A quick release device for a laser module
By designing a quick-release device for laser modules, the problem of cumbersome installation of existing laser modules is solved by using connectors and mating parts for rapid connection and disassembly. This enables rapid assembly and disassembly and position adjustment, improving installation efficiency and applicability.
Patent Information
- Application Number
- CN202211268639.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-17
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2042-10-17
AI Technical Summary
Existing laser module installation structures are cumbersome, require specialized tools, and are difficult to install and remove quickly, failing to meet the rapid replacement needs of different production environments.
Design a quick-release device for laser modules. By setting up connectors and mating parts, and utilizing magnetic components and connectors for quick connection and disassembly, the laser module can be quickly connected and disassembled.
It improves installation and disassembly efficiency, simplifies operation procedures, enhances the applicability and adjustability of the device, and enables rapid assembly, disassembly, and position adjustment of the laser module.
Smart Images

Figure CN115585354B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of quick-release device technology, and specifically to a quick-release device for a laser module. Background Technology
[0002] In industrial production, laser modules consist of laser tubes and laser head modules. They are industrial components used for pointing and positioning in laser gun aiming, laser rakes, instruments, flashlights, etc. Due to their advantages such as higher mechanical strength, ease of installation, anti-interference, and resistance to damage, they are currently widely used in security, construction layout, and product testing in industrial production.
[0003] When installing laser modules, most existing installation structures use screw fastening to fix the laser modules, which requires the use of screwdrivers and other installation tools on site. The installation is cumbersome, time-consuming, and requires professional installers, causing great inconvenience to customers. At the same time, different application scenarios require timely replacement of laser modules of different specifications to meet the production requirements of different production environments. The existing installation structures can no longer meet the production requirements of quick disassembly and quick installation of laser modules.
[0004] Therefore, in order to achieve quick assembly and disassembly of laser modules in production, it is urgent to design a quick assembly and disassembly device for laser modules so that users can quickly separate or connect to the object, thereby solving the problems existing in the above-mentioned technologies. Summary of the Invention
[0005] To address the aforementioned problems, this invention aims to provide a quick-release device for laser modules. This device, through the arrangement of plug-in parts and mating parts, allows the plug-in parts to be installed on the connector and the mating parts to be installed on the laser module during use. The quick connection and disassembly of the plug-in parts and mating parts enable the quick connection and disassembly of the connector and the laser module. It features simple and convenient use, high assembly and disassembly efficiency, and simple structure.
[0006] To achieve the above objectives, the technical solution adopted by the present invention is as follows:
[0007] A quick-release device for a laser module includes a mounting base plate, a connector, a mating component, and a magnetic component and a plug-in component disposed on the connector, wherein...
[0008] The mounting base plate is set on the laser module positioning workpiece;
[0009] The connector is movably mounted on the mounting base plate via a positioning bolt;
[0010] Both the magnetic component and the plug-in component are mounted on the connector and are used in conjunction with the laser module;
[0011] The mating component is mounted on the laser module and is used in conjunction with the plug-in component.
[0012] Preferably, the connector is detachably mounted on the connector and includes a connector body, a positioning element, a release mechanism, and a reset mechanism.
[0013] The connector body is a columnar plug, and a connector positioning groove, a positioning component mounting groove and a reset mechanism mounting groove are provided on the connector body. The connector positioning groove is located at the center of the connector body and is arranged along the length of the connector body. The positioning component mounting groove is arranged along the radial direction of the connector body and is connected to the connector positioning groove. The reset mechanism mounting groove is located at the rear end of the connector body and is connected to the connector positioning groove.
[0014] The positioning element is movably installed in the positioning element mounting slot and is used in conjunction with the mating element;
[0015] Both the release mechanism and the reset mechanism are movably mounted in the reset mechanism mounting slot.
[0016] Preferably, the positioning element is movably mounted in the positioning element mounting groove via a positioning element mounting clamp, and includes two symmetrically arranged movable clamps and a first buffer spring.
[0017] The movable locking component includes an integrally formed spherical locking block and a telescopic locking rod, wherein the telescopic locking rod is located at the rear end of the spherical locking block, and the spherical locking block is used in conjunction with a mating component;
[0018] The first buffer spring is disposed between two symmetrically arranged telescopic levers, and a limit block is also provided on the end side wall of the positioning component mounting groove. The limit block is used in conjunction with the spherical block.
