Automatic dust removal and detection system for embossing unit
By designing an automatic dust removal and detection system for the embossing unit, the problems of cumbersome cleaning methods for embossing equipment and the lack of enclosed shielding in automatic cleaning equipment have been solved, realizing automated cleaning and detection and improving production efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- VINDA PAPER ZHEJIANG
- Filing Date
- 2025-12-02
- Publication Date
- 2026-04-17
AI Technical Summary
Existing embossing equipment cleaning methods rely on manual operation, which is cumbersome, time-consuming, and labor-intensive. Furthermore, automatic cleaning equipment lacks enclosed shielding and waste liquid recycling designs, resulting in low production efficiency, environmental pollution, and resource waste. Residual liquid on the roller surface after cleaning affects quality.
An automatic dust removal and detection system for embossing units was designed, including components such as a support base, a support frame, a shielding frame, closed side plates, a closed support frame, a support bracket, a cleaning bracket, and a protective shielding frame. The system achieves automated dust removal and detection through a combination of actions such as hydraulic support, drive gear shaft to rotate the shielding frame, cleaning spray nozzle, and adsorption sleeve cleaning.
It achieves automated cleaning of embossing rollers, reduces equipment downtime, ensures thorough cleaning, avoids environmental pollution and resource waste, and improves production efficiency and embossing quality.
Smart Images

Figure CN121869757A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of auxiliary devices for embossing production, and in particular to an automatic dust removal and detection system for embossing units. Background Technology
[0002] Embossing is widely used in paper surface processing. It forms specific patterns by pressing with embossing rollers, enhancing the product's aesthetics and added value. However, during the embossing process, the embossing unit forms a preset pattern on the substrate surface through mold rolling or stamping. Its working state directly determines the product forming quality. After the embossing roller has been operating continuously for a long time, environmental dust, material debris and other impurities are easily attached to the surface. If not cleaned in time, these impurities will be embedded in the embossing pattern, which will not only cause the subsequent material embossing pattern to become blurry and increase defects, but also accelerate the wear of the roller surface and shorten the service life of the equipment.
[0003] Based on the above, current cleaning methods mostly rely on manual disassembly and cleaning or simple wiping, which is not only cumbersome and time-consuming, resulting in excessive downtime of equipment and affecting production efficiency, but also makes it difficult to ensure thorough cleaning by manual cleaning. Some equipment with automatic cleaning functions lacks closed shielding and waste liquid recycling design, and the cleaning liquid is prone to splashing during the cleaning process, polluting the processing environment and materials. At the same time, the random discharge of waste liquid will also cause resource waste and environmental pressure. In addition, the liquid remaining on the roller surface after cleaning will also have an adverse effect on the subsequent embossing quality if not treated in time. Summary of the Invention
[0004] In view of this, the present invention provides an automatic dust removal and detection system for embossing units, which has a dust removal and detection device. Its main components are: a support base, a support frame, a shielding frame, a closed side plate, a closed support frame, a support bracket, a cleaning bracket, a support shaft seat, and a protective shielding frame. This solves the problem that current cleaning methods mostly rely on manual disassembly and cleaning or simple wiping, which is not only cumbersome and time-consuming, resulting in excessive downtime and affecting production efficiency, but also makes it difficult to ensure thorough cleaning by manual cleaning. Some equipment with automatic cleaning functions lacks closed shielding and waste liquid recycling designs, and the cleaning liquid is prone to splashing and contaminating the processing environment and materials during the cleaning process. At the same time, the random discharge of waste liquid will cause resource waste and environmental pressure. In addition, the liquid remaining on the surface of the roller after cleaning will also have an adverse effect on the subsequent embossing quality if not treated in time.
