Laser printer for printing

By combining multi-directional motion control technology with negative pressure fixing, laser printers achieve high-precision and high-efficiency printing, solving the problems of insufficient flexibility and accuracy of traditional laser printers, expanding the application range and simplifying operation.

CN223631245UActive Publication Date: 2025-12-05FOSHAN MYS GREEN VALLEY TECH CO LTD
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Patent Information

Application Number
CN202423293299.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-05
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional laser printers' laser heads can only move in one or limited directions, resulting in insufficient printer flexibility and precision. The clamping mechanism and printing platform design cannot meet diverse printing needs, leading to low printing efficiency, complex operation, and insufficient precision.

Method used

This laser printer employs multi-directional motion control technology, where the laser head moves in multiple directions on the printing platform via a drive mechanism. Negative pressure is used to fix the substrate, and a clamping mechanism is used for further fixation. A high-performance drive mechanism is also provided to ensure printing stability and efficiency.

Benefits of technology

It achieves high-precision and high-efficiency printing with laser printers, simplifies the operation process, improves the flexibility and adaptability of printers, expands the application range, and reduces manual intervention and error rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of printed matter laser printing, in particular to a laser printer for printing, which comprises a machine table, a printing platform, a clamping mechanism, a laser head and a driving mechanism. According to the laser printer, based on the combination of the laser printing technology and the multi-directional movement control technology, the laser head emits laser beams, the laser beams move on the printing platform in multiple directions through accurate control of the driving mechanism, and accurate printing of printed products is achieved. The printing platform fixes a printed product through negative pressure, and the stability and accuracy of the product in the printing process are ensured. The clamping mechanism is used for further fixing the printed product and preventing the printed product from moving or deforming in the printing process. Modularized design is adopted for the assemblies, and rapid replacement and adjustment are convenient. And a high-performance driving mechanism is arranged, so that the stability and the working efficiency of the laser printer are ensured. The technical problems of low printing efficiency, complex operation, insufficient printing precision and the like are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to printed matter laser printing technical field especially relates to a laser printer for printing. BACKGROUND

[0002] In the current printed matter laser printer technology, although significant progress has been made, but there are still some technical problems to be solved.

[0003] In the traditional laser printer, the laser head can only move in one direction or limited directions, which limits the flexibility and precision of the printer. In addition, the traditional clamping mechanism and the printing platform design can only handle specific size and shape of the printing material, which cannot meet the needs of diversified printing tasks. These problems lead to low printing efficiency, complex operation and insufficient printing precision, etc. Therefore, how to solve the technical problems of low printing efficiency, complex operation and insufficient printing precision has become a technical problem to be solved in the current printed matter laser printing field. UTILITY MODEL CONTENTS

[0004] The utility model aims at the shortage of prior art, provides a laser printer for printing, which combines laser printing technology and multi-directional movement control technology. The laser head emits a laser beam, and the driving mechanism is precisely controlled to move in multiple directions on the printing platform, achieving accurate printing of the printing material. The printing platform fixes the printing material by negative pressure, ensuring the stability and accuracy of the product during printing. The clamping mechanism is used to further fix the printing material to prevent it from moving or deforming during printing. The components are designed in a modular way for easy and fast replacement and adjustment. The driving mechanism is equipped with high performance to ensure the stability and efficiency of the laser printer. The components are designed in a modular way for easy and fast replacement and adjustment. The driving mechanism is equipped with high performance to ensure the stability and efficiency of the laser printer. The technical problems of low printing efficiency, complex operation and insufficient printing precision are solved.

[0005] To achieve the above purpose, the utility model relates to a laser printer for printing, which comprises a machine table, a printing platform, a clamping mechanism, a laser head and a driving mechanism,

[0006] The printing platform is fixed to the machine table and is used to fix the printed product by negative pressure;

[0007] The clamping mechanism is arranged on the outer periphery of the printing platform and is used to clamp and fix the printed product;

[0008] The laser head is used to emit laser to print the printed product;

[0009] The driving mechanism is fixed to the machine table and is used to drive the laser head to move in multiple directions for printing.