[0019] Preferably, the release mechanism includes a locking element, a linkage element, and a linkage element return spring, wherein...
[0020] The locking component is mounted in the body of the connector via a coupling, and a locking block is provided at the front end of the locking component to cooperate with the mating component.
[0021] The linkage component is mounted on the connector body via a linkage component reset spring and is connected to the locking component via a pin.
[0022] Furthermore, the locking component is also provided with a movable clearance groove and a connecting shaft through hole. The movable clearance groove is used in conjunction with the pin, and the connecting shaft through hole is used in conjunction with the connecting shaft.
[0023] Preferably, the reset mechanism is disposed on the side wall of the reset mechanism mounting slot and is used in conjunction with the release mechanism, including a push plate and a push plate reset spring.
[0024] The push plate reset spring is fixedly mounted on the side wall of the reset mechanism mounting slot;
[0025] The push plate is located at the other end of the push plate reset spring and is used in conjunction with the mating component.
[0026] Preferably, the mating component is located on the rear side of the laser module and includes an outer sleeve, an inner connector, and a positioning connector.
[0027] The outer sleeve is a frustum-shaped sleeve, and a sealing mounting sleeve is provided on the outer sleeve. The sealing mounting sleeve is used in conjunction with the mounting hole on the laser module.
[0028] The inner connector is fixedly installed inside the outer kit, and at least one limiting hole is provided inside the inner connector, which is used in conjunction with the spherical locking block;
[0029] The positioning connector includes an integrally formed positioning rod and a tail pressure plate. The tail pressure plate is used in conjunction with the tail baffle of the inner connector. The positioning rod passes through the tail baffle set on the connector and is used in conjunction with the plug-in component.
[0030] Preferably, the positioning rod is further provided with a one-way locking hole and a circular pressure plate.
[0031] The one-way locking holes are symmetrically arranged on the positioning rod and are used in conjunction with the release mechanism at the front end of the locking component;
[0032] The pressure plate is located at the free end of the positioning rod and is used in conjunction with the reset mechanism.
[0033] Preferably, the inner connector is provided with a clearance groove and at least one first limiting ring. The clearance groove is provided at the end of the inner connector and is used in conjunction with a positioning ring provided at the end of the outer sleeve. The first limiting ring is provided on the outside of the inner connector and is used in conjunction with a first ring groove provided on the inside of the outer sleeve.
[0034] The tail baffle of the inner connector is also provided with a second annular groove, which is used in conjunction with a second limiting ring provided on the tail pressure plate.
[0035] Preferably, the connector includes an L-shaped mounting member and a T-shaped mounting member that cooperate with each other.
[0036] The L-shaped mounting component is used in conjunction with the mounting base plate, and a trapezoidal groove and a bolt mounting hole are provided on one vertical plate of the L-shaped mounting component. The trapezoidal groove is used in conjunction with a trapezoidal slider provided on the mounting base plate, and the bolt mounting hole is provided on the rear side of the trapezoidal groove and is used in conjunction with a positioning bolt.
[0037] The T-shaped mounting component is installed at the lower end of the L-shaped mounting component via a double-headed bolt, and the T-shaped mounting component is provided with a positioning bolt hole for use with a plug-in component.
[0038] Preferably, the T-shaped mounting member is provided with at least one first plug plate, which is used in conjunction with a second plug plate provided on the L-shaped mounting member, and both the first and second plug plates are provided with clearance adjustment grooves, which are used in conjunction with double-headed bolts.
[0039] The beneficial effects of this invention are: This invention discloses a quick-release device for laser modules. Compared with the prior art, the improvement of this invention lies in:
[0040] 1. This invention designs a quick-release device for laser modules, including a mounting base plate, a connector, a mating part, and a magnetic part and a plug-in part set on the connector. In use, the plug-in part is installed on the connector, and the mating part is installed on the laser module. The quick connection and disassembly of the plug-in part and the mating part are used to complete the quick connection and disassembly of the connector and the laser module, which effectively improves the work efficiency of workers during installation and disassembly. It has the advantages of being simple and convenient to use, having high disassembly and assembly efficiency, and having a simple structure.
