A positioning detection all-in-one machine for high-precision transfer film pattern printing
By designing a positioning detection machine for high-precision transfer film pattern printing, combined with printing, detection and cutting machines, the problems of image detection and unqualified position cutting after printing are solved, and the printing quality and efficiency are improved.
Patent Information
- Application Number
- CN202211626630.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-16
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2042-12-16
AI Technical Summary
The lack of devices for post-printing image detection and unqualified position cutting are possible in the prior art, resulting in the inability to guarantee the quality of the printing.
A positioning and detection integrated machine for high-precision transfer film pattern printing is designed, including a printing machine, a detection machine and a positioning and cutting machine. The printing position and image are detected through the camera detection device, and automated printing and cutting are achieved with limiting, compression, positioning and cutting components.
It has achieved improvement in printing quality, inspection integrity and automation, ensured the accuracy of printing positions and the cutting of unqualified positions, and improved printing efficiency and film recycling efficiency.
Smart Images

Figure CN116278349B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of printing, and in particular relates to an all-in-one positioning and detection machine for high-precision transfer film pattern printing. Background Art
[0002] The film generally needs to be printed through an embossing machine, so as to emboss trademarks or various shades of patterns and designs on the film or non-woven fabric.
[0003] Chinese patent application number CN201110285907.3 discloses a multi-roller embossing machine comprising a frame, and a first embossing roller, a second embossing roller, and a first pattern roller mounted on the frame. The machine is characterized in that the angle between the rotation axis of the first embossing roller and the rotation axis of the first pattern roller and the rotation axis of the second embossing roller and the rotation axis of the first pattern roller is less than 180 degrees. A corresponding method of use is also provided.
[0004] However, the prior art only discloses a printing machine, but does not disclose a device for detecting the printed image and position after the film is printed, nor a cutting device for cutting off unqualified printed positions, thereby failing to ensure the quality of the printing. Summary of the Invention
[0005] In view of the above problems in the prior art, an object of the present invention is to provide an all-in-one positioning and detection machine for high-precision transfer film pattern printing.
[0006] The present invention provides the following technical solutions:
[0007] A positioning and detection integrated machine for high-precision transfer film pattern printing includes a printing machine, a detection machine and a positioning and cutting machine arranged in parallel on the ground. The film passes through the printing machine, the detection machine and the positioning and cutting machine in sequence, so that the film is printed in sequence, the printing position and image are detected, and the unqualified printing position is cut and then recycled.
[0008] Specifically, the printing machine includes a base frame, on which several rotating rollers are evenly and movably mounted, and a bracket is installed on the base frame, on which the printing roller is movably mounted, and a propulsion printing device is located on both sides of the printing roller and mounted on the bracket, and a propulsion roller that contacts the lower end of the printing roller and is movably mounted on the bracket, the propulsion roller is movably mounted in a propulsion block, and the propulsion block is placed in a limiting hole 1 provided on the bracket, the propulsion block and the fixed block 1 are connected by a spring 1, and the fixed block 1 is mounted in the limiting hole 1.
[0009] Specifically, the printing propulsion device includes a driven roller located on one side of the printing roller and movably mounted on the bracket, an active roller located on the side of the driven roller away from the printing roller and movably mounted on the bracket, the gears installed at both ends of the driven roller are engaged with the gears of the printing roller, the gears installed at both ends of the active roller are engaged with the gears of the driven roller, the cylinder 1 is installed on the bracket through a mounting plate, and a push plate is installed on the cylinder 1, and the push plate is located on the side of the active roller away from the driven roller.
[0010] Specifically, the detection machine includes a workbench, a frame installed on the workbench, and several video detection devices installed in the frame; the video detection device includes a fixed plate installed on the frame and a camera installed on the fixed plate.
[0011] Specifically, the positioning cutting machine includes a platform, a transition roller assembly installed on one end of the platform close to the detection machine, and a rack installed on the platform and located outside one side of the transition roller assembly, a limiting assembly, a pressing assembly, a cutting table one, a positioning assembly and a cutting table two placed in the rack and installed in sequence on the platform; a recycling assembly and a cutting assembly located on both sides of the positioning assembly and installed on the platform at the same time, wherein the film passes through the transition roller assembly, the limiting assembly, the pressing assembly, the cutting table one and the cutting table two in sequence until it is recycled by the recycling assembly.
