CN220397367U - Novel blue light filling lamp is prevented in study illumination - Google Patents

Novel blue light filling lamp is prevented in study illumination Download PDF

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Publication number
CN220397367U
CN220397367U CN202321954645.XU CN202321954645U CN220397367U CN 220397367 U CN220397367 U CN 220397367U CN 202321954645 U CN202321954645 U CN 202321954645U CN 220397367 U CN220397367 U CN 220397367U
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China
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light
lamp
lens
strip
light guide
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CN202321954645.XU
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Chinese (zh)
Inventor
袁换林
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Shenzhen Xuan Lin Technology Co ltd
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Shenzhen Xuan Lin Technology Co ltd
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Priority to CN202321954645.XU priority Critical patent/CN220397367U/en
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Abstract

The utility model discloses a novel study lighting blue light-proof light supplementing lamp, which comprises a lamp holder, wherein the bottom end of the lamp holder is provided with a mounting groove, a lamp panel is arranged in the mounting groove, and a plurality of lamp beads are arranged on the lamp panel; the lens strip is arranged at the bottom end of the mounting groove and is covered below the lamp panel, and the lens strip is used for guiding the light rays of the plurality of lamp beads to be led out after being refracted; the light guide strip is connected to the bottom of the lamp holder and located below the lens strip, a plurality of light holes are formed in the light guide strip, and the light holes are sequentially distributed in the arrangement direction of the lamp beads. According to the novel study lighting blue light-proof light supplementing lamp, the lens strips are arranged to refract light so that the light has different light-emitting angles, and the light is guided by the plurality of light holes of the light guide strips, so that the light is prevented from being concentrated.