[0005] This invention provides an automatic dust removal and detection system for embossing units. Its structural design includes a dust removal and detection device, and its main components are: a support base, a support frame, a shielding frame, a closed side plate, a closed support frame, a support bracket, a cleaning bracket, a support shaft seat, and a protective shielding frame. The top of the bearing base is fitted with a bearing support, and the top of the bearing support has an assembly top groove; the bearing frame is installed inside the assembly top groove, and the side of the bearing frame has a rotating loading groove, and the bearing shaft frame is rotatably installed inside the bearing frame; the shielding frame is installed on the side of the bearing frame, and the side of the shielding frame has an installation side groove; the closed side plate is installed on the side of the installation side groove, and the side of the closed side plate is fitted with a conveying pump body, a fixed bracket is provided on the side of the closed side plate, and a cleaning spray pipe is installed on the side of the fixed bracket; the closed frame is set at the top of the shielding frame, and guide columns are provided on both sides of the closed frame; the bearing bracket is set inside the closed frame, and a threaded support cylinder is provided inside the bearing bracket, and guide blocks are provided at both ends of the bearing bracket; the cleaning bracket is installed at the bottom of the bearing bracket, and an adsorption sleeve is provided on the side of the cleaning bracket, with a transmission tooth block provided at one end of the adsorption sleeve; the bearing shaft seat is set inside the bearing shaft frame, and an assembly support column is provided on the side of the bearing shaft seat, with an embossed roller fitted on the outside of the assembly support column; the protective shielding frame is set between the two sets of bearing frames.
[0006] Furthermore, the side of the supporting base is also provided with: a fixed support groove, a reinforcing column, a guide support groove, an assembly support groove, and a hydraulic support; the fixed support groove is opened on the side of the supporting base, the reinforcing column is fixedly installed inside the fixed support groove, the guide support groove is opened on both sides of the supporting base, the assembly support groove is opened on the top of the supporting base, and the hydraulic support is fixedly installed inside the assembly support groove; the fixed support groove and the reinforcing column can provide stable support for the entire device, and the hydraulic support can enable the entire device to drive the embossing roller to emboss and lift.
[0007] Furthermore, the side of the bearing support is also provided with a lifting support groove and a guide block; the lifting support groove is opened on the side of the bearing support, and the guide block is fixedly set inside the lifting support groove; the lifting support groove and the guide block can enable the bearing support to stably support the embossing roller to move.
[0008] Furthermore, the side of the support frame is also provided with: a transmission groove, an assembly shaft block, a drive gear shaft, and a drive motor; the transmission groove is opened at the bottom of the support frame, the assembly shaft block is fixedly set at the bottom of the support frame, the drive gear shaft is rotatably set inside the assembly shaft block, and the drive motor is fixedly set on the side of the support frame; the drive gear shaft and the drive motor can drive the protective cover frame to rotate and adjust through the drive gear shaft and the drive groove can make the drive gear shaft mesh with the tooth groove opened on the surface of the protective cover frame.
[0009] Furthermore, the side of the shielding frame is also provided with: a positioning slot, an extraction pump body, and a recovery box body; the positioning slot is opened on the side of the shielding frame, the extraction pump body is fixedly installed on the side of the shielding frame, and the recovery box body is fixedly installed on the side of the shielding frame; by using the extraction pump body in conjunction with the recovery box body, the waste liquid generated by dust removal can be extracted and recovered.
[0010] Furthermore, the fixed bracket is also provided with a connecting side tube, an assembly side column, and a detection device on its side; the connecting side tube is fixedly installed on the side of the fixed bracket, the assembly side column is fixedly installed on the top of the fixed bracket, and the detection device is fixedly installed on the side of the assembly side column. The detection device includes components such as an industrial camera and an image recognition algorithm; the embossing roller can be detected by the assembly side column load detection device, and the connecting side tube enables the cleaning spray pipe to be connected to the conveying pump body.
[0011] Furthermore, the side of the enclosed support frame is also provided with: an enclosed top plate, a threaded support column, and an adjusting motor; the enclosed top plate is fixedly installed on the top of the enclosed support frame, the threaded support column is rotatably installed inside the enclosed support frame, and the adjusting motor is fixedly installed on the top of the enclosed support frame; the threaded support column, in conjunction with the adjusting motor, can drive the support bracket and the cleaning bracket to move, so that the cleaning bracket supports the adsorption sleeve for cleaning and adjustment.