[0012] Specifically, the limit assembly includes a limit bracket installed on the platform, a limit seat installed on the limit bracket, a limit roller 1 movably installed on the limit seat, a motor 1 installed on the limit bracket, a pulley 1 installed on the motor 1, a pulley 2 installed on the limit roller 1, a limit plate installed on the end of the limit roller 1 away from the pulley 2, the pulley 1 and the pulley 2 are connected through a belt transmission, a tensioning roller 1 and a tensioning roller 2 are movably installed on the limit bracket, and a tensioning roller 3 is movably installed inside the platform.
[0013] Specifically, the clamping assembly includes a clamping seat, a limiting roller 2 movably installed on the clamping seat near one end of the limiting assembly, a working platform is provided on the clamping seat, and limiting blocks are symmetrically installed on both sides of the inner wall of the clamping seat, and a limiting hole 2 is provided on the limiting block. The clamping roller is movably installed in the limiting hole 2, and the fixed block 2 is installed in the limiting hole 2. The fixed block 2 and the clamping roller are connected by a spring 2. The clamping roller presses the film under the elastic force of the spring 2, and at the same time, a cylinder seat is installed on the end of the clamping seat away from the limiting roller 2, and a cylinder 2 is installed on the cylinder seat. The cylinder 2 presses the film.
[0014] Specifically, the positioning assembly includes a fixed support, a second camera mounted on the fixed support via a camera mount, and a narrow light source mounted on the fixed support.
[0015] Specifically, the cutting assembly includes a support column, a support mounted on the support column, a motor three mounted on the support, a pulley three mounted on one end of the motor three passing through the support, a pulley four movably mounted on the end of the support away from the pulley three, the pulley three and the pulley four are connected by a belt three, a linear guide rail one is mounted on the support, a movable seat is mounted on the belt three and the linear guide rail one, a cylinder three is mounted on the movable seat, a cutter is mounted on the cylinder three through the knife seat, and a heating rod is installed in the cutter.
[0016] Specifically, the recycling component includes a recycling seat, motor 2 is installed on the recycling seat, a driving wheel is installed at one end of the motor 2 passing through the recycling seat, a driven wheel is movably installed at the end of the recycling seat away from the driving wheel, the driving wheel and the driven wheel are connected by belt 2, the support rod is installed on belt 2 through the fixed seat, the fixed seat is movably installed on the recycling seat through linear guide rail 2, the recycling roller is movably installed at one end of the support rod, and motor 4 is installed on the recycling roller.
[0017] The beneficial effects of the present invention are:
[0018] 1. The device disclosed in Example 1, with its two-sided printing pushers and push rollers, keeps the film in close contact with the printing rollers during printing, thereby improving the printing quality of the film. At the same time, the inspection device also meets the purpose of printing inspection.
