Two-in-one multifunctional laser module and installation assembly
By adjusting the position and angle of the laser module on one housing body, combining the elastic support and the top pressure component, the problem of single functions of the traditional laser module and rigid installation component design is solved, achieving the versatility and efficient use of the laser module.
Patent Information
- Application Number
- CN202510418142.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2045-04-03
AI Technical Summary
Traditional laser modules have a single function, and users need to frequently replace modules between different tasks, which is time-consuming and labor-intensive and reduces work efficiency; the existing installed components are rigid, making it difficult to quickly adjust the angle of the laser module, affecting the use effect.
A two-in-one multifunction laser module is designed to adjust the position and angle of the two modules on one housing body by adjusting bolts, combining elastic support and top pressure components to achieve stable support and precise angle adjustment of the laser module.
It avoids the cumbersome replacement process of laser modules, reduces the risk of equipment damage, and easily meets various functional needs, improving the stability and use effect of laser modules in complex environments.
Smart Images

Figure CN119921167A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of laser technology, and in particular to a two-in-one multifunctional laser module and a mounting assembly. Background Art
[0002] Traditional laser modules usually have only a single function. In actual operation, if users need to realize multiple functions, they can only wear one module. For example, when two different tasks, positioning and measurement, are required, the modules have to be replaced frequently due to the limitations of existing equipment. This process is not only time-consuming and labor-intensive, but also greatly reduces work efficiency. At the same time, the existing laser module installation components also have obvious defects. The design of the existing installation components is mostly focused on fixing the laser module, and the structure is relatively rigid, which makes it difficult for users to quickly and effectively adjust the angle of the laser module when facing a complex and changeable working environment, resulting in a significant reduction in the effectiveness of the laser and being unable to meet the high-precision and high-efficiency work requirements. Therefore, a two-in-one multifunctional laser module and installation component is proposed. Users do not need to frequently change modules between different tasks, thereby improving work efficiency. At the same time, it is convenient to adjust the angle of the laser module, thereby improving the effectiveness of the laser. Summary of the invention
[0003] In response to the problems in the prior art, the present invention provides a two-in-one multifunctional laser module and installation assembly, which eliminates the need for users to frequently change modules between different tasks, thereby improving work efficiency. It is also convenient to adjust the angle of the laser module, thereby improving the use effect of the laser.
[0004] The technical solution adopted by the present invention to solve its technical problems is a two-in-one multifunctional laser module, including a shell body, one side of the shell body is provided with two groups of assembly holes, a first laser module and a second laser module are respectively installed in the two groups of assembly holes, a bolt hole connected to the assembly hole is provided on the outer side of the shell body, an adjustment bolt is threadedly connected in the bolt hole, the first laser module and the second laser module are respectively in compression contact with the end face of the adjustment bolt, a plurality of groups of mounting holes are connected between the two groups of assembly holes, elastic support members are installed in the mounting holes, and a glue dispensing hole connected to the assembly hole is provided at the rear end of the shell body.
[0005] Specifically, the elastic support member includes a support spring whose middle portion is fixedly connected to the inner wall of the mounting hole, and both ends of the support spring are connected to wedge-shaped extrusion blocks that are extruded by the first laser module and the second laser module.
[0006] Specifically, a sleeve is connected to the outer side of the shell body, and the sleeve is provided with a plurality of operating holes corresponding to the bolt holes and the glue dispensing holes, a spiral guide groove is provided on the outer side of the middle part of the sleeve, a card block is distributed circumferentially on the outer side of the front end of the sleeve, and an adjustment groove is distributed circumferentially on the outer side of the rear end of the sleeve.
[0007] Specifically, a plurality of groups of heat dissipation fins are fixedly connected between the shell body and the inner wall of the sleeve.
[0008] A mounting assembly uses the above-mentioned two-in-one multifunctional laser module, the mounting assembly includes a vertically arranged fixing seat, the fixing seat is provided with an opening corresponding to the sleeve, the inner side of the opening is provided with a positioning groove arranged along the axial direction of the opening corresponding to the clamping block, the clamping block is slidably connected to the positioning groove, the clamping block is fixedly connected to the inner wall of the positioning groove by a first spring, one side of the fixing seat is connected to a first adjusting assembly for adjusting the forward and backward movement of the shell body, and the side of the first adjusting assembly away from the fixing seat is connected to a second adjusting assembly for adjusting the angle of the shell body.
