Laser lamp core alignment mechanism and laser lamp core alignment, dispensing, irradiation and instant curing equipment

Through the laser lamp core adjustment mechanism and automatic dispensing and curing equipment, the problems of light deviation and low efficiency in laser lamp assembly are solved, and a high-precision and efficient assembly process is achieved.

CN115615362BActive Publication Date: 2025-07-11SHENZHEN HUAYIFENG TECH CO LTD
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Patent Information

Application Number
CN202211120305.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-15
Publication Date
2025-07-11
Estimated Expiration
2042-09-15

AI Technical Summary

Technical Problem

During the assembly process of existing laser lamps, relying on naked eye observation leads to light deviation defects and low production efficiency.

Method used

The laser light core adjustment mechanism is adopted, including a rack, workbench, core fine adjustment unit, shooting unit and screen display unit. The position of the luminous module is calibrated in real time through the camera, and combined with automatic dispensing and glue curing equipment to achieve precise core adjustment and rapid curing.

Benefits of technology

Improve the assembly accuracy of laser lamps, reduce light deviation, and improve production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a core alignment adjusting mechanism for a laser lamp and an instant curing device for core alignment, glue dispensing, and irradiation of a laser lamp. The core alignment adjusting mechanism for the laser lamp includes: a frame, a workbench mounted on the frame, a core fine-tuning unit, a first baffle, a first imaging unit, a second baffle, a second imaging unit, and a screen display unit; the workbench is provided with a through hole, the core fine-tuning unit is used for detachably plugging and fixing a light-emitting module, the first baffle is provided with a calibration perforation, the first imaging unit is used for capturing an image near the calibration perforation, the second baffle is provided with a calibration bull's-eye, and the second imaging unit is used for capturing an image near the calibration bull's-eye; the instant curing device for core alignment, glue dispensing, and irradiation of the laser lamp includes the above-mentioned core alignment adjusting mechanism for the laser lamp, and the light emitted by the light-emitting module passes through the through hole and the calibration perforation and is irradiated on the calibration bull's-eye, being located on a straight line; the produced laser lamp is not prone to light deviation defects, and the production and assembly efficiency is high.
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Description

Technical Field

[0001] This application belongs to the technical field of laser lamps. More specifically, it relates to a core alignment adjusting mechanism for a laser lamp and an instant curing device for core alignment and dispensing irradiation of a laser lamp. Background Art

[0002] Laser lamps are generally divided into industrial laser lamps and entertainment laser lamps. Utilizing the non-divergence of laser beams, laser lamp lights have the advantages of bright colors, high brightness, good directivity, long range, and easy control, and are applied in buildings, parks, squares, theaters, etc.

[0003] A laser lamp generally includes a housing and a light-emitting module for emitting light. The housing is provided with holes through which the light emitted by the light-emitting module passes. The light-emitting module and the housing are generally fixed by means of snap-fit assembly and glue bonding, etc. Currently, the traditional installation method of a laser lamp is as follows: First, fix the housing with one hand, then the staff uses fingers or other tools to fix the smaller light-emitting module, then power on the light-emitting module, and then observe the position between the two with the naked eye, manually calibrate the position of the light-emitting module until the light emitted by the light-emitting module passes through the holes on the housing, and then quickly apply glue for fixation.

[0004] Regarding the above related technologies, the inventor believes that there are the following defects:

[0005] The staff directly uses the naked eye to observe whether the light emitted by the light-emitting module passes through the holes on the housing as a judgment condition to determine whether the core alignment between the housing and the light-emitting module is achieved, which will result in a light deviation defect of about 3 degrees in the produced laser lamp itself, and limited by the technical proficiency of the staff, the production and assembly efficiency is not high either. Summary of the Invention

[0006] The purpose of the embodiments of this application is to provide a core alignment adjusting mechanism for a laser lamp and an instant curing device for core alignment and dispensing irradiation of a laser lamp, so as to solve the technical problems that the produced laser lamp itself has a light deviation defect of about 3 degrees and the production and assembly efficiency is not high in the conventional method.

