A storage device for easily storing a semiconductor laser device and a storage method thereof

By designing a storage device with angle adjustment, fixed shock absorption, and locking sealing mechanisms, the problems of high installation cost, inability to fine-tune, and lack of shock absorption protection of semiconductor lasers are solved, enabling convenient installation, precise adjustment, and efficient replacement, thereby improving service life and stability.

CN118083328BActive Publication Date: 2026-02-10WEIFANG HUAGUANG OPTOELECTRONICS CO LTD
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Patent Information

Application Number
CN202410323173.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-03-20
Publication Date
2026-02-10
Estimated Expiration
2044-03-20

AI Technical Summary

Technical Problem

The current installation method of semiconductor lasers results in high operating costs, lack of fine-tuning, and insufficient shock absorption, which affects the accuracy and lifespan of the lasers.

Method used

A storage device comprising an angle adjustment mechanism, a fixed shock absorption mechanism, and a locking and sealing mechanism was designed. Angle adjustment is achieved through a screw and a sliding sleeve, the laser is fixed using a fixing component and shock-absorbing foam, and a tension spring and a locking plate enable convenient replacement.

Benefits of technology

It enables convenient installation and fine-tuning of the laser, improves the accuracy and stability of use, reduces the difficulty of replacement and maintenance time, enhances shock absorption protection, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of industrial lasers, and discloses a storage device convenient for placing semiconductor laser devices, which comprises a semiconductor laser and a storage box body, the lower end of the semiconductor laser is provided with a laser light source, and the upper end of the semiconductor laser is provided with a connecting line. The storage device convenient for placing semiconductor laser devices and a storage method thereof are characterized in that the bevel gear can be matched with the lower end of the clamping plate, at this time, the clamping plate can always lock the arc-shaped plate under the action of the tension spring, at this time, the shock-absorbing sponge can be in contact with the top of the semiconductor laser, so that the semiconductor laser is fixed firmly through elastic deformation of the shock-absorbing sponge, at this time, the semiconductor laser is completely limited and cannot shake, so that the vibration and interference of the external environment can be isolated outside the storage box body when the semiconductor laser is used, and the working environment of the semiconductor laser can be effectively guaranteed.
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Description

Technical Field

[0001] This invention relates to the field of industrial laser technology, specifically to a storage device and storage method for facilitating the placement of semiconductor laser devices. Background Technology

[0002] Semiconductor diode lasers are the most practical and important type of laser. They are small in size, have a long lifespan, and can be pumped by a simple injection current. Their operating voltage and current are compatible with integrated circuits, so they can be monolithically integrated with them.

[0003] The laser contains a light source, lens, and other components, which are fixed together with bolts. An integrated outer casing protects the device. When a malfunction occurs, the entire device must be replaced due to the integrated casing and the fixed connections between components. This results in high operating costs, and the inability to fine-tune the device after installation negatively impacts its accuracy. Furthermore, the laser lacks shock absorption and protection, failing to adequately safeguard the laser. Summary of the Invention

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this invention provides a storage device and storage method for facilitating the placement of semiconductor laser devices. It offers advantages such as easy placement of lasers, effective protection of lasers, and ease of fine-tuning, thus solving the problems of lasers not being able to be fine-tuned after installation, lacking shock absorption and protection functions, and failing to adequately protect the lasers within.

[0006] (II) Technical Solution

[0007] To achieve the above-mentioned goals of facilitating laser placement, effectively protecting the laser, and facilitating fine-tuning, the present invention provides the following technical solution: a storage device for facilitating the placement of semiconductor laser devices, comprising a semiconductor laser and a storage box, wherein the lower end of the semiconductor laser is provided with a laser light source, the upper end of the semiconductor laser is provided with a connecting line, the semiconductor laser is located inside the storage box, and a top cover is rotatably connected to the opening of the storage box;

[0008] The storage box is equipped with an angle adjustment mechanism, a fixed shock absorption mechanism, and a locking and sealing mechanism.

[0009] The angle adjustment mechanism includes a fixed column, which is fixedly connected to the center of the outer surface of the storage box, and a mounting plate is rotatably connected to the outer surface of the fixed column.

