JP2005034255A - Mirror unit with fogging prevention - Google Patents

Mirror unit with fogging prevention Download PDF

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Publication number
JP2005034255A
JP2005034255A JP2003198315A JP2003198315A JP2005034255A JP 2005034255 A JP2005034255 A JP 2005034255A JP 2003198315 A JP2003198315 A JP 2003198315A JP 2003198315 A JP2003198315 A JP 2003198315A JP 2005034255 A JP2005034255 A JP 2005034255A
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JP
Japan
Prior art keywords
mirror
pipe
mirror unit
fogging
pipe heat
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2003198315A
Other languages
Japanese (ja)
Inventor
Shinsuke Yanagi
真介 柳
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP2003198315A priority Critical patent/JP2005034255A/en
Publication of JP2005034255A publication Critical patent/JP2005034255A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To prevent a mirror from fogging by utilizing hot water supply piping heat radiation without using an electric component such as a heater in the mirror on a decorative panel installed on a bathroom wall surface. <P>SOLUTION: In this mirror unit, a piping heat radiation device 11 whose heat source is hot water supply is provided inside the decorative panel 7 roughly in a frame shape fixed to the bathroom wall surface 6 and the mirror 8 is disposed on the front surface of the piping heat radiation device 11. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は鏡の曇りを給湯配管放熱を利用して防止する曇り防止付き鏡ユニットに関するものである。
【0002】
【従来の技術】
従来、この種の曇り防止付き鏡ユニットは、鏡の後面に電気ヒータを貼り付けて鏡の曇りを防止している。
【0003】
図7は、従来の曇り防止付き鏡ユニットを示すものである。図7において、1は浴室壁面、2は化粧パネル、3は鏡、4は電気ヒータ、5は遮蔽板である。
【0004】
【発明が解決しようとする課題】
しかしながら、前記従来の構成では、電気ヒータを用いていたため感電等の問題を解決するためにヒータの絶縁を強化したり絶縁トランスを用いる等の安全面での対策が必要であるという課題を有していた。また、ヒータに電気を供給するため浴室外にヒータの電源コードを出す必要があり遮蔽板等で浴室外への水漏れ対策を十分に行なう必要があるという課題を有していた。
【0005】
本発明は、前記従来の課題を解決するもので、浴室壁面に設置した化粧パネル上の鏡においてヒータ等の電気部品を使用せず、給湯配管放熱を利用して鏡の曇りを防止するとした曇り防止付き鏡ユニットを提供することを目的とする。
【0006】
【課題を解決するための手段】
前記従来の課題を解決するために、本発明の曇り防止付き鏡ユニットは、浴室壁面に固定した略額縁形状の化粧パネル内部に給湯を熱源とする配管放熱装置を備え、前記配管放熱装置の前面に鏡を配設した曇り防止付き鏡ユニットとしたものである。
【0007】
これによって、浴室壁面に固定した略額縁形状の化粧パネル内部に配管放熱装置を設け配管放熱装置に鏡を配設させているため、配管放熱装置へ給湯することで配管放熱装置が加熱し、その熱が鏡に熱伝導し鏡の曇りを防止する。
【0008】
【発明の実施の形態】
請求項1に記載の発明は浴室壁面に固定した略額縁形状の化粧パネル内部に給湯を熱源とする配管放熱装置を備え、前記配管放熱装置の前面に鏡を配設した曇り防止付き鏡ユニットとすることにより、浴室壁面に固定した略額縁形状の化粧パネル内部に配管放熱装置を設け配管放熱装置に鏡を配設させているため、配管放熱装置へ給湯することで配管放熱装置が加熱し、その熱が鏡に熱伝導し鏡の曇りを防止することとなり電気ヒータに比べて感電等の心配がなく安全であり、しかも入浴中に使用するお湯を配管放熱装置に流して鏡の曇りを防止するため無駄なエネルギーを用いず、効率的にエネルギーを利用することができるすることができる。
