Magnetic table adjusting device of printing machine
By designing a lifting and telescopic mechanism driven by a drive motor, the problem of the existing magnetic table device of the printing machine being unable to adjust the height and tension was solved, enabling flexible adjustment for different objects and improving printing quality and safety.
Patent Information
- Application Number
- CN202423053238.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-11
AI Technical Summary
The existing magnetic table device of the printing machine cannot adjust the height and tension according to the thickness and load-bearing capacity of different objects, resulting in poor printing effect or damage to the objects.
A magnetic table adjustment device for a printing machine is designed, which includes a drive motor, a lifting mechanism, a telescopic mechanism, and transmission components. The drive motor drives the drive wheel and belt transmission, and combined with the lifting and telescopic mechanisms, the height and tension of the magnetic table can be flexibly adjusted.
It enables uniform printing on objects of different thicknesses, improves the flexibility of the printing machine and the printing quality, and avoids damage to the objects.
Smart Images

Figure CN223520438U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to printing machine technical field especially relates to a printing machine magnetic platform adjusting device. BACKGROUND
[0002] The printing machine magnetic platform adjusting device is a device for adjusting the position and angle of the printing machine magnetic platform, mainly used to ensure the accuracy and stability during the printing process. This device usually includes components such as air cylinders, guide rails, sliding devices, and adjusting screws, which work together to allow flexible adjustment of the magnetic platform, ensuring printing quality and operational safety. Air cylinders and guide rails are provided on both sides of the magnetic platform, and the extension and retraction of the air cylinders drive the magnetic platform to move on the guide rails, allowing horizontal and vertical adjustment. Sliding devices corresponding to the guide rails are provided on the two side surfaces of the magnetic platform to ensure stability and accuracy during movement. An adjusting screw is provided on the top surface of each air cylinder, and rotating the adjusting screw allows fine adjustment of the position of the magnetic platform, further ensuring the quality and precision of the printing.
[0003] However, different objects have different thicknesses and require different printing pressures. The height of the existing printing magnetic platform device is fixed and cannot be adjusted according to the thickness of different objects. In addition, when printing objects, the objects need to be fixed to avoid wrinkles caused by pressure, which affects the printing effect. However, different objects require different pulling forces, and some objects have poor resistance, which can be easily damaged when the pulling force is too large, thereby affecting the printing of the object. Therefore, improvements are needed. SUMMARY
[0004] In view of the deficiencies in the prior art, the purpose of the present utility model is to provide a printing machine magnetic platform adjusting device to solve the above technical problems.
[0005] The specific scheme of the present utility model is as follows: a printing machine magnetic platform adjusting device, including a frame and a support leg, also including a drive motor, the drive motor is arranged on the frame; the output end of the drive motor is provided with a drive shaft, the drive shaft is provided with a first drive wheel, the frame is provided with a drive rod, the drive rod is provided with a second drive wheel, and a drive belt is arranged between the first drive wheel and the second drive wheel; the frame is provided with a lifting mechanism, which is used to adjust different thicknesses of printing objects; the frame is also provided with a telescopic mechanism, which is used to adjust the pulling force of different objects; the lifting mechanism includes a first lifting block, a lifting frame, a lifting motor, and a sliding component, the first lifting block is fixedly connected with the frame, a plurality of lifting plates are evenly arranged on the first lifting block, the lifting frame is fixedly connected with the lifting plates, the lifting motor is fixedly connected with the lifting frame, and the output end of the lifting motor is provided with a lifting gear; the sliding component is arranged on the frame.
[0006] Further, the sliding component includes a second lifting block, a sliding tooth block, a sliding block, the second lifting block is arranged on the frame, the first lifting block is provided with a first sliding groove, and the second lifting block is provided with a second sliding groove; the sliding tooth block is in sliding connection with the first sliding groove and is in meshing connection with the lifting gear; the sliding block is in sliding connection with the second sliding groove, and the sliding block is provided with a reciprocating assembly; the reciprocating assembly includes a reciprocating block, a driving block and a printing block, the reciprocating block is fixedly connected with the sliding block and the sliding tooth block, the reciprocating block is provided with a reciprocating groove, and the driving block is in sliding connection with the reciprocating groove; and the printing block is fixedly connected with the driving block.
