Aluminum material processing laser marking machine

By introducing a moving and adaptive laser marking mechanism into the aluminum processing laser marking machine, the aluminum plate cutting and marking can be carried out simultaneously, solving the problem of time-consuming switching process in the existing technology and improving processing efficiency and graphic accuracy.

CN120572164BActive Publication Date: 2025-12-09FOSHAN YIGUANG ALUMINUM CO LTD
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Patent Information

Application Number
CN202510925371.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-05
Publication Date
2025-12-09
Estimated Expiration
2045-07-05

AI Technical Summary

Technical Problem

In existing technologies, after laser cutting of aluminum plates, the molten slag needs to be removed and transported to the marking position, resulting in wasted time and labor-intensive workstation switching, which reduces processing efficiency.

Method used

Design an aluminum laser marking machine, including a moving mechanism and an adaptive laser marking mechanism. The moving mechanism drives the marking machine to move above the workpiece and automatically cleans the molten slag during the cutting process. The marking is performed by adapting to the tilt angle of the workpiece, so as to realize the synchronous operation of cutting and marking.

Benefits of technology

It improves the processing efficiency of aluminum parts, avoids slag obstructing the marking process, ensures accurate and distortion-free graphics, and reduces workpiece handling and cleaning time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an aluminum material processing laser marking machine, and relates to the technical field of aluminum part marking, which comprises a supporting mechanism and further comprises: a moving mechanism one installed on the supporting mechanism; a moving mechanism two installed on the moving mechanism one; and a self-adaptive laser marking mechanism installed on the moving mechanism two. When the laser cutting machine cuts multiple aluminum parts from an aluminum plate, the same cutting bed is used to cut and mark the workpiece, and the workpiece does not need to be taken out and cleaned and then conveyed to a marker position for marking, so that cutting and marking are simultaneously performed, the efficiency of aluminum part processing is greatly improved, the aluminum material on the cutting bed is automatically adapted in an inclined direction, the laser marking machine is frontally directed to the aluminum material, the inclination marking is avoided to cause the deformation of a pattern, the slag left on the surface of the workpiece due to laser cutting is cleaned before marking, the aluminum material is avoided from being shielded during marking, and the aluminum material cannot complete marking.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of aluminum part marking, in particular to an aluminum material processing laser marking machine. BACKGROUND

[0002] Aluminum material laser marking is carried out after aluminum part cutting, and in the prior art, the workpiece needs to be taken out after laser cutting of the aluminum plate to process the surface of the workpiece to avoid the influence of slag on marking, and then the processed workpiece is transported to the marking position for laser marking, but in the process of switching between laser cutting and laser marking, a lot of time is wasted, and the switching of the workstations is time-consuming and laborious, which reduces the overall aluminum part processing efficiency. SUMMARY

[0003] The present application provides an aluminum material processing laser marking machine to solve the above problems in the prior art.

[0004] To achieve the above purpose, the present application adopts the following technical scheme:

[0005] An aluminum material processing laser marking machine, comprising a supporting mechanism, further comprising:

[0006] A moving mechanism one is installed on the supporting mechanism;

[0007] A moving mechanism two is installed on the moving mechanism one;

[0008] An adaptive laser marking mechanism is installed on the moving mechanism two, the adaptive laser marking mechanism comprises a rotating shaft two fixed at the bottom of the moving plate two, a one-way gear three is fixed outside the rotating shaft two, a turntable is rotatably connected to the bottom end of the rotating shaft two, a double-shaft motor is fixed inside the turntable, a gear two is fixed at the top end of the output shaft of the double-shaft motor, and the gear two is engaged with the one-way gear three on one side;

[0009] A driving mechanism is installed on the supporting mechanism, the driving mechanism is connected with the moving mechanism one and the moving mechanism two, and drives the moving mechanism one and the moving mechanism two to operate respectively, the moving mechanism one drives the moving mechanism two to move, and the moving mechanism two drives the adaptive laser marking mechanism to move.

[0010] Preferably, the supporting mechanism comprises a mounting base, and the mounting base is fixed with a mounting frame at the top.

[0011] Preferably, the driving mechanism comprises a motor plate fixed to the inner wall of the top of the mounting frame, the motor plate is internally fixed with a motor, and the output shaft of the motor is fixed with a gear one at one end.