[0041] 2. This device, through the design of an adjustable mounting base plate and connectors, as well as connectors that can adjust the relative front and rear positions, can adjust the installation position of the laser module to a certain extent, thereby improving the applicability and adjustment function of the device.
[0042] 3. This device incorporates positioning, release, and reset mechanisms on the connector, enabling automatic locking and simultaneous ejection of the mating parts during use. This allows for rapid installation and disassembly of the connector and mating parts. Furthermore, all of these structures are located within the connector body and internal connector, resulting in an aesthetically pleasing and safe device. Attached Figure Description
[0043] Figure 1 This is a diagram showing the effect of installing the laser module of the present invention.
[0044] Figure 2 This is a schematic diagram of the structure of the quick-release device for the laser module of the present invention.
[0045] Figure 3 This is a sectional view of the connector of the present invention from a side angle.
[0046] Figure 4 This is a schematic diagram of the connector structure of the present invention.
[0047] Figure 5 This is a cross-sectional view of the connector of the present invention.
[0048] Figure 6 This is a partial enlarged view of connector A of the present invention.
[0049] Figure 7 This is a partial enlarged view of connector B of the present invention.
[0050] Figure 8 This is an exploded view of the release mechanism of the present invention.
[0051] Figure 9 This is a schematic diagram of the structure of the mating component of the present invention.
[0052] Figure 10 This is an exploded view of the mating parts of the present invention from a cross-sectional perspective.
[0053] Figure 11 This is a schematic diagram of the positioning connector of the present invention.
[0054] The components include: 1. Laser module, 2. Mounting base plate, 21. Trapezoidal slider, 3. Connector, 31. L-shaped mounting piece, 311. Trapezoidal slide groove, 312. Second insertion plate, 32. T-shaped mounting piece, 321. First insertion plate, 322. Positioning bolt hole, 33. Relief adjustment groove, 34. Double-headed bolt, 4. Positioning bolt, 5. Magnetic component, 6. Insertion piece, 61. Insertion piece body, 611. Insertion positioning groove, 612. Positioning piece mounting groove, 613. Reset mechanism mounting groove, 614. Positioning column, 615. Positioning nut, 616. Limiting block, 617. Coupling shaft, 62. Pin hole, 63. Positioning piece, 631. Spherical block, 632. Telescopic rod, 64. Positioning piece mounting pressure piece, 65. Locking piece, 651. Locking block, 65 2. Movable clearance groove, 653. Through hole for connecting shaft, 66. Linkage component, 661. Pin, 67. Linkage component return spring, 68. First buffer spring, 69. Push plate, 60. Push plate return spring, 7. Mating component, 71. Outer sleeve, 711. First annular groove, 712. Positioning ring, 72. Inner connecting component, 721. Clearance groove, 722. First limiting ring, 723. Limiting hole, 724. Second annular groove, 73. Positioning connecting component, 731. Tail pressure plate, 732. Second limiting ring, 733. Positioning rod, 734. One-way locking hole, 735. Pressure table. Detailed Implementation
[0055] To enable those skilled in the art to better understand the technical solutions of the present invention, the technical solutions of the present invention will be further described below in conjunction with the accompanying drawings and embodiments.
[0056] Example 1: Refer to Appendix Figure 1-11 The laser module quick-release device shown includes a mounting base plate 2, a connector 3, a mating part 7, and a magnetic part 5 and a plug-in part 6 disposed on the connector 3, wherein...
[0057] The mounting base plate 2 is a mounting steel plate, which is fixedly mounted on the laser module positioning workpiece by connecting bolts;
[0058] The connector 3 is movably mounted on the mounting base plate 2 via the positioning bolt 4, and is used to fix the plug-in 6;
[0059] The magnetic component 5 and the plug-in component 6 are symmetrically installed at the front end of the connector 3 for fixing the laser module 1.
[0060] The mating part 7 is disposed on the laser module 1 and is used in conjunction with the plug-in part 6 to quickly disassemble the laser module 1.
[0061] Preferably, to facilitate adjustment of the front and rear positions of the laser module 1 after installation, the connector 3 is designed to include an L-shaped mounting part 31 and a T-shaped mounting part 32 that cooperate with each other, wherein...
