JP2000054749A - Sliding screen door - Google Patents

Sliding screen door

Info

Publication number
JP2000054749A
JP2000054749A JP10250279A JP25027998A JP2000054749A JP 2000054749 A JP2000054749 A JP 2000054749A JP 10250279 A JP10250279 A JP 10250279A JP 25027998 A JP25027998 A JP 25027998A JP 2000054749 A JP2000054749 A JP 2000054749A
Authority
JP
Japan
Prior art keywords
liquid crystal
polymer
shoji
dispersed liquid
door
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
JP10250279A
Other languages
Japanese (ja)
Inventor
Yasuo Sato
康夫 佐藤
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.)
EKUSERU LIGHT KK
Original Assignee
EKUSERU LIGHT KK
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 EKUSERU LIGHT KK filed Critical EKUSERU LIGHT KK
Priority to JP10250279A priority Critical patent/JP2000054749A/en
Publication of JP2000054749A publication Critical patent/JP2000054749A/en
Pending legal-status Critical Current

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  • Liquid Crystal (AREA)
  • Securing Of Glass Panes Or The Like (AREA)

Abstract

PROBLEM TO BE SOLVED: To contrive the proper selection adjustment and chromaticity variety of a sliding screen face by using a polymer distribution liquid crystal on the sliding screen face, and performing electric control such as amplitude modulation and pulse width modulation of applied voltage on the distribution liquid crystal. SOLUTION: A polymer distribution liquid crystal sheet is made structure sandwiching a liquid crystal on opposite transparent electrode sheets, two electrodes are removed on one sheet by contact or a connector to be exchanged. Transmission and scattering of the distribution liquid crystal 1 are controlled by an indoor and outdoor illuminance difference, in daytime transmission is performed to perform daylighting in a room, and in the night time it is unnecessary to close a sliding screen by controlling it so as to be opaque. In the case, even when the sliding screen door is at a high place, opening and closing are unnecessary, daylighting is controlled and adjusted by remote control of a radio wave and an infrared ray. Furthermore, light wavelength is detected by an optical detector 7 with a wavelength filter. Thereby the chromaticity of light scattering controlling the transmission and scattering is adjusted to change a sliding screen color so as to obtain intelligent effect.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】障子戸は古来よりありますがポリマー分散
液晶を使用した障子戸はありませんでした。本発明は障
子紙の素材にポリマー分散液晶シートを使用し、透過や
光散乱及び色度変化を制御する障子戸を提供するもので
あります。ポリマー分散液晶はプラスチックフィルムな
どに施した2面の透明電極間に粒状のネマステック液晶
が分散した構造からなり、印加電圧の有無により電気光
学的特徴を持っています。性質は透明電極面の変質を防
止する意味において印加電圧を交互に印加し、電圧印加
時は透明となり、無印加時には散乱となる、さらに電気
的制御法についても印加電圧幅や印加パルス幅により透
過変化性及び、色度変化性等の電気光学的特徴を持って
いるもっているのであります。本発明はこのようなハイ
テクなポリマー分散液晶を古来文化の原点である障子戸
につき電子コントロールするものであります。
[0001] Shoji doors have been around since ancient times, but there were no shoji doors using polymer dispersed liquid crystal. The present invention uses a polymer-dispersed liquid crystal sheet as a material for shoji paper, and provides a shoji door that controls transmission, light scattering, and chromaticity change. Polymer-dispersed liquid crystal has a structure in which granular nematic liquid crystal is dispersed between two transparent electrodes formed on a plastic film, etc., and has electro-optical characteristics depending on the presence or absence of applied voltage. The property is to apply the applied voltage alternately in the sense of preventing the deterioration of the transparent electrode surface, it becomes transparent when the voltage is applied, it is scattered when no voltage is applied, and the electric control method is also transmitted by the applied voltage width and applied pulse width It has electro-optical characteristics such as variability and chromaticity change. The present invention is to electronically control such high-tech polymer-dispersed liquid crystal for the shoji door, the origin of ancient culture.

