Laser engraving machine

By introducing a first and second moving base into the laser engraving machine, combined with a motor and transmission module, the laser module can move along the X and Y axes, solving the problem that the laser module can only move along the Y axis in the existing technology, thus improving the flexibility and engraving efficiency of the laser engraving machine.

CN223833682UActive Publication Date: 2026-01-27DONGGUAN ORTUR INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520417587.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-01-27
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

In existing laser engraving machines, the laser module can only move along the Y-axis and cannot move along the X-axis, resulting in poor flexibility.

Method used

The laser engraving component of the laser engraving machine includes a first moving base and a second moving base. The laser module is connected to the second moving base and moves along the X-axis and Y-axis directions under the action of the first moving base and the second moving base. Automated movement is achieved through a first motor and a transmission module.

Benefits of technology

It enables flexible movement of the laser module along the X and Y axes, improving the flexibility and engraving efficiency of the laser engraving machine.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a laser engraving machine. The laser engraving machine comprises a base, a shell and a laser engraving assembly. The base is provided with an accommodating space; the shell is connected to the base; the laser engraving assembly is installed on the shell. The laser engraving assembly comprises a first moving seat, a second moving seat and a laser module; the first moving seat is movably connected to the shell; the first moving seat and the second moving seat are an X-axis moving seat or a Y-axis moving seat; the laser module is connected to the second moving seat and moves in the X-axis direction and the Y-axis direction under the action of the first moving seat and the second moving seat. According to the laser engraving machine, the laser module is used for engraving the object located in the containing space so that the laser module can move in the X-axis direction and the Y-axis direction, the situation that the laser module can only move in the Y-axis direction but cannot move in the X-axis direction is avoided, and the flexibility of the laser module of the laser engraving machine is improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of laser engraving machines, and more particularly to a laser engraving machine. Background Technology

[0002] With the development of technology, laser engraving machines are being used in industry, where they engrave materials using laser light.

[0003] In the existing technology, the existing laser engraving machine includes a base, a housing, and a laser engraving component. The base has a receiving space; the housing is connected to the base; the laser engraving component is installed in the housing; the laser engraving component includes a Y-axis moving base and a laser module. The Y-axis moving base is movably connected to the housing, and the laser module is connected to the Y-axis moving base. However, the laser module can only move along the Y-axis direction and cannot move along the X-axis direction, resulting in poor flexibility of the laser module in the existing laser engraving machine. Utility Model Content

[0004] The purpose of this utility model is to provide a laser engraving machine, wherein the base has a receiving space; the housing is connected to the base; the laser engraving component is installed on the housing; the laser engraving component includes a first movable seat, a second movable seat, and a laser module; the first movable seat is movably connected to the housing; the first movable seat and the second movable seat are either X-axis movable seats or Y-axis movable seats to each other; the laser module is connected to the second movable seat and moves along the X-axis and Y-axis directions under the action of the first movable seat and the second movable seat; the laser module is used to engrave objects in the receiving space, so as to realize the movement of the laser module along the X-axis and Y-axis directions, avoiding the laser module being able to move only along the Y-axis direction and not along the X-axis direction, thus improving the flexibility of the laser module of the laser engraving machine.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a laser engraving machine for engraving objects, the laser engraving machine comprising:

[0006] The base has a storage space.

[0007] The housing is connected to the base;

[0008] A laser engraving assembly is installed on the housing; the laser engraving assembly includes a first movable base, a second movable base, and a laser module; the first movable base is movably connected to the housing; the first movable base and the second movable base are either X-axis movable bases or Y-axis movable bases; the laser module is connected to the second movable base and moves along the X-axis and Y-axis directions under the action of the first movable base and the second movable base; the laser module is used to engrave objects located in the receiving space.

[0009] Optionally, the laser engraving assembly further includes a first motor and a first transmission module;

[0010] The fixed end of the first motor is connected to the housing, and the first transmission module is connected to the output end of the first motor;

[0011] The connecting belt of the first transmission module is connected to the first movable seat and drives the first movable seat to move.