【0009】
請求項2に記載の発明は前記化粧パネルに、混合水栓から配管放熱装置へ混合水を供給するための接続入口部とハンドシャワーを接続する接続出口部とを設けた請求項1記載の曇り防止付き鏡ユニットとすることにより、輸送時及び設置時、混合水栓と配管放熱装置を備えた化粧パネルとハンドシャワーとを別体として取り扱うことができようになり、作業性が向上し配管接続が容易になる。
【0010】
請求項3に記載の発明は前記配管放熱装置は熱伝導性の良い材料からなる箱体に給湯する構成の請求項1または2記載の曇り防止付き鏡ユニットとすることにより、熱伝導性が良いことで鏡を素早く昇温させることとなり、性能を向上させることができる。
【0011】
請求項4に記載の発明は前記配管放熱装置は前面に熱伝導性の良い材料の均熱板を備え、前記均熱板と鏡が密着する構成の請求項1〜3記載の曇り防止付き鏡ユニットとすることにより、密着させない場合と比べて均熱板を鏡と密着させることで明らかに鏡の昇温スピードが早まることになり、確実に鏡の曇りを防止するすることができ性能を更に向上させることができる。
【0012】
請求項5に記載の発明は前記配管放熱装置は均熱板に樹脂パイプを固着させたものとする請求項4記載の曇り防止付き鏡ユニットとすることにより、樹脂パイプと均熱板とを一体に扱うことになり、取り扱いを容易にすることができる。
【0013】
請求項6に記載の発明は前記樹脂パイプは横方向に曲げながらパイプを均熱板に配し、樹脂パイプは水抜きできるよう配管勾配を設けた請求項5記載の曇り防止付き鏡ユニットとすることにより、樹脂パイプ中に溜まった死水の水抜きが可能になり、冬場等の配管凍結を防止することができる。
【0014】
請求項7に記載の発明は前記配管放熱装置の後面に軟質断熱材を設け、配管放熱装置を鏡裏面に圧接固定できる請求項1〜6記載の曇り防止付き鏡ユニットとすることにより、軟質断熱材があるため配管放熱装置の熱を前面の鏡面のみに効率良く伝えることができ、しかも設置の最後に鏡を配管放熱装置の前面から取り付けられることで配管放熱装置等の配管接続工事が容易になり作業性を向上することができる。
【0015】
【実施例】
以下本発明の実施例について、図面を参照しながら説明する。
【0016】
(実施例1)
図1は、本発明の実施例1における曇り防止付き鏡ユニットの浴室設置斜視図を示すものである。
【0017】
図1において、浴室壁面6に略額縁形状の化粧パネル7と混合水栓9とを設置し、化粧パネル7に鏡8を設けている。10はハンドシャワーである。
【0018】
図2は本発明の実施例1における曇り防止付き鏡ユニットの断面図であり、図3は正面図である。
【0019】
図2、3において、浴室壁面6に設置した略額縁形状の化粧パネル7の中に配管放熱装置11を設けており、配管放熱装置11に配設するよう鏡8を化粧パネル7にビス固定している。また、浴室壁面6に設置した混合水栓9には給湯配管12と給水配管13とを接続し、混合水供給パイプ14で混合水栓9と化粧パネル7の下部に設けた接続入口部15とを接続する。
【0020】
配管放熱装置11は化粧パネル7の内部で下部に設けた接続入口部15と上部横に設けた接続出口部16と接続しており、ハンドシャワー10は化粧パネル7の上部横に設けた接続出口部16に接続する。
【0021】
以上のように構成された曇り防止付き鏡ユニットについて、以下その動作、作用を説明する。
【0022】
ハンドシャワー10から出湯する際、混合水栓9で混合された混合水が混合水供給パイプ14を通って配管放熱装置11に流れ込む。
【0023】
以上のように、本実施例においては配管放熱装置11に給湯することにより、配管放熱装置11が加熱され、配設した鏡8に熱伝導することとで鏡8が温められ入浴中の曇りを防止することになり、電気ヒータに比べて感電等の心配がなく安全であり、しかも入浴中に使用するお湯を配管放熱装置に流して鏡の曇りを防止するため無駄なエネルギーを用いず、効率的にエネルギーを利用することができる。
【0024】
また、本実施例では化粧パネル7の下部に接続入口部15を設け上部横に接続出口部16を設けたことにより、輸送時及び設置時、混合水栓9と配管放熱装置11を備えた化粧パネル7とハンドシャワー10とを別体として取り扱うことができようになり、作業性が向上し配管接続が容易になる。
【0025】
また、本実施例の配管放熱装置11を熱伝導性の良い材料である銅で製造された箱体とすることに特に鏡を素早く昇温させることとなり、性能を向上させることができる。
【0026】
なお、本実施例においては配管放熱装置11を混合水栓9の2次側配管の途中に設けて給湯したが混合水栓9の1次側配管である給湯配管12の途中に設けて給湯することで配管放熱装置を加熱してもよい。
【0027】
また、本実施例においては化粧パネル7は配管放熱装置11を隠蔽する手段として用いたが付加部品として化粧パネル7上に収納棚等を設けて化粧パネル7を収納棚付きの化粧パネルとしてもよい。
【0028】
(実施例2)
図4は本発明の実施例2における曇り防止付き鏡ユニットの断面図であり、図5は正面図である。
【0029】
図4、5において配管放熱装置19は均熱板17としてステンレス板に樹脂パイプ18を熱溶着して一体のものとする。配管放熱装置19の後面には軟質断熱材20を設けており、鏡8を化粧パネル7にビス固定する際、軟質断熱材20が浴室壁面6と配管放熱装置19とのすきまを埋め、鏡8と配管放熱装置19を圧接固定する。
