An edge strip jet printer

By designing a sealing strip inkjet printer, the problems of printhead clogging and ink undried were solved, achieving printhead protection, automatic drying and cutting, thus improving printing quality and production efficiency.

CN120481464BActive Publication Date: 2026-02-06JIANGSU JIFU NEW MATERIAL
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Patent Information

Application Number
CN202510570138.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2026-02-06
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

In the existing technology, the ink nozzles of the edge sealing strip printing head are prone to clogging when idle for a long time, which affects the printing quality and damages the printing head. In addition, the ink is not completely dry during the printing process and requires additional drying treatment.

Method used

A sealing strip printing machine was designed, which includes a power unit, a print head protection mechanism, a dryer and an automatic cutting device. The print head is protected in standby mode, automatically dries during printing, and is automatically cut when the finished coil reaches a certain diameter.

Benefits of technology

It extends the lifespan of the printhead, ensures print quality, and enables automatic drying and cutting of the edge banding, thereby improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an edge band printing machine, belonging to the technical field of edge bands, comprising a rack, three groups of power assemblies arranged side by side on the rack; two bearings are arranged on the rack and beside the first group of power assemblies, a main shaft is rotatably arranged on the two bearings, an end of the main shaft is connected with a raw material coil of the edge band, a side of a moving plate of the first group of power assemblies is fixedly provided with an auxiliary plate, a printing head for printing the edge band is arranged below the auxiliary plate, a frame is arranged below the auxiliary plate, a side of a bottom plate of the first group of power assemblies is provided with a secondary supporting plate, a horizontal rod is arranged above the secondary supporting plate, an elbow rod is rotatably arranged on the horizontal rod, one end of the elbow rod is in contact with the bottom of the frame, the other end of the elbow rod is provided with a sliding groove, a sliding rod is slidably arranged on the secondary supporting plate, an upper end of the sliding rod is provided with a lifting cylinder, a sliding column is arranged in the middle of the lifting cylinder, the sliding column is in sliding fit with the sliding groove, and a cover cylinder for protecting the printing head is arranged on the upper part of the lifting cylinder.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of edge banding, and specifically relates to an edge banding inkjet printer. BACKGROUND

[0002] Edge banding is a material specially designed for fixing the edges of boards, aiming to effectively protect the cross-section of the board from environmental factors and daily use damage, while inhibiting the release of formaldehyde inside the board and giving the board edges a decorative aesthetic. In the furniture manufacturing and board processing process, the inkjet process of edge banding occupies a crucial position, which includes accurately inkjetting specific patterns, words or brand logos on the edge banding.

[0003] Common inkjet technology includes screen printing and offset printing, which are very suitable for printing large-area patterns and words. However, when dealing with small-area or complex design patterns, traditional printing technology may not be flexible enough. With the rapid development of technology, inkjet technology has become increasingly mature and is widely used in the inkjet process of edge banding.

[0004] In the production process of edge banding, edge banding is continuously manufactured and wound on a specific reel to form a roll shape for storage and transportation. Such roll-shaped edge banding can be easily stored in the warehouse for subsequent processing and application needs. When inkjet operation needs to be performed on the edge banding, the first step is to unwind the coiled finished edge banding, perform inkjet processing, and then rewind it into a disc shape. However, under the existing technical conditions, if the inkjet head is idle for a long time after completing the inkjet task, there is a risk of clogging the ink hole, which not only affects the inkjet quality, but also may cause damage to the inkjet head itself. SUMMARY

[0005] The technical problem to be solved by the present application is to overcome the shortcomings of the above-mentioned prior art and provide an edge banding inkjet printer.

