Shell drilling equipment for machining of cylinder printing machine

By designing a turning and steering device, a covering protection mechanism and a chip removal device, the problems of low efficiency, poor adaptability and chip accumulation when drilling holes in the roller printing press housing are solved, and efficient and stable drilling processing is achieved.

CN120755692AInactive Publication Date: 2025-10-10JIANGSU HUALUN PACKAGING MATERIALS CO LTD
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Patent Information

Application Number
CN202510991575.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-18
Publication Date
2025-10-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The long length of the roller printing machine shell makes it difficult to drill directly from one side to the other, affecting processing efficiency. In addition, shells of different sizes are difficult to adapt and are prone to damage and accumulation of processing debris.

Method used

A shell drilling device was designed, which includes a turning and steering device, a covering and protection mechanism, and a chip removal device. The shell is driven to rotate by an annular electric slide rail, a two-way hydraulic push rod is adapted to different sizes, a V-shaped cover plate covers the residual chips, and a chip removal device cleans the debris, so as to achieve alignment and stable fixation between the shell surface and the drill bit.

Benefits of technology

It improves the efficiency and stability of shell drilling, prevents shell damage, adapts to different sizes, cleans processing debris, avoids accumulation, and improves processing reliability and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of cylinder printing machine shell machining, and particularly discloses shell drilling equipment for cylinder printing machine machining. Comprising a frame type sliding plate, one side of the frame type sliding plate is fixedly connected with an annular electric sliding rail, one side of the annular electric sliding rail is rotatably connected with a side circular plate, one side, away from the annular electric sliding rail, of the side circular plate is fixedly connected with a linkage rod, one end, away from the side circular plate, of the linkage rod is fixedly connected with a circular sleeve block, and the inner side of the circular sleeve block is fixedly connected with a bidirectional hydraulic push rod. The two ends of the two-way hydraulic push rod are fixedly connected with side pushing circular plates correspondingly, and the sides, away from the two-way hydraulic push rod, of the side pushing circular plates are fixedly connected with circular rubber mats. The annular electric sliding rail drives the cylinder printing machine shell to rotate so that the different surfaces of the shell can be turned to the position perpendicularly aligned with the electric drill bit, and the situation that after drilling machining of one side of the shell is completed, the direction of the shell cannot be conveniently turned so that drilling machining can be directly conducted on the other side of the shell, and the machining efficiency is affected is prevented.
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Description

Technical Field

[0001] The invention relates to the technical field of cylinder printing machine shell processing, in particular to a shell drilling device for cylinder printing machine processing. Background Art

[0002] A rotary printing press is a device that achieves continuous printing through the rotation of a cylinder. Its core principle is to use the graphic structure on the surface of the plate cylinder. After the ink is applied by the ink roller, the ink is transferred to the printing substrate such as paper or plastic film under the pressure of the impression cylinder or flat plate. The housing of the cylinder printing press is an important part of the cylinder printing press. It provides protection for the internal components of the printing press, such as the plate cylinder, ink supply system, and transmission device, to prevent dust and debris from entering and avoid damage to the internal components by external factors. It also prevents operators from accidentally contacting high-speed or high-temperature components to ensure personnel safety. In order to adapt to the assembly of the cylinder, the housing of the cylinder printing press will have round holes on both sides to facilitate the installation of the cylinder.

[0003] Due to the long length of the shell, it is difficult to drill directly from one side to the other side. After drilling on one side of the shell, it is inconvenient to turn it around and drill directly on the other side, which affects the processing efficiency. Therefore, we proposed a shell drilling equipment for roller printing machine processing. Summary of the Invention

[0004] The top of the vertical recess is fixedly connected to the top recess plate, the inner side of the top recess plate is fixedly connected to the limit rod, and the outer side of the vertical electric slide rail is sleeved and slidably connected to the turning and steering device, the bottom of the vertical recess is provided with a square long hole, the inner wall of the square long hole is rotatably connected to the long round roller through a rotating bolt, the bottom of the inner side of the vertical recess is fixedly connected to the chip removal device, the bottom of the vertical recess is fixedly connected to the bottom support block, the inner top of the vertical recess is fixedly connected to the top recess plate, the inner side of the top recess plate is fixedly connected to the limiting thin rod, one side of the top recess plate is fixedly connected to a driving motor, the driving shaft of the driving motor passes through the top recess plate and is fixedly connected to a threaded long rod, the outer side of the threaded long rod is sleeved and threadedly connected to a square sleeve block, and the bottom of the square sleeve block is fixedly connected to an electric drill bit;

