JP4143321B2 - Adsorbent spraying method - Google Patents

Adsorbent spraying method Download PDF

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Publication number
JP4143321B2
JP4143321B2 JP2002098485A JP2002098485A JP4143321B2 JP 4143321 B2 JP4143321 B2 JP 4143321B2 JP 2002098485 A JP2002098485 A JP 2002098485A JP 2002098485 A JP2002098485 A JP 2002098485A JP 4143321 B2 JP4143321 B2 JP 4143321B2
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Japan
Prior art keywords
adsorbent
rotating drum
drum
mop
sprayed
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JP2003290587A (en
Inventor
孝憲 芝原
芳和 生野
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Duskin Co Ltd
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Duskin Co Ltd
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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06GMECHANICAL OR PRESSURE CLEANING OF CARPETS, RUGS, SACKS, HIDES, OR OTHER SKIN OR TEXTILE ARTICLES OR FABRICS; TURNING INSIDE-OUT FLEXIBLE TUBULAR OR OTHER HOLLOW ARTICLES
    • D06G1/00Beating, brushing, or otherwise mechanically cleaning or pressure cleaning carpets, rugs, sacks, hides, or other skin or textile articles or fabrics
    • D06G1/005Beating, brushing, or otherwise mechanically cleaning or pressure cleaning carpets, rugs, sacks, hides, or other skin or textile articles or fabrics inside a rotary receptacle
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B1/00Applying liquids, gases or vapours onto textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing or impregnating
    • D06B1/02Applying liquids, gases or vapours onto textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing or impregnating by spraying or projecting
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B5/00Forcing liquids, gases or vapours through textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing impregnating
    • D06B5/12Forcing liquids, gases or vapours through textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing impregnating through materials of definite length
    • D06B5/24Forcing liquids, gases or vapours through textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing impregnating through materials of definite length through articles, e.g. stockings
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B5/00Forcing liquids, gases or vapours through textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing impregnating
    • D06B5/12Forcing liquids, gases or vapours through textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing impregnating through materials of definite length
    • D06B5/26Forcing liquids, gases or vapours through textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing impregnating through materials of definite length using centrifugal force

