CN219867518U - Green building light guide lighting system - Google Patents

Green building light guide lighting system Download PDF

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Publication number
CN219867518U
CN219867518U CN202321057903.4U CN202321057903U CN219867518U CN 219867518 U CN219867518 U CN 219867518U CN 202321057903 U CN202321057903 U CN 202321057903U CN 219867518 U CN219867518 U CN 219867518U
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CN
China
Prior art keywords
pipe
light guide
sliding rail
hole
light
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Active
Application number
CN202321057903.4U
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Chinese (zh)
Inventor
马迪辉
高飞
汪兵兵
邵立达
李铃达
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Hangzhou Chengtou Construction Co ltd
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Hangzhou Chengtou Construction Co ltd
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Priority to CN202321057903.4U priority Critical patent/CN219867518U/en
Application granted granted Critical
Publication of CN219867518U publication Critical patent/CN219867518U/en
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Abstract

The utility model belongs to the technical field of building illumination, and particularly relates to a green building light guide illumination system, which comprises: a connecting pipe and a light pipe; the light guide is connected with the connecting pipe in a detachable mode, the reflecting surface is arranged on the side wall of the middle portion in the connecting pipe, a plurality of connecting sliding rails are arranged on the side wall of the inner portion of the connecting pipe at two ends of the reflecting surface in an annular mode at equal intervals, one end of each connecting sliding rail extends to the side wall of the reflecting surface end, the connecting sliding rail is arranged at the position, corresponding to the connecting sliding rail, on the outer side wall of the light guide connected with the connecting pipe, of the connecting sliding rail, and the connecting sliding rail is connected in the connecting sliding rail in a sliding mode. The device is convenient to connect and simple to detach, and can be used for carrying out multi-angle distribution connection on the light guide pipe.

