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CN-224224717-U - Plate-making machine driving structure

CN224224717UCN 224224717 UCN224224717 UCN 224224717UCN-224224717-U

Abstract

The utility model discloses a plate making machine driving structure in the technical field of plate making machines, which comprises a base, wherein a plurality of supporting legs are fixedly connected to the lower end of the base, a screen printing plate making machine is fixedly connected to the upper end of the base, the plate making machine driving structure further comprises a driving mechanism, the driving mechanism is connected to the base, a fixing assembly is arranged on the driving mechanism and comprises clamping plates, the vertical section of each clamping plate is L-shaped, the clamping plates are symmetrically and slidably connected to the upper end of a supporting frame, and bolts penetrate through the clamping plates. The utility model has the advantages that the mounting frames with different sizes are selected according to the specifications of the required plate materials, the mounting frames can be fixed by the fixing component after being arranged on the supporting frame, the fixing component can fix the mounting frames with various sizes, and the fixed mounting frames can be driven to move through the screen printing plate making machine by the driving of the motor, so that the plate making machine has strong practicability.

Inventors

  • GAO FENG
  • LI WEI

Assignees

  • 深圳拓匠印前科技有限公司

Dates

Publication Date
20260512
Application Date
20250122

Claims (6)

  1. 1. The plate making machine driving structure comprises a base (1) and a supporting frame (204), wherein a plurality of supporting legs (101) are fixedly connected to the lower end of the base (1), and a screen printing plate making machine is fixedly connected to the upper end of the base (1), and the plate making machine driving structure is characterized by further comprising a driving mechanism (2), wherein the driving mechanism (2) is connected to the base (1); The support frames (204) are arranged in parallel, connecting plates (205) are fixedly connected to two ends of the support frames (204), the support frames (204) and the connecting plates (205) form a movable frame, and the driving mechanism (2) drives the movable frame to move forwards and backwards; The support frame (204) is provided with a fixing component (3), the fixing component (3) comprises clamping plates (301) which are arranged on the support frames (204) in a relative sliding mode, the clamping plates (301) are provided with mounting frames (4), and the mounting frames (4) are clamped and fixed by the clamping plates (301) on two sides.
  2. 2. The plate making machine driving structure according to claim 1, wherein the driving mechanism (2) comprises a motor (201) and a sliding rod (203), the base (1) is provided with a mounting groove (102), the moving frame is slidably arranged in the mounting groove (102), the motor (201) is fixedly connected with the base (1), the output end of the motor (201) is fixedly connected with a screw (202), the outer sides of the two connecting plates (205) are fixedly connected with a sliding block (206) and a limiting block (207) respectively, the sliding block (206) is in threaded connection with the screw (202), and the limiting block (207) is slidably connected with the sliding rod (203).
  3. 3. The plate making machine driving structure according to claim 1, wherein the vertical section of the clamping plate (301) is L-shaped, a bolt (303) is arranged on the clamping plate (301) in a penetrating way, and the bolt (303) is connected to the mounting frame (4) in a threaded way.
  4. 4. A plate making machine driving structure according to claim 3, wherein the vertical section of the supporting frame (204) is T-shaped, a plurality of L-shaped connecting blocks (302) are fixedly connected to the lower end of the clamping plate (301), the connecting blocks (302) are clamped on two sides of the supporting frame (204) in a sliding mode, and the clamping plate (301) is connected to the upper end of the supporting frame (204) through the connecting blocks (302) in a sliding mode.
  5. 5. A plate making machine driving structure according to claim 2, wherein the base (1) is internally provided with an electromechanical groove (106), and the motor (201) is fixedly connected in the electromechanical groove (106).
  6. 6. The plate making machine driving structure according to claim 5, wherein guide rail grooves (105) are formed in the inner walls of the two sides of the mounting groove (102), the connecting plate (205) is slidably arranged in the guide rail grooves (105), sliding grooves (103) and limiting grooves (104) are formed in the two sides of the mounting groove (102) in the base (1), the sliding grooves (103) and the limiting grooves (104) are respectively communicated with the guide rail grooves (105) on the two sides of the mounting groove (102), the screw (202) is rotatably connected in the sliding grooves (103), the sliding block (206) is slidably arranged in the sliding grooves (103), the sliding rod (203) is fixedly connected in the limiting grooves (104), and the limiting block (207) is slidably connected in the limiting grooves (104).