[0009] Specifically, the first adjustment component includes an inner gear ring rotatably connected to a fixed seat, an outer gear ring is provided on the inner side of the inner gear ring, a movable groove is provided on the inner wall of the outer gear ring, a guide block is slidably connected in the movable groove, a second spring is fixedly connected between the guide block and the inner wall of the movable groove, the guide block is located in the spiral guide groove and is slidably connected to the spiral guide groove, a plurality of drive gears are meshed and transmitted between the outer gear ring and the inner gear ring, and the drive gears are rotatably connected to the fixed seat through a support shaft.
[0010] Specifically, a side of the inner gear ring away from the fixed seat is rotatably connected to a movable ring, and a side of the movable ring away from the inner gear ring is rotatably connected to a second adjustment assembly; The second adjustment component includes a rotating ring rotatably connected to the moving ring, a group of insertion rods corresponding to the adjustment grooves are fixedly connected to the inner side of the rotating ring, and a pressing component is fixedly connected to the inner side of the rotating ring to press the rear end of the sleeve toward the side of the insertion rod.
[0011] Specifically, the pressing assembly includes a spring rod connected to the inner wall of the rotating ring, and the end of the spring rod close to the sleeve is connected to a support block that is in sliding contact with the outer wall of the sleeve; the adjustment groove is a conical groove that is larger at the top and smaller at the bottom, and the end of the insertion rod close to the adjustment groove is provided with a spherical structure.
[0012] Specifically, the outer side of the inner gear ring is provided with a first anti-skid groove distributed circumferentially, and the outer side of the rotating ring is provided with a second anti-skid groove distributed circumferentially; the lower surface of the fixed seat is fixedly connected with a mounting plate, and the mounting plate is provided with a plurality of groups of bolt assembly holes.
[0013] Beneficial effects of the present invention: (1) The two-in-one multifunctional laser module and installation assembly described in the present invention can meet multiple functional requirements by simply adjusting the position and angle of the two modules on a shell body through adjusting bolts, avoiding cumbersome replacement procedures, reducing the risk of equipment damage caused by frequent disassembly and installation of modules, and making operation simpler and more convenient.
[0014] (2) In the two-in-one multifunctional laser module and installation assembly described in the present invention, the elastic support member can play an elastic supporting role for the laser module in the assembly hole, reduce the impact of factors such as vibration on the laser module, ensure its stability, and improve the performance of the laser module in complex working environments; the top pressure assembly squeezes the rear end of the sleeve toward the side of the insertion rod, thereby enhancing the connection stability between the rotating ring and the sleeve, effectively preventing loosening and displacement between the sleeve and the rotating ring, and ensuring the accuracy of angle adjustment and the normal operation of the equipment.
[0015] (3) The two-in-one multifunctional laser module and mounting assembly described in the present invention can accurately adjust the front and rear position and angle of the outer shell body through the first adjustment assembly and the second adjustment assembly, so that the first laser module and the second laser module are closer to the working target. In the positioning task, more accurate target position information can be obtained; when used for measurement, the accuracy of measurement can be improved to meet the precise requirements for the direction and angle of the laser module in different working scenarios. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The present invention is further described below in conjunction with the accompanying drawings and embodiments.