[0012] Optionally, the first transmission module includes a connecting belt, multiple driven pulleys, and a driving pulley;

[0013] The drive wheel is connected to the output end of the first motor;

[0014] The plurality of driven wheels are rotatably connected to the housing and are distributed at different positions on the housing along with the driving wheel;

[0015] The connecting belt is sleeved on the multiple driven wheels and the driving wheel, and rotates under the drive of the driving wheel.

[0016] Optionally, the connecting strip is arranged in a concave or zigzag pattern.

[0017] Optionally, the housing is rotatably connected to the base and can switch states relative to the base; when the housing is in a first state, the housing is housed in the receiving space; when the housing is in a second state, the housing is located on one side of the receiving space.

[0018] Optionally, the housing is connected to a first connector;

[0019] When the housing is in the second state, the first connector is connected to the base so that the housing is stationary relative to the base under the connection of the first connector.

[0020] Optionally, a rotating component is provided between the base and the housing, and the housing rotates relative to the base via the rotating component;

[0021] The rotating component is connected to one of the base and the housing, and passes through the other of the base and the housing.

[0022] Optionally, the laser engraving machine further includes a protective cover connected to the housing and located on one side of the receiving space; the protective cover is movable relative to the housing and opens or closes the opening of the receiving space.

[0023] Optionally, the shield serves as a light-transmitting component; when the shield closes the opening, the user views the shield and, through the shield, the object within the containment space.

[0024] Optionally, the base is provided with a first electronic component, and the housing is provided with a second electronic component;

[0025] The laser engraving machine also includes a conductive component, which is electrically connected to the first electronic component and the second electronic component. The conductive component is located between the base and the housing and passes through the base or the housing.

[0026] Compared with the prior art, the beneficial effects of this utility model are:

[0027] This utility model provides a laser engraving machine, with a base having a receiving space; a housing connected to the base; a laser engraving component installed on the housing; the laser engraving component includes a first movable base, a second movable base, and a laser module; the first movable base is movably connected to the housing; the first movable base and the second movable base are either X-axis movable bases or Y-axis movable bases; the laser module is connected to the second movable base and moves along the X-axis and Y-axis directions under the action of the first and second movable bases; the laser module is used to engrave objects in the receiving space, so as to realize the movement of the laser module along the X-axis and Y-axis directions, avoiding the laser module being able to move only along the Y-axis direction and not along the X-axis direction, thus improving the flexibility of the laser module of the laser engraving machine. Attached Figure Description

[0028] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0029] To gain a more complete understanding of this application and its beneficial effects, the following description will be provided in conjunction with the accompanying drawings. In the following description, the same reference numerals denote the same parts.

[0030] Figure 1 A schematic diagram of a laser engraving machine according to one embodiment of this application is shown.

[0031] Figure 2 A schematic diagram of another state of a laser engraving machine according to one embodiment of this application is shown.

[0032] Figure 3 A schematic diagram of a laser engraving machine housing housed in a base according to an embodiment of this application is shown.

[0033] Figure 4 An exploded view of a laser engraving machine according to one embodiment of this application is shown.

[0034] Figure 5 An internal schematic diagram of a laser engraving machine according to an embodiment of this application is shown.

[0035] Figure 6 A schematic diagram showing the connection between the protective cover and the base of a laser engraving machine according to an embodiment of this application is shown.

[0036] Figure Labels

[0037] 100. Laser engraving machine;

[0038] 10. Base; 10a. Accommodation space; 11. First electronic component; 12. Support plate; 13. Second connector;

[0039] 20. Housing; 20a. Through hole; 21. First connector; 22. Track; 23. Second electronic component; 24. Docking arm;

[0040] 30. Laser engraving assembly; 31. First movable base; 32. Second movable base; 33. Laser module; 34. First motor; 35. First transmission module; 351. Connecting belt; 352. Driven wheel; 353. Drive wheel;

[0041] 40. Rotating parts;

[0042] 50. Protective cover; 51. Support arm; 52. Warning sign; 521. Warning message;

[0043] 60. Conductive components;

[0044] 70. Elastic components. Detailed Implementation

[0045] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0046] Please refer to the attached document. Figures 1-6 This application provides a laser engraving machine 100, which is used to engrave objects.

