Magnetic linear track lamp
By adopting anti-detachment, inverted triangle anti-detachment, slide rail and slide chute, and anti-detachment and tripping combination design in the magnetic linear track light, the problem of falling caused by unstable fixation of track lights in the prior art is solved, and higher firmness and rich lighting effects are achieved.
Patent Information
- Application Number
- CN202421550440.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-02
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-02
AI Technical Summary
The existing magnetic line track lights are simple to glue and fix during the pre-embedding of the track lights, which leads to the colloid aging during long-term use, and the structure is simple to prevent the detachment, which easily causes the track light to fall from the wall.
The magnetic linear track light design is adopted, including track assembly, lamp assembly and transparent buckle plate. The track assembly enhances the contact area and firmness with the colloid through the combination of anti-detachment strips and inverted triangles; the lamp assembly achieves the richness of the lighting effect through the combination of sliding rails and sliding grooves; the transparent buckle plate prevents falling caused by aging through the combination of anti-detachment and anti-detachment.
It effectively improves the firmness of track lights, prevents falling, extends service life, and achieves richer lighting effects.
Smart Images

Figure CN222836803U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of track lights, in particular to a magnetic linear track light. Background Art
[0002] Magnetic linear track light is a modern lighting device, which is loved by users for its innovative design and efficient performance. Its main features are magnetic adsorption and linear layout, which makes the lamps easy to install and adjust. The magnetic track lights currently on the market usually need to embed the tracks into the grooves pre-opened in the wall. In the process of embedding the tracks, the existing magnetic linear track lights usually only use simpler glue to fix the track lights. As a result, during the long-term use of the track lights, the colloid ages and the anti-detachment structure is relatively simple, which can easily cause the track lights to fall from the wall. Therefore, we propose a magnetic linear track light to solve the above problems. Utility Model Content
[0003] In order to overcome the existing magnetic track lights, in the process of pre-embedded tracks, usually only a relatively simple glue is used to fix the track lights, which makes the track lights age during long-term use and the anti-fall structure is relatively simple, which can easily cause the track lights to fall from the wall.
[0004] The technical solution of the utility model is: a magnetic linear track light, including a track assembly, a lamp assembly and a transparent buckle plate; the track assembly includes a track body and an anti-slip strip, a lamp groove is provided inside the track body, a lamp assembly for lighting is provided inside the lamp groove, the lamp assembly includes a lamp holder and lamp beads, and a transparent buckle plate is provided above the lamp assembly for closing the lamp groove and protecting the lamp assembly.
[0005] Preferably, by combining the anti-slip strips with the inverted triangular anti-slip blocks, when the staff embeds the track body into the wall and fixes it with glue, the anti-slip strips on both sides of the track body can increase the contact area between the track body and the glue, making it difficult for the track body to detach from the wall. At the same time, the inverted triangular anti-slip blocks on both sides of the lower end can be stuck in the inside of the wall groove through their own inverted triangular structure, thereby improving the firmness of the track body. By combining the docking card plate with the docking slot, the staff can insert the docking card plates of multiple track bodies into the docking slots, so that the multiple track bodies can be connected into a whole. The body is convenient for the sliding of the lamp assembly. Through the combination of multiple sets of anti-drop grooves, the multiple sets of anti-drop grooves can provide stable constraints on the gusset plate when installing the gusset plate assembly, so as to prevent the transparent gusset plate from falling off due to aging during use. The combination of the slide rail and the slide groove allows the lamp assembly to slide along the slide groove in the lamp groove, thereby achieving richer lighting effects. Through the combination of the power supply block and the power supply groove, the staff can press the lamp bead into the lamp holder groove, and at the same time, the lamp heads at both ends of the lamp bead are inserted into the power supply groove to power the lamp bead, so that it can work and emit light normally.