[0005] The turning and reversing device includes a frame-type slide, one side of which is fixedly connected to an annular electric slide rail, which drives the roller printing press housing to rotate by the annular electric slide rail to turn different surfaces of the housing to a position vertically aligned with the electric drill bit, so as to prevent the housing from being inconvenient to turn its direction after the drilling process is completed and directly drilling the other side, which affects the processing efficiency. One side of the annular electric slide rail is rotatably connected to a side circular plate, and the side circular plate is fixedly connected to a linkage rod on the side away from the annular electric slide rail. The end of the linkage rod away from the side circular plate is fixedly connected to a circular sleeve block, and the inner side of the circular sleeve block is fixedly connected to a two-way hydraulic push rod , the bidirectional telescopic adjustment push of the bidirectional hydraulic push rod is used to adapt to roller printing machine shells of different sizes, so as to prevent the equipment from being difficult to adapt and affecting the processing when drilling of roller printing machine shells of different sizes is required. Both ends of the bidirectional hydraulic push rod are fixedly connected with side push circular plates, and the side push circular plate away from the bidirectional hydraulic push rod is fixedly connected with a circular rubber pad. By arranging a circular rubber pad on one side of the side push circular plate, an elastic contact internal support is performed with the inner wall of the roller printing machine shell to prevent the inner wall of the roller printing machine shell from being pushed by hard pressure on both sides. It is difficult to control the force, which may cause excessive pressure and cause damage to the shell during drilling.

[0006] One end of the limiting thin rod passes through the square sleeve block and is slidably connected to the square sleeve block, and the end of the threaded long rod close to the driving motor is rotatably connected to the inner side of the top concave plate through a rotating bolt;

[0007] There are multiple long round rollers, and the multiple long round rollers are distributed on the inner wall of the rectangular long hole. The frame-type slide plate is sleeved on the vertical electric slide rail and is slidably connected to the vertical electric slide rail.

[0008] The outer side of the circular sleeve block is fixedly connected to a covering protection mechanism, and the outer side of the linkage rod is sleeved and fixedly connected to a vertical sleeve rod. The rotating linkage rod is supported by sleeved on the outer side of the linkage rod to prevent the linkage rod from gradually tilting downward due to the gravity of the roller printing press shell during long-term use, resulting in breakage at the joint with the side circular plate.

[0009] The V-shaped slide is provided on one side of the V-shaped slide and is moved outwards to prevent the slide from being blocked when drilling. The distance exceeding the extension of the two-way hydraulic push rod makes it difficult for the roller printing press housing to move to the position of the two ends of the two-way hydraulic push rod. One side of the built-in connecting plate is fixedly connected to an outward push spring, and both sides of the V-shaped cover plate are fixedly connected to side sealing square plates. By arranging side sealing square plates at positions on both sides between the two symmetrically arranged V-shaped cover plates, the sliding debris is resisted to prevent part of the debris sliding from the V-shaped cover plate to the sides from falling into the inner side of the V-shaped cover plate arranged at the bottom and accumulating and becoming difficult to handle. The inner side of the V-shaped cover plate is fixedly connected to the outer side of the circular sleeve block, and the outward push spring is fixedly connected to one side of the circular sleeve block at one end away from the built-in connecting plate. Two V-shaped cover plates are provided, and the two V-shaped cover plates are distributed on the outside of the circular sleeve block. A plurality of V-shaped slides are provided, and the plurality of V-slides are respectively distributed on the inner wall of the V-shaped through hole.

[0010] Further, the chip removal device comprises a fixed square plate, one side of the fixed square plate is fixedly connected with a side push spring, one end of the side push spring away from the fixed square plate is fixedly connected with an empty sliding square plate, the bottom of the empty sliding square plate is fixedly connected with a strip-shaped rubber pad, the strip-shaped rubber pad removes the machining scraps on the surface of the long circular roller and the inner bottom surface of the vertical recessed frame when the empty sliding square plate moves, so that the machining scraps on the surface of the long circular roller and the inner bottom surface of the vertical recessed frame are prevented from being too much to be difficult to handle, both sides of the empty sliding square plate are fixedly connected with curved connecting rods, the empty sliding square plate is limited in sliding by the V-shaped push plate arranged at the bottom of the vertical recessed frame, so that the empty sliding square plate elastically connected with the side push spring is prevented from being inclined when being pushed, and the strip-shaped rubber pad is prevented from being difficult to contact the surface of the long circular roller and the inner bottom surface of the vertical recessed frame, one side of the curved connecting rod is fixedly connected with the V-shaped push plate, the V-shaped push plate pushes the accumulated scraps at the bottom of the vertical recessed plate to the two sides when the empty sliding square plate moves through the curved connecting rod, so that the machining scraps generated in the drilling process are prevented from falling between the multiple long circular rollers and continuing to accumulate at the bottom of the vertical recessed frame to be difficult to handle, the top of the V-shaped push plate is fixedly connected with a square rubber pad, the strip-shaped rubber pad and the square rubber pad are arranged on the top and the bottom of the long circular roller to be in close contact with the long circular roller, so that the strip-shaped rubber pad is prevented from pushing the long circular roller to continue to rotate when performing the wiping cleaning on the surface of the long circular roller, and the strip-shaped rubber pad is prevented from being difficult to wipe and clean the surface of the long circular roller, both sides of the square rubber pad are fixedly connected with strip-shaped fixed plates, the bottom of the fixed square plate is fixedly connected with the inner side of the vertical recessed frame, one side of the curved connecting rod is slidingly connected with one side of the vertical recessed frame, the top of the V-shaped push plate is slidingly connected with the bottom of the vertical recessed frame, the side push spring is provided with two, and the two side push springs are arranged between the fixed square plate and the empty sliding square plate, and the bottom of the strip-shaped fixed plate is fixedly connected with the top of the V-shaped push plate.

