CN223213504U - Digital printing's slitting structure - Google Patents

Digital printing's slitting structure

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Publication number
CN223213504U
CN223213504U CN202422386541.4U CN202422386541U CN223213504U CN 223213504 U CN223213504 U CN 223213504U CN 202422386541 U CN202422386541 U CN 202422386541U CN 223213504 U CN223213504 U CN 223213504U
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CN
China
Prior art keywords
cutter shaft
top surface
fixedly connected
upper cutter
seat
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202422386541.4U
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Chinese (zh)
Inventor
林小博
刘璐
刘圣旺
孟振华
潘尚刚
莫金树
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.)
Guangzhou Pulisi Technology Co, Ltd
Original Assignee
Guangzhou Pulisi Technology Co, Ltd
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Filing date
Publication date
Application filed by Guangzhou Pulisi Technology Co, Ltd filed Critical Guangzhou Pulisi Technology Co, Ltd
Priority to CN202422386541.4U priority Critical patent/CN223213504U/en
Application granted granted Critical
Publication of CN223213504U publication Critical patent/CN223213504U/en
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Abstract

本实用新型公开了一种数码印刷的分条结构,涉及印刷技术领域,包括两个底座,底座的顶面可滑动的设置有切割结构,两个侧板之间可转动地设置有出料导纸辊和回收导纸辊;两个侧板的相对面可转动地连接有转动座,转动座内设置有下刀轴;侧板之间设置有安装结构,安装结构的两个摆臂在侧板可转动地连接,两个摆臂一端连接有转动轴,两个摆臂另一端可转动地连接有上刀轴。通过设置了切割结构和安装结构,上刀轴表面的上刀片对印刷纸进行切割分条;通过旋转手柄间接带动两侧摆臂向上转动,上刀轴表面的上刀片悬空设置方便对其进行更换清洗;下刀轴两侧一字块与转动座卡合连接,能够直接将下刀轴从两侧转动座直接完整取出。

The utility model discloses a striping structure for digital printing, which relates to the field of printing technology and comprises two bases, wherein the top surface of the base is slidably provided with a cutting structure, and a discharging paper guide roller and a recycling paper guide roller are rotatably provided between the two side panels; the opposite surfaces of the two side panels are rotatably connected to a rotating seat, and a lower cutter shaft is provided in the rotating seat; a mounting structure is provided between the side panels, and two swing arms of the mounting structure are rotatably connected to the side panels, one end of the two swing arms is connected to the rotating shaft, and the other end of the two swing arms is rotatably connected to the upper cutter shaft. By providing the cutting structure and the mounting structure, the upper blade on the surface of the upper cutter shaft cuts the printed paper into strips; the swing arms on both sides are indirectly driven to rotate upward by rotating the handle, and the upper blade on the surface of the upper cutter shaft is suspended for easy replacement and cleaning; the blocks on both sides of the lower cutter shaft are engaged with the rotating seat, so that the lower cutter shaft can be directly and completely removed from the rotating seats on both sides.

