Installation structure of trunking lamp
By designing a sliding connection foot assembly and push block mechanism, the difficulties in disassembly and theft prevention during maintenance of the cable tray lamp installation structure are solved, realizing convenient disassembly and assembly of the lamp body and anti-theft function, and improving maintenance convenience and security.
Patent Information
- Application Number
- CN202520055276.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-01-10
AI Technical Summary
The existing cable tray light installation structure requires forceful disassembly during maintenance, which can easily damage the main cable tray track and the light body, and it is difficult to prevent passers-by from disassembling it at will.
Design a cable tray light installation structure that uses a slidingly connected foot assembly, including a first slide and a second slide. Through the cooperation of sliding damping and push blocks, the expansion and contraction of the foot can be realized, making it convenient for workers to disassemble and install the light body. An anti-theft mechanism is designed to prevent passersby from disassembling the light.
It enables convenient disassembly and assembly of the lamp body and provides anti-theft functions, avoiding damage to the mother groove track and lamp body, and improving maintenance convenience and safety.
Smart Images

Figure CN223649190U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of lighting technology, and in particular relates to a cable tray lamp mounting structure. Background Technology
[0002] Cable tray lights are common lighting devices in daily life. Due to their advantages such as long service life, energy saving and environmental protection, they are widely used in shopping malls, garages and other scenarios.
[0003] A cable tray light mainly consists of a light body and a main channel track. The main channel track is usually installed or embedded in the wall, while the light body is fixedly connected to clips that can be inserted into the main channel track to secure the light body to the wall. Most existing clips adopt the method shown in the attached figure. Figure 1 The structure shown has clips that are hidden inside the main track, which can prevent passersby from disassembling the light body at will; however, it also means that workers need to use force to disassemble the light body when it is being repaired, which can easily damage the main track and the light body, causing great trouble for maintenance work.
[0004] Therefore, there is an urgent need to design a new cable tray light installation structure to solve the above problems. Utility Model Content
[0005] Technical problems to be solved
[0006] This utility model provides a cable tray light installation structure that can prevent passersby from disassembling the light body at will and facilitate the disassembly and maintenance of the light body by staff.
[0007] Technical solution
[0008] To achieve the above objectives, this utility model provides the following technical solution:
[0009] A grooved light mounting structure, used in conjunction with a track groove, includes a light body and a foot assembly. The light body has a bottom frame with a mounting groove. A first opening is formed on the first side wall of the mounting groove, and a second side wall of the mounting groove is located opposite the first side wall. The foot assembly includes a first slide and a second slide that are slidably connected to each other. The sliding connection between the first slide and the second slide has sliding damping, and both are equipped with locking feet. A first sleeve corresponding to the first opening is fitted onto the first slide. The first sleeve has a first notch exposing the first slide, and a first push block is detachably provided at the first notch.
[0010] Specifically, the foot assembly is placed in the mounting groove, causing the first slide and the second slide to slide away from each other, so that the first housing and the second slide are respectively inserted into the first opening and abut against the second side wall. The two locking feet can be expanded to fit and engage with the track groove. The first push block is inserted into the first notch and abuts against the first slide. Pressing the first push block overcomes the sliding damping, so that the first slide is disengaged from the first housing and moves closer to the second slide. The two locking feet can be retracted to disengage from the track groove.
[0011] Preferably, the first slide block is provided with a first slide column, the second slide block is provided with a first sleeve, the first sleeve is slidably fitted with the first slide column, and there is sliding damping between the first slide column and the first sleeve.
[0012] Preferably, the first sleeve is provided with a first elastic element inside, the first elastic element abuts against the inner wall of the first sleeve and the first sliding column, and when the first sliding block approaches the second sliding block, the first elastic element deforms and stores energy, so that there is sliding damping between the first sliding column and the first sleeve.
[0013] Preferably, the first slide block is provided with a second sleeve, the second slide block is provided with a second sliding column, the second sleeve is slidably fitted with the second sliding column, and the second sleeve is provided with a second elastic element inside, the second elastic element abuts against the inner wall of the second sleeve and the second sliding column, and when the first slide block approaches the second slide block, the second elastic element deforms and stores energy.
