Track atmosphere light
By setting a connection method between the light strip and the sliding shell in the track light, the problem of the track light being unable to adjust the lighting range and difficult to maintain is solved, and the flexible adjustment and convenient maintenance of the home track atmosphere light are achieved.
Patent Information
- Application Number
- CN202210043705.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-14
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2042-01-14
AI Technical Summary
Existing track lights cannot be used as home atmosphere lights, are difficult to disassemble for maintenance, cannot adjust the lighting range, and require complete disassembly if the light strip is damaged.
A track atmosphere light is designed. A light bar is arranged in a guide rail and inserted into a sliding housing so that the light bar is connected to a conductive part. The light bar can move with the sliding housing. A first conductive groove and a second conductive groove are provided at both ends of the light bar, providing two connection methods and simplifying connection and disassembly.
The track light can flexibly adjust the lighting range, is easy to maintain, simple to connect and easy to disassemble, and is suitable for home atmosphere lighting.
Smart Images

Figure CN114413200B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of track lights, and in particular to a track atmosphere light. Background Art
[0002] Track lights are lights installed in a track groove, sliding along the track. Track lights must be mounted on a matching track. With the advancement of lighting technology, a wide variety of lamps are being developed to meet diverse lighting needs. Track lights have rapidly gained popularity due to their advantages, such as the ability to slide along the track to adjust the lighting range and the ease of designing high-power lamps. They play a vital role in commercial spaces such as shopping malls and hotels.
[0003] Currently, track lights in the industry cannot be used as home atmosphere lights because they are in the form of spotlights. Traditional atmosphere lights are usually fixed and cannot be moved. The lighting range cannot be adjusted. Once an LED chip in the light strip is damaged, the entire light strip or the entire section of the light strip needs to be removed. Since screws are usually used for fixing during installation, it is difficult to disassemble when maintenance is required, which brings inconvenience to maintenance.
[0004] Therefore, it is urgent to design a track atmosphere light to overcome the shortcomings of the existing technology. Summary of the Invention
[0005] The technical solution adopted by the present invention to achieve the above-mentioned technical objectives is: a track atmosphere light, characterized in that it includes: a guide rail, a sliding shell, and a light strip; conductive parts are respectively provided on both sides of the guide rail, the sliding shell is slidably arranged on the guide rail, and contact pieces are respectively provided on both sides of the sliding shell, and the contact pieces correspond to the conductive parts, and sockets are respectively provided on the bottoms of both ends of the sliding shell, and an elastic conductive part extending horizontally toward the inside of the sliding shell is provided above the socket, the elastic conductive part is electrically connected to the contact pieces, the light strip is slidably arranged in the guide rail, one end of the light strip is provided with a first conductive groove for conduction, and the end of the light strip away from the end where the first conductive groove is provided is provided with a second conductive groove, the light strip is adapted to the socket, and the end of the light strip is inserted into the sliding shell through the socket, and the elastic conductive part is abutted against the corresponding first conductive groove.
[0006] In a preferred embodiment, the top of the guide rail is open, and limiting protrusions vertically facing the bottom are respectively provided on both sides of the top of the guide rail. The limiting protrusions are spaced apart from the side walls of the guide rail to form a first limiting groove, and a second limiting groove is provided at the bottom of the guide rail corresponding to the first limiting groove. The first limiting groove and the second limiting groove form a "T"-shaped installation groove.
[0007] In a preferred embodiment, the conductive member includes: a mounting member, the mounting member is adapted to the mounting groove, a conductive metal is fixedly provided on the side of the mounting member facing away from the guide rail side wall, and a limiting sliding groove is formed between the mounting member and the limiting protrusion.
[0008] In a preferred embodiment, clamping blocks are respectively provided on two opposite sides of the sliding housing, and the clamping blocks are adapted to the limiting sliding grooves.
[0009] In a preferred embodiment, conductive ports are respectively provided on both sides of the sliding shell, and the conductive ports on both sides are staggered. The contact piece contacts the conductive part through the conductive port. A spring is also provided inside the sliding shell, one end of the spring is against the side wall of the sliding shell, and the other end is fixedly connected to the contact piece.
[0010] In a preferred embodiment, the elastic conductive part includes: a first conductive block and a second conductive block, the first conductive block and the second conductive block are respectively connected to the corresponding contact pieces, the first conductive block and the second conductive block are spaced apart, the length of the second conductive block is greater than the length of the first conductive block, and the ends of the first conductive block and the second conductive block are respectively provided with abutment portions with trapezoidal cross-sections.