[0011] The application provides a shell drilling equipment for a cylinder printing machine.

[0012] 1. The shell drilling equipment for the cylinder printing machine drives the cylinder printing machine shell to rotate through the annular electric slide rail to rotate the different surfaces of the shell to the positions vertically aligned with the electric drill, prevents the shell from being inconvenient to rotate the direction after one side drilling processing is completed to directly drill the other side, influences the processing efficiency, sets the V-shaped cover plate on the outside of the circular sleeve block to cover the residual scraps generated in the drilling process, prevents the residual scraps from falling on the double-way hydraulic push rod to be accumulated and influences the use, and the V-shaped push plate pushes the accumulated scraps at the bottom of the vertical recessed plate to the two sides through the curved connecting rod when the empty sliding square plate moves, prevents the large amount of scraps generated in the drilling process from falling between the multiple long circular rollers and continuing to accumulate at the bottom of the vertical recessed frame to be difficult to handle.

[0013] 2. The shell drilling equipment processed by the roller printing machine is provided with a turning and direction adjustment device, which provides a circular rubber pad on one side of the side push circular plate to perform elastic contact internal support and fixation with the inner wall of the roller printing machine shell, so as to prevent the inner walls of the roller printing machine shell from being difficult to control when being pushed by hard pressure on both sides, which may easily cause excessive pressure and damage to the shell during drilling. The two-way telescopic adjustment push of the two-way hydraulic push rod is used to adapt to roller printing machine shells of different sizes, so as to prevent the equipment from being difficult to adapt to and affecting processing when drilling roller printing machine shells of different sizes is required. The roller printing machine shell is driven to rotate by the annular electric slide rail to rotate the different surfaces of the shell to a position vertically aligned with the electric drill bit, so as to prevent the inconvenience of turning the direction of the shell after the drilling processing on one side is completed and directly drilling the other side, which affects the processing efficiency. The rotating linkage rod is supported by a vertical sleeve rod on the outside of the linkage rod, so as to prevent the linkage rod from being gradually tilted downward by the gravity of the roller printing machine shell during long-term use, so as to cause fracture at the joint with the side circular plate.

[0014] 3. The shell drilling equipment processed by the roller printing machine is provided with a covering and protection mechanism, which covers and blocks the debris falling from the drilling by arranging a V-shaped cover plate on the outside of the circular sleeve block, and prevents a large amount of debris generated by the drilling process from falling on the bidirectional hydraulic push rod and accumulating and affecting use; and blocks the sliding debris by arranging side sealing square plates on both sides between the two symmetrically arranged V-shaped cover plates, and prevents a part of the debris sliding to the sides from falling into the inner side of the V-shaped cover plate arranged at the bottom and accumulating and being difficult to handle; and expands the coverage area of ​​the V-shaped cover plate by arranging a V-shaped slide plate in the V-shaped sliding hole, which is influenced by the thrust of the outward push spring and extends outwards, and prevents the part where the bidirectional hydraulic push rod is extended from being difficult to cover and affect use when drilling holes on a larger roller printing machine shell; and arranges a built-in connecting plate on the inner side of the V-shaped slide plate that moves synchronously with the side circular plate to facilitate the control of the extension distance of the V-shaped slide plate, and prevents the extension distance of the V-shaped slide plate from exceeding the extension distance of the bidirectional hydraulic push rod, which makes it difficult for the roller printing machine shell to move to the position at both ends of the bidirectional hydraulic push rod.

[0015] 4. The shell drilling equipment processed by the cylinder printing machine is provided with a chip removal device, and the strip-shaped rubber pad removes the chips on the surface of the long circular roller and the inner bottom surface of the vertical concave frame when the empty sliding square plate moves, so that too many processing residues are prevented from being accumulated on the surface of the long circular roller and the inner bottom surface of the vertical concave frame and being difficult to handle; the strip-shaped rubber pad and the square rubber pad are arranged at the top and bottom of the long circular roller to be in close contact with the long circular roller, so that the strip-shaped rubber pad is prevented from being pushed to continue rotating the long circular roller when the long circular roller is cleaned by wiping, thereby making it difficult for the strip-shaped rubber pad to clean the surface of the long circular roller; the V-shaped push plate arranged at the bottom of the vertical concave frame is used to limit the sliding of the empty sliding square plate, so that the empty sliding square plate elastically connected with the side push spring is prevented from being pushed to tilt and cause the strip-shaped rubber pad to be difficult to contact the long circular roller and the inner bottom surface of the vertical concave frame; the V-shaped push plate pushes the accumulated chips at the bottom of the vertical concave plate to the two sides through the curved link when the empty sliding square plate moves, so that a large amount of chips generated by drilling are prevented from falling between the multiple long circular rollers and continuing to accumulate at the bottom of the vertical concave frame and being difficult to handle. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The figure is a structure diagram of the shell drilling equipment of the present application;