[0019] 2. The positioning and detection integrated machine for high-precision transfer film pattern printing disclosed in Example 2 automates all operations of printing the film, detecting the printing position and image, and cutting out the unqualified printing position and then recycling it. At the same time, the disclosed limiting component defines the position of the film, the pressing component ensures the flatness of the film, the positioning component cooperates with the cutting component to ensure the quality of the film printing, and the recycling component ensures the efficiency of the printed film recycling. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0021] Figure 1 It is a front view of the present invention;
[0022] Figure 2 is a three-dimensional diagram of the printing machine of the present invention;
[0023] Figure 3 It is a schematic diagram of the internal structure of the printing machine of the present invention;
[0024] Figure 4 It is a schematic diagram of the internal structure of the detection machine in the present invention;
[0025] Figure 5 is a top view of the positioning cutting machine in the second embodiment of the present invention;
[0026] Figure 6 Schematic diagram of the internal structure of the positioning cutting machine in the second embodiment of the present invention;
[0027] Figure 7 is a three-dimensional diagram of the transition roller assembly in the second embodiment of the present invention;
[0028] Figure 8 This is a schematic structural diagram of the limiting assembly in the second embodiment of the present invention without the limiting plate;
[0029] Figure 9 is a three-dimensional diagram of the pressing assembly in the second embodiment of the present invention;
[0030] Figure 10 is a three-dimensional diagram of the positioning component in the second embodiment of the present invention;
[0031] Figure 11 is a three-dimensional diagram of the cutting component in the second embodiment of the present invention;
[0032] Figure 12 is a three-dimensional diagram of the recycling component in the second embodiment of the present invention;
[0033] The following are marked in the figure: 1. Printing machine; 2. Inspection machine; 3. Positioning cutting machine;
[0034] 101. Base frame; 102. Rotating roller; 103. Bracket; 104. Printing roller; 105. Printing device; 106. Propelling roller; 107. Propelling block; 108. Spring 1; 109. Fixed block 1; 110. Limiting hole 1;
[0035] 1051, driven roller; 1052, active roller; 1053, push plate; 1054, cylinder 1; 1055, mounting plate;
[0036] 201, workbench; 202, frame; 203, camera detection device;
[0037] 2031, fixed plate; 2032, camera 1;
[0038] 301, transition roller assembly; 302, limit assembly; 303, pressing assembly; 304, cutting assembly; 305, cutting table 1; 306, cutting table 2; 307, positioning assembly; 308, platform; 309, shelf; 310, recycling assembly;
[0039] 3011, assembly frame; 3012, transition roller;
[0040] 3021. Motor 1; 3022. Belt 1; 3023. Limiting seat; 3024. Limiting plate; 3025. Limiting roller 1; 3026. Limiting bracket; 3027. Tensioning roller 1; 3028. Tensioning roller 2; 3029. Tensioning roller 3;
[0041] 3031, pressing seat; 3032, limiting roller 2; 3033, pressing roller; 3034, limiting hole 2; 3035, spring 2; 3036, limiting block; 3037, fixing block 2; 3038, cylinder seat; 3039, cylinder 2; 30310, working platform;
[0042] 3041. Support column; 3042. Support; 3043. Pulley three; 3044. Pulley four; 3045. Motor three; 3046. Belt three; 3047. Moving seat; 3048. Cylinder three; 3049. Knife holder; 30410. Heating rod; 30411. Cutting knife; 30412. Linear guide rail one;
[0043] 3071, fixed support; 3072, camera mount; 3073, camera 2; 3074, narrow light source;
[0044] 3101. Recovery seat; 3102. Motor 2; 3103. Driving pulley; 3104. Driven pulley; 3105. Belt 2; 3106. Fixed seat; 3107. Support rod; 3108. Recovery roller; 3109. Motor 4; 31010. Linear guide rail 2. DETAILED DESCRIPTION
[0045] Example 1
[0046] like Figure 1 As shown, the present invention provides an integrated positioning and detection machine for high-precision transfer film pattern printing, comprising a printing machine 1 and a detection machine 2 arranged in parallel. The film passes through the printing machine 1 and the detection machine 2 in sequence, so that the film is printed and the printing position and image are detected in sequence. The film that passes through the printing machine 1 and the detection machine 2 is recycled by subsequent processes.
[0047] The device is designed with a detection machine 2, so as to ensure that the position and pattern of the printing on the film can be immediately detected to see if they are accurate, and then the unqualified positions can be identified and recorded.
[0048] Please focus on Figure 2 and Figure 3The printing machine 1 includes a base frame 101, on which a plurality of rotating rollers 102 are evenly and movably mounted, and a bracket 103 is mounted on the base frame 101, a printing roller 104 is movably mounted on the bracket 103, and a pushing printing device 105 is located on both sides of the printing roller 104 and mounted on the bracket 103, and a pushing roller 106 is in contact with the lower end of the printing roller 104 and movably mounted on the bracket 103, the pushing roller 106 is movably mounted in a pushing block 107, and the pushing block 107 is placed in a limiting hole 110 provided on the bracket 103, the pushing block 107 is connected to the fixed block 109 by a spring 108, and the fixed block 109 is mounted in the limiting hole 110, so that when the film passes around the rotating roller 102, the pushing printing device 105, the printing roller 104 and the pushing roller 106 in sequence, the pushing block 107 presses the film tightly against the printing roller 104 under the action of the spring 108.