[0010] Among them, the side of the mounting plate closest to the storage box is fixedly connected to two fixed slide rails, and a moving block is slidably connected between the two fixed slide rails. Both ends of the two fixed slide rails are fixedly connected to screw fixing plates.

[0011] Among them, a screw is rotatably connected between the two screw fixing plates, the screw is threadedly connected to the moving block, and one end of the screw rotatably passes through the outer surface of the screw fixing plate and is rotatably connected to an adjustment handle;

[0012] Among them, a moving slide rail is fixedly connected to the semiconductor laser on the side of the storage box near the mounting plate. A sliding sleeve is slidably connected to the outer surface of the moving slide rail, and the sliding sleeve is rotatably connected to the moving block.

[0013] Preferably, the locking and sealing mechanism includes an arc-shaped plate, and a plurality of helical teeth are fixedly connected to the inner arc surface of the arc-shaped plate, and the plurality of helical teeth are evenly distributed at equal intervals on the inner arc surface of the arc-shaped plate.

[0014] Preferably, both sides of the storage box are fixedly connected to a fixed shaft, and the outer surface of the fixed shaft is rotatably fitted with a retaining plate, the lower end of the two retaining plates being adapted to the corresponding helical teeth.

[0015] Preferably, a pull rod is fixedly connected to the outer surface of both of the two plates, and a connecting crossbar is fixedly connected between the two pull rods.

[0016] Preferably, tension spring fixing posts are fixedly connected to both sides of the storage box, and tension springs are fixedly connected between the two tension spring fixing posts and the corresponding pulling rods.

[0017] Preferably, the locking and sealing mechanism includes multiple fixing components, which are evenly distributed at equal intervals and located inside the storage box.

[0018] Preferably, the fixing component includes a fixing ring, which is fixedly connected to the inner wall of the storage box, and the lower end of the fixing ring is fixedly connected to a plurality of arched spring plates for preventing the semiconductor laser from swaying left and right.

[0019] Preferably, a sealing ring for sealing the storage box and the laser light source is fixedly connected to the lower opening of the storage box, a shock-absorbing sponge for preventing the semiconductor laser from shaking up and down is fixedly connected inside the upper cover, a fixing groove for fixing the connecting wire is opened on the outer surface of the upper cover, and a fixing seat corresponding to the fixing groove is integrally formed at the opening of the storage box.

[0020] A storage method that facilitates the placement of semiconductor laser devices:

[0021] S1: When in use, the semiconductor laser is placed into the storage box until the laser light source on it can be matched with the pull rod. At this time, multiple fixing components will initially fix the semiconductor laser.

[0022] S2: Then close the top cover so that the helical teeth on the arc plate can match the lower end of the card plate. At this time, the card plate can always lock the arc plate under the action of the tension spring. At this time, the shock-absorbing sponge will come into contact with the top of the semiconductor laser, thereby generating elastic deformation and fixing the semiconductor laser firmly. At this time, the semiconductor laser is completely restricted from shaking, so that external vibrations and interference can be isolated from the storage box when the semiconductor laser is used.

[0023] S3: When it is necessary to replace the semiconductor laser, by pulling the connecting crossbar, the connecting crossbar will drive the clamping plate to rotate around the axis of the fixed shaft. At the same time, the tension spring will be stretched and deformed, which will allow the clamping plate to release the locking of the arc plate. At this time, the top cover can be opened, and the semiconductor laser can be easily taken out for replacement. The operation of the above structure makes it easy to replace the semiconductor laser.

[0024] (III) Beneficial Effects

[0025] Compared with the prior art, the present invention provides a storage device that facilitates the placement of semiconductor laser devices, and has the following beneficial effects:

[0026] 1. This storage device, which facilitates the placement of semiconductor laser devices, involves placing the semiconductor laser into the storage box until its light source aligns with the pull rod. At this point, multiple fixing components initially secure the semiconductor laser. Then, the top cover is closed, allowing the helical teeth on the curved plate to align with the lower end of the clamping plate. The clamping plate, under the action of a tension spring, keeps the curved plate locked. Meanwhile, the shock-absorbing foam contacts the top of the semiconductor laser, causing elastic deformation to firmly fix the semiconductor laser. The semiconductor laser is completely immobilized and will not shake. This isolates the semiconductor laser from external vibrations and interference during use, effectively ensuring the working environment of the semiconductor laser.