[0017] Figure 2 The figure is a structure diagram of the bottom of the shell drilling equipment of the present application;

[0018] Figure 3 The figure is a side sectional structure diagram of the turning device of the present application;

[0019] Figure 4 The figure is a side structure diagram of the turning device of the present application;

[0020] Figure 5 The figure is a side sectional structure diagram of the covering protection mechanism of the present application;

[0021] Figure 6 The figure is a structure diagram of the covering protection mechanism of the present application;

[0022] Figure 7 The figure is a structure diagram of the chip removal device of the present application;

[0023] Figure 8 The figure is a structure diagram of the bottom of the chip removal device of the present application.

[0024] In the figure: 1, vertical concave frame; 2, vertical electric slide rail; 3, turning and direction adjusting device; 4, square long hole; 5, long circular roller; 6, chip removal device; 7, bottom support block; 8, top concave plate; 9, limiting thin rod; 10, driving motor; 11, threaded long rod; 12, square sleeve block; 13, electric drill bit; 301, frame slide plate; 302, annular electric slide rail; 303, side circular plate; 304, linkage rod; 305, round sleeve block; 306, two-way hydraulic push rod; 307, side push circular plate; 308, round rubber pad; 309, covering protection mechanism; 310, vertical sleeve rod; 3091, V-shaped cover plate; 3092, V-shaped through hole; 3093, V-shaped slide plate; 3094, built-in connecting plate; 3095, outward push spring; 3096, side sealing square plate; 601, fixed square plate; 602, side push spring; 603, empty slide square plate; 604, strip-shaped rubber pad; 605, curved connecting rod; 606, V-shaped push plate; 607, square rubber pad; 608, strip-shaped fixed plate. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] Please refer to Figures 1-4 The present application provides a shell drilling equipment processed by a cylinder printing machine, which comprises a vertical concave frame 1, the inner side of the vertical concave frame 1 is fixedly connected with a vertical electric slide rail 2, the outer side of the vertical electric slide rail 2 is sleeved and slidably connected with a turning and direction adjusting device 3, the bottom of the vertical concave frame 1 is provided with a square long hole 4, the inner wall of the square long hole 4 is rotatably connected with a long circular roller 5 through a rotating bolt, the inner side of the bottom of the vertical concave frame 1 is fixedly connected with a chip removal device 6, the bottom of the vertical concave frame 1 is fixedly connected with a bottom support block 7, the inner side of the top of the vertical concave frame 1 is fixedly connected with a top concave plate 8, the inner side of the top concave plate 8 is fixedly connected with a limiting thin rod 9, one side of the top concave plate 8 is fixedly connected with a driving motor 10, the driving shaft of the driving motor 10 penetrates through the top concave plate 8 and is fixedly connected with a threaded long rod 11, the outer side of the threaded long rod 11 is sleeved and threadedly connected with a square sleeve block 12, the bottom of the square sleeve block 12 is fixedly connected with an electric drill bit 13;

[0027] The turning and steering device 3 includes a frame-type slide 301, one side of the frame slide 301 is fixedly connected to an annular electric slide rail 302, one side of the annular electric slide rail 302 is rotatably connected to a side circular plate 303, the side circular plate 303 away from the annular electric slide rail 302 is fixedly connected to a linkage rod 304, the end of the linkage rod 304 away from the side circular plate 303 is fixedly connected to a circular sleeve block 305, the inner side of the circular sleeve block 305 is fixedly connected to a bidirectional hydraulic push rod 306, both ends of the bidirectional hydraulic push rod 306 are fixedly connected to a side push circular plate 307, and the side push circular plate 307 away from the bidirectional hydraulic push rod 306 is fixedly connected to a circular rubber pad 308;

[0028] One end of the limiting thin rod 9 passes through the square sleeve block 12 and is slidably connected to the square sleeve block 12. The end of the threaded long rod 11 close to the driving motor 10 is rotatably connected to the inner side of the top concave plate 8 through a rotating bolt;

[0029] There are multiple long round rollers 5, and the multiple long round rollers 5 are distributed on the inner wall of the rectangular long hole 4. The frame slide 301 is sleeved on the vertical electric slide rail 2 and is slidably connected to the vertical electric slide rail 2;