[0014] Preferably, the cross-section of the first sidewall is "U" shaped, and the cross-section of the second sidewall is symmetrically designed with respect to the cross-section of the first sidewall, so as to form a first slot and a second slot on both sides inside the mounting groove; the first sleeve is interference-fitted with the first slot, and the first sleeve is provided with multiple limiting posts, which together form a cavity for slidably fitting the first slide block; when the first sleeve is placed in the first slot and inserted into the first through-hole, the second slide block is located in the second slot and abuts against the second sidewall.
[0015] Preferably, both the first slide and the second slide are provided with a slot, the end of the locking foot is inserted into the slot, and is installed and fixed by screws.
[0016] Preferably, both of the clamping feet are made of a flexible metal material, and the shape of the clamping feet is adapted to the internal shape of the track groove.
[0017] Preferably, the end of the locking foot on the first slide protrudes to form a protrusion corresponding to the insertion gap, and the protrusion is aligned with the first notch; the end of the first push block is provided with a notch, and when the first push block is inserted into the first notch and abuts against the first slide block, the notch sleeves the protrusion.
[0018] Preferably, the lamp body includes a base, a first enclosure plate, a second enclosure plate, a lamp strip, a lampshade, and end caps; the base is provided with a first sliding groove, a second sliding groove, and a third sliding groove that are parallel to each other, and the first sliding groove and the second sliding groove are located on the left and right sides of the base, and the third sliding groove is located at the bottom of the base; the first enclosure plate and the second enclosure plate are slidably inserted into the first sliding groove and the second sliding groove respectively to form the bottom frame, and the first enclosure plate and the second enclosure plate respectively serve as the first side wall and the second side wall of the mounting groove; the lamp strip is installed on the base, and the lampshade is slidably inserted into the third sliding groove and surrounds the lamp strip; two end caps are provided and are respectively installed at both ends of the base to cover the lampshade and the two ends of the mounting groove.
[0019] Preferably, a second opening is provided on the second sidewall, the second slide has the same structure as the first slide, and a second sleeve corresponding to the second opening is fitted onto the second slide. The second sleeve has a second notch exposing the second slide, and a second push block is detachably provided at the second notch. When the foot assembly is placed in the mounting groove, the first slide and the second slide are driven to move away from each other, so that the first sleeve and the second sleeve are respectively inserted into the first opening and the second opening. The two locking feet can then be expanded to fit and engage with the track groove. The first push block is inserted into the first notch and abuts against the first slide, and the second push block is inserted into the second notch and abuts against the second slide. Simultaneous pressing of the first push block and the second push block overcomes sliding damping, causing the first slide and the second slide to simultaneously detach from the first sleeve and the second sleeve and move closer together. The two locking feet can then be retracted to disengage from the track groove.
[0020] Preferably, a shielding strip is adhered to the outer side wall of both the first enclosure and the second enclosure to cover the first opening and the second opening.
[0021] (III) Beneficial Effects
[0022] This utility model provides a grooved lamp mounting structure that uses an elastic rod to connect the frame and temples. This allows the temples to be made of conventional materials while still having an outward spring function, effectively reducing the overall cost and making it convenient for users to replace the temples as needed, thus meeting their personalized needs. By designing a stop block to limit the deformation of the elastic rod, it prevents the elastic rod from over-expanding and losing its outward spring function, thereby extending the overall service life. Attached Figure Description
[0023] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:
[0024] Figure 1 A schematic diagram of the prior art is shown;
[0025] Figure 2 A schematic diagram of the overall structure of this utility model is shown. Figure 1 ;
[0026] Figure 3 It shows Figure 2 Enlarged view of point A in the middle;
[0027] Figure 4 A schematic diagram of the overall structure of this utility model is shown. Figure 2 ;
[0028] Figure 5 It shows Figure 4 AA section view;
[0029] Figure 6 An exploded view of the lamp body of this utility model is shown;
[0030] Figure 7 It shows Figure 6 Enlarged view of point B in the middle;
[0031] Figure 8 A partial structural schematic diagram of the lamp body of this utility model is shown;
[0032] Figure 9 A schematic diagram of the structure of the foot assembly of this utility model is shown;
[0033] Figure 10 A cross-sectional view of the foot assembly of this utility model is shown;
[0034] Figure 11 An exploded view of the foot assembly of this utility model is shown. Figure 1 ;
[0035] Figure 12 An exploded view of the foot assembly of this utility model is shown. Figure 2 ;
[0036] Figure 13 A schematic diagram of the overall structure of another embodiment of the present invention is shown.
