JP5495815B2 - Mirror cabinet - Google Patents

Mirror cabinet Download PDF

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JP5495815B2
JP5495815B2 JP2010014767A JP2010014767A JP5495815B2 JP 5495815 B2 JP5495815 B2 JP 5495815B2 JP 2010014767 A JP2010014767 A JP 2010014767A JP 2010014767 A JP2010014767 A JP 2010014767A JP 5495815 B2 JP5495815 B2 JP 5495815B2
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mirror
light
vertical plate
light guide
guide plate
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JP2011152229A (en
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一夫 若尾
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Panasonic Corp
Panasonic Holdings Corp
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Panasonic Corp
Matsushita Electric Industrial Co Ltd
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Description

本発明は、照明機能を備えたミラーキャビネットに関するものである。   The present invention relates to a mirror cabinet having an illumination function.

従来、洗面化粧台のミラーキャビネットに照明器具を取り付けるにあたり、三面鏡の上側部位、或いは三面鏡のミラー扉間の隙間に、蛍光灯や白熱灯を固定して、洗面台の前面全体を照らすようにした構造が一般的である(例えば、特許文献1参照)。   Conventionally, when attaching a lighting fixture to a mirror cabinet of a vanity, illuminate the entire front of the vanity by fixing fluorescent or incandescent lamps in the upper part of the three-sided mirror or in the gap between the mirror doors of the three-sided mirror A general structure is used (see, for example, Patent Document 1).

ところが、蛍光灯等を三面鏡の上方に固定した場合は、洗面台の前面全体を照らすためには、三面鏡の上方から大型の照明カバーを前方向に向かって大きく張り出すように設置する必要があるため、三面鏡におけるミラー面積が大きく制約されるという課題がある。一方、蛍光灯等を三面鏡のミラー扉間の隙間に固定する場合は、蛍光灯を収納するためには横幅が約100mm程度の照明灯用スペースを設ける必要があり、このためミラー扉におけるミラー面積が大きく制約されるという課題がある。   However, when a fluorescent lamp or the like is fixed above the three-sided mirror, in order to illuminate the entire front surface of the wash basin, it is necessary to install a large lighting cover so that it protrudes forward from the upper side of the three-sided mirror. Therefore, there is a problem that the mirror area in the three-sided mirror is greatly restricted. On the other hand, when a fluorescent lamp or the like is fixed in the gap between the mirror doors of the three-sided mirror, it is necessary to provide an illumination lamp space with a width of about 100 mm in order to store the fluorescent lamp. There is a problem that the area is greatly restricted.


特開2001−78909号公報JP 2001-78909 A

本発明は上記の事情に鑑みてなされたものであって、その目的とするところは、ミラー扉におけるミラー面積を十分に確保しながら、ミラー扉の前に立った人の顔や手元部分を明るく照らすことができるミラーキャビネットを提供することにある。   The present invention has been made in view of the above circumstances, and its purpose is to brighten the face and hand portion of a person standing in front of the mirror door while sufficiently securing the mirror area of the mirror door. The object is to provide a mirror cabinet that can be illuminated.

前記の課題を解決するために、本発明は、以下の構成を特徴としている。   In order to solve the above-described problems, the present invention is characterized by the following configurations.