[0006] Preferably, two groups of anti-slip strips are provided, and the two groups of anti-slip strips are symmetrically arranged along the upper ends of both sides of the track body. A plurality of groups of through holes are provided on the surfaces of the anti-slip strips, and inverted triangular anti-slip blocks are provided on both sides of the lower end of the track body. A docking slot is provided at the front end of the track body, and a docking card plate is provided at the rear end of the track body. The docking card plate is matched and inserted into the docking slot. By combining the anti-slip strips and the inverted triangular anti-slip blocks, when the staff embeds the track body into the wall and fixes it with glue, the anti-slip strips on both sides of the track body can increase the contact area between the track body and the glue, so that the track body is not easy to detach from the wall. At the same time, the inverted triangular anti-slip blocks on both sides of the lower end can be stuck in the inside of the wall groove through their own inverted triangular structure, so as to improve the firmness of the track body. By combining the docking card plate with the docking slot, the staff can insert the docking cards of multiple track bodies into the docking slots, so that the multiple track bodies are connected into a whole for easy sliding of the lamp assembly.
[0007] Preferably, anti-slip grooves are provided on both sides of the upper end of the lamp groove, and there are multiple groups of anti-slip grooves, which are symmetrically arranged along both sides of the upper end of the lamp groove, and two groups of conductive strips are provided at intervals at the bottom of the lamp groove, and the middle sections on both sides of the lamp groove are provided with slide rails for sliding the lamp assembly, and slide grooves are provided inside the slide rails. By combining the multiple groups of anti-slip grooves with the multiple groups of anti-slip buckles, the multiple groups of anti-slip grooves can provide stable constraints on the buckle plate when the gusset plate assembly is installed, so as to prevent the transparent buckle plate from falling off due to aging during use, and the slide rails are combined with the slide grooves, so that the lamp assembly can slide along the slide grooves in the lamp groove, thereby achieving richer lighting effects.
[0008] Preferably, two groups of lamp troughs are spaced apart at the upper end of the lamp holder, and two groups of lamp beads are provided. The two groups of lamp beads are respectively located inside the two groups of lamp troughs. Lamp heads are provided at both ends of the lamp beads, and power supply blocks are provided to match the lamp heads. The power supply blocks are located on the side walls of the lamp troughs, and power supply grooves are provided on the surface of the power supply blocks. The lamp beads are powered by inserting the lamp heads into the power supply grooves. The power supply blocks are combined with the power supply grooves to enable the staff to press the lamp beads into the lamp holder grooves, and at the same time, the lamp heads at both ends of the lamp beads are inserted into the power supply grooves to power the lamp beads, so that they can work and emit light normally.
[0009] Preferably, magnetic blocks are provided on both sides of the lamp holder, and the other end of the magnetic block extends to the inside of the slide groove. The lamp holder slides along the slide groove through the magnetic block. Two groups of conductive blocks are provided at intervals at the lower end of the lamp holder. The two groups of conductive blocks and the two conductive strips are matched with each other. A control groove is opened below the rear end of the lamp holder, and a power control module is provided inside the control groove. Through the combination of the power control module, the slider, the conductive block and the conductive strip, the power control module can control the lamp assembly to transmit power through the conductive block and the conductive strip. At the same time, the power control module is started and stopped to control the magnetic block to drive the lamp assembly to slide along the slide groove.
[0010] Preferably, a connecting ring is provided at the front center of the lamp holder, a connecting groove is provided at the rear center of the box body, a connecting buckle is provided at the center of the connecting groove, the connecting ring and the connecting buckle are matched and buckled together, and the connecting groove and the connecting ring are combined to enable the user to connect multiple lamp group components together through the connecting groove and the connecting ring, so that the user can adjust them according to their own usage needs.