[0017] Figure 1 It is an axonometric diagram of the laser module of the present invention; Figure 2 It is a side view of the laser module of the present invention; Figure 3 It is a schematic diagram of the cross-sectional structure of the main part of the housing of the present invention; Figure 4 for Figure 3 A magnified image of area A; Figure 5 It is a schematic structural diagram of the first laser module and the second laser module of the present invention; Figure 6 is an axonometric view of the installation assembly of the present invention; Figure 7 for Figure 6 A magnified view of area B; Figure 8 This is a schematic diagram of the sleeve and the fixing seat of the present invention after installation; Fig. 9 It is a cross-sectional schematic diagram of a fixing seat of the present invention; Fig.10 for Fig. 9 A magnified view of region C; In the figure: 1. Shell body; 2. Assembly hole; 3. First laser module; 4. Second laser module; 5. Bolt hole; 6. Adjustment bolt; 7. Mounting hole; 8. Glue dispensing hole; 9. Support spring; 10. Wedge-shaped extrusion block; 11. Sleeve; 12. Operation hole; 13. Spiral guide groove; 14. Block; 15. Adjustment groove; 16. Heat dissipation fin; 17. Fixed seat; 18. Opening hole; 19. Positioning groove; 20. First spring; 21. Inner gear ring; 22. Outer gear ring; 23. Moving groove; 24. Guide block; 25. Second spring; 26. Driving gear; 27. Support shaft; 28. Moving ring; 29. Rotating ring; 30. Insert rod; 31. Spring rod; 32. Support block; 33. First anti-skid groove; 34. Second anti-skid groove; 35. Mounting plate; 36. Bolt assembly hole. DETAILED DESCRIPTION
[0018] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.
[0019] In order to facilitate users to avoid frequently changing modules between different tasks, improve work efficiency, and facilitate angle adjustment of the laser module to improve the use effect of the laser, as an embodiment of the present invention, Figure 1-5 As shown, a two-in-one multifunctional laser module described in the present invention includes a shell body 1, two groups of assembly holes 2 are provided on one side of the shell body 1, and a first laser module 3 and a second laser module 4 are respectively installed in the two groups of assembly holes 2, and a bolt hole 5 connected to the assembly hole 2 is provided on the outer side of the shell body 1, and an adjusting bolt 6 is connected by thread in the bolt hole 5, and the first laser module 3 and the second laser module 4 are respectively pressed and contacted with the end surface of the adjusting bolt 6, and a plurality of groups of mounting holes 7 are connected between the two groups of assembly holes 2, and an elastic support member is installed in the mounting hole 7, and a glue dispensing hole 8 connected to the assembly hole 2 is provided at the rear end of the shell body 1.
[0020] When in use, the first laser module 3 and the second laser module 4 are placed in the two groups of assembly holes 2 on one side of the shell body 1 respectively, and the adjusting bolt 6 is screwed in through the bolt hole 5 connected to the assembly hole 2 on the outside of the shell body 1. The end faces of the adjusting bolt 6 will be pressed and contacted with the first laser module 3 and the second laser module 4 respectively. By rotating the adjusting bolt 6, the position and angle of the laser module in the assembly hole 2 can be adjusted, avoiding the cumbersome process of users repeatedly replacing modules between different tasks, and reducing the risk of equipment damage caused by frequent disassembly and installation of modules. Users only need to adjust the position and angle of the two modules on one shell body 1 through the adjusting bolt 6 to meet multiple functional requirements, and the operation is simpler and more convenient; Elastic support members are installed in several groups of mounting holes 7 connected between two groups of assembly holes 2. The elastic support members can play a role of elastic support for the first laser module 3 and the second laser module 4 in the assembly hole 2, reduce the impact of factors such as vibration on the laser module, and ensure its stability; after completing the above steps and the position of the laser module is adjusted, glue is injected into the glue hole 8 connected to the assembly hole 2 through the rear end of the shell body 1. The glue fills the gap in the assembly hole 2, further fixing the first laser module 3 and the second laser module 4 to prevent them from being displaced during use.
[0021] In order to ensure the stability of the laser module during operation, for example, Figure 1 , Figure 3 , Figure 4 As shown, the present invention also includes that the elastic support member includes a support spring 9 whose middle part is fixedly connected to the inner wall of the mounting hole 7, and both ends of the support spring 9 are connected to a wedge-shaped extrusion block 10 that is extruded by the first laser module 3 and the second laser module 4.