隣合うミラー扉2,3の奥側に収納空間4,5をそれぞれ設け、縦方向Dに配置した縦板6によりミラー扉2,3それぞれの収納空間4,5を仕切るようにしたミラーキャビネットであって、上記縦板6の内部に、前方Bに開口した平面断面略コ字状の収納凹所11を縦長状に凹設すると共に、収納凹所11の前面開口部12を縦板6の前端面7であって縦板6を挟んで隣合うミラー扉2,3間の隙間Sに臨んだ部位に縦長状に開設する。上記収納凹所11内部に導光性材料からなる導光板10を縦向き収納し、導光板10の奥側の端面10aを光源15からの光が入射する光入射面13とし、導光板10の両側面を光反射面60c、60とし、導光板10の奥側の端面10aと対向する前側の端面10bを上記前面開口部12から隣合うミラー扉2,3間の隙間Sに臨ませて配置して、光入射面13から入射した光を帯状照明光Rとして隣合うミラー扉2,3の間から前方に向かって出射する光出射面14としてなることを特徴としている。 A mirror cabinet in which storage spaces 4 and 5 are provided on the back side of adjacent mirror doors 2 and 3, and the storage spaces 4 and 5 of the mirror doors 2 and 3 are partitioned by vertical plates 6 arranged in the vertical direction D. In addition, a storage recess 11 having a substantially U-shaped cross-section in the plane B opened in the front B is formed in the vertical plate 6 in a vertically long shape, and the front opening 12 of the storage recess 11 is formed in the vertical plate 6. The front end surface 7 is opened in a vertically long shape at a portion facing the gap S between the adjacent mirror doors 2 and 3 with the vertical plate 6 interposed therebetween. The light guide plate 10 made of a light guide material is vertically stored in the storage recess 11, and the end surface 10 a on the back side of the light guide plate 10 is a light incident surface 13 on which light from the light source 15 is incident . both sides and the light reflecting surface 60c, 60, the inner side of the end face 10a facing the front end face 10b of the light guide plate 10, to face the gap S between the mirror doors 2, 3 adjacent from the front opening 12 The light emitting surface 14 is configured such that light incident from the light incident surface 13 is emitted as a strip-shaped illumination light R from between the adjacent mirror doors 2 and 3 toward the front .

このような構成とすることで、光源15の点灯時には、縦板6内部に縦向き収納された導光板10の光出射面14からの帯状照明光Rが隣合うミラー扉2,3間の隙間Sを通して前方Bに照射するので、ミラー扉2,3の前に居る人の顔や手元部分を十分に照らすことができる。しかも収納空間4,5を仕切る縦板6の内部に、導光板10をコンパクトに且つ納まりよく仕込むことができると共に、隣合うミラー扉2,3間には、光出射面14からの帯状照明光Rが通過可能な幅狭の隙間Sを設けるだけでよいので、従来の蛍光灯を収納する幅広の照明スペースを設ける場合と異なり、ミラー扉2,3におけるミラー面積が大きく制約されることもなくなる。   With such a configuration, when the light source 15 is turned on, a gap between the adjacent mirror doors 2 and 3 with the strip-shaped illumination light R from the light exit surface 14 of the light guide plate 10 stored vertically in the vertical plate 6 is provided. Since it irradiates the front B through S, the face and hand part of the person in front of the mirror doors 2 and 3 can be sufficiently illuminated. In addition, the light guide plate 10 can be compactly and well stored in the vertical plate 6 that partitions the storage spaces 4 and 5, and the strip-shaped illumination light from the light exit surface 14 is provided between the adjacent mirror doors 2 and 3. Since it is only necessary to provide a narrow gap S through which R can pass, unlike the case of providing a wide illumination space for storing a conventional fluorescent lamp, the mirror area in the mirror doors 2 and 3 is not greatly restricted. .

また本発明において、上記導光板10の光出射面14を縦板6の前面開口部12よりもミラー扉2,3とは干渉しない前方B位置に向かって突出配置してなるのが好ましい。この場合、ミラー扉2,3を開閉する際の導光板10とミラー扉2,3との干渉を防止しながら、導光板10の光出射面14をミラー扉2,3の鏡面と面一状に配置可能となり、これにより、光出射面14と鏡面との間が段差のない連続した外観を呈するようになり、意匠性が高められる。   In the present invention, it is preferable that the light exit surface 14 of the light guide plate 10 is disposed so as to protrude from the front opening 12 of the vertical plate 6 toward the front B position where it does not interfere with the mirror doors 2 and 3. In this case, the light exit surface 14 of the light guide plate 10 is flush with the mirror surface of the mirror doors 2 and 3 while preventing interference between the light guide plate 10 and the mirror doors 2 and 3 when opening and closing the mirror doors 2 and 3. As a result, a continuous appearance with no step between the light exit surface 14 and the mirror surface can be exhibited, thereby improving the design.

また本発明において、上記光源15はLED15aからなるのが好ましい。この場合、蛍光灯や白熱灯等の照明灯具と比較して小型で寿命が長くしかも低電力量でミラー照明が可能となる。   In the present invention, the light source 15 is preferably an LED 15a. In this case, mirror illumination can be performed with a small size, a long life, and a low power consumption as compared with an illumination lamp such as a fluorescent lamp or an incandescent lamp.