Description

Green building light guide lighting system
Technical Field
The utility model belongs to the technical field of building illumination, and particularly relates to a green building light guide illumination system.
Background
The light guide lighting system is one new type of lighting device and consists of mainly lighting cover, light pipe and diffuser. The system principle is that natural light is efficiently collected through a lighting cover and is guided into the system for redistribution, and then the natural light is uniformly and efficiently irradiated to any place needing the light through a diffusion device at the bottom of the system after being transmitted and strengthened through a specially manufactured light pipe, so that a special lighting effect brought by the natural light is obtained.
The prior patent is granted the number: CN202691888U discloses a building light guide lighting system, including light pipe, light collecting cover, diffusion screen and connector, the connector sets up in building roofing top, and the light pipe upper end is connected with the light collecting cover, and the middle part passes connector and the entrance to a cave of roofing and extends to in the room, and the indoor light pipe is fixed connection mutually with the frame that sets up at the roof through wire rope, and the connector includes C shaped steel connecting frame, preservative wood, rock wool board, first waterproofing membrane, second waterproofing membrane, cement board, waterproof board and third waterproofing membrane. The utility model adopts the special connector for the prefabricated light guide pipe, which not only ensures the manufacturing quality, has simple and convenient site construction operation, solves the condensation and condensation problems of the inner wall of the light guide pipe, ensures the reliability of the waterproof construction of the connection between the light guide pipe and the roof of the space plate, effectively solves the connection and installation problems between the light guide pipe and the roof of the building, and after the analysis of the light guide lighting system, the light guide pipe needs to be transmitted to different corner positions in the building for use, so that the light guide pipe needs to be connected at various angles during installation and distribution, the light guide pipe needs extremely high requirements during connection, particularly when the light guide pipe needs to be used at the connection positions of corners, the high accuracy of the connected light guide pipe needs to be ensured, the light guide pipe needs to be convenient to detach, and the internal structure of the light guide pipe needs to be maintained and maintained regularly, but the existing light guide pipe connection structure is difficult to fully complete the requirements.
Disclosure of Invention
It is an aim of embodiments of the present utility model to provide a green architectural light guide illumination system which aims to address the above problems.
The utility model is realized in that it comprises: a connecting pipe and a light pipe; one end of the light guide pipe is connected with a lighting cover arranged on a roof of a building, the other end of the light guide pipe is connected with a diffusion device distributed in the building room, a connecting pipe is detachably connected between the light guide pipe and the light guide pipe, the connecting pipe is provided with a linear type and an L-shaped type and is used for connecting the light guide pipes at different connecting angles, the inner middle side wall of the connecting pipe is provided with a reflecting surface, the inner side wall of the connecting pipe at two ends of the reflecting surface is provided with a plurality of connecting sliding rails at equal intervals in a ring shape, one end of the connecting sliding rail extends to the side wall of the reflecting surface, the other end of the connecting sliding rail extends to the outside of the connecting pipe to be provided with an opening shape, the connecting sliding rod is arranged at the position corresponding to the connecting sliding rail on the outer side wall of the light guide pipe connected with the connecting pipe and is in the connecting sliding connection sliding rail, the connecting sliding rod is elastically provided with a positioning pin towards the outer top of the end part of the inner side of the connecting pipe, the inner end part of the connecting sliding rail corresponding to the positioning pin is provided with a positioning hole, the locating pin is elastically spliced with the locating hole, the end part of the connecting slide bar corresponding to the locating pin is provided with a telescopic hole, the locating pin is arranged in the telescopic hole to move, the bottom end of the locating pin is elastically connected with a spring through a connecting rod, the bottom end of the spring is fixed in the connecting slide bar, one side of the telescopic hole is communicated with a stay wire hole arranged in the connecting slide bar, one end of the stay wire hole far away from the telescopic hole extends to the end part of the connecting slide bar and is arranged into an opening shape, one side of the bottom of the locating pin arranged in the telescopic hole is connected with a connecting wire, the middle part of the connecting wire slides through a pulley arranged on the inner wall of the stay wire hole, one end of the connecting wire far away from the locating pin is connected with a stay wire arranged in the stay wire hole, one end of the stay wire far away from the connecting wire extends to the outside of the connecting slide bar and is jointly connected with a pull ring which is sleeved on a light guide in a sliding way, when the spring is in a free state, the end of the locating pin extends to the outside of the telescopic hole.
Preferably, the thickness of the reflecting wall on the inner side of the connecting slide bar is the same as that of the reflecting surface.
Preferably, the reflective surface is made of the same material as the reflective wall inside the light guide.
According to the green building light guide lighting system provided by the utility model, the light guide and the connecting pipe are connected in a sliding manner, and then the positioning pin and the positioning hole are controlled by pulling the elastic fit of the pull ring and the spring, so that the high-precision connection between the light guide and the function of being convenient for splitting are realized, and the convenience of the connecting pipe in installation, distribution and use is fully improved.
Drawings
Fig. 1 is a schematic perspective view of a green architectural light guide illumination system.
Fig. 2 is a schematic diagram of the front view structure of a green architectural light guide illumination system.
