Fast-assembly toxic gas detection device
The toxic gas detection device with a quick-installation design utilizes a screw mechanism and guide groove structure to achieve rapid lateral movement and convenient assembly of the toxic gas detector, solving the problem of complex installation in existing technologies and improving work efficiency and assembly convenience.
Patent Information
- Application Number
- CN202520356282.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-02-28
AI Technical Summary
The installation of toxic gas detection devices in existing lithium battery factories is complicated, making disassembly and maintenance inconvenient and affecting work efficiency.
The quick-installation design utilizes a screw mechanism and guide groove structure, enabling the toxic gas detector to move quickly laterally and be easily assembled via connecting columns and positioning grooves. Combined with the adhesive fixing of protective pads and mounting plates, the installation process is simplified.
It improves the assembly efficiency of toxic gas detectors, simplifies the installation and disassembly process, enhances the convenience of assembly and protection capabilities, and is suitable for the rapid installation needs of large-area lithium battery factories.
Smart Images

Figure CN223966544U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toxic gas detection technology, specifically a quick-install toxic gas detection device. Background Technology
[0002] Lithium battery factories are facilities specifically designed for the production of lithium batteries. Their design and construction must meet the specific requirements of lithium battery production, including cleanliness, temperature, and humidity control. To ensure smooth production and product safety, materials with high strength, good flatness, fire safety compliance, and excellent structural sealing are required. Because lithium batteries produced in these factories are susceptible to thermal runaway, releasing toxic gases during this process poses a serious threat to human health and the environment. Therefore, most lithium battery factories require toxic gas detection devices. Currently, due to the large area of these factories, multiple toxic gas detection devices are typically needed. To ensure their proper functioning, regular maintenance or replacement is required. Currently, toxic gas detectors are usually installed using screws for drilling and fixing, which is difficult to disassemble and inconvenient for workers. Utility Model Content
[0003] The purpose of this invention is to provide a quick-install toxic gas detection device to solve the technical problems mentioned in the background section.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a quick-install toxic gas detection device.
[0005] It includes a fixedly installed regulating box and a toxic gas detector. The regulating box is equipped with an assembly block, and one end of the toxic gas detector is inserted into the assembly block.
[0006] Preferably, one end of the assembly block is connected to a lead screw device that is laterally arranged inside the regulating box, and the lead screw device causes the toxic gas detector to move linearly along the regulating box.
[0007] Preferably, the lead screw device includes a threaded rod and a threaded block that are fitted together, the threaded block being connected to the assembly block via a guide post; the toxic gas detector is inserted into the mounting slot of the assembly block via a connecting post at the bottom; the guide post passes through a guide groove opened at the top of the regulating box.
[0008] Preferably, the connecting column has a mounting hole, and a connecting pin that matches the mounting holes on the two sides of the assembly block is inserted into the mounting hole.
[0009] Preferably, a positioning post is fixed at the bottom of the slot, and a positioning groove is opened in the bottom of the connecting post, with the positioning post and the positioning groove corresponding to each other.
[0010] Preferably, an adhesive layer is fixed on both sides of the inner wall of the guide groove, and a buffer pad is fixed on the outside of the adhesive layer.
[0011] Preferably, a connecting groove is provided at the front and rear positions within the guide groove, and a ball bearing is embedded inside the groove.
[0012] Preferably, the outer diameter of the connecting post is smaller than the inner diameter of the mounting slot, and the inner diameter of the positioning groove is larger than the outer diameter of the positioning post.
[0013] Preferably, protective pads are bonded to the back ends of the side mounting plates on both sides of the regulating box and the bottom mounting plate at the bottom.
[0014] The beneficial effects of this utility model include:
[0015] (1) By setting the screw device in the regulating box, the toxic gas detector can be quickly moved laterally to the preset position of the staff for assembly, saving the time of the staff to repeatedly move and determine the installation position of the detector, and improving the assembly efficiency of the staff.
[0016] (2) By inserting the connecting post at the bottom of the toxic gas detector into the mounting slot in the assembly block, the assembly of the toxic gas detector is facilitated and the convenience of assembly is improved.
[0017] (3) By opening the guide groove in the top of the adjustment box, the buffer pad is glued and fixed to both sides of the guide groove using the adhesive layer. The guide column forms a guiding movement after passing through the guide groove. The front and rear positions of the guide groove are connected to the embedded groove. The embedded groove contains ball bearings. Therefore, when the guide column moves, the embedded groove and the ball bearings cooperate to form rolling protection. At the same time, the buffer pad forms anti-collision treatment on both sides. In this way, the overall adjustment and protection capability is improved in the working process.