[0012] Preferably, the moving mechanism one comprises a reciprocating screw one rotatably connected to the top of the mounting frame, one end of the reciprocating screw one is provided with a one-way gear one, one side of the one-way gear one is engaged with the gear one, and the reciprocating screw one is externally provided with a moving plate one.

[0013] Preferably, the moving mechanism two comprises a rotating shaft one rotatably connected to the top of the mounting frame, one end of the rotating shaft one close to the gear one is fixed with a one-way gear two, one side of the one-way gear two is engaged with the gear one, the rotating shaft one is externally provided with a sliding groove, the sliding groove is internally provided with a sliding block, the rotating shaft one is externally provided with a bevel gear one, the sliding block is fixed to the inner wall of the bevel gear one, and the bevel gear one is rotatably connected with the moving plate one.

[0014] One side of the moving plate one is fixedly provided with a mounting plate, the mounting plate is rotatably connected with a reciprocating screw two internally, the reciprocating screw two is perpendicular to the rotating shaft one, one end of the reciprocating screw two close to the rotating shaft one is fixedly provided with a bevel gear two, the bevel gear two is engaged with the bevel gear one, the mounting plate is fixedly provided with a guide rod one internally, and the reciprocating screw two is externally provided with a moving plate two in a threaded manner, and the moving plate two is externally provided on the guide rod one.

[0015] Preferably, the bottom output shaft of the double-shaft motor is fixedly provided with a gear three at the bottom end, the bottom of the rotating disc is rotatably connected with a reciprocating screw three, the reciprocating screw three is externally provided with a one-way gear four, one side of the gear three is engaged with the one-way gear four, the reciprocating screw three is externally provided with a moving plate three in a threaded manner, the moving plate three is internally provided with a guide rod two, the top end of the guide rod two is fixedly connected with the rotating disc, the bottom of the moving plate three is fixedly provided with a spring one, the bottom end of the spring one is fixedly provided with a correction frame one, and the top inner wall of the correction frame one is fixedly provided with a laser marking machine.

[0016] Preferably, the adaptive laser marking mechanism further comprises a plurality of fixed plates fixedly provided on the correction frame one respectively, the fixed plates are fixedly provided with telescopic rods at the bottom, the telescopic rods are externally provided with springs two in a sleeved manner, the top ends of the springs two are fixedly connected with the fixed plates, the bottom ends of the telescopic rods are fixedly provided with movable plates, the bottom ends of the springs two are fixedly connected with the movable plates, the movable plates are externally provided on four vertical rods of the correction frame one respectively, the correction frame one is externally provided with a correction frame two, and the correction frame two is fixedly connected with the movable plates.

[0017] The bottom of the correction frame one is rotatably connected with two bidirectional screws, the two ends of the bidirectional screws are fixedly provided with gears four, one side of the gear four is engaged with a rack, and the rack is fixedly connected with the correction frame two.

[0018] Two moving plate fours are further included, each of the moving plate fours is threadedly sleeved outside the two bidirectional screw rods, an activity opening is formed in the inside of the moving plate four, a mounting frame is sleeved in the inside of the activity opening, a scraper is fixed to the bottom of the mounting frame, two scrapers are mirror image mounted, two supporting plates and two sleeve plates are fixed to the opposite sides of the two mounting frames, the two sleeve plates are located at the top of the moving plate four, a limiting rod is fixed to the top of the supporting plate, and the limiting rod is fixed in the inside of the sleeve plate.

[0019] Preferably, the self-adaptive laser marking mechanism further comprises two supporting rods fixed to the opposite sides of the two moving plate fours, and the top ends of the two supporting rods are fixed with protective plates.

[0020] Preferably, one side of the mounting base is fixed with a controller, the controller is electrically connected with the motor, the double-shaft motor and the laser marking machine respectively, and the controller is externally connected with the laser cutting machine.

[0021] Compared with the prior art, the self-adaptive laser marking mechanism has the following beneficial effects:

[0022] 1. The self-adaptive laser marking mechanism can drive the laser marking machine to move above the workpiece for processing according to the workpiece coordinate data obtained by the controller through the installation of the moving mechanism one and the moving mechanism two.