[0049] At the same time, gears are installed at both ends of the embossing roller 104, and gears are also installed at both ends of the propulsion roller 106. At the same time, the gears of the embossing roller 104 are meshed with the gears of the embossing roller 104.
[0050] Please focus on Figure 2 The printing pushing device 105 includes a driven roller 1051 located on one side of the printing roller 104 and movably mounted on the bracket 103, and an active roller 1052 located on the side of the driven roller 1051 away from the printing roller 104 and movably mounted on the bracket 103. The gears installed at both ends of the driven roller 1051 are engaged with the gears of the printing roller 104, and the gears installed at both ends of the active roller 1052 are engaged with the gears of the driven roller 1051. The cylinder 1054 is installed on the bracket 103 through the mounting plate 1055. A push plate 1053 is installed on the cylinder 1054, and the push plate 1053 is located on the side of the active roller 1052 away from the driven roller 1051; therefore, when the cylinder 1054 is turned on, the cylinder 1054 pushes the active roller 1052 and the driven roller 1051 in turn, thereby ensuring that the film is tightly attached to the printing roller 104.
[0051] The film passes around the rotating roller 102, and then passes between the active roller 1052 and the driven roller 1051, passes over the driven roller 1051, and then passes from under the printing roller 104, and passes between the printing roller 104 and the pushing roller 106, and then passes around the driven roller 1051 in the other side pushing printing device 105, and then passes through the middle of the driven roller 1051 in the other side pushing printing device 105 and the active roller 1052 in the other side pushing printing device 105 to reach the rotating roller 102 on the other side, and finally enters the detection machine 2.
[0052] Thus, the film is fully printed under the action of the printing roller 104. At the same time, under the action of the pushing printing device 105 and the pushing roller 106 on both sides, the film is closely attached to the printing roller 104 during printing, thereby improving the printing quality of the film.
[0053] Please focus on Figure 4 The detection machine 2 includes a workbench 201 and a frame 202 installed on the workbench 201. Several camera detection devices 203 are installed in the frame 202.
[0054] The camera detection device 203 includes a fixing plate 2031 mounted on the frame 202 and a camera 1 2032 mounted on the fixing plate 2031 . The figure also shows the camera range of the camera 1 2032 .
[0055] When the film is printed, it passes through the inspection machine 2 for inspection of the printed pattern and position, that is, the film passes through the workbench 201, and the camera 2032 on the frame 202 is spread throughout the inspection machine 2, so as to ensure that all the printing positions on the film are captured, thereby ensuring the integrity of the inspection.
[0056] Cylinder 1054 and camera 2032 are communicatively coupled to the control panel.
[0057] The control panel includes a PLC controller, which can program the numerical control system. The PLC serves as the central control system, using the touch screen to input program and control the entire machine, achieving full automation of the transportation process. The control system connects the various actuators to move according to the logical trajectory, and the actuators are controlled by programming to follow the required operation steps.
[0058] The working principle of the positioning detection integrated machine for high-precision transfer film pattern printing proposed in this embodiment 1 is as follows:
[0059] The film is first manually passed around the rotating roller 102 on one side of the chassis 101, then passed through the push printing device 105 on one side, then passed around the printing roller 104, passed between the printing roller 104 and the push roller 106, then passed through the push printing device 105 on the other side, and finally passed out from the rotating roller 102 on the other side of the chassis 101;
[0060] After the film printing is completed, that is, after the film is wound out from the printing machine 1, it passes through the inspection machine 2 to detect all the printed patterns and positions on the film, that is, it passes through the workbench 201, and the camera 2032 records the picture and transmits it to the controller, and finally forms the inspection result, thereby distinguishing the unqualified printing position.