[0030] The outer side of the circular sleeve block 305 is fixedly connected with a covering protection mechanism 309, and the outer side of the linkage rod 304 is sleeved and fixedly connected with a vertical sleeve rod 310. When in use, the roller printing machine housing is pushed to the bottom of the inner side of the vertical recessed frame 1 and moved to the position of the turning and steering device 3 under the rolling power of the long round roller 5. The turning and steering device 3 is used to fix the roller printing machine housing in an internal support manner and drive it to rotate to adjust the direction. When the roller printing machine housing is pushed toward the inner side of the vertical recessed frame 1, the chip removal device 6 is pushed to move together. When the roller printing machine housing is rotated to the appropriate direction so that the drilling surface is aligned with the electric drill bit 13, the turning and steering device 3 is driven by the vertical electric slide rail 2. The roller printing press housing is driven to move upward together. When the roller printing press moves upward, it contacts the electric drill bit 13 to perform drilling processing. Before drilling the roller printing press housing, the drive motor 10 can be started to drive the threaded long rod 11 to rotate and drive the square sleeve block 12 that is threadedly matched with it and is limited by the limited thin rod 9 to move horizontally. When the square sleeve block 12 moves, it drives the electric drill bit 13 at the bottom to move together to adjust the position of the drilling. When the roller printing press housing moves upward, the chip removal device 6 loses its thrust and starts to process the debris on the inner bottom surface of the vertical concave plate and the surface of the long round roller 5. When the roller printing press moves downward, the chip removal device 6 is pushed to the inner side of the vertical concave plate again.

[0031] When the roller printing machine housing moves to the two end positions of the two-way hydraulic push rod 306, the two-way hydraulic push rod 306 pushes the side push circular plates 307 at both ends to move, so that the circular rubber pads 308 contact the inner wall of the roller printing machine housing. The side push circular plates 307 are pushed by the hydraulic push rod to fix the inner walls of the roller printing machine housing on both sides through the circular rubber pads 308. The circular rubber pads 308 are arranged on one side of the side push circular plates 307 to perform elastic contact internal support and fixation with the inner wall of the roller printing machine housing. The two-way telescopic adjustment of the two-way hydraulic push rod 306 is used to adapt to roller printing machines of different sizes. After the machine housing and the roller printing press are fixed by internal support, the side circular plate 303 on one side is driven to rotate by the annular electric slide 302, and the rotation of the side circular plate 303 drives the linkage rod 304 to rotate, and the rotation of the linkage rod 304 drives the circular sleeve block 305 to rotate, so that the roller printing press housing that is continued to be fixed by the hydraulic push rod rotates together, and the roller printing press housing is driven to rotate by the annular electric slide 302 to turn the different surfaces of the housing to a position vertically aligned with the electric drill bit 13, and the rotating linkage rod 304 is supported by a vertical sleeve rod 310 sleeved on the outside of the linkage rod 304.

[0032] See also Figures 1-8 The present invention provides a shell drilling device for roller printing machine processing: the covering protection mechanism 309 includes a V-shaped cover plate 3091, a V-shaped through hole 3092 is opened on one side of the V-shaped cover plate 3091, a V-shaped slide plate 3093 is slidably connected to the inner wall of the V-shaped through hole 3092, an internal connecting plate 3094 is fixedly connected to the inner side of the V-shaped slide plate 3093, an external push spring 3095 is fixedly connected to one side of the internal connecting plate 3094, and both sides of the V-shaped cover plate 3091 are A side sealing square plate 3096 is fixedly connected, the inner side of the V-shaped cover plate 3091 is fixedly connected to the outer side of the circular sleeve block 305, and the end of the outward push spring 3095 away from the built-in connecting plate 3094 is fixedly connected to one side of the circular sleeve block 305. Two V-shaped cover plates 3091 are provided, and the two V-shaped cover plates 3091 are distributed on the outer side of the circular sleeve block 305. Multiple V-shaped slide plates 3093 are provided, and the multiple V-shaped slide plates 3093 are respectively distributed on the inner wall of the V-shaped through hole 3092;