[0007] Further, the telescopic mechanism includes a cylinder, a transmission component, a telescopic rod and a telescopic groove arranged on the frame, a telescopic block is in sliding connection in the telescopic groove, the cylinder is fixedly connected with the telescopic block, and the telescopic rod is in sliding connection with the cylinder; and the transmission component is arranged on the driving belt.
[0008] Further, the transmission component includes a transmission plate, a transmission block and a rectangular block, the transmission plate is fixedly connected with the driving belt, the transmission plate is provided with a transmission groove, and the transmission block is in sliding connection with the transmission groove; the rectangular block is fixedly connected with the transmission block and the telescopic rod, a transmission shaft is arranged on the transmission block, and a rotating component is arranged on the transmission shaft.
[0009] Further, the rotating component includes a plurality of first rotating plates which are uniformly arranged on the transmission shaft and are in rotating connection with the transmission shaft, a first rotating shaft, a second rotating shaft, a second rotating plate and a connecting assembly, the first rotating shaft is in rotating connection with the first rotating plate, the second rotating plate is in rotating connection with the first rotating shaft, the second rotating shaft is in rotating connection with the second rotating plate and is fixedly connected with the driving belt.
[0010] Further, the connecting assembly includes a plurality of connecting plates which are uniformly arranged on the transmission shaft, a connecting frame, a connecting screw rod, a connecting block and a fixed plate, the connecting frame is fixedly connected with the connecting plate, the connecting screw rod is in rotating connection with the connecting frame, the connecting block is fixedly connected with the connecting screw rod, and the fixed plate is fixedly connected with the connecting screw rod.
[0011] Compared with the prior art, the printing machine has the following beneficial effects: different objects of different thicknesses can be uniformly printed, the telescopic mechanism, the transmission component, the rotating component and the connecting component are arranged, different objects can be fixedly stretched, the lifting mechanism and the telescopic mechanism are arranged, the use flexibility of the printing machine is improved, and corresponding adjustment can be made according to the characteristics of different objects. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 is a schematic diagram of a three-dimensional structure of the utility model;
[0013] Figure 2 is a top view of the utility model;
[0014] Figure 3 is Figure 2 sectional structure schematic view of A-A in it;
[0015] Figure 4 is the utility model's lifting mechanism explosion map;
[0016] Figure 5 is the utility model's telescopic mechanism explosion map;
[0017] In the figure: 1, frame;2, support leg;3, drive motor;4, drive shaft;5, first drive wheel;6, drive rod;7, second drive wheel;8, drive belt;9, first lifting block;10, lifting plate;11, lifting frame;12, lifting motor;13, lifting shaft;14, lifting gear;15, second lifting block;16, first sliding groove;17, second sliding groove;18, sliding tooth block;19, sliding block;20, reciprocating block;21, reciprocating groove;22, drive block;23, printing block;24, telescopic slot;25, telescopic block;26, cylinder;27, telescopic rod;28, transmission plate;29, transmission groove;30, transmission block;31, rectangular block;32, transmission shaft;33, first rotating plate;34, first rotating shaft;35, second rotating plate;36, second rotating shaft;37, connecting plate;38, connecting frame;39, connecting screw;40, connecting block;41, fixed plate. DETAILED DESCRIPTION
[0018] Referring to Figures 1-5 , the embodiment is a printing machine magnetic table adjusting device, including frame 1 and support leg 2, support leg 2 is fixedly connected with frame 1;Still include: drive motor 3, set up on frame 1, with frame 1 fixedly connected;Drive shaft 4 is detachably fixedly connected with the output end of drive motor 3;First drive wheel 5, with drive shaft 4 fixedly connected;Drive rod 6, with frame 1 fixedly connected;Second drive wheel 7, with drive rod 6 rotatably connected;Drive belt 8, with first drive wheel 5 pulley cooperation rotation;Lifting mechanism, set up on frame 1, for adjusting according to different thickness printing object;Telescopic mechanism, set up on frame 1, for the adjustment of the tension of different objects.