Description

Digital printing's slitting structure
Technical Field
The utility model relates to the technical field of printing, in particular to a digital printing slitting structure.
Background
In the label production process, the label tape produced and manufactured generally needs to be subjected to the procedures of quality detection, cutting and slitting, packaging, warehousing and the like. In the trademark printing processing process, the trademark printing needs to be subjected to slitting and cutting. In the digital printing process, the long text, image or whole layout is divided into a plurality of small paragraphs, sections or areas according to design or reading requirements. The method is beneficial to improving the readability of the text, the aesthetic property of the layout and the overall quality of the printed matter.
The printing process can be performed through a specific slitting structure, for example, a slitting device for printing with the publication number of CN212021951U comprises a box body and a cutting device, wherein the cutting device is arranged on the box body and comprises a first rotating roller and a second rotating roller, the first rotating roller is arranged on one side of a printed product, the second rotating roller is arranged on the other side of the printed product, a sliding block is connected onto the first rotating roller in a sliding mode, and a cutting knife is arranged on the sliding block.
The cutting device of the slitting device is provided with the rotating roller inside, and the blade position on the surface of the rotating roller and the printing slitting condition can not be directly observed. Meanwhile, as the disassembly and assembly parts are not disclosed, the rotating roller is difficult to be disassembled from the cutting device for replacement during cleaning and replacement.
Disclosure of Invention
The utility model aims to solve the problems that the blade in the background technology is difficult to observe and replace and the rotating roller is difficult to disassemble and assemble, and provides a strip dividing structure for digital printing.
The aim of the utility model can be achieved by the following technical scheme:
the utility model provides a divide strip structure of digital printing, includes two bases, the top surface slidable of base is provided with cutting structure, cutting structure includes:
The two side plates are fixedly connected with the top surface of each base, and a discharging guide roller and a recycling guide roller are rotatably arranged between the two side plates;
The two ends of the lower cutter shaft are fixedly connected with a character block, and the lower cutter shaft is clamped and fixed with the transverse groove of the rotating seat through the character blocks at the two ends;
The upper cutter shaft is positioned above the lower cutter shaft, the upper cutter shaft is in transmission connection with the lower cutter shaft, and an upper blade is fixedly sleeved on the surface of the upper cutter shaft.
The utility model further provides a scheme that the top surface of the base is connected with a sliding rail, the top surface of the sliding rail is slidably connected with a sliding seat, the sliding seat is fixedly connected with the bottom surface of the side plate, a transmission screw rod is rotatably arranged above the base on one side, and the transmission screw rod penetrates through the sliding seat and is in threaded connection.
The utility model further provides a scheme that one end of the transmission screw rod is fixedly connected with a hand wheel, the side surface of the base is fixedly connected with a clamping block, a rotating shaft of the hand wheel penetrates through the clamping block, and the surface of the clamping block is connected with a screwing handle.
As a further scheme of the utility model, the opposite surfaces of the two side plates are fixedly connected with a setting seat, the inside of the setting seat is rotatably connected with a rotating seat, and the top surface of the setting seat is detachably connected with a fixed cover.
The utility model further provides a scheme that the outer surface of one side plate is rotatably connected with a synchronous wheel, the synchronous wheel is fixedly connected with a rotary seat at one side, the outer surface of the side plate is connected with a servo motor, and the output end of the servo motor is meshed with the synchronous wheel through a rack.
As a further scheme of the utility model, the upper cutter shaft is arranged on the top surface of one end of the swing arm, the top surface of the swing arm is detachably connected with a fixed block, and the fixed block is positioned above the upper cutter shaft.
As a further scheme of the utility model, the opposite surfaces of the two side plates are fixedly connected with a positioning block, the positioning block is positioned below the swing arm, the top surface of the positioning block is set to be a horizontal surface, and the top surface of the positioning block is contacted with the swing arm.
The utility model has the beneficial effects that:
(1) According to the digital printing slitting structure, the cutting structure and the mounting structure are arranged, the upper cutter shaft and the lower cutter shaft of the cutting structure synchronously rotate, and the upper blade on the surface of the upper cutter shaft cuts and slits printing paper; when the upper cutter shaft and the lower cutter shaft are required to be replaced and cleaned, the swing arms at two sides are indirectly driven to rotate upwards through the rotary handle, so that the upper cutter shaft is driven to be separated from the transmission of the lower cutter shaft, and the upper blades on the surface of the upper cutter shaft are suspended to facilitate replacement and cleaning;
