JPS63177896A - Washing dryer - Google Patents

Washing dryer

Info

Publication number
JPS63177896A
JPS63177896A JP62009597A JP959787A JPS63177896A JP S63177896 A JPS63177896 A JP S63177896A JP 62009597 A JP62009597 A JP 62009597A JP 959787 A JP959787 A JP 959787A JP S63177896 A JPS63177896 A JP S63177896A
Authority
JP
Japan
Prior art keywords
liquid
time
liquid level
drying
washing
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.)
Granted
Application number
JP62009597A
Other languages
Japanese (ja)
Other versions
JPH0696072B2 (en
Inventor
角本 佳隆
敏昭 坂本
狩谷 弘
板根 鐵男
初田 剛一
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.)
Sanyo Electric Co Ltd
Original Assignee
Sanyo Electric 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 Sanyo Electric Co Ltd filed Critical Sanyo Electric Co Ltd
Priority to JP62009597A priority Critical patent/JPH0696072B2/en
Publication of JPS63177896A publication Critical patent/JPS63177896A/en
Publication of JPH0696072B2 publication Critical patent/JPH0696072B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 ヒ)産業上の利用分野 本発明に、衣類の量(負荷量)を検出し、その負荷量に
応じて行程制御を行なうドライクリーナ等の洗濯乾燥機
に関する□ (ロ)従来の技術 負荷量を検出し、その負荷量に応じて行程制御する洗潅
機の一例が特開昭61−106195号公報に開示され
ている0このものは衣類を入れ几洗癌槽内に給水し、こ
の給水fl[−測定していてそれが規定量に成ると、給
水全土め、この時の槽内 。
Detailed Description of the Invention H) Industrial Application Field The present invention relates to a washer/dryer such as a dry cleaner that detects the amount of clothing (load amount) and performs stroke control according to the load amount. ) Conventional technology An example of a washing machine that detects the amount of load and controls the stroke according to the amount of load is disclosed in Japanese Patent Application Laid-open No. 106195/1983. When the supplied water fl[-- is measured and reaches the specified amount, the entire water supply is in the tank at this time.

水位?検出し、規定水量と検出水位の相関々係に基づい
て衣類の量(負荷量)を判定しているりしかし、この従
来例に給水時点で負荷を全判定できると云う利点がある
ものの、市水の給水!?測測定る手段を配管に付設した
り、全ろ水位を検出できるセンサーを要すると云う欠点
があっt。
Water level? The amount of clothing (load amount) is determined based on the correlation between the specified water amount and the detected water level.However, although this conventional method has the advantage of being able to determine the entire load at the time of water supply, it water supply! ? There are disadvantages in that it requires a means of measurement to be attached to the piping and a sensor capable of detecting the total drainage level.

(ハ)発明が解決しようとする問題点 本発明は、負荷Ilを簡易構造にて判定できる二うにし
iものであるn に)問題点を解決する九めの手段 本発明による解決手段は、洗濯兼乾燥室内への給液手段
と、供給液位の設定手段と、設定液位まで供給され九の
を検知する液位検知手段と、この液位検知手段が検知す
るまでの給液時間全計測する計測部と、設定液位毎の基
準時間を予め記憶している記憶部と、上記給液時間全基
準時間と比較する比較部と、この比較部出力I/c基づ
いて室内の衣類の量を判定する判定部と、判定された量
に応じて乾燥行程の時間を設定する時間設定部と、乾燥
行程全設定時間中実行させる乾燥制御部とを備え几構成
である□ (ホ)作 用 給液t’に測定するのに代えて給液時間を計測し。
(c) Problems to be Solved by the Invention The present invention is capable of determining the load Il with a simple structure. A means for supplying liquid into the washing/drying chamber, a means for setting the supplied liquid level, a liquid level detecting means for detecting when the liquid has been supplied to the set liquid level, and a total liquid supply time until detection by this liquid level detecting means. A measurement unit that measures, a storage unit that stores the reference time for each set liquid level in advance, a comparison unit that compares the liquid supply time with the total reference time, and a □ (E) The drying device has a structure that includes a determination unit that determines the amount, a time setting unit that sets the drying process time according to the determined amount, and a drying control unit that executes the drying process during the entire set time. Instead of measuring the liquid supply time t', the liquid supply time is measured.