[0010] Preferably, the printing platform comprises a support part and a negative pressure part,

[0011] The support part is fixedly connected to the machine table,

[0012] The negative pressure part is fixed to the top of the support part, and the negative pressure part is provided with a plurality of negative pressure holes connected to the air compressor.

[0013] Preferably, the area of the negative pressure part is larger than the area of the support part, so that the periphery of the negative pressure part is suspended above the machine table, facilitating the placement or taking of printed matter.

[0014] Preferably, the clamping mechanism comprises a fixed frame, a rotary driver, a telescopic driver and an elastic limiting piece,

[0015] The fixed frame is fixed to the machine table;

[0016] The rotary driver drives the telescopic driver to rotate;

[0017] The telescopic driver drives the elastic limiting piece to approach or move away from the printing platform.

[0018] Preferably, the fixed frame comprises a frame body and a rotating rod, the rotating rod is rotatably arranged on the frame body, the telescopic driver is fixed to the rotating rod, and the rotary driver drives the rotating rod to rotate.

[0019] Preferably, the driving mechanism comprises a fixed seat, a lifting frame, a lifting driver, a front-back moving driver and a left-right moving driver;

[0020] The fixed seat is fixed to the machine table;

[0021] The lifting driver drives the lifting frame to lift;

[0022] The front-back moving driver is fixed to the lifting frame and is used to drive the left-right moving driver to move forward;

[0023] The left-right moving driver is used to drive the laser head to move left and right.

[0024] Preferably, the driving mechanism further comprises a multi-axis rotating seat,

[0025] The multi-axis rotating seat comprises a mounting seat, a first rotating shaft and a second rotating shaft,

[0026] The mounting seat is provided with a first mounting plate, a second mounting plate and a third mounting plate, and the first mounting plate, the second mounting plate and the third mounting plate are integrally formed;

[0027] The first rotating shaft is arranged between the first mounting plate and the third mounting plate and is connected with the laser head.

[0028] The second rotating shaft is arranged on the second mounting plate and is connected with the left-right moving driver.

[0029] Preferably, the fixing seat is provided with a guide sliding rod, and the lifting frame is in sliding connection with the guide sliding rod.

[0030] Preferably, the device further comprises a controller, and the printing platform, the clamping mechanism, the laser head and the driving mechanism are electrically connected with the controller.

[0031] Preferably, the device is further provided with an induction area for placing a mobile phone, and the induction area of the mobile phone is provided with an NFC inductor connected with the controller.

[0032] The laser printer has the advantages that the laser printer is combined based on the laser printing technology and the multi-directional movement control technology, the laser head emits a laser beam, the precise control of the driving mechanism is performed, multi-directional movement is performed on the printing platform, and accurate printing of the printing object is realized. The printing platform fixes the printing object through negative pressure, and the stability and accuracy of the product in the printing process are ensured. The clamping mechanism is used for further fixing the printing object, and movement or deformation of the printing object in the printing process is prevented. The components are designed in a modular manner, and are convenient and fast to replace and adjust. The device is provided with a high-performance driving mechanism, and the stability and working efficiency of the laser printer are ensured. The components are designed in a modular manner, and are convenient and fast to replace and adjust. The device is provided with a high-performance driving mechanism, and the stability and working efficiency of the laser printer are ensured. Technical problems such as low printing efficiency, complex operation and insufficient printing precision are solved. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 It is a structural schematic view of the utility model.

[0034] Figure 2 It is an enlarged structural schematic view of part A. Figure 1

[0035] Figure 3 It is a structural schematic view of the laser head and the driving mechanism.

[0036] Figure 4 It is a structural schematic view of the multi-axle rotating seat.