[0012] Furthermore, the top of the support bracket is also provided with: a guide block, a support shaft groove, a drive gear block, a transmission shaft, and a cleaning motor; the guide block is fixedly set at both ends, the support shaft groove is opened on the side of the support bracket, the drive gear block is rotatably set on the side of the support bracket, the transmission shaft is rotatably set on the side of the support bracket, and the cleaning motor is fixedly set on the side of the support bracket; the transmission shaft, in conjunction with the cleaning motor, can drive the adsorption sleeve to rotate, the guide block can guide and support the movement of the support bracket, the support shaft groove can support the rotation of the transmission gear block assembled on the adsorption sleeve, the drive gear block and the transmission shaft are connected by gear and toothed belt transmission, and the transmission shaft is connected to the rotating shaft of the cleaning motor by a coupling.
[0013] Furthermore, the side of the bearing shaft seat is also provided with: a rotating support groove, a transmission connector, and a positioning support groove; the rotating support groove is opened on the side of the bearing shaft seat, the transmission connector is fixedly set at one end of the bearing shaft seat, and the positioning support groove is opened on the side of the bearing shaft seat; the bearing shaft seat is connected to the drive shaft through the transmission connector and the positioning support groove, so that the drive shaft drives the embossing roller to perform rolling through the bearing shaft seat, and the transmission connector is connected to the drive motor rotating shaft used for embossing through a coupling.
[0014] Furthermore, the protective frame is also provided with the following on its sides: an assembly shaft groove, a closing block, an installation slot, a recovery branch pipe, a rotating support block, a closing slot, a storage support slot, and a rotating side groove; the assembly shaft groove is opened on the outside of the two sets of protective frames, the closing block is fixedly set on the side of one set of protective frames, the installation slot is opened on the side of one set of protective frames, the recovery branch pipe is fixedly set on the inside of the installation slot, the rotating support block is fixedly set on the side of the two sets of protective frames, the closing slot is opened on the side of one set of protective frames, the storage support slot is opened on the side of one set of protective frames, and the rotating side groove is opened on the side of the two sets of protective frames; the closing block and the closing slot enable the two sets of protective frames to rotate and connect, and the protective frame closes and blocks the bottom of the shielding frame, so that the protective frame and the shielding frame can close and support the embossed roller.
[0015] The automatic dust removal and detection system for embossing units provided by this invention has the following beneficial effects. The present invention discloses an automatic dust removal and detection system for embossing units, comprising multiple components including a support base, a support frame, a shielding frame, closed side plates, a closed support frame, a support bracket, a cleaning bracket, a support shaft seat, and a protective shielding frame, achieving the following innovative effects: The bearing support and bearing shaft are integrally mounted on top of the embossing platform. The bearing base is supported by a hydraulic strut for movement, allowing the bearing support and bearing shaft to carry the embossing roller, which rolls and embosses the material on the embossing platform. A side column bearing detection device is installed to inspect the surface of the embossing roller. This device uses an industrial camera and image recognition algorithm to detect dust. After prolonged use and the accumulation of dust on the embossing roller, the hydraulic strut moves the roller upwards, driving the gear shaft and drive motor to rotate and adjust two sets of protective shields. These shields then align to seal and block the bottom of the embossing roller. A side pipe, connected to a pump, sprays cleaning fluid onto the embossing roller, using high-pressure cleaning fluid to clean the surface. The process involves stabilizing dust cleaning, with a protective frame supporting the waste liquid generated during cleaning. A slotted support and recovery branch pipe guides and