[0023] 2. When the self-adaptive laser marking machine is used for marking the workpiece on the cutting bed, the direction of the laser marking machine can be automatically rotated according to the cutting layout data, the workpiece can be automatically adapted to the inclination or sinking caused by the support frame of the cutting bed, the inclination angle of the workpiece can be automatically adapted, the laser marking machine can be made to face the workpiece, the deformation of the pattern caused by the inclination marking can be avoided, the slag remaining on the surface of the workpiece after laser cutting can be cleaned before marking, and the workpiece can be prevented from being shielded during marking so that the marking cannot be completed.

[0024] In summary, the self-adaptive laser marking mechanism can be used for cutting and marking the workpiece by using the same cutting bed when the laser cutting machine is used for cutting multiple aluminum parts on an aluminum plate, the workpiece does not need to be taken out and cleaned and then conveyed to the marking position for marking, the cleaning and marking are simultaneously performed, the efficiency of aluminum part processing is greatly improved, the laser marking machine can be made to face the aluminum material by automatically adapting to the inclination direction of the aluminum material on the cutting bed, the deformation of the pattern caused by the inclination marking can be avoided, and the slag remaining on the surface of the workpiece after laser cutting can be cleaned before marking, and the workpiece can be prevented from being shielded during marking so that the marking cannot be completed. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 A perspective first-view three-dimensional structure schematic diagram of the aluminum material processing laser marking machine is provided.

[0026] Figure 2A three-dimensional second perspective view of the self-adaptive laser marking mechanism of the aluminum material processing laser marking machine.

[0027] Figure 3 A planar perspective view of the self-adaptive laser marking mechanism of the aluminum material processing laser marking machine.

[0028] Figure 4 A three-dimensional first perspective view of the self-adaptive laser marking mechanism of the aluminum material processing laser marking machine.

[0029] Figure 5 A three-dimensional second perspective view of the self-adaptive laser marking mechanism of the aluminum material processing laser marking machine.

[0030] Figure 6 A scraper structure diagram of the aluminum material processing laser marking machine.

[0031] Figure 7 A laser cutting machine structure diagram of the aluminum material processing laser marking machine.

[0032] Figure 8 A Figure 2 A partial enlarged structure diagram of the inner A.

[0033] In the figure: 1, support mechanism; 11, base; 12, mounting frame; 2, driving mechanism; 21, motor plate; 22, motor; 23, gear one; 3, moving mechanism one; 31, reciprocating screw one; 32, one-way gear one; 33, moving plate one; 4, moving mechanism two; 41, shaft one; 42, sliding chute; 43, sliding block; 44, bevel gear one; 45, mounting plate; 46, reciprocating screw two; 47, bevel gear two; 48, guide rod one; 49, moving plate two; 410, one-way gear two; 5, self-adaptive laser marking mechanism; 51, shaft two; 52, one-way gear three; 53, turntable; 54, reciprocating screw three; 55, one-way gear four; 56, guide rod two; 57, moving plate three; 58, spring one; 59, correction frame one; 510, fixed plate; 511, telescopic rod; 512, spring two; 513, movable plate; 514, correction frame two; 515, rack; 516, bidirectional screw; 517, gear four; 518, moving plate four; 519, mounting bracket; 520, scraper; 521, supporting plate; 522, limiting rod; 524, cover plate; 525, movable opening; 526, support rod; 527, protection plate; 528, laser marking machine; 529, double-shaft motor; 530, gear two; 531, gear three. DETAILED DESCRIPTION

[0034] With reference to the accompanying drawings, the technical solutions in the embodiments of the present application will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application.

[0035] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like indicate the orientation or positional relationship shown in the drawings, which are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0036] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited. In addition, the terms "mounting", "connecting", "connecting" should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0037] Embodiment: Reference Figures 1-8 The aluminum material processing laser marking machine comprises a supporting mechanism 1, the supporting mechanism 1 comprises a mounting base 11, and the top of the mounting base 11 is fixedly connected with a mounting frame 12.

[0038] Further comprising:

[0039] The moving mechanism one 3 is installed on the supporting mechanism 1.