[0011] In a preferred embodiment, a plurality of LED lamp beads are arranged at intervals on the light bar, and a light-scattering shell is further provided on the light bar, and the light-scattering shell cover is arranged on the LED lamp beads.
[0012] In a preferred embodiment, the first conductive slot includes: a first positive electrode slot and a first negative electrode slot, two first positive electrode slots are provided, the two first positive electrode slots are arranged at intervals, and one first negative electrode slot is provided, the first negative electrode slot and the first positive electrode slot are arranged at intervals in the width direction of the sliding shell, and the first negative electrode slot and the two first positive electrode slots are distributed in a triangular shape.
[0013] In a preferred embodiment, the second conductive slot includes: a second positive electrode slot and a second negative electrode slot, wherein there is one second positive electrode slot and two second negative electrode slots, the two second negative electrode slots are arranged at intervals, the second positive electrode slot and the second negative electrode slot are arranged at intervals in the width direction of the sliding shell, and the two second negative electrode slots and the second positive electrode slot are distributed in a triangular shape.
[0014] The beneficial effects of the present invention are as follows: the present invention arranges a light bar in the guide rail and inserts the light bar into the sliding housing so that the light bar is connected to the conductive member to realize connected lighting, and the light bar can move with the movement of the sliding housing. At the same time, by respectively arranging corresponding first conductive grooves and second conductive grooves at both ends of the light bar, the light bar has two connection modes. The specific connection mode can be selected according to the actual usage situation, and the connection is simple, the disassembly is convenient, and the subsequent maintenance is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a structural schematic diagram of the present invention;
[0016] Figure 2 An exploded view of the present invention;
[0017] Figure 3 It is a planar schematic diagram of the guide rail of the present invention;
[0018] Figure 4 is a schematic plan view of the conductive member of the present invention;
[0019] Figure 5 It is a structural schematic diagram of the sliding shell of the present invention;
[0020] Figure 6 Schematic diagram of the internal structure of the sliding shell of the present invention;
[0021] Figure 7 This is a schematic diagram of the structure of the light bar of the present invention;
[0022] Figure 8 It is a decryption schematic diagram of the present invention;
[0023] Figure 9 Schematic diagram of the first connection mode between the sliding housing and the light bar of the present invention;
[0024] Figure 10 Schematic diagram of the second connection mode between the sliding housing and the light bar of the present invention.
[0025] In the picture:
[0026] 10. Guide rail; 101. Limiting protrusion; 102. First limiting groove; 103. Second limiting groove; 104. Mounting groove; 11. Conductive member; 111. Mounting member; 112. Conductive metal; 113. Limiting slide groove; 12. Sliding shell; 121. Block; 122. Conductive port; 123. Socket; 13. Contact piece; 131. Spring; 14. Elastic conductive member; 141. First conductive block; 142. Second conductive block; 143. Abutment portion; 15. Light bar; 151. LED lamp bead; 152. First conductive groove; 153. First positive electrode groove; 154. First negative electrode groove; 155. Second conductive groove; 156. Second positive electrode groove; 157. Second negative electrode groove. DETAILED DESCRIPTION
[0027] To make the above-mentioned objects, features, and advantages of the present invention more readily apparent, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings. The following description sets forth numerous specific details to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways than those described herein, and those skilled in the art may make similar modifications without departing from the scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0028] like Figures 1-10 As shown, the present invention provides a track atmosphere lamp, characterized in that it includes: a guide rail 10, a sliding shell 12, and a light bar 15; conductive members 11 are respectively provided on both sides of the guide rail 10, the sliding shell 12 is slidably arranged on the guide rail 10, and contacts 13 are respectively provided on both sides of the sliding shell 12, and the contacts 13 correspond to the conductive members 11, and sockets 123 are respectively provided on the bottoms of both ends of the sliding shell 12, and an elastic conductive member 14 extending horizontally toward the interior of the sliding shell 12 is provided above the socket 123, and the elastic conductive member 14 is electrically connected to the contact 13, and the light bar 15 is slidably arranged in the guide rail 10, and one end of the light bar 15 is provided with a first conductive groove 152 for conducting electricity, and the end of the light bar 15 away from the first conductive groove 152 is provided with a second conductive groove 1 55. The light bar 15 is adapted to the socket 123. The end of the light bar 15 is inserted into the sliding shell 12 through the socket 123. The elastic conductive member 14 is against the conductive slot. Specifically, the conductive members 11 on both sides are one positive and one negative. The conductive member 11 is connected to the external mains power. The contact pieces 13 on both sides are one positive and one negative. The positive contact piece 13 contacts the positive conductive member 11, and the negative contact piece 13 contacts the negative conductive member 11. The elastic conductive member 14 is connected to the corresponding contact piece 13, so that the mains power is transmitted from the conductive member 11 through the contact piece 13 to the elastic conductive member 14. When the light bar 15 is inserted into the socket 123, the first conductive slot 152 on the light bar 15 contacts the elastic conductive member 14, thereby realizing circuit connectivity and making the light bar 15 light up.