[0027] 2. This storage device and its storage method facilitate the placement of semiconductor laser devices. When the angle of the semiconductor laser needs to be adjusted, the adjustment handle is turned, which drives the screw on it to rotate, allowing the moving block to move left and right. At this time, the moving block will drive the moving slide rail and the storage box to rotate around the axis of the fixed column through the sliding sleeve on it, until the angle of the semiconductor laser in the storage box can be effectively adjusted. This significantly improves the flexibility of the semiconductor laser and ensures the installation accuracy of the semiconductor laser under different conditions, avoiding the problem of low accuracy of the semiconductor laser caused by improper installation.

[0028] 3. This storage device and method for facilitating the placement of semiconductor laser devices allows for easy replacement of the semiconductor laser when the connecting crossbar is pulled. The crossbar causes the clamping plate to rotate around the axis of the fixed shaft, while the tension spring is stretched and deformed, allowing the clamping plate to release the locking of the arc plate. At this point, the top cover can be opened, and the semiconductor laser can be easily removed for replacement. The operation of the above structure enables the semiconductor laser to be easily replaced, improving the efficiency of replacing semiconductor lasers to a certain extent and saving time in the maintenance of semiconductor lasers.

[0029] 4. This storage device and method for facilitating the placement of semiconductor laser devices, through the combined use of the fixed base and the fixed slot, can effectively fix the connecting wires on the semiconductor laser. This avoids damage to the insulation layer of the wires caused by messy and disordered connecting wires or random bending, and also ensures that the shaking of the connecting wires will not affect the normal operation of the semiconductor laser. It also avoids the problem of easy breakage at the connection between the connecting wires and the semiconductor laser caused by excessive shaking of the connecting wires. This not only improves the working environment but also facilitates maintenance and management.

[0030] 5. The storage device and storage method for facilitating the placement of semiconductor laser devices, through the fixed shock-absorbing mechanism, enables the force to be transmitted from the arched spring plate and shock-absorbing sponge to the semiconductor laser when the storage box is subjected to collision or shaking. The buffering and shock absorption by the arched spring plate, shock-absorbing sponge, and tension spring ensures that the force ultimately acting on the semiconductor laser is negligible, preventing significant damage to the semiconductor laser and improving its service life and operational stability to a certain extent. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0032] Figure 2 This is a schematic diagram of the structure when the present invention is opened;

[0033] Figure 3 This is a schematic diagram of the internal structure of the present invention;

[0034] Figure 4 This is a schematic diagram of the fixed component structure of the present invention;

[0035] Figure 5 For the present invention Figure 1 Enlarged view of point A in the middle;

[0036] Figure 6 This is a schematic diagram of the back structure of the present invention;

[0037] Figure 7 For the present invention Figure 3 Enlarged view of point C in the middle;

[0038] Figure 8 For the present invention Figure 6 Enlarged diagram of point B in the middle.

[0039] In the diagram: 1. Semiconductor laser; 2. Laser light source; 3. Connecting wire; 4. Storage box; 5. Top cover; 6. Mounting plate; 7. Fixed slide rail; 8. Screw fixing plate; 9. Moving block; 10. Screw; 11. Adjusting handle; 12. Moving slide rail; 13. Sliding sleeve; 14. Arc plate; 15. Helical tooth; 16. Fixed shaft; 17. Clamping plate; 18. Pulling rod; 19. Connecting crossbar; 20. Tension spring fixing post; 21. Fixing post; 22. Fixing seat; 23. Fixing groove; 24. Fixing ring; 25. Arched spring plate; 26. Shock-absorbing sponge; 27. Tension spring; 28. Sealing ring. Detailed Implementation

[0040] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0041] Please see Figure 1-8 The present invention provides a new technical solution: a storage device for facilitating the placement of semiconductor laser devices, comprising a semiconductor laser 1 and a storage box 4, wherein a laser light source 2 is provided at the lower end of the semiconductor laser 1, a connecting line 3 is provided at the upper end of the semiconductor laser 1, the semiconductor laser 1 is located inside the storage box 4, and a top cover 5 is rotatably connected to the opening of the storage box 4.