Fig. 3 is a schematic side view of a green architectural light guide illumination system.
FIG. 4 is an enlarged schematic view of the structure of FIG. 2A;
in the accompanying drawings: the connecting tube 10, the light guide 11, the reflecting surface 12, the connecting slide rail 13, the positioning hole 14, the connecting slide bar 15, the positioning pin 16, the pull ring 17, the pull wire hole 18, the pull wire 19, the connecting wire 20, the telescopic hole 21, the connecting rod 22, the spring 23 and the pulley 24.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Specific implementations of the utility model are described in detail below in connection with specific embodiments.
As shown in fig. 1-4, a block diagram of a green architectural light guide lighting system according to an embodiment of the present utility model includes: a connecting pipe 10 and a light guide 11; one end of the light pipe 11 is connected with a lighting cover arranged on a roof of a building, the other end of the light pipe 11 is connected with a diffusion device distributed in the building, sunlight is collected by the lighting cover, then light is transmitted in the light pipe, then the transmitted light is irradiated in the room by the diffusion device, the illumination function is realized, the light pipe 11 is detachably connected with a connecting pipe 10 between the light pipe 11 and the light pipe 11 in the process of arrangement and connection, the connecting pipe 10 is provided with a linear shape and an L shape, the light pipes 11 at different connection angles are connected and used, the middle side wall in the connecting pipe 10 is provided with a reflecting surface 12, a plurality of connecting sliding rails 13 are annularly and equally spaced on the inner side walls of the connecting pipes 10 at two ends of the reflecting surface 12, one end of each connecting sliding rail 13 extends to the side wall of the reflecting surface 12, the other end extends to the outside of the connecting pipe 10 and is provided with an opening shape, the connecting slide bar 15 is arranged on the outer side wall of the light pipe 11 connected with the connecting pipe 10 at the position corresponding to the connecting slide rail 13, the connecting slide bar 15 is in sliding connection in the connecting slide rail 13, the connecting slide bar 15 is elastically provided with a positioning pin 16 towards the outer top of the inner end part of the connecting pipe 10, the inner end part of the connecting slide rail 13 corresponding to the positioning pin 16 is provided with a positioning hole 14, the positioning pin 16 is elastically spliced with the positioning hole 14, after the connecting slide bar 15 completely slides into the connecting slide rail 13, the positioning pin 16 is elastically clamped with the positioning hole 14, thereby keeping the stable connection of the light pipe 11 and the connecting pipe 10, the end part of the connecting slide bar 15 corresponding to the positioning pin 16 is provided with a telescopic hole 21, the positioning pin 16 is arranged in the telescopic hole 21 for moving, the bottom end of the positioning pin 16 is elastically connected with a spring 23 through a connecting rod 22, the bottom end of the spring 23 is fixed inside the connecting slide bar 15, the telescopic hole 21 is communicated with a pull wire hole 18 formed in the connecting sliding rod 15, one end of the pull wire hole 18 far away from the telescopic hole 21 extends to the end of the connecting sliding rod 15 and is arranged in an opening shape, one side of the bottom of a positioning pin 16 arranged in the telescopic hole 21 is connected with a connecting wire 20, the middle part of the connecting wire 20 slides through a pulley 24 arranged on the inner wall of the pull wire hole 18, one end of the connecting wire 20 far away from the positioning pin 16 is connected with a pull wire 19 arranged in the pull wire hole 18, one end of the pull wire 19 far away from the connecting wire 20 extends to the outside of the connecting sliding rod 15 and is jointly connected with a pull ring 17 sleeved on the light pipe 11 in a sliding manner, when the spring 23 is in a free state, the end of the positioning pin 16 extends to the outside of the telescopic hole 21 and is matched with the positioning hole 14, the connecting sliding rod 15 is fixedly clamped in the connecting sliding rail 13, when the light pipe 11 is required to be detached from the connecting pipe 10, the connecting wire 10 is manually controlled to be far away from the connecting pipe 10, the connecting wire 20 is driven to slide along the pulley 24 under the connection of the pull wire 19, the connecting wire 16 is then pulled to move towards the inside of the telescopic hole 21, and the spring 23 is compressed at the moment, and the end of the connecting wire 15 is simultaneously pulled to be separated from the connecting slide rail from the connecting rail 13.
In the embodiment of the present utility model, the thickness of the reflective wall at the inner side of the connecting slide bar 15 is the same as that of the reflective surface 12, so that after the light guide 11 is connected with the connecting pipe 10, the light conducted inside the light guide 11 can be smoothly transmitted through the connecting pipe 10; the material of the reflecting surface 12 is the same as that of the reflecting wall inside the light guide 11, so as to stably conduct light; when the pull ring 17 is only elastically acted on by the spring 23 upwards, the pull ring 17 is attached to the side wall of the end part of the connecting slide rod 15, so that the stability of the pull ring 17 can be maintained.
In the above embodiment of the utility model, when the connecting pipe 10 is arranged in the indoor area of the building, the L-shaped or linear connecting pipe 10 is selected to connect the light guide 11, the connecting slide bar 15 at the end of the light guide 11 is slidably connected along the corresponding connecting slide rail 13 inside the connecting pipe 10, then the light guide 11 is connected with the connecting pipe 10 with high precision by matching the clamping connection of the positioning pin 16 and the positioning hole 14, then the threading is conducted along the light guide 11, the reflecting surface and the reflecting wall inside the connecting pipe 10, the light guide 11 needs to be disassembled, the pull ring 17 is directly pulled to move in the direction away from the connecting pipe 10, the positioning pin 16 is driven to compress under the connection of the stay wire 19 and the connecting wire 20, the light guide 11 is moved from the positioning hole 14, and then the light guide 11 is pulled to be separated from the connecting pipe 10.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.