[0037] In the diagram: 1. Lamp body, 10. Base frame, 100. Mounting slot, 1001. First slot, 1002. Second slot, 101. First through-hole, 102. Second through-hole, 11. Base, 111. First sliding groove, 112. Second sliding groove, 113. Third sliding groove, 12. First enclosure plate, 13. Second enclosure plate, 14. Lamp strip, 15. Lamp cover, 16. End cap, 17. Cover strip, 2. Foot assembly, 20. Clip, 20k. Protrusion, 21. First slide block, 211. First sliding post, 212. Second sleeve, 212t. Second elastic element, 22. Second slide block, 221. First sleeve, 221t. First elastic element, 222. Second sliding post, 23. First housing, 230. First notch, 231. Limiting post, 2310. Cavity, 24. Second housing, 240. Second notch, 25. First push block, 25k. Notch, 26. Second push block, 2c. Insertion gap. Detailed Implementation
[0038] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this application. It is understood that the accompanying drawings are provided for reference and illustration only, and are not intended to limit this application. The connection relationships shown in the accompanying drawings are only for clear description and do not limit the connection method.
[0039] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component, or there may be an intervening component. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. It should also be noted that, unless otherwise expressly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly, for example, as a fixed connection, a detachable connection, or an integral connection; as a mechanical connection or an electrical connection; or as a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the scope of this application.
[0040] See appendix Figure 1 -Appendix Figure 11A grooved light mounting structure for use with a track groove includes a light body 1 and a foot assembly 2. The light body 1 has a bottom frame 10 with a mounting groove 100. A first opening 101 is formed on the first side wall of the mounting groove 100, and a second side wall of the mounting groove 100 is located on the opposite side of the first side wall. The foot assembly 2 includes a first slide 21 and a second slide 22 that are slidably connected to each other. The sliding connection between the first slide 21 and the second slide 22 has sliding damping, and both are equipped with locking feet 20. The first slide 21... The upper sleeve is fitted with a first housing 23 corresponding to the first opening 101. The first housing 23 has a first notch 230 exposing the first slide 21, and a first push block 25 is detachably provided at the first notch 230. The foot assembly 2 can be placed in the mounting groove 100. The foot assembly 2 is fixed to the bottom frame 10 by adjusting the matching relationship between the first slide 21, the second slide 22 and the mounting groove 100, and the foot assembly 2 is disassembled and assembled with the track groove by adjusting the distance between the two locking feet 20.
[0041] Specifically, during installation, the foot assembly 2 is first placed in the mounting groove 100, and the first slide 21 and the second slide 22 are adjusted to slide away from each other so that the first housing 23 and the second slide 22 are respectively inserted into the first opening 101 and abut against the second side wall. Then, the foot assembly 2 is fixedly installed on the bottom frame 10. At the same time, since the two locking feet 20 expand with each other, they can be adapted to engage with the track groove, so that the lamp body 1 is fixed on the track groove to complete the installation. At this time, the first push block 25 disengages from the first notch 230, ensuring that the first slide 21 does not have the conditions to bear force and is difficult to move, thereby playing a certain anti-theft role.