[0018] (4) By fixing the side mounting plates to the back positions on both sides of the regulating box, and the bottom mounting plate to the back position at the bottom of the regulating box, mounting holes are opened in both the side mounting plates and the bottom mounting plates. The regulating box is assembled and fixed by mounting bolts. Then, the protective pad is glued and fixed to the back positions of the bottom mounting plate and the side mounting plates. A reserved hole is opened in the protective pad. The position of the reserved hole matches the mounting hole, so it does not hinder the connection and installation of the mounting bolts. In this way, the assembly protection capability of the contact surface is improved when assembling with the side mounting plates and the bottom mounting plates. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0020] Figure 2 This is a partial rear view schematic diagram of the regulating box of this utility model;
[0021] Figure 3 This is a partial frontal cross-sectional view of the assembly block of this utility model;
[0022] Figure 4 This is a partial top view cross-sectional structural diagram of the regulating box of this utility model.
[0023] In the diagram: 1. Adjustment box; 2. Bottom mounting plate; 3. Threaded block; 4. Threaded rod; 5. Guide groove; 6. Divider plate; 7. Servo motor; 8. Connecting column; 9. Toxic gas detector; 10. Assembly block; 11. Guide column; 12. Side mounting plate; 13. Reserved hole; 14. Protective pad; 15. Mounting hole; 16. Connecting pin; 17. Insertion hole; 18. Locking nut; 19. Positioning column; 20. Positioning groove; 21. Insertion slot; 22. Mounting bolt; 23. Adhesive layer; 24. Buffer pad; 25. Groove; 26. Ball bearing. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figures 1-4 This utility model provides an embodiment of a quick-install toxic gas detection device, comprising an adjustment box 1 and a toxic gas detector 9. A connecting post 8 is installed at the bottom of the toxic gas detector 9. Side mounting plates 12 are fixed on both sides of the adjustment box 1 near the back end. A bottom mounting plate 2 is fixed at the bottom of the adjustment box 1 near the back end. A partition plate 6 is installed on the right side of the adjustment box 1. A servo motor 7 is installed on the right side of the partition plate 6. A threaded rod 4 is installed on the left side of the partition plate 6. A threaded block 3 is connected to the outer wall of the threaded rod 4. A guide post 11 is installed at the top of the threaded block 3. A guide groove 5 is opened in the top of the adjustment box 1. An assembly block 10 is fixed at the top of the guide post 11. An installation slot 21 is opened in the top of the assembly block 10. A positioning post 19 is fixed at the bottom of the installation slot 21. A positioning groove 20 is opened in the bottom of the connecting post 8. An insertion hole 17 is opened in the connecting post 8. A connecting pin 16 is inserted into the insertion hole 17. Locking nuts 18 are connected to the outside of both sides of the connecting pin 16.
[0026] The adjustment box 1 is used to adjust the lateral position of the toxic gas detector 9. Specifically, the lateral position of the toxic gas detector 9 is adjusted to the point where the worker can quickly assemble it, so that the worker does not need to repeatedly move the entire detection device to determine the installation position. It is understood that if the position of the toxic gas detector 9 does not need to be adjusted, the adjustment box 1 and the threaded rod 4 and threaded block 3 inside the adjustment box 1 can be removed.
[0027] The threaded rod 4 and the threaded block 3 move together. The limiting of the threaded block 3 is accomplished by the guide post 11 and the guide groove 5. The lateral movement of the threaded block 3 is adjusted by rotating the threaded rod 4, thereby causing the guide post 11 connected to the threaded block 3 to move laterally along the guide groove 5.
[0028] The positioning grooves 20 are symmetrically distributed about the central axis of the connecting post 8, and the positioning posts 19 are symmetrically distributed about the central axis of the mounting slot 21.
[0029] The connecting pin 16 has external threads fixed on both sides, and the connecting pin 16 and the locking nut 18 form a threaded connection.
[0030] The outer diameter of the connecting post 8 is smaller than the inner diameter of the mounting slot 21, and the inner diameter of the positioning groove 20 is larger than the outer diameter of the positioning post 19.
[0031] The side mounting plates 12 are symmetrically distributed about the central axis of the adjusting box 1. Both the side mounting plates 12 and the bottom mounting plates 2 have mounting holes 15 inside, and mounting bolts 22 are connected inside the mounting holes 15.
[0032] Protective pads 14 are bonded to the back ends of both the bottom mounting plate 2 and the side mounting plate 12. Each protective pad 14 has a pre-drilled hole 13 inside, and the diameter of the pre-drilled hole 13 is larger than the diameter of the mounting hole 15.