[0040] The moving mechanism one 3 comprises a reciprocating screw one 31 rotatably connected to the top of the mounting frame 12, one end of the reciprocating screw one 31 is provided with a one-way gear one 32, one side of the one-way gear one 32 is engaged with the gear one 23, and the reciprocating screw one 31 is externally threaded and sleeved with a moving plate one 33.

[0041] The moving mechanism two 4 is installed on the moving mechanism one 3.

[0042] The moving mechanism two 4 comprises a rotating shaft one 41 rotatably connected to the top of the mounting frame 12, a one-way gear two 410 fixed to one end of the rotating shaft one 41 close to the gear one 23, one side of the one-way gear two 410 engaged with the gear one 23, a sliding groove 42 formed in the outer part of the rotating shaft one 41, a sliding block 43 sleeved in the sliding groove 42, a bevel gear one 44 sleeved on the outer part of the rotating shaft one 41, the sliding block 43 fixed to the inner wall of the bevel gear one 44, and the bevel gear one 44 rotatably connected with the moving plate one 33;

[0043] One side of the moving plate one 33 is fixedly connected with a mounting plate 45, the mounting plate 45 rotatably connected with a reciprocating screw two 46 in the inside, the reciprocating screw two 46 perpendicular to the rotating shaft one 41, one end of the reciprocating screw two 46 close to the rotating shaft one 41 fixedly connected with a bevel gear two 47, the bevel gear two 47 engaged with the bevel gear one 44, a guide rod one 48 fixedly connected in the inside of the mounting plate 45, and a moving plate two 49 threadedly sleeved on the outer part of the reciprocating screw two 46, the moving plate two 49 sleeved on the outer part of the guide rod one 48;

[0044] The moving mechanism one and the moving mechanism two drive the laser marking machine to move above the workpiece for processing according to the workpiece coordinate data obtained by the controller.

[0045] The adaptive laser marking mechanism 5 is installed on the moving mechanism two 4, and is used for adaptive cleaning and marking of the aluminum piece which has been cut during the cutting process.

[0046] The adaptive laser marking mechanism 5 comprises a rotating shaft two 51 fixedly connected to the bottom of the moving plate two 49, a one-way gear three 52 fixed to the outer part of the rotating shaft two 51, a turntable 53 rotatably connected to the bottom end of the rotating shaft two 51, a double-shaft motor 529 fixedly connected in the inside of the turntable 53, a gear two 530 fixedly connected to the top end of the top output shaft of the double-shaft motor 529, one side of the gear two 530 engaged with the one-way gear three 52, a gear three 531 fixedly connected to the bottom end of the bottom output shaft of the double-shaft motor 529, a reciprocating screw three 54 rotatably connected to the bottom of the turntable 53, a one-way gear four 55 installed on the outer part of the reciprocating screw three 54, one side of the gear three 531 engaged with the one-way gear four 55, a moving plate three 57 threadedly sleeved on the outer part of the reciprocating screw three 54, a guide rod two 56 sleeved in the inside of the moving plate three 57, the top end of the guide rod two 56 fixedly connected with the turntable 53, a spring one 58 fixedly connected to the bottom of the moving plate three 57, a correction frame one 59 fixedly connected to the bottom end of the spring one 58, and a laser marking machine 528 fixedly connected to the top inner wall of the correction frame one 59.

[0047] The adaptive laser marking mechanism 5 further comprises a plurality of fixed plates 510 fixed on the correction frame one 59, the bottom of the fixed plate 510 is fixed with a telescopic rod 511, the outside of the telescopic rod 511 is sleeved with a spring two 512, the top end of the spring two 512 is fixedly connected with the fixed plate 510, the bottom end of the telescopic rod 511 is fixed with a movable plate 513, the bottom end of the spring two 512 is fixedly connected with the movable plate 513, the plurality of movable plates 513 are sleeved on the four vertical rods of the correction frame one 59 respectively, the outside of the correction frame one 59 is sleeved with a correction frame two 514, and the correction frame two 514 is fixedly connected with the plurality of movable plates 513;

[0048] The bottom of the correction frame one 59 is rotationally connected with two bidirectional screw rods 516, both ends of the bidirectional screw rod 516 are fixedly connected with a gear four 517, one side of the gear four 517 is engaged with a rack 515, and the rack 515 is fixedly connected with the correction frame two 514;