[0007] To achieve the above purpose, in the first aspect, the technical solution adopted by this application is:

[0008] Provide a core alignment adjusting mechanism for a laser lamp, including: a frame and a workbench, a core fine-tuning unit, a first baffle, a first photographing unit, a second baffle, a second photographing unit, and a picture display unit installed on the frame;

[0009] Among them, the workbench is used to fix the housing of the laser lamp and is provided with a through hole for light to pass through. The core alignment and fine-tuning unit is used to detachably plug and fix and conductively connect the light-emitting module of the laser lamp. The first baffle is arranged at an interval from the workbench and is provided with a calibration perforation. The first shooting unit is used to shoot the picture near the calibration perforation. The second baffle is arranged at an interval on the side of the first baffle away from the workbench. A calibration bull's-eye is arranged on the second baffle. The calibration bull's-eye, the calibration perforation, and the through hole are located on a straight line. The second shooting unit is used to shoot the picture near the calibration bull's-eye. The picture display unit is electrically connected to the first shooting unit and the second shooting unit.

[0010] In an implementable technical solution of the present application, the core alignment and fine-tuning unit includes: a hand-operated universal joint and a tubular socket. The tubular socket is installed at one end of the hand-operated universal joint. Conductive wires for achieving conductive connection are arranged inside the tubular socket. An insertion port for plugging the light-emitting module is arranged at the end of the tubular socket away from the hand-operated universal joint. An adjustment knob is arranged at the end of the hand-operated universal joint away from the tubular socket.

[0011] In an implementable technical solution of the present application, a calibration and adjustment seat for installing the core alignment and fine-tuning unit is arranged on the frame. The calibration and adjustment seat includes: a fixed seat, a first seat for installing the tubular socket, and a second seat for installing the hand-operated universal joint. The first seat is adjustably installed on the fixed seat along the straight line direction. The second seat is adjustably installed on the first seat along the direction perpendicular to the straight line. The workbench is parallel to the direction perpendicular to the straight line.

[0012] In an implementable technical solution of the present application, the second seat includes: a first plate arranged along the straight line direction and a second plate perpendicular to the straight line direction. The second plate is adjustably installed on the first plate along the straight line direction. The second plate and the workbench are arranged in parallel. The end of the hand-operated universal joint near the adjustment knob is installed at the end of the second plate away from the first plate.

[0013] In an implementable technical solution of the present application, the first shooting unit includes: a first bracket and a first camera. The first bracket is installed on the frame and is arranged at an interval near the first baffle. The first camera is installed on the first bracket.

[0014] In an implementable technical solution of the present application, the second shooting unit includes: a second bracket and a second camera. The second bracket is installed on the frame and is arranged at an interval near the second baffle. The second camera is installed on the second bracket.

[0015] In an implementable technical solution of the present application, the screen display unit includes a screen base, a first display screen, and a second display screen. The screen base is installed on the frame and is arranged on one side of the workbench. A bevel is provided on the side of the screen base facing the workbench. The first display screen and the second display screen are both installed on the bevel. The first display screen is electrically connected to the first photographing unit and is used to display the image captured by the first photographing unit. The second display screen is electrically connected to the second photographing unit and is used to display the image captured by the second photographing unit.

[0016] To achieve the above object, in a second aspect, the technical solution adopted by the present application is:

[0017] Provide a laser lamp core-aligning instant-curing equipment for dispensing glue, including:

[0018] The laser lamp core-aligning mechanism as described above;

[0019] An automatic dispensing mechanism, which is arranged on one side of the laser lamp core-aligning mechanism and is used to fix the core-aligned light-emitting module in the housing; and,

[0020] Two groups of glue curing mechanisms, which are respectively located on two opposite sides of the laser lamp core-aligning mechanism. The glue curing mechanism is used to irradiate and accelerate the glue curing speed.

[0021] In an implementable technical solution of the present application, the automatic dispensing mechanism includes: a dispensing machine, a mounting bracket, a glue delivery pipe, a dispensing nozzle, and an electronic control valve. One end of the glue delivery pipe is connected to the dispensing machine, the dispensing nozzle is connected to the other end of the glue delivery pipe, the electronic control valve is installed on the glue delivery pipe to control the flow rate of the dispensed glue, the mounting bracket is installed on the frame, and the dispensing nozzle is installed on the mounting bracket to be close to the workbench.