また本発明において、上記縦板6は、断面コ字状のアルミ押出成形材であり、この縦板6の内部に導光板10を収納してなるのが好ましい。この場合、アルミ押出成形材により導光板10の強度を確保しながら、導光板10を含む縦板6全体の厚みを薄く抑えることができ、さらに押出成形材をアルミのような金属製とすることで照明の放熱対策も兼ねることができる。 In the present invention, the vertical plate 6 is an aluminum extrusion-molded material having a U-shaped cross section , and the light guide plate 10 is preferably housed inside the vertical plate 6 . In this case, the thickness of the entire vertical plate 6 including the light guide plate 10 can be kept thin while securing the strength of the light guide plate 10 with the aluminum extrusion molding material, and the extrusion molding material is made of metal such as aluminum. It can also serve as a heat dissipation measure for lighting.

本発明に係るミラーキャビネットは、縦板内部に設けられる前方に開口した収納凹所内に、奥側の端面が光入射面をなし前側の端面が光出射面をなす導光板を縦向き収納して、導光板の光出射面を収納凹所の前面開口部から縦板を挟んで隣合うミラー扉間の隙間に臨ませたことにより、導光板の光出射面から発光する帯状照明光を隣合うミラー扉間の隙間を通して前方に照射できるものであり、これにより、収納空間を仕切る縦板を利用して、導光板をコンパクトに且つ納まりよく仕込むことができると共に、隣合うミラー扉間に帯状照明光が通過し得る幅狭の隙間を確保すればよいので、従来の蛍光灯用の幅広の照明灯用スペースを設ける場合と異なり、ミラー扉におけるミラー面積が大きく制約されることもない。結果、ミラー扉におけるミラー面積を十分に確保しながら、帯状照明光によってミラー扉の前に立った人の顔や手元部分を明るく照らすことができるものである。   The mirror cabinet according to the present invention vertically accommodates a light guide plate in which a rear end surface forms a light incident surface and a front end surface forms a light exit surface in a storage recess that is opened forward and is provided inside the vertical plate. The light emitting surface of the light guide plate faces the gap between the mirror doors adjacent to each other with the vertical plate sandwiched from the front opening of the storage recess, thereby adjoining the strip-shaped illumination light emitted from the light emitting surface of the light guide plate It can irradiate forward through the gap between the mirror doors. By using the vertical plate that partitions the storage space, the light guide plate can be packed in a compact and well-contained manner, and the strip illumination can be used between adjacent mirror doors. Since it is sufficient to secure a narrow gap through which light can pass, the mirror area in the mirror door is not greatly restricted, unlike the case of providing a wide space for a illuminating lamp for a conventional fluorescent lamp. As a result, the face and hand portion of the person standing in front of the mirror door can be brightly illuminated by the strip-shaped illumination light while sufficiently securing the mirror area of the mirror door.

本発明の一実施形態に用いるミラーキャビネットの導光板付き縦板と天板との分解斜視図である。It is a disassembled perspective view of the vertical board with a light-guide plate of a mirror cabinet used for one Embodiment of this invention, and a top plate. (a)は同上の導光板付き縦板の側面図であり、(b)は導光板と光源の平面図である。(A) is a side view of the vertical plate with a light guide plate same as the above, (b) is a plan view of the light guide plate and the light source. 同上のミラーキャビネットを備える洗面化粧台の斜視図である。It is a perspective view of a bathroom vanity provided with a mirror cabinet same as the above. (a)は同上のミラーキャビネットの斜視図であり、(b)はミラー扉側の一部平面図である。(A) is a perspective view of a mirror cabinet same as the above, (b) is a partial plan view on the mirror door side. 図4(b)のE部の拡大図である。It is an enlarged view of the E section of Drawing 4 (b). 図4(b)のF部の拡大図であり、(a)は隣合うミラー扉をそれぞれ閉じた状態の説明図であり、(b)は中央のミラー扉を開いた状態の説明図である。It is an enlarged view of F section of Drawing 4 (b), (a) is an explanatory view in the state where each adjacent mirror door was closed, and (b) is an explanatory view in the state where the central mirror door was opened. .

以下、本発明を添付図面に示す実施形態に基いて説明する。   Hereinafter, the present invention will be described based on embodiments shown in the accompanying drawings.

図3は本実施形態の洗面化粧台に用いるミラーキャビネット1の一例を示している。   FIG. 3 shows an example of the mirror cabinet 1 used for the vanity of this embodiment.