Description

【0001】
【発明の属する技術分野】
本願発明は、モップ等のダストコントロール製品に、ダスト吸着力を付与するための吸着剤を吹付け、含浸させる吸着剤吹付方法に関する。
【0002】
【従来の技術】
レンタルモップ等のレンタル用ダストコントロール製品に吸着剤を含浸させる装置として、従来、回転ドラムと吹付ノズルを利用した装置が多く採用されており、たとえば実公昭62−40702号公報及び実開昭60−24263号公報に記載されている。
【0003】
前者の吸着剤吹付装置は、回転ドラムを水平姿勢に保持し、回転軸芯方向の両端部に、回転軸芯と同一高さに吸着剤吹付ノズルを配置し、回転ドラムを水平な回転軸芯回りに回転させた状態で、上記両端の吹付ノズルから吸着剤を噴霧するようになっている。
【0004】
後者の吸着剤吹付装置は、回転ドラムを水平姿勢に保持し、回転ドラム内に回転軸芯と平行で、かつ、定置式の噴霧管を配管し、該噴霧管の途中数個所に吹付ノズルを設けてあり、回転ドラムを水平な回転軸芯回りに回転させた状態で、上方の複数の吹付ノズルから吸着剤を噴霧するようになっている。
【0005】
【発明が解決しようとする課題】
前者の吸着剤吹付装置及び方法では、全体のモップに吸着剤を吹き付けるために、吹付ノズルを回転軸芯方向両端に備えているにも拘わらず、回転軸芯方向の中央部のモップは吸着剤の含浸量が不足気味になる。すなわち、部品コストが高くなると共に全モップに対して均一な含浸を行なうことが困難である。
【0006】
後者の吸着剤吹付装置では、回転ドラム内に定置式の噴霧管を配管しなければならないので、コストがかかると共に回転ドラム内に配管スペースを確保する必要があり、配管が複雑化し、回転ドラムの容量が制限されてしまう。
【0007】
【発明の目的】
本願発明の目的は、1個の吹付ノズルでも、回転ドラム内のモップ全体に、くまなく均一に、また、速やかに吸着剤を含浸させることができる吸着剤吹付装置及び吸着剤吹付方法を提供することである。
【0008】
【課題を解決するための手段】
上記課題を解決するために本願請求項1記載の発明は、ダストコントロール製品を乾燥し、その後、ダストコントロール製品を回転ドラム内に多数収納した状態で、回転ドラムを回転軸芯が傾斜した状態で回転させ、回転軸芯方向の高位側の回転ドラム端部であって、回転軸芯Oの高位側の端部よりも上方位置で、かつ、回転軸芯Oを通る垂直線Vよりも回転方向の前方側へ角度90度の範囲内で偏倚した位置から、吸着剤吹付ノズルにより、回転ドラム内に向けて斜め下方に吸着剤を噴霧することを特徴とする吸着剤吹付方法である。
【0011】
【発明の実施の形態】
[吸着剤吹付装置の構造]
図1〜図3に示す装置は、回転ドラム式乾燥機に吸着剤吹付ノズルを取り付けることにより、本願発明にかかる吸着剤吹付装置を構成した例である。図2は縦断側面図(図1のII-II断面図)を示しており、箱型のケーシング2内に円筒状の回転ドラム3を横置き状態に内蔵しており、該ケーシング2のドラム回転軸芯方向の一端側、すなわち正面側に上下スライド式の投入蓋4が開閉自在に設けられ、他端背面側に回動式の排出蓋5が上方回動可能に設けられている。
【0012】
ケーシング2はベース1上に載置されているが、背面下端部がヒンジ機構7により回動可能に支持され、正面が空圧(又は油圧)シリンダ6により昇降自在に支持され、空圧シリンダ6を伸長することにより、正面側が高くなる傾斜姿勢となっている。これに伴って、ケーシング2内の回転ドラム3の回転軸芯Oも、正面側が高くなる傾斜姿勢となっている。
【0013】
吸着剤吹付ノズル10は正面側の投入蓋4に1個取り付けられ、その高さは回転軸芯Oよりも高く設定され、回転ドラム3内へ斜め下方に向いており、一定の円錐状噴霧範囲で吸着剤を霧化噴射するようになっている。吸着剤吹付ノズル10には、投入扉4の昇降に従動するように可撓性を有するホース11が接続され、該ホース11は吸着剤噴射ポンプ12に接続し、吸着剤噴射ポンプ12は吸着剤タンク13に接続しいている。吸着剤としては鉱物油系潤滑油や合成樹脂系潤滑油等が用いられている。
【0014】
図1は正面図であり、回転ドラム3は下側に配置された左右1対の駆動ローラ8と上側に配置された左右1対の保持ローラ9により、回転軸芯Oまわり回転可能に保持されており、駆動ローラ8は図示しないが動力伝導機構を介して駆動モータに連動連結し、駆動ローラ8の回転により回転ドラムが矢印R方向に回転するようになっている。
【0015】
吹付ノズル10は、前述のように回転軸芯Oより上方位置に配置されると共に、ドラム回転方向Rの前方側に偏倚した位置に配置されている。言いかえると、回転ドラム3の円周範囲内において、回転軸芯Oを通る水平線Hと垂直線Vで区切られた4つの象限S1,S2,S3,S4のうち、第1象限(図2の右上の象限)S1内に配置されている。
【0016】
図3は図2のIII-III断面図であり、回転ドラム3の内周面には、回転中に内部のモップMを掻き混ぜるブレード15が、周方向に等間隔を置いて複数個形成されている。
【0017】
[吸着剤吹付方法]
(1)乾燥工程
前述のように該実施の形態の吸着剤吹付装置は乾燥機を兼用しており、図2において、ケーシング2を傾斜状態にして投入蓋4を開き、洗濯済みのモップMを回転ドラム3内に投入し、投入蓋4を閉じ、ケーシング2を水平状態に戻し、回転ドラム3を水平状態で回転させながら熱風等によりモップMを乾燥する。
【0018】
(2)吹付工程
乾燥終了後、空圧シリンダ6を伸長することによりケーシング2と共に回転ドラム3を傾斜させ、該傾斜状態で回転ドラム3を回転させ、かつ、吹付ノズル10から回転ドラム3内のモップMに向けて吸着剤を吹き付ける。
【0019】
この吹付工程において、回転ドラム3の正面側が高くなるように傾斜していることにより、モップMは図2に示すように背面側に片寄せられた状態となっている。一方、吹付ノズル10は高い正面側に配置され、かつ、回転軸芯Oより高い位置に配置されているので、吸着剤の到達距離を長く確保することができ、したがって、1個所の吹付ノズル10から吸着剤を吹き付ける構成であっても、回転軸芯方向の概ね全幅に亘ってくまなく吸着剤を吹き付けることができる。
【0020】
また、図3において、回転ドラム3が矢印R方向に一定の回転数で回転していることにより、ドラム内のモップMは、矢印Bで示すように第3象限S3内では回転ドラム3の内周面に沿って持ち上げられ、さらに第2象限S2内まで持ち上げられた後、回転ドラム3内の空間を斜め下方に横断するように第1象限S1又は第4象限S4内に放出される。このような軌跡で回転ドラム3内を動くモップMに対して、第1象限S1側の高い位置から回転軸芯側に向かって吸着剤を円錐状に吹き付けているので、1つの吹付ノズル10を使用しながらも、回転ドラム3の径方向全幅に亘り、くまなく、かつ,均一に吸着剤を吹き付けることが可能となる。
【0021】
(3)排出工程
吸着剤を含浸させた後は、傾斜姿勢の状態で排出扉5を開き、背面側の排出口から吸着済浸みのモップMを排出する。
【0022】
本実施の形態のように、乾燥後に吸着剤を吹き付けるようにしていると、次のような利点もある。
(a)回転ドラム式の洗濯機内で洗濯後に吸着剤を吹き付ける場合に比べ、高音のモップに吸着剤を吹き付けることになり、吸着剤の含浸速度が速く、モップ間部への含浸効果も向上し、表面のべたつきを防止できる。しかも洗濯工程時に起こり得るような吸着剤の流出ロスを防ぐことができ、洗濯工程における排水処理の負担が軽減できる。
【0023】
(b)吸着剤を吹き付ける前に乾燥するので、乾燥工程時に吸着剤が蒸発して排気されることがなく、したがって排気ダクト内に吸着剤が付着したり、吸着剤の加熱により臭気が発生することもない。
【0024】
(c)吸着剤を吹き付ける前に洗濯及び乾燥を行なうので、洗濯時間及び乾燥時間を短縮することができる。
【0025】
(d)乾燥後のモップは高温であるため、乾燥熱源(蒸気)を止めて冷却工程を持たすが、吸着剤を噴霧することにより、上記冷却を促進する効果も得ることができる。
【0026】
【その他の発明の実施の形態】
(1)前記実施の形態では、回転ドラム式の乾燥機を利用して吸着剤吹付装置を構成しているが、回転ドラム式の洗濯機を利用して吸着剤吹付装置を構成することも可能である。
【0027】
【発明の効果】
以上説明したように本願発明によると、(1)回転ドラムの回転軸芯を傾斜させることにより、低い側にモップ等を片寄らせ、高い側から吹付ノズルにより、回転ドラム内に斜め下方に向けて吸着剤を吹き付けるようにしているので、一箇所の吹付ノズルから吸着剤を吹き付ける場合でも、回転軸芯方向の全幅に亘り、くまなく、概ね均一に吸着剤を吹き付けることができる。しかも、ドラム回転方向の前方側に偏倚した位置から吹き付けるので、回転ドラムの回転に伴って運動しているモップに対して、ドラム径方向においても全幅に亘ってくまなく均一に吸着剤を吹き付けることができる。すなわち、1つの吹付ノズルからの噴霧でも、回転ドラム内の全モップに対して略均一に吸着剤を吹き付けることごできる。
【0028】
(2)ダストコントロール製品の乾燥後に吸着剤を吹き付けるようにすると、高音のモップに吸着剤を吹き付けることになり、吸着剤の含浸速度が速く、モップ間部への含浸効果も向上し、表面のべたつきを防止できる。しかも洗濯工程時に起こり得るような吸着剤の流出ロスを防ぐことができ、洗濯工程における排水処理の負担が軽減できる。
【0029】