[0042] Furthermore, the storage box 4 is provided with an angle adjustment mechanism, a fixed shock absorption mechanism, and a locking sealing mechanism. The angle adjustment mechanism includes a fixed column 21, which is fixedly connected to the center of the outer surface of the storage box 4. The outer surface of the fixed column 21 is rotatably connected to an mounting plate 6.

[0043] Furthermore, two fixed slide rails 7 are fixedly connected to the side of the mounting plate 6 near the storage box 4, and a moving block 9 is slidably connected between the two fixed slide rails 7. Both ends of the two fixed slide rails 7 are fixedly connected to screw fixing plates 8.

[0044] Furthermore, a screw 10 is rotatably connected between the two screw fixing plates 8. The screw 10 is threadedly connected to the moving block 9. One end of the screw 10 rotatably passes through the outer surface of the screw fixing plate 8 and is rotatably connected to an adjustment handle 11.

[0045] Furthermore, on the side of the storage box 4 near the mounting plate 6, a semiconductor laser 1 is fixedly connected to a sliding rail 12, and a sliding sleeve 13 is slidably connected to the outer surface of the sliding rail 12. The sliding sleeve 13 is rotatably connected to the moving block 9.

[0046] Furthermore, the locking and sealing mechanism includes an arc-shaped plate 14, on which a plurality of helical teeth 15 are fixedly connected, and the plurality of helical teeth 15 are evenly distributed at equal intervals on the inner arc surface of the arc-shaped plate 14.

[0047] Furthermore, both sides of the storage box 4 are fixedly connected to a fixed shaft 16, and the outer surface of the fixed shaft 16 is rotatably fitted with a clamping plate 17. The lower ends of the two clamping plates 17 are adapted to the corresponding helical teeth 15.

[0048] Furthermore, pull rods 18 are fixedly connected to the outer surfaces of both plates 17, and a connecting crossbar 19 is fixedly connected between the two pull rods 18.

[0049] Furthermore, tension spring fixing posts 20 are fixedly connected to both sides of the storage box 4, and tension springs 27 are fixedly connected between the two tension spring fixing posts 20 and the corresponding pulling rods 18.

[0050] Furthermore, the locking and sealing mechanism includes multiple fixing components, which are evenly distributed at equal intervals and located inside the storage box 4.

[0051] Furthermore, the fixing component includes a fixing ring 24, which is fixedly connected to the inner wall of the storage box 4. The lower end of the fixing ring 24 is fixedly connected to a plurality of arched spring plates 25 for preventing the semiconductor laser 1 from swaying left and right.

[0052] Furthermore, a sealing ring 28 for sealing the storage box 4 and the laser light source 2 is fixedly connected to the lower opening of the storage box 4. A shock-absorbing sponge 26 for preventing the semiconductor laser 1 from shaking up and down is fixedly connected inside the upper cover 5. A fixing groove 23 for fixing the connecting wire 3 is opened on the outer surface of the upper cover 5. A fixing seat 22 corresponding to the fixing groove 23 is integrally formed at the opening of the storage box 4.

[0053] Furthermore, during use, the semiconductor laser 1 is placed inside the storage box 4 until the laser light source 2 on it can be matched with the pull rod 18. At this time, multiple fixing components will initially fix the semiconductor laser 1. Then, the top cover 5 is closed so that the helical teeth 15 on the arc plate 14 can be matched with the lower end of the clamping plate 17. At this time, the clamping plate 17 can always lock the arc plate 14 under the action of the tension spring 27. At this time, the shock-absorbing sponge 26 will contact the top of the semiconductor laser 1, thereby generating elastic deformation and fixing the semiconductor laser 1 firmly. At this time, the semiconductor laser 1 is completely restricted from shaking, so that the external vibration and interference of the semiconductor laser 1 can be isolated outside the storage box 4 during use, so that the working environment of the semiconductor laser 1 can be effectively guaranteed.