[0006] The technical scheme adopted to solve the above technical problems is: an edge band printing machine, comprising a rack, three groups of power assemblies are arranged side by side on the rack; the power assembly comprises a bottom plate, the bottom plate is fixedly arranged above the rack, a motor one is arranged above the bottom plate, a rotating shaft of the motor one is connected with a lower rotating shaft, the lower rotating shaft is rotatably arranged above the bottom plate, a lower pulling wheel is rotatably arranged at the middle of the lower rotating shaft, two guide columns are vertically connected above the bottom plate, the top portions of the two guide columns are jointly connected with a top baffle, a moving plate is jointly and slidably connected to the two guide columns, a spring one is connected between the top baffle and the moving plate, an upper rotating shaft is arranged below the moving plate, an upper pulling wheel is rotatably arranged above the upper rotating shaft and directly above the lower pulling wheel; two bearings are arranged on the rack and located beside the first group of power assemblies, a main shaft is rotatably arranged on the two bearings, an edge band raw material coil is connected to the end of the main shaft, and the edge band raw material coil is aligned with the lower pulling wheel and the upper pulling wheel of the power assembly; a side of the moving plate of the first group of power assemblies is fixedly provided with an auxiliary plate, a printing head for printing the edge band is arranged below the auxiliary plate, a frame is arranged below the auxiliary plate and beside the printing head, a vice supporting plate is arranged beside the bottom plate of the first group of power assemblies, a horizontal rod is arranged above the vice supporting plate, a crank rod is rotatably arranged on the horizontal rod, one end of the crank rod is in contact with the bottom of the frame, the other end of the crank rod is provided with a sliding groove, a sliding rod is slidably arranged on the vice supporting plate, a spring two is connected between the sliding rod and the vice supporting plate, an ascending cylinder is arranged at the upper end of the sliding rod, a sliding column is arranged in the middle of the ascending cylinder, the sliding column and the sliding groove form a sliding fit, and a cover cylinder for protecting the printing head is arranged on the upper portion of the ascending cylinder.

[0007] Further, a drying device is arranged on the side of the moving plate of the second group of power assemblies to dry the edge band.

[0008] Further, a storage assembly is arranged above the rack and beside the third group of power assemblies, the storage assembly comprises a supporting frame, the supporting frame is fixedly arranged above the rack, a motor two is fixedly arranged above the supporting frame, a vice shaft for placing a core block is connected to the end of the rotating shaft of the motor two, the two sides of the vice shaft are symmetrical planar structures, a clamping cavity is arranged on the core block, and the width of the clamping cavity is consistent with the width of the planar structures on the two sides of the vice shaft.

[0009] Further, a pushing cylinder for driving the core block to move is arranged on the vice shaft, and an electric cylinder is arranged above the supporting frame, and the telescopic shaft of the electric cylinder is connected with the pushing cylinder.

[0010] Further, a square cavity for clamping the edge band is arranged above the clamping cavity in the core block.

[0011] Further, the support frame is provided with a warehouse above the support frame and above the secondary shaft, and a warehouse channel of the warehouse is aligned with the secondary shaft, the warehouse channel is used for storing the core block, both outer sides of the upper end of the two walls of the warehouse are provided with corner tables, and a top cover is arranged above the warehouse, and the inner side of the wall of the top cover is provided with a corner slide channel used for being inserted into the corner table, and the inside of the warehouse channel is provided with an upper support plate, a spring three and a lower support plate, the upper support plate is in contact with the lower surface of the top plate of the top cover, and the spring three is connected between the upper support plate and the lower support plate.

[0012] Further, the third group of the power assembly bottom plates are provided with spring columns, and the telescopic shaft ends of the spring columns are provided with L pressing plates used for pressing the finished product coil of the sealing edge strip.

[0013] Further, the support frame is provided with a rotating column, a lever is arranged on the rotating column and located below the front of the sealing edge strip, a hot cutting knife used for cutting the sealing edge strip is arranged on the lever and close to one end of the third group of power assemblies, and the distance from the rotating center of the lever to the end close to the hot cutting knife is greater than the distance from the rotating center of the lever to the end far from the hot cutting knife.

[0014] Further, the machine frame is provided with a finished product box below the storage assembly.

[0015] Compared with the prior art, the present application has the following beneficial effects: (1) when the present application is in standby state, the auxiliary plate is in the lowest position with the moving plate, the bottom of the frame is in contact with one end of the crank, the other end of the crank is in the upper position, the crank drives the lifting cylinder to be in the upper position, the cover cylinder on the lifting cylinder covers the printing head, and the printing head is protected, so that the ink hole of the printing head is not blocked, the oil film is not solidified, and the service life of the printing head is prolonged. (2) in the movement process of the sealing edge strip, the printing head sprays ink on the sealing edge strip, and the dryer automatically dries the sealing edge strip. (3) when the diameter of the finished product coil of the sealing edge strip becomes larger, the finished product coil of the sealing edge strip is in contact with the end of the lever far from the hot cutting knife, the lever is counterclockwise driven to rise, when the diameter of the finished product coil of the sealing edge strip reaches the required diameter, the hot cutting knife is in contact with the sealing edge strip, and the sealing edge strip is automatically cut off. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a structural schematic view of the front of an embodiment of the present application.