【0002】一般に障子戸は引き違い戸で使用されるた
め開けても片方の戸しか開かずそのため十分な外光を取
り込んだり外の景観を全開で見る事ができない欠点があ
りました。本発明によれば障子紙の代わりに分散型液晶
シートにを使用することで両戸を開けずに、電気的に開
けたり又、電気的に両戸全開で外光を室内に取り込み、
全開の景観を楽しむ事が出来るようになりました。
In general, a sliding door is used as a sliding door, so that even if it is opened, only one of the doors is opened, so that there is a drawback that sufficient external light cannot be taken in or the outside scenery can be fully viewed. According to the present invention, instead of using shoji paper, instead of opening both doors by using a dispersion type liquid crystal sheet, the doors can be opened electrically, or both doors can be fully opened and external light can be taken into the room.
You can now enjoy the full view.

【0003】液晶は一般に少消費電力によって制御が可
能である事から障子戸に太陽電池や充電電池等の小電力
機構を内臓するすることにより、可動する障子戸に対し
配線不要な電子コントロールされた画期的障子戸を提供
することができます。特別な配線が必要無いことから現
在使用されている障子戸にそのまま交換できる利点があ
ります。
Since the liquid crystal is generally controllable with low power consumption, by incorporating a small power mechanism such as a solar cell or a rechargeable battery in the shoji door, the movable shoji door is electronically controlled without wiring. We can provide innovative doors. There is an advantage that it can be replaced with a currently used shoji door because no special wiring is required.

【0004】ポリマー分散液晶はそれ自身を放置すなわ
ち無給電の状態においては不透明であり、電圧印加の度
合いによって透明から不透明に機能するものでありま
す。この事は障子戸内の電力が消耗しても本来障子戸の
目的である不透明感や、わらかな採光を取り込む目的に
何ら支障は生じないものであります。このように電力消
耗時での安全性に優れており又、ポリマー分散液晶のも
つ均一な不透明感は障子戸としての和風性を損なわずし
かもプライバシー保護性に優れたものであります。
The polymer-dispersed liquid crystal is opaque when left alone, that is, in a state of no power supply, and functions from transparent to opaque depending on the degree of voltage application. This means that even if the power inside the shoji door is exhausted, there is no hindrance to the opacity, which is the purpose of the shoji door, or the purpose of capturing soft lighting. In this way, it is excellent in safety at the time of power consumption, and the uniform opacity of the polymer dispersed liquid crystal does not impair the Japanese style as a shoji door and is excellent in privacy protection.

【0005】室内、室外の照度差によって分散液晶の透
過、散乱の制御を行う事により、設定によっては外が明
るいときには透過になり室内に採光する、暗くなったら
不透明となるように自動または手動にて制御機能する事
で、夜になったら障子を閉める必要がなくプライベート
保護の効果があります。
[0005] By controlling the transmission and scattering of the dispersed liquid crystal according to the difference in illuminance between the room and the outside, depending on the setting, the light is transmitted when the outside is bright and the light is collected in the room. By controlling the function, it is not necessary to close the shoji at night, which is effective for private protection.

【0006】従来の障子戸は外の景観や明かり取り等
で、引き違い戸の形態が一般的でありました、本発明に
よれば一面の障子戸であっても和室としての雰囲気を損
なわずしかも外の景観や明かり取り等が可能な障子戸を
施設することができます。又、片戸である為両戸をスラ
イドさせる為のしきい構造がいらない事で施設費が節約
でき採光性の高い障子戸を施設する事が可能となりま
す。
[0006] Conventional sliding doors are generally sliding doors due to the outside scenery and lighting, etc. According to the present invention, even a one-sided sliding door does not impair the atmosphere as a Japanese-style room. You can set up a shoji door that can be used for outdoor scenery and lighting. In addition, since it is a single door, there is no need for a threshold structure to slide both doors, so facility costs can be reduced and it is possible to install a shoji door with high lighting.

【0007】ポリマー分散液晶は光線に対し熱的吸収は
ありません、ほとんどは散乱か透過のいずれかの性質に
あります。この事から室温の温度センサーに相関する事
で室内の温度をある程度制御することができます。特に
エアコンの作動に関連させる事により暖房時にはポリマ
ー分散液晶を透過にして外光線の輻射熱を室内に取り込
み暖房効果を向上せしめ、冷房時にはポリマー分散液晶
を散乱にする事で外光線を散乱阻止し直接室内に輻射熱
を取り込まないように制御する事でエアコンなどの空調
温度制御を補助する効果がこの障子戸にあります。
[0007] Polymer-dispersed liquid crystals do not thermally absorb light, most of which are either scattering or transmitting. From this, it is possible to control the room temperature to some extent by correlating with the room temperature sensor. In particular, by relating to the operation of the air conditioner, the polymer dispersed liquid crystal penetrates during heating to improve the heating effect by taking in the radiant heat of external light into the room during heating, and the polymer dispersed liquid crystal is scattered during cooling to prevent scattering of external light and directly This shoji door has the effect of assisting in controlling the temperature of air conditioning such as air conditioners by controlling radiant heat not to enter the room.

