Intelligent household condensation mirror cabinet with internal lamp and lamp temperature prevention function

文档序号:1582152 发布日期:2020-02-04 浏览:28次 中文

阅读说明:本技术 一种智能家居用带内灯防灯温凝水镜柜 (Intelligent household condensation mirror cabinet with internal lamp and lamp temperature prevention function ) 是由 张家喜 于 2019-10-15 设计创作,主要内容包括:本发明公开了一种智能家居用带内灯防灯温凝水镜柜,其结构包括内管照镜、侧辅镜板、置物柜、后卡箱,内管照镜贴合于后卡箱外表面,侧辅镜板与内管照镜铰链连接,灯管自身所散发的热度会将内管照镜表面上的水雾凝成水珠,其水珠将会置于垂面上,其水珠会让外滑角往下贴去,与软芯条相贴合接近,给予外界的力一定的反力作用,让其面受头带动回摆芯摆动,其对面受头受力时,呈拉扯状态,均力口摆动的同时,让重垂头感受到一点外力便会带动软绷层往下垂动,由弯角弧兜住,会在失去阻力时,将衔接部位拖动归位,水珠滑下后,垂面将会归回原位,能够在灯管产生热量将镜面上凝成水珠时,及时的将其倾斜滑动,让其不会停留于表面而造成着色的差异。(The invention discloses a warm condensation mirror cabinet with an inner lamp for smart home, which structurally comprises an inner tube mirror, side auxiliary mirror plates, a storage cabinet and a rear clamping box, wherein the inner tube mirror is attached to the outer surface of the rear clamping box, the side auxiliary mirror plates are hinged with the inner tube mirror, the heat emitted by a lamp tube can condense water mist on the surface of the inner tube mirror into water drops, the water drops are arranged on a vertical surface and can enable an outer sliding angle to be attached downwards to be close to a soft core strip in an attaching manner, a certain counter force is applied to the external force to enable the surface to swing back to a swinging core under the action of the head, when the opposite surface is stressed by the head, the pulling state is realized, when an equalizing port swings, the heavy hanging head can drive a soft tightening layer to hang downwards under the action of a little external force, when the resistance is lost, the connecting part is dragged to return to the position, the vertical surface can return to the original position after the water drops slide down, and the vertical surface can be condensed into water drops when the lamp tube generates heat, the color film can be timely inclined and slid to avoid the color film from staying on the surface to cause the difference of coloring.)

1. The utility model provides a smart home is with preventing lamp temperature condensation mirror cabinet with in-band lamp, its structure includes inner tube mirror (11), side assistance mirror board (22), puts thing cabinet (33), back card case (44), its characterized in that:

the inner tube mirror (11) is attached to the outer surface of the rear clamping box (44), the side auxiliary mirror plate (22) is hinged with the inner tube mirror (11), and the object cabinet (33) is embedded in the rear clamping box (44);

the rear card box (44) comprises a top head (aa1), a vertical surface (aa2), a supporting rotating body (aa3), a main layer (aa4), an outer fixed shell (aa5) and a lamp tube (aa6), wherein the top head (aa1) abuts against the outer surface of the vertical surface (aa2), the outer fixed shell (aa5) is connected with the main layer (aa4), the lamp tube (aa6) is embedded in the outer fixed shell (aa5), and the supporting rotating body (aa3) is connected with the main layer (aa 4).

2. The intelligent household condensation mirror cabinet with the internal lamp and the anti-lamp temperature according to claim 1, characterized in that: the vertical surface (aa2) comprises an outer sliding angle (qwe1), a soft core strip (qwe2), a bottom support (qwe3) and a middle fixing ball (qwe4), wherein the soft core strip (qwe2) abuts against the inner wall of the outer sliding angle (qwe1), and the middle fixing ball (qwe4) is arranged between the bottom support (qwe3) and the soft core strip (qwe 2).

3. The intelligent household condensation mirror cabinet with the internal lamp and the anti-lamp temperature according to claim 1, characterized in that: the top head (aa1) comprises a stable angle (tt1), an inclined top arc (tt2), an extension angle (tt3) and a hard layer (tt4), wherein the stable angle (tt1) and the hard layer (tt4) are of an integrated structure, the inclined top arc (tt2) abuts against the inner wall of the extension angle (tt3), the extension angle (tt3) is connected with the hard layer (tt4), and the inclined top arc (tt2) is arranged on the outer side of the stable angle (tt 1).