[0049] Further comprising two moving plates four 518, each moving plate four 518 is threadedly sleeved outside the two bidirectional screw rods 516, the inside of the moving plate four 518 is provided with a movable opening 525, the movable opening 525 is sleeved with a mounting frame 519, the bottom of the mounting frame 519 is fixedly connected with a scraper 520, the two scrapers 520 are mirror installed, and the opposite sides of the two mounting frames 519 are fixedly connected with two supporting plates 521 and two sleeve plates 524; the two sleeve plates 524 are located at the top of the moving plate four 518, the top of the supporting plate 521 is fixedly connected with a limiting rod 522, and the limiting rod 522 is fixedly connected in the inside of the sleeve plate 524;

[0050] The adaptive laser marking mechanism 5 further comprises two supporting rods 526 fixed on the opposite sides of the two moving plates four 518, and the top end of the two supporting rods 526 is fixedly connected with a protective plate 527;

[0051] One side of the mounting base 11 is fixedly connected with a controller, the controller is electrically connected with the motor 22, the double-shaft motor 529 and the laser marking machine 528 respectively, and the controller is externally connected with the laser cutting machine;

[0052] When the adaptive laser marking machine marks the workpiece on the cutting bed, the direction of the laser marking machine is automatically rotated according to the cutting layout data, the workpiece tilted or sunken due to the support frame of the cutting bed is automatically adapted, the tilt angle of the workpiece is automatically adapted, the laser cutting machine is directly opposite to the workpiece, the deformation of the pattern caused by the tilt marking is avoided, the slag remaining on the surface of the workpiece before marking is cleaned, the workpiece is avoided from being shielded during marking, and the marking is completed.

[0053] A driving mechanism 2 is installed on the supporting mechanism 1, and the driving mechanism 2 is connected with the moving mechanism one 3 and the moving mechanism two 4, respectively drives the moving mechanism one 3 and the moving mechanism two 4 to operate, the moving mechanism one 3 drives the moving mechanism two 4 to move, and the moving mechanism two 4 drives the adaptive laser marking mechanism 5 to move;

[0054] The driving mechanism 2 includes a motor plate 21 fixed on the inner wall of the top of the installation frame 12, and a motor 22 is fixed in the motor plate 21, and one end of the output shaft of the motor 22 is fixed with a gear one 23.

[0055] Working principle:

[0056] In the process of cutting, the laser cutting machine transmits laser cutting data to the controller, the controller drives the motor 22 to drive the gear one 23 to rotate forward according to the laser cutting data, the gear one 23 rotates at the same time to drive the one-way gear one 32 and the one-way gear two 410 to rotate, but the gear one 23 rotates forward only the one-way gear one 32 meets the rotation direction of the central shaft, so the one-way gear one 32 drives the reciprocating screw one 31 to rotate, the reciprocating screw one 31 rotates to drive the moving plate one 33, the adaptive laser marking mechanism 5 and part of the moving mechanism two 4 to move, so that the moving mechanism two 4 moves to the position above the workpiece which needs to be printed by laser, then the motor 22 is started to drive the gear one 23 to rotate reversely, the gear one 23 reversely rotates to drive the rotating shaft one 41 to rotate through the one-way gear two 410, the rotating shaft one 41 rotates to drive the bevel gear one 44 to rotate through the sliding block 43, the bevel gear one 44 rotates to drive the bevel gear two 47 to rotate, the bevel gear two 47 rotates to drive the reciprocating screw two 46 to rotate to drive the moving plate two 49 to move to the position above the workpiece which needs to be printed by laser, and the adaptive laser marking mechanism 5 moves to the position above the workpiece which needs to be printed by laser;