[0042] During disassembly, the first push block 25 is inserted into the first notch 230 and abuts against the first slide block 21, so that the first slide block 21 has the conditions to bear force. Since the second slide block 22 cannot move because it abuts against the second side wall, the sliding damping can be overcome by pressing the first push block 25, so that the first slide block 21 can be separated from the first housing 23 and move closer to the second slide block 22. During this process, the two locking feet 20 move closer to each other and retract and disengage from the track groove, so that the lamp body 1 can be separated from the track groove for easy maintenance of the lamp body 1 separately. If the foot assembly 2 needs to be replaced, the first push block 25 is pressed until the distance between the first slide block 21 and the second slide block 22 is reduced to the same width as the opening of the mounting groove 100. Then the first push block 25 is removed and the foot assembly 2 is taken out from the mounting groove 100.
[0043] In summary, this utility model, through the design of a first sliding block 21 and a second sliding block 22 that can slide relative to each other, allows the two locking feet 20 to expand or contract relative to each other, facilitating the assembly and disassembly of the lamp body 1 and the track groove. By setting sliding damping at the sliding connection of the first sliding block 21 and the second sliding block 22, and in conjunction with the limiting effect of the first housing 23, it is ensured that without the aid of the first push block 25, it is difficult for passersby to use their fingers to press the first sliding block 21 to drive the two locking feet 20 to retract. When workers maintain the lamp body 1, they can easily press the first sliding block 21 to disassemble the lamp body 1 with the help of the matching first push block 25. Therefore, compared with the prior art, this trough lamp installation structure can not only prevent passersby from disassembling the lamp body 1 at will, thus having a certain anti-theft function, but also facilitate workers to disassemble and maintain the lamp body 1, improving work convenience.
[0044] It should be noted that manufacturers can design the diameters of the first opening 101 and the first notch 230 to be smaller than the diameter of the tip of an average person's finger, to prevent passersby from pressing the first housing 23 and the first slide 21; or as shown in the attached... Figure 13 As shown, the first opening 101 is designed as a stepped structure, and the diameter of the first notch 230 is designed to be smaller than the diameter of the tip of a normal person's finger. When the first housing 23 is inserted into the first opening 101, the outer end of the first housing 23 is surrounded and only the first notch 230 is exposed. Therefore, passersby cannot touch the first housing 23, nor can they insert their fingers into the first notch 230 to press the first slide 21. Under the above structural design, the foot assembly 2 can be prevented from being easily disassembled, further improving the anti-theft capability.
[0045] See appendix Figure 9 -Appendix Figure 12 The sliding connection between the first slide block 21 and the second slide block 22 can be achieved by setting a slide rail (not shown in the figure) or by using other methods. Since there are various related sliding connection methods, this utility model does not limit them. For ease of understanding, in this embodiment, the first slide block 21 is provided with a first slide post 211, and the second slide block 22 is provided with a first sleeve 221. The first sleeve 221 is slidably fitted with the first slide post 211, and there is sliding damping between the first slide post 211 and the first sleeve 221.
[0046] Specifically, when the first slide block 21 is pushed, the first slide column 211 moves along the length of the first sleeve 221 so that the first slide block 21 moves away from or closer to the second slide block 22. Compared with other sliding connection methods, this design can effectively simplify the structure and save costs.
[0047] See appendix Figure 9 -Appendix Figure 12There are various ways to provide sliding damping between the first sliding column 211 and the first sleeve 221. For example, the first sliding column 211 and the first sleeve 221 can be designed as an interference fit, relying on the friction between them to provide sliding damping; or other components with resistance can be designed. Since there are various ways, this utility model does not limit this. For ease of understanding, in this embodiment, the first sleeve 221 is provided with a first elastic element 221t inside. The first elastic element 221t abuts against the inner wall of the first sleeve 221 and the first sliding column 211. When the first sliding block 21 moves closer to the second sliding block 22, the first elastic element 221t deforms and stores energy, so that there is sliding damping between the first sliding column 211 and the first sleeve 221.