[0061] The device disclosed in the first embodiment of the present invention, under the action of the pushing printing device 105 and the pushing roller 106 on both sides, makes the film tightly adhere to the printing roller 104 during printing, thereby improving the printing quality of the film. At the same time, the detection machine 2 meets the purpose of printing detection.
[0062] Example 2
[0063] like Figure 1 As shown, the positioning detection integrated machine for high-precision transfer film pattern printing disclosed in the second embodiment includes a positioning cutting machine 3, and other devices and their installation locations, as well as usage methods are the same as those in the first embodiment.
[0064] A printing machine 1, an inspection machine 2 and a positioning and cutting machine 3 are arranged side by side on the ground. The film passes through the printing machine 1, the inspection machine 2 and the positioning and cutting machine 3 in sequence, so that the film is printed, the printing position and image are inspected, and the unqualified printing position is cut and recycled.
[0065] The design of this device enables full automation of a series of operations from printing, testing to cutting of the film, thereby ensuring the quality and efficiency of film printing.
[0066] Please focus on Figure 5 and Figure 6 The positioning cutting machine 3 includes a platform 308, a transition roller assembly 301 installed on one end of the platform 308 close to the detection machine 2, and a rack 309 installed on the platform 308 and located outside one side of the transition roller assembly 301, a limiting assembly 302, a pressing assembly 303, a cutting table 1 305, a positioning assembly 307 and a cutting table 2 306 placed in the rack 309 and sequentially installed on the platform 308; a recycling assembly 310 and a cutting assembly 304 are respectively located on both sides of the positioning assembly 307 and installed on the platform 308, wherein the film passes through the transition roller assembly 301, the limiting assembly 302, the pressing assembly 303, the cutting table 1 305 and the cutting table 2 306 in sequence until it is recycled by the recycling assembly 310, wherein the positioning assembly 307 identifies the unqualified printing position, and then the cutting assembly 304 cuts out the unqualified position of the film.
[0067] Please focus on Figure 7 The transition roller assembly 301 includes a frame 3011 and several transition rollers 3012 movably mounted on both sides of the frame 3011. The film passes through the transition roller 3012 on the upper side of the assembly 3011 and the transition roller 3012 on the lower side of the assembly 3011 in turn.
[0068] Please focus on Figure 8The limit assembly 302 includes a limit bracket 3026 mounted on the platform 308, a limit seat 3023 mounted on the limit bracket 3026, a limit roller 1 3025 movably mounted on the limit seat 3023, a motor 1 3021 mounted on the limit bracket 3026, a pulley 1 mounted on the motor 1 3021, a pulley 2 mounted on the limit roller 1 3025, a limit plate 3024 is mounted on the end of the limit roller 1 3025 away from the pulley 2, the limit plate 3024 cooperates with the limit seat 3023 to limit the film to the limit roller 1 3025, thereby simultaneously positioning the position of the subsequent structure of the film on the positioning cutting machine 3, and the pulley 1 and the pulley 2 are connected to each other through the belt 1 3022, a tensioning roller 1 3027 and a tensioning roller 2 3028 are movably mounted on the limit bracket 3026, and a tensioning roller 3 3029 is movably mounted inside the platform 308.
[0069] The film is wound out from the limiting roller 3025 and passes through the tensioning roller 1 3027, the tensioning roller 2 3028 and the tensioning roller 3 3029 in sequence.
[0070] The film is wound out of the limiting assembly 302 and enters the pressing assembly 303 .
[0071] Please focus on Figure 9 The pressing assembly 303 includes a pressing seat 3031, a limiting roller 3032 movably mounted on the pressing seat 3031 near one end of the limiting assembly 302, a working platform 30310 is provided on the pressing seat 3031, and limiting blocks 3036 symmetrically mounted on both sides of the inner wall of the pressing seat 3031, a limiting hole 3034 is provided on the limiting block 3036, and the pressing roller 3033 is movably mounted in the limiting hole 3034. The second fixed block 3037 is installed in the second limiting hole 3034. The second fixed block 3037 is connected to the pressure roller 3033 through the second spring 3035. The pressure roller 3033 presses the film under the elastic force of the second spring 3035. At the same time, the pressure seat 3031 is equipped with a cylinder seat 3038 at one end away from the second limiting roller 3032. The second cylinder 3039 is installed on the cylinder seat 3038. The second cylinder 3039 presses the film.