[0011] Preferably, the transparent buckle plate includes a transparent resin plate and an insert plate, the insert plate is symmetrically arranged along the lower end of the transparent resin plate, a plurality of groups of anti-slip blocks are linearly arranged at the edges of both sides of the transparent resin plate, a plurality of groups of anti-slip buckles are arranged on the outer side of the lower end of the insert plate, the anti-slip buckles and the anti-slip grooves are matched with each other, and the transparent resin plate is combined with the insert plate, so that when the transparent resin plate is fixed above the lamp trough through the insert plate and the plurality of groups of anti-slip buckles, it can protect the lamp assembly and prevent dust from entering the lamp trough and causing poor contact, and the combination of the plurality of groups of anti-slip blocks can prevent the user from slipping when he wants to buckle the transparent buckle plate.
[0012] Beneficial effects of the utility model:
[0013] 1. By combining the anti-slip strips with the inverted triangle anti-slip blocks, when the staff embeds the track body into the wall and fixes it with glue, the anti-slip strips on both sides of the track body can increase the contact area between the track body and the glue, making it difficult for the track body to detach from the wall. At the same time, the inverted triangle anti-slip blocks on both sides of the lower end can be stuck in the groove of the wall through their own inverted triangle structure, thereby improving the firmness of the track body. By combining the docking card plate with the docking slot, the staff can insert the docking card plates of multiple track bodies into the docking slots, so that multiple track bodies can be connected into a whole. To facilitate the sliding of the lamp assembly, multiple sets of anti-drop grooves are combined so that when the gusset plate assembly is installed, the multiple sets of anti-drop grooves can provide stable constraints on the gusset plate, so as to prevent the transparent gusset plate from falling off due to aging during use. The combination of the slide rail and the slide groove allows the lamp assembly to slide along the slide groove in the lamp groove, thereby achieving richer lighting effects. The power supply block is combined with the power supply groove, so that the staff can press the lamp bead into the lamp holder groove, and at the same time, the lamp heads at both ends of the lamp bead are inserted into the power supply groove to power the lamp bead, so that it can work and emit light normally.
[0014] 2. By combining the power control module, the slider, the conductive block and the conductive strip, the power control module can control the lamp assembly to transmit power through the conductive block and the conductive strip, and at the same time, the power control module is started and stopped to control the magnetic block to drive the lamp assembly to slide along the slide groove. By combining the connecting groove and the connecting ring, the user can connect multiple lamp group assemblies together through the connecting groove and the connecting ring, so that the user can adjust according to their own needs. By combining the transparent resin plate and the plug-in plate, the transparent resin plate can be fixed on the top of the lamp trough through the plug-in plate and multiple groups of anti-slip buckles, which can protect the lamp assembly and prevent dust from entering the lamp trough and causing poor contact. By combining multiple groups of anti-slip blocks, the user can prevent slipping when he wants to buckle the transparent buckle plate, which solves the problem of existing magnetic track lights. In the process of pre-embedded tracks, usually only simple glue is used to fix the track lights, so that during the long-term use of the track lights, the colloid ages and the anti-slip structure is relatively simple, which easily causes the track lights to fall from the wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0016] Figure 2 It is a schematic diagram of the track assembly of the utility model;
[0017] Figure 3 This is a schematic diagram of a lamp assembly of the utility model;
[0018] Figure 4 This is a schematic diagram of the lamp assembly of the utility model from another angle;
[0019] Figure 5 It is a schematic diagram of the transparent gusset plate of the present utility model.
[0020] Explanation of the reference numerals: 1. Track assembly; 101. Track body; 102. Anti-slip strip; 103. Through hole; 104. Lamp slot; 105. Anti-slip slot; 106. Docking card plate; 107. Slide rail; 108. Slide slot; 109. Conductive strip; 110. Docking slot; 111. Inverted triangle anti-slip block; 2. Lamp assembly; 201. Lamp holder; 202. Lamp slot; 203. Power supply block; 204. Power supply slot; 205. Lamp bead; 206. Lamp holder; 207. Connecting ring; 208. Magnetic block; 209. Connecting slot; 210. Connecting buckle; 211. Control slot; 212. Power control module; 3. Transparent buckle plate; 301. Transparent resin plate; 302. Anti-slip block; 303. Insert plate; 304. Anti-slip buckle. DETAILED DESCRIPTION
[0021] The utility model is further described below in conjunction with the accompanying drawings and embodiments.
