A quick cleaning device for a printing press
Patent Information
- Application Number
- CN202521608194.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-30
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-07-30
AI Technical Summary
[0013]This invention mainly utilizes multiple sets of parallel guide wheels for output operation, enabling the lower opening box, the horizontal lead screw assembly, the sliding base, the slotting frame, the lifting lead screw assembly, the lifting block, the electric damping shaft, the flipping horizontal seat, and the electric clamp to clamp and flip the material output from the upper layer and send it to the next layer, thereby improving the automated processing efficiency of the equipment.
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Figure CN224752128U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of printing machinery technology, and in particular to a rapid cleaning device for printing machinery. Background Technology
[0002] In the printing industry, the printing plate is an important component, and its surface quality directly affects the quality of printed products and production efficiency. However, after long-term operation, the surface of the printing plate often accumulates stubborn stains such as ink, paper dust, and adhesives. These not only reduce printing quality but may also accelerate roller wear and affect equipment lifespan. Therefore, timely cleaning is necessary.
[0003] Existing rapid cleaning devices for printing machinery, such as CN202420953814.6 which relates to the field of printing machinery technology and discloses a rapid cleaning device for printing machinery, include a worktable, a control panel installed on the right side of the worktable, a printing plate set on the top of the worktable, a pull rod fixedly connected to the right side of the printing plate, and fixed frames fixedly connected to both sides of the top of the worktable. Guide blocks are slidably connected inside the fixed frames, and horizontal bars are fixedly connected to the opposing surfaces of the guide blocks. However, in the above technology, the printing plate is mainly cleaned in a fixed clamping state. For deep cleaning, it needs to be released and flipped, resulting in low processing efficiency and poor automation. Therefore, this utility model proposes a rapid cleaning device for printing machinery to solve the problems existing in the prior art. Utility Model Content
[0004] To address the aforementioned problems, this utility model proposes a rapid cleaning device for printing machinery. This rapid cleaning device mainly utilizes multiple sets of parallel, unidirectional guide wheels for output operation. The combined action of the lower box opening mechanism, the transverse lead screw assembly, the sliding base, the slotting frame, the lifting lead screw assembly, the lifting block, the electric damping shaft, the flipping cross seat, and the electric clamps clamps and flips the material output from the upper layer before sending it to the next layer, thereby improving the automated processing efficiency of the equipment.
[0005] To achieve the purpose of this utility model, the utility model is achieved through the following technical solution: a printing machinery rapid cleaning device, including a feeding and discharging output component and a clamping and flipping component, wherein a spraying mechanism is provided on the inner side of the middle part of the feeding and discharging output component, and a clamping and flipping component is provided above one end of the feeding and discharging output component;
[0006] The clamping and flipping component includes a lower opening box, a transverse screw assembly, a sliding base, a slotting frame, a lifting screw assembly, a lifting block, an electric damping shaft, a flipping cross seat, and an electric clamp. The lower opening box is located above one end of the infeed / outfeed output component. The sliding base is threadedly connected to the lower opening box via the transverse screw assembly, and a slotting frame is located above the sliding base. A lifting block is threadedly connected to the slotting frame via the lifting screw assembly. An electric damping shaft is located on the inner side of the lifting block, and a flipping cross seat is located at the output end of the electric damping shaft. An electric clamp is located on the inner side of the flipping cross seat.
[0007] In a preferred embodiment of this utility model, the electric clamps are symmetrically distributed around the central axis of the flipping cross seat.
[0008] In a preferred embodiment of the present invention, the infeed and discharge output assembly includes a base pad, a bolt base, a sewage tank, a drain valve block, a trough-shaped side plate, an inner connecting frame, a guide wheel, a gearbox, a drive motor, and a synchronous gear set. A bolt base is provided above one end of the base pad, and a sewage tank for installing the drain valve block is provided above the bolt base.
[0009] In a preferred embodiment of the present invention, a grooved side plate for mounting an inner connecting frame is provided above the side of the sewage tank. A guide wheel is provided on the inner side of the grooved side plate, and a speed change gearbox is provided at the outer end of the guide wheel. A synchronous gear set connected to the output end of the drive motor is provided inside the speed change gearbox.