[0072] After the film is wound out from the limiting assembly 302, it is wound around the limiting roller 2 3032 into the pressing assembly 303, and then passes through the bottom surface of the pressing roller 3033 and under the cylinder 2 3039 in turn, and finally passes out from the pressing assembly 303; therefore, the film is flattened under the action of the pressing roller 3033 and the cylinder 2 3039.
[0073] Please focus on Figure 10The positioning assembly 307 includes a fixed pillar 3071, a second camera 3073 mounted on the fixed pillar 3071 through a camera mount 3072, and a narrow light source 3074 mounted on the fixed pillar 3071, wherein the narrow light source 3074 is used to assist the second camera 3073 in shooting.
[0074] When the film passes through the positioning component 307, the camera 2 3073 captures the printed pattern and position on the film, and then verifies it with the unqualified record captured by the inspection machine 2. When the camera 2 3073 locates the unqualified position on the film, the cutting component 304 is turned on, so that the cutting component 304 cuts off the unqualified position on the film, and at the same time the recycling component 310 only recycles the qualified position of the film, thereby ensuring the quality of the film.
[0075] Please focus on Figure 11 The cutting assembly 304 includes a support column 3041, a support 3042 mounted on the support column 3041, a motor 3045 mounted on the support 3042, the motor 3045 passing through one end of the support 3042 is mounted with a pulley 3043, the support 3042 is movably mounted with a pulley 4 3044 at one end away from the pulley 3 3043, the pulley 3 3043 and the pulley 4 3044 are connected to each other through a belt 3 3046, and the linear guide 1 304 12 is installed on the support 3042, the moving seat 3047 is installed on the belt three 3046 and the linear guide rail one 30412, the cylinder three 3048 is installed on the moving seat 3047, and the cutter 30411 is installed on the cylinder three 3048 through the knife seat 3049. At the same time, a heating rod 3041 is installed in the cutter 30411. When the positioning component 307 is positioned to the unqualified position on the film, the heating rod 3041 and the cylinder three 3048 are turned on, and the cutter 30411 will cut off the unqualified position on the film.
[0076] Please focus on Figure 12 The recycling component 310 includes a recycling seat 3101, a second motor 3102 is installed on the recycling seat 3101, and a driving wheel 3103 is installed at one end of the motor 3102 passing through the recycling seat 3101. A driven wheel 3104 is movably installed at the end of the recycling seat 3101 away from the driving wheel 3103. The driving wheel 3103 and the driven wheel 3104 are connected by a second belt 3105. The support rod 3107 is installed on the second belt 3105 through the fixed seat 3106. The fixed seat 3106 is movably installed on the recycling seat 3101 through the second linear guide 31010. The recycling roller 3108 is movably installed at one end of the support rod 3107, and the recycling roller 3108 is installed with a fourth motor 3109.
[0077] Motor four 3109 is turned on, and the qualified film is recovered by the recovery roller 3108. After the cutting component 304 cuts out the unqualified position on the film, the qualified film recovered previously is removed. Then, motor two 3102 is turned on, so that motor two 3102 drives the recovery roller 3108 to move from outside the cutting table two 306 to the cutting table one 305, and the qualified film after cutting is recovered by the recovery roller 3108. Finally, motor two 3102 is turned on to move the recovery roller 3108 back to the outside of the cutting table two 306, thereby ensuring the recovery efficiency and quality of the film.
[0078] Cylinder one 1054, camera one 2032, motor one 3021, cylinder two 3039, camera two 3073, narrow light source 3074, motor three 3045, cylinder three 3048, heating rod 30410, motor two 3102 and motor four 3109 are communicatively coupled to the control panel.