[0037] The reference signs comprise:

[0038] ​1, machine; 11, guide slide rod; 12, induction area; 13, NFC inductor; 2, printing platform; 21, support part; 22, negative pressure part; 23, negative pressure hole; 3, clamping mechanism; 31, fixed frame; 311, frame body; 312, rotating rod; 32, rotary driver; 33, telescopic driver; 34, elastic limiting piece; 4, laser head; 5, driving mechanism; 51, fixed seat; 52, lifting frame; 53, lifting driver; 54, front and rear movement driver; 55, left and right movement driver; 56, multi-axis rotating seat; 561, mounting seat; 5611, first mounting plate; 5612, second mounting plate; 5613, third mounting plate; 562, first rotating shaft; 563, second rotating shaft. DETAILED DESCRIPTION

[0039] The utility model is described in detail below in combination with the drawings.

[0040] Referring to Figures 1 to 4 The utility model discloses a laser printer for printing, which comprises a machine 1, a printing platform 2, a clamping mechanism 3, a laser head 4 and a driving mechanism 5,

[0041] The printing platform 2 is fixed to the machine 1 and is used to fix the printing product by negative pressure;

[0042] The clamping mechanism 3 is arranged on the outer periphery of the printing platform 2 and is used to clamp and fix the printing product;

[0043] The laser head 4 is used to emit laser to print the printing product;

[0044] The driving mechanism 5 is fixed to the machine 1 and is used to drive the laser head 4 to move in multiple directions to perform printing work.

[0045] The multi-directional movement of the laser head 4 is realized by the driving mechanism 5, which can accurately control the position of the laser beam on the printing platform 2, thereby improving the printing precision and ensuring the details and clarity of the printing product.

[0046] The clamping mechanism 3 is arranged on the outer periphery of the printing platform 2 and can clamp and fix printing products of different sizes and shapes. Combined with the multi-directional movement capability of the laser head 4, the laser printer can handle more diversified printing tasks.

[0047] The multi-directional movement capability of the laser head 4 allows the printer to complete complex printing work in a shorter time without the need for manual movement of the printing product or adjustment of the printer settings, thereby improving the printing efficiency.

[0048] The design of negative pressure fixation of the printing platform and the automatic clamping mechanism 3 reduces the need for manual intervention, simplifies the operation process, and reduces the operation difficulty and error rate.

[0049] The laser printer is based on the combination of laser printing technology and multi-directional movement control technology. The laser head 4 emits a laser beam, which is precisely controlled by the driving mechanism 5 and moves in multiple directions on the printing platform 2, thereby achieving accurate printing on the printing object. The printing platform 2 fixes the printing object through negative pressure, ensuring the stability and accuracy of the product during printing. The clamping mechanism 3 is used to further fix the printing object to prevent it from moving or deforming during printing. The assembly adopts a modular design, which facilitates quick replacement and adjustment. The high-performance driving mechanism 5 is equipped to ensure the stability and efficiency of the laser printer. The assembly adopts a modular design, which facilitates quick replacement and adjustment. The high-performance driving mechanism 5 is equipped to ensure the stability and efficiency of the laser printer. The technical problems of low printing efficiency, complex operation and insufficient printing precision are solved.

[0050] Referring to Figure 2 The printing platform 2 of the embodiment includes a support part 21 and a negative pressure part 22,

[0051] The support part 21 is fixedly connected with the machine table 1,

[0052] The negative pressure part 22 is fixed on the top of the support part 21, and the negative pressure part 22 is provided with a plurality of negative pressure holes 23 connected with the air compressor.

[0053] Through the fixed connection of the support part 21 and the machine table 1, the stability of the printing platform 2 during work is ensured, thereby improving the printing quality of the printed matter.

[0054] The negative pressure part 22 is arranged on the top of the support part 21 and is provided with a plurality of negative pressure holes 23 connected with the air compressor, which can generate negative pressure effect during work, effectively adsorb and fix the printing object, prevent it from moving or warping during printing, and further improve the printing precision.

[0055] The design of the plurality of negative pressure holes 23 enables the printing platform 2 to be adjusted according to the size and shape of different printing objects. By controlling the opening and closing of the negative pressure holes 23 or adjusting the negative pressure strength, stable adsorption of different printing objects is achieved, enhancing the versatility and flexibility of the printing platform 2.