[0048] Specifically, when the first housing 23 and the second slide block 22 are respectively inserted into the first opening 101 and abut against the second side wall, the first elastic member 221t is in its initial state. When the first slide block 21 is moved closer to the second slide block 22, the first slide column 211 squeezes the first elastic member 221t to deform and store energy. Since it is necessary to overcome the elastic force of the first elastic member 221t in this process, it is necessary to use the first push block 25 to insert the notch and abut against the first slide block 21 in order to better apply force to the first slide block 21. When the first push block 25 is released, the first elastic member 221t releases energy and recovers, and drives the first slide block 21 away from the second slide block 22, so that the first housing 23 and the second slide block 22 can be re-inserted into the first opening 101 and abut against the second side wall respectively.
[0049] In summary, the design of the first elastic element 221t not only provides sliding damping, but also enables the first slide 21 and the second slide 22 to have an automatic reset function, which not only facilitates the disassembly and assembly of the foot assembly 2 and the base frame 10, but also effectively improves the anti-theft capability.
[0050] It should be noted that manufacturers can adapt by selecting a first elastic element 221t with higher elastic strength to ensure that passersby cannot press and move the first slide block 21 with their fingers without the aid of the first push block 25, thereby further improving the anti-theft capability.
[0051] See appendix Figure 9 -Appendix Figure 12 The first slide block 21 is provided with a second sleeve 212, and the second slide block 22 is provided with a second sliding column 222. The second sleeve 212 is slidably fitted with the second sliding column 222, and the second sleeve 212 is provided with a second elastic element 212t inside. The second elastic element 212t abuts against the inner wall of the second sleeve 212 and the second sliding column 222. When the first slide block 21 moves closer to the second slide block 22, the second elastic element 212t deforms and stores energy.
[0052] Specifically, the design of the second sleeve 212 and the second sliding column 222 makes the forces on both ends of the first sliding seat 21 and the second sliding seat 22 more uniform, improving the sliding stability between them; while the design of the second elastic member 212t enables there to be two sliding dampings between the first sliding seat 21 and the second sliding seat 22. In this case, the manufacturer can choose the first elastic member 221t and the second elastic member 212t with relatively low elastic strength to cooperate to obtain sufficient sliding damping, effectively saving the cost of elastic consumables.
[0053] It should be noted that the first elastic member 221t and the second elastic member 212t can be made of parts with elasticity and recovery ability such as springs and rubber sleeves (not shown in the figure). Since there are various types of related parts, the present utility model does not limit this. For the convenience of understanding, the first elastic member 221t and the second elastic member 212t in this case are taken as springs.
[0054] Refer to the attached Figure 2 - attached Figure 8 , the cross-section of the first side wall is "匚"-shaped, and the cross-section of the second side wall is symmetrically designed with the cross-section of the first side wall to form a first slot 1001 and a second slot 1002 on both sides inside the installation groove 100; the first housing 23 is in interference fit with the first slot 1001, and a plurality of limiting columns 231 are provided on the first housing 23, and the plurality of limiting columns 231 enclose to form a cavity 2310 that slidably sleeves the first sliding seat 21; when the first housing 23 is placed in the first slot 1001 and inserted into the first through hole 101, the second sliding seat 22 is located in the second slot 1002 and abuts against the second side wall.
[0055] Specifically, the design of the first slot 1001 and the second slot 1002 can respectively enclose the first housing 23 and the second sliding seat 22 to prevent the first housing 23 and the second sliding seat 22 from randomly detaching from the bottom frame 10; while the design of the plurality of limiting columns 231 can not only limit the moving direction of the first sliding seat 21 and expand the sliding range between the first housing 23 and the first sliding seat 21, ensuring that the first sliding seat 21 can stably move along a specific direction; but also increase the mating surface between the first housing 23 and the first slot 1001, making the first housing 23 more stably installed in the first slot 1001.
[0056] Refer to the attached Figure 9 attached Figure 12 , both the first sliding seat 21 and the second sliding seat 22 are provided with insertion gaps 2c, the end of the locking leg 20 is inserted into the insertion gap 2c, and is installed and fixed by screws; when the locking leg 20 undergoes permanent deformation, this design facilitates the separate disassembly, installation and replacement of the locking leg 20.
