Laser engraving and cutting machine with quick release and double mirror car
By adopting a quick-release dual-mirror carriage design, the structure and optical path of the laser cutting machine are simplified, enabling the laser cutting machine to be miniaturized and cost-effective. This solves the problem of low laser switching efficiency and improves work efficiency and maintenance convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- XINGYUN COMP
- Filing Date
- 2022-01-10
- Publication Date
- 2026-04-28
AI Technical Summary
Existing laser cutting machines require multiple laser tubes and complex optical path designs, resulting in large machine size, high cost, and inconvenient maintenance, and making it difficult to efficiently switch between different wavelengths of laser output.
It adopts a quick-release dual-mirror carriage design, with different laser tubes installed on the first and second mirror carriage seats respectively. The laser output can be flexibly switched by using the track and connecting components, simplifying the optical path design.
It enables miniaturization, low cost, and efficient switching of different laser wavelengths in laser cutting machines, simplifying installation and maintenance processes and improving work efficiency.
Smart Images

Figure CN116441740B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a laser engraving and cutting machine with quick disassembly and double mirror car, which has simple structure, low cost and can simultaneously have different watt laser light output. BACKGROUND
[0002] Due to the basic principle of general laser processing machine, the light beam output by the laser is guided and focused to the surface of the engraved object. The focused light beam is absorbed by the material, the temperature rises suddenly and gasifies, so that the surface of the object is concave, and the purpose of engraving and cutting is achieved.
[0003] The currently used laser cutting machine must first place the workpiece at a fixed point before cutting, and then the laser tube emits laser light, which enters the X / Y platform laser output module or the three-axis mirror head laser output module, and completes the required cutting action through computer control travel. Therefore, the current machine design is divided into X / Y platform laser output module or three-axis mirror head laser output module mode for consumers to choose to purchase.
[0004] However, regardless of which mode of the above-mentioned machine, the laser tube is arranged in the machine, and then the laser light is guided to the output module on the workbench through the arrangement of the light path. If different wavelengths of laser output are needed, the machine must be equipped with two laser tubes, and two light path designs or a switching device must be used to switch different wavelengths of laser light, so that different wavelengths of laser output can be performed on the same machine. SUMMARY
[0005] However, the above-mentioned machine design needs to accommodate several laser tubes, which inevitably increases the size of the machine, and increases the design planning of the light path or the demand for switching devices. Not only does it increase the cost of the machine, but also increases the complexity of the overall system. Whether in terms of efficiency or maintenance after use, there is not much benefit in improvement. Therefore, how to effectively improve it is the ardent expectation of technicians and users in this field.
[0006] The main purpose of the present application is to provide a laser engraving and cutting machine with quick disassembly and double mirror car, which has simple structure, low cost and can simultaneously have different watt laser light output.
[0007] To achieve the above-mentioned purpose, the laser engraving and cutting machine with quick release and double mirror car of the present application comprises a machine table, a first mirror car seat and a second mirror car seat, wherein the machine table has a work platform for placing workpieces thereon, and the machine table is provided with a track on the work platform, and the machine table is further provided with a first laser tube and a light path; the first mirror car seat is installed on the track, wherein the first mirror car seat receives the laser light emitted by the first laser tube through the light path, so that the first mirror car seat can perform laser processing on the workpieces on the work platform when moving back and forth on the track; the second mirror car seat is composed of a second laser tube assembled with an output module, wherein the output module is provided with a first connecting part and a second connecting part, the first connecting part is movably connected with the track, so that the second mirror car seat can move on the track, and the second connecting part can be movably connected with the first mirror car seat, so that the second mirror car seat can independently or synchronously with the first mirror car seat perform laser light output on the work platform.
[0008] In implementation, the laser light of the second laser tube and the first laser tube is different in wavelength.
[0009] In implementation, the first connecting part of the output module is a roller set, so that it can move on the track after being engaged with the track.
[0010] In implementation, the second connecting part is a connector, and the first mirror car seat is provided with a connecting interface corresponding to the position of the second connecting part, so that after the connector is connected with the connecting interface, the first mirror car seat can drive the second mirror car seat to move on the track.
[0011] For further understanding of the present application, the following preferred embodiments are described in detail below, together with the drawings, figure numbers, the specific structure of the present application and the effects achieved are described as follows. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a schematic diagram of the three-dimensional appearance of the machine table in the embodiment of the present application;
[0013] Figure 2 It is a connection architecture diagram of the first mirror car seat and the first laser tube in the embodiment of the present application;
[0014] Figure 3 It is a schematic diagram of the appearance of the first mirror car seat and the second mirror car seat combined in the track in the embodiment of the present application;
[0015] Figure 4 It is a schematic diagram of the state of the first mirror car seat and the second mirror car seat when they are separated in the embodiment of the present application;
[0016] Figure 5 It is a schematic diagram of the appearance of the second mirror car seat from another angle in the embodiment of the present application.
[0017] Explanation of reference numerals in the attached figures
[0018] 1: Machine
[0019] 11: Work Platform
[0020] 12: Track
[0021] 13: First laser tube
[0022] 14: Optical Path
[0023] 2: First mirror car seat
[0024] 21: Connection Interface
[0025] 3: Second mirror seat
[0026] 31: Second laser tube
[0027] 32: Output Module
[0028] 321: First joint
[0029] 322: Second joint
[0030] 4: Machined parts Detailed Implementation
[0031] Please see Figures 1-5 This is an embodiment of a laser engraving and cutting machine with quick-release and double mirror carriages according to the present invention. It consists of a machine base 1 and a first mirror carriage seat 2 and a second mirror carriage seat 3 mounted on the machine base 1.
