CN214332579U - Novel industrial and mining lamp lens - Google Patents

Novel industrial and mining lamp lens Download PDF

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Publication number
CN214332579U
CN214332579U CN202120478130.1U CN202120478130U CN214332579U CN 214332579 U CN214332579 U CN 214332579U CN 202120478130 U CN202120478130 U CN 202120478130U CN 214332579 U CN214332579 U CN 214332579U
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China
Prior art keywords
lens
mining lamp
mounting portion
light
lamp lens
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CN202120478130.1U
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Chinese (zh)
Inventor
马亮亮
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Shenzhen Nuoguan Technology Co ltd
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Shenzhen Nuoguan Technology Co ltd
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Priority to CN202120478130.1U priority Critical patent/CN214332579U/en
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Abstract

The utility model discloses a novel industrial and mining lamp lens, lens include printing opacity portion and first installation department, first installation department is located the internal surface of lens to through first baffle with the printing opacity portion is cut apart, be used for accomodating electronic component in the first printing opacity portion, the bottom surface of first installation department is the frosting, the even first protruding strip that is provided with of surface of first baffle can reduce the transparency of first installation department prevents to observe electronic component in the first installation department.

Description

Novel industrial and mining lamp lens
Technical Field
The utility model relates to a industrial and mining lamp technical field especially relates to a novel industrial and mining lamp lens.
Background
The industrial and mining lamp, also known as a high ceiling lamp, is an indoor LED lamp with high energy efficiency, and can be widely applied to industrial plants, production workshops, business supermans, sports and entertainment places, warehouses and the like. The illumination of the industrial and mining lamp is closely related to industrial production, the LED industrial and mining lamp gradually enters the visual field of people with the advantages of directional light emission, low power consumption, good driving characteristic, high response speed, high shock resistance, long service life, environmental protection and the like, and the LED light source lamp becomes a new generation energy-saving light source which has the advantage of replacing the traditional light source in the world, so the LED industrial and mining lamp becomes the optimal selection for the illumination energy-saving reconstruction in the illumination field of the traditional large industrial factory buildings and is also the trend.
The existing industrial and mining lamp generally comprises a lens, light emitted by a light source in the industrial and mining lamp penetrates through the lens to illuminate the external environment, electronic components similar to a sensor are generally installed on a lamp plate in the existing industrial and mining lamp, the lens inside the industrial and mining lamp can be observed through the lens sometimes to influence the attractiveness of the industrial and mining lamp, and the corresponding structure is lacked inside a lamp shell to store the electronic components.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model discloses a novel industrial and mining lamp lens is provided with the structure that can accomodate electronic components and parts that can prevent to observe the lens inside.
The utility model discloses a novel industrial and mining lamp lens, including printing opacity portion and first installation department, first installation department is located the internal surface of lens to through first baffle with the printing opacity portion is cut apart, the bottom surface of first installation department is the frosting, the even first protruding strip of a plurality of that is provided with of surface of first baffle.
Further, the first mounting portion is located at a center position of the light transmitting portion.
Furthermore, the inner surface of the light transmission part is provided with a plurality of anti-dazzle grooves which are distributed in a ring shape.
Furthermore, a plurality of reinforcing strip bulges are arranged on the outer surface of the light transmission part and are uniformly distributed in a divergent shape.
Further, the inner surface of the lens is provided with a second mounting portion which is provided outside the light transmitting portion and is divided from the light transmitting portion by a second partition plate.
Furthermore, the bottom surface of the second installation part is a frosted surface.
Furthermore, a plurality of second protruding strips are arranged on the outer surface of the second partition plate.
Furthermore, the outside of second installation department is provided with the third installation department, even a plurality of installation through-hole that is provided with on the third installation department.
The technical scheme of the utility model, compared with the prior art, beneficial effect is:
the lens is provided with a first mounting part for accommodating electronic components inside, and the first partition plate can separate the electronic components to prevent the electronic components from influencing the transmission of light by the light-transmitting part. The bottom surface of first installation department is provided with the first protruding strip of a plurality of for the surface of frosting and first baffle and can reduces the transparency of first installation department prevents to observe electronic component in the first installation department.
Drawings
FIG. 1 is a front view of a lens;
FIG. 2 is a schematic perspective view of a lens;
FIG. 3 is a cross-sectional view of the lens as it is attached to the housing of the industrial and mining lamp;
description of the figures
100. A lens; 10. a light-transmitting portion; 11. an anti-dazzle groove; 12. the reinforcing strip is raised; 20. a first mounting portion; 21. a first separator; 22. a first raised strip; 30. a second mounting portion; 31. a second separator; 32. a second raised strip; 40. a third mounting portion; 41. mounting a through hole; 50. and (5) sealing.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it should be noted that when one component is considered to be "connected" to another component, it may be directly connected to the other component or intervening components may exist. 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 invention belongs. It should also be noted that, unless expressly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly and can include, for example, fixed connections, removable connections, or integral connections; either mechanically or electrically, and may be internal to both elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
It should be further noted that in the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present invention and simplifying the description, but does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
As shown in fig. 1, the utility model discloses a novel industrial and mining lamp lens 100 installs on the lamp body of corresponding industrial and mining lamp, lens 100 is made by printing opacity material, and the light that the light source in the industrial and mining lamp sent is light-permeable lens 100 throws light on to external environment, lens 100 plays certain anti-dazzle function.
With continued reference to fig. 2, the lens 100 is a disk shape, the lens 100 includes a light-transmitting portion 10, and the light source can transmit light to the outside of the mining lamp through the light-transmitting portion 10. The inner surface of the light-transmitting portion 10 is provided with a plurality of antiglare grooves 11, the antiglare grooves 11 are annular, and the diameter thereof gradually increases from the central position of the lens 100. The side wall of the anti-dazzle groove 11 is an inclined plane, and light emitted by the light source can be diffused through the anti-dazzle groove 11, so that the light is diffused to play an anti-dazzle role.
The outer surface of the light-transmitting part 10 is provided with a plurality of reinforcing bar protrusions 12, and the plurality of reinforcing bar protrusions 12 are uniformly distributed in a divergent manner, so that the strength of the lens 100 can be increased, and the reinforcing bar protrusions 12 can refract light to play a certain anti-dazzle role.
As shown in fig. 2 and 3, the lens 100 is provided with a first mounting portion 20, and the first mounting portion 20 is located on an inner surface of the lens 100 and at a central position of the light-transmitting portion 10. An annular first partition 21 is provided outside the first mounting portion 20, and is divided from the light transmission portion 10 by the first partition 21. When the lens 100 is connected to the housing of the industrial and mining lamp, the electronic components similar to the sensor in the housing of the industrial and mining lamp can be received in the first mounting part 20, and the first mounting part 20 provides a mounting space for the electronic components and can be protected by the first partition 21.
Further, the bottom surface of the first mounting portion 20 is a frosted surface, and can be directly processed through an injection molding process, so that the transparency of the bottom surface of the first mounting portion 20 is reduced, and an external user can be prevented from observing the electronic element in the first mounting portion 20 through the lens 100.
The surface of first baffle 21 is even is provided with the first protruding strip 22 of a plurality of, and is a plurality of first protruding strip 22 evenly distributed can reduce the transparency of first baffle 21 prevents that personnel can see through first baffle 21 observes the inside electronic component of first installation department 20.
The lens 100 is further provided with a second mounting part 30, and the second mounting part 30 is arranged on the inner surface of the lens 100 and distributed in a circular ring shape. The second mounting portion 30 is located outside the light transmission portion 10, and the second mounting portion 30 is divided from the light transmission portion 10 by a second partition plate 31. The second mounting portion 30 is used for mounting an IC module, and provides a mounting space for the IC module in the operating condition lamp.
Further, the bottom surface of the second mounting portion 30 is a frosted surface, which can be directly processed during processing and injection molding, and can reduce the transparency of the second mounting portion 30 and prevent the IC module in the second mounting portion 30 from being observed.
A plurality of second protruding strips 32 are provided on the outer surface of the second spacer 31, and the second protruding strips 32 can reduce the transparency of the second spacer 31 to prevent the light transmission through the second spacer 31 to observe the IC module in the second mounting portion 30.
Further, the lens 100 is further provided with a third mounting portion 40, and the third mounting portion 40 is annular and located outside the second mounting portion 30. The third mounting part 40 is provided with a plurality of mounting through holes 41, and mounting screws penetrate through the mounting through holes 41 to be connected with the shell of the mining lamp. A sealing gasket 50 is arranged between the lens 100 and the housing of the mining lamp, and when the mounting screw passes through the mounting through hole 41 and is screwed with the housing thread of the mining lamp, the sealing connection between the lens 100 and the housing of the mining lamp can be realized through the sealing gasket 50, so that the waterproof effect is achieved.
The present invention can be designed in various embodiments and modifications without departing from the spirit and scope of the present invention in its broadest sense, and the above-described embodiments are intended to illustrate the present invention, but not to limit the scope of the present invention.