(3)吸着剤を吹付ける前に乾燥すると、乾燥工程時に吸着剤が蒸発して排気されることがなく、排気ダクト内に吸着剤が付着したり、乾燥時に吸着剤の加熱により臭気が発生することもない。さらに、吸着剤を吹き付ける前に洗濯及び乾燥を行なうと、洗濯時間及び乾燥時間を短縮することができる。
【0030】
(4)乾燥後のモップは高温であるため、乾燥熱源(蒸気)を止めて冷却工程を持たすが、吸着剤を噴霧することにより、上記冷却を促進する効果も得ることができる。
【図面の簡単な説明】
【図1】 本願発明を適用した吸着剤吹付装置の正面図である。
【図2】 図1のII-II断面図である。
【図3】 図2のIII-III断面図である。
【符号の説明】
2 ケーシング
3 回転ドラム
10 吸着剤吹付ノズル
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to dust control products mop or the like, only spraying the adsorbent to impart dust suction force, to the adsorbent spraying method Ru impregnated.
[0002]
[Prior art]
As a device for impregnating a rental dust control product such as a rental mop with an adsorbent, many devices using a rotating drum and a spray nozzle have been conventionally used. For example, Japanese Utility Model Publication No. 62-40702 and Japanese Utility Model Application No. 60-24263 are used. It is described in the gazette.
[0003]
In the former adsorbent spraying device, the rotating drum is held in a horizontal position, adsorbent spraying nozzles are arranged at the same height as the rotating shaft core at both ends in the rotating shaft core direction, and the rotating drum is placed in a horizontal rotating shaft core. The adsorbent is sprayed from the spray nozzles at both ends while being rotated around.
[0004]
The latter adsorbent spraying device holds a rotating drum in a horizontal position, and in the rotating drum, a stationary spray tube that is parallel to the rotation axis and is fixed, and spray nozzles are provided at several locations along the spray tube. The adsorbent is sprayed from a plurality of upper spray nozzles in a state where the rotary drum is rotated around a horizontal rotation axis.
[0005]
[Problems to be solved by the invention]
In the former adsorbent spraying device and method, in order to spray the adsorbent to the entire mop, the mop at the center in the direction of the rotational axis is the adsorbent, although the spray nozzles are provided at both ends of the rotational axis. The amount of impregnation becomes insufficient. That is, the cost of parts increases and it is difficult to uniformly impregnate all mops.
[0006]
In the latter adsorbent spraying device, a stationary spray tube must be installed in the rotating drum, which is costly and requires a piping space in the rotating drum. Capacity is limited.
[0007]
OBJECT OF THE INVENTION
An object of the present invention is to provide an adsorbent spraying apparatus and an adsorbent spraying method capable of impregnating the entire mop in a rotating drum uniformly and quickly with an adsorbent even with a single spray nozzle. That is.
[0008]
[Means for Solving the Problems]
In order to solve the above problems, the invention according to claim 1 of the present application is to dry a dust control product, and then rotate the rotary drum with the rotation axis tilted in a state where a large number of dust control products are stored in the rotary drum. The rotating drum core is located on the upper end of the rotating drum in the direction of the axis of rotation and is located above the upper end of the axis of rotation O and in the direction of rotation more than the vertical line V passing through the axis of rotation O. The adsorbent spraying method is characterized in that the adsorbent is sprayed obliquely downward into the rotary drum by the adsorbent spray nozzle from a position deviated in the range of 90 degrees to the side .
[0011]
DETAILED DESCRIPTION OF THE INVENTION
[Structure of adsorbent spraying device]
The apparatus shown in FIGS. 1-3 is the example which comprised the adsorbent spraying apparatus concerning this invention by attaching an adsorbent spraying nozzle to a rotary drum dryer. FIG. 2 is a longitudinal side view (II-II cross-sectional view of FIG. 1), in which a cylindrical rotating drum 3 is built in a horizontal state in a box-shaped casing 2, and drum rotation of the casing 2 is performed. An up-and-down slide type insertion lid 4 is provided on one end side in the axial direction, that is, on the front side, so as to be opened and closed, and a rotary discharge lid 5 is provided on the other side rear side so as to be rotatable upward.