[0047] Please refer to the attached document. Figures 1-6In this embodiment, the laser engraving machine 100 includes a base 10, a housing 20, and a laser engraving assembly 30. The base 10 has a receiving space 10a. The housing 20 is connected to the base 10. The laser engraving assembly 30 is installed on the housing 20. The laser engraving assembly 30 includes a first movable seat 31, a second movable seat 32, and a laser module 33. The first movable seat 31 is movably connected to the housing 20. The first movable seat 31 and the second movable seat 32 are either X-axis movable seats or Y-axis movable seats. The laser module 33 is connected to the second movable seat 32 and moves along the X-axis and Y-axis directions under the action of the first movable seat 31 and the second movable seat 32. The laser module 33 is used to engrave the object in the receiving space 10a, so as to realize the movement of the laser module 33 along the X-axis and Y-axis directions, avoiding the laser module 33 being able to move only along the Y-axis direction and not along the X-axis direction, thus improving the flexibility of the laser module 33 of the laser engraving machine 100.

[0048] Please refer to the attached document. Figures 1-6 In this embodiment, the base 10 serves as a support component of the laser engraving machine 100, supporting the housing 20 and the laser engraving assembly 30. The base 10 is provided with a receiving space 10a, which serves as the internal space of the base 10. The receiving space 10a is used to receive the object to be engraved, so that the object to be engraved can be stored inside the base 10 through the receiving space 10a.

[0049] The housing 20 is disposed on the upper side of the base 10 and is connected to the base 10 so that the housing 20 can be fixed on the upper side of the base 10.

[0050] The laser engraving assembly 30 is disposed inside the housing 20 and is mounted on the housing 20. The laser engraving assembly 30 includes a first movable base 31, a second movable base 32, and a laser module 33. The first movable base 31 is movably connected to the housing 20 to facilitate adjustment of the position of the first movable base 31 relative to the housing 20. The first movable base 31 and the second movable base 32 are either X-axis movable bases or Y-axis movable bases. The laser module 33 is connected to the second movable base 32 and moves along the X-axis and Y-axis directions under the action of the first movable base 31 and the second movable base 32. The laser module 33 is used to engrave objects in the accommodating space 10a.

[0051] At this time, when the first movable seat 31 is an X-axis movable seat and the second movable seat 32 is a Y-axis movable seat, the first movable seat 31 is movably connected to the housing 20, the second movable seat 32 is movably connected to the first movable seat 31, and the laser module 33 is connected to the second movable seat 32 and moves along the X-axis and Y-axis directions under the action of the first movable seat 31 and the second movable seat 32. The laser module 33 is used to engrave the object in the accommodating space 10a, so as to realize the movement of the laser module 33 along the X-axis and Y-axis directions, avoiding the laser module 33 being able to move only along the Y-axis direction and not along the X-axis direction, thus improving the flexibility of the laser module 33 of the laser engraving machine 100.

[0052] Alternatively, when the second movable seat 32 is an X-axis movable seat and the first movable seat 31 is a Y-axis movable seat, the second movable seat 32 is movably connected to the housing 20, the first movable seat 31 is movably connected to the second movable seat 32, and the laser module 33 is connected to the first movable seat 31 and moves along the X-axis and Y-axis directions under the action of the first movable seat 31 and the second movable seat 32. The laser module 33 is used to engrave objects in the accommodating space 10a, so as to realize the movement of the laser module 33 along the X-axis and Y-axis directions, avoiding the laser module 33 being able to move only along the Y-axis direction and not along the X-axis direction, thus improving the flexibility of the laser module 33 of the laser engraving machine 100.

[0053] Please refer to the attached document. Figure 5 In this embodiment, the laser engraving assembly 30 further includes a first motor 34 and a first transmission module 35. The first motor 34 is disposed inside the housing 20, and the first movable seat 31 is arranged along the X-axis direction. The fixed end of the first motor 34 is connected to the housing 20, and the first transmission module 35 is connected to the output end of the first motor 34. The connecting belt 351 of the first transmission module 35 is connected to the first movable seat 31 and drives the first movable seat 31 to move, so that the first movable seat 31 can move automatically along the X-axis direction through the cooperation of the first motor 34 and the first transmission module 35, thereby facilitating the adjustment of the position of the first movable seat 31 in the X-axis direction.