【0008】障子戸が手に届きにくい高所であっても電
波や、赤外線等の遠隔操作により障子戸の開け閉めを行
わずに採光を制御調節でき便利であります。
[0008] Even in a high place where the shoji door is hard to reach, remote control of radio waves or infrared rays can be used to control and adjust the lighting without opening and closing the shoji door.

【0009】複数の波長フィルターを光検知器に施す等
の手段により、光波長を分解して検知せしめ、所望する
色調に反応してポリマー分散液晶の透過、散乱を制御す
べく光散乱の色調調節を可能とすることにより欲しい色
にだけ光散乱する障子戸、すなわち青の光だけ強く散乱
せしめるべく設定させた場合障子戸は青みのおびた障子
色となりますこのように従来色調を変えられなかった所
望の色調に障子色を変化するインテリア効果のある障子
戸を提供できます。
[0009] By means of applying a plurality of wavelength filters to the photodetector, the light wavelength is decomposed and detected, and the color tone of light scattering is adjusted to control the transmission and scattering of the polymer dispersed liquid crystal in response to a desired color tone. The shoji door that scatters light only to the desired color by making it possible, that is, if it is set to strongly scatter only blue light, the shoji door will become a bluish shoji color. We can provide a shoji door with an interior effect that changes the shoji color to the desired color.

【0010】ポリマー分散液晶はそれ自身高速応答特性
を持っています、この事から例えば赤、青、緑、の3原
色波長を高速に照射する光線照射装置を用い、しかも照
射された光線が今どの波長光であるかなどの同期信号に
よってポリマー分散液晶を制御する事で障子面を自在に
着色することができる。例えば赤の照射時にどれだけの
時間ポリマー分散液晶を光散乱せしめることで濃度自在
の赤色を帯びた障子色が得られる同様に色彩も自在に選
択できる、ほかに当たった照射光は3原色照射の場合合
成されて全て白色に照らされてしまうから障子面だけが
彩ることになる、このように自在の光散乱照明色を具現
する障子戸を提供する事ができます。
The polymer-dispersed liquid crystal itself has a high-speed response characteristic. For this reason, for example, a light irradiation device that irradiates the three primary wavelengths of red, blue, and green at a high speed is used. By controlling the polymer-dispersed liquid crystal by a synchronization signal such as light having a wavelength, it is possible to freely color the shoji screen. For example, by scattering the polymer-dispersed liquid crystal during red irradiation, the color can be freely selected as well as the color of the screen can be freely selected. In this case, only the shoji surface is colored because all are combined and illuminated in white. Thus, it is possible to provide a shoji door that realizes a free light scattering illumination color.

【0011】ポリマー分散液晶は紫外線に弱くその為、
直接外光さらされるのはあまり好ましくありません。本
発明による障子戸については一般にガラス戸を1枚超え
た室内に障子戸が附設されるという施設環境条件から障
子戸の前面のガラス自身で紫外線をカットする事が物理
的に可能でありポリマー分散液晶の紫外防護手段として
外ガラスに紫外線カットフィルターや、紫外線波長帯域
カットガラスを施し、かつ外ガラス戸よりストッパーを
障子戸開閉側端部などに突き出す等の手段により外ガラ
ス戸の開き加減以上に障子戸を閉められないよう開閉制
限をもたらしめる事で、直接障子面が紫外線にさらされ
る事なくポリマー分散液晶の寿命向上に効果がある。
The polymer-dispersed liquid crystal is susceptible to ultraviolet light,
Direct exposure to external light is less preferred. As for the shoji door according to the present invention, it is physically possible to cut off ultraviolet rays by the glass itself in front of the shoji door due to facility environmental conditions in which a shoji door is generally provided in a room exceeding one glass door, and polymer dispersion is performed. As a means to protect the liquid crystal from ultraviolet rays, an ultraviolet cut filter or ultraviolet wavelength band cut glass is applied to the outer glass, and a stopper is protruded from the outer glass door to the end of the sliding door opening and closing side, etc. By restricting the opening and closing so as not to close the shoji door, it is possible to improve the life of the polymer-dispersed liquid crystal without directly exposing the shoji screen to ultraviolet rays.