[0012]
The casing 2 is placed on the base 1, but the lower end of the back surface is rotatably supported by a hinge mechanism 7, and the front surface is supported by a pneumatic (or hydraulic) cylinder 6 so as to be movable up and down. By extending, the front side is inclined. Along with this, the rotational axis O of the rotating drum 3 in the casing 2 is also inclined so that the front side becomes higher.
[0013]
One adsorbent spray nozzle 10 is attached to the front-side charging lid 4, the height of which is set higher than the rotational axis O, and is directed obliquely downward into the rotary drum 3, and has a certain conical spray range. In this way, the adsorbent is atomized and injected. A flexible hose 11 is connected to the adsorbent spray nozzle 10 so as to follow the raising and lowering of the charging door 4, and the hose 11 is connected to the adsorbent injection pump 12. It is connected to the tank 13. As the adsorbent, mineral oil based lubricating oil, synthetic resin based lubricating oil or the like is used.
[0014]
FIG. 1 is a front view, and the rotary drum 3 is rotatably held around a rotation axis O by a pair of left and right drive rollers 8 disposed on the lower side and a pair of left and right holding rollers 9 disposed on the upper side. The drive roller 8 is linked to a drive motor via a power transmission mechanism (not shown), and the rotary drum rotates in the direction of arrow R by the rotation of the drive roller 8.
[0015]
The spray nozzle 10 is disposed at a position above the rotation axis O as described above, and is disposed at a position biased to the front side in the drum rotation direction R. In other words, within the circumferential range of the rotating drum 3, the first quadrant (of FIG. 2) out of the four quadrants S1, S2, S3, S4 divided by the horizontal line H and the vertical line V passing through the rotation axis O. Upper right quadrant) is located in S1.
[0016]
FIG. 3 is a cross-sectional view taken along the line III-III in FIG. 2, and a plurality of blades 15 that stir the internal mop M during rotation are formed on the inner peripheral surface of the rotating drum 3 at equal intervals in the circumferential direction. ing.
[0017]
[Adsorbent spraying method]
(1) Drying process As described above, the adsorbent spraying apparatus of the embodiment also serves as a dryer. In FIG. 2, the casing 2 is inclined and the charging lid 4 is opened, and the washed mop M is removed. The mop M is put into the rotating drum 3, the closing lid 4 is closed, the casing 2 is returned to the horizontal state, and the mop M is dried by hot air or the like while the rotating drum 3 is rotated in the horizontal state.
[0018]
(2) After completion of the spraying process, the pneumatic cylinder 6 is extended to incline the rotating drum 3 together with the casing 2, and the rotating drum 3 is rotated in the inclined state. Spray the adsorbent toward the mop M.
[0019]
In this spraying step, the front side of the rotary drum 3 is inclined so as to be higher, so that the mop M is in a state of being shifted to the back side as shown in FIG. On the other hand, since the spray nozzle 10 is arranged on the high front side and is arranged at a position higher than the rotation axis O, it is possible to ensure a long reach of the adsorbent, and therefore, one spray nozzle 10 is provided. Even if it is the structure which sprays an adsorbent from, it can spray an adsorbent all over the full width of a rotating shaft core direction.
[0020]
In FIG. 3, the rotating drum 3 rotates at a constant rotation speed in the direction of arrow R, so that the mop M in the drum is within the rotating drum 3 in the third quadrant S3 as indicated by the arrow B. After being lifted along the circumferential surface and further lifted into the second quadrant S2, it is discharged into the first quadrant S1 or the fourth quadrant S4 so as to cross the space in the rotary drum 3 obliquely downward. Since the adsorbent is sprayed in a conical shape from the high position on the first quadrant S1 side toward the rotational axis side with respect to the mop M that moves in the rotary drum 3 along such a trajectory, one spray nozzle 10 is provided. While being used, the adsorbent can be sprayed uniformly and uniformly over the entire radial width of the rotary drum 3.