[0057] Then according to the cutting data to determine the workpiece cutting layout direction, then according to the layout direction to start the dual shaft motor 529 drive gear two 530 and gear three 531 forward rotation, gear two 530 forward rotation to meet the unidirectional gear three 52 to meet the center shaft rotation direction, because the shaft two 51 and the moving plate two 49 are fixed together, so the shaft two 51 can not rotate, when the shaft two 51 can not rotate, gear two 530 drive dual shaft motor 529 and turntable 53 is the center point of rotation, gear two 530 around the unidirectional gear three 52 revolution, turntable 53 drive the lower structure rotation, rotation specified angle stop rotation, at this time the printing direction and the cutting direction of the workpiece match, that is, the position of the rotation and the position of the workpiece to be printed are the same, then start the dual shaft motor 529 drive gear two 530 and gear three 531 reverse rotation, gear two 530 can not continue to drive turntable 53 rotation, while gear three 531 reverse rotation to meet the unidirectional gear four 55 drive the center shaft rotation direction, so the unidirectional gear four 55 drive reciprocating screw three 54 rotation, moving plate three 57 push spring one 58 and spring one 58 below the structure down, the bottom of the correction frame two 514 contact with the workpiece, if the workpiece below belongs to the inclined state, then one of the correction frame two 514 edge first contact with the workpiece, with continue to move down, then the correction frame two 514 edge angle stress, through the correction frame two 514 and the correction frame one 59 make spring one 58 bending, make the bottom of the correction frame two 514 completely fit with the workpiece after the inclination, continue to move down, the correction frame two 514 extrude telescopic rod 511 and spring two 512 along the correction frame one 59 up, up when the rack 515 follow up, up during the movement drive gear four 517 and bidirectional screw 516 rotation, bidirectional screw 516 rotation make two moving plate four 518 drive mounting frame 519 and scraper 520 structure movement, two scraper 520 movement will remove the residue generated on the top of the workpiece during laser cutting, make the marking surface free of foreign matter, with the correction frame two 514 up, mounting frame 519 in the activity port 525 inside up and down movement, when the moving plate three 57 move to the reciprocating screw three 54 tail stop down, at this time the scraper 520 has completed the cleaning below, when the moving plate three 57 movement will drive the support rod 526 and protection plate 527 movement, two protection plate 527 away from each other, make the upper laser marking machine 528 exposed, then the controller control laser marking machine 528 laser marking, laser marking machine 528 protection to avoid a series of adverse effects on the laser marking machine 528 when the laser cutting machine works;

[0058] After the marking is completed, continue to start the dual shaft motor 529 drive gear three 531 reverse rotation, make the moving plate three 57 drive the lower structure up, up when the correction frame two 514 reset and make the moving plate four 518 structure reset, complete the marking, then start the moving mechanism one 3 and the moving mechanism two 4 to another cutting completed workpiece marking.

[0059] The above merely provides the preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any person skilled in the art, according to the technical scheme and the inventive concept of the present application, can make equivalent replacements or changes within the technical scope disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A laser marking machine for aluminum processing, comprising a support mechanism (1), characterized in that... Also includes: The moving mechanism (3) is mounted on the supporting mechanism (1); The second mobile mechanism (4) is installed on the first mobile mechanism (3); An adaptive laser marking mechanism (5) is installed on a moving mechanism (4). The adaptive laser marking mechanism (5) includes a rotating shaft (51) fixed to the bottom of the moving plate (49). A one-way gear (52) is fixed to the outside of the rotating shaft (51). A turntable (53) is rotatably connected to the bottom end of the rotating shaft (51). A dual-axis motor (529) is fixed inside the turntable (53). A gear (530) is fixed to the top of the top output shaft of the dual-axis motor (529). One side of the gear (530) meshes with the one-way gear (52). The drive mechanism (2) is mounted on the support mechanism (1). The drive mechanism (2) is connected to the first moving mechanism (3) and the second moving mechanism (4), respectively driving the first moving mechanism (3) and the second moving mechanism (4) to operate. The operation of the first moving mechanism (3) drives the second moving mechanism (4) to move, and the operation of the second moving mechanism (4) drives the adaptive laser marking mechanism (5) to move. The bottom output shaft of the dual-axis motor (529) is fixed with a gear three (531). The bottom of the turntable (53) is rotatably connected with a reciprocating screw three (54). A one-way gear four (55) is installed on the outside of the reciprocating screw three (54). One side of the gear three (531) meshes with the one-way gear four (55). The reciprocating screw three (54) is threaded with a moving plate three (57). The moving plate three (57) is threaded with a guide rod two (56). The top of the guide rod two (56) is fixedly connected to the turntable (53). The bottom of the moving plate three (57) is fixed with a spring one (58). The bottom of the spring one (58) is fixed with a correction frame one (59). The top inner wall of the correction frame one (59) is fixed with a laser marking machine (528). The adaptive laser marking mechanism (5) further includes multiple fixed plates (510) fixed on the first calibration frame (59). A telescopic rod (511) is fixed at the bottom of the fixed plate (510). A second spring (512) is sleeved on the outside of the telescopic rod (511). The top of the second spring (512) is fixedly connected to the fixed plate (510). A movable plate (513) is fixed at the bottom of the telescopic rod (511). The bottom of the second spring (512) is fixedly connected to the movable plate (513). Multiple movable plates (513) are respectively sleeved on the four vertical rods of the first calibration frame (59). A second calibration frame (514) is sleeved on the outside of the first calibration frame (59). The second calibration frame (514) is fixedly connected to multiple movable plates (513). The bottom of the first calibration frame (59) is rotatably connected to two bidirectional screws (516). Both ends of the bidirectional screws (516) are fixed with gears (517). One side of the gears (517) is meshed with a rack (515). The rack (515) is fixedly connected to the second calibration frame (514). It also includes two movable plates (518), each of which is threaded onto the outside of two bidirectional screws (516). The movable plate (518) has an opening (525) inside, and a mounting bracket (519) is fitted inside the opening (525). A scraper (520) is fixed to the bottom of the mounting bracket (519). The two scrapers (520) are mirror-mounted. Two support plates (521) and two sleeve plates (524) are fixed to the opposite side of the two mounting brackets (519). The two sleeve plates (524) are located on the top of the movable plate (518). A limit rod (522) is fixed to the top of the support plate (521), and the limit rod (522) is fixed inside the sleeve plate (524).