【0012】さらに障子戸自身にも紫外線カットシート
を積層および紫外線カットガラス等によって防護する事
ができ寿命向上の点でさらに効果を増す事ができます。
Further, the shoji door itself can be protected by a laminated ultraviolet ray cut sheet and an ultraviolet ray cut glass, etc., so that the effect can be further enhanced in terms of the service life.

【0013】障子面内外のてかりや反射防止及び障子紙
の質感向上の手段として反射防止コーテングや透視可能
なプリント模様等、例えば白のペイントで細かなメッシ
ュや、レース模様に竹林やもみじ等をプリントする事で
障子面を美しく表装でき、より障子紙の質感を得る事で
きます
As means for improving the texture of the shoji paper, such as anti-reflection coating and see-through print patterns, such as fine meshes with white paint, and lace patterns with bamboo grove and maple, etc. By printing, the surface of the shoji paper can be beautifully displayed and the texture of shoji paper can be obtained.

【0014】障子は古来より張り替えは平素行われるも
のでありますます。ポリマー分散液晶シートは紫外線に
弱く変色、劣化などが起きやすくある意味においても障
子紙のように消耗品として容易に交換できるものでなく
てはなりません。ポリマー分散液晶シートの構造は対面
する透明電極シートに液晶がサンドイッチされた構造で
あります。簡単に申し上げれば1枚のシートに2個所の
電極が施されたものであります。従って2個所の電極を
接触又は接続子等で容易に取り外すこと換が可能なもの
であります。
Replacing shoji has been done for a long time since ancient times. The polymer-dispersed liquid crystal sheet must be easily replaceable as a consumable item like shoji paper in the sense that it is vulnerable to ultraviolet light and is susceptible to discoloration and deterioration. The structure of the polymer dispersed liquid crystal sheet is a structure in which liquid crystal is sandwiched between transparent electrode sheets facing each other. To put it simply, a single sheet is provided with two electrodes. Therefore, the two electrodes can be easily removed by contact or connector.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明による障子戸を室内より見た実施例で
す。
FIG. 1 is an embodiment of a sliding door according to the present invention as viewed from inside a room.

【図2】本発明による障子戸を外より見た実施例です。FIG. 2 is an embodiment of the sliding door according to the present invention viewed from the outside.

【図3】本発明による障子戸に外部より異なる波長の照
射光を当てた場合の色調可能とした実施例です。
FIG. 3 is an embodiment in which the color tone can be adjusted when irradiating light having a different wavelength from the outside to the shoji door according to the present invention.

【符号の説明】[Explanation of symbols]

1 ポリマー分散液晶 2 障子戸支持枠 3 太陽電池部 4 光散乱調節つまみ 5 周辺温度センサー 6 照度感知器 7 波長フィルター付き光検知器 8 赤外線受光器 9 赤外線遠隔操作送信機 10 遠隔操作光散乱調節つまみ 11 赤調整つまみ 12 青調整つまみ 13 緑調整つまみ 14 赤フィルター 15 青フィルター 16 緑フィルター 17 灯具ハウジング 18 光源 19 光源給電 20 全体光源調整つまみ 21 赤光源供給電圧調整つまみ 22 青光源供給電圧調整つまみ 23 緑光源供給電圧調整つまみ REFERENCE SIGNS LIST 1 polymer dispersed liquid crystal 2 support frame for shoji door 3 solar cell unit 4 light scattering control knob 5 ambient temperature sensor 6 illuminance sensor 7 light detector with wavelength filter 8 infrared receiver 9 infrared remote control transmitter 10 remote control light scattering control knob 11 Red Adjustment Knob 12 Blue Adjustment Knob 13 Green Adjustment Knob 14 Red Filter 15 Blue Filter 16 Green Filter 17 Lamp Housing 18 Light Source 19 Light Source Feeding 20 Overall Light Source Adjustment Knob 21 Red Light Source Supply Voltage Adjustment Knob 22 Blue Light Source Supply Voltage Adjustment Knob 23 Green Light source supply voltage adjustment knob