洗面台20の上方に配置されるミラーキャビネット1の前面には、中央のミラー扉2と両サイドのミラー扉3,3とを有する三面鏡が配設されている。   A three-sided mirror having a central mirror door 2 and mirror doors 3 and 3 on both sides is disposed on the front surface of the mirror cabinet 1 disposed above the washstand 20.

ミラーキャビネット1は、図4に示すように、天板21と両側板22と背板(図示せず)と底板23とで囲まれた空間部を有すると共に、この空間部が縦方向Dに配置される2枚の縦板6を用いて、中央のミラー扉2で開閉される中央の収納空間4と、両サイドのミラー扉3,3でそれぞれ開閉される両サイドの収納空間5,5とに仕切られている。各ミラー扉2,3は、例えば図6に示すようにベースパネル16の表面にミラーパネル17を止着し、その外周部に縦サッシ18を嵌め込んだものである。   As shown in FIG. 4, the mirror cabinet 1 has a space portion surrounded by a top plate 21, both side plates 22, a back plate (not shown), and a bottom plate 23, and this space portion is arranged in the vertical direction D. The central storage space 4 that is opened and closed by the central mirror door 2 and the storage spaces 5 and 5 that are opened and closed by the mirror doors 3 and 3 on both sides, respectively. It is divided into. For example, as shown in FIG. 6, each mirror door 2, 3 has a mirror panel 17 fixed to the surface of a base panel 16 and a vertical sash 18 fitted into the outer peripheral portion thereof.

中央のミラー扉2の基端部2aは、図4(b)に示すように、左側の縦板6の側面部に設けたスライド丁番24に連結され、このミラー扉2の先端部2bは右側の縦板6の前端面7に設けた一方の扉受け面8(図1参照)で受けられる。スライド丁番24は、例えば図6(a)(b)に示すように、ミラー扉2を広角度で開放可能とするための展伸・折り畳み可能な平行リンクプレート25を備えたものであり、このスライド丁番24によりミラー扉2の基端部2aは後述する導光板10とは干渉しない位置で回動可能とされる。なお、スライド丁番24の具体的構造については、本出願人が既に開示している特開2003−189950号公報等により公知となっている技術を採用できる。   As shown in FIG. 4B, the base end 2a of the central mirror door 2 is connected to a slide hinge 24 provided on the side surface of the left vertical plate 6, and the front end 2b of the mirror door 2 is It is received by one door receiving surface 8 (see FIG. 1) provided on the front end surface 7 of the right vertical plate 6. For example, as shown in FIGS. 6 (a) and 6 (b), the slide hinge 24 includes a parallel link plate 25 that can be expanded and folded so that the mirror door 2 can be opened at a wide angle. With this slide hinge 24, the base end 2a of the mirror door 2 can be rotated at a position where it does not interfere with the light guide plate 10 described later. In addition, about the concrete structure of the slide hinge 24, the technique well-known by Unexamined-Japanese-Patent No. 2003-189950 etc. which this applicant has already disclosed can be employ | adopted.

左側サイドのミラー扉3の基端部3aは左側の側板22の側面部に設けた開閉丁番(図示せず)に連結され、先端部3bは左側の縦板6の前端面7に設けた扉受け面8(図1)で受けられる。   The base end portion 3a of the left side mirror door 3 is connected to an open / close hinge (not shown) provided on the side surface portion of the left side plate 22, and the front end portion 3b is provided on the front end surface 7 of the left vertical plate 6. It is received by the door receiving surface 8 (FIG. 1).

右側サイドのミラー扉3の基端部3aは右側の側板22の側面部に設けた開閉丁番(図示せず)に連結され、先端部3bは右側の縦板6の前端面7に設けた扉受け面9(図1)で受けられる。   The base end 3 a of the right side mirror door 3 is connected to an open / close hinge (not shown) provided on the side of the right side plate 22, and the tip 3 b is provided on the front end 7 of the right vertical plate 6. It is received by the door receiving surface 9 (FIG. 1).