[0057] Refer to the attached Figure 9 - attached Figure 12Both locking feet 20 are made of elastic metal material, which gives them sufficient deformation and recovery capabilities, making it easy to insert them into the track groove after the locking feet 20 are deformed by pressing. The shape of the locking feet 20 is adapted to the internal shape of the track groove, so that the two locking feet 20 can be tightly inserted into the track groove after recovery, improving the connection stability between the two locking feet 20 and the track groove.
[0058] See appendix Figure 9 -Appendix Figure 12 The end of the locking foot 20 on the first slide block 21 protrudes to form a protrusion 20k corresponding to the insertion gap 2c, and the protrusion 20k is aligned with the first notch 230; the end of the first push block 25 is provided with a notch 25k, and when the first push block 25 is inserted into the first notch 230 and abuts against the first slide block 21, the notch 25k sleeves the protrusion 20k.
[0059] Specifically, the combined use of the notch 25k and the protrusion 20k can improve the stability of the first push block 25 after it is inserted into the first notch 230. This prevents the first push block 25 from falling off at will and also prevents the first push block 25 from shaking when pushing the first slide block 21, thus improving the stability of use.
[0060] See appendix Figure 2 -Appendix Figure 8 The types of lamp bodies 1 are diverse and their functions are numerous. This utility model does not impose any limitations on them. For ease of understanding, in this embodiment, the lamp body 1 includes a base 11, a first surrounding plate 12, a second surrounding plate 13, a lamp strip 14, a lampshade 15, and an end cap 16. The base 11 is provided with a first sliding groove 111, a second sliding groove 112, and a third sliding groove 113 that are parallel to each other. The first sliding groove 111 and the second sliding groove 112 are located on the left and right sides of the base 11, and the third sliding groove 113 is located at the bottom of the base 11. The first surrounding plate 12 and the second surrounding plate 13... The first sliding groove 111 and the second sliding groove 112 are slidably inserted to form the base frame 10, and the first enclosure plate 12 and the second enclosure plate 13 serve as the first side wall and the second side wall of the mounting groove 100, respectively; the lamp strip 14 is installed on the base 11, and the lamp cover 15 is slidably inserted into the third sliding groove 113 and encloses the lamp strip 14 inside; two end caps 16 are provided and are installed at both ends of the base 11, so as to cover the lamp cover 15 and the two ends of the mounting groove 100; compared with the conventional lamp body 1 structure, this structure design facilitates the assembly, forming and disassembly maintenance of the lamp body 1.
[0061] See appendix Figure 2 -Appendix Figure 12 The second side wall has a second opening 102. The second slide 22 has the same structure as the first slide 21. A second housing 24 corresponding to the second opening 102 is fitted on the second slide 22. The second housing 24 has a second notch 240 that exposes the second slide 22. A second push block 26 is detachably provided at the second notch 240.
[0062] Specifically, during installation, the foot assembly 2 is placed in the mounting groove 100, and the first slide 21 and the second slide 22 are adjusted to be far apart from each other, so that the first housing 23 and the second housing 24 are respectively inserted into the first through port 101 and the second through port 102, thereby fixing the foot assembly 2 on the bottom frame 10. At the same time, since the two locking feet 20 expand with each other, they can be adapted to engage with the track groove, so that the lamp body 1 is fixed on the track groove to complete the installation. At this time, the first push block 25 and the second push block 26 are respectively disengaged from the first notch 230 and the second notch 240, ensuring that the first slide 21 and the second slide 22 do not have the conditions to bear force and are difficult to move, thereby playing a certain anti-theft role.
[0063] During disassembly, insert the first push block 25 into the first notch 230 and abut against the first slide block 21, and insert the second push block 26 into the second notch 240 and abut against the second slide block 22. Simultaneously press the first push block 25 and the second push block 26 to overcome sliding damping, so that the first slide block 21 and the second slide block 22 simultaneously detach from the first housing 23 and the second housing 24 and move closer to each other. During this process, the two locking feet 20 move closer to each other and retract, disengaging from the track groove, so that the lamp body 1 can be detached from the track groove for easy maintenance of the lamp body 1. If it is necessary to replace the foot assembly 2, continue to press the first push block 25 and the second push block 26 until the distance between the first slide block 21 and the second slide block 22 is reduced to the same width as the opening of the mounting groove 100. Then remove the first push block 25 and the second push block 26 and take the foot assembly 2 out of the mounting groove 100.