[0033] The chip removal device 6 includes a fixed square plate 601, one side of the fixed square plate 601 is fixedly connected to a side push spring 602, one end of the side push spring 602 away from the fixed square plate 601 is fixedly connected to an air sliding square plate 603, the bottom of the air sliding square plate 603 is fixedly connected to a strip rubber pad 604, both sides of the air sliding square plate 603 are fixedly connected to a curved connecting rod 605, one side of the curved connecting rod 605 is fixedly connected to a V-shaped push plate 606, the top of the V-shaped push plate 606 is fixedly connected to a square rubber pad 607, both sides of the square rubber pad 607 are fixedly connected to a strip fixed plate 608, the bottom of the fixed square plate 601 is fixedly connected to the inner side of the vertical recess 1, one side of the curved connecting rod 605 is slidably connected to one side of the vertical recess 1, and the V-shaped push plate 606 is fixedly connected to the inner side of the vertical recess 1. The top of the vertical recess is slidably connected to the bottom of the vertical recess 1, and two side push springs 602 are provided, and the two side push springs 602 are distributed between the fixed square plate 601 and the empty sliding square plate 603. The bottom of the strip fixed plate 608 is fixedly connected to the top of the V-shaped push plate 606. When in use, a V-shaped cover plate 3091 is provided on the outside of the circular sleeve block 305 to cover the debris dropped from the drilling. The debris falling on the V-shaped cover plate 3091 slides down to both sides through the V-shaped inclined surface of the V-shaped cover plate 3091. The side sealing square plates 3096 are provided on both sides between the two symmetrically arranged V-shaped cover plates 3091 to resist the sliding debris. When the bidirectional hydraulic push rod 306 pushes the side circular plate 303 to move, the outward push spring 3095 The built-in connecting plate 3094 is pushed by the stretching force to drive the V-shaped sliding hole to slide outward from the V-shaped through hole 3092, and the coverage area of ​​the V-shaped cover plate 3091 is expanded by arranging a V-shaped slide plate 3093 in the V-shaped sliding hole, which is extended outward by the thrust of the outward push spring 3095. When the side circular plate 303 is driven by the two-way hydraulic push rod 306 to move back in the direction of the circular sleeve block 305, it pushes the built-in connecting plate 3094 to move together. When the circular sleeve block 305 moves back, the built-in connecting plate 3094 is compressed by the outward push spring 3095 and drives the top V-shaped slide plate 3093 to move back into the V-shaped through hole 3092. By arranging a built-in connecting plate 3094 on the inner side of the V-shaped slide plate 3093 that moves synchronously with the side circular plate 303, it is easy to control the extension of the V-shaped slide plate 3093. When the roller printing press shell is pushed toward the inner side of the vertical concave plate, it contacts the sliding square plate 603 and pushes the sliding square plate 603 toward the fixed square plate 601. When the sliding square plate 603 moves toward the fixed square plate 601, it compresses the side push spring 602 and drives the strip rubber pad 604 at the bottom and the curved connecting rods 605 on both sides to move. When the sliding square plate 603 loses its thrust, the side push spring 602 pushes the sliding square plate 603 away from the fixed square plate 601 through the extension force. At this time, the strip rubber pad 604 at the bottom of the sliding square plate 603 and the curved connecting rods 605 on both sides move together with the sliding square plate 603. When the curved connecting rod 605 moves with the sliding square plate 603, it drives the V-shaped push plate 606 on one side to move together.When the V-shaped push plate 606 moves, it drives the square rubber pad 607 and the strip fixing plate 608 on the top to move together. When the square rubber pad 607 and the strip rubber pad 604 move, they will contact the surface of the long round roller 5. When the square rubber pad 607 and the strip rubber pad 604 contact the long round roller 5 from the top and bottom respectively, the long round roller 5 will not rotate due to the relative friction. When the strip rubber pad 604 moves with the sliding square plate 603, it will mix the surface of the long round roller 5 and the inner bottom surface of the vertical recess 1. To clean debris, strip rubber pads 604 and square rubber pads 607 are installed on the top and bottom of the elongated roller 5 to keep them in close contact. When the V-shaped push plate 606 moves, its bottom surface contacts the ground and its top surface contacts the bottom surface of the vertical recessed frame 1. The V-shaped push plate 606 installed at the bottom of the vertical recessed frame 1 limits the sliding of the empty sliding square plate 603. The V-shaped push plate 606 pushes the accumulated debris at the bottom of the vertical recessed plate to the sides when the empty sliding square plate 603 moves, through the curved connecting rod 605.

[0034] When the present invention is in operation, the housing of the roller printing machine is pushed to the bottom of the inner side of the vertical recessed frame 1 and is moved to the position of the turning and steering device 3 under the rolling power of the long round roller 5. The housing of the roller printing machine is fixed by the turning and steering device 3 and driven to rotate to adjust the direction. When the housing of the roller printing machine is pushed to the inner side of the vertical recessed frame 1, the chip removal device 6 is pushed to move together. When the housing of the roller printing machine is rotated to the appropriate direction so that the drilling surface is aligned with the electric drill bit 13, the vertical electric slide 2 drives the turning and steering device 3 to drive the housing of the roller printing machine to move upward together, and the upper portion of the roller printing machine is rotated. When the roller printing press shell moves upward, the chip removal device 6 loses its thrust and starts to process debris on the inner bottom surface of the vertical concave plate and the surface of the long round roller 5. When the roller printing press shell moves downward, the chip removal device 6 is pushed to the inner side of the vertical concave plate again.