transports the waste liquid. A pump, in conjunction with a recovery tank, extracts and recovers the transported waste liquid. After cleaning, an adjustable motor drives the threaded support column to rotate, which in turn moves the threaded support cylinder to support the support bracket. This allows the support bracket, in conjunction with the cleaning bracket, to move the adsorption sleeve, ensuring it is in close contact with the embossing roller surface. Simultaneously, the cleaning motor drives the adsorption sleeve to rotate, allowing it to adsorb and clean the liquid from the embossing roller surface. Subsequently, the protective frame rotates and retracts, exposing the embossing roller. A hydraulic support then moves the embossing roller to make rolling contact with the material below, ensuring continuous and stable embossing processing. Attached Figure Description
[0016] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0017] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0018] In the attached diagram: Figure 1 This diagram shows a structural schematic of the overall component assembly of the dust removal and detection device according to an embodiment of the present invention. Figure 2 This is a schematic diagram showing a partial cross-sectional view of the overall component assembly of the dust removal and detection device according to an embodiment of the present invention; Figure 3 This diagram illustrates the assembly and disassembly of the overall components of the support base according to an embodiment of the present invention. Figure 4 This diagram illustrates the structural configuration of the load-bearing support frame as an integral component, which is assembled and disassembled according to an embodiment of the present invention. Figure 5 A schematic diagram of the assembly and disassembly of the shielding frame component according to an embodiment of the present invention is shown; Figure 6 This diagram illustrates the structural arrangement of the enclosed side panel integral component assembled and disassembled according to an embodiment of the present invention. Figure 7 This diagram illustrates the structural configuration of the enclosed support frame as a whole component, as shown in an embodiment of the present invention. Figure 8 This diagram illustrates the structural configuration of the integral component assembly and disassembly of the support bracket according to an embodiment of the present invention. Figure 9 This diagram illustrates the assembly and disassembly of the cleaning bracket components according to an embodiment of the present invention. Figure 10 This diagram illustrates the assembly and disassembly of the integral bearing shaft seat according to an embodiment of the present invention. Figure 11 A schematic diagram of the assembly and disassembly of the protective frame component according to an embodiment of the present invention is shown.
[0019] Figure label: 1. Support base; 101. Fixed support groove; 102. Reinforcing support column; 103. Guide support groove; 104. Assembly support groove; 105. Hydraulic support column; 106. Bearing support; 107. Assembly top groove; 108. Lifting support groove; 109. Guide block; 2. Load-bearing support frame; 201. Rotating carrier groove; 202. Bearing shaft frame; 203. Transmission connecting groove; 204. Assembly shaft block; 205. Drive gear shaft; 206. Drive motor; 3. Obstructing the frame; 301. Install the side channel; 302. Position the loading channel; 303. Extract the pump body; 304. Recover the tank; 4. Closed side panels; 401. Fixed bracket; 402. Cleaning nozzle; 403. Connecting side pipe; 404. Conveying pump body; 405. Assembled side column; 406. Detection device; 5. Enclosed support frame; 501. Guide column; 502. Enclosed top plate; 503. Threaded column; 504. Adjusting motor; 6. Support frame; 601. Threaded support cylinder; 602. Guide block; 603. Bearing shaft groove; 604. Drive gear block; 605. Transmission support shaft; 606. Cleaning motor; 7. Clean the support frame; 701. Adsorption sleeve; 702. Transmission gear block; 8. Bearing bearing seat; 801. Rotating support groove; 802. Transmission connecting column; 803. Positioning support groove; 804. Assembly support column; 805. Embossed roller; 9. Protect the frame; 901. Assembly shaft groove; 902. Enclosed retaining block; 903. Installation slot; 904. Recoverable branch pipe; 905. Rotating support block; 906. Enclosed retaining groove; 907. Storage groove; 908. Rotating side groove. Detailed Implementation