[0017] Figure 2 is a structural schematic view of the storage assembly of the present application.

[0018] Figure 3 is a structural schematic view of the main shaft installation of the present application.

[0019] Figure 4 is a structural schematic view of the printing head installation of the present application.

[0020] Figure 5 isFigure 4 Detail view of the middle A.

[0021] Figure 6 is the structure diagram of the rack installation of the present application.

[0022] Figure 7 is the structure diagram of the second motor installation of the present application.

[0023] Figure 8 is the structure diagram of the core block of the present application.

[0024] Figure 9 is the structure diagram of the inside of the rack of the present application.

[0025] Figure 10 is the structure diagram of the top cover of the present application. Figure 9 Detail view of the middle B.

[0026] Figure 11 is the structure diagram of the top cover of the present application.

[0027] Figure 12 is the structure diagram of the L pressing plate installation of the present application. Figure 11 Detail view of the middle C.

[0028] Figure 13 is the structure diagram of the lever installation of the present application.

[0029] Figure 14 is the structure diagram of the lever installation of the present application.

[0030] The drawings show: 1 - rack; 2 - bottom plate; 3 - first motor; 4 - lower rotating shaft; 5 - lower pulley; 6 - guide column; 7 - top baffle; 8 - moving plate; 9 - spring one; 10 - upper rotating shaft; 11 - upper pulley; 12 - bearing; 13 - main shaft; 14 - edge sealing strip; 15 - additional plate; 16 - inkjet head; 17 - frame; 18 - auxiliary support plate; 19 - cross rod; 20 - elbow rod; 201 - sliding groove; 21 - lifting cylinder; 211 - sliding column; 212 - cover cylinder; 22 - sliding rod; 23 - spring two; 24 - dryer; 25 - support frame; 26 - second motor; 27 - auxiliary shaft; 28 - core block; 281 - clamping cavity; 282 - square cavity; 29 - pushing cylinder; 30 - electric cylinder; 31 - rack; 311 - corner table; 32 - top cover; 321 - corner sliding way; 33 - upper support plate; 34 - spring three; 35 - lower support plate; 36 - spring column; 37 - L pressing plate; 38 - rotating column; 39 - lever; 40 - hot cutting knife; 41 - finished product box. DETAILED DESCRIPTION

[0031] In the present application, the orientation such as "upper, lower" is generally directed to the direction shown in the drawings or the vertical, perpendicular or gravity direction unless otherwise stated; similarly, for the convenience of understanding and description, "left, right" is generally directed to the left and right shown in the drawings; "inner, outer" refers to the inner and outer relative to the contour of each component, but the above orientation words are not used to limit the present application.

[0032] Embodiment: Reference Figures 1-14 A kind of edge strip jet printing machine, including rack 1, three groups of power components are arranged side by side on rack 1;The power component includes bottom plate 2, bottom plate 2 is fixedly arranged on the top of rack 1, motor one 3 is arranged on the top of bottom plate 2, the rotating shaft of motor one 3 is connected with lower shaft 4, and lower shaft 4 is rotatably arranged on the top of bottom plate 2, lower shaft 4 is rotatably arranged at the middle of lower shaft 4, and the top of bottom plate 2 is vertically connected with two guide columns 6, the top of two guide columns 6 is connected with top baffle 7, and two guide columns 6 are slidably connected with moving plate 8, spring one 9 is connected between top baffle 7 and moving plate 8, upper shaft 10 is arranged below moving plate 8, and upper shaft 10 is rotatably arranged with upper pulley 11 above lower pulley 5.

[0033] Specifically, manually lift moving plate 8, make spring one 9 compression, place edge strip 14 between lower pulley 5 and upper pulley 11, then release moving plate 8, moving plate 8 moves downward under the drive of spring one 9, so that upper pulley 11 and lower pulley 5 clamp edge strip 14, start motor one 3, motor one 3 drives lower shaft 4 to rotate, lower shaft 4 drives lower pulley 5 to rotate synchronously, under the action of friction force, lower pulley 5 advances synchronously with edge strip 14, and upper pulley 11 rotates synchronously.

[0034] Two bearings 12 are arranged on rack 1 and located beside the first power component, and main shaft 13 is rotatably arranged on two bearings 12, and the end of main shaft 13 is connected with the raw material coil of edge strip 14, and the raw material coil of edge strip 14 is aligned with lower pulley 5 and upper pulley 11 of the power component.