[0056] Referring to Figure 2 The area of the negative pressure part 22 of the embodiment is greater than that of the support part 21, so that the periphery of the negative pressure part 22 is suspended above the machine table 1, facilitating the placement or taking of the printed matter.

[0057] Referring to Figure 2 The clamping mechanism 3 of the embodiment includes a fixed frame 31, a rotary driver 32, a telescopic driver 33 and an elastic limiting piece 34,

[0058] The fixed frame 31 is fixed on the machine table 1;

[0059] The rotary driver 32 drives the telescopic driver 33 to rotate;

[0060] The telescopic driver 33 drives the elastic stopper 34 to approach or move away from the printing platform 2.

[0061] The clamping mechanism 3 combines the rotary driver 32 and the telescopic driver 33, and can realize flexible adjustment in multiple directions. This makes the clamping mechanism 3 able to adapt to different sizes, shapes and positions of the printing object, ensuring its stability and accuracy during printing.

[0062] Through the driving of the telescopic driver 33, the elastic stopper 34 can approach or move away from the printing platform 2, thereby adapting to different printing objects.

[0063] The design of the elastic stopper 34 makes the clamping process more gentle, avoiding damage to the printing object caused by excessive clamping force. At the same time, the elastic stopper 34 can also make fine adjustments according to the shape and size of the printing object, ensuring the tightness and stability of clamping.

[0064] The driving and control of the clamping mechanism 3 can be realized automatically through the program, reducing the tediousness and errors of manual operation. This helps to improve production efficiency, reduce production cost, and improve the quality of printed products.

[0065] Specifically, the rotary driver 32 is a motor, a rudder or a rotary cylinder. The telescopic driver 33 is a linear driver, such as a cylinder, an oil cylinder or a hydraulic cylinder. The elastic stopper 34 can be a rubber or silicone part.

[0066] Referring to Figure 2 The fixed frame 31 of the embodiment includes a frame body 311 and a rotating rod 312, the rotating rod 312 is rotationally arranged on the frame body 311, the telescopic driver 33 is fixed with the rotating rod 312, and the rotary driver 32 drives the rotating rod 312 to rotate.

[0067] Through the rotational arrangement of the rotating rod 312 on the frame body 311, combined with the driving of the rotary driver 32, the telescopic driver 33 and the elastic stopper 34 connected thereto can also rotate in the horizontal plane. This makes the clamping mechanism 3 able to easily adapt to printing objects in different directions and angles, greatly improving the flexibility and adaptability of the equipment.

[0068] Referring to Figure 3 The driving mechanism 5 of the embodiment includes a fixed seat 51, a lifting frame 52, a lifting driver 53, a front-back moving driver 54 and a left-right moving driver 55;

[0069] The fixed seat 51 is fixed to the machine table 1;

[0070] The lifting driver 53 drives the lifting frame 52 to lift;

[0071] The front-back movement driver 54 is fixed to the lifting frame 52 and is used to drive the left-right movement driver 55 to move forward;

[0072] The left-right movement driver 55 is used to drive the laser head 4 to move left and right.

[0073] By integrating the lifting driver 53, the front-back movement driver 54, and the left-right movement driver 55, the driving mechanism 5 can accurately position the laser head 4 in three-dimensional space. This design enables the laser head 4 to accurately move to the target position, meeting the needs of high-precision processing or marking.

[0074] The presence of the lifting driver 53 allows the height of the laser head 4 to be adjusted as needed. This height adjustability helps to adapt to workpieces of different thicknesses or heights, ensuring consistency and accuracy of laser processing.

[0075] Under the joint action of the front-back movement driver 54 and the left-right movement driver 55, the laser head 4 can move in any direction in the horizontal plane. This flexible movement capability allows the laser head 4 to easily adapt to workpieces of various complex shapes and sizes, expanding the application range.

[0076] Specifically, the lifting driver 53 is a screw lifting module, and the front-back movement driver 54 and the left-right movement driver 55 are both linear driving modules, such as linear motors.