[0020] Example: Please refer to Figures 1 to 11 : This invention proposes an automatic dust removal and detection system for embossing units, including a dust removal and detection device, whose main components are: a support base 1, a support frame 2, a shielding frame 3, a closed side plate 4, a closed support frame 5, a support bracket 6, a cleaning bracket 7, a support shaft seat 8, and a protective shielding frame 9. The top of the bearing base 1 is fitted with a bearing support 106, and the top of the bearing support 106 has an assembly top groove 107; the bearing frame 2 is installed inside the assembly top groove 107, and the side of the bearing frame 2 has a rotating loading groove 201, and the bearing shaft frame 202 is rotatably installed inside the bearing frame 2; the shielding frame 3 is installed on the side of the bearing frame 2, and the side of the shielding frame 3 has an installation side groove 301; the closed side plate 4 is installed on the side of the installation side groove 301, the side of the closed side plate 4 has a conveying pump body 404, the side of the closed side plate 4 has a fixed bracket 401, and the side of the fixed bracket 401 has a cleaning spray pipe 402; the closed support frame 5 The top of the shielding frame 3 is provided with guide columns 501 on both sides of the closed support frame 5; the bearing bracket 6 is provided inside the closed support frame 5, and the inner side of the bearing bracket 6 is provided with a threaded support cylinder 601, and the two ends of the bearing bracket 6 are provided with guide blocks 601; the cleaning bracket 7 is installed at the bottom of the bearing bracket 6, and the side of the cleaning bracket 7 is provided with an adsorption sleeve 701, and one end of the adsorption sleeve 701 is provided with a transmission tooth block 702; the bearing shaft seat 8 is provided inside the bearing shaft frame 202, and the side of the bearing shaft seat 8 is provided with an assembly support column 804, and the outer side of the assembly support column 804 is fitted with an embossed roller 805; the protective shielding frame 9 is provided between the two sets of bearing support frames 2.
[0021] Example 1: As Figures 3 to 11As shown, the top of the support bracket 6 is also provided with: a guide block 602, a support shaft groove 603, a drive gear block 604, a transmission support shaft 605, and a cleaning motor 606; the guide block 602 is fixedly set at both ends, the support shaft groove 603 is opened on the side of the support bracket 6, the drive gear block 604 is rotatably set on the side of the support bracket 6, the transmission support shaft 605 is rotatably set on the side of the support bracket 6, and the cleaning motor 606 is fixedly set on the side of the support bracket 6; the side of the support shaft seat 8 is also provided with: a rotating support groove 801, a transmission connector 802, and a positioning support groove 803; the rotating support groove 801 is opened on the side of the support shaft seat 8, the transmission connector 802 is fixedly set at one end of the support shaft seat 8, and the positioning support groove 803 is opened on the side of the support shaft seat 8; the side of the protective cover frame 9 is also provided with: an assembly shaft groove 901, a closing block 902, an installation slot 903, a recovery branch pipe 904, and a rotating support block 906. 05. A closed slot 906, a storage support slot 907, and a rotating side slot 908; an assembly shaft slot 901 is opened on the outside of the two sets of protective frames 9; a closed block 902 is fixedly set on the side of one set of protective frames 9; an installation slot 903 is opened on the side of one set of protective frames 9; a recovery branch pipe 904 is fixedly set on the inside of the installation slot 903; a rotating support block 905 is fixedly set on the side of the two sets of protective frames 9; a closed slot 906 is opened on the side of one set of protective frames 9; a storage support slot 907 is opened on the side of one set of protective frames 9; and a rotating side slot 908 is opened on the side of the two sets of protective frames 9; the rotating support block 905, in conjunction with the rotating side slot 908, can support the two sets of protective frames 9 to rotate and adjust, allowing the protective frames 9 to rotate and connect to form a bearing for the recovery of cleaning waste liquid; and the bearing support 6, in conjunction with the cleaning support 7, supports the adsorption sleeve 701 to perform friction adsorption cleaning on the embossed roller 805.