[0022] See also Figure 1-2 The utility model provides an embodiment: a magnetic linear track light, including a track component 1, a lamp component 2 and a transparent gusset plate 3; the track component 1 includes a track body 101 and an anti-dropping strip 102, a lamp groove 104 is provided inside the track body 101, a lamp component 2 for lighting is provided inside the lamp groove 104, the lamp component 2 includes a lamp holder 201 and a lamp bead 205, and a transparent gusset plate 3 is provided above the lamp component 2 for closing the lamp groove 104 and protecting the lamp component 2.
[0023] Please continue reading Figure 1-2In this embodiment, two groups of anti-slipping strips 102 are provided, and the two groups of anti-slipping strips 102 are symmetrically arranged along the upper ends of both sides of the track body 101. The surface of the anti-slipping strips 102 is provided with multiple groups of through holes 103. Both sides of the lower end of the track body 101 are provided with inverted triangular anti-slipping blocks 111. The front end of the track body 101 is provided with a docking slot 110, and the rear end of the track body 101 is provided with a docking card plate 106. The docking card plate 106 is matched and plugged with the docking slot 110. The anti-slipping blocks 111 are combined so that when the staff embeds the track body 101 into the wall and fixes it with glue, the anti-slipping strips 102 on both sides of the track body 101 can increase the contact area between the track body 101 and the glue, making it difficult for the track body 101 to detach from the wall. At the same time, the inverted triangular anti-slipping blocks 111 on both sides of the lower end can be stuck in the inside of the wall groove through their own inverted triangular structure, thereby improving the firmness of the track body 101. By combining the docking card plate 106 with the docking slot 110, The staff can insert the docking card plates 106 of multiple track bodies 101 into the docking slots 110, so that the multiple track bodies 101 are connected into a whole to facilitate the sliding of the lamp assembly 2. The upper ends of the lamp slots 104 are both provided with anti-slip grooves 105. The anti-slip grooves 105 are provided in multiple groups. The multiple groups of anti-slip grooves 105 are symmetrically arranged along the upper ends of the lamp slots 104. Two groups of conductive strips 109 are arranged at intervals at the bottom of the lamp slots 104. The middle sections of both sides of the lamp slots 104 are provided with anti-slip grooves 105 for sliding the lamp assembly 2. The slide rail 107 has a slide groove 108 formed inside. By combining multiple groups of anti-drop grooves 105 with multiple groups of anti-drop buckles, the multiple groups of anti-drop grooves 105 can provide stable constraints on the gusset plate when the gusset plate assembly is installed, thereby preventing the transparent gusset plate 3 from falling off due to aging during use. The slide rail 107 is combined with the slide groove 108, so that the lamp assembly 2 can slide along the slide groove 108 in the lamp groove 104, thereby achieving richer lighting effects.
[0024] See also Figure 1-4In this embodiment, two groups of lamp troughs 202 are spaced apart at the upper end of the lamp holder 201, and two groups of lamp beads 205 are provided. The two groups of lamp beads 205 are respectively located inside the two groups of lamp troughs 202. Lamp caps 206 are provided at both ends of the lamp beads 205. Power supply blocks 203 are provided to match the lamp caps 206. The power supply blocks 203 are located on the side walls of the lamp troughs 202. Power supply grooves 204 are provided on the surface of the power supply blocks 203. The lamp beads 205 are inserted into the power supply grooves 204 for power supply through the lamp caps 206. The power supply blocks 203 are combined with the power supply grooves 204, so that the staff can press the lamp beads 205 into the grooves of the lamp holder 201. At the same time, the lamp caps 206 at both ends of the lamp beads 205 are inserted into the power supply grooves 204 to power the lamp beads 205, so that they can work normally and emit light. Magnetic blocks 204 are provided on both sides of the lamp holder 201. 8. The other end of the magnetic block 208 extends to the inside of the slide groove 108, and the lamp holder 201 slides along the slide groove 108 through the magnetic block 208. Two groups of conductive blocks are arranged at intervals at the lower end of the lamp holder 201. The two groups of conductive blocks are matched with the two conductive strips 109. A control groove 211 is opened below the rear end of the lamp holder 201. A power control module 212 (the power control module 212 model is IRM-03-12) is arranged inside the control groove 211. Through the combination of the power control module 212, the slider, the conductive block and the conductive strip 109, the power control module 212 can control the lamp assembly 2 to transmit power through the conductive block and the conductive strip 109, and at the same time, the power control module 212 is started and stopped to control the magnetic block 208 to drive the lamp assembly 2 to slide along the slide groove 108.