[0064] In summary, since the first housing 23 and the second housing 24 are synchronously restricted, the foot assembly 2 can be more stably fixed in the base frame 10. At the same time, the first push block 25 and the second push block 26 are used in conjunction with the first notch 230 and the second notch 240 to facilitate workers to press the first slide 21 and the second slide 22 simultaneously to retract the two locking feet 20, which further improves the disassembly speed.
[0065] See appendix Figure 2 Appendix Figure 6 and attached Figure 7 A cover strip 17 is attached to the outer side wall of both the first enclosure 12 and the second enclosure 13 to cover the first opening 101 and the second opening 102.
[0066] Specifically, when the foot assembly 2 is installed on the base frame 10, the worker can attach a cover strip 17 to the outer wall of the first enclosure 12 and the second enclosure 13 to cover and hide the first opening 101 and the second opening 102, and then install the lamp body 1 onto the track groove using the two clips 20. This design can prevent passersby from finding the location of the foot assembly 2 and pressing it, further improving the anti-theft capability. When the worker disassembles the lamp body 1, he needs to tear off the cover strip 17 and then use the first push block 25 and the second push block 26 to press the first slide 21 and the second slide 22.
[0067] It should be noted that the shielding strip 17 can be made of opaque materials such as black PET substrate or polyester film. Since there are many types of related materials, this utility model does not limit this.
[0068] It should also be noted that, although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this application.
Claims
1. A cable tray light mounting structure, used in conjunction with a track mother tray, characterized in that, include: The lamp body (1) is provided with a bottom frame (10) with a mounting groove (100). A first opening (101) is provided on the first side wall of the mounting groove (100), and the second side wall of the mounting groove (100) is located on the opposite side of the first side wall. The foot assembly (2) includes a first slide (21) and a second slide (22). The first slide (21) and the second slide (22) are slidably connected and have sliding damping, and both are equipped with locking feet (20). A first housing (23) corresponding to the first through-hole (101) is sleeved on the first slide (21). The first housing (23) has a first notch (230) exposing the first slide (21), and a first push block (25) is detachably provided at the first notch (230). The foot assembly (2) is placed in the mounting groove (100), and the first slide (21) and the second slide (22) are adjusted to slide away from each other so that the first housing (23) and the second slide (22) are respectively inserted into the first opening (101) and abut against the second side wall. The two locking feet (20) can be expanded to fit and engage with the track groove. The first push block (25) is inserted into the first notch (230) and abuts against the first slide (21). The first push block (25) is pressed to overcome the sliding damping so that the first slide (21) is disengaged from the first housing (23) and close to the second slide (22). The two locking feet (20) can be contracted to disengage from the track groove.
2. The cable tray lamp mounting structure according to claim 1, characterized in that, The first slide block (21) is provided with a first slide post (211), and the second slide block (22) is provided with a first sleeve (221). The first sleeve (221) is slidably fitted with the first slide post (211), and there is sliding damping between the first slide post (211) and the first sleeve (221).
3. The cable tray light mounting structure according to claim 2, characterized in that, The first sleeve (221) is provided with a first elastic element (221t) inside. The first elastic element (221t) abuts against the inner wall of the first sleeve (221) and the first sliding column (211). When the first sliding block (21) approaches the second sliding block (22), the first elastic element (221t) deforms and stores energy, so that there is sliding damping between the first sliding column (211) and the first sleeve (221).
4. The cable tray lamp mounting structure according to claim 3, characterized in that, The first slide (21) is provided with a second sleeve (212), and the second slide (22) is provided with a second sliding column (222). The second sleeve (212) is slidably fitted with the second sliding column (222), and the second sleeve (212) is provided with a second elastic element (212t) inside. The second elastic element (212t) abuts against the inner wall of the second sleeve (212) and the second sliding column (222). When the first slide (21) approaches the second slide (22), the second elastic element (212t) deforms and stores energy.