液位検知?設定液位毎に行なう)そして、設定液位毎の
基準給液時間と測定し友給液時間を比較するり通常の衣
類に、吸液するので、負荷量が多くて吸液量も多くなる
と、設定液位にまで到達する時間、即ち測定給液時間に
長くなる。斯る関係から負荷量を判定し、この判定され
几負荷量に応じた乾燥時間を設定し、乾燥行程に成ると
例えばヒータ及びファンから成る乾燥手段をその乾燥時
間だけ作動させ、乾燥不足や過乾燥の無い仕上りとする
のである0 (へ)実施例 図面に基づいてドライクリーナの例を説明すると、第3
図に於いて11+はモータ駆動の横軸型の回転ドラム1
21全内装した洗da兼屹燥室であり、その上部両側に
通風路13+i接続し、この通風路+3+内には乾燥行
程にて作動するファン(41、凝縮器(51及び加熱器
+61から成る乾燥手段を配設しているりそして、洗濯
行程では回転ドラム12+に低速反転して九たき洗いを
行ない、排液後に回転ドラム+21を高速回転して脱液
を行ない、この洗いと脱液の組合せを運転プログラムに
よって最大2回実行し、この後に回転ドラム+21 ’
ji低速回転(反転)する中で乾燥手段?作動して乾燥
を行なう◎ 17+框溶剤を収容しtタンクであり、ポンプ(8)、
逆止弁19)、フィルター(111及び給液弁任υを介
して上記洗渭兼乾燥室il+に給液する0また、eP、
潅兼乾燥室+11からボタントラ−)1(121及び排
液弁α3を介して排液させている□ (140)(141)(142)(143)・・・a洗
潅兼乾燥室11)内の液位検知手段としての圧力スイッ
チで8つ、スイッチ(14Q)に0度(即ち排液状態)
、スイッチ(141)に1度、スイッチ(142)は2
度、スイッチ(143)に3度を夫々個々に検知する。
Liquid level detection? (This is done for each set liquid level) Then, measure the standard liquid supply time for each set liquid level and compare the liquid supply time.As the liquid is absorbed into normal clothing, if the load is large and the amount of liquid absorbed is large. , the time required to reach the set liquid level, that is, the measured liquid supply time becomes longer. The amount of load is determined based on this relationship, and the drying time is set according to the determined amount of container load. During the drying process, the drying means consisting of, for example, a heater and fan is operated for that drying time to prevent insufficient or overdrying. (f) To explain an example of a dry cleaner based on the drawings of the embodiment, the third
In the figure, 11+ is a motor-driven horizontal shaft type rotating drum 1.
21 is a washing and drying room with a fully internal interior, and a ventilation passage 13+i is connected to both sides of the upper part of the room. In addition, in the washing process, the rotating drum 12+ is rotated at low speed to perform nine washes, and after draining the liquid, the rotating drum +21 is rotated at high speed to remove liquid, and this combination of washing and liquid removal is performed. is executed up to two times depending on the operation program, and then the rotating drum +21'
ji Is there a way to dry while rotating at low speed (reversing)? It operates and performs drying. ◎ 17+ It is a T tank that accommodates the solvent, and the pump (8),
Check valve 19), filter (111) and liquid supply valve υ to supply liquid to the washing and drying chamber il+, and eP,
(140) (141) (142) (143)...A washing and drying room 11) There are 8 pressure switches as means for detecting the liquid level in the tank, and the switch (14Q) is set to 0 degrees (i.e., draining state).
, switch (141) once, switch (142) twice
degree, and the switch (143) detects three degrees, respectively.

ここで、1度と框洗濯兼乾燥室(’II内の中位までを
10度としてその’/、o?示すり尚−圧力スイッチに
フロートスイッチ等で代用することができる。
Here, 1 degree and stile washing and drying room ('/, o? with 10 degrees up to the middle of 'II' are shown.) - A float switch etc. can be substituted for the pressure switch.