[0035] Specifically, the raw material coil of edge strip 14 is detachably installed at the end of main shaft 13, in some embodiments, the raw material coil of edge strip 14 is formed by winding edge strip 14 on a central spool, the central spool of the raw material coil of edge strip 14 is provided with a through hole, the end of main shaft 13 is provided with a threaded hole, and the central spool of the raw material coil of edge strip 14 is installed in the threaded hole of main shaft 13 by using a screw.

[0036] The side of the moving plate 8 of the first power assembly is fixed with an auxiliary plate 15, and the lower side of the auxiliary plate 15 is provided with a printing head 16 for printing on the edge sealing strip 14. The lower side of the auxiliary plate 15 and the side of the printing head 16 are provided with a frame 17. The side of the bottom plate 2 of the first power assembly is provided with a secondary supporting plate 18, and the upper side of the secondary supporting plate 18 is provided with a horizontal rod 19. The horizontal rod 19 is rotatably provided with a bent rod 20. One end of the bent rod 20 is in contact with the bottom of the frame 17, and the other end of the bent rod 20 is provided with a sliding groove 201. The secondary supporting plate 18 is slidably provided with a sliding rod 22, and the sliding rod 22 and the secondary supporting plate 18 are connected with a spring 23. The upper end of the sliding rod 22 is provided with a lifting cylinder 21, and the middle part of the lifting cylinder 21 is provided with a sliding column 211. The sliding column 211 and the sliding groove 201 form a sliding fit. The upper part of the lifting cylinder 21 is provided with a cover cylinder 212 for protecting the printing head 16.

[0037] Considering that the printing head 16 is not used for a long time, the ink hole of the printing head 16 will be blocked, thereby causing damage to the printing head 16. Therefore, when the printing head 16 is not used, the printing head 16 needs to be protected so that the ink hole of the printing head 16 is not blocked. Specifically, when there is no edge sealing strip 14 between the lower pulley 5 and the upper pulley 11 of the first power assembly, the lower pulley 5 and the upper pulley 11 are in contact, that is, the upper pulley 11 and the moving plate 8 are in the lowest position, and the auxiliary plate 15 is also in the lowest position with the moving plate 8. The bottom of the frame 17 is in contact with one end of the bent rod 20, so that the frame 17 drives one end of the bent rod 20 to be in the lower position, and the other end of the bent rod 20 is in the upper position. The bent rod 20 drives the lifting cylinder 21 to also be in the upper position, and the spring 23 is compressed. The cover cylinder 212 on the lifting cylinder 21 covers the printing head 16, thereby protecting the printing head 16. When there is an edge sealing strip 14 between the lower pulley 5 and the upper pulley 11 of the first power assembly, according to the above principle, the auxiliary plate 15 is in the upper position. Because the spring 23 provides a pulling force, the cover cylinder 212 on the lifting cylinder 21 is separated from the printing head 16, that is, the printing head 16 is exposed outside.

[0038] Considering that the ink on the edge sealing strip 14 is not dry after the printing head 16 finishes printing on the edge sealing strip 14, the side of the moving plate 8 of the second power assembly is provided with a dryer 24 for drying the edge sealing strip 14. Optionally, the dryer 24 sprays high-temperature drying gas for drying the ink.

[0039] The upper side of the rack 1 and the side of the third power assembly are provided with a storage assembly. The storage assembly includes a supporting frame 25 fixedly arranged on the upper side of the rack 1. The upper side of the supporting frame 25 is fixedly provided with a second motor 26. The end of the rotating shaft of the second motor 26 is connected with a secondary shaft 27 for placing a core block 28. The two sides of the secondary shaft 27 are symmetrical planar structures. The core block 28 is provided with a clamping cavity 281. The width of the clamping cavity 281 is consistent with the width of the planar structure of the two sides of the secondary shaft 27.

[0040] The push cylinder 29 is sleeved on the auxiliary shaft 27 for driving the core block 28 to move. The center of the crossbar 19 has a circular hole, so the push cylinder 29 is not affected when the auxiliary shaft 27 rotates. The electric cylinder 30 is arranged above the support frame 25, and the telescopic shaft of the electric cylinder 30 is connected with the push cylinder 29.

[0041] The square cavity 282 for clamping the sealing edge strip 14 is arranged in the core block 28 and above the clamping cavity 281.