[0035] When the cylinder printing machine shell moves to the position of both ends of the bidirectional hydraulic push rod 306, the two ends of the side push round plate 307 are pushed to move by the bidirectional hydraulic push rod 306, so that the circular rubber pad 308 is in contact with the inner wall of the cylinder printing machine shell, the side push round plate 307 is pushed by the hydraulic push rod to be in contact with the circular rubber pad 308 to fix the inner wall of the cylinder printing machine shell on both sides, the circular rubber pad 308 is arranged on one side of the side push round plate 307 to be in elastic contact with the inner wall of the cylinder printing machine shell for inner support fixing, the bidirectional hydraulic push rod 306 is adjusted by bidirectional extension to push different sizes of cylinder printing machine shells, after the cylinder printing machine is fixed by the inner support, the side round plate 303 on one side is driven to rotate by the annular electric slide rail 302, the side round plate 303 drives the linkage rod 304 to rotate, the linkage rod 304 drives the round sleeve block 305 to rotate to make the cylinder printing machine shell fixed by the hydraulic push rod rotate together, the cylinder printing machine shell is driven to rotate by the annular electric slide rail 302 to rotate to the position vertically aligned with the electric drill bit 13, the linkage rod 304 is supported by the vertical sleeve rod 310 arranged outside the linkage rod 304, the V-shaped cover plate 3091 arranged outside the round sleeve block 305 covers and blocks the drillings, the drillings falling on the V-shaped cover plate 3091 slide to both sides through the V-shaped slope of the V-shaped cover plate 3091, the side sealing plate 3096 arranged between the two symmetrically arranged V-shaped cover plates 3091 blocks the drillings, when the side round plate 303 is pushed to move by the bidirectional hydraulic push rod 306, the outer push spring 3095 pushes the built-in connecting plate 3094 to drive the V-shaped sliding hole to slide out of the V-shaped through hole 3092, the V-shaped sliding plate 3093 arranged in the V-shaped sliding hole is extended outwards under the influence of the push force of the outer push spring 3095 to expand the covering area of the V-shaped cover plate 3091, when the side round plate 303 is driven to move back to the direction of the round sleeve block 305 by the bidirectional hydraulic push rod 306, the built-in connecting plate 3094 moves together, the built-in connecting plate 3094 compresses the outer push spring 3095 and drives the V-shaped sliding plate 3093 at the top to move back to the V-shaped through hole 3092 when the round sleeve block 305 moves back, the built-in connecting plate 3094 arranged inside the V-shaped sliding plate 3093 moves synchronously with the side round plate 303 to facilitate controlling the extension distance of the V-shaped sliding plate 3093, when the cylinder printing machine shell is pushed to the inside of the vertical recess plate, it is in contact with the empty sliding square plate 603 and pushes the empty sliding square plate 603 to move to the direction of the fixed square plate 601, when the empty sliding square plate 603 moves to the direction of the fixed square plate 601, the side push spring 602 is compressed and drives the strip-shaped rubber pad 604 at the bottom and the curved connecting rod 605 on both sides to move, when the empty sliding square plate 603 loses the push force, the side push spring 602 pushes the empty sliding square plate 603 to move away from the fixed square plate 601 by the extension force, at this time, the strip-shaped rubber pad 604 at the bottom of the empty sliding square plate 603 and the curved connecting rod 605 on both sides move together with the empty sliding square plate 603,As the sliding square plate 603 moves, the curved connecting rod 605 drives the V-shaped push plate 606 on one side to move together. As the V-shaped push plate 606 moves, the square rubber pad 607 and the strip fixing plate 608 on the top move together. When the square rubber pad 607 and the strip rubber pad 604 move, they will contact the surface of the long round roller 5. When the square rubber pad 607 and the strip rubber pad 604 contact the long round roller 5 from the top and bottom respectively, the long round roller 5 will not rotate due to the relative friction. When the strip rubber pad 604 moves with the sliding square plate 603, it will contact the long round roller 5. The surface of the round roller 5 and the inner bottom surface of the vertical concave frame 1 are cleaned of debris. Strip rubber pads 604 and square rubber pads 607 are installed on the top and bottom of the long round roller 5 to keep close contact with them. When the V-shaped push plate 606 moves, its bottom surface contacts the ground and its top surface contacts the bottom surface of the vertical concave frame 1. The V-shaped push plate 606 at the bottom of the vertical concave frame 1 is used to limit the sliding of the empty sliding square plate 603. The V-shaped push plate 606, via the curved connecting rod 605, pushes the accumulated debris at the bottom of the vertical concave plate to the sides as the empty sliding square plate 603 moves.

[0036] Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without making creative efforts should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention shall be implemented in accordance with conventional means in the field unless otherwise specified or limited.