[0032] like Figure 1 , Figure 2 As shown, the machine tool 1 has a work platform 11 on which the workpiece 4 is placed, and a track 12 is mounted on the work platform 11. The machine tool 1 is also equipped with a first laser tube 13 and an optical path 14.
[0033] The first mirror mount 2 is mounted on the aforementioned track 12, wherein the first mirror mount 2 receives the laser light emitted by the first laser tube 13 through the aforementioned optical path 14 (e.g., Figure 2 As shown), when the first mirror carriage 2 moves back and forth on the track 12, it can perform laser processing on the workpiece 4 on the work platform 11.
[0034] like Figures 3-5As shown, the second mirror carriage 3 is assembled by a second laser tube 31 and an output module 32. The second laser tube 31 has a different laser wavelength from the first laser tube 13, and the wattage of the second laser tube 31 is lower than that of the first laser tube 13. The output module 32 is provided with a first coupling part 321 and a second coupling part 322. The first coupling part 321 of the output module 32 is a roller set, which is movably coupled with the track 12. When the second mirror carriage 3 is engaged with the track 12, the second mirror carriage 3 can move on the track 12. The second coupling part 322 is a connector, which is movably coupled with the first mirror carriage 2. The first mirror carriage 2 is provided with a connecting interface 21 corresponding to the position of the second coupling part 322. When the connector (second coupling part 322) is connected with the connecting interface 21, the first mirror carriage 2 can drive the second mirror carriage 3 to move on the track 12. Thus, the second mirror carriage 3 can independently or synchronously with the first mirror carriage 2 perform laser output on the working platform 11. Figure 1
[0035] Therefore, when the second mirror carriage 3 is slidably moved on the track 12 through the first coupling part 321 (i.e. the roller set), and engaged with the connecting interface 21 of the first mirror carriage 2 through the second coupling part 322, when the laser working operation is performed, the second mirror carriage 3 can synchronously move with the first mirror carriage 2, and perform different laser wavelength output for engraving or cutting operation.
[0036] Therefore, when the second mirror carriage 3 is slidably moved on the track 12 through the first coupling part 321 (i.e. the roller set), and engaged with the connecting interface 21 of the first mirror carriage 2 through the second coupling part 322, when the laser working operation is performed, the second mirror carriage 3 can synchronously move with the first mirror carriage 2, and perform different laser wavelength output for engraving or cutting operation.
[0037] 1. The second mirror carriage and the second laser tube loaded thereon are movably coupled with the first mirror carriage. The double mirror carriage design can simultaneously or individually perform different laser wavelength output on the working platform. Without changing the existing structure of the machine, other laser tubes and optical path structures are not required. Two laser outputs can be formed on the track without switching, which greatly improves the working efficiency.
[0038] 2. The second mirror carriage is coupled with the first mirror carriage through simple coupling design (such as clamping, magnetic attraction or locking). The installer does not need to spend too much time, and the installation and subsequent maintenance are very convenient.
[0039] 3. The second mirror carriage can be replaced with the second laser tube according to different processing requirements, so as to achieve different wattage laser output.
[0040] The above are specific embodiments of the present application and the technical means used. Many changes and modifications can be derived from the disclosure or teaching herein, and equivalent changes made in the spirit of the present application, which produce effects still within the spirit of the present application as covered by the specification and drawings, should be considered within the technical scope of the present application. It is hereby declared.
[0041] In summary, the present application can achieve the intended purpose of the invention, providing a laser engraving and cutting machine with a quick release and double mirror car, which is extremely practical and valuable for industrial use. An invention patent application is hereby proposed.
Claims
1. A laser engraving and cutting machine with a quick-release mechanism and a dual-mirror carriage, comprising: The machine tool has a work platform on which the workpiece is placed, and a track is mounted on the work platform. The machine tool is also equipped with a first laser tube and an optical path. The first mirror carriage is mounted on the aforementioned track. The first mirror carriage receives the laser light emitted by the first laser tube through the aforementioned optical path, so that when the first mirror carriage moves back and forth on the track, it can perform laser processing on the workpiece on the work platform. The second mirror carriage is formed by assembling the second laser tube after the output module. The output module has a first connecting part and a second connecting part. The first connecting part is movably connected to the track so that the second mirror carriage can be displaced on the track. The second connecting part is movably connected to the first mirror carriage so that the second mirror carriage can output laser light independently or synchronously with the first mirror carriage on the working platform.
2. The laser engraving and cutting machine with quick-release and dual-mirror carriage as described in claim 1, wherein the laser light from the second laser tube and the first laser tube have different laser light wavelengths.
3. The laser engraving and cutting machine with quick-release and dual-mirror carriage as described in claim 1, wherein the first connecting part of the output module is a roller assembly, so that after being engaged with the track, it can be moved movably on the track.
4. The laser engraving and cutting machine with quick-release and double mirror carriages according to claim 1, wherein the second joint is a connector, and the first mirror carriage seat is provided with a connection interface corresponding to the position of the second joint, so that after the connector is connected to the connection interface, the first mirror carriage seat can drive the second mirror carriage seat to move on the track.
Citation Information
Patent Citations
Double-head moving type laser cutting machine
CN101036959A
Laser cutting device each other is moved to double -end
CN208162872U