而して、斯るドライクリーナは操作パネル部内に記憶部
、演算部、人、出力制御部等から成るマイクロコンピュ
ータ(151(以下マイコン)を装着し、操作パネル面
にσ手動操作用のスタートキーσ印、スト・ンプキーa
の、運転プログラムの選択キーQ81、液位設定キーf
i9、各キーに二る操作状轢を個々にLED を発光ダ
イオ−トンで示す表示装置■を設け、ま之ブザー(21
+Th適所に装着している。そして、このマイコン(1
51は圧力スイッチ(140)(141)(142)(
143)””、各$−[161C17)(181(19
、凝縮器15)と加熱器(6;の各サーモ(221+2
3からの検知信号を入力し、回転ドラム121(モータ
)、ファン(4)、凝縮器15;の冷却1肌加熱器(6
1の加熱−6、ポンプ(8)、給液弁(ill、排液*
(131、表示装@■、ブザーQvに制御信号?出力す
る(第1図参照)0尚、マイコンα!ilに選択され次
運転プログラム中に予め液位が設定してあれば、液位設
定キー(1!Jの操作が無い時にはプログラムの設定値
を液位とし、キーa9の操作が有る時にはキー操作に工
っで設定し九液位全設定液位とする。
Therefore, such a dry cleaner is equipped with a microcomputer (151 (hereinafter referred to as microcomputer)) consisting of a storage section, a calculation section, a person, an output control section, etc. in the operation panel, and a start key for manual operation on the operation panel. σ mark, strike key a
Operation program selection key Q81, liquid level setting key f
i9, each key is equipped with a display device (21) that indicates the operation status using a light emitting diode (LED), and a buzzer (21).
+Th is installed in the proper place. And this microcontroller (1
51 is a pressure switch (140) (141) (142) (
143)””, each $-[161C17) (181(19
, condenser 15) and heater (6; each thermostat (221+2)
The detection signal from 3 is input to cool the rotary drum 121 (motor), fan (4), condenser 15;
1 heating-6, pump (8), liquid supply valve (ill, drain *
(131, display @ ■, outputs a control signal to the buzzer Qv (see Figure 1) 0 In addition, if it is selected by the microcomputer α!il and the liquid level is set in advance during the next operation program, the liquid level is set. When the key (1!J) is not operated, the program setting value is used as the liquid level, and when the key a9 is operated, the key operation is used to set the liquid level and the 9 liquid level is set as the total liquid level.

次に、71コン的か本ドラづクリーナの運転を制御する
動作について第2図に基づいて説明するが、ここでに説
明を簡略化するために液位を1度か3度に手動設定でき
る例を示す□まず、スタートキー1161の操作に先だ
って運転プログラムの選択傑作と液位の設定操作とが記
憶されているかを判別するり運転a第1回目の給液−洗
い一徘液一説岐の処理から開始し、この後に第2回目の
処理行程へ移行させる。運転プログラムに工っでα第1
−回目の処理の万が省略される。そして、行程CNT及
び給gCNT、−fクリアし、洗い用の運転CNTに例
えば10分tセクトし、行程CNTから判別する◎行程
cNr−qμ給液を示し、給液弁αυを開放して排液弁
a31t閉成し、ポンプ(81勿駆動する。衣類に1回
目の処理中に反転し定時に確実に脱気しており、この給
液中には外気を含ますことなぐ再吸液するn71コンt
t51i設定液位が1度であれば圧力スイッチ(141
)が、3度であれば圧力スイッチ(143)が、ONす
るのを判別している0設定液位に対応するスイッチがO
Nするまで、1秒毎に給液CNTでカウントし、ONす
ると給液CNTの内容を記憶部に記憶させ、行程CNT
を洗いである1″1“に変え、ポンプ(8すを停止して
給液弁(IIBL−閉成する。
Next, the operation of controlling the operation of the 71-type drum cleaner will be explained based on Fig. 2, but to simplify the explanation, the liquid level can be manually set to 1 degree or 3 degrees. An example is shown □ First, before operating the start key 1161, it is determined whether the operation program selection masterpiece and liquid level setting operation are stored. It starts with the processing and then moves to the second processing step. Alpha 1 by modifying the operating program
- The 10,000-th processing is omitted. Then, clear the stroke CNT and supply gCNT, -f, perform a 10-minute t-sec for the washing operation CNT, and determine from the stroke CNT. The liquid valve a31t is closed, and the pump (81) is driven. During the first treatment of clothing, it is reversed to ensure degassing at a scheduled time, and the liquid is reabsorbed without including outside air in this liquid supply. n71 cont
t51i If the set liquid level is 1 degree, the pressure switch (141
) is 3 degrees, the pressure switch (143) is determined to be turned on.The switch corresponding to the 0 setting liquid level is turned on.
The supply liquid CNT is counted every second until N, and when it is turned on, the contents of the supply liquid CNT are stored in the storage section, and the stroke CNT is counted.
1" to 1", the pump (8) is stopped, and the liquid supply valve (IIBL) is closed.