[0022] In an implementable technical solution of the present application, the glue curing mechanism includes a hose that can be freely bent and adjusted and a UV violet curing lamp. One end of the hose is installed on the frame, and the UV violet curing lamp is installed on the other end of the hose.

[0023] In summary, the present application includes at least the following beneficial technical effects:

[0024] First, detachably plug the light-emitting module of the laser lamp onto the core alignment fine-tuning unit. After the light-emitting module is energized, it will emit light. After initially installing the light-emitting module in the housing, since the calibration perforation vicinity image and the calibration bull's-eye vicinity image will be displayed in real time on the image display unit, it is convenient for the staff to observe in real time. The staff can adjust the position of the light-emitting module through the core alignment fine-tuning unit until, in the image of the image display unit, the light passes through the calibration perforation and shines on the calibration bull's-eye, which indicates that the core alignment work is completed. After that, the light-emitting module and the housing can be fixed together. As the spacing distance between the workbench, the first baffle, and the second baffle increases, the accuracy of core alignment will be higher, so that the produced laser lamp is not prone to light deviation defects, and the production and assembly efficiency is higher.

[0025] After the core alignment work is completed, turn on the automatic dispensing mechanism, and glue can be dropped between the core-aligned light-emitting module and the housing. Then turn on the glue irradiation and curing mechanism, which can quickly cure the dropped glue, thereby achieving the purpose of assembling and fixing between the light-emitting module and the housing, and the production and assembly efficiency is higher. Description of the Drawings

[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0027] Figure 1 It is a schematic structural diagram of the core alignment adjustment mechanism of the laser lamp provided by the embodiment of the present application.

[0028] Figure 2 It is a schematic structural diagram of the core alignment fine-tuning unit and the calibration adjustment base in the embodiment of the present application.

[0029] Figure 3 It is a schematic structural diagram of the laser lamp core alignment dispensing irradiation instant curing device provided by the embodiment of the present application.

[0030] Figure 4 It is a schematic internal structural diagram of the laser lamp core alignment dispensing irradiation instant curing device provided by the embodiment of the present application.

[0031] Among them, each reference numeral in the figure:

[0032] 101. Laser lamp core alignment mechanism; 11. Frame; 12. Workbench; 13. Fine core adjustment unit; 131. Hand-operated universal joint; 132. Tubular socket; 133. Adjustment knob; 14. First baffle; 15. First shooting unit; 16. Second baffle; 17. Second shooting unit; 151. First bracket; 152. First camera; 171. Second bracket; 172. Second camera; 18. Image display unit; 181. Screen base; 182. First display screen; 183. Second display screen; 19. Calibration adjustment base; 191. Fixed base; 192. First base; 193. Second base; 1931. First plate; 1932. Second plate;

[0033] 102. Automatic dispensing mechanism; 21. Dispensing machine; 22. Mounting bracket; 23. Glue delivery tube; 24. Dispensing nozzle; 25. Electronic control valve;

[0034] 103. Glue curing mechanism; 31. Hose; 32. UV violet curing lamp;

[0035] 104. Power supply;

[0036] 200. Housing;

[0037] 300. Light-emitting module. Detailed implementation manners

[0038] In order to make the technical problems, technical solutions and beneficial effects to be solved by this application clearer, the following further elaborates on this application in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not used to limit this application.

[0039] It should be noted that when an element is referred to as "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0040] It should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to this application.

[0041] In addition, the terms "first" and "second" are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of this application, "a plurality of" means two or more, unless otherwise specifically defined.

[0042] Please refer to Figures 1-4 simultaneously, and a description will now be given of the laser lamp core alignment adjustment mechanism and the laser lamp core alignment dispensing and irradiation instant curing equipment provided by the embodiments of this application.

[0043] The embodiments of this application provide a laser lamp core alignment adjustment mechanism 101. Please refer to Figure 1 and Figure 2 , which includes: a frame 11, a workbench 12 mounted on the frame 11, a core fine-tuning unit 13, a first baffle 14, a first shooting unit 15, a second baffle 16, a second shooting unit 17, and a screen display unit 18. The frame 11 is a cuboid frame structure. In this embodiment, for the convenience of staff operation and observation, and at the same time to make the entire mechanism structure compact and occupy less space, the core fine-tuning unit 13, the workbench 12, the first baffle 14, and the second baffle 16 are arranged at intervals in layers from top to bottom.