[0021]
(3) Discharge process After impregnation with the adsorbent, the discharge door 5 is opened in an inclined posture, and the adsorbed soaked mop M is discharged from the discharge port on the back side.
[0022]
If the adsorbent is sprayed after drying as in the present embodiment, there are the following advantages.
(A) Compared to the case where the adsorbent is sprayed after washing in the rotary drum type washing machine, the adsorbent is sprayed on the mop with high sound, the adsorbent impregnation speed is high, and the impregnation effect between the mops is also improved. , Can prevent the stickiness of the surface. Moreover, it is possible to prevent the loss of adsorbent outflow that may occur during the washing process, and to reduce the burden of wastewater treatment in the washing process.
[0023]
(B) Since it is dried before the adsorbent is sprayed, the adsorbent is not evaporated and exhausted during the drying process. Therefore, the adsorbent adheres in the exhaust duct or the odor is generated by heating the adsorbent. There is nothing.
[0024]
(C) Since washing and drying are performed before the adsorbent is sprayed, washing time and drying time can be shortened.
[0025]
(D) Since the mop after drying has a high temperature, the drying heat source (steam) is stopped and the cooling step is provided, but the effect of promoting the cooling can also be obtained by spraying the adsorbent.
[0026]
[Other Embodiments]
(1) In the above-described embodiment, the adsorbent spraying device is configured using a rotary drum type dryer, but the adsorbent spraying device can also be configured using a rotary drum type washing machine. It is.
[0027]
【The invention's effect】
As described above, according to the present invention, (1) by tilting the rotating shaft core of the rotating drum, the mop and the like are shifted to the lower side, and the nozzle is sprayed downward from the higher side into the rotating drum. Since the adsorbent is sprayed, even when the adsorbent is sprayed from one spray nozzle, the adsorbent can be sprayed almost uniformly over the entire width in the rotation axis direction. Moreover, since the spray is applied from a position deviated toward the front side in the drum rotation direction, the adsorbent is sprayed uniformly over the entire width in the drum radial direction to the mop moving with the rotation of the rotary drum. Can do. That is, even with spray from one spray nozzle, the adsorbent can be sprayed substantially uniformly on all mops in the rotating drum.
[0028]
(2) When the adsorbent is sprayed after the dust control product is dried, the adsorbent is sprayed on a high-pitched mop, the adsorbent impregnation speed is fast, the impregnation effect between the mops is improved, and the surface is sticky Can be prevented. Moreover, it is possible to prevent the loss of adsorbent outflow that may occur during the washing process, and to reduce the burden of wastewater treatment in the washing process.
[0029]
(3) If dried before spraying the adsorbent, the adsorbent is not evaporated and exhausted during the drying process, and adsorbent adheres to the exhaust duct, or odor is generated by heating the adsorbent during drying. I don't have to. Furthermore, when washing and drying are performed before the adsorbent is sprayed, washing time and drying time can be shortened.
[0030]
(4) Since the mop after drying has a high temperature, the drying heat source (steam) is stopped and the cooling step is provided, but the effect of promoting the cooling can also be obtained by spraying the adsorbent.
[Brief description of the drawings]
FIG. 1 is a front view of an adsorbent spraying apparatus to which the present invention is applied.
2 is a cross-sectional view taken along the line II-II in FIG.
3 is a cross-sectional view taken along the line III-III in FIG.
[Explanation of symbols]
2 Casing 3 Rotating drum 10 Adsorbent spray nozzle