[0054] Please refer to the attached document. Figure 5In this embodiment, the first transmission module 35 includes a connecting belt 351, multiple driven wheels 352, and a driving wheel 353. The driving wheel 353 is connected to the output end of the first motor 34 so that the first motor 34 can drive the driving wheel 353 to rotate. The multiple driven wheels 352 are rotatably connected to the housing 20 so as to adjust the position of the multiple driven wheels 352 relative to the housing 20. The multiple driven wheels 352 and the driving wheel 353 are distributed at different positions on the housing 20. The connecting belt 351 is sleeved on the multiple driven wheels 352 and the driving wheel 353 and rotates under the drive of the driving wheel 353. When the first motor 34 starts, the first motor 34 drives the connecting belt 351 to rotate under the driving action of the driving wheel 353 and the multiple driven wheels 352, so as to realize the automatic rotation of the connecting belt 351. When the first moving seat 31 is connected to the connecting belt 351, the first moving seat 31 moves with the rotation of the connecting belt 351. Optionally, the connecting belt 351 is arranged in a concave shape or a U-shape.

[0055] Please refer to the attached document. Figures 1-3 In this embodiment, the housing 20 is rotatably connected to the base 10 and can switch states relative to the base 10. When the housing 20 is in the first state, the housing 20 is housed in the receiving space 10a so that the housing 20 can be stored inside the base 10, thereby reducing the space occupied between the housing 20 and the base 10. When the housing 20 is in the second state, the housing 20 is on one side of the receiving space 10a, realizing the receiving state and unfolded state of the housing 20, improving the housing capacity of the laser engraving machine 100, while maintaining the state of the housing 20 relative to the base 10, ensuring the stability of the laser module 33 in laser engraving objects in the receiving space 10a.

[0056] Please refer to the attached document. Figures 1-3 In this embodiment, the housing 20 is connected to a first connector 21. The first connector 21 is located on the rear side of the housing 20. When the housing 20 is in the second state, the first connector 21 is connected to the base 10 so that the housing 20 can be fixedly connected to the base 10 through the first connector 21. This allows the first connector 21 to limit the position between the housing 20 and the base 10, so that the housing 20 remains stationary relative to the base 10 under the connection of the first connector 21, maintaining the state of the housing 20 relative to the base 10 and ensuring the stability of the laser module 33 in laser engraving the object in the accommodating space 10a.

[0057] The base 10 is provided with a second connector 13, which is located on the inner side of the base 10. The second connector 13 and the first connector 21 are detachably connected, so that the second connector 13 can be connected to or detached from the first connector 21, thereby facilitating the shell 20 to switch states with the base 10 through the cooperation of the second connector 13 and the first connector 21.

[0058] When the second connector 13 is a connecting groove, the second connector 13 is disposed on the side wall of the base 10 opposite to the housing 20, and the first connector 21 faces the second connector 13 so that the first connector 21 and the second connector 13 can be arranged opposite to each other, thereby facilitating the connection between the first connector 21 and the second connector 13.

[0059] The detachable connection structure can be a snap-fit ​​connection structure, a locking connection mechanism, a positioning connection structure, or a limiting connection structure. When the detachable connection structure is a snap-fit ​​connection structure, the second connecting member 13 is a connecting groove, and the first connecting member 21 is a snap-fit ​​member, so that the first connecting member 21 and the second connecting member 13 can be snap-fitted together, and the first connecting member 21 and the second connecting member 13 can be disengaged under the action of external force.

[0060] When the detachable connection structure is a locking connection mechanism, the first connecting member 21 is the first locking member and the second connecting member 13 is the second locking member, so that the first connecting member 21 and the second connecting member 13 can be locked together, and can be disengaged from the second connecting member 13 under the action of external force. When the detachable connection structure is a positioning connection structure, the first connecting member 21 is a positioning part and the second connecting member 13 is a positioning groove, so that the first connecting member 21 and the second connecting member 13 can be positioned together, and can be disengaged from the second connecting member 13 under the action of external force. When the detachable connection structure is a limiting connection structure, the first connecting member 21 is a limiting part and the second connecting member 13 is a limiting groove, so that the first connecting member 21 and the second connecting member 13 can be limited together, and can be disengaged from the second connecting member 13 under the action of external force.