[0029] Furthermore, in this embodiment, the top of the guide rail 10 is open, and limiting protrusions 101 vertically facing the bottom are respectively provided on both sides of the top of the guide rail 10. The limiting protrusions 101 are spaced apart from the side walls of the guide rail 10 to form a first limiting groove 102. A second limiting groove 103 is provided at the bottom of the guide rail 10 corresponding to the first limiting groove 102. The first limiting groove 102 and the second limiting groove 103 form a "T"-shaped installation groove 104.
[0030] Furthermore, in this embodiment, the conductive member 11 includes: a mounting member 111, the mounting member 111 is adapted to the mounting groove 104, a conductive metal 112 is fixedly provided on the side of the mounting member 111 facing away from the side wall of the guide rail 10, a limiting groove 113 is formed between the mounting member 111 and the limiting protrusion 101, specifically, the mounting member 111 is restricted in the mounting groove 104 by the first limiting groove 102 and the second limiting groove 103 to prevent the rotating member from escaping from the mounting groove 104, the conductive metal 112 can be copper, iron or silver, and when the mounting member 111 is installed in the mounting groove 104, a limiting groove 113 is also formed between the mounting member 111 and the limiting protrusion 101 to limit the sliding shell 12 in the longitudinal direction to prevent the sliding shell 12 from escaping from the guide rail 10.
[0031] Furthermore, blocks 121 are respectively provided on the two opposite sides of the sliding shell 12, and the blocks 121 are adapted to the limiting slide grooves 113. Specifically, when the sliding shell 12 is installed in the guide rail 10, the blocks 121 are located in the limiting slide grooves 113. The limiting slide grooves 113 restrict the sliding shell 12 from being able to separate from the guide rail 10 in the longitudinal direction. In this embodiment, the blocks 121 are connected to the side wall of the sliding shell 12 on only one side, so that the blocks 121 have a certain elastic force, so that when the sliding shell 12 needs to be taken out, it is only necessary to apply a certain pulling force to the sliding shell 12, so that the blocks 121 are pushed into the sliding shell 12 under the pressure of the guide rail 10, thereby facilitating the removal of the sliding shell 12.
[0032] Furthermore, in this embodiment, conductive ports 122 are respectively provided on both sides of the sliding shell 12, and the conductive ports 122 on both sides are staggered. The contact piece 13 contacts the conductive member 11 through the conductive port 122. A spring 131 is further provided on the inside of the sliding shell 12. One end of the spring 131 abuts against the side wall of the sliding shell 12, and the other end is fixedly connected to the contact piece 13. Specifically, a contact head (not shown in the figure) adapted to the conductive port 122 is provided on the contact piece 13. The contact head is exposed outside the sliding shell 12 through the conductive port 122. When the sliding shell 12 is installed in the guide rail 10, the exposed The exposed contact head contacts the conductive member 11 to achieve circuit connectivity. In order to prevent the sliding housing 12 from being unable to be installed into the guide rail 10 due to the exposed contact head during installation, two springs 131 are provided in the sliding housing 12, corresponding to the two contact pieces 13 respectively. One end of the spring 131 is fixedly connected to the contact piece 13, and the other end is fixedly connected to the side wall of the sliding housing 12, so that when the sliding housing 12 is installed, the contact head is squeezed into the sliding housing 12 by the extrusion of the conductive member 11, so that the sliding housing 12 can be smoothly installed into the guide rail 10. At the same time, the contact piece 13 will always keep the contact head in close contact with the conductive member 11 under the action of the spring 131.
[0033] Furthermore, in this embodiment, the elastic conductive member 14 includes: a first conductive block 141 and a second conductive block 142. The first conductive block 141 and the second conductive block 142 are respectively connected to the corresponding contact piece 13. The first conductive block 141 and the second conductive block 142 are spaced apart. The length of the second conductive block 142 is greater than the length of the first conductive block 141. The ends of the first conductive block 141 and the second conductive block 142 are respectively provided with abutment portions 143 with a trapezoidal cross-section. Specifically, the first conductive block 141 is electrically connected to the contact piece 13 at the positive end, and the second conductive block 142 is electrically connected to the contact piece 13 at the negative end. The elastic conductive member 14 has two, They are respectively located above the two sockets 123. It should be noted that when the first conductive block 141 in the elastic conductive member 14 at the first end is the positive pole, the first conductive block 141 in the elastic conductive member 14 at the second end is the negative pole. Similarly, when the second conductive block 142 in the elastic conductive member 14 at the first end is the negative pole, the second conductive block 142 in the elastic conductive member 14 at the second end is the positive pole, and when one of the first conductive block 141 and the second conductive block 142 at the same end is the positive pole, the other is the negative pole. At the same time, in this embodiment, the elastic conductive member 14 is fixedly connected to the sliding shell 12 at one end, and the other end is suspended in the sliding shell 12, so that the elastic conductive member 14 has a certain elastic force through structural design.