(2) According to the digital printing slitting structure, the adjusting structure is arranged, the hand wheel of the adjusting structure can drive the transmission screw rod to rotate, so that the two sliding seats move along the sliding rail, the integral position of the slitting structure is changed, the hand wheel is arranged in the clamping block, and the hand wheel and the transmission screw rod can be fixed by rotating the screwing handle, so that the integral position of the slitting structure is fixed.
Drawings
The utility model is further described below with reference to the accompanying drawings.
FIG. 1 is a schematic diagram of a digitally printed sliver structure of the present utility model;
FIG. 2 is an enlarged view of a portion of the utility model at A in FIG. 1;
FIG. 3 is an enlarged view of a portion of the utility model at B in FIG. 1;
FIG. 4 is a schematic view of the connection of one end of the upper and lower arbor shafts of the present utility model;
FIG. 5 is a schematic front view of a digitally printed sliver structure of the present utility model;
FIG. 6 is a schematic view of the back of a digitally printed sliver structure according to the present utility model
Fig. 7 is an enlarged view of a portion of the present utility model at C in fig. 6.
The device comprises a regulating structure, a base, a sliding rail, a sliding seat, a 14, a hand wheel, a 15, a transmission screw rod, a 16, a clamping block, a 17, a screwing handle, a 2, a cutting structure, a 21, a side plate, a 22, a servo motor, a 23, a synchronous wheel, a 24, a lower cutter shaft, a 25, a driving bevel gear, a 26, a backing ring sleeve, a 27, an upper cutter shaft, a 28, a driven bevel gear, a 29, an upper blade, a 210, a character block, a 3, a mounting structure, a 31, a handle, a 32, a swing arm, a 33, a rotating shaft, a 34, a fixed block, a 35, a positioning block, a 36, a speed reducer, a 37, a setting seat, a 38, a fixed cover, a 39, a rotating seat, a 4, a discharge guide roller and a 5, a recovery guide roller.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-7, the present utility model is a digital printing striping structure, which includes an adjusting structure 1, wherein two bases 11 of the adjusting structure 1 are relatively fixed with the ground. The top surfaces of the two bases 11 are positioned on the same horizontal line, and the top surface of each base 11 is fixedly connected with two sliding rails 12. The top surfaces of the two sliding rails 12 on the top surface of the same base 11 are slidably connected with sliding seats 13, a transmission screw rod 15 is rotatably arranged above one side of the sliding seat 13, the transmission screw rod 15 is arranged along the horizontal direction, the transmission screw rod 15 penetrates through the corresponding sliding seat 13 and is in threaded connection, and one end of the transmission screw rod 15 is fixedly connected with a hand wheel 14. The side of the sliding seat 13 is fixedly connected with a clamping block 16, and a rotating shaft 33 of the hand wheel 14 penetrates through the clamping block 16. The surface of the clamping block 16 is provided with a screwing handle 17, and the clamping block 16 can be pressed by rotating the screwing handle 17 so as to fix the hand wheel 14 and the transmission screw 15.
The top surfaces of the two sliding seats 13 are provided with a cutting structure 2, and side plates 21 of the cutting structure 2 are fixedly connected to the top surfaces of the sliding seats 13. A discharge guide roller 4 and a recovery guide roller 5 are rotatably connected between the two side plates 21, and the discharge guide roller 4 and the recovery guide roller 5 are parallel to each other and positioned in the same horizontal plane. The outer surface of one of the side plates 21 is fixedly connected with a servo motor 22, and the output end of the servo motor 22 is arranged along the horizontal direction. The outer surface of the side plate 21 is rotatably connected with a synchronizing wheel 23, the synchronizing wheel 23 is positioned below the servo motor 22, a plurality of meshing teeth are arranged on the surface of the synchronizing wheel 23, and synchronous transmission can be performed between the output end of the servo motor 22 and the synchronizing wheel 23 through racks (not shown in the figure). The side plate 21 is fixedly connected with a semicircular setting seat 37 on the side far away from the synchronizing wheel 23, a rotating seat 39 is rotatably arranged in the setting seat 37, the rotating seat 39 is fixedly connected with the synchronizing wheel 23 on one side, and a horizontal groove in a shape of a Chinese character 'pin' is formed in the top surface of the rotating seat 39. The other side plate 21 is provided with the same setting seat 37 and rotating seat 39, a lower cutter shaft 24 is detachably arranged between the rotating seats 39 on two sides, two ends of the lower cutter shaft 24 are provided with transverse character blocks 210, the lower cutter shaft 24 is connected in a clamping manner in the rotating seat 39 through the character blocks 210, and the top surfaces of the setting seats 37 on two sides are detachably connected with a fixed cover 38. The position of the lower cutter shaft 24 is located between the discharge guide roller 4 and the recovery guide roller 5. The surface of the lower cutter shaft 24 is sleeved and connected with a driving bevel gear 25, and the driving bevel gear 25 is arranged at one end close to the servo motor 22.