【0030】
以上のように均熱板17と樹脂パイプ18を一体にすることにより取り扱いを容易にすることができる。
【0031】
また、均熱板17を確実に鏡8に密着させ、軟質断熱材20を設けていることにより密着させない場合と比べて明らかに鏡8の昇温スピードが早まることになり、確実に鏡8の曇りを防止するすることができ性能を向上させることができる。しかも設置の最後に鏡を配管放熱装置19の前面から取り付けられることで配管放熱装置19等の配管接続工事が容易になり作業性を向上することができる。
【0032】
(実施例3)
図6は本発明の実施例3における曇り防止付き鏡ユニットの配管放熱装置の正面図である。
【0033】
図6において均熱板17に樹脂パイプ18を熱溶着する際、横方向に曲げながら樹脂パイプ18を均熱板17に配し、しかも配管勾配をつける。21は水抜き栓である。
【0034】
以上のようにすることにより、樹脂パイプ18内に溜まった死水を水抜き栓21を開けることにより水抜きが可能になり、冬場等の配管凍結を防止することができる。
【0035】
【発明の効果】
以上のように、請求項1から7のいずれか一項記載の発明によれば、電気ヒータに比べて感電等の心配がなく安全であり、しかも入浴中に使用するお湯を配管放熱装置に流して鏡の曇りを防止するため無駄なエネルギーを用いず、効率的にエネルギーを利用することができる。
【図面の簡単な説明】
【図1】本発明の実施例1における曇り防止付き鏡ユニットの浴室設置斜視図
【図2】本発明の実施例1における曇り防止付き鏡ユニットの断面図
【図3】本発明の実施例1における曇り防止付き鏡ユニットの正面図
【図4】本発明の実施例2における曇り防止付き鏡ユニットの断面図
【図5】本発明の実施例2における曇り防止付き鏡ユニットの正面図
【図6】本発明の実施例3における曇り防止付き鏡ユニットの配管放熱装置の正面図
【図7】従来の曇り防止付き鏡ユニットの断面図
【符号の説明】
6 浴室壁面
7 化粧パネル
8 鏡
9 混合水栓
10 ハンドシャワー
11 配管放熱装置
15 接続入口部
16 接続出口部
17 均熱板
18 樹脂パイプ
20 軟質断熱材
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a mirror unit with anti-fogging that prevents fogging of a mirror by using hot water supply pipe heat radiation.
[0002]
[Prior art]
Conventionally, this type of mirror unit with anti-fogging prevents the mirror from fogging by attaching an electric heater to the rear surface of the mirror.
[0003]
FIG. 7 shows a conventional mirror unit with fog prevention. In FIG. 7, 1 is a bathroom wall surface, 2 is a decorative panel, 3 is a mirror, 4 is an electric heater, and 5 is a shielding plate.
[0004]
[Problems to be solved by the invention]
However, since the conventional configuration uses an electric heater, there is a problem that safety measures such as reinforcing the insulation of the heater or using an insulating transformer are necessary to solve problems such as electric shock. It was. Moreover, in order to supply electricity to the heater, there is a problem that it is necessary to take out the power cord of the heater outside the bathroom, and it is necessary to sufficiently take measures against water leakage outside the bathroom with a shielding plate or the like.
[0005]
The present invention solves the above-described conventional problems, and does not use an electrical component such as a heater in a mirror on a decorative panel installed on a bathroom wall surface, and uses a heat supply pipe heat radiation to prevent the mirror from fogging. An object is to provide a mirror unit with prevention.