[0061] The first connector 21 is retractably connected to the housing 20 so as to adjust the front and rear distance of the first connector 21 relative to the housing 20. The first connector 21 extends or retracts relative to the housing 20. When the first connector 21 extends relative to the housing 20, the first connector 21 contacts the base 10 and restricts the rotation of the housing 20 relative to the base 10, thus maintaining the state of the housing 20 relative to the base 10.

[0062] When the first connector 21 retracts relative to the housing 20, the first connector 21 disengages from the base 10 so that the housing 20 can rotate relative to the base 10 under the action of external force, thereby facilitating the housing 20 to be housed in the base 10 during rotation, thus reducing the space occupied between the housing 20 and the base 10.

[0063] An elastic element 70 is provided between the first connector 21 and the housing 20. The two ends of the elastic element 70 contact the first connector 21 and the housing 20 respectively, so that the first connector 21 can elastically extend and retract relative to the housing 20, so that the elastic element 70 can apply an elastic force to the first connector 21. When there is no external force, the first connector 21 is always in an extended state relative to the housing 20. When the first connector 21 is compressed under the action of external force, it is in a retracted state relative to the housing 20.

[0064] The first connector 21 is rotatably connected to the housing 20 to facilitate adjustment of the position of the first connector 21 relative to the housing 20. The first connector 21 rotates relative to the housing 20. When the first connector 21 rotates relative to the housing 20, the first connector 21 contacts the base 10 and restricts the rotation of the housing 20 relative to the base 10, so that the housing 20 can be stationary relative to the base 10 through the first connector 21, thereby facilitating the adjustment of the rotation position of the first connector 21 to achieve state switching of the housing 20 relative to the base 10.

[0065] Please refer to the attached document. Figures 1-3 In this embodiment, a rotating member 40 is provided between the base 10 and the housing 20. The housing 20 rotates relative to the base 10 via the rotating member 40. The rotating member 40 is connected to one of the base 10 and the housing 20, and passes through the other. The housing 20 rotates along the axis of the rotating member 40 to adjust its position relative to the base 10. The housing can be housed within the base 10, allowing it to fully utilize the accommodating space 10a of the base 10, thereby reducing the space occupied between the housing 20 and the base 10. Optionally, the rotating member 40 is a rotating shaft.

[0066] Please refer to the attached document. Figures 1-2 In this embodiment, the laser engraving machine 100 further includes a protective cover 50, which is connected to the housing 20 and located on one side of the receiving space 10a. The protective cover 50 is movable relative to the housing 20 to adjust its position relative to the housing 20 and to open or close the opening of the receiving space 10a. The protective cover 50 serves as a light-transmitting component. When the protective cover 50 closes its opening, the user can view the protective cover 50 and view the object in the receiving space 10a through it. When the protective cover 50 opens its opening, the user can place or remove the object relative to the receiving space 10a. This allows the user to view or remove the object from the receiving space 10a through the protective cover 50, preventing the protective cover 50 from being fixed relative to the housing 20 and unable to move, thus improving the convenience of placing or removing objects with the laser engraving machine 100.

[0067] Please refer to the attached document. Figures 1-2The protective cover 50 is located on the outside of the housing 20 and is vertically connected to the housing 20 to adjust its height relative to the housing 20. This allows the protective cover 50 to open or close the opening of the receiving space 10a during lifting and lowering. When the protective cover 50 rises relative to the housing 20, it opens the opening of the receiving space 10a, allowing the user to easily place and retrieve objects within the receiving space 10a, thus improving the convenience of object handling by the laser engraving machine 100. When the protective cover 50 descends relative to the housing 20, it closes the opening of the receiving space 10a, allowing the user to view the objects within the receiving space 10a through the protective cover 50.