[0044] It can be understood that in other embodiments, the core fine-tuning unit 13, the workbench 12, the first baffle 14, and the second baffle 16 can also be arranged horizontally at intervals, as long as the normal implementation of this solution is not affected.

[0045] Specifically, in this embodiment, the workbench 12 is used for the housing 200 of the laser lamp to be snap-fitted and fixed, and is provided with a through hole for light to pass through. The core fine-tuning unit 13 is used for the light-emitting module 300 of the laser lamp to be detachably inserted and fixed and conductively connected. The first baffle 14 is arranged at an interval from the workbench 12 and is provided with a calibration through hole. The first shooting unit 15 is used for shooting the picture near the calibration through hole. The second baffle 16 is arranged at an interval on the side of the first baffle 14 away from the workbench 12. A calibration bull's-eye is provided on the second baffle 16. The calibration bull's-eye, the calibration through hole, and the through hole are on the same straight line. The second shooting unit 17 is used for shooting the picture near the calibration bull's-eye. The screen display unit 18 is electrically connected to the first shooting unit 15 and the second shooting unit 17.

[0046] Specifically, in this embodiment, the first shooting unit 15 includes: a first bracket 151 and a first camera 152. The first bracket 151 is mounted on the frame 11 and arranged at an interval adjacent to the first baffle 14. The first camera 152 is mounted on the first bracket 151.

[0047] Specifically, in this embodiment, the second photographing unit 17 includes: a second bracket 171 and a second camera 172. The second bracket 171 is installed on the frame 11 and is arranged at an interval adjacent to the second baffle 16, and the second camera 172 is installed on the second bracket 171.

[0048] To facilitate the installation of the first bracket 151 and the first baffle 14, a first mounting plate for supporting the first bracket 151 and the first baffle 14 is provided on the frame 11. To facilitate the installation of the second bracket 171 and the second baffle 16, a second mounting plate for supporting the second bracket 171 and the second baffle 16 is provided on the frame 11. Both the first mounting plate and the second mounting plate are horizontally arranged and are at least half a meter apart in height.

[0049] The structures of the first bracket 151 and the second bracket 171 are the same and are generally L-shaped. To facilitate the adjustment of the angles of the first camera 152 and the second camera 172, the first bracket 151 and the second bracket 171 can be designed to be liftable and rotatable structures, so that the lens of the first camera 152 is aligned with the calibration perforation on the first baffle 14, and the lens of the second camera 172 is aligned with the calibration bull's-eye on the second baffle 16.

[0050] At the same time, to facilitate the staff to observe whether the light passes through the calibration perforation and whether it irradiates the calibration bull's-eye, both the first baffle 14 and the second baffle 16 are rectangular, and cross grooves are provided on the upper surfaces of the first baffle 14 and the second baffle 16. The cross grooves divide the first baffle 14 and the second baffle 16 into four equal-area rectangles, and the intersection of the cross grooves is just located at the centers of the first baffle 14 and the second baffle 16, so that the calibration perforation is just located at the center of the first baffle 14, and the calibration bull's-eye is just located at the center of the second baffle 16.

[0051] To facilitate the staff to more quickly view the images captured by the first camera 152 and the second camera 172 at the calibration position, the image display unit 18 includes a screen base 181, a first display screen 182, and a second display screen 183. The screen base 181 is installed on the frame 11 and is arranged on one side of the workbench 12. A slope is provided on the side of the screen base 181 facing the workbench 12. The first display screen 182 and the second display screen 183 are both installed on the slope. The first display screen 182 is electrically connected to the first photographing unit 15 and is used to display the image captured by the first photographing unit 15, and the second display screen 183 is electrically connected to the second photographing unit 17 and is used to display the image captured by the second photographing unit 17.