Claims (1)

ダストコントロール製品を乾燥し、その後、
ダストコントロール製品を回転ドラム内に多数収納した状態で、回転ドラムを回転軸芯が傾斜した状態で回転させ、
回転軸芯方向の高位側の回転ドラム端部であって、回転軸芯Oの高位側の端部よりも上方位置で、かつ、回転軸芯Oを通る垂直線Vよりも回転方向の前方側へ角度90度の範囲内で偏倚した位置から、吸着剤吹付ノズルにより、回転ドラム内に向けて斜め下方に吸着剤を噴霧することを特徴とする吸着剤吹付方法。
Dry the dust control product, then
With a large number of dust control products stored in the rotating drum, rotate the rotating drum with the axis of rotation tilted,
A rotating drum end on the higher side in the direction of the rotation axis, which is above the higher end of the rotation axis O and on the front side in the rotation direction with respect to the vertical line V passing through the rotation axis O An adsorbent spraying method characterized in that the adsorbent is sprayed obliquely downward into the rotary drum from an offset position within a range of 90 degrees to the inside of the rotary drum .
JP2002098485A 2002-04-01 2002-04-01 Adsorbent spraying method Expired - Lifetime JP4143321B2 (en)

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Cited By (3)

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US9121125B2 (en) 2009-11-02 2015-09-01 Lg Electronics Inc. Method for washing and washing machine
CN105413920A (en) * 2016-01-15 2016-03-23 浙江百得利制革有限公司 Spinning nozzle and leather spraying machine provided with spinning nozzle
US9506178B2 (en) 2009-12-23 2016-11-29 Lg Electronics Inc. Washing method and washing machine

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Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5329836Y2 (en) * 1974-11-20 1978-07-25
JPS6029124A (en) * 1983-07-26 1985-02-14 ダスキンフランチヤイズ株式会社 Dust control product producing machine
JPH0388479U (en) * 1989-12-20 1991-09-10
AU2001225542B2 (en) * 2000-04-19 2005-07-14 Sanyo Electric Co., Ltd Drum type washing machine and its control method

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US9121125B2 (en) 2009-11-02 2015-09-01 Lg Electronics Inc. Method for washing and washing machine
US9506178B2 (en) 2009-12-23 2016-11-29 Lg Electronics Inc. Washing method and washing machine
US9732457B2 (en) 2009-12-23 2017-08-15 Lg Electronics Inc. Washing method and washing machine
CN105413920A (en) * 2016-01-15 2016-03-23 浙江百得利制革有限公司 Spinning nozzle and leather spraying machine provided with spinning nozzle
CN105413920B (en) * 2016-01-15 2017-07-14 浙江百得利制革有限公司 Rotary nozzle and the Leather Sprayer for being provided with the rotary nozzle

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