[0010] In a preferred embodiment of this utility model, the spray washing mechanism includes a lead screw assembly, a sliding beam, a lifting base plate, an arc-shaped shell, an electric rotating seat, a brush roller, a water distribution base, a nozzle, a connecting pipe, a drive water pump, and a water inlet valve block. The lead screw assembly is located on the inner side of the middle of the trough-shaped side plate. A sliding beam is provided at the output end of the lead screw assembly, and a lifting base plate is provided below the sliding beam. An arc-shaped shell is provided on the inner side of the lifting base plate, and an electric rotating seat is provided on the inner side of the arc-shaped shell. A brush roller is provided at the output end of the electric rotating seat.
[0011] In a preferred embodiment of the present invention, a water distribution base is provided on one side of the sliding beam, and a nozzle is provided below the water distribution base. A connecting pipe is provided above the water distribution base, and a drive water pump is provided at one end of the connecting pipe. An inlet valve block is provided at one end of the drive water pump.
[0012] The beneficial effects of this utility model are as follows:
[0013] This invention mainly utilizes multiple sets of parallel guide wheels for output operation, enabling the lower opening box, the horizontal lead screw assembly, the sliding base, the slotting frame, the lifting lead screw assembly, the lifting block, the electric damping shaft, the flipping horizontal seat, and the electric clamp to clamp and flip the material output from the upper layer and send it to the next layer, thereby improving the automated processing efficiency of the equipment. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0015] Figure 2 This is a bottom-view three-dimensional structural diagram of the present invention;
[0016] Figure 3 This is a schematic diagram of the feeding and discharging output component of this utility model;
[0017] Figure 4 This is a three-dimensional structural diagram of the spray washing mechanism of this utility model;
[0018] Figure 5 This is a three-dimensional structural diagram of the clamping and flipping component of this utility model.
[0019] The components include: 1. Feed / discharge output assembly; 101. Base pad; 102. Bolt base; 103. Sewage tank; 104. Drain valve block; 105. Channel-shaped side plate; 106. Internal connecting frame; 107. Coordinated guide wheel; 108. Gearbox; 109. Drive motor; 1010. Synchronous gear set; 2. Spraying mechanism; 201. Lead screw assembly; 202. Sliding beam; 203. Lifting base plate; 204. Arc-shaped shell; 205. 206. Electric rotating seat; 207. Brushing roller; 208. Water distribution base; 209. Nozzle; 2000. Connecting pipe; 2010. Drive water pump; 2011. Water inlet valve block; 3. Clamping and flipping component; 301. Lower opening box; 302. Transverse screw assembly; 303. Sliding base; 304. Slotting frame; 305. Lifting screw assembly; 306. Lifting block; 307. Electric damping shaft; 308. Flipping cross seat; 309. Electric clamp. Detailed Implementation
[0020] To deepen the understanding of this utility model, the following detailed description will be provided in conjunction with embodiments. These embodiments are only used to explain this utility model and do not constitute a limitation on the scope of protection of this utility model.
[0021] according to Figure 1-5 As shown, this embodiment proposes a rapid cleaning device for printing machinery, including a feeding and discharging output component 1 and a clamping and flipping component 3. A spraying and washing mechanism 2 is provided on the inner side of the middle part of the feeding and discharging output component 1, and a clamping and flipping component 3 is provided on the upper part of one end of the feeding and discharging output component 1.
[0022] The clamping and flipping component 3 includes a lower opening box 301, a transverse screw assembly 302, a sliding base 303, a slotting frame 304, a lifting screw assembly 305, a lifting block 306, an electric damping shaft 307, a flipping cross seat 308, and an electric clamp 309. The lower opening box 301 is located above one end of the infeed / outfeed output component 1. The sliding base 303 is threadedly connected to the lower opening box 301 via the transverse screw assembly 302, and the slotting frame 304 is located above the sliding base 303. The lifting block 306 is threadedly connected to the slotting frame 304 via the lifting screw assembly 305. The electric damping shaft 307 is located on the inner side of the lifting block 306, and the flipping cross seat 308 is located at the output end of the electric damping shaft 307. The electric clamp 309 is located on the inner side of the flipping cross seat 308.