Claims

1. A housing drilling device for a roller printing machine, comprising a vertical recess (1), characterized in that: The inner side of the vertical recessed frame (1) is fixedly connected to a vertical electric slide rail (2), the outer side of the vertical electric slide rail (2) is sleeved and slidably connected to a turning and adjusting device (3), the bottom of the vertical recessed frame (1) is provided with a rectangular long hole (4), the inner wall of the rectangular long hole (4) is rotatably connected to a long round roller (5) through a rotating bolt, the inner bottom of the vertical recessed frame (1) is fixedly connected to a chip removal device (6), the bottom of the vertical recessed frame (1) is fixedly connected to a bottom support block (7), and the vertical recessed frame The inner top of (1) is fixedly connected to a top concave plate (8), the inner side of the top concave plate (8) is fixedly connected to a limited thin rod (9), one side of the top concave plate (8) is fixedly connected to a driving motor (10), the driving shaft of the driving motor (10) passes through the top concave plate (8) and is fixedly connected to a threaded long rod (11), the outer side of the threaded long rod (11) is sleeved and threadedly connected to a square sleeve (12), and the bottom of the square sleeve (12) is fixedly connected to an electric drill bit (13); The turning and steering device (3) comprises a frame-type slide (301), one side of the frame-type slide (301) is fixedly connected to an annular electric slide rail (302), one side of the annular electric slide rail (302) is rotatably connected to a side circular plate (303), a side of the side circular plate (303) away from the annular electric slide rail (302) is fixedly connected to a linkage rod (304), one end of the linkage rod (304) away from the side circular plate (303) is fixedly connected to a circular sleeve block (305), the inner side of the circular sleeve block (305) is fixedly connected to a bidirectional hydraulic push rod (306), both ends of the bidirectional hydraulic push rod (306) are fixedly connected to a side push circular plate (307), and a side of the side push circular plate (307) away from the bidirectional hydraulic push rod (306) is fixedly connected to a circular rubber pad (308).

2. The shell drilling device for cylinder printing machine processing according to claim 1, characterized in that: One end of the limiting thin rod (9) passes through the square sleeve (12) and is slidably connected to the square sleeve (12); one end of the threaded long rod (11) close to the driving motor (10) is rotatably connected to the inner side of the top concave plate (8) through a rotating bolt.

3. The shell drilling device for cylinder printing machine processing according to claim 1, characterized in that: There are multiple long round rollers (5), and the multiple long round rollers (5) are distributed on the inner wall of the rectangular long hole (4). The frame slide (301) is sleeved on the vertical electric slide rail (2) and is slidably connected to the vertical electric slide rail (2).

4. The shell drilling device for cylinder printing machine processing according to claim 1, characterized in that: The outer side of the circular sleeve block (305) is fixedly connected to a covering protection mechanism (309), and the outer side of the linkage rod (304) is sleeved and fixedly connected to a vertical sleeve rod (310).

5. The shell drilling device for cylinder printing machine processing according to claim 4, characterized in that: The covering protection mechanism (309) comprises a V-shaped cover plate (3091), a V-shaped through hole (3092) is provided on one side of the V-shaped cover plate (3091), a V-shaped slide plate (3093) is slidably connected to the inner wall of the V-shaped through hole (3092), a built-in connecting plate (3094) is fixedly connected to the inner side of the V-shaped slide plate (3093), an outward push spring (3095) is fixedly connected to one side of the built-in connecting plate (3094), and side sealing square plates (3096) are fixedly connected to both sides of the V-shaped cover plate (3091).

6. The shell drilling device for a cylinder printing machine according to claim 5, characterized in that: The inner side of the V-shaped cover plate (3091) is fixedly connected to the outer side of the circular sleeve block (305), and the end of the outward push spring (3095) away from the built-in connecting plate (3094) is fixedly connected to one side of the circular sleeve block (305).

7. The shell drilling device for a cylinder printing machine according to claim 5, characterized in that: There are two V-shaped cover plates (3091), and the two V-shaped cover plates (3091) are distributed outside the circular sleeve block (305). There are multiple V-shaped slide plates (3093), and the multiple V-shaped slide plates (3093) are respectively distributed on the inner wall of the V-shaped through hole (3092).

8. The shell drilling device for a cylinder printing machine according to claim 1, characterized in that: The chip removal device (6) comprises a fixed square plate (601), one side of the fixed square plate (601) is fixedly connected to a side push spring (602), one end of the side push spring (602) away from the fixed square plate (601) is fixedly connected to an air-sliding square plate (603), the bottom of the air-sliding square plate (603) is fixedly connected to a strip rubber pad (604), both sides of the air-sliding square plate (603) are fixedly connected to a curved connecting rod (605), one side of the curved connecting rod (605) is fixedly connected to a V-shaped push plate (606), the top of the V-shaped push plate (606) is fixedly connected to a square rubber pad (607), and both sides of the square rubber pad (607) are fixedly connected to a strip fixed plate (608).

9. The shell drilling device for a cylinder printing machine according to claim 8, characterized in that: The bottom of the fixed square plate (601) is fixedly connected to the inner side of the vertical recess (1), one side of the curved connecting rod (605) is slidably connected to one side of the vertical recess (1), and the top of the V-shaped push plate (606) is slidably connected to the bottom of the vertical recess (1).

10. The shell drilling device for a cylinder printing machine according to claim 8, characterized in that: Two side push springs (602) are provided, and the two side push springs (602) are distributed between the fixed square plate (601) and the free sliding square plate (603). The bottom of the strip fixed plate (608) is fixedly connected to the top of the V-shaped push plate (606).