structure for vacuum coating rainbow printing according to claim 3, wherein the scraper (5) comprises a third base plate (17) and a third connecting block (18) connected to the third base plate (17), both ends of the third base plate (17) are movably connected to the wing plates (2), the third connecting block (18) is connected to the top of the third base plate (17) and can slide along the length direction of the third base plate (17), and the third connecting block (18) is matched with the through groove (11).
10. An ink tank structure for vacuum coating rainbow printing according to claim 9, wherein the wing plates (2) at both sides of the first substrate (6) are provided with a clamping groove (19) for the end of the third substrate (17) to be clamped in.
CN202021156606.1U 2020-06-18 2020-06-18 Ink tank structure for vacuum coating rainbow printing Active CN213082696U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021156606.1U CN213082696U (en) 2020-06-18 2020-06-18 Ink tank structure for vacuum coating rainbow printing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021156606.1U CN213082696U (en) 2020-06-18 2020-06-18 Ink tank structure for vacuum coating rainbow printing

Publications (1)

Publication Number Publication Date
CN213082696U true CN213082696U (en) 2021-04-30

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CN202021156606.1U Active CN213082696U (en) 2020-06-18 2020-06-18 Ink tank structure for vacuum coating rainbow printing

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113733732A (en) * 2021-08-10 2021-12-03 段井友 Self-feeding high-speed pad printing machine integrating inking and ink injecting

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113733732A (en) * 2021-08-10 2021-12-03 段井友 Self-feeding high-speed pad printing machine integrating inking and ink injecting

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