[0068] Please refer to the attached document. Figures 1-2 The housing 20 is connected to a track 22, which is located between the housing 20 and the cover 50. The track 22 is arranged in the vertical direction. The cover 50 is inserted into the track 22 and moves up and down along the track 22 so that the cover 50 can move up and down relative to the housing 20 via the track 22.

[0069] At this time, there are two tracks 22, which are arranged at intervals along the width direction of the housing 20. The two sides of the protective cover 50 are respectively inserted into the two tracks 22, which ensures the smoothness of the lifting and lowering of the protective cover 50 relative to the housing 20. At the same time, the protective cover 50 is lifted and lowered relative to the housing 20 under the guidance of the tracks 22, which improves the smoothness of the lifting and lowering of the protective cover 50 relative to the housing 20.

[0070] The protective cover 50 is provided with a support arm 51, which protrudes from the protective cover 50 toward the track 22. The outer contour of the support arm 51 is fitted with the inner contour of the track groove of the track 22 with a clearance. The support arm 51 is inserted into the track groove of the track 22 and moves up and down in the track groove to adjust the position of the support arm 51 relative to the track groove of the track 22. This allows the protective cover 50 to move up and down relative to the track 22 through the support arm 51 and the track groove of the track 22.

[0071] The top of the housing 20 is provided with a resting arm 24. When the cover 50 rises relative to the housing 20, the cover 50 gradually approaches the resting arm 24 and rests against it. This allows the resting arm 24 to limit the rising height of the cover 50, preventing it from detaching from the housing 20 during the rising process. Simultaneously, when the cover 50 contacts the resting arm 24, it remains fixed relative to the housing 20, ensuring that the opening 10b is always open and preventing the cover 50 from needing to remain open relative to the opening 10b under external force. Optionally, the arm 51 and the resting arm 24 are magnetically connected.

[0072] The protective cover 50 is connected to a warning sign 52, which is located on the outside of the protective cover 50. The warning sign 52 rises and falls with the protective cover 50 to adjust its position relative to the housing 20. The warning sign 52 is provided with warning information 521, which is exposed to the external environment. This warning information 521 is for users to view so that users can clearly observe the usage status of the component 100 by viewing the warning information 521, thus preventing users from accidentally touching the laser model in the activated state.

[0073] A support plate 12 is connected to the base 10. The support plate 12 is detachably connected to the base 10 and assembled along the front-rear direction of the base 10. This allows the support plate 12 to be connected to or detached from the base 10. When the support plate 12 is connected to the base 10, it is located within the receiving space 10a and supports objects within the receiving space 10a. This allows objects within the receiving space 10a to be fixed to the base 10 via the support plate 12. A housing 20 is rotatably connected to the base 10 to adjust the position of the housing 20 relative to the base 10. When the support plate 12 is detached from the base 10, the housing 20 rotates relative to the base 10 and can be accommodated within the receiving space 10a, thereby reducing the space occupied between the housing 20 and the base 10.

[0074] Please refer to the attached document. Figures 1-5 In this embodiment, the base 10 is provided with a first electronic component 11, and the housing 20 is provided with a second electronic component 23. The laser engraving machine 100 also includes a conductive component 60, which is electrically connected to the first electronic component 11 and the second electronic component 23 so that the conductive component 60 can be energized with the first electronic component 11 and the second electronic component 23. The conductive component 60 is located between the base 10 and the housing 20 and passes through the base 10 or the housing 20. When the housing 20 rotates relative to the base 10, the conductive component 60 passes through the base 10 or the housing 20 and is located at different positions within the base 10 or the housing 20, which avoids the pulling and damage of the conductive component 60 and ensures the stability of the electrical connection between the first electronic component 11 and the second electronic component 23.

[0075] Please refer to the attached document. Figure 3The housing 20 is provided with a through hole 20a, through which the conductive component 60 passes and is positioned at different locations within the through hole 20a. This allows for movement between the conductive component 60 and the through hole 20a, ensuring that the conductive component 60 remains within the through hole 20a even as the housing 20 rotates. This prevents the conductive component 60 from being pulled or damaged, thus ensuring the stability of the electrical connection between the first electronic component 11 and the second electronic component 23. Optionally, the conductive component 60 can be a conductive wire, a flexible circuit board, or a flexible conductive part; the first electronic component 11 can be at least one of a circuit board, a cooling fan, a controller, a power supply, or a laser; and the second electronic component 23 can be at least one of a circuit board, a cooling fan, a controller, a power supply, or a laser.