[0025] See also Figure 1-5 In this embodiment, a connecting ring 207 is provided at the front center of the lamp holder 201, a connecting groove 209 is provided at the rear center of the box body, a connecting buckle 210 is provided at the center of the connecting groove 209, the connecting ring 207 is matched and buckled with the connecting buckle 210, and the connecting groove 209 is combined with the connecting ring 207, so that the user can connect multiple lamp group components together through the connecting groove 209 and the connecting ring 207, so that the user can adjust according to his own use needs, the transparent buckle plate 3 includes a transparent resin plate 301 and an inserting plate 303, and the inserting plate 303 is symmetrically arranged along the lower end of the transparent resin plate 301, A plurality of anti-slip blocks 302 are linearly provided at the edges of both sides of the transparent resin plate 301, and a plurality of anti-slip buckles 304 are provided on the outer side of the lower end of the plug plate 303. The anti-slip buckles 304 and the anti-slip groove 108 are matched with each other. By combining the transparent resin plate 301 and the plug plate 303, when the transparent resin plate 301 is fixed on the top of the lamp trough 202 through the plug plate 303 and the plurality of anti-slip buckles 304, it can protect the lamp assembly 2 and prevent dust from entering the lamp trough 202 and causing poor contact. By combining the plurality of anti-slip blocks 302, it can prevent the user from slipping when he wants to buckle the transparent buckle plate 3.
[0026] When working, the staff first inserts the docking card plates 106 of multiple track bodies 101 into the docking slots 110, so that the multiple track bodies 101 are connected into a whole to facilitate the sliding of the lamp assembly 2, and then the track body 101 is embedded in the wall and fixed with glue. The anti-detachment strips 102 on both sides of the track body 101 can increase the contact area between the track body 101 and the glue, making it difficult for the track body 101 to detach from the wall. At the same time, the inverted triangle anti-detachment blocks 111 on both sides of the lower end can be stuck in the inside of the wall groove through their own inverted triangle structure, thereby improving the firmness of the track body 101.
[0027] By combining the power control module 212, the slider, the conductive block and the conductive strip 109, the power control module 212 can control the lamp assembly 2 to transmit power through the conductive block and the conductive strip 109, and at the same time, the power control module 212 is started and stopped to control the magnetic block 208 to drive the lamp assembly 2 to slide along the slide groove 108.
[0028] Through multiple sets of anti-drop grooves 105 and multiple sets of anti-drop buckles, when the gusset plate assembly is installed, the multiple sets of anti-drop grooves 105 can provide stable constraints on the gusset plate, thereby preventing the transparent gusset plate 3 from falling off due to aging during use.
[0029] According to the above steps, the staff first embeds the track body 101 into the wall, and then fixes it with glue. The inverted triangle anti-slip block 111 can be stuck in the inside of the wall groove through its own inverted triangle structure to improve the firmness of the track body 101. When working, the power control module 212 controls the lamp assembly 2 to transmit electricity through the conductive block and the conductive strip 109. At the same time, the power control module 212 is started and stopped to control the magnetic block 208 to drive the lamp assembly 2 to slide along the slide groove 108.