洗い工程a運転CNTがカウントダウンするまで実行さ
せ、その後に排液を含む第2回目の脱液処理を実行させ
、この後に乾燥行程へ移行させる。
Washing process a operation is carried out until the CNT counts down, and then a second deliquoring process including draining is carried out, and then the drying process is started.

乾燥行程では記憶されている設定液位を呼出し、それが
1度か3度かを判別し、1閃であれば予め記憶されてい
る30カウントヲ、3度であれば同じく90力ウント全
夫々基準給液時間として呼出すと共に、先に計測してい
友給液CNTのカウント全呼出し、比較する。そして、
設定液位が1度で且つ30カウントより少い場合ぼ負荷
量が最少と判定して運転CNTに10分を設定し、同じ
く1度で且つ50カウントを越える場合に負荷量が少い
と判定して運転CNTに12分を設定し、3度で且つ9
0カウントエ9少い場合ぼ負荷量が中と判定して運転C
NTに14分全役定し、3度で且つ90カウンl越える
場合に負荷tが多いと判定して運転CNTに16分を設
定する、この後に行程CNT2乾燥作業である=q″と
してドラム121ヲ反転し、排液弁C13に開放し、フ
ァン141及び冷却漁(支)を作動し、加?27!■を
加熱器161の温度をサーモαやで測定しながら作動さ
せる。この乾燥作業中に運転CNTi1分毎にカウント
ダウンし、終了すると、行程CNT全クールダウンを示
すゝ11”に変え、加懸源のだけを非作動とする。
In the drying process, the stored set liquid level is called up and it is determined whether it is 1st or 3rd degree.If it is 1 flash, the pre-memorized 30 counts are used, and if it is 3 degrees, the same 90 points are used. At the same time as calling out the liquid supply time, the total count of the liquid CNTs previously measured is called out and compared. and,
If the set liquid level is 1 degree and less than 30 counts, it is determined that the load amount is the minimum and the operating CNT is set to 10 minutes, and if the set liquid level is 1 degree and exceeds 50 counts, it is determined that the load amount is small. and set the operating CNT to 12 minutes, and at 3 degrees and 9
If the 0 count is less than 9, the load amount is determined to be medium and operation C is performed.
NT is fully used for 14 minutes, and if it is 3 degrees and exceeds 90 counts, it is determined that the load t is large and 16 minutes is set for the operation CNT. After this, the drum 121 is set to drying process CNT2 as =q''. Turn it over, open the drain valve C13, operate the fan 141 and the cooling fan (support), and operate the heater 27!■ while measuring the temperature of the heater 161 with the thermometer α.During this drying work The operation CNTi is counted down every minute, and when it is finished, it is changed to ``11'', which indicates the total cooldown of the stroke CNT, and only the stress source is deactivated.

クールダウンに自動的に5分間実行させ、これが終了す
ると、ドラム121及び7アン14pヲ停止し、冷却a
(241v非作動とし、ブザー飢にょうで終了報知させ
る/1また、表示装置■に工っで全行程の終了、次回の
待期を表示させる□ 尚、2回目の処理での給液中に時間を計測すると、衣類
自身が抱き込む空気がほとんど無くなり、Lつ精度の良
い負荷量の判定ができるものである□(ト)発明の効果 本発明に依れば、設定液位の検知と計測時間とによって
負荷tを判定することができ、給液量自体全測定するも
のに対して構造t−簡単化できており、乾燥効率の良好
な洗郡乾燥機を提供できるものである^
Cooldown is automatically performed for 5 minutes, and when this is finished, drums 121 and 7 14p are stopped, and cooling a is started.
(241v is deactivated and the buzzer indicates the end of the process./1 Also, the display device ■ is operated to display the end of the entire process and the next waiting period.□ In addition, during the liquid supply in the second process When the time is measured, there is almost no air trapped by the clothing itself, and the load amount can be determined with high accuracy. The load t can be determined based on the time, and the structure is simpler than the one that measures the entire liquid supply amount itself, and it is possible to provide a washing dryer with good drying efficiency.