Claims (13)

【特許請求の範囲】[Claims] 【請求項1】障子戸の障子面にポリマー分散液晶を使用
し、ポリマー分散液晶に対し印加電圧の振幅変調や印加
電圧のパルス幅変調などの電気的制御を行う事により障
子面の光散乱度の適選調整及び色度可変を可能とする障
子戸。
1. A light scattering degree on a shoji screen by using a polymer-dispersed liquid crystal on a shoji screen of a shoji door and performing electrical control such as amplitude modulation of an applied voltage and pulse width modulation of an applied voltage on the polymer-dispersed liquid crystal. A shoji door that allows for appropriate selection adjustment and variable chromaticity.
【請求項2】ポリマー分散液晶の制御に要する電力供給
手段として、障子戸に電気接続子を設け、障子戸を可動
させた場合でもスライドして接触するなど、障子戸の開
閉に相対しても電気が接続される構造を有する、上記請
求項目1による障子戸。
2. An electric connector is provided on a sliding door as a power supply means required for controlling the polymer-dispersed liquid crystal, and even when the sliding door is moved, the sliding door comes into contact with the sliding door. The shoji door according to claim 1 having a structure to which electricity is connected.
【請求項3】ポリマー分散液晶の制御に要する電力供給
手段として、太陽電池によるソーラー式充電器又は固定
電池などの電力供給部と、上記電力供給部より得られた
電力を用いてポリマー分散液晶の透過、散乱の制御駆動
部とを障子戸内に具備した上記請求項目1による障子
戸。
3. A power supply means such as a solar battery charger or a fixed battery using a solar cell as a power supply means required for controlling the polymer-dispersed liquid crystal, and a polymer-dispersed liquid crystal using the power obtained from the power supply section. 2. The shoji door according to claim 1, wherein a transmission and scattering control drive unit is provided in the shoji door.
【請求項4】ポリマー分散液晶の透過、散乱の制御に関
する遠隔制御操作手段として、電波や赤外線等を用いて
制御指示を行う送信器と、制御指示に従い制御信号を復
調する受信器と、受信器に導かれポリマー分散液晶の透
過、散乱の制御を行う制御駆動部とを具備した上記請求
項目1から3いずれか記載の障子戸。
4. A remote control operation means for controlling transmission and scattering of a polymer-dispersed liquid crystal, a transmitter for giving a control instruction using radio waves or infrared rays, a receiver for demodulating a control signal in accordance with the control instruction, and a receiver The sliding door according to any one of claims 1 to 3, further comprising: a control driving unit which is guided to control transmission and scattering of the polymer-dispersed liquid crystal.
【請求項5】周辺照度を検知する少なくとも1つ以上の
光センサーに導かれ、ポリマー分散液晶の透過、散乱に
ついて、所望の散乱度になるよう自動的に調節を可能と
する制御部を具備した上記請求項目1から4いずれか記
載の障子戸。
5. A control unit which is guided to at least one or more optical sensors for detecting ambient illuminance, and which can automatically adjust transmission and scattering of a polymer-dispersed liquid crystal to a desired scattering degree. The shoji door according to any one of claims 1 to 4.
【請求項6】周辺温度を検知する少なくとも1つ以上の
温度感知器及び冷暖房空調機などの温度制御機器に導か
れ、外光直射による輻射熱について、ポリマー分散液晶
の透過、散乱の制御をせしめる事で、室内の温度調節を
相関して補助した上記請求項目1から5いずれか記載の
障子戸。
6. At least one or more temperature sensors for detecting ambient temperature and temperature control devices such as air conditioners and air conditioners to control the transmission and scattering of polymer dispersed liquid crystal with respect to radiant heat caused by direct external light. 6. The shoji door according to any one of claims 1 to 5, wherein the room temperature control is correlated and assisted.
【請求項7】障子面に照射された光の色相検知手段とし
て、複数の波長フィルターを光検知器に施す等により、
光相を分解して検知せしめ、所望する色調となるようポ
リマー分散液晶の透過、散乱を制御すべく光散乱色の選
択を可能とする制御駆動部を具備した上記請求項目1か
ら6いずれか記載の障子戸。
7. As a means for detecting hue of light applied to a shoji screen, a plurality of wavelength filters are applied to a photodetector or the like.