本例では、左右の縦板6,6は、前端面7の幅方向A両側がそれぞれ扉受け面8,9(図5)となったものと、幅方向A片側のみが扉受け面9となり、幅方向A他側が丁番取り付け面30(図6)となったものとに分けているが、縦板6の内部に前方Bに開口した収納凹所11を備える構成においては共通している。   In this example, the left and right vertical plates 6 and 6 have door receiving surfaces 8 and 9 (FIG. 5) on both sides in the width direction A of the front end surface 7 and door receiving surfaces 9 only on one side in the width direction A, respectively. The other side in the width direction A is divided into the hinge mounting surface 30 (FIG. 6), but is common in the configuration including the storage recess 11 opened to the front B inside the vertical plate 6. .

左右の縦板6は、それぞれ、断面コ字状のアルミ押出成形材により一体に形成されている。図1に示すように、左右のアルミ押出成形部6a,6a間から前方Bに向かって縦長状に前面開口部12が開口している。なお図1中の26はアルミ押出成形部6aと天板21とを連結金具(図示せず)を用いて連結するためのダボ穴であり、27は収納凹所11の両内壁面からそれぞれ突出して導光板10のがたつきを防止する凸部であり、図1及び図2中の28、29は、収納凹所11の上下両端部をそれぞれ閉鎖する板材である。   The left and right vertical plates 6 are each integrally formed of an aluminum extruded material having a U-shaped cross section. As shown in FIG. 1, a front opening 12 opens vertically from the left and right aluminum extrusion-molded portions 6 a, 6 a toward the front B. 1 is a dowel hole for connecting the aluminum extruded portion 6a and the top plate 21 using a connecting metal fitting (not shown), and 27 is projected from both inner wall surfaces of the storage recess 11 respectively. 1 and 2, reference numerals 28 and 29 in FIG. 1 and FIG. 2 denote plate members that respectively close the upper and lower end portions of the storage recess 11.

上記縦板6の収納凹所11内には、図1及び図2に示すように、導光板10が縦向き姿勢で収納される。導光板10は、例えばアクリル樹脂、ポリカーボネート樹脂等の透光性材料からなり、縦方向Dに長い矩形状に形成されている。導光板10の奥側の端面10aには光源15からの光を取り入れる光入射面13が設けられ、前側の端面10bには該光入射面13から入射した光源15からの光を帯状照明光Rとして出射させる光出射面14が設けられ、これら光入射面13と光出射面14以外の他の上下両端面及び両側面はそれぞれ光反射面60a、60b、60c、60dとなっている。光反射面60の形成方法として、例えば外面にアルミ蒸着などの反射処理を施すか、或いは散乱反射面を形成する等の方法がある。   As shown in FIGS. 1 and 2, the light guide plate 10 is stored in the vertical orientation in the storage recess 11 of the vertical plate 6. The light guide plate 10 is made of a translucent material such as acrylic resin or polycarbonate resin, and is formed in a rectangular shape that is long in the vertical direction D. A light incident surface 13 for taking in light from the light source 15 is provided on the end surface 10 a on the back side of the light guide plate 10, and light from the light source 15 incident on the light incident surface 13 is applied to the front end surface 10 b from the strip illumination light R. The light emitting surface 14 to be emitted is provided, and the other upper and lower end surfaces and both side surfaces other than the light incident surface 13 and the light emitting surface 14 are light reflecting surfaces 60a, 60b, 60c, and 60d, respectively. As a method for forming the light reflection surface 60, for example, a reflection process such as aluminum deposition is performed on the outer surface, or a scattering reflection surface is formed.

導光板10の光出射面14は、縦板6の前面開口部12から隣合うミラー扉2,3間の隙間Sに臨ませて配置される。本例では、光出射面14は、縦板6の前面開口部12から隣合うミラー扉2,3とは干渉しない前方B位置に向かって、扉受け面8,9よりも所定寸法だけ突出している。その突出寸法は、意匠性を配慮して図5に示すように、閉状態にあるミラー扉2,3のミラーパネル17と光出射面14とが略面一となるように設定するのが望ましい。勿論、光出射面14は前面開口部12よりも前方Bに向かって突出させる場合に限らず、少なくとも光出射面14から発する帯状照明光Rがミラー扉2,3間の隙間Sから前方Bに向かって照射されるようにすればよいものである。   The light exit surface 14 of the light guide plate 10 is disposed facing the gap S between the adjacent mirror doors 2 and 3 from the front opening 12 of the vertical plate 6. In this example, the light emitting surface 14 protrudes by a predetermined dimension from the door receiving surfaces 8 and 9 toward the front B position that does not interfere with the adjacent mirror doors 2 and 3 from the front opening 12 of the vertical plate 6. Yes. As shown in FIG. 5, the projecting dimension is preferably set so that the mirror panel 17 and the light exit surface 14 of the mirror doors 2 and 3 in the closed state are substantially flush with each other as shown in FIG. . Of course, the light exit surface 14 is not limited to projecting forward B from the front opening 12, and at least the strip-shaped illumination light R emitted from the light exit surface 14 is forward B from the gap S between the mirror doors 2 and 3. What is necessary is just to make it irradiate toward.