[0042] Specifically, the sealing edge strip 14 is placed into the square cavity 282 of the core block 28, the motor two 26 is started, the auxiliary shaft 27 is driven to rotate, the core block 28 is driven to rotate by the auxiliary shaft 27, so the sealing edge strip 14 is wound on the core block 28. Since the sealing edge strip 14 has been wound on the core block 28, the core block 28 will not fall off the auxiliary shaft 27 when the clamping cavity 281 of the core block 28 faces upward. The electric cylinder 30 is started, the electric cylinder 30 drives the push cylinder 29 to move, and the push cylinder 29 drives the core block 28 to move on the auxiliary shaft 27.

[0043] The warehouse frame 31 is arranged above the support frame 25 and above the auxiliary shaft 27, and the warehouse way of the warehouse frame 31 is aligned with the auxiliary shaft 27. The warehouse way of the warehouse frame 31 is used for storing the core block 28. The outer sides of the two wall plates of the upper end of the warehouse frame 31 are the corner tables 311. The top cover 32 is arranged above the warehouse frame 31, and the inner side of the wall plate of the top cover 32 is provided with the corner slide way 321 for being inserted into the corner table 311. The upper support plate 33, the spring three 34 and the lower support plate 35 are arranged inside the warehouse way of the warehouse frame 31. The upper support plate 33 is in contact with the lower surface of the top plate of the top cover 32. The spring three 34 is connected between the upper support plate 33 and the lower support plate 35.

[0044] Specifically, the plurality of core blocks 28 are placed into the warehouse way of the warehouse frame 31, and the clamping cavities 281 of all the core blocks 28 face downward. Then, the upper support plate 33, the spring three 34 and the lower support plate 35 are placed into the warehouse way of the warehouse frame 31, and the lower support plate 35 is in contact with the uppermost core block 28. The corner slide way 321 of the top cover 32 is inserted into the corner table 311 of the warehouse frame 31. The top cover 32 covers the top of the warehouse frame 31, the top of the upper support plate 33 is in contact with the lower surface of the top of the top cover 32, and the spring three 34 provides elastic force to make the arranged core block 28 move downward.

[0045] The spring column 36 is arranged on the bottom plate 2 of the third group of power assemblies. The telescopic shaft end of the spring column 36 is provided with the L-shaped pressing plate 37 for pressing the finished coil of the sealing edge strip 14.

[0046] Specifically, in the free state, the telescopic shaft of the spring column 36 is in the elongated state, and the L-shaped pressing plate 37 is close to the auxiliary shaft 27. When the diameter of the finished coil of the sealing edge strip 14 becomes larger, the L-shaped pressing plate 37 is in contact with the finished coil of the sealing edge strip 14, the spring column 36 is shortened, and the telescopic shaft of the spring column 36 provides elastic force to tightly press the L-shaped pressing plate 37 on the finished coil of the sealing edge strip 14, thereby ensuring the tightness of the finished coil of the sealing edge strip 14.

[0047] The support frame 25 is provided with a rotating column 38, and a lever 39 is rotatably arranged on the rotating column 38 and located below the edge strip 14. A hot cutter 40 for cutting the edge strip 14 is arranged on the lever 39 and close to one end of the third power assembly. The distance from the rotating center of the lever 39 to the end close to the hot cutter 40 is greater than the distance from the rotating center of the lever 39 to the end far from the hot cutter 40.

[0048] Specifically, the weight of the end of the lever 39 close to the hot cutter 40 is greater than the weight of the end of the lever 39 far from the hot cutter 40. Therefore, in the original state, the end of the lever 39 close to the hot cutter 40 is in the lower position, and the end of the lever 39 far from the hot cutter 40 is in the upper position. As the diameter of the finished product coil of the edge strip 14 becomes larger, the finished product coil of the edge strip 14 contacts the end of the lever 39 far from the hot cutter 40, and drives the lever 39 to rotate counterclockwise, so that the end of the lever 39 close to the hot cutter 40 rises. When the diameter of the finished product coil of the edge strip 14 becomes the required diameter, the hot cutter 40 contacts the edge strip 14 and cuts the edge strip 14.

[0049] The machine frame 1 is provided with a finished product box 41 below the receiving assembly.