[0019] Further, the lifting mechanism comprises a first lifting block 9 arranged on the frame 1 and fixedly connected with the frame 1, a plurality of lifting plates 10 evenly arranged on the first lifting block 9, a lifting frame 11 fixedly connected with the lifting plates 10, a lifting motor 12 fixedly connected with the lifting frame 11, a lifting shaft 13 detachably fixedly connected with an output end of the lifting motor 12, a lifting gear 14 fixedly connected with the lifting shaft 13, and a sliding component arranged on the frame 1.
[0020] Further, the sliding component comprises a second lifting block 15 arranged on the frame 1 and fixedly connected with the frame 1, a first sliding groove 16 arranged on the first lifting block 9, a second sliding groove 17 arranged on the second lifting block 15, a sliding tooth block 18 in sliding connection with the first sliding groove 16 and in meshing connection with the lifting gear 14, and a sliding block 19 in sliding connection with the second sliding groove 17.
[0021] Further, the reciprocating component comprises a reciprocating block 20 arranged on the sliding block 19 and fixedly connected with the sliding block 19 and the sliding tooth block 18, a reciprocating groove 21 arranged on the reciprocating block 20, a driving block 22 in sliding connection with the reciprocating groove 21, and a printing block 23 fixedly connected with the driving block 22.
[0022] Further, the telescopic mechanism comprises a telescopic groove 24 arranged on the frame 1, a telescopic block 25 in sliding connection with the telescopic groove 24, a pneumatic cylinder 26 fixedly connected with the telescopic block 25, a telescopic rod 27 in sliding connection with the pneumatic cylinder 26, and a transmission component arranged on the driving belt 8.
[0023] Further, the transmission component comprises a transmission plate 28 arranged on the driving belt 8 and fixedly connected with the driving belt 8, a transmission groove 29 arranged on the transmission plate 28, a transmission block 30 in sliding connection with the transmission groove 29, a rectangular block 31 fixedly connected with the transmission block 30 and the telescopic rod 27, a transmission shaft 32 fixedly connected with the transmission block 30, and a rotating component arranged on the transmission shaft 32.
[0024] Further, the rotating component comprises a plurality of first rotating plates 33 evenly arranged on the transmission shaft 32 and in rotating connection with the transmission shaft 32, a first rotating shaft 34 in rotating connection with the first rotating plates 33, a second rotating plate 35 in rotating connection with the first rotating shaft 34, a second rotating shaft 36 in rotating connection with the second rotating plate 35 and fixedly connected with the driving belt 8, and a connecting component arranged on the transmission shaft 32.
[0025] Further, the connecting assembly comprises a plurality of connecting plates 37 uniformly arranged on the transmission shaft 32 and fixedly connected with the transmission shaft 32, a connecting frame 38 fixedly connected with the connecting plates 37, a connecting screw rod 39 rotatably connected with the connecting frame 38, a connecting block 40 fixedly connected with the connecting screw rod 39, and a fixing plate 41 fixedly connected with the connecting screw rod 39.
[0026] The working principle of the utility model is as follows: in use, first, start the driving motor 3, drive the driving shaft 4 fixedly connected with the output end of the driving motor 3 to rotate, make the first driving wheel 5 fixedly connected with the driving shaft 4 rotate, thereby drive the driving belt 8 to rotate, make the second driving wheel 7 rotate on the driving rod 6, make the telescopic mechanism close to one end of the frame body, then place one side of the object to be printed into the connecting frame 38, then drive the connecting screw rod 39 to rotate on the connecting frame 38 by rotating the connecting block 40, make the fixing plate 41 close to the object, until the fixing plate 41 contacts the object, then move the telescopic mechanism to below the printing block 23, then start the air cylinder 26, drive the telescopic rod 27 fixedly connected with the air cylinder 26 to slide towards the air cylinder 26, make the rectangular block 31 fixedly connected with the telescopic rod 27 drive the transmission block 30 to slide in the transmission groove 29, thereby make the transmission shaft 32 fixedly connected with the transmission block 30 move, thereby drive the first rotating plate 33 rotatably connected with the transmission shaft 32 to rotate, make the second connecting plate 37 rotatably connected with the first rotating shaft 34 rotate around the axis of the second connecting shaft, thereby drive the connecting plate 37 fixedly connected with the transmission shaft 32 to close to the air cylinder 26, thereby stretch the object;
[0027] When the object is stretched and fixed, start the lifting motor 12, drive the lifting shaft 13 fixedly connected with the output end of the lifting motor 12 to rotate, make the lifting gear 14 fixedly connected with the lifting shaft 13 rotate, thereby drive the sliding tooth block 18 to slide in the first sliding groove 16, make the reciprocating block 20 fixedly connected with the sliding tooth block 18 move, thereby drive the sliding block 19 fixedly connected with the reciprocating block 20 to slide in the second sliding groove 17, thereby lift the printing block 23 to the appropriate height.