導光板10の光入射面13に対向して光源15が配置される。光源15は図2に示すように、上下複数個のLED(発光ダイオード)15aで構成される。各LED15aは、LED15aの光軸が導光板10の光入射面13に対して垂直方向に向くようにしてLED基板15bに実装されている。   A light source 15 is disposed facing the light incident surface 13 of the light guide plate 10. As shown in FIG. 2, the light source 15 includes a plurality of upper and lower LEDs (light emitting diodes) 15a. Each LED 15a is mounted on the LED substrate 15b so that the optical axis of the LED 15a is oriented in a direction perpendicular to the light incident surface 13 of the light guide plate 10.

しかして、上記構成によれば、LED15aの点灯時には、LED15aの光は図2(a)(b)に示すように、導光板10の光入射面13から入射して、導光板10の内部で光入射面13から離れる程広がりながら、且つ上下両端面及び両側面の光反射面60a〜60dにより鏡面反射されながら光出射面14に向かって進んでゆき、光出射面14全面に亘ってほぼ一定光量となって出射される。これにより全体的に明るさにむらのない帯状照明光Rが隣合うミラー扉2,3間の隙間Sを通して前方Bに向けて照射されるようになり、これによりミラー扉2,3の前に居る人の顔や手元部分を十分に照らすことができる。   Thus, according to the above configuration, when the LED 15a is turned on, the light of the LED 15a is incident from the light incident surface 13 of the light guide plate 10 as shown in FIGS. It spreads away from the light incident surface 13 and proceeds toward the light emitting surface 14 while being specularly reflected by the light reflecting surfaces 60 a to 60 d on both upper and lower end surfaces and both side surfaces, and is almost constant over the entire surface of the light emitting surface 14. The light is emitted as a light amount. As a result, the strip-shaped illumination light R with no unevenness in brightness is irradiated toward the front B through the gap S between the adjacent mirror doors 2 and 3, so that in front of the mirror doors 2 and 3. Can illuminate the face and hand of a person.

また、縦板6の前端面7の幅方向A中央側に設けた前面開口部12から導光板10の光出射面14を露出させたことにより、導光板10とミラー扉2,3との干渉を防止しながら、隣合うミラー扉2,3間の隙間Sに導光板10の光出射面14を配置できるようになる。しかも本例では、導光板10の光出射面14をミラー扉2,3のミラーパネル17と略面一状となるように突出配置しているので、ミラーパネル17と光出射面14とが段差のない連続した外観を呈するようになり、この状態でLED15aを点灯させると隣合うミラーパネル17間の隙間Sが帯状に光った状態となり、意匠性がより高まるようになる。   Further, the light exit surface 14 of the light guide plate 10 is exposed from the front opening 12 provided on the center side in the width direction A of the front end surface 7 of the vertical plate 6, thereby interfering with the light guide plate 10 and the mirror doors 2 and 3. It becomes possible to arrange the light emitting surface 14 of the light guide plate 10 in the gap S between the adjacent mirror doors 2 and 3 while preventing the above. In addition, in this example, since the light exit surface 14 of the light guide plate 10 is disposed so as to be substantially flush with the mirror panel 17 of the mirror doors 2 and 3, the mirror panel 17 and the light exit surface 14 are stepped. When the LED 15a is turned on in this state, the gap S between the adjacent mirror panels 17 shines in a band shape, and the design is further improved.