Claims (8)

1. The utility model provides a novel industrial and mining lamp lens, its characterized in that, includes printing opacity portion and first installation department, first installation department is located the internal surface of lens to through first baffle with the printing opacity portion is cut apart, the bottom surface of first installation department is the frosting, the even first protruding strip of a plurality of that is provided with of surface of first baffle.
2. The novel mining lamp lens as claimed in claim 1, wherein the first mounting portion is located at a central position of the light-transmitting portion.
3. The novel industrial and mining lamp lens of claim 2, wherein the inner surface of the light-transmitting part is provided with a plurality of anti-dazzle grooves, and the anti-dazzle grooves are distributed in a circular ring shape.
4. The novel mining lamp lens as claimed in claim 3, wherein the outer surface of the light-transmitting portion is provided with a plurality of reinforcing bar protrusions, and the plurality of reinforcing bar protrusions are uniformly distributed in a divergent manner.
5. The novel mining lamp lens as claimed in claim 1, wherein a second mounting portion is provided on an inner surface of the lens, the second mounting portion being disposed outside the light-transmitting portion and separated from the light-transmitting portion by a second partition.
6. The novel mining lamp lens as claimed in claim 5, wherein the bottom surface of the second mounting portion is a frosted surface.
7. The novel mining lamp lens as claimed in claim 6, wherein the outer surface of the second partition is provided with a plurality of second convex stripes.
8. The novel industrial and mining lamp lens of claim 7, wherein a third mounting portion is provided on the outer side of the second mounting portion, and a plurality of mounting through holes are uniformly formed on the third mounting portion.
CN202120478130.1U 2021-03-05 2021-03-05 Novel industrial and mining lamp lens Active CN214332579U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120478130.1U CN214332579U (en) 2021-03-05 2021-03-05 Novel industrial and mining lamp lens

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120478130.1U CN214332579U (en) 2021-03-05 2021-03-05 Novel industrial and mining lamp lens

Publications (1)

Publication Number Publication Date
CN214332579U true CN214332579U (en) 2021-10-01

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ID=77887840

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120478130.1U Active CN214332579U (en) 2021-03-05 2021-03-05 Novel industrial and mining lamp lens

Country Status (1)

Country Link
CN (1) CN214332579U (en)

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