Description

Novel blue light filling lamp is prevented in study illumination
Technical Field
The utility model relates to the technical field of lamps, in particular to a novel blue light-proof light supplementing lamp for learning and lighting.
Background
At present, the light supplementing lamp is mainly used for supplementing light, and is used for illuminating a blackboard or a display screen in places such as application classrooms, meeting rooms and the like. Because it is when using, the light is the direct cover and locates illumination such as blackboard or display screen, in order to save the cost, the illumination peer can select low power, low light efficiency, low luminance, have the product of blue light harm, as long as satisfy can throw light on blackboard or display screen can, traditional light source that throws light directly penetrate the people's eye, do not do angle treatment, light distribution gathers, can cause reflection of light at partial angle, directly penetrate the people's eye, can cause the injury of certain degree to the people's eye, even lead to transient vision to disappear.
Disclosure of Invention
In order to overcome the defects of the prior art, the utility model aims to provide a novel study lighting anti-blue light supplementing lamp, which refracts light rays by arranging lens strips so that the light rays have different light-emitting angles, and guides light by a plurality of light holes of a light guide strip so as to prevent the light rays from being concentrated.
The utility model adopts the following technical scheme:
a novel study lighting blue light-proof light supplementing lamp, which comprises,
the lamp comprises a lamp holder, wherein the bottom end of the lamp holder is provided with a mounting groove, a lamp panel is arranged in the mounting groove, and a plurality of lamp beads are arranged on the lamp panel;
the lens strip is arranged at the bottom end of the mounting groove and is covered below the lamp panel, and the lens strip is used for guiding the light rays of the plurality of lamp beads to be led out after being refracted;
the light guide strip is connected to the bottom of the lamp holder and located below the lens strip, a plurality of light holes are formed in the light guide strip, and the light holes are sequentially distributed in the arrangement direction of the lamp beads.
Further, a lamp panel groove is formed in the top end of the lens strip, and the lamp panel is installed in the lamp panel groove.
Further, the both sides of lens strip all are equipped with the light transmission face, the top of light transmission face link up in the outside of lamp plate recess, the bottom of light transmission face sets up outwards slope gradually.
Further, the lens strip is provided with a plurality of lens sections, and the plurality of lens sections are sequentially connected in the arrangement direction of the plurality of lamp beads; the top end of each lens section is provided with the lamp panel groove.
Further, the refractive index of each of the lens segments is different.
Further, the light guide strip is provided with a plurality of light guide sections, and the light guide sections are sequentially connected in the arrangement direction of the plurality of lamp beads; the plurality of light guide sections are arranged in one-to-one correspondence with the plurality of lens sections.
Further, an abutting step is arranged on the light guide section and used for abutting against the side part of the lens section.
Further, the lamp beads are white lamp beads or warm white lamp beads.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of an exploded construction of the present utility model;
FIG. 3 is a schematic diagram of a lamp panel according to the present utility model;
FIG. 4 is a schematic view of a lens segment according to the present utility model;
fig. 5 is a schematic structural diagram of a light guide section according to the present utility model.
In the figure: 10. a lamp holder; 20. a light guide bar; 21. a light guide section; 211. a light hole; 212. abutting against the step; 30. a lens bar; 31. a lens section; 311. a lamp panel groove; 312. a light-transmitting surface; 40. a lamp panel; 41. and (5) a lamp bead.
Detailed Description
The utility model will be further described with reference to the accompanying drawings and detailed description below:
in the description of the present utility model, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, merely to facilitate description of the present utility model and simplify the description, and do not indicate or imply that the apparatus or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Unless defined otherwise, 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 utility model belongs. The terminology used herein in the description of the utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model.
The novel blue light supplementing lamp for learning lighting as shown in fig. 1-5 comprises a lamp holder 10, a lens strip 30 and a light guide strip 20, wherein an installation groove is formed in the bottom end of the lamp holder 10, a lamp panel 40 is arranged in the installation groove, a plurality of lamp beads 41 are arranged on the lamp panel 40, and the lamp beads 41 are distributed at intervals in the length direction of the lamp panel 40.
Specifically, the lens strip 30 is mounted at the bottom end of the mounting groove, and the lens strip 30 can be capped below the lamp panel 40, and the lens strip 30 can guide the light rays of the plurality of lamp beads 41 to be refracted and then led out. The light guide strip 20 is connected to the bottom end of the lamp holder 10, and the light guide strip 20 is located below the lens strip 30, a plurality of light holes 211 are formed in the light guide strip 20, and the plurality of light holes 211 are sequentially distributed in the arrangement direction of the plurality of lamp beads 41. On the basis of this structure, the lamp panel 40 may sequentially cover the lens bars 30 and the light guide bars 20 under the lamp panel 40 after being mounted to the mounting groove of the lamp socket 10.
In use, the lamp socket 10 may be mounted on a ceiling, and then the lamp panel 40 of the lamp socket 10 may be mounted in a mounting groove at the bottom end of the lamp socket 10, the bottom end of the lamp panel 40 may face downward, the lens strip 30 may be capped at the bottom end of the mounting groove, and the light guide strip 20 may be capped at the bottom end of the lens strip 30 and connected to the bottom end of the lamp socket 10.
Light rays emitted by the plurality of lamp beads 41 on the lamp panel 40 can be transmitted out through the lens strip 30, and are emitted after being refracted through the lens strip 30, and the light rays emitted by the plurality of lamp beads 41 are refracted through the lens strip 30, and as different positions of the lens strip 30 have different refractive indexes, the light rays have different refractive light emitting angles.
In addition, since the light guide strip 20 is covered below the lens strip 30, and the light guide strip 20 is provided with a plurality of light holes 211 for the refracted light beams of the plurality of lamp beads 41 to be emitted, the light beams are guided by the plurality of light holes 211 of the light guide strip 20, so that the light beams are prevented from being concentrated, and the emitted light beams are uniform.
Further, a lamp panel groove 311 may be further disposed at the top end of the lens strip 30, the lamp panel 40 is mounted in the lamp panel groove 311, so that the lamp beads 41 of the lamp panel 40 may be surrounded by the lamp panel 40 and the lamp panel groove 311, the lamp beads 41 may be protected, and the assembly structure of the lamp panel 40 and the lens strip 30 is stable.
More specifically, the lens strips 30 are provided with light-transmitting surfaces 312 on both sides, the top ends of the light-transmitting surfaces 312 are connected to the outside of the lamp panel grooves 311, and the bottom ends of the light-transmitting surfaces 312 are gradually inclined outwards, so that the lens strips 30 can refract the lens materials except for the lens materials, and the light-transmitting surfaces 312 inclined on both sides of the lens strips 30 can refract the light, so that the emergent light is more uniform.
Further, the lens bar 30 in the present embodiment has a plurality of lens segments 31, the plurality of lens segments 31 are sequentially connected in the arrangement direction of the plurality of light beads 41, and the top end of each lens segment 31 is provided with a light panel groove 311. Thus, after the transparent sections are mutually engaged, the lamp panel grooves 311 at the top ends of the lens sections 31 can be mutually engaged and communicated for the lamp panel 40 to be mounted.
It should be noted that, the refractive indexes of the lens segments 31 are different, specifically, the refractive angles of the two adjacent lens segments 31 are not asymmetric, the asymmetric refractive lenses are connected, and after the lamplight is transmitted, the lamplight has a fission effect, so that the effect of double lights of one lamp is achieved, the refraction of the light is just uniformly distributed, and the effect that each angle can illuminate is achieved.
In addition, if the length of the lens bar 30 is directly processed to be identical to the length of the lamp panel 40, the requirement for the die is high, and the lens bar is easily broken after the processing is completed, and is not easy to install. In this embodiment, the lens bar 30 is formed by splicing a plurality of small-length lens segments 31, which is convenient for processing and assembling.
Further, the lens strips 30 are formed by splicing a plurality of lens segments 31, so that the light guide strip 20 in this embodiment has a plurality of light guide segments 21, the plurality of light guide segments 21 are sequentially connected in the arrangement direction of the plurality of light beads 41, and the plurality of light guide segments 21 are arranged in one-to-one correspondence with the plurality of lens segments 31, so that the light after refraction corresponding to the different lens segments 31 can be guided out through the light guide segments 21 at the corresponding positions, and the light concentration can be avoided.
Similarly, if the light guide bar 20 is directly processed to have the same length as the lamp panel 40, the die is required to be high, and the light guide bar is easily broken after the processing is completed, and is not easy to install. Therefore, the light guide strip 20 can be formed by splicing a plurality of light guide sections 21 with small lengths, which is convenient for processing and can be correspondingly assembled corresponding to different lens sections 31.
More specifically, an abutment step 212 may be further provided on the light guide section 21, and the abutment step 212 may abut against a side portion of the lens section 31, preventing the light guide section 21 from being offset left and right after being assembled with the lens section 31, so that the assembly accuracy is higher.
It should be noted that, the light guide strip 20 may be made of glass or acrylic material in the prior art.
Of course, the assembly of the light guide strip 20, the lens strip 30 and the lamp holder 10 may be performed by bonding, or by assembling with screws, which is specifically selected according to practical needs.
Further, the lamp bead 41 is a white lamp bead 41 or a warm white lamp bead 41, so that the illumination light can realize no blue light, high brightness and high uniformity, and eye protection.
It will be apparent to those skilled in the art from this disclosure that various other changes and modifications can be made which are within the scope of the utility model as defined in the appended claims.