Claims
1. A calender magnetic table adjusting device comprising a frame and support legs, characterized in that The drive motor is arranged on the frame, and an output end of the drive motor is provided with a drive shaft, and the drive shaft is provided with a first drive wheel; a drive rod is arranged on the frame, and the drive rod is provided with a second drive wheel; and a drive belt is arranged between the first drive wheel and the second drive wheel.
2. A magnetic table adjusting device for a printing machine according to claim 1, characterized in that: The lifting mechanism comprises a first lifting block, a lifting frame, a lifting motor, and a sliding component; the first lifting block is fixedly connected with the frame; a plurality of lifting plates are uniformly arranged on the first lifting block; the lifting frame is fixedly connected with the lifting plates; the lifting motor is fixedly connected with the lifting frame; and an output end of the lifting motor is provided with a lifting gear.
3. A magnetic table adjusting device for a printing machine according to claim 1, characterized in that: The sliding component is arranged on the frame.
4. A magnetic table adjustment device for a printing machine according to claim 3, characterized in that: The sliding component comprises a second lifting block, a sliding gear block, and a sliding block; the second lifting block is arranged on the frame; a first sliding groove is arranged on the first lifting block; and a second sliding groove is arranged on the second lifting block; the sliding gear block is in sliding connection with the first sliding groove and is in meshing connection with the lifting gear; the sliding block is in sliding connection with the second sliding groove; and a reciprocating assembly is arranged on the sliding block.
5. A calender magnetic table adjusting device according to claim 4, characterized in that: The reciprocating assembly comprises a reciprocating block, a driving block, and a printing block; the reciprocating block is fixedly connected with the sliding block and the sliding gear block; a reciprocating groove is arranged on the reciprocating block; and the driving block is in sliding connection with the reciprocating groove; and the printing block is fixedly connected with the driving block. The telescopic mechanism comprises a cylinder, a transmission component, a telescopic rod, and a telescopic groove arranged on the frame; a telescopic block is in sliding connection in the telescopic groove; the cylinder is fixedly connected with the telescopic block; and the telescopic rod is in sliding connection with the cylinder. The transmission component is arranged on the drive belt.
6. A magnetic table adjustment device for a printing machine according to claim 5, characterized in that: The transmission component comprises a transmission plate, a transmission block, and a rectangular block; the transmission plate is fixedly connected with the drive belt; a transmission groove is arranged on the transmission plate; and the transmission block is in sliding connection with the transmission groove; the rectangular block is fixedly connected with the transmission block and the telescopic rod; a transmission shaft is arranged on the transmission block; and a rotating component is arranged on the transmission shaft. The rotating component comprises a plurality of first rotating plates which are uniformly arranged on the transmission shaft and are in rotating connection with the transmission shaft; the rotating component further comprises a first rotating shaft, a second rotating shaft, a second rotating plate, and a connecting assembly; the first rotating shaft is in rotating connection with the first rotating plate; the second rotating plate is in rotating connection with the first rotating shaft; the second rotating shaft is in rotating connection with the second rotating plate and is fixedly connected with the drive belt. The connecting assembly comprises a plurality of connecting plates which are uniformly arranged on the transmission shaft; the connecting assembly further comprises a connecting frame, a connecting screw, a connecting block, and a fixed plate; the connecting frame is fixedly connected with the connecting plate; the connecting screw is in rotating connection with the connecting frame; the connecting block is fixedly connected with the connecting screw; and the fixed plate is fixedly connected with the connecting screw.