7. A control driving unit according to claim 1, further comprising a control drive unit for decomposing a light phase, detecting the light phase, and selecting a light scattering color to control transmission and scattering of the polymer-dispersed liquid crystal to obtain a desired color tone. Shoji door.
【請求項8】同期性があり時系列に障子面に照射する異
なる波長の照射光に相関し、少なくとも1枚以上のポリ
マー分散液晶の透過、散乱を所望する色調となるよう照
射波長に同期して夫々制御し色彩、色相の変化を適選制
御せしめる制御駆動部を具備した上記請求項目1から7
いずれか記載の障子戸。
8. Synchronous and correlated with irradiation light of different wavelengths irradiating the sash surface in a time series, and synchronizing with the irradiation wavelength so that transmission and scattering of at least one or more polymer dispersed liquid crystals have a desired color tone. 7. The control device according to claim 1, further comprising a control drive unit for controlling the change in color and hue by controlling the color and hue appropriately.
Shoji door of either description.
【請求項9】引き違い戸構造をなす外ガラス窓の内側に
施設された障子戸のポリマー分散液晶の直下光線による
劣化防止手段として外ガラス戸の開き加減以上に障子戸
が開かないよう開閉制限をもたらしめた上記請求項目1
から8いずれか記載の障子戸。
9. As a means for preventing deterioration of the polymer-dispersed liquid crystal of the shoji door provided inside the outer glass window having a sliding door structure due to a ray directly below, the opening and closing of the shoji door is prevented from opening more than the opening of the outer glass door. Claim 1 above that resulted in
Shoji door according to any one of to 8 above.
【請求項10】ポリマー分散液晶シートの劣化防止手段
として、紫外線カットフィルター及び、透明電極の赤外
線吸収による温度上昇を防止手段として赤外線カットフ
ィルター及び、バンドパスフィルター及び、波長帯域カ
ットガラス等を張り合わせた上記請求項目1から9いず
れか記載の障子戸。
10. A means for preventing deterioration of the polymer-dispersed liquid crystal sheet, an ultraviolet cut filter, an infrared cut filter, a band pass filter, a wavelength band cut glass and the like for preventing temperature rise due to infrared absorption of the transparent electrode. The shoji door according to any one of claims 1 to 9.
【請求項11】障子面内外のてかり等の反射防止及び障
子紙の質感近似手段として反射防止コーテングや透視可
能な色彩プリント模様等の表面処理又は、加工を施した
上記請求項目1から10いずれか記載の障子戸。
11. A method according to claim 1, wherein surface treatment or processing such as anti-reflection coating or see-through color print pattern is applied as means for preventing reflection of light on the inside and outside of the shoji screen and for approximating the texture of the shoji paper. Or the shoji door described.
【請求項12】少なくとも1枚以上のポリマー分散液晶
シートに絵柄や模様などを描き、ポリマー分散液晶の制
御によって絵柄や文字模様が相関して表示変化をもたら
しめた上記請求項目1から11いずれか記載の障子戸。
12. A method according to claim 1, wherein a pattern or a pattern is drawn on at least one or more polymer-dispersed liquid crystal sheets, and the display is changed by controlling the polymer-dispersed liquid crystal so that the pattern or the character pattern is correlated. The sliding door shown.
【請求項13】障子戸よりポリマー分散液晶シートを脱
却交換せしめた上記請求項目1から12いずれか記載の
障子戸。
13. The sliding door according to claim 1, wherein the polymer-dispersed liquid crystal sheet is removed from the sliding door and replaced.
JP10250279A 1998-08-03 1998-08-03 Sliding screen door Pending JP2000054749A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10250279A JP2000054749A (en) 1998-08-03 1998-08-03 Sliding screen door

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10250279A JP2000054749A (en) 1998-08-03 1998-08-03 Sliding screen door

Publications (1)

Publication Number Publication Date
JP2000054749A true JP2000054749A (en) 2000-02-22

Family

ID=17205543

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10250279A Pending JP2000054749A (en) 1998-08-03 1998-08-03 Sliding screen door

Country Status (1)

Country Link
JP (1) JP2000054749A (en)

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