Dual reflection wall washer
Technical Field
The utility model belongs to the technical field of wall washing lamps, and particularly relates to a double-reflection wall washing lamp.
Background
The wall washing lamp is a linear lamp which is used for lighting outdoor buildings like water, is mainly used for decoration lighting of the buildings and outline sketching of the buildings, is widely applied to municipal buildings, commercial complexes or enterprise buildings and the like, mainly comprises a shell, a lamp panel, a lamp cover and an integrated lens, such as CN213872424U, which is a lens integrated LED wall washing lamp, and comprises a lens and a light gathering cup, although the integrated lens can meet the use requirements of the general situation, in the practical application process, the integrated lens is stuck on the bottom surface of a light source plate, is unfavorable for disassembly and maintenance operations, meanwhile, the lamp cover is difficult to ensure the installation stability of the lamp cover, the condition of loosening or falling easily occurs, the illumination light efficiency is limited, and the applicability and the practicability of the LED wall washing lamp are limited.
Disclosure of utility model
The utility model aims to provide a double-reflection wall washer lamp which is reasonable in structural arrangement and beneficial to improving installation stability.
The technical scheme for achieving the purpose of the utility model is that the double-reflection wall washer comprises a shell, a light source plate and an end cover, wherein the light source plate is arranged in the shell, the end cover is fixed at the end part of the shell through a screw, and a mounting strip-shaped groove is formed in the middle of the symmetrical inner wall of the shell;
The lower part of the symmetrical inner wall of the shell is provided with a strip-shaped slot, and the bottom of the symmetrical inner wall of the shell is provided with an n-shaped pressing raised strip;
the middle part of the symmetrical outer wall of the shell is provided with a C-shaped groove, and the C-shaped groove is positioned below the mounting strip-shaped groove and above the strip-shaped slot;
A strip convex mirror and a frosted light-transmitting plate are arranged in the shell;
The symmetrical edges of the light source plate are inserted into the mounting strip-shaped grooves for limiting;
The symmetrical edges of the strip-shaped convex mirrors are inserted into the strip-shaped slots for limiting;
The top surface edge of the frosted light-transmitting plate is fixed on the bottom surface of the n-shaped pressing convex strip through a bonding frame edge.
It is further preferable that the inner frame of the bonding frame edge is larger than the protruding part of the strip-shaped convex mirror;
The protruding part of the strip-shaped convex mirror is positioned right above the inner frame of the bonding frame edge.
It is further preferable that the upper part of the symmetrical side wall of the shell is provided with a strip-shaped slotted hole;
an n-shaped mounting seat is arranged at the top of the shell, and V-shaped elastic sheets which are bent outwards are integrally formed on symmetrical side edges of the n-shaped mounting seat;
The n-shaped mounting seat is positioned at the top end of the shell, and the protruding part of the V-shaped elastic sheet is clamped into the strip-shaped slotted hole for limiting.
It is further preferable that the top of the shell is provided with a conductive wire, and the middle part of the conductive wire is provided with a deconcentrator and an n-shaped positioning block;
An elastic sheet is arranged on the outer wall of the n-shaped positioning block;
The deconcentrator is positioned in the concave area of the n-shaped positioning block, and the n-shaped positioning block is inserted into the shell and is abutted against the symmetrical inner wall of the shell through the elastic piece for positioning.
It is further preferable that a sealing gasket is arranged at the joint of the end cover and the shell.
It is further preferable that the n-shaped mounting seat is a stainless steel sheet with a thickness of 01-0.3 mm.
The utility model has the advantages that the structure is reasonable, the strip-shaped convex mirror and the frosted light-transmitting plate are arranged in the shell, the light plate of the light source plate is irradiated outwards through the frosted light-transmitting plate after passing through the strip-shaped convex mirror, the illumination effect is improved, and when the LED lamp is installed, the frosted light-transmitting plate is fixed on the bottom surface of the n-shaped pressing convex strip in the shell through the bonding frame edge, the installation stability and reliability are improved, and the edge light passing through the strip-shaped convex mirror can be shielded through the bonding frame edge, so that the middle light of the strip-shaped convex mirror is irradiated outwards through the frosted light-transmitting plate, the irradiation dark area is avoided, the uniformity of illumination light is improved, the illumination effect is improved, and the LED lamp is strong in applicability and good in practicability.
Drawings
In order that the utility model may be more readily understood, a more particular description of the utility model will be rendered by reference to specific embodiments that are illustrated in the appended drawings, in which:
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of an explosive structure according to the present utility model;
FIG. 3 is a schematic cross-sectional view of the present utility model;
FIG. 4 is a schematic view of the structure of the present utility model with the end cap removed.