[0023] The electric clamp 309 is symmetrically distributed around the central axis of the flipping cross seat 308.
[0024] In this embodiment, when flipping is required, the electric clamp 309 on the flipping cross seat 308 is used to clamp the product, and the horizontal screw assembly 302 is output to move the sliding base 303. In conjunction with the lifting screw assembly 305 on the slotting frame 304, the lifting block 306 is adjusted to a suitable height position, and the electric damping shaft 307, the flipping cross seat 308 and the electric clamp 309 are flipped to feed the next layer.
[0025] The infeed / outfeed output assembly 1 includes a base pad 101, a bolt base 102, a sewage tank 103, a drain valve block 104, a trough-shaped side plate 105, an inner connecting frame 106, a guide wheel 107, a gearbox 108, a drive motor 109, and a synchronous gear set 1010. The bolt base 102 is provided above one end of the base pad 101, and the sewage tank 103 for installing the drain valve block 104 is provided above the bolt base 102.
[0026] In this embodiment, during the cleaning process, the sewage tank 103 collects sewage and discharges it through the drain valve block 104.
[0027] A trough-shaped side plate 105 is provided above the side of the sewage tank 103 for installing an inner connecting frame 106. A guide wheel 107 is provided on the inner side of the trough-shaped side plate 105, and a speed change gearbox 108 is provided at the outer end of the guide wheel 107. A synchronous gear set 1010 connected to the output end of the drive motor 109 is provided inside the speed change gearbox 108.
[0028] In this embodiment, during use, the drive motor 109 outputs power to drive the output end to run, so that the synchronous gear set 1010 on the gearbox 108 outputs and runs, thereby driving the synchronous guide wheel 107 to rotate synchronously and in the same direction, so that the product is placed between the synchronous guide wheels 107 for feeding.
[0029] The spray washing mechanism 2 includes a lead screw assembly 201, a sliding beam 202, a lifting base plate 203, an arc-shaped shell 204, an electric rotating seat 205, a brush roller 206, a water distribution base 207, a nozzle 208, a connecting pipe 209, a drive water pump 2010, and a water inlet valve block 2011. The lead screw assembly 201 is located on the inner side of the middle of the trough-shaped side plate 105. The output end of the lead screw assembly 201 is provided with a sliding beam 202, and the lifting base plate 203 is located below the sliding beam 202. The inner side of the lifting base plate 203 is provided with an arc-shaped shell 204, and the inner side of the arc-shaped shell 204 is provided with an electric rotating seat 205. The output end of the electric rotating seat 205 is provided with a brush roller 206.
[0030] In this embodiment, the electric rotating seat 205 inside the arc-shaped shell 204 then outputs power to drive the output end to run, so that after the electric rotating seat 205 outputs power, the brushing roller 206 runs at high speed, and after the lead screw assembly 201 outputs power, the sliding beam 202 moves and the lifting base plate 203 runs, so that the spraying mechanism 2 can effectively spray and wash the product.
[0031] A water distribution base 207 is provided on one side of the sliding beam 202, and a nozzle 208 is provided below the water distribution base 207. A connecting pipe 209 is provided above the water distribution base 207, and a drive water pump 2010 is provided at one end of the connecting pipe 209. A water inlet valve block 2011 is provided at one end of the drive water pump 2010.
[0032] In this embodiment, the inlet valve block 2011 is then opened. After opening, the power output of the drive water pump 2010 drives the output end to run, so that after the drive water pump 2010 runs, water is input into the water distribution base 207 and sprayed through the nozzle 208.
[0033] The working principle of this printing machinery rapid cleaning device is as follows: During use, the drive motor 109 outputs power to drive the output end, causing the synchronous gear set 1010 on the gearbox 108 to output power and drive the synchronous guide wheel 107 to rotate synchronously and in the same direction. This allows the product to be placed between the synchronous guide wheels 107 for feeding. Then, the water inlet valve block 2011 is opened, and the drive water pump 2010 outputs power to drive the output end, allowing water to enter the water distribution base 207 and be sprayed through the nozzle 208. Next, the electric rotating seat 205 inside the arc-shaped shell 204 outputs power to drive the output end, causing the electric rotating seat 205 to output power to the brush roller 2... 06 operates at high speed, and after the lead screw assembly 201 outputs and runs, the sliding beam 202 moves and the lifting base plate 203 runs, so that the spray washing mechanism 2 can effectively spray wash the product. When flipping is required, the electric clamp 309 on the flipping cross seat 308 is used to clamp the product, and after the transverse lead screw assembly 302 outputs and runs, the sliding base 303 moves. In conjunction with the lifting lead screw assembly 305 on the slotting frame 304, the lifting block 306 is adjusted to a suitable height position, and the electric damping shaft 307, the flipping cross seat 308 and the electric clamp 309 are flipped to feed the next layer. During the cleaning process, the sewage tank 103 collects sewage and discharges sewage through the sewage discharge valve block 104.