4. The intelligent household condensation mirror cabinet with the inner lamp and the anti-lamp temperature according to claim 4, characterized in that: the middle fixing ball (qwe4) comprises a heavy plumb head (zz1), a soft tightening layer (zz2), a stressed core (zz3), a reverse inlet (zz4) and an angled arc (zz5), wherein the heavy plumb head (zz1) is embedded in the soft tightening layer (zz2), the soft tightening layer (zz2) is connected with a stressed core (zz3), the stressed core (zz3) abuts against the upper surface of the reverse inlet (zz4), and the angled arc (zz5) is installed in the soft tightening layer (zz 2).

5. The intelligent household condensation mirror cabinet with the inner lamp and the anti-lamp temperature according to claim 2, characterized in that: the soft core strip (qwe2) comprises a follow-up layer (g01), a force equalizing port (g02) and a uniform ball (g03), wherein the uniform ball (g03) is mounted inside the follow-up layer (g01), and the force equalizing port (g02) abuts against the inner wall of the follow-up layer (g 01).

6. The intelligent household condensation mirror cabinet with the inner lamp and the anti-lamp temperature according to claim 5, characterized in that: the uniform force port (g02) comprises a face receiving head (hh11), an outer support sticker (hh22), a backswing core (hh33) and a glue head (hh44), wherein the face receiving head (hh11) is embedded into the outer support sticker (hh22), the face receiving head (hh11) is connected with the backswing core (hh33), and the backswing core (hh33) abuts against the inner wall of the glue head (hh 44).

Technical Field

The invention belongs to the field of intelligent home furnishing, and particularly relates to a condensation mirror cabinet with an internal lamp and a temperature-proof lamp for the intelligent home furnishing.

Background

The intelligent mirror cabinet with the lamp arranged in the bathroom can automatically sense people to open the lamp tube in the mirror surface before the people are in front of the mirror, and the light source of the lamp tube is irradiated out through the mirror, so that the installation space of the lamp tube is saved, and dust cannot be accumulated.

Based on the inventor finds that the existing mirror cabinet with the lamp for the smart home mainly has the following defects, for example:

when the bathroom is used, a lot of water vapor adheres to the mirror surface, when the lamp tube is opened, the heat of the mirror surface at the position where the lamp tube is installed is different at other parts, the water vapor is easily condensed into water drops at the position of the lamp tube due to the heat, and the difference between the positions of the lamp tube and the coloring of other parts after the illumination is turned off can be caused after a long time.

Therefore, a condensation mirror cabinet with an internal lamp and a temperature-proof lamp for smart home is needed.

Disclosure of Invention

The bathroom lamp aims to solve the problems that after the bathroom lamp is used, a plurality of water vapor are adhered to the mirror surface, when the lamp tube is opened, the heat of the mirror surface at the position where the lamp tube is installed is different from that of other parts, the water vapor is easily condensed into water drops at the position of the lamp tube due to the heat, and the coloring of the position of the lamp tube and other parts is different after the illumination is turned off after a long time.

The invention relates to an intelligent household mirror cabinet with an internal lamp and a temperature-proof lamp, which is achieved by the following specific technical means:

the structure of the device comprises an inner tube mirror, a side auxiliary mirror plate, a storage cabinet and a rear clamping box.

The inner tube mirror is attached to the outer surface of the rear clamping box, the side auxiliary mirror plate is hinged with the inner tube mirror, and the cabinet is embedded in the rear clamping box.

The rear clamping box comprises a top head, a vertical surface, a supporting and rotating body, a main layer, an outer fixing shell and a lamp tube, wherein the top head is abutted against the outer surface of the vertical surface, the outer fixing shell is connected with the main layer, the lamp tube is embedded into the outer fixing shell, and the supporting and rotating body is connected with the main layer.