[0077] Referring to Figure 4 The driving mechanism 5 of the embodiment further includes a multi-axis rotating seat 56,

[0078] The multi-axis rotating seat 56 includes a mounting seat 561, a first rotating shaft 562, and a second rotating shaft 563,

[0079] The mounting seat 561 is provided with a first mounting plate 5611, a second mounting plate 5612, and a third mounting plate 5613, which are integrally formed;

[0080] The first rotating shaft 562 is rotationally arranged between the first mounting plate 5611 and the third mounting plate 5613 and connected with the laser head 4;

[0081] The second rotating shaft 563 is rotationally arranged on the second mounting plate 5612 and connected with the left-right movement driver 55.

[0082] By introducing the multi-axis rotating seat 56, the driving mechanism 5 increases the rotating capability of the laser head 4 around two different axes on the basis of the original three-dimensional positioning. This design enables the laser head 4 to process with more complex postures and angles, greatly enhancing the flexibility of the equipment.

[0083] The design of the multi-axis rotating seat 56 enables the laser head 4 to adjust its posture and angle more accurately to adapt to workpieces of different shapes and sizes. This precise adjustment helps to improve the machining precision and ensure the processing quality.

[0084] As the laser head 4 can process in more diverse postures and angles, the driving mechanism 5 can be applied to a wider variety of workpieces and processing scenarios. This expands the application range of the device and improves its market competitiveness.

[0085] The design of the first mounting plate 5611, the second mounting plate 5612, and the third mounting plate 5613 being integrally formed makes the structure of the multi-axis rotating seat 56 more compact and stable. This design not only improves the stability and reliability of the device but also helps to reduce manufacturing costs.

[0086] The design of the multi-axis rotating seat 56 enables the laser head 4 and the left-right movement driver 55 to be connected more flexibly and conveniently. This facilitates faster replacement or adjustment of the position and posture of the laser head 4 during device maintenance and adjustment.

[0087] Specifically, the first rotating shaft 562 and the second rotating shaft 563 are each driven to rotate by a reduction motor or a servo motor.

[0088] Referring to Figure 3 The fixed seat 51 of the embodiment is provided with a guide slide rod 11, and the lifting frame 52 is in sliding connection with the guide slide rod 11.

[0089] By providing the guide slide rod 11, the lifting frame 52 can smoothly slide along the guide slide rod 11, reducing shaking during movement and improving the stability of the entire device.

[0090] The embodiment also includes a controller, and the printing platform 2, the clamping mechanism 3, the laser head 4, and the driving mechanism 5 are all electrically connected with the controller.

[0091] The controller can coordinate the actions of the printing platform 2, the clamping mechanism 3, the laser head 4, and the driving mechanism 5 to realize automatic operation of the entire system. This reduces the complexity and error rate of manual operation and improves work efficiency.

[0092] The controller communicates with each component through electrical connection and can accurately control their motion trajectories, speeds, and forces, etc. This ensures the accuracy and consistency of laser processing and improves product quality.

[0093] Referring to Figure 3As shown, the machine table 1 of the embodiment is further provided with an induction area 12 for placing a mobile phone, the induction area 12 of the mobile phone is provided with an NFC inductor 13, and the NFC inductor 13 is connected with the controller. The user only needs to place the mobile phone on the induction area 12 of the machine table 1, and the NFC of the mobile phone can realize data transmission with the controller through the NFC technology. This non-contact data transmission method is fast and convenient, and does not need additional data lines or connection equipment. Through the light touch of the NFC function of the mobile phone and the NFC inductor 13 on the induction area 12, instant printing is realized, and the printer simplifies the printing process in the mode of “one-touch printing” without the need of computer transfer.

[0094] When in use, the mobile phone is close to the printer, and the printing setting and starting can be completed. The laser printer can receive the printing instructions and data from the mobile phone through the non-contact connection of the NFC inductor 13, and realize the functions of remote printing and wireless printing. The humanized NFC induction and control system makes the laser printer easy to use.