[0062] The L-shaped mounting component 31 is used in conjunction with the mounting base plate 2. A trapezoidal slide groove 311 and a bolt mounting hole are provided on one vertical plate of the L-shaped mounting component 31. The trapezoidal slide groove 311 is used in conjunction with the trapezoidal slider 21 provided on the mounting base plate 2. The bolt mounting hole is located on the rear side of the trapezoidal slide groove 311 and is used in conjunction with the positioning bolt 4. That is, in use, the trapezoidal slider 21 is engaged in the trapezoidal slide groove 311 to complete the sliding connection between the connector 3 and the mounting base plate 2. At the same time, the positioning bolt 4 is bolted to the connector 3. In use, by rotating the positioning bolt 4, the connector 3 is pressed tightly against the trapezoidal slider 21 to achieve the fixation of the connector 3 in a symmetrical position relative to the mounting base plate 2.
[0063] The T-shaped mounting member 32 is installed at the lower end of the L-shaped mounting member 31 by a double-headed bolt member 34, and a positioning bolt hole 322 is provided on the T-shaped mounting member 32 to cooperate with the plug member 6 to install the plug member 6 on the T-shaped mounting member 32.
[0064] Preferably, the T-shaped mounting member 32 is provided with at least one first plug-in plate 321. The first plug-in plate 321 is used in conjunction with a second plug-in plate 312 provided on the L-shaped mounting member 31. Both the first plug-in plate 321 and the second plug-in plate 312 are provided with clearance adjustment grooves 33. The clearance adjustment grooves 33 are used in conjunction with double-headed bolts 34. That is, in use, the double-headed bolts 34 are used to connect the L-shaped mounting member 31 and the T-shaped mounting member 32 to form a connector 3. The relative insertion depth of the first plug-in plate 321 and the second plug-in plate 312 is adjusted by adjusting the double-headed bolts 34 to adjust the waist length of the connector 3, so as to adjust the front and rear positions of the laser module 1 after installation.
[0065] Preferably, the connector 6 is detachably mounted on the connector 3, and includes a connector body 61, a positioning member 63, a release mechanism, and a reset mechanism, wherein...
[0066] The connector body 61 is a cylindrical plug, and a connector positioning groove 611, a positioning component mounting groove 612, and a reset mechanism mounting groove 613 are provided on the connector body 61. The connector positioning groove 611 is located at the center of the connector body 61 and is arranged along the length of the connector body 61. The positioning component mounting groove 612 is arranged along the radial direction of the connector body 61 and communicates with the connector positioning groove 611. The reset mechanism mounting groove 613 is located at the rear end of the connector body 61 and communicates with the connector positioning groove 611.
[0067] The positioning component 63 is movably installed in the positioning component mounting slot 612 and is used in conjunction with the mating component 7 during installation to achieve rapid installation of the laser module 1.
[0068] Both the release mechanism and the reset mechanism are movably installed in the reset mechanism mounting slot 613, and are used in conjunction with the mating part 7 during disassembly to achieve rapid disassembly of the laser module 1.
[0069] Preferably, to facilitate the installation of the connector body 61 on the T-shaped mounting bracket 32 and achieve a detachable connection between the connector 6 and the connector 3, four symmetrically arranged positioning posts 614 are provided at the tail end of the connector body 61. The positioning posts 614 cooperate with the positioning bolt holes 322, and positioning nuts 615 are provided on the positioning posts 614. In use, the positioning posts 614 are passed through the positioning bolt holes 322, and the positioning nuts 615 are used to fix the connector body 61 on the T-shaped mounting bracket 32, thus completing the detachable connection between the connector 6 and the connector 3. At the same time, by adjusting the position of the positioning nuts 615 on the positioning posts 614 and by adding external shims, it is ensured that the installed connector 6 is absolutely perpendicular to the T-shaped mounting bracket 32.