2. The laser marking machine for aluminum processing according to claim 1, characterized in that, The support mechanism (1) includes a mounting base (11), and a mounting frame (12) is fixed to the top of the mounting base (11).

3. The laser marking machine for aluminum processing according to claim 2, characterized in that, The drive mechanism (2) includes a motor plate (21) fixed to the inner wall of the top of the mounting frame (12), a motor (22) is fixed inside the motor plate (21), and a gear (23) is fixed to one end of the output shaft of the motor (22).

4. The laser marking machine for aluminum processing according to claim 3, characterized in that, The moving mechanism 1 (3) includes a reciprocating screw 1 (31) rotatably connected to the top of the mounting frame (12). One end of the reciprocating screw 1 (31) is equipped with a one-way gear 1 (32). One side of the one-way gear 1 (32) meshes with a gear 1 (23). The reciprocating screw 1 (31) is threaded with a moving plate 1 (33).

5. The laser marking machine for aluminum processing according to claim 4, characterized in that, The second moving mechanism (4) includes a rotating shaft (41) rotatably connected to the top of the mounting frame (12). One-way gear (410) is fixed at one end of the rotating shaft (41) near the gear (23). One side of the one-way gear (410) meshes with the gear (23). A sliding groove (42) is provided on the outside of the rotating shaft (41). A slider (43) is sleeved inside the sliding groove (42). A bevel gear (44) is sleeved on the outside of the rotating shaft (41). The slider (43) is fixed to the inner wall of the bevel gear (44). The bevel gear (44) is rotatably connected to the moving plate (33). A mounting plate (45) is fixed to one side of the movable plate (33). A reciprocating screw (46) is rotatably connected inside the mounting plate (45). The reciprocating screw (46) is perpendicular to the rotating shaft (41), and a bevel gear (47) is fixed at one end near the rotating shaft (41). The bevel gear (47) meshes with the bevel gear (44). A guide rod (48) is fixed inside the mounting plate (45). A movable plate (49) is threaded on the outside of the reciprocating screw (46). The movable plate (49) is sleeved on the outside of the guide rod (48).

6. The laser marking machine for aluminum processing according to claim 5, characterized in that, The adaptive laser marking mechanism (5) also includes two support rods (526) fixed on opposite sides of the two movable plates (518), and a protective plate (527) is fixed to the top of the two support rods (526).

7. The laser marking machine for aluminum processing according to claim 6, characterized in that, A controller is fixed on one side of the mounting base (11). The controller is electrically connected to the motor (22), the dual-axis motor (529) and the laser marking machine (528). The controller is connected to an external laser cutting machine.

Citation Information

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