[0050] Working principle: in the standby state, the upper pull wheel 11 and the lower pull wheel 5 of the three power assemblies are in contact, the upper pull wheel 11 and the moving plate 8 of the first power assembly are in the lowermost position, the auxiliary plate 15 is also in the lowermost position with the moving plate 8, the bottom of the frame 17 contacts one end of the toggle lever 20, so that one end of the frame 17 drives the toggle lever 20 to be in the lower position, the other end of the toggle lever 20 is in the upper position, the toggle lever 20 drives the lifting cylinder 21 to be in the upper position, and the spring 23 is compressed. The cover cylinder 212 on the lifting cylinder 21 covers the inkjet head 16, protects the inkjet head 16, keeps the inkjet head 16 from being blocked, and prolongs the service life of the inkjet head 16.

[0051] When the device is used, the raw material coil of the edge band 14 is installed at the end of the main shaft 13, and the edge band 14 is pulled out from the raw material coil and placed between the upper pulling wheel 11 and the lower pulling wheel 5 of the three sets of power assemblies. According to the above principle, the plate 15 is in the upper position, and the cover cylinder 212 on the lifting cylinder 21 is separated from the printing head 16 due to the pulling force provided by the spring 23, so that the printing head 16 is exposed and ready to work. At the same time, the plane structure on both sides of the auxiliary shaft 27 remains vertical, the clamping cavity 281 of the core block 28 falls onto the auxiliary shaft 27, the electric cylinder 30 is started, the telescopic shaft of the electric cylinder 30 drives the pushing cylinder 29 to move, the pushing cylinder 29 drives the core block 28 to move on the auxiliary shaft 27, the core block 28 is driven to the position flush with the edge band 14, and the pushing cylinder 29 prevents other core blocks 28 from falling, the end of the edge band 14 is placed into the square cavity 282 of the core block 28, the motor 26 is started, the auxiliary shaft 27 is driven to rotate, the auxiliary shaft 27 drives the core block 28 to rotate, so that the edge band 14 is wound on the core block 28; at the same time, the motor 3 of the three sets of power assemblies is started synchronously, the lower rotating shaft 4 is driven to rotate by the motor 3, and the lower pulling wheel 5 is driven to rotate synchronously by the lower rotating shaft 4, and the lower pulling wheel 5 advances synchronously with the edge band 14 due to the friction force, and the upper pulling wheel 11 rotates synchronously.

[0052] In the movement process of the edge band 14, the printing head 16 sprays ink on the edge band 14, and the dryer 24 dries the edge band 14.

[0053] When the diameter of the finished coil of the edge band 14 becomes larger, the L pressing plate 37 contacts with the finished coil of the edge band 14, so that the spring column 36 is shortened, and the telescopic shaft of the spring column 36 provides elastic force to tightly press the L pressing plate 37 on the finished coil of the edge band 14, so as to ensure the tightness of the finished coil of the edge band 14; at the same time, as the diameter of the finished coil of the edge band 14 becomes larger, the finished coil of the edge band 14 contacts with the end of the lever 39 away from the hot cutter 40, the lever 39 is driven to rotate counterclockwise, the end of the lever 39 close to the hot cutter 40 rises, when the diameter of the finished coil of the edge band 14 becomes larger to the required diameter, the hot cutter 40 contacts with the edge band 14 to cut the edge band 14, and the cut edge band 14 is pasted on the finished coil by using adhesive tape manually.

[0054] The electric cylinder 30 is started again to drive the pushing cylinder 29 to move, so that the finished coil which has been pasted is pushed into the finished box 41.

[0055] The above is only a specific embodiment of the present application, but the technical features of the present application are not limited to this. Any simple change, equivalent replacement or modification made on the basis of the present application to solve the basically same technical problem and realize the basically same technical effect is covered in the protection scope of the present application.