[0022] Example 2: Based on Example 1, as follows Figures 2 to 10As shown, the side of the bearing base 1 is also provided with: a fixed support groove 101, a reinforcing column 102, a guide support groove 103, an assembly support groove 104, and a hydraulic support 105; the fixed support groove 101 is opened on the side of the bearing base 1, the reinforcing column 102 is fixedly installed inside the fixed support groove 101, the guide support groove 103 is opened on both sides of the bearing base 1, the assembly support groove 104 is opened on the top of the bearing base 1, and the hydraulic support 105 is fixedly installed inside the assembly support groove 104; the side of the bearing support 106 is also provided with: a lifting support groove 108 and a guide block. 109; A lifting support groove 108 is provided on the side of the bearing support 106, and a guide block 109 is fixedly installed inside the lifting support groove 108; The side of the bearing frame 2 is also provided with: a transmission groove 203, an assembly shaft block 204, a drive gear shaft 205, and a drive motor 206; The transmission groove 203 is provided at the bottom of the bearing frame 2, the assembly shaft block 204 is fixedly installed at the bottom of the bearing frame 2, the drive gear shaft 205 is rotatably installed inside the assembly shaft block 204, and the drive motor 206 is fixedly installed on the side of the bearing frame 2; The side of the shielding frame 3 is also provided with The device comprises: a positioning slot 302, an extraction pump body 303, and a recovery box 304; the positioning slot 302 is located on the side of the shielding frame 3, the extraction pump body 303 is fixedly mounted on the side of the shielding frame 3, and the recovery box 304 is fixedly mounted on the side of the shielding frame 3; the side of the fixed bracket 401 also comprises: a connecting side pipe 403, an assembly side column 405, and a detection device 406; the connecting side pipe 403 is fixedly mounted on the side of the fixed bracket 401, the assembly side column 405 is fixedly mounted on the top of the fixed bracket 401, and the detection device 406 is fixedly mounted on the top of the fixed bracket 401. The side of the mounting side column 405 is also provided with: a closed top plate 502, a threaded support column 503 and an adjusting motor 504; the closed top plate 502 is fixedly installed on the top of the closed support frame 5, the threaded support column 503 is rotatably installed inside the closed support frame 5, and the adjusting motor 504 is fixedly installed on the top of the closed support frame 5; by mounting the side column 405 in conjunction with the detection device 406, the surface of the embossing roller 805 can be inspected, and the side pipe 403 is connected in conjunction with the conveying pump body 404 so that the cleaning spray pipe 402 can clean and spray the embossing roller 805.
[0023] The specific usage and function of this embodiment: In use, the fixed support groove 101 supports the reinforcing column 102 to stably position and support the bearing base 1, so that the bearing base 1 supports the bearing support 106 on both sides of the embossing platform. The hydraulic column 105 adjusts the height of the bearing support 106 by telescoping. The bearing support 106 supports the bearing shaft seat 8 and is integrally set on the top of the embossing platform. The bearing frame 2 cooperates with the bearing shaft frame 202 to rotate and support the bearing shaft seat 8. The bearing base 1 moves by supporting the bearing support 106 through the hydraulic column 105. The embossing roller 805 presses against the material surface supported by the embossing platform, so that the bearing support 106 supports the bearing shaft seat 8 and supports the embossing roller. Shaft 805 rolls and embosses the material carried by the embossing platform. The mounting side column 405 and the load-bearing detection device 406 inspect the surface of the rotating embossing roller 805. The detection device 406 uses an industrial camera and image recognition algorithm to detect dust. After prolonged use and the accumulation of dust on the embossing roller 805, the hydraulic support 105, supported by the load-bearing base 1, raises the load-bearing support 106. Simultaneously, the load-bearing support 106, in conjunction with the load-bearing frame 2, moves the embossing roller 805 upwards. The outer side of the protective cover frame 9 has toothed grooves that mesh with the drive gear shaft 205. The drive gear shaft 205, in conjunction with the drive motor 206, rotates and adjusts the two sets of protective cover frames 9, causing them to rotate in opposite directions. Adjustments are made to connect the two sets of protective shields 9. The sealing block 902, in conjunction