Claims (8)

1. A novel study lighting blue light-proof light supplementing lamp is characterized by comprising,
the lamp comprises a lamp holder, wherein the bottom end of the lamp holder is provided with a mounting groove, a lamp panel is arranged in the mounting groove, and a plurality of lamp beads are arranged on the lamp panel;
the lens strip is arranged at the bottom end of the mounting groove and is covered below the lamp panel, and the lens strip is used for guiding the light rays of the plurality of lamp beads to be led out after being refracted;
the light guide strip is connected to the bottom of the lamp holder and located below the lens strip, a plurality of light holes are formed in the light guide strip, and the light holes are sequentially distributed in the arrangement direction of the lamp beads.
2. The novel blue light-proof light supplementing lamp for learning illumination according to claim 1, wherein a lamp panel groove is formed in the top end of the lens strip, and the lamp panel is installed in the lamp panel groove.
3. The novel blue light supplementing lamp for learning illumination according to claim 2, wherein the two sides of the lens strip are provided with light-transmitting surfaces, the top ends of the light-transmitting surfaces are connected to the outside of the lamp panel groove, and the bottom ends of the light-transmitting surfaces are gradually arranged in an outward inclined manner.
4. The novel learning illumination blue light-proof light supplementing lamp according to claim 2, wherein the lens strip is provided with a plurality of lens sections, and the plurality of lens sections are sequentially connected in the arrangement direction of the plurality of lamp beads; the top end of each lens section is provided with the lamp panel groove.
5. The novel learning illumination blue-light-preventing light-supplementing lamp according to claim 4, wherein refractive indexes of each of said lens segments are different.
6. The novel blue light-proof light supplementing lamp for learning illumination according to claim 4, wherein the light guide strip is provided with a plurality of light guide sections, and the plurality of light guide sections are sequentially connected in the arrangement direction of the plurality of light beads; the plurality of light guide sections are arranged in one-to-one correspondence with the plurality of lens sections.
7. The novel learning illumination blue light preventing light supplementing lamp according to claim 6, wherein an abutting step is arranged on the light guide section, and the abutting step is used for abutting against the side part of the lens section.
8. The novel learning illumination anti-blue light supplemental light lamp according to claim 1, wherein the lamp bead is a white light lamp bead or a warm white light lamp bead.
CN202321954645.XU 2023-07-21 2023-07-21 Novel blue light filling lamp is prevented in study illumination Active CN220397367U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321954645.XU CN220397367U (en) 2023-07-21 2023-07-21 Novel blue light filling lamp is prevented in study illumination

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321954645.XU CN220397367U (en) 2023-07-21 2023-07-21 Novel blue light filling lamp is prevented in study illumination

Publications (1)

Publication Number Publication Date
CN220397367U true CN220397367U (en) 2024-01-26

Family

ID=89601732

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321954645.XU Active CN220397367U (en) 2023-07-21 2023-07-21 Novel blue light filling lamp is prevented in study illumination

Country Status (1)

Country Link
CN (1) CN220397367U (en)

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