[0030] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of those skilled in the art without departing from the purpose of the present invention.
Claims
1. A magnetic linear track light, comprising a track assembly (1); characterized in that: The invention also comprises a lamp assembly (2) and a transparent gusset plate (3); the track assembly (1) comprises a track body (101) and an anti-slip strip (102); a lamp groove (104) is provided inside the track body (101); a lamp assembly (2) for lighting is provided inside the lamp groove (104); the lamp assembly (2) comprises a lamp holder (201) and a lamp bead (205); and a transparent gusset plate (3) for closing the lamp groove (104) and protecting the lamp assembly (2) is provided above the lamp assembly (2).
2. The magnetic linear track light according to claim 1, characterized in that: Two groups of anti-slipping strips (102) are provided, and the two groups of anti-slipping strips (102) are symmetrically arranged along the upper ends of both sides of the track body (101); a plurality of through holes (103) are provided on the surface of the anti-slipping strips (102); both sides of the lower end of the track body (101) are provided with inverted triangular anti-slipping blocks (111); a docking slot (110) is provided at the front end of the track body (101); a docking card plate (106) is provided at the rear end of the track body (101); and the docking card plate (106) is matched and plugged with the docking slot (110).
3. The magnetic linear track light according to claim 2, characterized in that: Anti-slip grooves (105) are provided on both sides of the upper end of the lamp slot (104), and a plurality of anti-slip grooves (105) are provided. The plurality of anti-slip grooves (105) are symmetrically arranged along both sides of the upper end of the lamp slot (104). Two groups of conductive strips (109) are arranged at intervals at the bottom of the lamp slot (104). Slide rails (107) for sliding the lamp assembly (2) are provided at the middle sections of both sides of the lamp slot (104), and a slide groove (108) is provided inside the slide rails (107).
4. The magnetic linear track light according to claim 1, characterized in that: Two groups of lamp troughs (202) are arranged at intervals at the upper end of the lamp holder (201), and two groups of lamp beads (205) are arranged. The two groups of lamp beads (205) are respectively located inside the two groups of lamp troughs (202). Lamp heads (206) are arranged at both ends of the lamp beads (205), and a power supply block (203) is arranged to match the lamp head (206). The power supply block (203) is located on the side wall of the lamp trough (202), and a power supply groove (204) is arranged on the surface of the power supply block (203). The lamp beads (205) are inserted into the power supply groove (204) through the lamp head (206) to supply power.
5. The magnetic linear track light according to claim 3, characterized in that: Magnetic blocks (208) are provided on both sides of the lamp holder (201), and the other end of the magnetic block (208) extends to the inside of the slide groove (108). The lamp holder (201) slides along the slide groove (108) through the magnetic block (208). Two groups of conductive blocks are provided at intervals at the lower end of the lamp holder (201). The two groups of conductive blocks are matched with the two conductive strips (109). A control groove (211) is provided at the lower rear end of the lamp holder (201), and a power control module (212) is provided inside the control groove (211).
6. The magnetic linear track light according to claim 5, characterized in that: A connecting ring (207) is provided at the center of the front end of the lamp holder (201), a connecting groove (209) is provided at the center of the rear end of the box body, a connecting buckle (210) is provided at the center of the connecting groove (209), and the connecting ring (207) and the connecting buckle (210) are matched and buckled.
7. The magnetic linear track light according to claim 3, characterized in that: The transparent gusset plate (3) comprises a transparent resin plate (301) and an inserting plate (303), wherein the inserting plate (303) is symmetrically arranged along the lower end of the transparent resin plate (301), and multiple groups of anti-slip blocks (302) are linearly arranged at the edges of both sides of the transparent resin plate (301), and multiple groups of anti-slip buckles (304) are arranged on the outer side of the lower end of the inserting plate (303), and the anti-slip buckles (304) and the anti-slip grooves (108) are arranged to match each other.