[0070] Preferably, the positioning element 63 is movably installed in the positioning element mounting groove 612 via the positioning element mounting clamp 64. To facilitate use and quick locking of the mating element 7, the positioning element 63 is designed to include two symmetrically arranged movable locking elements and a first buffer spring 68. Each movable locking element includes an integrally formed spherical locking block 631 and a telescopic locking rod 632. The telescopic locking rod 632 is located at the rear end of the spherical locking block 631, and the end face of the spherical locking block 631 is spherical and works in conjunction with the mating element 7. The first buffer spring 68 is located between the two symmetrically arranged telescopic locking rods 632, providing a buffering effect so that the two symmetrically arranged movable locking elements can form a movable lock cylinder with a buffering effect. A limiting locking block 616 is also provided on the end side wall of the positioning element mounting groove 612, and the limiting locking block 616 works in conjunction with the spherical locking block 631.
[0071] Preferably, to facilitate automatic locking of the mating part 7 during use, the release mechanism is located at the end of the positioning part mounting groove 612 and installed in the reset mechanism mounting groove 613. It includes a locking part 65, a linkage part 66, and a linkage part reset spring 67. The locking part 65 is rotatably mounted in the connector body 61 via a connecting shaft 617, and a locking block 651 is provided at the front end of the locking part 65 to cooperate with the mating part 7 and lock it. The linkage part 66 is mounted on the connector body 61 via the linkage part reset spring 67 and is connected to the locking part 65 via a pin 661. During use, the locking block 651 automatically locks the mating part 7, and by pressing down on the linkage part 66, the locking part 65 rotates along the connecting shaft 617, thereby releasing the mating part 7 and facilitating its removal and disassembly.
[0072] Preferably, the locking member 65 is further provided with a movable clearance groove 652 and a connecting shaft through hole 653, wherein the movable clearance groove 652 is used in conjunction with the pin 661 to complete the clearance function during adjustment, and the connecting shaft through hole 653 is used in conjunction with the connecting shaft 617 to rotatably install the locking member 65 in the reset mechanism mounting groove 613.
[0073] Preferably, in order to cooperate with the release mechanism, after the mating part 7 is released, the mating part 7 can be pushed to reset, thereby completing the quick disassembly of the laser module 1. The reset mechanism is set on the side wall of the reset mechanism mounting groove 613 and cooperates with the release mechanism. It includes a push plate 69 and a push plate reset spring 60. The push plate reset spring 60 is fixedly installed on the side wall of the reset mechanism mounting groove 613. The push plate 69 is set at the other end of the push plate reset spring 60 and cooperates with the mating part 7 to realize the quick disassembly of the laser module 1.
[0074] Preferably, for use with the connector 6, the mating part 7 is designed to be installed on the rear side of the laser module 1, including an outer sleeve 71, an inner connector 72, and a positioning connector 73, wherein...
[0075] The outer sleeve 71 is a frustum-shaped outer sleeve, and a sealing mounting sleeve 74 is provided on the outer sleeve 71. The sealing mounting sleeve 74 is used in conjunction with the mounting hole on the laser module 1 to install the outer sleeve 71 on the laser module 1.
[0076] The inner connector 72 is fixedly installed inside the outer kit 71, and at least one limiting hole 723 is provided in the inner connector 72. The limiting hole 723 is used in conjunction with the spherical block 631. In use, it is convenient to push the spherical block 631 into the limiting hole 723 to realize the connection between the plug-in 6 and the mating part 7.
[0077] The positioning connector 73 includes an integrally formed positioning rod 733 and a tail pressure plate 731. The tail pressure plate 731 is used in conjunction with the tail baffle of the inner connector 72. The positioning rod 733 passes through the tail baffle provided on the connector 72 and is used in conjunction with the positioning member 63, the locking member 65 and the push plate 69.
[0078] Preferably, to facilitate the fixed connection between the outer kit 71 and the inner connector 72, a clearance groove 721 and at least one first limiting ring 722 are provided on the inner connector 72. The clearance groove 721 is located at the end of the inner connector 72 and cooperates with the positioning ring 712 located at the end of the outer kit 71. The first limiting ring 722 is located on the outside of the inner connector 72 and cooperates with the first ring groove 711 located on the inside of the outer kit 71, so as to fix the inner connector 72 inside the outer kit 71.