[0034] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A rapid cleaning device for printing machinery, comprising an infeed / outfeed output assembly (1) and a clamping and flipping component (3), characterized in that: A spraying mechanism (2) is provided on the inner side of the middle part of the feed and discharge output assembly (1), and a clamping and flipping component (3) is provided above one end of the feed and discharge output assembly (1); The clamping and flipping component (3) includes a lower opening box (301), a transverse screw assembly (302), a sliding base (303), a slotted frame (304), a lifting screw assembly (305), a lifting block (306), an electric damping shaft (307), a flipping cross seat (308), and an electric clamp (309). The lower opening box (301) is located above one end of the infeed / outfeed output component (1), and the lower opening box (301) is threadedly connected to the transverse screw assembly (302). A sliding base (303) is provided, and a slotted frame (304) is provided above the sliding base (303). A lifting block (306) is threadedly connected to the slotted frame (304) through a lifting screw assembly (305). An electric damping shaft (307) is provided on the inner side of the lifting block (306), and a flipping cross seat (308) is provided at the output end of the electric damping shaft (307). An electric clamp (309) is provided on the inner side of the flipping cross seat (308).
2. The printing machinery rapid cleaning device according to claim 1, characterized in that: The electric clamp (309) is symmetrically distributed about the central axis of the flipping cross seat (308).
3. The printing machinery rapid cleaning device according to claim 1, characterized in that: The feed and discharge assembly (1) includes a base pad (101), a bolt base (102), a sewage tank (103), a drain valve block (104), a channel side plate (105), an inner frame (106), a guide wheel (107), a gearbox (108), a drive motor (109), and a synchronous gear set (1010). A bolt base (102) is provided above one end of the base pad (101), and a sewage tank (103) for installing the drain valve block (104) is provided above the bolt base (102).
4. The printing machinery rapid cleaning device according to claim 3, characterized in that: The sewage tank (103) has a grooved side plate (105) above its side for mounting an inner connecting frame (106). The inner side of the grooved side plate (105) has a guide wheel (107), and the outer end of the guide wheel (107) has a gearbox (108). The gearbox (108) has a synchronous gear set (1010) connected to the output end of the drive motor (109).
5. A rapid cleaning device for printing machinery according to claim 3, characterized in that: The spraying mechanism (2) includes a lead screw assembly (201), a sliding beam (202), a lifting base plate (203), an arc-shaped shell (204), an electric rotating seat (205), a brush roller (206), a water distribution base (207), a nozzle (208), a connecting pipe (209), a drive water pump (2010), and a water inlet valve block (2011). The lead screw assembly (201) is located on the inner side of the middle of the trough-shaped side plate (105). The output end of the lead screw assembly (201) is provided with a sliding beam (202), and the lower part of the sliding beam (202) is provided with a lifting base plate (203). The inner side of the lifting base plate (203) is provided with an arc-shaped shell (204), and the inner side of the arc-shaped shell (204) is provided with an electric rotating seat (205). The output end of the electric rotating seat (205) is provided with a brush roller (206).
6. The printing machinery rapid cleaning device according to claim 5, characterized in that: A water distribution base (207) is provided on one side of the sliding beam (202), and a nozzle (208) is provided below the water distribution base (207). A connecting pipe (209) is provided above the water distribution base (207), and a drive water pump (2010) is provided at one end of the connecting pipe (209). An inlet valve block (2011) is provided at one end of the drive water pump (2010).
Citation Information
Patent Citations
Rapid cleaning device for printing machinery
CN222116362U