[0006]
[Means for Solving the Problems]
In order to solve the above-described conventional problems, the mirror unit with anti-fogging of the present invention includes a pipe heat dissipating device using hot water as a heat source inside a substantially frame-shaped decorative panel fixed to a bathroom wall surface, and the front surface of the pipe heat dissipating device. This is a mirror unit with anti-fogging provided with a mirror.
[0007]
As a result, a pipe heat radiating device is provided inside the decorative panel having a substantially frame shape fixed to the bathroom wall surface, and a mirror is disposed on the pipe heat radiating device. Heat is transferred to the mirror to prevent the mirror from fogging.
[0008]
DETAILED DESCRIPTION OF THE INVENTION
The invention according to claim 1 includes a mirror unit with anti-fogging provided with a pipe heat dissipating device using hot water as a heat source inside a substantially frame-shaped decorative panel fixed to the bathroom wall surface, and a mirror disposed on the front surface of the pipe heat dissipating device. By installing a pipe heat dissipating device inside the substantially frame-shaped decorative panel fixed to the bathroom wall and arranging a mirror on the pipe heat dissipating device, the pipe heat dissipating device is heated by supplying hot water to the pipe heat dissipating device, The heat is transferred to the mirror to prevent the mirror from fogging, and it is safer than electric heaters. There is no worry about electric shock, etc., and hot water used during bathing flows into the pipe heat dissipation device to prevent the mirror from fogging. Therefore, energy can be used efficiently without using wasted energy.
[0009]
According to a second aspect of the present invention, the decorative panel is provided with a connection inlet portion for supplying mixed water from the mixing faucet to the pipe heat radiating device and a connection outlet portion for connecting a hand shower. By using a mirror unit with prevention, it is possible to handle the decorative panel equipped with a mixing faucet and piping heat dissipation device separately from the hand shower during transportation and installation, improving workability and connecting pipes. Becomes easier.
[0010]
According to a third aspect of the present invention, the pipe heat dissipating device is configured to supply hot water to a box made of a material having good thermal conductivity. As a result, the temperature of the mirror is quickly raised, and the performance can be improved.
[0011]
According to a fourth aspect of the present invention, the pipe heat dissipating device includes a heat equalizing plate made of a material having good thermal conductivity on the front surface, and the anti-fogging mirror according to any one of the first to third aspects, wherein the heat equalizing plate and the mirror are in close contact. By adopting a unit, the temperature rising speed of the mirror is clearly increased by bringing the soaking plate into close contact with the mirror, compared with the case where it is not in close contact with the mirror. Can be improved.
[0012]
According to a fifth aspect of the present invention, in the pipe heat dissipating device, a resin pipe is fixed to a heat equalizing plate. The mirror unit with anti-fogging according to claim 4, wherein the resin pipe and the heat equalizing plate are integrated. Can be handled easily.
[0013]
The invention according to claim 6 is the mirror unit with anti-fogging according to claim 5, wherein the resin pipe is bent in a lateral direction while the pipe is arranged on a soaking plate, and the resin pipe is provided with a piping gradient so that water can be drained. As a result, it becomes possible to drain dead water collected in the resin pipe, and it is possible to prevent the pipe from freezing in winter.
[0014]
According to a seventh aspect of the present invention, a soft heat insulating material is provided on the rear surface of the pipe heat dissipating device, and the pipe heat dissipating device can be pressure-fixed to the rear surface of the mirror. Since there is material, the heat of the piping heat dissipation device can be efficiently transferred only to the front mirror surface, and the installation of the mirror from the front of the piping heat dissipation device at the end of the installation facilitates piping connection work such as the piping heat dissipation device Therefore, workability can be improved.
[0015]
【Example】
Embodiments of the present invention will be described below with reference to the drawings.
[0016]
(Example 1)
FIG. 1 is a perspective view showing a bathroom installation of a mirror unit with anti-fogging in Embodiment 1 of the present invention.
[0017]
In FIG. 1, a substantially frame-shaped decorative panel 7 and a mixing faucet 9 are installed on a bathroom wall surface 6, and a mirror 8 is provided on the decorative panel 7. Reference numeral 10 denotes a hand shower.
[0018]
FIG. 2 is a cross-sectional view of the mirror unit with anti-fogging in Embodiment 1 of the present invention, and FIG. 3 is a front view.