[0022] When in use, the first laser module 3 and the second laser module 4 are placed in the assembly hole 2 respectively. At this time, the wedge-shaped extrusion block 10 will be pressed and contacted with the side of the laser module. If the contact position is not ideal, the position of the first laser module 3 or the second laser module 4 in the assembly hole 2 can be properly fine-tuned to make the wedge-shaped extrusion block 10 uniformly apply extrusion force to the laser module, and provide stable support for the first laser module 3 and the second laser module 4 through the elasticity of the support spring 9; When adjusting the position and angle of the first laser module 3 and the second laser module 4 by adjusting the bolt 6, it is necessary to observe the state of the elastic support member at the same time. Since the adjusting bolt 6 will change the position of the first laser module 3 and the second laser module 4, the wedge-shaped extrusion block 10 may need to readjust the contact angle due to the movement of the first laser module 3 or the second laser module 4. At this time, if it is found that the extrusion state between the wedge-shaped extrusion block 10 and the first laser module 3 or the second laser module 4 is not good, the laser module position can be fine-tuned again to ensure that the elastic support member can always provide stable and appropriate elastic support force for the first laser module 3 and the second laser module 4, thereby ensuring the stability of the laser module during operation.
[0023] For example, Figure 1 , Figure 2 , Figure 5 As shown, the present invention also includes that a sleeve 11 is connected to the outer side of the shell body 1, and a plurality of operation holes 12 corresponding to the bolt holes 5 and the glue dispensing holes 8 are provided on the sleeve 11, a spiral guide groove 13 is provided on the outer side of the middle part of the sleeve 11, a block 14 is distributed circumferentially on the outer side of the front end of the sleeve 11, and a circumferential adjustment groove 15 is provided on the outer side of the rear end of the sleeve 11.
[0024] When in use, the sleeve 11 is connected to the outside of the shell body 1, so that the operating hole 12 on the sleeve 11 is precisely aligned with the bolt hole 5 and the glue hole 8 on the shell body 1. When adjusting the position of the laser module, a tool is used to pass through the operating hole 12 on the sleeve 11 corresponding to the bolt hole 5, and the adjusting bolt 6 is turned to adjust the position and angle of the laser module. After completing the position debugging of the laser module, when glue fixation is required, the glue tool is inserted into the glue hole 8 through the operating hole 12 on the sleeve 11 corresponding to the glue hole 8 to perform glue injection operation to fix the laser module; The sleeve 11 is fixed to the mounting assembly by means of the block 14 distributed on the outer circumference of the front end of the sleeve 11, ensuring the stability between the sleeve 11 and the housing body 1 and the mounting assembly, and preventing them from rotating or falling off at will; when it is necessary to further adjust the position of the sleeve 11 and the housing body 1 more precisely, the spiral guide groove 13 on the sleeve 11 facilitates the movement of the sleeve 11 and the housing body 1, so as to adjust the position of the sleeve 11 and the housing body 1, so that the first laser module 3 and the second laser module 4 are closer to the working target, and more accurate target position information can be obtained in the positioning task; when used for measurement, the measurement accuracy can be improved; When the position adjustment of the shell body 1 is completed, the angle of the shell body 1 can be fine-tuned by relying on the adjustment slot 15, so as to achieve fine-tuning of the angles of the first laser module 3 and the second laser module 4 to meet the precise requirements for the direction and angle of the laser modules in different working scenarios.
[0025] For example, Figure 3 As shown, the present invention also includes that a plurality of groups of heat dissipation fins 16 are fixedly connected between the shell body 1 and the inner wall of the sleeve 11 .
[0026] When in use, the heat dissipation fins 16 significantly increase the heat dissipation area, and can quickly transfer the heat generated by the operation of the first laser module 3, the second laser module 4 and other equipment to the surrounding environment. Through efficient heat dissipation, the internal temperature of the equipment is effectively reduced, avoiding problems such as laser module performance degradation and shortened life due to excessive temperature.