Claims

1. A sealing strip inkjet printer, comprising a frame (1), characterized in that: Three sets of power units are arranged side by side on the frame (1); The power assembly includes a base plate (2), which is fixed above the frame (1). A motor (3) is provided above the base plate (2). The rotating shaft of the motor (3) is connected to a lower rotating shaft (4), and the lower rotating shaft (4) is rotatably located above the base plate (2). A lower pull wheel (5) is rotatably located in the middle of the lower rotating shaft (4). Two guide columns (6) are vertically connected above the base plate (2). The top of the two guide columns (6) is connected to a top baffle (7), and a sliding plate (8) is slidably connected to the two guide columns (6). A spring (9) is connected between the top baffle (7) and the sliding plate (8). An upper rotating shaft (10) is provided below the sliding plate (8), and an upper pull wheel (11) is rotatably located on the upper rotating shaft (10) and directly above the lower pull wheel (5). Two bearings (12) are provided on the frame (1) and next to the first power assembly. A main shaft (13) is rotatably provided on the two bearings (12). The end of the main shaft (13) is connected to the raw material coil of the sealing strip (14), and the raw material coil of the sealing strip (14) is aligned with the lower pull wheel (5) and upper pull wheel (11) of the power assembly. A side plate (15) is fixedly provided on the side of the moving plate (8) of the first group of power components. A printing head (16) for printing on the edge sealing strip (14) is provided below the side plate (15). A frame (17) is provided below the side plate (15) and next to the printing head (16). A secondary support plate (18) is provided on the side of the bottom plate (2) of the first group of power components. A crossbar (19) is provided above the secondary support plate (18). A crank (20) is rotatably provided on the crossbar (19). One end of the crank (20) is connected to the frame. The bottom of the frame (17) is in contact with the other end of the crank (20) and a sliding groove (201) is provided. A sliding rod (22) is slidably provided on the sub-support plate (18). A spring (23) is connected between the sliding rod (22) and the sub-support plate (18). A lifting cylinder (21) is provided at the upper end of the sliding rod (22). A sliding column (211) is provided in the middle of the lifting cylinder (21). The sliding column (211) and the sliding groove (201) form a sliding fit. A cover cylinder (212) for protecting the inkjet head (16) is provided at the upper part of the lifting cylinder (21). A storage component is provided above the frame (1) and next to the third power component. The storage component includes a support frame (25), which is fixed above the frame (1). A second motor (26) is fixed above the support frame (25). The end of the rotating shaft of the second motor (26) is connected to a secondary shaft (27) for placing the core block (28). The two sides of the secondary shaft (27) are symmetrical planar structures. The core block (28) is provided with a cavity (281). The width of the cavity (281) is consistent with the width of the two planar structures of the secondary shaft (27).

2. The edge sealing strip inkjet printer according to claim 1, characterized in that: The side of the moving plate (8) of the second power assembly is provided with a dryer (24) for drying the edge banding strip (14).

3. The edge sealing strip inkjet printer according to claim 2, characterized in that: A push cylinder (29) for driving the core block (28) to move is sleeved on the secondary shaft (27). An electric cylinder (30) is provided above the support frame (25). The telescopic shaft of the electric cylinder (30) is connected to the push cylinder (29).

4. The edge sealing strip printing machine according to claim 3, characterized in that: The core block (28) has a square cavity (282) above the locking cavity (281) for locking the sealing strip (14).

5. A sealing strip inkjet printer according to claim 4, characterized in that: A storage rack (31) is provided above the support frame (25) and above the sub-shaft (27), and the storage channel of the storage rack (31) is aligned with the sub-shaft (27). The storage channel of the storage rack (31) is used to store core blocks (28). The outer sides of the two upper wall panels of the storage rack (31) are corner platforms (311), and a top cover (32) is provided above the storage rack (31). The inner side of the wall panel of the top cover (32) is provided with a corner slide (321) for insertion into the corner platform (311). The storage channel of the storage rack (31) is provided with an upper support plate (33), a spring three (34) and a lower support plate (35). The upper support plate (33) is in contact with the lower surface of the top plate of the top cover (32), and a spring three (34) is connected between the upper support plate (33) and the lower support plate (35).

6. A sealing strip inkjet printer according to claim 5, characterized in that: The third group of power assembly base plate (2) is provided with spring column (36), and the end of the telescopic shaft of spring column (36) is provided with L pressure plate (37) for pressing the finished coil of the sealing strip (14).

7. A sealing strip inkjet printer according to claim 6, characterized in that: The support frame (25) is provided with a rotating column (38), and a lever (39) is rotatably provided on the rotating column (38). The lever (39) is located directly below the edge banding strip (14). A hot cutter (40) for cutting the edge banding strip (14) is provided on the lever (39) and at one end near the third power assembly. The distance from the pivot of the lever (39) to the end near the hot cutter (40) is greater than the distance from the pivot of the lever (39) to the end away from the hot cutter (40).

8. A sealing strip inkjet printing machine according to any one of claims 1-7, characterized in that: A finished product box (41) is provided on the frame (1) and below the storage component.

Citation Information

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