[0019]
2 and 3, a pipe heat dissipating device 11 is provided in a substantially frame-shaped decorative panel 7 installed on the bathroom wall surface 6, and a mirror 8 is screwed to the decorative panel 7 so as to be disposed on the pipe heat dissipating device 11. ing. Further, a hot water supply pipe 12 and a water supply pipe 13 are connected to the mixed water tap 9 installed on the bathroom wall surface 6, and the mixed water supply pipe 14 connects the mixed water tap 9 and a connection inlet 15 provided at the lower part of the decorative panel 7. Connect.
[0020]
The piping heat dissipating device 11 is connected to a connection inlet 15 provided at the lower part inside the decorative panel 7 and a connection outlet 16 provided beside the upper part, and the hand shower 10 is connected to the upper part of the decorative panel 7. Connect to unit 16.
[0021]
The operation and action of the mirror unit with anti-fogging configured as described above will be described below.
[0022]
When the hot water is discharged from the hand shower 10, the mixed water mixed by the mixed water tap 9 flows into the pipe heat radiating device 11 through the mixed water supply pipe 14.
[0023]
As described above, in this embodiment, by supplying hot water to the pipe heat radiating device 11, the pipe heat radiating device 11 is heated, and heat conduction to the arranged mirror 8 causes the mirror 8 to be warmed and fogging during bathing. Compared to electric heaters, there is no risk of electric shock, etc., and it is safe, and hot water used during bathing flows through the piping heat dissipation device to prevent fogging of the mirror. Energy can be used.
[0024]
Further, in this embodiment, the connection inlet 15 is provided at the lower part of the decorative panel 7 and the connection outlet 16 is provided at the side of the upper part, so that the makeup provided with the mixing faucet 9 and the pipe heat dissipating device 11 at the time of transportation and installation. It becomes possible to handle the panel 7 and the hand shower 10 as separate bodies, improving workability and facilitating piping connection.
[0025]
In addition, the temperature of the mirror can be quickly raised when the pipe heat dissipating device 11 of the present embodiment is made of a box made of copper having a good thermal conductivity, and the performance can be improved.
[0026]
In this embodiment, the pipe heat dissipating device 11 is provided in the middle of the secondary pipe of the mixing faucet 9 to supply hot water, but it is provided in the middle of the hot water supply pipe 12 that is the primary side piping of the mixing faucet 9 to supply hot water. Therefore, the pipe heat dissipating device may be heated.
[0027]
In the present embodiment, the decorative panel 7 is used as a means for concealing the pipe heat dissipating device 11, but a storage shelf or the like may be provided on the decorative panel 7 as an additional part, and the decorative panel 7 may be a decorative panel with a storage shelf. .
[0028]
(Example 2)
4 is a cross-sectional view of a mirror unit with anti-fogging in Embodiment 2 of the present invention, and FIG. 5 is a front view.
[0029]
4 and 5, the pipe heat dissipating device 19 is integrally formed by thermally welding a resin pipe 18 to a stainless steel plate as the soaking plate 17. A soft heat insulating material 20 is provided on the rear surface of the pipe heat radiating device 19, and when the mirror 8 is screwed to the decorative panel 7, the soft heat insulating material 20 fills a gap between the bathroom wall surface 6 and the pipe heat radiating device 19. And the pipe heat dissipating device 19 are fixed by pressure.
[0030]
The handling can be facilitated by integrating the soaking plate 17 and the resin pipe 18 as described above.
[0031]
In addition, since the heat equalizing plate 17 is securely adhered to the mirror 8 and the soft heat insulating material 20 is provided, the heating speed of the mirror 8 is obviously increased as compared with the case where it is not adhered. Clouding can be prevented and performance can be improved. In addition, since the mirror is attached from the front of the pipe heat dissipating device 19 at the end of installation, the pipe connecting work of the pipe heat dissipating device 19 and the like can be facilitated and workability can be improved.
[0032]
(Example 3)
FIG. 6 is a front view of a pipe heat dissipating device for a mirror unit with anti-fogging in Example 3 of the present invention.
[0033]
In FIG. 6, when the resin pipe 18 is thermally welded to the soaking plate 17, the resin pipe 18 is arranged on the soaking plate 17 while bending in the lateral direction, and a pipe gradient is provided. 21 is a drain plug.
[0034]
As described above, the dead water accumulated in the resin pipe 18 can be drained by opening the drain plug 21, and piping freezing in winter can be prevented.
[0035]
【The invention's effect】
As described above, according to the invention described in any one of claims 1 to 7, there is no concern about electric shock or the like as compared with an electric heater, and the hot water used during bathing is allowed to flow through the pipe heat dissipation device. Therefore, it is possible to efficiently use energy without using wasted energy in order to prevent fogging of the mirror.