Description

Plate-making machine driving structure Technical Field The utility model relates to the technical field of platemaking machines, in particular to a driving structure of a platemaking machine. Background The plate making machine is a professional device for making printing plate surfaces, which directly converts characters and images into numbers through a digital working process to generate printing plates, and the screen printing plate making machine drives the printing plates to move through a driving mechanism to form pores so as to realize plate making. In the prior art, a driving mechanism of a screen printing plate making machine is fixedly arranged, and is inconvenient to adjust according to the specification of a required plate. Disclosure of utility model The utility model aims to solve the technical problem that the conventional screen printing platemaking machine type driving mechanism can only drive a plate material with a fixed size to move, and is inconvenient to use. In order to achieve the above purpose, the technical scheme provided by the utility model is as follows: The plate making machine driving structure comprises a base, a supporting frame, a plurality of supporting legs, a screen printing plate making machine, a driving mechanism and a driving mechanism, wherein the supporting legs are fixedly connected with the lower end of the base, the screen printing plate making machine is fixedly connected with the upper end of the base, The plurality of support frames are arranged in parallel, the two ends of the support frames are fixedly connected with connecting plates, the plurality of support frames and the connecting plates form a movable frame, and the driving mechanism drives the movable frame to move forwards and backwards; The support frame is provided with a fixing component, the fixing component comprises clamping plates which are arranged on a plurality of support frames in a relative sliding manner, a mounting frame is placed on the clamping plates, and the mounting frame is clamped and fixed by the clamping plates at two sides Further, actuating mechanism includes motor, support frame and slide bar, be equipped with the mounting groove on the base, it locates the mounting groove to remove the frame slip, in the motor rigid coupling base, the motor output rigid coupling has the screw rod, and a plurality of support frame both ends rigid couplings have the connecting plate, two the connecting plate outside rigid coupling has slider and stopper respectively, slider threaded connection is on the screw rod, stopper sliding connection is on the slide bar. Further, be equipped with fixed subassembly on the actuating mechanism, fixed subassembly includes splint, the vertical tangent plane of splint is established to the L type, wear to be equipped with the bolt on the splint, bolt threaded connection is on the installing frame. Further, the vertical tangent plane of support frame is established to the T type, splint lower extreme fixedly connected with the connecting block of a plurality of L types, the connecting block slip centre gripping is in the support frame both sides, splint pass through connecting block sliding connection in support frame upper end. Furthermore, an electromechanical groove is arranged in the base, and the motor is fixedly connected in the electromechanical groove. Further, the inner walls of two sides of the mounting groove are provided with guide rail grooves, the connecting plates are slidably arranged in the guide rail grooves, two sides of the mounting groove in the base are provided with sliding grooves and limiting grooves, the sliding grooves and the limiting grooves are respectively communicated with the guide rail grooves on two sides of the mounting groove, the screw is rotationally connected in the sliding grooves, the sliding blocks are slidably arranged in the sliding grooves, the sliding rods are fixedly connected in the limiting grooves, and the limiting blocks are slidably connected in the limiting grooves. The beneficial effects obtained by the utility model by adopting the structure are as follows: 1, selecting mounting frames with different sizes according to the specification of a required plate, and fixing the mounting frames by using a fixing assembly after the mounting frames are arranged on a supporting frame, wherein the fixing assembly can fix the mounting frames with various sizes; And 2, driving the fixed mounting frame to move through a screen printing platemaking machine by driving a motor to carry out platemaking. Drawings Fig. 1 is a schematic diagram of the whole machine of the present utility model. Fig. 2 is an exploded view of the present utility model. Fig. 3 is a cross-sectional view of a base of the present utility model. Fig. 4 is a second cross-sectional view of the base of the present utility model. Fig. 5 is a schematic view of a driving mechanism according to the present utility model. Fig. 6 is an exploded view of t