with the sealing slot 903, connects and seals the two sets of protective shields 9, thus sealing and blocking the bottom of the embossing roller 805. The protective shields 9, together with the supporting frame 2, the shielding frame 3, the sealing side plate 4, and the sealing support 5, form a closed cleaning space for the embossing roller 805. The connecting side pipe 403, in conjunction with the conveying pump body 404, allows the cleaning spray pipe 402 to spray cleaning fluid onto the embossing roller 805. High-pressure cleaning fluid spraying stabilizes and removes dust from the surface of the embossing roller 805. The protective shields 9 hold the waste liquid generated during cleaning. The slotted 903 is installed to carry the waste liquid through the recovery branch pipe 904, which guides and transports the waste liquid. The pump body 303 is then used to... The combined recycling tank 304 extracts and recycles the waste liquid conveyed by the guide. After cleaning, the adjusting motor 504 drives the threaded support column 503 to rotate, which in turn supports the support bracket 6 to move, so that the support bracket 6, in conjunction with the cleaning bracket 7, supports the adsorption sleeve 701 to move, so that the adsorption sleeve 701 is in close contact with the surface of the embossing roller 805. At the same time as the embossing roller 805 rotates, the cleaning motor 606 drives the adsorption sleeve 701 to rotate, so that the adsorption sleeve 701 adsorbs and cleans the liquid on the surface of the embossing roller 805. Subsequently, the protective cover frame 9 rotates to retract and expose the embossing roller 805. The hydraulic support column 105 drives the cleaned embossing roller 805 to move and adjust for rolling embossing operation.
Claims
1. An automatic dust removal and detection system for embossing units, comprising a dust removal and detection device, the main components of which are: a support base (1), a support frame (2), a shielding frame (3), a closed side plate (4), a closed support frame (5), a support bracket (6), a cleaning bracket (7), a support shaft seat (8), and a protective shielding frame (9). The top of the bearing base (1) is sleeved with a bearing support (106), and the top of the bearing support (106) is provided with an assembly top groove (107); characterized in that, The supporting frame (2) is installed inside the assembly top groove (107). A rotating loading groove (201) is provided on the side of the supporting frame (2). A supporting shaft frame (202) is rotatably provided inside the supporting frame (2). The shielding frame (3) is installed on the side of the supporting frame (2). An installation side groove (301) is provided on the side of the shielding frame (3). The closed side plate (4) is installed on the side of the installation side groove (301). A conveying pump body (404) is installed on the side of the closed side plate (4). A fixed bracket (401) is provided on the side of the closed side plate (4). A cleaning spray pipe (402) is installed on the side of the fixed bracket (401). The closed support frame (5) is located on the top of the shielding frame (3). The closed support frame (5) is located on both sides of the closed support frame (5). There is a guide column (501); the bearing bracket (6) is set inside the closed support frame (5), the bearing bracket (6) is set with a threaded support cylinder (601) inside, and the bearing bracket (6) is set with guide blocks (601) at both ends; the cleaning bracket (7) is installed at the bottom end of the bearing bracket (6), the cleaning bracket (7) is set with an adsorption sleeve (701) on the side, and a transmission tooth block (702) is set at one end of the adsorption sleeve (701); the bearing shaft seat (8) is set inside the bearing shaft frame (202), the bearing shaft seat (8) is set with an assembly support column (804) on the side, and an embossed roller (805) is sleeved on the outside of the assembly support column (804); the protective cover frame (9) is set between the two sets of bearing support frames (2).
2. The automatic dust removal and detection system of the embossing unit according to claim 1, characterized in that: The side of the bearing base (1) is also provided with: a fixed support groove (101), a reinforcing column (102), a guide support groove (103), an assembly support groove (104), and a hydraulic column (105); the fixed support groove (101) is opened on the side of the bearing base (1), the reinforcing column (102) is fixedly installed inside the fixed support groove (101), the guide support groove (103) is opened on both sides of the bearing base (1), the assembly support groove (104) is opened on the top of the bearing base (1), and the hydraulic column (105) is fixedly installed inside the assembly support groove (104).