The mounting structure 3 is arranged between the two side plates 21, the opposite surfaces of the two side plates 21 are rotatably connected with the swing arms 32, a rotating shaft 33 is fixedly connected between the swing arms 32 at the two sides, and the rotating shaft 33 is positioned at one end of the swing arms 32 far away from the lower cutter shaft 24. The swing arms 32 on two sides are detachably provided with an upper cutter shaft 27 near one end of the lower cutter shaft 24, a slotted hole in which the upper cutter shaft 27 is arranged is formed in the upper part of the swing arms 32, the upper cutter shaft 27 is arranged on the top surface through the slotted hole, a fixing block 34 is detachably arranged at the arrangement end of the swing arms 32, and the fixing block 34 is used for fixing the rotating shaft of the upper cutter shaft 27. The opposite surfaces of the two side plates 21 are fixedly connected with positioning blocks 35, the positioning blocks 35 are positioned below the swing arms 32, the top surfaces of the positioning blocks 35 are set to be horizontal, the top surfaces of the positioning blocks 35 are contacted in the swing process of the swing arms 32, the swing arms 32 are arranged along the horizontal direction, and at the moment, the upper cutter shafts 27 are positioned above the lower cutter shafts 24. The surface of the upper cutter shaft 27 is sleeved with a transmission bevel gear, and the driving bevel gear 25 is meshed with the transmission bevel gear at the moment. The surface of the upper cutter shaft 27 is sleeved with a circular upper blade 29, the surface of the lower cutter shaft 24 is sleeved with a backing ring sleeve 26, and the backing ring sleeve 26 is positioned on one side of the upper blade 29. The outer surface of the side plate 21 far away from the servo motor 22 is fixedly connected with a speed reducer 36, the surface of the speed reducer 36 is connected with a handle 31, and the handle 31 is in transmission connection with the rotating shaft 33 through the speed reducer 36.
When the digital printing strip dividing structure is used, printing paper to be divided is sleeved on the discharging guide roller 4. One end of the printing paper passes through the gap between the upper blade 29 and the lower blade and then is set on the recovery guide roller 5 on the other side. The fixation of the hand wheel 14 and the transmission screw 15 is released by turning the screwing handle 17. The hand wheel 14 is rotated to drive the transmission screw rod 15 to rotate, thereby driving the sliding seat 13 in threaded connection to move, the sliding seat 13 is limited by the sliding rail 12, the sliding seat 13 drives the whole slitting structure to move, and the position of the slitting structure is adjusted. The position is then fixed by turning the knob 17. By starting the servo motor 22, the output end of the servo motor 22 drives the synchronizing wheel 23 to rotate, and the synchronizing wheel 23 drives the lower cutter shaft 24 to rotate. The lower cutter shaft 24 drives the upper cutter shaft 27 to rotate through the bevel gear on the surface, so that the upper blade 29 on the surface of the upper cutter shaft 27 rotates for cutting. The printing paper can be cut from the slit to be separated, and then fed into the recovery guide roller 5 to be recovered. When the upper blade 29 needs to be replaced and cleaned, the handle 31 is rotated by rotating the handle 31, and the handle 31 is decelerated by the speed reducer 36 to indirectly drive the rotating shaft 33 to rotate. The swing arms 32 at the two ends are driven by the rotating shaft 33 to swing upwards, so that the driven bevel gear 28 of the upper cutter shaft 27 is separated from the driving bevel gear 25, and the upper cutter blade 29 is suspended at the moment so as to be convenient to replace. The lower cutter shaft 24 is rotatably connected with the side plate 21 through the setting seats 37 at the two sides, the fixed cover 38 on the top surface of the setting seat 37 is detached, and the rotating seat 39 in the setting seat 37 is exposed. The two ends of the lower cutter shaft 24 are provided with a character block 210, and the lower cutter shaft 24 is clamped with the rotating seat 39 through the character block 210, so that the lower cutter shaft 24 can be directly taken out of the rotating seat 39 to replace the cutter seat.
The digital printing slitting structure comprises a cutting structure 2 and an installation structure 3, wherein an upper cutter shaft 27 and a lower cutter shaft 24 of the cutting structure 2 are synchronously rotated, an upper blade 29 on the surface of the upper cutter shaft 27 is used for cutting and slitting printing paper, when the upper cutter shaft 27 and the lower cutter shaft 24 are required to be replaced and cleaned, a rotary handle 31 is used for indirectly driving two side swing arms 32 to rotate upwards, so that the upper cutter shaft 27 is driven to be separated from the transmission of the lower cutter shaft 24, an upper blade 29 on the surface of the upper cutter shaft 27 is suspended to facilitate replacement and cleaning, a character block 210 on two sides of the lower cutter shaft 24 is clamped and connected with a rotary seat 39, the lower cutter shaft 24 can be directly and completely taken out from the rotary seats 39 on two sides, a hand wheel 14 of the adjusting structure 1 can drive a transmission screw 15 to rotate through the adjusting structure 1, two sliding seats 13 are driven to move along a sliding rail 12, the integral position of the slitting structure is changed, the hand wheel 14 is arranged in a clamping block 16, and the integral position of the slitting structure is fixed through rotating the hand wheel 14 and the transmission screw 15.
The foregoing describes one embodiment of the present utility model in detail, but the description is only a preferred embodiment of the present utility model and should not be construed as limiting the scope of the utility model. All equivalent changes and modifications within the scope of the present utility model are intended to be covered by the present utility model.