[0095] The above is only the preferred embodiment of the present application, and for the ordinary skilled in the art, according to the idea of the present application, the specific implementation mode and application range can be changed, and the content of the specification should not be understood as the limitation of the present application.

Claims

1. A laser printer for printing, characterized by, Including machine table (1), printing platform (2), clamping mechanism (3), laser head (4) and drive mechanism (5), The printing platform (2) is fixed to the machine table (1) and is used for fixing the printed product by negative pressure; The clamping mechanism (3) is arranged on the outer periphery of the printing platform (2) and is used for clamping the fixed printed product; The laser head (4) is used for emitting laser to print the printed product; The drive mechanism (5) is fixed to the machine table (1) and is used for driving the laser head (4) to move in multiple directions to perform printing operation.

2. A laser printer for printing according to claim 1, wherein, The printing platform (2) comprises a support part (21) and a negative pressure part (22), The support part (21) is fixedly connected with the machine table (1), The negative pressure part (22) is fixed to the top of the support part (21), and the negative pressure part (22) is provided with a plurality of negative pressure holes (23), and the plurality of negative pressure holes (23) are connected with an air compressor.

3. A laser printer for printing according to claim 2, wherein, The area of the negative pressure part (22) is greater than the area of the support part (21), so that the periphery of the negative pressure part (22) is suspended above the machine table (1), facilitating placing or taking the printed product.

4. A laser printer for printing according to claim 1, wherein, The clamping mechanism (3) comprises a fixed frame (31), a rotary driver (32), a telescopic driver (33) and an elastic limiting piece (34), The fixed frame (31) is fixed to the machine table (1); The rotary driver (32) drives the telescopic driver (33) to rotate; The telescopic driver (33) drives the elastic limiting piece (34) to approach or move away from the printing platform (2).

5. A laser printer for printing according to claim 4, wherein, The fixed frame (31) comprises a frame body (311) and a rotating rod (312), the rotating rod (312) is rotatably arranged on the frame body (311), the telescopic driver (33) is fixed with the rotating rod (312), and the rotary driver (32) drives the rotating rod (312) to rotate.

6. A laser printer for printing according to claim 1, wherein, The drive mechanism (5) comprises a fixed seat (51), a lifting frame (52), a lifting driver (53), a front-back moving driver (54) and a left-right moving driver (55); The fixed seat (51) is fixed to the machine table (1); The lifting driver (53) drives the lifting frame (52) to lift; The front-back moving driver (54) is fixed to the lifting frame (52) and is used for driving the left-right moving driver (55) to move forward; The left-right moving driver (55) is used for driving the laser head (4) to move left and right.

7. A laser printer for printing according to claim 6, wherein, The drive mechanism (5) further comprises a multi-axis rotating seat (56), The multi-axis rotating seat (56) comprises a mounting seat (561), a first rotating shaft (562) and a second rotating shaft (563), The mounting seat (561) is provided with a first mounting plate (5611), a second mounting plate (5612) and a third mounting plate (5613), and the first mounting plate (5611), the second mounting plate (5612) and the third mounting plate (5613) are integrally formed; The first rotating shaft (562) is rotatably arranged between the first mounting plate (5611) and the third mounting plate (5613) and is connected with the laser head (4); The second rotating shaft (563) is rotatably arranged on the second mounting plate (5612) and connected with the left-right moving driver (55).

8. A laser printer for printing according to claim 7, wherein, The fixed seat (51) is provided with a guide sliding rod (11), and the lifting frame (52) is in sliding connection with the guide sliding rod (11).

9. A laser printer for printing according to claim 1, wherein, The controller is further included, and the printing platform (2), the clamping mechanism (3), the laser head (4) and the driving mechanism (5) are electrically connected with the controller.

10. A laser printer for printing according to claim 9, wherein, The machine table (1) is further provided with an induction area (12) for placing a mobile phone, the induction area (12) of the mobile phone is provided with an NFC inductor (13), and the NFC inductor (13) is connected with the controller.