[0079] The working principle of the positioning detection integrated machine for high-precision transfer film pattern printing proposed in the second embodiment is as follows:
[0080] After the film is printed by the printing machine 1 and inspected by the inspection machine 2, it first passes through the transition roller assembly 301 and the limit assembly 302 in sequence, and then passes through the pressing assembly 303. Under the action of the pressing roller 3033 and the cylinder 2 3039, the film is ensured to be flat and then recovered by the recovery assembly 310;
[0081] Then the film is positioned at the unqualified printing position by the positioning assembly 307, and the heating rod 3041 and the cylinder 3 3048 are turned on at the same time, so that the cutting assembly 304 cuts off the unqualified position on the film;
[0082] Finally, the qualified film previously recovered by the recovery component 310 is manually removed, and then the motor 2 3102 is turned on. The motor 2 3102 drives the recovery roller 3108 to move from the outside of the cutting table 2 306 to the cutting table 1 305, and the qualified film after cutting is recovered by the recovery roller 3108. Then, the motor 2 3102 is turned on and the recovery roller 3108 is moved back to the outside of the cutting table 2 306. When the unqualified printing position is detected again, the operation of the above-mentioned positioning component 307 and the recovery component 310 is repeated.
[0083] The positioning and detection integrated machine for high-precision transfer film pattern printing disclosed in Example 2 automates all operations of printing the film, detecting the printing position and image, and cutting out the unqualified printing position and then recycling it. At the same time, the disclosed limiting component 302 limits the position of the film, the pressing component 303 ensures the flatness of the film, and the positioning component 307 cooperates with the cutting component 304 to ensure the quality of the film printing, and the recycling component 310 ensures the efficiency of the printed film recycling.
[0084] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A positioning detection integrated machine for high-precision transfer film pattern printing, characterized in that: The invention comprises a printing machine (1), a detection machine (2) and a positioning cutting machine (3) arranged in parallel on the ground, wherein the film passes through the printing machine (1), the detection machine (2) and the positioning cutting machine (3) in sequence, thereby printing the film, detecting the printing position and image, and cutting out the unqualified printing position and recycling the film in sequence; The positioning cutting machine (3) includes a platform (308), a transition roller assembly (301) installed on one end of the platform (308) close to the detection machine (2), and a rack (309) installed on the platform (308) and located outside one side of the transition roller assembly (301); a limiting assembly (302), a pressing assembly (303), a cutting table (305), a positioning assembly (307) and a cutting table (306) placed in the rack (309) and sequentially installed on the platform (308); a recycling assembly (310) and a cutting assembly (304) respectively located on both sides of the positioning assembly (307) and simultaneously installed on the platform (308), wherein the film passes through the transition roller assembly (301), the limiting assembly (302), the pressing assembly (303), the cutting table (305) and the cutting table (306) in sequence until being recycled by the recycling assembly (310); The limiting assembly (302) includes a limiting bracket (3026) mounted on the platform (308), a limiting seat (3023) mounted on the limiting bracket (3026), a limiting roller (3025) movably mounted on the limiting seat (3023), a motor (3021) mounted on the limiting bracket (3026), a pulley (1) mounted on the motor (3021), a pulley (2) mounted on the limiting roller (3025), a limiting plate (3024) mounted on one end of the limiting roller (3025) away from the pulley (2), and the pulley (1) and the pulley (2) are connected by a belt (3022), a tensioning roller (3027) and a tensioning roller (3028) are movably mounted on the limiting bracket (3026), and a tensioning roller (3029) is movably mounted inside the platform (308); The pressing assembly (303) includes a pressing seat (3031), a second limiting roller (3032) movably mounted on the pressing seat (3031) near one end of the limiting assembly (302), a working platform (30310) being provided on the pressing seat (3031), and limiting blocks (3036) symmetrically mounted on both sides of the inner wall of the pressing seat (3031), a second limiting hole (3034) being provided on the limiting blocks (3036), and a pressing roller (3033) being movably mounted in the second limiting hole (3034) and fixed. Block 2 (3037) is installed in limiting hole 2 (3034), and the fixed block 2 (3037) is connected to the pressing roller (3033) via spring 2 (3035). The pressing roller (3033) presses the film under the elastic force of spring 2 (3035). At the same time, a cylinder seat (3038) is installed at one end of the pressing seat (3031) away from limiting roller 2 (3032), and a cylinder 2 (3039) is installed on the cylinder seat (3038). The cylinder 2 (3039) presses the film; The cutting assembly (304) includes a support column (3041), a support (3042) mounted on the support column (3041), and a motor (3045) mounted on the support (3042). The motor (3045) passes through one end of the support (3042) and is equipped with a pulley (3043). The support (3042) is equipped with a pulley (4) (3044) at one end away from the pulley (3043). The pulley (3043) is connected to the pulley (3043). The four (3044) are connected by a belt three (3046), and the linear guide rail one (30412) is installed on the support (3042), the movable seat (3047) is installed on the belt three (3046) and the linear guide rail one (30412), the cylinder three (3048) is installed on the movable seat (3047), and the cutting knife (30411) is installed on the cylinder three (3048) through the knife seat (3049), and a heating rod is installed in the cutting knife (30411).