また隣合うミラー扉2,3間には、導光板10の厚み分に相当する幅狭の隙間Sを設けるだけでよいので、従来の蛍光灯用の幅広の照明スペースを設ける場合と異なり、ミラー扉2,3におけるミラー面積が大きく制約されることがない。しかも、縦板6内部に、導光板10をコンパクトでしかも納まりよく収納できるので、縦板6の厚み増加を防止でき、縦板6によって仕切られる収納空間4,5がそれぞれ狭まることもなくなる。   Further, since it is only necessary to provide a narrow gap S corresponding to the thickness of the light guide plate 10 between the adjacent mirror doors 2 and 3, unlike the case of providing a wide illumination space for a conventional fluorescent lamp, the mirror The mirror area at the doors 2 and 3 is not greatly restricted. Moreover, since the light guide plate 10 can be stored in a compact and well-contained manner within the vertical plate 6, an increase in the thickness of the vertical plate 6 can be prevented, and the storage spaces 4 and 5 partitioned by the vertical plate 6 are not narrowed.

なお、光源15として蛍光灯や白熱灯を用いた場合は、発熱して消費電力が大きく、寿命が短くて取り換えが必要となるという問題があるが、本例ではLED15aを用いているのでかかる問題はなく、寿命が長く、低電力量で作動する小型で且つコンパクトな照明機能付き縦板6が得られる。   Note that when a fluorescent lamp or an incandescent lamp is used as the light source 15, there is a problem that heat is generated and power consumption is large, and the life is short and needs to be replaced. Thus, a small and compact vertical plate 6 with an illumination function that has a long life and operates with a low electric energy can be obtained.

また、縦板6をアルミ押出成形材で形成することにより、導光板10の強度が高められ、しかも強度を確保しながら、導光板10を収納した縦板6全体の厚みを薄く抑えることができる。しかも金属製とすることで照明の放熱対策も兼ねるようになる。そのうえ押出成形により縦板6を縦方向Dにおいてどこで切断しても断面形状が一定形状となるので、キャビネットサイズに応じて所定長に切断して使用可能になる利点もある。   In addition, by forming the vertical plate 6 with an aluminum extrusion molding material, the strength of the light guide plate 10 can be increased, and the overall thickness of the vertical plate 6 housing the light guide plate 10 can be reduced while securing the strength. . In addition, by using a metal, it also serves as a heat dissipation measure for lighting. In addition, since the cross-sectional shape is constant regardless of where the vertical plate 6 is cut in the vertical direction D by extrusion molding, there is an advantage that it can be used after being cut into a predetermined length according to the cabinet size.

前記実施形態では、縦板6の前端面7の幅方向A両側の少なくとも一方を扉受け面8(9)とし、他方を縦板6の側面部を丁番を取り付ける扉取り付け面30(図6)としたが、縦板6の側面部の両方をそれぞれ扉取り付け面30としたものであってもよい。つまり、扉取り付け面30又は扉受け面8(9)の少なくとも一方が、縦板6に備わっていればよいものである。   In the embodiment, at least one of both sides in the width direction A of the front end surface 7 of the vertical plate 6 is a door receiving surface 8 (9), and the other is a door mounting surface 30 for attaching a hinge to the side surface of the vertical plate 6 (FIG. 6). However, both of the side portions of the vertical plate 6 may be the door mounting surface 30. That is, it is only necessary that at least one of the door mounting surface 30 or the door receiving surface 8 (9) is provided on the vertical plate 6.

前記実施形態では、縦板6をアルミ押出成形品としたが、独立した2枚の金属板の間に導光板10を挟んで、これらを一体に組み立てることも可能である。   In the above embodiment, the vertical plate 6 is an aluminum extrusion-molded product. However, the light guide plate 10 may be sandwiched between two independent metal plates, and these may be assembled together.

前記実施形態では、LED15aの設置場所として、導光板10の奥側を例示したが、これ以外に、例えば導光板10の上方側或いは下方側に設置して、LED15aの光を例えば光ファイバー束を用いて導光板10の奥側の光入射面13に伝送する構造も可能である。   In the above-described embodiment, the back side of the light guide plate 10 is illustrated as the installation location of the LED 15a. In addition, for example, the LED 15a is installed on the upper side or the lower side of the light guide plate 10, and the light of the LED 15a is used using, for example, an optical fiber bundle A structure in which the light is transmitted to the light incident surface 13 on the back side of the light guide plate 10 is also possible.