[0034] Furthermore, in this embodiment, the first conductive slot 152 includes: a first positive electrode slot 153 and a first negative electrode slot 154, there are two first positive electrode slots 153, the two first positive electrode slots 153 are arranged at intervals, and there is one first negative electrode slot 154, the first negative electrode slot 154 and the first positive electrode slot 153 are arranged at intervals in the width direction of the sliding shell 12, and the first negative electrode slot 154 and the two first positive electrode slots 153 are distributed in a triangular shape.
[0035] Furthermore, the second conductive groove 155 includes: a second positive electrode groove 156 and a second negative electrode groove 157, wherein the second positive electrode groove 156 is provided with one, and the second negative electrode groove 157 is provided with two, and the two second negative electrode grooves 157 are arranged at intervals, and the second positive electrode groove 156 and the second negative electrode groove 157 are arranged at intervals in the width direction of the sliding shell 12, and the two second negative electrode grooves 157 and the second positive electrode groove 156 are distributed in a triangular shape.
[0036] Specifically, there are two ways to connect the light bar 15. The first is to connect one end to the positive and negative poles, and the second is to connect one end to the positive pole and the other end to the negative pole. When the first connection method is adopted, a light bar 15 only needs to be connected to one sliding shell 12. The light bar 15 is inserted into the end of the first conductive block 141 which is the positive pole. It is necessary to ensure that the end where the light bar 15 is inserted has two first positive electrode grooves 153 to avoid short circuit caused by reverse insertion. When the light bar 15 is inserted into the socket 123, the light bar 15 first lifts the first conductive block 141. When the light bar 15 is inserted a certain distance, the first conductive block 141 corresponds to the first first positive electrode groove 153. At this time, the first conductive block 141 prompts the abutting portion 143 to contact the first positive electrode groove 153 under its own elastic force, and presses the abutting portion 143 into the first positive electrode groove 153 under its own elastic force. At this time, the first conductive block 141 contacts the first first positive electrode slot 153 under the elastic force, emitting a first sound, forming a tactile sensation, which helps the user understand the contact status of the light bar 15 and the elastic conductive member 14 at this time. The insertion continues until the second first positive electrode slot 153 corresponds to the abutting portion 143 of the first conductive block 141 and is pressed into the first positive electrode slot 153, emitting a second sound. At this time, the abutting portion 143 of the second conductive block 142 also contacts the first negative electrode slot 154 and is pressed into the first negative electrode slot 154, while emitting a sound. When the second sound is heard, it means that the connection of the light bar 15 is successful. At this time, the abutting portion 143 of the first conductive block 141 is located in the second first positive electrode slot 153, and the second conductive block 142 is located in the first negative electrode slot 154, thereby realizing the power supply of the light bar 15 and emitting light.
[0037] When the second connection method is adopted, a light bar 15 needs to be connected to two sliding shells 12. When the light bar 15 is inserted, it is necessary to ensure that the first conductive block 141 in the end of the sliding shell 12 into which the first positive electrode slot 153 of the light bar 15 is inserted is the positive pole. When the light bar 15 is inserted into the socket 123, when the first sound is heard, it means that the end is successfully connected. Later, it is only necessary to insert the other end into the second sliding shell 12 and hear the first sound to connect the holes. When the light bar 15 needs to be removed for replacement, due to the cooperation between the abutting portion 143 and the first positive electrode slot 153, the light bar 15 needs to be pulled outward with greater force when it is removed, thereby preventing the light bar 15 from being disconnected from the sliding shell 12 due to unintentional contact with the outside world.
[0038] Furthermore, in this embodiment, a number of LED lamp beads 151 are arranged at intervals on the light bar 15, and a light-scattering shell is also provided on the light bar 15. The light-scattering shell cover is provided on the LED lamp beads 151. Specifically, by providing the light-scattering shell, the light of the LED lamp beads 151 is scattered to avoid direct exposure to human eyes.