[0054] Furthermore, when the angle of the semiconductor laser 1 needs to be adjusted, the adjustment handle 11 is rotated, which drives the screw 10 on it to rotate, so that the moving block 9 can move left and right. At this time, the moving block 9 will drive the moving slide rail 12 and the storage box 4 to rotate around the axis of the fixed column 21 through the sliding sleeve 13 on it, until the angle of the semiconductor laser 1 in the storage box 4 can be effectively adjusted. This significantly improves the flexibility of the semiconductor laser 1, and ensures that the installation accuracy of the semiconductor laser 1 can be effectively guaranteed under different conditions, avoiding the problem of low accuracy of the semiconductor laser 1 caused by improper installation.

[0055] Furthermore, when it is necessary to replace the semiconductor laser 1, by pulling the connecting crossbar 19, the connecting crossbar 19 will drive the clamping plate 17 to rotate around the axis of the fixed shaft 16. At the same time, the tension spring 27 will be stretched and deformed, which will allow the clamping plate 17 to release the lock on the arc plate 14. At this time, the top cover 5 can be opened, and the semiconductor laser 1 can be easily taken out for replacement. The operation of the above structure makes it easy to replace the semiconductor laser 1, which improves the efficiency of replacing the semiconductor laser 1 to a certain extent and saves the time of repairing the semiconductor laser 1.

[0056] Furthermore, the use of the fixed base 22 and the fixed groove 23 together can effectively fix the connecting wire 3 on the semiconductor laser 1. This avoids damage to the insulation layer of the wires caused by messy and disordered connecting wires 3 and random bending. It also ensures that the shaking of the connecting wire 3 will not affect the normal operation of the semiconductor laser 1, and avoids the problem of easy breakage at the connection between the connecting wire 3 and the semiconductor laser 1 caused by excessive shaking of the connecting wire 3. This not only improves the working environment but also facilitates maintenance and management.

[0057] Furthermore, the fixed shock absorption mechanism ensures that when the storage box 4 is subjected to collision or shaking, the force can be transmitted from the arched spring plate 25 and the shock-absorbing sponge 26 to the semiconductor laser 1. The buffering and shock absorption by the arched spring plate 25, the shock-absorbing sponge 26, and the tension spring 27 ensures that the force acting on the semiconductor laser 1 is negligible, and will not cause too much damage to the semiconductor laser 1. This improves the service life and operational stability of the semiconductor laser 1 to a certain extent.

[0058] A storage method that facilitates the placement of semiconductor laser devices:

[0059] S1: When in use, the semiconductor laser 1 is placed into the storage box 4 until the laser light source 2 on it can be matched with the pull rod 18. At this time, multiple fixing components will initially fix the semiconductor laser 1.

[0060] S2: Then close the top cover 5 so that the helical teeth 15 on the arc plate 14 can be matched with the lower end of the card plate 17. At this time, the card plate 17 can always lock the arc plate 14 under the action of the tension spring 27. At this time, the shock-absorbing sponge 26 will contact the top of the semiconductor laser 1, thereby generating elastic deformation and fixing the semiconductor laser 1 firmly. At this time, the semiconductor laser 1 is completely restricted from shaking, so that the external vibration and interference of the semiconductor laser 1 can be isolated from the storage box 4 when it is in use.

[0061] S3: When it is necessary to replace the semiconductor laser 1, by pulling the connecting crossbar 19, the connecting crossbar 19 will drive the clamping plate 17 to rotate around the axis of the fixed shaft 16. At the same time, the tension spring 27 is stretched and deformed, which allows the clamping plate 17 to release the lock on the arc plate 14. At this time, the top cover 5 can be opened, and the semiconductor laser 1 can be easily taken out for replacement.