また導光板10とLED15aとを別体で構成したが、導光板10の端面にLED15aを埋込状に一体形成することも可能である。   In addition, although the light guide plate 10 and the LED 15a are configured separately, the LED 15a can be integrally formed on the end surface of the light guide plate 10 in an embedded manner.

本発明の照明機能付き縦板6を備えるミラーキャビネット1は、洗面化粧台以外に、システムキッチン等の各種設備ユニットに広く適用可能である。   The mirror cabinet 1 provided with the vertical plate 6 with an illumination function of the present invention can be widely applied to various equipment units such as a system kitchen other than the vanity.

1 ミラーキャビネット
2 中央のミラー扉
3 両側のミラー扉
4 中央の収納空間
5 両側の収納空間
6 縦板
7 縦板の前端面
10 導光板
10a 奥側の端面
10b 前側の端面
11 収納凹所
12 前面開口部
13 光入射面
14 光出射面
15 光源
15a LED
B 前方
D 縦方向
R 帯状照明光
DESCRIPTION OF SYMBOLS 1 Mirror cabinet 2 Center mirror door 3 Mirror door on both sides 4 Center storage space 5 Storage space on both sides 6 Vertical plate 7 Front end surface of vertical plate 10 Light guide plate 10a End surface on the back side 10b End surface on the front side 11 Storage recess 12 Front surface Aperture 13 Light incident surface 14 Light exit surface 15 Light source 15a LED
B Forward D Longitudinal direction R Strip illumination light

Claims (4)

隣合うミラー扉の奥側に収納空間をそれぞれ設け、縦方向に配置した縦板によりミラー扉それぞれの収納空間を仕切るようにしたミラーキャビネットであって、上記縦板の内部に、前方に開口した平面断面略コ字状の収納凹所を縦長状に凹設すると共に、収納凹所の前面開口部を縦板の前端面であって縦板を挟んで隣合うミラー扉間の隙間に臨んだ部位に縦長状に開設し、収納凹所内部に導光性材料からなる導光板を縦向き収納し、導光板の奥側の端面を光源からの光が入射する光入射面とし、導光板の両側面を光反射面とし、導光板の奥側の端面と対向する前側の端面を上記前面開口部から隣合うミラー扉間の隙間に臨ませて配置して、光入射面から入射した光を帯状照明光として隣合うミラー扉の間から前方に向かって出射する光出射面としてなることを特徴とするミラーキャビネット。 Each of the mirror cabinets is provided with a storage space at the back side of the adjacent mirror door, and the storage space of each mirror door is partitioned by a vertical plate arranged in the vertical direction, and is opened forward inside the vertical plate. A storage recess with a substantially U-shaped plane cross section is recessed vertically, and the front opening of the storage recess is the front end face of the vertical plate facing the gap between adjacent mirror doors with the vertical plate in between The light guide plate made of a light guide material is stored vertically inside the housing recess, and the end surface on the back side of the light guide plate is used as a light incident surface on which light from the light source is incident . both sides and the light reflecting surface, a rear end surface opposed to the end surface of the front of the light guide plate, and arranged to face the gap between the mirror door adjacent from said front opening, is incident from the light incident surface Light output that emits light forward from between adjacent mirror doors as belt-shaped illumination light Mirror cabinet characterized by comprising as a surface. 上記導光板の光出射面を縦板の前面開口部よりもミラー扉とは干渉しない前方位置に向かって突出配置してなることを特徴とする請求項記載のミラーキャビネット。 Mirror Cabinet according to claim 1, characterized in that protruding disposed toward the forward position does not interfere with the mirror door than the front opening of the vertical plate light exit surface of the light guide plate. 上記光源はLEDからなることを特徴とする請求項1又は請求項2記載のミラーキャビネット。   The mirror cabinet according to claim 1 or 2, wherein the light source comprises an LED. 上記縦板は、断面コ字状のアルミ押出成形材であり、この縦板の内部に導光板を収納してなることを特徴とする請求項1乃至請求項3のいずれか一項に記載のミラーキャビネット。 The said vertical plate is an aluminum extrusion molding material with a U-shaped cross section , and a light guide plate is accommodated in the inside of this vertical plate, The vertical plate | board as described in any one of Claim 1 thru | or 3 characterized by the above-mentioned. Mirror cabinet.
JP2010014767A 2010-01-26 2010-01-26 Mirror cabinet Expired - Fee Related JP5495815B2 (en)

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