5. The cable tray lamp mounting structure according to claim 1, characterized in that, The cross-section of the first side wall is in a "匚" shape, and the cross-section of the second side wall is symmetrically designed with respect to the cross-section of the first side wall, so as to form a first slot (1001) and a second slot (1002) on both sides inside the installation groove (100); the first housing (23) is in interference fit with the first slot (1001), and a plurality of limiting columns (231) are provided on the first housing (23), and a sleeve cavity (2310) that slidably sleeves the first sliding seat (21) is formed by enclosing the plurality of limiting columns (231); when the first housing (23) is placed in the first slot (1001) and inserted into the first through port (101), the second sliding seat (22) is located in the second slot (1002) and abuts against the second side wall.
6. The cable tray light mounting structure according to claim 1, characterized in that, Insertion gaps (2c) are provided on both the first sliding seat (21) and the second sliding seat (22), and the end of the latch foot (20) is inserted into the insertion gap (2c) and fixed by screws.
7. The cable tray light mounting structure according to claim 6, characterized in that, Both of the latch feet (20) are made of an elastic metal material, and the shape of the latch foot (20) is adapted to the internal shape of the track female groove.
8. The cable tray light mounting structure according to claim 6, characterized in that, The end of the latch foot (20) on the first sliding seat (21) protrudes out of the corresponding insertion gap (2c) to form a convex block (20k), and the convex block (20k) is aligned with the first notch (230); when a recess (25k) is provided at the end of the first push block (25) and the first push block (25) is inserted into the first notch (230) and abuts against the first sliding seat (21), the recess (25k) sleeves the convex block (20k).
9. The cable tray lamp mounting structure according to claim 1, characterized in that, The lamp body (1) includes a base (11), a first enclosing plate (12), a second enclosing plate (13), a lamp strip (14), a lamp cover (15) and end caps (16). First sliding grooves (111), second sliding grooves (112) and third sliding grooves (113) that are parallel to each other are provided on the base (11), and the first sliding groove (111) and the second sliding groove (112) are located on the left and right sides of the base (11), and the third sliding groove (113) is located at the bottom of the base (11); the first enclosing plate (12) and the second enclosing plate (13) are respectively slidably inserted into the first sliding groove (111) and the second sliding groove (112) to form the bottom frame (10), and the first enclosing plate (12) and the second enclosing plate (13) respectively serve as the first side wall and the second side wall of the installation groove (100); the lamp strip (14) is installed on the base (11), the lamp cover (15) is slidably inserted into the third sliding groove (113) and encloses the lamp strip (14) therein; two end caps (16) are provided and are respectively installed at both ends of the base (11) to cover both ends of the lamp cover (15) and the installation groove (100).
10. A cable tray lamp mounting structure according to any one of claims 1-9, characterized in that, The second sidewall is provided with a second through-hole (102). The second slide (22) has the same structure as the first slide (21). The second slide (22) is fitted with a second shell (24) corresponding to the second through-hole (102). The second shell (24) is provided with a second notch (240) exposing the second slide (22). A second push block (26) is detachably provided at the second notch (240). The foot assembly (2) is placed in the mounting groove (100), and the first slide (21) and the second slide (22) are adjusted to be far apart from each other so that the first housing (23) and the second housing (24) are respectively inserted into the first port (101) and the second port (102). The two locking feet (20) can be expanded to fit and engage with the track groove. The first push block (25) is inserted into the first notch (230) and abuts against the first slide (21), and the second push block (26) is inserted into the second notch (240) and abuts against the second slide (22). The first push block (25) and the second push block (26) are pressed simultaneously to overcome the sliding damping so that the first slide (21) and the second slide (22) are simultaneously disengaged from the first housing (23) and the second housing (24) and move closer to each other. The two locking feet (20) can be contracted to disengage from the track groove.