[0027] The present invention also provides a mounting assembly, using the above-mentioned two-in-one multifunctional laser module, such as Figure 6 , Figure 7As shown, the mounting assembly includes a vertically arranged fixing seat 17, the fixing seat 17 is provided with an opening 18 corresponding to the sleeve 11, the inner side of the opening 18 is provided with a positioning groove 19 corresponding to the block 14 and arranged axially along the opening 18, the block 14 is slidably connected to the positioning groove 19, the block 14 is fixedly connected to the inner wall of the positioning groove 19 through a first spring 20, one side of the fixing seat 17 is connected to a first adjusting assembly for adjusting the forward and backward movement of the shell body 1, and the side of the first adjusting assembly away from the fixing seat 17 is connected to a second adjusting assembly for adjusting the angle of the shell body 1.
[0028] When in use, the first spring 20 makes the block 14 fit tightly with the positioning groove 19 to ensure that the sleeve 11 will not rotate or fall off on the fixing seat 17 at will; when the first adjustment component is operated to adjust the front and rear positions of the shell body 1, all the blocks 14 move in the positioning groove 19; when the angle of the shell body 1 needs to be adjusted, the second adjustment component is operated to facilitate fine-tuning of the angles of the first laser module 3 and the second laser module 4. At this time, the block 14 moves in the positioning groove 19 to match the angle change of the sleeve 11 to meet the precise requirements for the direction and angle of the laser module in different working scenarios.
[0029] In order to facilitate the adjustment of the position of the housing body 1, for example, Figure 6 , Figure 8 , Fig. 9 , Fig.10 As shown, the present invention also includes that the first adjustment component includes an inner gear ring 21 rotatably connected to the fixed seat 17, an outer gear ring 22 is provided on the inner side of the inner gear ring 21, a movable groove 23 is provided on the inner wall of the outer gear ring 22, a guide block 24 is slidably connected in the movable groove 23, a second spring 25 is fixedly connected between the guide block 24 and the inner wall of the movable groove 23, the guide block 24 is located in the spiral guide groove 13 and is slidably connected to the spiral guide groove 13, a plurality of drive gears 26 are meshed and transmitted between the outer gear ring 22 and the inner gear ring 21, and the drive gear 26 is rotatably connected to the fixed seat 17 through a support shaft 27.
[0030] During use, when it is necessary to adjust the front and rear position of the shell body 1, rotate the inner gear ring 21. Since the inner gear ring 21 is meshed with the driving gear 26, the driving gear 26 will drive the outer gear ring 22 to rotate. When the outer gear ring 22 rotates, the guide block 24 in the inner wall movable groove 23 will slide along the spiral guide groove 13. During the sliding process of the guide block 24, since the elastic coefficient of the second spring 25 is relatively large, the guide block 24 is always in close contact with the spiral guide groove 13 to ensure the stability of the movement. As the guide block 24 slides in the spiral guide groove 13, the outer gear ring 22 will drive the shell body 1 and sleeve 11 and other components connected thereto to move forward and backward along the axial direction, so as to facilitate the precise adjustment of the position of the shell body 1.
[0031] In order to facilitate fine adjustment of the angles of the sleeve 11 and the housing body 1, for example, Figure 6 , Figure 7 , Fig. 9 , Fig.10 As shown, the present invention further includes that a side of the inner gear ring 21 away from the fixed seat 17 is rotatably connected to a moving ring 28, and a side of the moving ring 28 away from the inner gear ring 21 is rotatably connected to a second adjustment assembly; The second adjustment component includes a rotating ring 29 rotatably connected to the movable ring 28, a group of plug rods 30 corresponding to the adjustment grooves 15 are fixedly connected to the inner side of the rotating ring 29, and a pressing component for pressing the rear end of the sleeve 11 toward the plug rods 30 is fixedly connected to the inner side of the rotating ring 29.
[0032] During use, when adjusting the position of the shell body 1, when the shell body 1 moves forward, the adjustment groove 15 at the rear end of the sleeve 11 will correspond to the insertion rod 30 on the inner side of the rotating ring 29. When the position adjustment of the shell body 1 is completed, when the angle of the shell body 1 needs to be adjusted, the rotating ring 29 is rotated to a certain position. At this time, one end of the insertion rod 30 corresponds to the adjustment groove 15, and at the same time, the top pressure component applies an extrusion force to the rear end of the sleeve 11 toward the side of the insertion rod 30. When the sleeve 11 is squeezed, the insertion rod 30 is inserted into the adjustment groove 15, and the angle of the sleeve 11 will change. The guide block 24 slides in the movable groove 23 to fine-tune the angle of the sleeve 11 and the shell body 1.