[0062] Working principle: When in use, the semiconductor laser 1 is placed into the storage box 4 until the laser light source 2 on it can be matched with the pull rod 18. At this time, multiple fixing components will initially fix the semiconductor laser 1. Then, the top cover 5 is closed so that the helical teeth 15 on the arc plate 14 can be matched with the lower end of the clamping plate 17. At this time, the clamping plate 17 can always lock the arc plate 14 under the action of the tension spring 27. At this time, the shock-absorbing sponge 26 will contact the top of the semiconductor laser 1, thereby generating elastic deformation and fixing the semiconductor laser 1 firmly. At this time, the semiconductor laser 1 is completely restricted from shaking, so that the external vibration and interference of the semiconductor laser 1 can be isolated outside the storage box 4 during use, so that the working environment of the semiconductor laser 1 can be effectively guaranteed.

[0063] Furthermore, when the angle of the semiconductor laser 1 needs to be adjusted, the adjustment handle 11 is rotated, which drives the screw 10 on it to rotate, so that the moving block 9 can move left and right. At this time, the moving block 9 will drive the moving slide rail 12 and the storage box 4 to rotate around the axis of the fixed column 21 through the sliding sleeve 13 on it, until the angle of the semiconductor laser 1 in the storage box 4 can be effectively adjusted. This significantly improves the flexibility of the semiconductor laser 1, and ensures that the installation accuracy of the semiconductor laser 1 can be effectively guaranteed under different conditions, avoiding the problem of low accuracy of the semiconductor laser 1 caused by improper installation.

[0064] Furthermore, when it is necessary to replace the semiconductor laser 1, by pulling the connecting crossbar 19, the connecting crossbar 19 will drive the clamping plate 17 to rotate around the axis of the fixed shaft 16. At the same time, the tension spring 27 will be stretched and deformed, which will allow the clamping plate 17 to release the lock on the arc plate 14. At this time, the top cover 5 can be opened, and the semiconductor laser 1 can be easily taken out for replacement. The operation of the above structure makes it easy to replace the semiconductor laser 1, which improves the efficiency of replacing the semiconductor laser 1 to a certain extent and saves the time of repairing the semiconductor laser 1.

[0065] Furthermore, the use of the fixed base 22 and the fixed groove 23 together can effectively fix the connecting wire 3 on the semiconductor laser 1. This avoids damage to the insulation layer of the wires caused by messy and disordered connecting wires 3 and random bending. It also ensures that the shaking of the connecting wire 3 will not affect the normal operation of the semiconductor laser 1, and avoids the problem of easy breakage at the connection between the connecting wire 3 and the semiconductor laser 1 caused by excessive shaking of the connecting wire 3. This not only improves the working environment but also facilitates maintenance and management.

[0066] Furthermore, the fixed shock-absorbing mechanism ensures that when the storage box 4 is subjected to collision or shaking, the force can be transmitted from the arched spring plate 25 and the shock-absorbing sponge 26 to the semiconductor laser 1. The cushioning and shock absorption by the arched spring plate 25, the shock-absorbing sponge 26, and the tension spring 27 minimizes the force acting on the semiconductor laser 1, preventing significant damage and improving its lifespan and operational stability to a certain extent. Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A storage device for facilitating the placement of a semiconductor laser device, comprising a semiconductor laser (1) and a storage housing (4), wherein a laser light source (2) is provided at the lower end of the semiconductor laser (1), a connecting line (3) is provided at the upper end of the semiconductor laser (1), and the semiconductor laser (1) is located inside the storage housing (4), characterized in that: The storage box (4) is rotatably connected to the top cover (5) at the opening. The storage box (4) is provided with an angle adjustment mechanism, a fixed shock absorption mechanism, and a locking sealing mechanism. The angle adjustment mechanism includes a fixed column (21), which is fixedly connected to the center of the outer surface of the storage box (4), and the outer surface of the fixed column (21) is rotatably connected to a mounting plate (6). Among them, the mounting plate (6) is fixedly connected to two fixed slide rails (7) on the side close to the storage box (4), and a moving block (9) is slidably connected between the two fixed slide rails (7). Both ends of the two fixed slide rails (7) are fixedly connected to screw fixing plates (8). Among them, a screw (10) is rotatably connected between the two screw fixing plates (8), the screw (10) is threadedly connected to the moving block (9), and one end of the screw (10) rotatably passes through the outer surface of the screw fixing plate (8) and is rotatably connected to the adjusting handle (11). Among them, the semiconductor laser (1) on the side of the storage box (4) near the mounting plate (6) is fixedly connected to a movable slide rail (12), and a sliding sleeve (13) is slidably connected to the outer surface of the movable slide rail (12). The sliding sleeve (13) is rotatably connected to the movable block (9).