[0052] Please refer to Figure 2, in one embodiment, the core fine-tuning unit 13 includes: a hand-operated universal joint 131 and a tubular socket 132. The tubular socket 132 is installed at one end of the hand-operated universal joint 131. Conductive wires for achieving electrical connection are arranged inside the tubular socket 132. An insertion port for inserting the light-emitting module 300 is provided at the end of the tubular socket 132 away from the hand-operated universal joint 131. An adjustment knob 133 is provided at the end of the hand-operated universal joint 131 away from the tubular socket 132.

[0053] The hand-operated universal joint 131 with the adjustment knob 133 can be directly purchased from the market. Only a customized tubular socket 132 needs to be installed at the end of the hand-operated universal joint 131 to fabricate the core fine-tuning unit 13. By rotating the adjustment knob 133 and through the adjustment function of the hand-operated universal joint 131, the position of the tubular socket 132 can be slightly changed, thereby assisting in calibrating the light-emitting module 300.

[0054] Please refer to Figure 2 , to facilitate the stable installation of the above-designed core fine-tuning unit 13 and adapt to laser lights of different model sizes, a calibration adjustment seat 19 for installing the core fine-tuning unit 13 is provided on the frame 11. The calibration adjustment seat 19 includes: a fixed seat 191, a first seat 192 for installing the tubular socket 132, and a second seat 193 for installing the hand-operated universal joint 131. The first seat 192 is adjustably installed on the fixed seat 191 in a linear direction, and the second seat 193 is adjustably installed on the first seat 192 in a direction perpendicular to the line. The workbench 12 is parallel to the direction perpendicular to the line.

[0055] Specifically, the second seat 193 includes: a first plate 1931 arranged in a linear direction and a second plate 1932 perpendicular to the linear direction. The second plate 1932 is adjustably installed on the first plate 1931 in a linear direction. The second plate 1932 and the workbench 12 are arranged in parallel. The end of the hand-operated universal joint 131 near the adjustment knob 133 is installed at the end of the second plate 1932 away from the first plate 1931.

[0056] The above-designed L-shaped second seat 193 not only facilitates the installation and connection of the hand-operated universal joint 131 but also has the characteristic of adjusting the position of the hand-operated universal joint 131, further facilitating the operation of the staff.

[0057] In this embodiment, the above-mentioned adjustable installation method can be achieved by using a chute and a slider. When the position between two components changes and the adjustment is in place, bolts are used for locking.

[0058] The working principle and operation process of the laser lamp core alignment adjustment mechanism 101 provided in this application are as follows:

[0059] First, detachably plug the light-emitting module 300 of the laser lamp into the core alignment fine-tuning unit 13. After the light-emitting module 300 is energized, it will emit light. After initially installing the light-emitting module 300 into the housing 200, since the calibration perforation vicinity and calibration bull's-eye vicinity images will be displayed in real time on the image display unit 18, which is convenient for the staff to observe in real time. The staff can adjust the position of the light-emitting module 300 through the core alignment fine-tuning unit 13 until, in the image of the image display unit 18, the light passes through the through-hole, calibration perforation and shines on the calibration bull's-eye, indicating that the core alignment work is completed. After that, the light-emitting module 300 and the housing 200 can be fixed together.

[0060] The predictable technical effects of the laser lamp core alignment adjustment mechanism 101 provided in this application are as follows:

[0061] As the distance between the workbench 12, the first baffle 14 and the second baffle 16 increases, the accuracy of core alignment will be higher, so that the laser lamp produced is not prone to light deviation defects and the production and assembly efficiency is higher.

[0062] This application embodiment also provides a laser lamp core alignment and dotting irradiation instant curing device. Please refer to Figure 1 、 Figure 3 and Figure 4 , including:

[0063] The laser lamp core alignment adjustment mechanism 101 as described above;

[0064] An automatic dotting mechanism 102, arranged on one side of the laser lamp core alignment adjustment mechanism 101 and used to fix the core-aligned light-emitting module 300 in the housing 200; and,

[0065] Two groups of glue curing mechanisms 103, the two groups of glue curing mechanisms 103 are respectively located on two opposite sides of the laser lamp core alignment adjustment mechanism 101, and the glue curing mechanism 103 is used to irradiate to accelerate the glue curing speed.