[0033] An adhesive layer 23 is fixed on both sides of the inner wall of the guide groove 5, and a buffer pad 24 is fixed on one side of the adhesive layer 23.
[0034] The front and rear positions of the guide groove 5 are connected by a groove 25, and a ball bearing 26 is embedded in the groove 25;
[0035] Furthermore, in this embodiment of the invention, a conventional toxic gas detector 9 can be used to detect toxic gases in the surrounding atmosphere and serve as a safety warning. Generally, it can be used to detect gases such as carbon monoxide, hydrogen sulfide, and hydrogen.
[0036] Furthermore, insertion holes are provided on both sides of the assembly block 10, so that when the connecting post 8 is inserted into the insertion slot 21 in the assembly block 10, the insertion hole 17 is adapted to the insertion holes on both sides of the assembly block 10.
[0037] Working principle: First, based on the area information of the lithium battery factory, a suitable area is selected to assemble the regulating box 1. The side mounting pieces 12 are fixed to the back positions on both sides of the regulating box 1, while the bottom mounting pieces 2 are installed at the back position at the bottom of the regulating box 1. Mounting holes 15 are opened in both the side mounting pieces 12 and the bottom mounting pieces 2. The regulating box 1 is assembled and fixed using mounting bolts 22. When assembling the toxic gas detector 9, the connecting post 8 at the bottom of the toxic gas detector 9 can be inserted into the mounting slot 21 in the assembly block 10. First, the positioning post 19 and the positioning groove 20 are used to form a positioning guide. Then, the mounting hole 17 is adapted to the insertion holes on the two sides of the assembly block 10. After the connecting pin 16 is inserted, the locking nuts 18 are used to lock the connection on both sides. This completes the assembly of the toxic gas detector 9.
[0038] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
Claims
1. A quick-mounting toxic gas detection device, comprising a fixedly installed adjusting box (1) and a toxic gas detector (9), characterized in that, The adjusting box (1) is provided with an assembling block (10), one end of the toxic gas detector (9) is inserted with the assembling block (10), the bottom end of the toxic gas detector (9) is provided with a connecting column (8), the top of the assembling block (10) is provided with an inserting groove (21), and the connecting column (8) at the bottom of the toxic gas detector (9) is inserted into the inserting groove (21) in the assembling block (10).
2. The fast-mountable toxic gas detection device according to claim 1, characterized in that One end of the assembling block (10) is connected with a lead screw device arranged transversely in the adjusting box (1), and the lead screw device enables the toxic gas detector (9) to move linearly along the adjusting box (1) in the transverse direction.
3. The fast-mountable toxic gas detection device according to claim 2, characterized in that The lead screw device comprises a threaded rod (4) and a threaded block (3) arranged in cooperation, the threaded block (3) is connected with the assembling block (10) through a guide column (11), the toxic gas detector (9) is inserted into the inserting groove (21) in the assembling block (10) through the connecting column (8) at the bottom, and the guide column (11) penetrates through a guide groove (5) formed in the top of the adjusting box (1).
4. The fast-mountable toxic gas detection device according to claim 3, characterized in that The connecting column (8) is provided with an inserting hole (17), and a connecting pin (16) matched with the insertion holes at two side edges of the assembling block (10) is inserted into the inserting hole (17).
5. The fast-mountable toxic gas detection device according to claim 3, wherein The bottom end in the inserting groove (21) is fixedly provided with a positioning column (19), the bottom of the connecting column (8) is provided with a positioning groove (20), and the positioning column (19) and the positioning groove (20) are correspondingly arranged.
6. The fast-mountable toxic gas detection device according to claim 3, characterized in that The inner wall of the guide groove (5) is fixedly provided with an adhesive layer (23), and the outer side of the adhesive layer (23) is fixedly provided with a buffer pad (24).
7. The fast-mountable toxic gas detection device according to claim 3, characterized in that The front and rear positions in the guide groove (5) are provided with a communication embedding groove (25), and a ball (26) is embedded in the embedding groove (25).
8. The fast-mountable toxic gas detection device according to claim 3, characterized in that The outer diameter of the connecting column (8) is smaller than the inner diameter of the inserting groove (21), and the inner diameter of the positioning groove (20) is larger than the outer diameter of the positioning column (19).
9. The fast-mountable toxic gas detection device according to claim 1, wherein The back end positions of the side mounting plates (12) at two sides of the adjusting box (1) and the bottom mounting plate (2) at the bottom are all adhesively connected with protective pads (14).