2. The positioning detection integrated machine for high-precision transfer film pattern printing according to claim 1, characterized in that: The printing machine (1) includes a base frame (101), a plurality of rotating rollers (102) are evenly and movably mounted on the base frame (101), a bracket (103) is mounted on the base frame (101), a printing roller (104) is movably mounted on the bracket (103), a printing propulsion device (105) is located on both sides of the printing roller (104) and is mounted on the bracket (103), a propulsion roller (106) is in contact with the lower end of the printing roller (104) and is movably mounted on the bracket (103), the propulsion roller (106) is movably mounted in a propulsion block (107), and the propulsion block (107) is placed in a limiting hole (110) provided on the bracket (103), the propulsion block (107) is connected to a fixed block (109) by a spring (108), and the fixed block (109) is mounted in the limiting hole (110).
3. The positioning detection integrated machine for high-precision transfer film pattern printing according to claim 2, characterized in that: The printing propulsion device (105) comprises a driven roller (1051) located on one side of the printing roller (104) and movably mounted on the bracket (103), and an active roller (1052) located on the side of the driven roller (1051) away from the printing roller (104) and movably mounted on the bracket (103). Gears mounted at both ends of the driven roller (1051) mesh with the gears of the printing roller (104). Gears mounted at both ends of the active roller (1052) mesh with the gears of the driven roller (1051). Cylinder 1 (1054) is mounted on the bracket (103) via a mounting plate (1055). A push plate (1053) is mounted on the cylinder 1 (1054). The push plate (1053) is located on the side of the active roller (1052) away from the driven roller (1051).
4. The positioning detection integrated machine for high-precision transfer film pattern printing according to claim 1, characterized in that: The detection machine (2) comprises a workbench (201), a frame (202) mounted on the workbench (201), and a plurality of video detection devices (203) mounted in the frame (202); the video detection device (203) comprises a fixing plate (2031) mounted on the frame (202), and a camera (2032) mounted on the fixing plate (2031).
5. The positioning detection integrated machine for high-precision transfer film pattern printing according to claim 1, characterized in that: The positioning assembly (307) includes a fixed support (3071), a second camera (3073) mounted on the fixed support (3071) via a camera mount (3072), and a narrow light source (3074) mounted on the fixed support (3071).
6. The positioning detection integrated machine for high-precision transfer film pattern printing according to claim 1, characterized in that: The recycling assembly (310) comprises a recycling seat (3101), a second motor (3102) is mounted on the recycling seat (3101), a driving wheel (3103) is mounted on one end of the second motor (3102) passing through the recycling seat (3101), a driven wheel (3104) is movably mounted on one end of the recycling seat (3101) away from the driving wheel (3103), the driving wheel (3103) and the driven wheel (3104) are connected to each other by a second belt (3105), a support rod (3107) is mounted on the second belt (3105) through a fixed seat (3106), the fixed seat (3106) is movably mounted on the recycling seat (3101) through a second linear guide rail (31010), a recycling roller (3108) is movably mounted on one end of the support rod (3107), and a fourth motor (3109) is mounted on the recycling roller (3108).
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