【図面の簡単な説明】[Brief explanation of the drawing]

@1図a本発明に於ける洗清乾燥機のlj+御ブロック
図、第2図に動作説明のための70−チャート、第3図
に本発明の一実施例を示すドライクリーナの配管機構図
である。
@Figure 1 a lj+ control block diagram of the washer/dryer according to the present invention, Figure 2 is a 70- chart for explaining operation, and Figure 3 is a piping mechanism diagram of a dry cleaner showing an embodiment of the present invention. It is.

Claims (1)

【特許請求の範囲】[Claims] (1)洗濯兼乾燥室内にて衣類を洗濯し、脱液して乾燥
する洗濯乾燥機に於いて、洗濯兼乾燥室内へ給液する手
段と、供給する液位を設定する手段と、設定液位まで給
液されたのを検知する手段と、この液位検知手段が検知
するまでの給液時間を計測する計測部と、設定液位毎の
基準時間を予め記憶している記憶部と、上記給液時間を
基準時間と比較する比較部と、この比較部出力に基づい
て室内の衣類の量を判定する判定部と、判定された量に
応じて乾燥行程の時間を設定する時間設定部と、乾燥行
程を設定時間中実行させる乾燥制御部とを備えたことを
特徴とする洗濯乾燥機。
(1) In a washer/dryer that washes clothes in the washing/drying chamber, removes liquid, and dries the clothes, there is a means for supplying liquid into the washing/drying chamber, a means for setting the level of liquid to be supplied, and a setting liquid. a measuring unit that measures the liquid supply time until the liquid level is detected by the liquid level detection unit; and a storage unit that stores a reference time for each set liquid level in advance; A comparison section that compares the liquid supply time with a reference time, a determination section that determines the amount of clothing in the room based on the output of this comparison section, and a time setting section that sets the drying process time according to the determined amount. and a drying control unit that executes a drying process for a set time.
JP62009597A 1987-01-19 1987-01-19 Drum type washing machine Expired - Fee Related JPH0696072B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP62009597A JPH0696072B2 (en) 1987-01-19 1987-01-19 Drum type washing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP62009597A JPH0696072B2 (en) 1987-01-19 1987-01-19 Drum type washing machine

Publications (2)

Publication Number Publication Date
JPS63177896A true JPS63177896A (en) 1988-07-22
JPH0696072B2 JPH0696072B2 (en) 1994-11-30

Family

ID=11724728

Family Applications (1)

Application Number Title Priority Date Filing Date
JP62009597A Expired - Fee Related JPH0696072B2 (en) 1987-01-19 1987-01-19 Drum type washing machine

Country Status (1)

Country Link
JP (1) JPH0696072B2 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02130580U (en) * 1989-03-31 1990-10-29
JPH05177085A (en) * 1991-12-27 1993-07-20 Sanyo Electric Co Ltd Washing/drying machine
US7378582B2 (en) 2005-01-20 2008-05-27 Hoshino Gakki Co., Ltd. Stringed instrument nut and stringed instrument

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5717695A (en) * 1980-07-02 1982-01-29 Jiyanson Kurisuchian Method and apparatus for heating washing water when washing and/or drying wash
JPS5932499A (en) * 1982-08-18 1984-02-21 松下電器産業株式会社 Control apparatus of dryer
JPS61106195A (en) * 1984-10-29 1986-05-24 三洋電機株式会社 Washer

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5717695A (en) * 1980-07-02 1982-01-29 Jiyanson Kurisuchian Method and apparatus for heating washing water when washing and/or drying wash
JPS5932499A (en) * 1982-08-18 1984-02-21 松下電器産業株式会社 Control apparatus of dryer
JPS61106195A (en) * 1984-10-29 1986-05-24 三洋電機株式会社 Washer

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02130580U (en) * 1989-03-31 1990-10-29
JPH05177085A (en) * 1991-12-27 1993-07-20 Sanyo Electric Co Ltd Washing/drying machine
US7378582B2 (en) 2005-01-20 2008-05-27 Hoshino Gakki Co., Ltd. Stringed instrument nut and stringed instrument

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JPH0696072B2 (en) 1994-11-30

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