[0066] Figure 3 and Figure 4 The difference from Figure 4 is that Figure 3 removes the side panel on one side of the frame 11 in

[0067] Specifically, in this embodiment, the automatic dispensing mechanism 102 includes: a dispenser 21, a mounting bracket 22, a glue supply pipe 23, a dispensing nozzle 24, and an electronic control valve 25. One end of the glue supply pipe 23 is connected to the dispenser 21, and the dispensing nozzle 24 is connected to the other end of the glue supply pipe 23. The electronic control valve 25 is installed on the glue supply pipe 23 to control the flow rate of the dispensed glue. The mounting bracket 22 is installed on the frame 11, and the dispensing nozzle 24 is installed on the mounting bracket 22 to be close to the workbench 12.

[0068] After the dispenser 21 is started, the glue inside can be transported through the glue supply pipe 23 to the dispensing nozzle 24. Due to the existence of the mounting bracket 22, the staff can pre-align the dispensing nozzle 24 at the position where the glue needs to be cured, and then control the amount of glue dispensed each time through the electronic control valve 25 to achieve the effect of fully automatic dispensing.

[0069] To facilitate the adjustment of the position of the dispensing nozzle 24, the main body of the mounting bracket 22 is a gantry frame. A vertical rod is horizontally slidably assembled on the gantry frame, and a clamping seat for installing the dispensing nozzle 24 is vertically slidably assembled on the vertical rod. The clamping seat is used for installing and fixing the dispensing nozzle 24, and the dispensing nozzle 24 and the clamping seat can be rotationally adjusted.

[0070] In this embodiment, the glue curing mechanism 103 includes a hose 31 that can be freely bent and adjusted, and a UV violet curing lamp 32. One end of the hose 31 is installed on the frame 11, and the UV violet curing lamp 32 is installed on the other end of the hose 31. The hose 31 can be a composite pipe with metal inside and plastic wrapped outside. This kind of composite pipe is generally used in common lazy bed head brackets. While the hose 31 can be freely bent, it also has a certain shaping and fixing effect so that the UV violet curing lamp 32 can be fixed at the required position.

[0071] In this embodiment, the dispenser 21 is installed inside the frame 11, and a power supply 104 is also installed below the dispenser 21. The power supply 104 is used to provide electrical energy for the laser alignment adjustment mechanism 101, the dispenser 21, and the UV violet curing lamp 32.

[0072] After the alignment and calibration work is completed, the automatic dispensing mechanism 102 is turned on, and glue can be dropped between the aligned light-emitting module 300 and the housing 200. Then, the glue curing mechanism 103 is turned on, which can quickly cure the dropped glue, thereby achieving the purpose of assembling and fixing the light-emitting module 300 and the housing 200, and the production and assembly efficiency is higher.

[0073] The above are only the preferred embodiments of the present application, and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A core alignment adjustment mechanism for a laser lamp, characterized in that Comprising: A frame (11), a workbench (12) mounted on the frame (11), a core fine-tuning unit (13), a first baffle (14), a first photographing unit (15), a second baffle (16), a second photographing unit (17), and a picture display unit (18); Wherein, the workbench (12) is used for fixing the housing (200) of the laser lamp and is provided with a through hole for light to pass through. The core fine-tuning unit (13) is used for detachably plugging and fixing and electrically connecting the light-emitting module (300) of the laser lamp. The first baffle (14) is arranged at an interval from the workbench (12) and is provided with a calibration perforation. The first photographing unit (15) is used for photographing the picture near the calibration perforation. The second baffle (16) is arranged at an interval on the side of the first baffle (14) away from the workbench (12). A calibration bull's-eye is provided on the second baffle (16). The calibration bull's-eye, the calibration perforation, and the through hole are located on a straight line. The second photographing unit (17) is used for photographing the picture near the calibration bull's-eye. The picture display unit (18) is electrically connected to the first photographing unit (15) and the second photographing unit (17).

2. The laser lamp core adjustment mechanism according to claim 1, wherein, The core fine-tuning unit (13) includes: a hand-operated universal joint (131) and a tubular socket (132). The tubular socket (132) is mounted at one end of the hand-operated universal joint (131). Conductive wires for realizing electrical connection are arranged inside the tubular socket (132). An insertion port for plugging the light-emitting module (300) is provided at the end of the tubular socket (132) away from the hand-operated universal joint (131). An adjustment knob (133) is provided at the end of the hand-operated universal joint (131) away from the tubular socket (132).