3. The automatic dust removal and detection system of the embossing unit according to claim 1, characterized in that: The side of the bearing support (106) is also provided with a lifting support groove (108) and a guide block (109); the lifting support groove (108) is opened on the side of the bearing support (106), and the guide block (109) is fixedly set inside the lifting support groove (108).
4. The automatic dust removal and detection system of the embossing unit according to claim 1, characterized in that: The side of the bearing support frame (2) is also provided with: a transmission groove (203), an assembly shaft block (204), a drive gear shaft (205), and a drive motor (206); the transmission groove (203) is opened at the bottom of the bearing support frame (2), the assembly shaft block (204) is fixedly set at the bottom of the bearing support frame (2), the drive gear shaft (205) is rotatably set inside the assembly shaft block (204), and the drive motor (206) is fixedly set on the side of the bearing support frame (2).
5. The automatic dust removal and detection system for an embossing unit according to claim 1, characterized in that: The shielding frame (3) is also provided with: a positioning slot (302), an extraction pump body (303), and a recovery box (304) on the side; the positioning slot (302) is opened on the side of the shielding frame (3), the extraction pump body (303) is fixedly installed on the side of the shielding frame (3), and the recovery box (304) is fixedly installed on the side of the shielding frame (3).
6. The automatic dust removal and detection system for an embossing unit according to claim 1, characterized in that: The fixed bracket (401) is also provided with: a connecting side tube (403), an assembly side column (405) and a detection device (406); the connecting side tube (403) is fixedly installed on the side of the fixed bracket (401), the assembly side column (405) is fixedly installed on the top of the fixed bracket (401), and the detection device (406) is fixedly installed on the side of the assembly side column (405).
7. The automatic dust removal and detection system for an embossing unit according to claim 1, characterized in that: The closed support frame (5) is also provided with: a closed top plate (502), a threaded column (503) and an adjusting motor (504) on its side; the closed top plate (502) is fixedly installed on the top of the closed support frame (5), the threaded column (503) is rotatably installed on the inside of the closed support frame (5), and the adjusting motor (504) is fixedly installed on the top of the closed support frame (5).
8. The automatic dust removal and detection system for an embossing unit according to claim 1, characterized in that: The top of the support bracket (6) is also provided with: a guide block (602), a support shaft groove (603), a drive tooth block (604), a transmission shaft (605), and a cleaning motor (606); the guide block (602) is fixedly set at both ends, the support shaft groove (603) is opened on the side of the support bracket (6), the drive tooth block (604) is rotatably set on the side of the support bracket (6), the transmission shaft (605) is rotatably set on the side of the support bracket (6), and the cleaning motor (606) is fixedly set on the side of the support bracket (6).
9. The automatic dust removal and detection system for an embossing unit according to claim 1, characterized in that: The side of the bearing shaft seat (8) is also provided with: a rotating support groove (801), a transmission connector (802) and a positioning support groove (803); the rotating support groove (801) is opened on the side of the bearing shaft seat (8), the transmission connector (802) is fixedly set at one end of the bearing shaft seat (8), and the positioning support groove (803) is opened on the side of the bearing shaft seat (8).
10. The automatic dust removal and detection system for an embossing unit according to claim 1, characterized in that: The protective frame (9) is also provided with the following on its side: assembly shaft groove (901), closing block (902), installation slot (903), recovery branch pipe (904), rotating support block (905), closing slot (906), storage support slot (907) and rotating side slot (908); the assembly shaft groove (901) is opened on the outside of the two sets of protective frames (9), the closing block (902) is fixedly set on the side of one set of protective frames (9), the installation slot (903) is opened on the side of one set of protective frames (9), the recovery branch pipe (904) is fixedly set on the inside of the installation slot (903), the rotating support block (905) is fixedly set on the side of the two sets of protective frames (9), the closing slot (906) is opened on the side of one set of protective frames (9), the storage support slot (907) is opened on the side of one set of protective frames (9), and the rotating side slot (908) is opened on the side of the two sets of protective frames (9).