[0039] In summary, the present invention arranges a light bar in the guide rail and inserts the light bar into the sliding housing so that the light bar is connected to the conductive member to realize connected lighting, and the light bar can move with the movement of the sliding housing. At the same time, by respectively arranging corresponding first conductive grooves and second conductive grooves at both ends of the light bar, the light bar has two connection methods. The specific connection method can be selected according to the actual usage situation. The connection is simple, the disassembly is convenient, and the subsequent maintenance is convenient.
[0040] The present invention is not limited to what is described in the specification and embodiments, and additional advantages and modifications will be readily apparent to those skilled in the art. Therefore, the present invention is not limited to the specific details, representative devices, and illustrative examples shown and described herein without departing from the spirit and scope of the general concept defined by the claims and their equivalents.
Claims
1. A track atmosphere light, characterized in that: include: Guide rail, sliding shell, light bar; conductive parts are respectively provided on both sides of the guide rail, the sliding shell is slidably arranged on the guide rail, and contact pieces are respectively provided on both sides of the sliding shell, the contact pieces correspond to the conductive parts, and sockets are respectively provided on the bottoms of both ends of the sliding shell, and an elastic conductive part extending horizontally toward the inside of the sliding shell is provided above the socket, the elastic conductive part is electrically connected to the contact pieces, the light bar is slidably arranged in the guide rail, one end of the light bar is provided with a first conductive groove for conducting electricity, and the end of the light bar away from the first conductive groove is provided with a second conductive groove, the light bar is adapted to the socket, and the end of the light bar is inserted into the sliding shell through the socket, and the elastic conductive part is against the corresponding first conductive groove; The elastic conductive member includes: a first conductive block and a second conductive block, wherein the first conductive block and the second conductive block are respectively connected to the corresponding contact piece, the first conductive block and the second conductive block are spaced apart, the length of the second conductive block is greater than the length of the first conductive block, and the ends of the first conductive block and the second conductive block are respectively provided with an abutting portion with a trapezoidal cross-section; The first conductive slot includes: a first positive slot and a first negative slot, wherein two first positive slots are provided, the two first positive slots are spaced apart, and one first negative slot is provided, the first negative slot and the first positive slot are spaced apart in the width direction of the sliding shell, and the first negative slot and the two first positive slots are distributed in a triangular shape; The second conductive slot includes: a second positive electrode slot and a second negative electrode slot, wherein there is one second positive electrode slot and two second negative electrode slots, the two second negative electrode slots are spaced apart, the second positive electrode slot and the second negative electrode slot are spaced apart in the width direction of the sliding shell, and the two second negative electrode slots and the second positive electrode slot are distributed in a triangular shape; The light bar has two connection methods. One is that one of the sliding shells is connected to the positive and negative poles at one end of the light bar; the other is that the sliding shells are provided at both ends of the light bar, the sliding shell at one end is connected to the positive pole of the light bar, and the sliding shell at the other end is connected to the negative pole of the light bar.
2. The track atmosphere light according to claim 1, characterized in that: The top of the guide rail is open, and limiting protrusions vertically facing the bottom are respectively provided on both sides of the top of the guide rail. The limiting protrusions are spaced apart from the side walls of the guide rail to form a first limiting groove. A second limiting groove is provided at the bottom of the guide rail corresponding to the first limiting groove. The first limiting groove and the second limiting groove form a "T"-shaped installation groove.
3. The track atmosphere light according to claim 2, characterized in that: The conductive member includes: a mounting member, the mounting member is adapted to the mounting groove, a conductive metal is fixedly provided on a side of the mounting member facing away from the guide rail side wall, and a limiting sliding groove is formed between the mounting member and the limiting protrusion.
4. The track atmosphere light according to claim 3, characterized in that: Clamping blocks are respectively provided on two opposite sides of the sliding housing, and the clamping blocks are adapted to the limiting sliding grooves.
5. The track atmosphere light according to claim 1, characterized in that: Conductive ports are respectively provided on both sides of the sliding shell, and the conductive ports on both sides are staggered. The contact piece contacts the conductive part through the conductive ports. A spring is also provided inside the sliding shell, one end of the spring is against the side wall of the sliding shell, and the other end is fixedly connected to the contact piece.
6. The track atmosphere light according to claim 1, characterized in that: A plurality of LED lamp beads are arranged at intervals on the light bar, and a light-scattering shell is further provided on the light bar, and the light-scattering shell cover is arranged on the LED lamp beads.
Citation Information
Patent Citations
Lighting Module
CN102913782A
Track lamp system
CN111536450A
LED lamp strip connecting device and use its LED lamps and lanterns
CN204756811U
Track atmosphere lamp
CN216743961U