3. The core alignment adjustment mechanism of the laser lamp according to claim 2, characterized in that A calibration adjustment seat (19) for mounting the core fine-tuning unit (13) is provided on the frame (11). The calibration adjustment seat (19) includes: a fixed seat (191), a first seat (192) for mounting the tubular socket (132), and a second seat (193) for mounting the hand-operated universal joint (131). The first seat (192) is adjustably mounted on the fixed seat (191) along the straight line direction. The second seat (193) is adjustably mounted on the first seat (192) along the direction perpendicular to the straight line. The workbench (12) is parallel to the direction perpendicular to the straight line.

4. The laser lamp core adjustment mechanism according to claim 3, characterized in that, The second seat (193) includes: a first plate (1931) arranged along the straight line direction and a second plate (1932) perpendicular to the straight line direction. The second plate (1932) is adjustably mounted on the first plate (1931) along the straight line direction. The second plate (1932) and the workbench (12) are arranged in parallel. The end of the hand-operated universal joint (131) near the adjustment knob (133) is mounted on the end of the second plate (1932) away from the first plate (1931).

5. The laser lamp core adjustment mechanism according to claim 1, characterized in that, The first photographing unit (15) includes: a first bracket (151) and a first camera (152). The first bracket (151) is mounted on the frame (11) and arranged at an interval adjacent to the first baffle (14), and the first camera (152) is mounted on the first bracket (151).

6. The laser lamp core alignment mechanism according to claim 1, characterized in that, The second photographing unit (17) includes: a second bracket (171) and a second camera (172). The second bracket (171) is mounted on the frame (11) and arranged at an interval adjacent to the second baffle (16), and the second camera (172) is mounted on the second bracket (171).

7. The core alignment adjusting mechanism of the laser lamp according to claim 1, characterized in that, The picture display unit (18) includes a screen base (181), a first display screen (182) and a second display screen (183). The screen base (181) is mounted on the frame (11) and arranged on one side of the workbench (12). A slope is provided on one side of the screen base (181) facing the workbench (12). The first display screen (182) and the second display screen (183) are both mounted on the slope. The first display screen (182) is electrically connected to the first photographing unit (15) and is used to display the picture taken by the first photographing unit (15), and the second display screen (183) is electrically connected to the second photographing unit (17) and is used to display the picture taken by the second photographing unit (17).

8. A laser lamp core-point glue injection instant curing device, characterized in that, Comprising: The laser lamp core alignment adjusting mechanism (101) according to any one of claims 1-7; An automatic dispensing mechanism (102), arranged on one side of the laser lamp core alignment adjusting mechanism (101) and used to fix the core-aligned light-emitting module (300) in the housing (200); and, Two groups of glue curing mechanisms (103), the two groups of glue curing mechanisms (103) are respectively located on two opposite sides of the laser lamp core alignment adjusting mechanism (101), and the glue curing mechanism (103) is used to irradiate to accelerate the glue curing speed.

9. The instant curing device for core dot gluing irradiation by a laser lamp according to claim 8, wherein, The automatic dispensing mechanism (102) includes: a dispenser (21), a mounting bracket (22), a glue delivery pipe (23), a dispensing nozzle (24) and an electronic control valve (25). One end of the glue delivery pipe (23) is connected to the dispenser (21), the dispensing nozzle (24) is connected to the other end of the glue delivery pipe (23), the electronic control valve (25) is mounted on the glue delivery pipe (23) to control the flow rate of dispensing, the mounting bracket (22) is mounted on the frame (11), and the dispensing nozzle (24) is mounted on the mounting bracket (22) to be close to the workbench (12).

10. The instant curing device for core point glue irradiation by a laser lamp according to claim 8, characterized in that, The glue curing mechanism (103) includes a hose (31) that can be freely bent and adjusted and a UV violet curing lamp (32). One end of the hose (31) is mounted on the frame (11), and the UV violet curing lamp (32) is mounted on the other end of the hose (31).

Citation Information

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