2. The storage device for convenient placement of semiconductor laser devices according to claim 1, characterized in that: The locking and sealing mechanism includes an arc plate (14), and multiple helical teeth (15) are fixedly connected to the inner arc surface of the arc plate (14). The multiple helical teeth (15) are evenly distributed at equal intervals on the inner arc surface of the arc plate (14).

3. The storage device for convenient placement of semiconductor laser devices according to claim 2, characterized in that: Both sides of the storage box (4) are fixedly connected to a fixed shaft (16), and the outer surface of the fixed shaft (16) is rotatably fitted with a clamping plate (17). The lower ends of the two clamping plates (17) are adapted to the corresponding helical teeth (15).

4. The storage device for convenient placement of semiconductor laser devices according to claim 3, characterized in that: Pull rods (18) are fixedly connected to the outer surfaces of the two plates (17), and a connecting crossbar (19) is fixedly connected between the two pull rods (18).

5. A storage device for convenient placement of semiconductor laser devices according to claim 4, characterized in that: Both sides of the storage box (4) are fixedly connected with tension spring fixing posts (20), and tension springs (27) are fixedly connected between the two tension spring fixing posts (20) and the corresponding pulling rods (18).

6. A storage device for convenient placement of semiconductor laser devices according to claim 1, characterized in that: The locking and sealing mechanism includes multiple fixing components, which are evenly distributed at equal intervals and located inside the storage box (4).

7. A storage device for convenient placement of semiconductor laser devices according to claim 6, characterized in that: The fixing component includes a fixing ring (24), which is fixedly connected to the inner wall of the storage box (4). The lower end of the fixing ring (24) is fixedly connected to a plurality of arched spring plates (25) for preventing the semiconductor laser (1) from swaying left and right.

8. A storage device for convenient placement of semiconductor laser devices according to claim 5, characterized in that: The lower opening of the storage box (4) is fixedly connected with a sealing ring (28) for sealing the storage box (4) and the laser light source (2). The upper cover (5) is fixedly connected with a shock-absorbing sponge (26) for preventing the semiconductor laser (1) from shaking up and down. The outer surface of the upper cover (5) is provided with a fixing groove (23) for fixing the connecting line (3). The opening of the storage box (4) is integrally formed with a fixing seat (22) corresponding to the fixing groove (23).

9. The storage method of a storage device for facilitating the placement of semiconductor laser devices according to claim 8, characterized in that: S1: When in use, the semiconductor laser (1) is placed into the storage box (4) until the laser light source (2) on it can be matched with the pull rod (18). At this time, multiple fixing components will initially fix the semiconductor laser (1). S2: Then close the top cover (5), so that the helical teeth (15) on the arc plate (14) can be matched with the lower end of the clamping plate (17). At this time, the clamping plate (17) can always lock the arc plate (14) under the action of the tension spring (27), and the shock-absorbing sponge (26) will contact the top of the semiconductor laser (1), thereby generating elastic deformation and fixing the semiconductor laser (1) firmly. At this time, the semiconductor laser (1) is completely restricted from shaking, so that the semiconductor laser... When the optical device (1) is in use, external vibrations and interference can be isolated outside the storage box (4); S3: When it is necessary to replace the semiconductor laser (1), by pulling the connecting crossbar (19), the connecting crossbar (19) will drive the card plate (17) to rotate around the axis of the fixed shaft (16), and at the same time the tension spring (27) will be stretched and deformed, so that the card plate (17) can release the lock on the arc plate (14). At this time, the top cover (5) can be opened, and the semiconductor laser (1) can be easily taken out for replacement.

Citation Information

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