[0033] For example, Figure 6 , Fig. 9 As shown, the present invention also includes that the top pressure assembly includes a spring rod 31 connected to the inner wall of the rotating ring 29, and the end of the spring rod 31 close to the sleeve 11 is connected to a support block 32 that is in sliding contact with the outer wall of the sleeve 11; the adjustment groove 15 is a conical groove that is larger at the top and smaller at the bottom, and the end of the insertion rod 30 close to the adjustment groove 15 is provided with a spherical structure.
[0034] When in use, after the position adjustment of the shell body 1 is completed, when the angle of the shell body 1 needs to be adjusted, the rotating ring 29 is rotated to a certain position, at which time one end of the insertion rod 30 corresponds to the adjustment slot 15, and the spring rod 31 and the support block 32 are used to apply an extrusion force to the rear end of the sleeve 11 toward one side of the insertion rod 30. When the sleeve 11 is squeezed, the insertion rod 30 is inserted into the adjustment slot 15, and the angle of the sleeve 11 changes, so as to facilitate fine adjustment of the angles of the sleeve 11 and the shell body 1; Relying on the tapered groove and the spherical structure, after use, the insertion rod 30 is easily disengaged from the tapered groove, and the sleeve 11 and the housing body 1 are restored to the initial angle, further improving the convenience of use; At the same time, the setting of the top pressure component squeezes the rear end of the sleeve 11 toward the side of the insertion rod 30, which enhances the connection stability between the rotating ring 29 and the sleeve 11, and can also effectively prevent loosening and displacement between the sleeve 11 and the rotating ring 29, thereby ensuring the accuracy of angle adjustment and the normal operation of the equipment.
[0035] For example, Figure 6 As shown, the present invention also includes that the outer side of the inner gear ring 21 is provided with a first anti-skid groove 33 distributed circumferentially, and the outer side of the rotating ring 29 is provided with a second anti-skid groove 34 distributed circumferentially; the lower surface of the fixed seat 17 is fixedly connected with a mounting plate 35, and the mounting plate 35 is provided with a plurality of groups of bolt assembly holes 36.
[0036] When in use, the first anti-skid groove 33 facilitates the rotation of the inner gear ring 21, and the second anti-skid groove 34 facilitates the rotation of the rotating ring 29; the entire device is installed to the target position using the mounting plate 35 fixedly connected to the lower surface of the fixing seat 17 and a plurality of groups of bolt assembly holes 36 on the mounting plate 35, the mounting plate 35 is placed on the mounting surface, the bolt assembly holes 36 are aligned with the preset mounting holes on the mounting surface, and suitable bolts are used to pass through the bolt assembly holes 36 and screwed into the mounting holes of the mounting surface, thereby ensuring that the entire device is securely installed and will not be displaced or shaken during subsequent use.