[0076] Compared with the prior art, the beneficial effects of this utility model are:

[0077] This utility model provides a laser engraving machine 100, with a base 10 having a receiving space 10a; a housing 20 connected to the base 10; and a laser engraving assembly 30 installed on the housing 20. The laser engraving assembly 30 includes a first movable seat 31, a second movable seat 32, and a laser module 33. The first movable seat 31 is movably connected to the housing 20. The first movable seat 31 and the second movable seat 32 are either X-axis movable seats or Y-axis movable seats to each other. The laser module 33 is connected to the second movable seat 32 and moves along the X-axis and Y-axis directions under the action of the first movable seat 31 and the second movable seat 32. The laser module 33 is used to engrave objects in the receiving space 10a, so as to realize the movement of the laser module 33 along the X-axis and Y-axis directions, avoiding the situation where the laser module 33 can only move along the Y-axis direction but cannot move along the X-axis direction, thus improving the flexibility of the laser module 33 of the laser engraving machine 100.

[0078] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0079] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more features.

[0080] This document uses specific examples to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the methods and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A laser engraving machine, characterized in that, The laser engraving machine, used for engraving objects, includes: The base has a storage space. The housing is connected to the base; A laser engraving assembly is installed on the housing; the laser engraving assembly includes a first movable base, a second movable base, and a laser module; the first movable base is movably connected to the housing; the first movable base and the second movable base are either X-axis movable bases or Y-axis movable bases; the laser module is connected to the second movable base and moves along the X-axis and Y-axis directions under the action of the first movable base and the second movable base; the laser module is used to engrave objects located in the receiving space.

2. The laser engraving machine according to claim 1, characterized in that, The laser engraving assembly also includes a first motor and a first transmission module; The fixed end of the first motor is connected to the housing, and the first transmission module is connected to the output end of the first motor; The connecting belt of the first transmission module is connected to the first movable seat and drives the first movable seat to move.

3. The laser engraving machine according to claim 2, characterized in that, The first transmission module includes a connecting belt, multiple driven pulleys, and a driving pulley; The drive wheel is connected to the output end of the first motor; The plurality of driven wheels are rotatably connected to the housing and are distributed at different positions on the housing along with the driving wheel; The connecting belt is sleeved on the multiple driven wheels and the driving wheel, and rotates under the drive of the driving wheel.

4. The laser engraving machine according to claim 3, characterized in that, The connecting strip is arranged in a concave or zigzag shape.

5. The laser engraving machine according to claim 1, characterized in that, The housing is rotatably connected to the base and can switch states relative to the base; when the housing is in the first state, the housing is housed in the receiving space; When the housing is in the second state, the housing is located on one side of the accommodating space.

6. The laser engraving machine according to claim 5, characterized in that, The housing is connected to a first connector; When the housing is in the second state, the first connector is connected to the base so that the housing is stationary relative to the base under the connection of the first connector.

7. The laser engraving machine according to claim 5, characterized in that, A rotating component is provided between the base and the housing, and the housing rotates relative to the base via the rotating component; The rotating component is connected to one of the base and the housing, and passes through the other of the base and the housing.

8. The laser engraving machine according to any one of claims 1 to 7, characterized in that, The laser engraving machine also includes a protective cover, which is connected to the housing and located on one side of the receiving space; the protective cover is movable relative to the housing and opens or closes the opening of the receiving space.

9. The laser engraving machine according to claim 8, characterized in that, The shield serves as a light-transmitting component; when the shield closes the opening, the user can view the shield and see the object within the containment space through it.

10. The laser engraving machine according to any one of claims 1 to 7, characterized in that, The base is provided with a first electronic component, and the housing is provided with a second electronic component; The laser engraving machine also includes a conductive component, which is electrically connected to the first electronic component and the second electronic component. The conductive component is located between the base and the housing and passes through the base or the housing.