[0079] Preferably, in order to install the positioning connector 73 on the inner connector 72, a second annular groove 724 is also provided on the tail baffle of the inner connector 72. The second annular groove 724 is used in conjunction with the second limiting ring 732 provided on the tail pressure plate 731 to install the positioning connector 73 on the inner connector 72. The tail baffle limits the tail pressure plate 731 to prevent the positioning rod 733 from being pulled and affecting the safety of the structure.
[0080] Preferably, for use with the positioning member 63, the locking member 65, and the push plate 69, the positioning rod 733 is designed as a circular rod that mates with the insertion positioning groove 611, and the positioning rod 733 is provided with a one-way locking hole 734 and a circular pressure plate 735.
[0081] The one-way locking holes 734 are symmetrically arranged on the positioning rod 733 and cooperate with the locking block 651 at the front end of the locking member 65. When the positioning rod 733 is inserted into the insertion positioning groove 611, the locking block 651 is inserted into the positioning groove 611 to fix the positioning rod 733.
[0082] The pressure plate 735 is located at the free end of the positioning rod 733 and is used in conjunction with the push plate 69. When the positioning rod 733 is released using the release mechanism, the positioning rod 733 is reset under the action of the push plate 69 and the push plate reset spring 60, thereby realizing the quick disassembly of the laser module 1.
[0083] Preferably, to increase the stability of the installation, the magnetic component 5 is designed as a positioning magnet, which is used in conjunction with the magnet located at the tail of the laser module 1, and the magnets are different names of each other.
[0084] The usage process and procedure of the laser module quick-release device described in this embodiment include:
[0085] Step 1: Before installing laser module 1, adjust the front and rear positions of laser module 1 and the relative insertion depth of the first connector plate 321 and the second connector plate 312 according to the installation specifications and requirements to fix the installation position of laser module 1.
[0086] Step 2: Then, according to the installation specifications, install the plug-in 6 onto the connector 3 and the mating part 7 onto the laser module 1;
[0087] Note: The specific installation process for steps one and two above depends on the site conditions and there is no particular order between them.
[0088] Step 3: After the connector 6 and mating part 7 are installed, connect the connector 6 and mating part 7, insert the positioning rod 733 into the connector positioning groove 611, and during the gradual insertion process, the inner connecting part 72 is gradually fitted onto the connector body 61, and the positioning rod 733 gradually lifts the positioning part 63, so that the spherical locking block 631 is locked into the limiting locking hole 723, completing the connection between the inner connecting part 72 and the connector body 61; at the same time, as the positioning rod 733 continues to go deeper, the locking blocks 651 of the two symmetrically arranged locking parts 65 are separated, and are reset under the action of the linkage reset spring 67, so that the locking blocks 651 are locked into the one-way locking hole 734, completing the rapid installation of the laser module 1;
[0089] Step 4: When the laser module 1 is to be removed, press down on the linkage 66, which in turn drives the locking part 65 to rotate along the connecting shaft 617, thereby releasing the mating part 7. At the same time, the push plate reset spring 60 pushes the push plate 69 to reset, pushing the positioning rod 733 out of the insertion positioning groove 611, thus completing the quick disassembly of the laser module 1.
[0090] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.
Claims
1. A quick-release device for a laser module, characterized in that: This includes a mounting base plate, connectors, mating parts, and magnetic components and plug-in parts mounted on the connectors, among which... The mounting base plate is set on the laser module positioning workpiece; The connector is movably mounted on the mounting base plate via a positioning bolt; Both the magnetic component and the plug-in component are mounted on the connector and are used in conjunction with the laser module; The mating component is mounted on the laser module and is used in conjunction with the plug-in component; The connector is detachably mounted on the connector and includes a connector body, a positioning component, a release mechanism, and a reset mechanism. The connector body is a columnar plug, and a connector positioning groove, a positioning component mounting groove and a reset mechanism mounting groove are provided on the connector body. The connector positioning groove is located at the center of the connector body and is arranged along the length of the connector body. The positioning component mounting groove is arranged along the radial direction of the connector body and is connected to the connector positioning groove. The reset mechanism mounting groove is located at the rear end of the connector body and is connected to the connector positioning groove. The positioning element is movably installed in the positioning element mounting slot and is used in conjunction with the mating element; Both the release mechanism and the reset mechanism are movably mounted in the reset mechanism mounting slot; The aforementioned mating component is located on the rear side of the laser module and includes an outer sleeve, an inner connector, and a positioning connector; The outer sleeve is a frustum-shaped sleeve, and a sealing mounting sleeve is provided on the outer sleeve. The sealing mounting sleeve is used in conjunction with the mounting hole on the laser module. The inner connector is fixedly installed inside the outer kit, and at least one limiting hole is provided inside the inner connector, which is used in conjunction with the positioning component; The positioning connector includes an integrally formed positioning rod and a tail pressure plate. The tail pressure plate is used in conjunction with the tail baffle of the inner connector. The positioning rod passes through the tail baffle set on the connector and is used in conjunction with the plug-in component.