[0037] When the present invention is in use, the sleeve 11 is connected to the outer side of the shell body 1, and the first laser module 3 and the second laser module 4 are respectively placed in the two groups of assembly holes 2 on one side of the shell body 1, and the operation hole 12 on the sleeve 11 is precisely aligned with the bolt hole 5 and the glue dispensing hole 8 on the shell body 1, and the adjusting bolt 6 is screwed in through the bolt hole 5 connected with the assembly hole 2 on the outer side of the shell body 1, so that the end faces of the adjusting bolt 6 are respectively pressed and contacted with the first laser module 3 and the second laser module 4, and the adjusting bolt 6 is rotated to adjust the position and angle of the first laser module 3 or the second laser module 4 in the assembly hole 2. During the adjustment process, the state of the elastic support is observed at the same time. If it is found that the extrusion state of the wedge-shaped extrusion block 10 and the first laser module 3 or the second laser module 4 is not good, the position of the first laser module 3 or the second laser module 4 can be fine-tuned again to ensure that the elastic support can always provide a stable and appropriate elastic support force for the laser module; After completing the position debugging of the laser module, when it is necessary to perform glue fixation, the glue tool is inserted into the glue hole 8 through the operation hole 12 on the sleeve 11 corresponding to the glue hole 8 to perform the glue injection operation, and the glue fills the gap in the assembly hole 2, further fixing the first laser module 3 and the second laser module 4 to prevent them from being displaced during use; Align the front end of the sleeve 11 with the block 14 with the opening 18 on the fixing seat 17, and slowly insert the sleeve 11 into the opening 18. During the insertion process, the block 14 will be squeezed by the edge of the opening 18, compressing the first spring 20 and sliding axially along the positioning groove 19, ensuring that the sleeve 11 is fully inserted into the opening 18 until the block 14 slides into the preset position of the positioning groove 19, at which time the first spring 20 is reset, and the block 14 is tightly matched with the positioning groove 19; The entire device is installed at the target location using the mounting plate 35 fixedly connected to the lower surface of the fixing seat 17 and the several groups of bolt assembly holes 36 on the mounting plate 35. The mounting plate 35 is placed on the mounting surface, the bolt assembly holes 36 are aligned with the preset mounting holes on the mounting surface, and the appropriate bolts are passed through the bolt assembly holes 36 and screwed into the threaded holes on the mounting surface, thereby ensuring that the entire device is firmly installed and will not be displaced or shaken during subsequent use; When the position of the first laser module 3 and the second laser module 4 needs to be adjusted, the inner gear ring 21 is rotated. Since the inner gear ring 21 is meshed with the driving gear 26, the driving gear 26 will drive the outer gear ring 22 to rotate. When the outer gear ring 22 rotates, the guide block 24 in the inner wall moving groove 23 thereof will slide along the spiral guide groove 13. During the sliding process of the guide block 24, due to the action of the second spring 25, the guide block 24 is always in close contact with the spiral guide groove 13 to ensure the stability of the movement. As the guide block 24 slides in the spiral guide groove 13, the outer gear ring 22 will drive the outer shell body 1 and the sleeve 11 and other components connected thereto to move axially, thereby realizing the adjustment of the positions of the outer shell body 1 and the first laser module 3 and the second laser module 4. When the angle of the first laser module 3 and the second laser module 4 needs to be adjusted, when the position adjustment of the shell body 1 is completed, when the angle of the shell body 1 needs to be adjusted, the rotating ring 29 is rotated to a certain position so that one end of the insertion rod 30 corresponds to the adjustment groove 15, and the spring rod 31 and the support block 32 are used to apply an extrusion force to the rear end of the sleeve 11 toward the side of the insertion rod 30. When the sleeve 11 is squeezed, the insertion rod 30 is inserted into the adjustment groove 15, and the angle of the sleeve 11 changes. The guide block 24 slides in the movable groove 23 to fine-tune the angle of the sleeve 11 and the shell body 1; After use, since the adjustment groove 15 is a tapered groove with a larger top and a smaller bottom, a spherical structure is provided at one end of the insertion rod 30 close to the adjustment groove 15. Rotating the rotating ring 29 facilitates the insertion rod 30 to disengage from the tapered groove and restore the sleeve 11 and the shell body 1 to their initial angles.
[0038] The above shows and describes 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 above embodiments and descriptions are only for explaining the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention. The scope of the present invention is defined by the attached claims and their equivalents.
Claims
1. A two-in-one multifunctional laser module, characterized in that: The invention comprises a shell body (1), wherein one side of the shell body (1) is provided with two groups of assembly holes (2), a first laser module (3) and a second laser module (4) are respectively installed in the two groups of assembly holes (2), a bolt hole (5) connected to the assembly hole (2) is provided on the outer side of the shell body (1), the inner thread of the bolt hole (5) is connected to an adjusting bolt (6), the first laser module (3) and the second laser module (4) are respectively in compression contact with the end surface of the adjusting bolt (6), a plurality of groups of mounting holes (7) are connected between the two groups of assembly holes (2), elastic support members are installed in the mounting holes (7), and a glue dispensing hole (8) connected to the assembly hole (2) is provided at the rear end of the shell body (1).