Claims (7)

1. The utility model provides a divide strip structure of digital printing, its characterized in that includes two bases (11), and the top surface slidable of base (11) is connected with cutting structure (2), cutting structure (2) include:
The two side plates (21) are fixedly connected with the top surface of each base (11), a discharging guide roller (4) and a recycling guide roller (5) are rotatably connected between the two side plates (21), a rotating seat (39) is rotatably connected to the opposite surfaces of the two side plates (21), and a transverse groove is formed in the surface of the rotating seat (39);
The two ends of the lower cutter shaft (24) are fixedly connected with a character block (210), and the lower cutter shaft (24) is clamped and fixed with a transverse groove of the rotating seat (39) through the character blocks (210) at the two ends;
A mounting structure (3) is arranged between the side plate (21) and the upper cutter shaft (27), two swing arms (32) of the mounting structure (3) are rotatably connected on opposite faces of the side plate (21), one end of each swing arm (32) is fixedly connected with the same rotating shaft (33), the other end of each swing arm (32) is rotatably connected with the upper cutter shaft (27), the upper cutter shaft (27) is located above the lower cutter shaft (24), the upper cutter shaft (27) is in transmission connection with the lower cutter shaft (24), and an upper cutter blade (29) is fixedly sleeved on the surface of the upper cutter shaft (27).
2. The digital printing slitting structure according to claim 1, wherein the top surface of the base (11) is connected with a sliding rail (12), the top surface of the sliding rail (12) is slidably connected with a sliding seat (13), the sliding seat (13) is fixedly connected with the bottom surface of the side plate (21), a transmission screw (15) is rotatably arranged above one side of the base (11), and the transmission screw (15) penetrates through the sliding seat (13) and is in threaded connection.
3. The digital printing slitting structure according to claim 2, wherein one end of the transmission screw rod (15) is fixedly connected with a hand wheel (14), the side surface of the base (11) is fixedly connected with a clamping block (16), a rotating shaft of the hand wheel (14) penetrates through the clamping block (16), and the surface of the clamping block (16) is connected with a screwing handle (17).
4. The splitting structure for digital printing according to claim 1, wherein the opposite surfaces of the two side plates (21) are fixedly connected with a setting seat (37), a rotatable connection rotating seat (39) is arranged in the setting seat (37), and a fixed cover (38) is detachably connected to the top surface of the setting seat (37).
5. The digital printing slitting structure according to claim 1, wherein the outer surface of one side plate (21) is rotatably connected with a synchronous wheel (23), the synchronous wheel (23) is fixedly connected with a side rotating seat (39), the outer surface of the side plate (21) is connected with a servo motor (22), and the output end of the servo motor (22) is meshed with the synchronous wheel (23) through a rack.
6. The splitting structure for digital printing according to claim 1, wherein the upper cutter shaft (27) is placed on the top surface of one end of the swing arm (32), the top surface of the swing arm (32) is detachably connected with a fixing block (34), and the fixing block (34) is located above the upper cutter shaft (27).
7. The splitting structure for digital printing according to claim 1, wherein the opposite surfaces of the two side plates (21) are fixedly connected with a positioning block (35), the positioning block (35) is located below the swing arm (32), the top surface of the positioning block (35) is set to be a horizontal surface, and the top surface of the positioning block (35) is in contact with the swing arm (32).
CN202422386541.4U 2024-09-29 2024-09-29 Digital printing's slitting structure Active CN223213504U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422386541.4U CN223213504U (en) 2024-09-29 2024-09-29 Digital printing's slitting structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422386541.4U CN223213504U (en) 2024-09-29 2024-09-29 Digital printing's slitting structure

Publications (1)

Publication Number Publication Date
CN223213504U true CN223213504U (en) 2025-08-12

Family

ID=96646218

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422386541.4U Active CN223213504U (en) 2024-09-29 2024-09-29 Digital printing's slitting structure

Country Status (1)

Country Link
CN (1) CN223213504U (en)

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