2. The quick-release device for a laser module according to claim 1, characterized in that: The positioning element is movably mounted in the positioning element mounting groove via a positioning element mounting clamp, and includes two symmetrically arranged movable clamps and a first buffer spring. The movable locking component includes an integrally formed spherical locking block and a telescopic locking rod, wherein the telescopic locking rod is located at the rear end of the spherical locking block, and the spherical locking block is used in conjunction with a mating component; The first buffer spring is disposed between two symmetrically arranged telescopic levers, and a limit block is also provided on the end side wall of the positioning component mounting groove. The limit block is used in conjunction with the spherical block.
3. The quick-release device for a laser module according to claim 2, characterized in that: The release mechanism includes a locking element, a linkage element, and a linkage element return spring, wherein... The locking component is mounted in the body of the connector via a coupling, and a locking block is provided at the front end of the locking component to cooperate with the mating component. The linkage component is mounted on the connector body via a linkage component reset spring and is connected to the locking component via a pin. Furthermore, the locking component is also provided with a movable clearance groove and a connecting shaft through hole. The movable clearance groove is used in conjunction with the pin, and the connecting shaft through hole is used in conjunction with the connecting shaft.
4. The quick-release device for a laser module according to claim 3, characterized in that: The reset mechanism is mounted on the side wall of the reset mechanism mounting slot and works in conjunction with the release mechanism. It includes a push plate and a push plate reset spring. The push plate reset spring is fixedly mounted on the side wall of the reset mechanism mounting slot; The push plate is located at the other end of the push plate reset spring and is used in conjunction with the mating component.
5. A quick-release device for a laser module according to claim 4, characterized in that: The positioning rod is also provided with a one-way locking hole and a circular pressure plate. The one-way locking holes are symmetrically arranged on the positioning rod and are used in conjunction with the release mechanism at the front end of the locking component; The pressure plate is located at the free end of the positioning rod and is used in conjunction with the reset mechanism.
6. A quick-release device for a laser module according to claim 5, characterized in that: The inner connector is provided with a clearance groove and at least one first limiting ring. The clearance groove is provided at the end of the inner connector and is used in conjunction with a positioning ring provided at the end of the outer kit. The first limiting ring is provided on the outside of the inner connector and is used in conjunction with a first ring groove provided on the inside of the outer kit. The tail baffle of the inner connector is also provided with a second annular groove, which is used in conjunction with a second limiting ring provided on the tail pressure plate.
7. A quick-release device for a laser module according to claim 6, characterized in that: The connectors include L-shaped and T-shaped mounting parts that cooperate with each other. The L-shaped mounting component is used in conjunction with the mounting base plate, and a trapezoidal groove and a bolt mounting hole are provided on one vertical plate of the L-shaped mounting component. The trapezoidal groove is used in conjunction with a trapezoidal slider provided on the mounting base plate, and the bolt mounting hole is provided on the rear side of the trapezoidal groove and is used in conjunction with a positioning bolt. The T-shaped mounting component is installed at the lower end of the L-shaped mounting component via a double-headed bolt, and the T-shaped mounting component is provided with a positioning bolt hole for use with a plug-in component.
8. A quick-release device for a laser module according to claim 7, characterized in that: The T-shaped mounting piece is provided with at least one first plug plate, which is used in conjunction with a second plug plate provided on the L-shaped mounting piece. Both the first and second plug plates are provided with clearance adjustment grooves, which are used in conjunction with double-headed bolts.
Citation Information
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