Claims (3)

1. A green architectural light guide lighting system comprising: a connecting pipe (10) and a light pipe (11); one end of the light pipe (11) is connected with a lighting cover arranged on a building roof, the other end of the light pipe is connected with a diffusion device which is distributed and arranged in a building room, the light pipe is characterized in that a connecting pipe (10) is detachably connected between the light pipe (11) and the light pipe (11), the connecting pipe (10) is provided with a linear type and L-shaped structure, the middle side wall in the connecting pipe (10) is provided with a reflecting surface (12), a plurality of connecting sliding rails (13) are annularly and equally spaced on the inner side wall of the connecting pipe (10) at two ends of the reflecting surface (12), one end of the connecting sliding rail (13) extends to the end side wall of the reflecting surface (12), the other end of the connecting sliding rail (13) extends to the outside of the connecting pipe (10) to form an opening, a connecting sliding rod (15) is arranged at a position corresponding to the connecting sliding rail (13) on the outer side wall of the light pipe (11) connected with the connecting pipe (10), the connecting sliding rod (15) is slidably connected in the connecting sliding rail (13), the connecting sliding rod (15) is elastically provided with a positioning pin (16) towards the outer top of the inner end of the inner side of the connecting pipe (10), the inner end of the connecting sliding rail (13) is provided with a positioning hole (14), the positioning pin (16) is correspondingly provided with a positioning hole (21), the positioning pin (21) is correspondingly arranged at the inner end of the positioning pin (21), the locating pin (16) bottom is through connecting rod (22) elastic connection has spring (23), spring (23) bottom mounting is inside connecting slide bar (15), inside hole (18) of acting as go-between of connecting slide bar (15) are offered in telescopic hole (21) one side intercommunication, the one end that the telescopic hole (21) was kept away from is extended to connecting slide bar (15) tip and is set up to the opening form, place locating pin (16) bottom one side inside telescopic hole (21) and be connected with connecting wire (20), pulley (24) on the inner wall of hole (18) are acted as go-between in connecting wire (20) middle part slip, the one end that connecting wire (20) kept away from locating pin (16) is connected with and is arranged in the inside pull wire (19) of acting as go-between hole (18), the one end that connecting wire (19) kept away from connecting wire (20) extends to the outside of connecting slide bar (15) and is connected with pull ring (17) of a slip cap on light pipe (11) jointly, when spring (23) are in the free state, locating pin (16) tip extends to the outside of telescopic hole (21).
2. The green architectural light guide lighting system according to claim 1, wherein the inside reflective wall thickness of the connecting slide bar (15) is the same as the reflective surface (12).
3. A green architectural light guide illumination system according to claim 2, wherein the reflective surface (12) is of the same material as the reflective wall inside the light guide (11).
CN202321057903.4U 2023-05-06 2023-05-06 Green building light guide lighting system Active CN219867518U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321057903.4U CN219867518U (en) 2023-05-06 2023-05-06 Green building light guide lighting system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321057903.4U CN219867518U (en) 2023-05-06 2023-05-06 Green building light guide lighting system

Publications (1)

Publication Number Publication Date
CN219867518U true CN219867518U (en) 2023-10-20

Family

ID=88342876

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321057903.4U Active CN219867518U (en) 2023-05-06 2023-05-06 Green building light guide lighting system

Country Status (1)

Country Link
CN (1) CN219867518U (en)

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