The LED lamp comprises a shell 1, a light source plate 2, an end cover 3, a mounting strip groove 4, a strip slot 5, an n-shaped pressing raised strip 6, a C-shaped groove 7, a strip convex lens 8, a frosted light-transmitting plate 9, a bonding frame edge 10, a strip slot 11, an n-shaped mounting seat 12, a V-shaped elastic sheet 13, a conductive wire 14, a deconcentrator 15, an n-shaped positioning block 16, an elastic sheet 17 and a sealing gasket 18.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Examples
As shown in fig. 1 to 4, a dual reflective wall washer lamp includes a housing 1, a light source plate 2 disposed in the housing, and an end cover 3 fixed to an end of the housing by screws, wherein the housing is an aluminum structure, and the end cover is a plastic structure or a metal structure, which is simply applied, and is not described in detail.
In the practical application process, the middle part of the symmetrical inner wall of the shell is provided with a mounting strip groove 4, the lower part of the symmetrical inner wall of the shell is provided with a strip slot 5, the bottom of the symmetrical inner wall of the shell is provided with an n-shaped pressing raised strip 6, in order to improve the mounting convenience of the end cover, the middle part of the symmetrical outer wall of the shell is provided with a C-shaped groove 7, the C-shaped groove is positioned below the mounting strip groove and above the strip slot, and in the mounting process, the screw of the end cover is in threaded connection with the C-shaped groove for positioning.
In the practical application process, a strip-shaped convex mirror 8 and a frosted light-transmitting plate 9 are arranged in the shell, when the lamp is installed, the symmetrical edge of the lamp is inserted into the installation strip-shaped groove to limit, the symmetrical edge of the strip-shaped convex mirror is inserted into the strip-shaped groove to limit, and the edge of the top surface of the frosted light-transmitting plate is fixed on the bottom surface of the n-shaped pressing convex strip through a bonding frame edge 10. The strip-shaped convex lens is matched with the frosted light-transmitting plate to irradiate, so that uniformity of irradiation light is improved, and the lighting effect is improved.
In the practical application process, the inner frame of the bonding frame edge is larger than the protruding part of the strip-shaped convex mirror, and the protruding part of the strip-shaped convex mirror is positioned right above the inner frame of the bonding frame edge. The bonding frame edge can not only realize the installation and the positioning of the frosted light-transmitting plate, but also shade the edge light of the strip convex mirror, so that the light passing through the frosted light-transmitting plate is softer.
In the practical application process, the upper part of the symmetrical side wall of the shell is provided with a strip-shaped slotted hole 11, the top of the shell is provided with an n-shaped mounting seat 12, the symmetrical side edges of the n-shaped mounting seat are integrally formed with V-shaped elastic pieces 13 which are bent outwards, the n-shaped mounting seat is positioned at the top end of the shell, and the protruding parts of the V-shaped elastic pieces are clamped into the strip-shaped slotted hole to limit. In the practical application process, the n-shaped mounting seat is a stainless steel sheet with the thickness of 01-0.3 mm. During installation, the n-shaped installation seat is fixed on the installation position, and then the shell is connected with the n-shaped installation seat in a buckling manner upwards, so that the installation convenience is improved.
In the practical application process, the top of the shell is provided with a conductive wire 14, the middle of the conductive wire is provided with a deconcentrator 15 and an n-shaped positioning block 16, the outer wall of the n-shaped positioning block is provided with a spring piece 17, when the device is installed and used, the deconcentrator is positioned in a concave area of the n-shaped positioning block, and the n-shaped positioning block is inserted into the shell and is abutted against the symmetrical inner wall of the shell through the spring piece to be positioned. Through the structure, the installation stability of the deconcentrator can be improved, the disassembly, assembly and maintenance operations are convenient to carry out, and the practicability is high.
Meanwhile, in the practical application process. The junction of the end cap and the housing is provided with a gasket seal 18. Is favorable for improving the sealing waterproof performance of the joint.
The utility model has the advantages that the structure is reasonable, the strip-shaped convex mirror and the frosted light-transmitting plate are arranged in the shell, the light plate of the light source plate is irradiated outwards through the frosted light-transmitting plate after passing through the strip-shaped convex mirror, the illumination effect is improved, and when the LED lamp is installed, the frosted light-transmitting plate is fixed on the bottom surface of the n-shaped pressing convex strip in the shell through the bonding frame edge, the installation stability and reliability are improved, and the edge light passing through the strip-shaped convex mirror can be shielded through the bonding frame edge, so that the middle light of the strip-shaped convex mirror is irradiated outwards through the frosted light-transmitting plate, the irradiation dark area is avoided, the uniformity of illumination light is improved, the illumination effect is improved, and the LED lamp is strong in applicability and good in practicability.
The standard components used in this embodiment may be purchased directly from the market, but the nonstandard structural components described in the specification may also be obtained directly by unambiguous processing according to the common general knowledge in the prior art, and meanwhile, the connection manner of each component adopts the conventional means mature in the prior art, and the machinery, the components and the equipment all adopt the conventional types in the prior art, so that no specific description will be made here.
It is to be understood that the above examples of the present utility model are provided by way of illustration only and not by way of limitation of the embodiments of the present utility model. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. While those obvious variations or modifications which come within the spirit of the utility model remain within the scope of the utility model.