As a further improvement of the invention, the vertical surface comprises an outer sliding angle, two soft core strips, two bottom supports and two middle fixed balls, wherein the soft core strips are abutted against the inner wall of the outer sliding angle, the middle fixed balls are arranged between the bottom supports and the soft core strips, and the number of the outer sliding angles is two.

As a further improvement of the invention, the plug comprises a stable angle, an inclined top arc, an extension angle and a hard layer, wherein the stable angle and the hard layer are of an integrated structure, the inclined top arc is abutted against the inner wall of the extension angle, the extension angle is connected with the hard layer, the inclined top arc is arranged on the outer side of the stable angle, the inclined top arc is of an arc structure, and the number of the stable angles is three.

As a further improvement of the invention, the middle fixing ball comprises a heavy vertical head, a soft tightening layer, a receiving core, a reverse pocket opening and two bent angle arcs, wherein the heavy vertical head is embedded in the soft tightening layer, the soft tightening layer is connected with the receiving core, the receiving core is abutted against the upper surface of the reverse pocket opening, the bent angle arcs are arranged in the soft tightening layer, and the two heavy vertical heads are of arc-shaped structures.

As a further improvement of the invention, the soft core strip comprises a variable layer, force equalizing ports and eight force equalizing balls, wherein the force equalizing balls are arranged in the variable layer, the force equalizing ports are abutted against the inner wall of the variable layer, the force equalizing balls are of a spherical structure, and the number of the force equalizing ports is eight.

As a further improvement of the invention, the force equalizing port comprises a surface receiving head, an outer supporting paste, a swinging core and a rubber head, wherein the surface receiving head is embedded in the outer supporting paste and is connected with the swinging core, the swinging core is propped against the inner wall of the rubber head, the surface receiving head is of an oval structure, and the rubber head is of an arc structure.

Compared with the prior art, the invention has the following beneficial effects:

the heat emitted by the lamp tube can condense water mist on the surface of the inner tube mirror into water drops, the water drops can be arranged on a vertical surface, the water drops can enable an outer sliding angle to be attached downwards and be close to a soft core strip in an attached mode, a certain counter force is given to the outside force, the surface of the lamp tube is driven by a head to swing back and forth, the surface of the lamp tube is pulled to swing back and forth by a swinging core when the opposite surface of the lamp tube is stressed, the uniform force port swings, the heavy head feels a certain external force and can drive a soft tightening layer to vertically move downwards, the soft tightening layer is caught by a bent angle arc, when resistance is lost, a connected part is dragged to return, after the water drops slide down, the vertical surface of the lamp tube returns to the original position, and when the lamp tube generates heat to condense the water drops on the surface of the lamp tube mirror surface, the lamp tube can timely slide obliquely, and the lamp tube cannot stay on the surface to.

Drawings

Fig. 1 is a schematic structural view of a condensation mirror cabinet with an internal lamp and a temperature-proof lamp for smart home.

FIG. 2 is a schematic top view of the rear card box according to the present invention.

FIG. 3 is a schematic view of a vertical front view of the internal structure of the present invention.

Fig. 4 is a schematic front view of an inner structure of a plug according to the present invention.

Fig. 5 is a front view of an internal structure of the middle fixing ball of the present invention.

Fig. 6 is a schematic front view of the inner structure of a soft core strip according to the present invention.

Fig. 7 is a schematic front view of an internal structure of a force equalizing port according to the present invention.

In the figure: inner tube camera-11, side auxiliary mirror plate-22, storage cabinet-33, rear card box-44, top-aa 1, vertical surface-aa 2, supporting rotator-aa 3, main layer-aa 4, outer fixed shell-aa 5, lamp tube-aa 6, outer slip angle-qwe 1, soft core strip-qwe 2, bottom support-qwe 3, middle fixed ball-qwe 4, stable angle-tt 1, inclined top arc-tt 2, extended angle-tt 3, hard layer-tt 4, heavy vertical head-zz 1, soft tightening layer-zz 2, stressed core-zz 3, reverse pocket-zz 4, bent angle arc-zz 5, variable layer-g 01, uniform force port-g 02, uniform dividing ball-g 03, surface stressed head-hh 11, outer support-hh 22, swinging core-hh 33, and glue head-39h 44.

Detailed Description

The invention is further described below with reference to the accompanying drawings:

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