2. The two-in-one multifunctional laser module according to claim 1, characterized in that: The elastic support member comprises a support spring (9) whose middle portion is fixedly connected to the inner wall of the mounting hole (7), and both ends of the support spring (9) are connected to wedge-shaped extrusion blocks (10) that are extruded by the first laser module (3) and the second laser module (4).
3. The two-in-one multifunctional laser module according to claim 2, characterized in that: The outer side of the housing body (1) is connected to a sleeve (11), and the sleeve (11) is provided with a plurality of groups of operating holes (12) corresponding to the bolt holes (5) and the glue dispensing holes (8). A spiral guide groove (13) is provided on the outer side of the middle part of the sleeve (11), a clamping block (14) is distributed circumferentially on the outer side of the front end of the sleeve (11), and a circumferentially distributed adjustment groove (15) is provided on the outer side of the rear end of the sleeve (11).
4. The two-in-one multifunctional laser module according to claim 3, characterized in that: A plurality of groups of heat dissipation fins (16) are fixedly connected between the shell body (1) and the inner wall of the sleeve (11).
5. A mounting assembly, using a two-in-one multifunctional laser module according to any one of claims 1 to 4, characterized in that: The mounting assembly comprises a vertically arranged fixing seat (17), the fixing seat (17) being provided with an opening (18) corresponding to the sleeve (11), the inner side of the opening (18) being provided with a positioning groove (19) corresponding to the clamping block (14) and arranged axially along the opening (18), the clamping block (14) being slidably connected to the positioning groove (19), the clamping block (14) being fixedly connected to the inner wall of the positioning groove (19) via a first spring (20), one side of the fixing seat (17) being connected to a first adjusting assembly for adjusting the forward and backward movement of the housing body (1), and the side of the first adjusting assembly away from the fixing seat (17) being connected to a second adjusting assembly for adjusting the angle of the housing body (1).
6. A mounting assembly according to claim 5, characterized in that: The first adjustment component comprises an inner gear ring (21) rotatably connected to a fixed seat (17); an outer gear ring (22) is provided on the inner side of the inner gear ring (21); a movable groove (23) is provided on the inner wall of the outer gear ring (22); a guide block (24) is slidably connected in the movable groove (23); a second spring (25) is fixedly connected between the guide block (24) and the inner wall of the movable groove (23); the guide block (24) is located in the spiral guide groove (13) and is slidably connected to the spiral guide groove (13); a plurality of groups of drive gears (26) are meshed and transmitted between the outer gear ring (22) and the inner gear ring (21); and the drive gears (26) are rotatably connected to the fixed seat (17) via a support shaft (27).
7. A mounting assembly according to claim 6, characterized in that: A side of the inner gear ring (21) away from the fixed seat (17) is rotatably connected to a movable ring (28), and a side of the movable ring (28) away from the inner gear ring (21) is rotatably connected to a second adjustment component; The second adjustment component comprises a rotating ring (29) rotatably connected to the moving ring (28); a group of insertion rods (30) corresponding to the adjustment grooves (15) are fixedly connected to the inner side of the rotating ring (29); and a pressing component for pressing the rear end of the sleeve (11) toward one side of the insertion rods (30) is fixedly connected to the inner side of the rotating ring (29).
8. A mounting assembly according to claim 7, characterized in that: The pressing assembly comprises a spring rod (31) connected to the inner wall of the rotating ring (29); one end of the spring rod (31) close to the sleeve (11) is connected to a support block (32) in sliding contact with the outer wall of the sleeve (11); the adjusting groove (15) is a tapered groove with a larger top and a smaller bottom; and one end of the insertion rod (30) close to the adjusting groove (15) is provided with a spherical structure.
9. A mounting assembly according to claim 8, characterized in that: The outer side of the inner gear ring (21) is provided with a first anti-skid groove (33) distributed circumferentially, and the outer side of the rotating ring (29) is provided with a second anti-skid groove (34) distributed circumferentially; a mounting plate (35) is fixedly connected to the lower surface of the fixing seat (17), and a plurality of groups of bolt assembly holes (36) are provided on the mounting plate (35).
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