[Brief description of the drawings]
FIG. 1 is a perspective view of a mirror unit with anti-fogging in a bathroom according to Embodiment 1 of the present invention. FIG. 2 is a cross-sectional view of the mirror unit with anti-fogging according to Embodiment 1 of the present invention. FIG. 4 is a cross-sectional view of a mirror unit with anti-fogging in Embodiment 2 of the present invention. FIG. 5 is a front view of a mirror unit with anti-fogging in Embodiment 2 of the present invention. FIG. 7 is a front view of a pipe heat dissipating device for a mirror unit with anti-fogging in Embodiment 3 of the present invention. FIG. 7 is a cross-sectional view of a conventional mirror unit with anti-fogging.
6 Bathroom Wall 7 Decorative Panel 8 Mirror 9 Mixer Faucet 10 Hand Shower 11 Piping Heat Dissipator 15 Connection Inlet Port 16 Connection Outlet Port 17 Soaking Plate 18 Resin Pipe 20 Soft Insulating Material

Claims (7)

浴室壁面に固定した略額縁形状の化粧パネル内部に給湯を熱源とする配管放熱装置を備え、前記配管放熱装置の前面に鏡を配設した曇り防止付き鏡ユニット。A mirror unit with anti-fogging provided with a pipe heat dissipating device using hot water as a heat source inside a substantially frame-shaped decorative panel fixed to a bathroom wall surface, and a mirror disposed on the front surface of the pipe heat dissipating device. 前記化粧パネルに、混合水栓から配管放熱装置へ混合水を供給するための接続入口部とハンドシャワーを接続する接続出口部とを設けた請求項1記載の曇り防止付き鏡ユニット。The mirror unit with anti-fogging according to claim 1, wherein the decorative panel is provided with a connection inlet part for supplying mixed water from the mixed water tap to the pipe heat radiating device and a connection outlet part for connecting a hand shower. 前記配管放熱装置は熱伝導性の良い材料からなる箱体に給湯する構成の請求項1または2記載の曇り防止付き鏡ユニット。The mirror unit with anti-fogging according to claim 1 or 2, wherein the pipe heat dissipating device supplies hot water to a box made of a material having good thermal conductivity. 前記配管放熱装置は前面に熱伝導性の良い材料の均熱板を備え、前記均熱板と鏡が密着する構成の請求項1〜3記載の曇り防止付き鏡ユニット。The mirror unit with anti-fogging according to claims 1 to 3, wherein the pipe heat radiating device includes a heat equalizing plate made of a material having good thermal conductivity on a front surface, and the heat equalizing plate and the mirror are in close contact with each other. 前記配管放熱装置は均熱板に樹脂パイプを固着させたものとする請求項4記載の曇り防止付き鏡ユニット。5. The mirror unit with anti-fogging according to claim 4, wherein the pipe heat dissipating device has a resin pipe fixed to a soaking plate. 前記樹脂パイプは横方向に曲げながらパイプを均熱板に配し、樹脂パイプは水抜きできるよう配管勾配を設けた請求項5記載の曇り防止付き鏡ユニット。The mirror unit with anti-fogging according to claim 5, wherein the resin pipe is arranged on a soaking plate while being bent in a lateral direction, and the resin pipe is provided with a piping gradient so that water can be drained. 前記配管放熱装置の後面に軟質断熱材を設け、配管放熱装置を鏡裏面に圧接固定できる請求項1〜6記載の曇り防止付き鏡ユニット。The mirror unit with anti-fogging according to claim 1, wherein a soft heat insulating material is provided on a rear surface of the pipe heat dissipating device, and the pipe heat dissipating device can be pressure-fixed to the rear surface of the mirror.
JP2003198315A 2003-07-17 2003-07-17 Mirror unit with fogging prevention Pending JP2005034255A (en)

Priority Applications (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4843108B1 (en) * 2011-03-04 2011-12-21 弘和 小代 Anti-fog mirror for bathroom wall
JP2012239747A (en) * 2011-05-23 2012-12-10 Panasonic Corp Antifogging mirror used in bathroom

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4843108B1 (en) * 2011-03-04 2011-12-21 弘和 小代 Anti-fog mirror for bathroom wall
JP2012239747A (en) * 2011-05-23 2012-12-10 Panasonic Corp Antifogging mirror used in bathroom

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