WO2010089926A1 - Sèches-mains - Google Patents

Sèches-mains Download PDF

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Publication number
WO2010089926A1
WO2010089926A1 PCT/JP2009/069243 JP2009069243W WO2010089926A1 WO 2010089926 A1 WO2010089926 A1 WO 2010089926A1 JP 2009069243 W JP2009069243 W JP 2009069243W WO 2010089926 A1 WO2010089926 A1 WO 2010089926A1
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WO
WIPO (PCT)
Prior art keywords
hand
air
intake port
intake
exhaust duct
Prior art date
Application number
PCT/JP2009/069243
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English (en)
Japanese (ja)
Inventor
彦弥 石井
Original Assignee
シャープ株式会社
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 シャープ株式会社 filed Critical シャープ株式会社
Publication of WO2010089926A1 publication Critical patent/WO2010089926A1/fr

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47KSANITARY EQUIPMENT NOT OTHERWISE PROVIDED FOR; TOILET ACCESSORIES
    • A47K10/00Body-drying implements; Toilet paper; Holders therefor
    • A47K10/48Drying by means of hot air

Definitions

  • the present invention relates to a hand drying apparatus that blows air to dry after hand washing.
  • a hand drying device that blows a hand with a high-pressure air stream to dry the hand is used.
  • a heater is attached so that a high-temperature high-pressure air stream is blown onto a wet hand.
  • the hand dryer for drying wet hands is as compact as possible. Moreover, even if there is a single blow nozzle for drying hands, the drying time can be shortened by rubbing both hands. However, if there are two upper and lower outlet nozzles, drying can be further promoted.
  • an object of the present invention is to provide a hand-drying device that can prevent high-pressure air leaks and water droplets from popping out and can shorten the drying time even in a compact type.
  • the present invention includes a hand insertion portion having a size capable of storing a hand, an intake port, an intake duct, a high-pressure air generation unit, an exhaust duct, and a blowout nozzle, and is inserted into the hand insertion portion.
  • a hand drying device for blowing high pressure air to a hand, wherein blow nozzles are provided above and below the hand insertion portion, an upper exhaust duct communicating from the high pressure air generation portion to the upper blow nozzle, and from the high pressure air generation portion
  • a lower exhaust duct communicating with the lower blow nozzle is provided, and the first intake port for sucking the air outside the apparatus as the intake port, and the second intake air that is provided inside the manual insertion portion and sucks the air in the manual insertion portion
  • the intake duct includes an intake passage communicating with the first intake port and the second intake port, and a switching damper is provided in the intake passage, and the switching damper is switched to change the intake air. Daku Is characterized in configuration and was able to communicate with either one of said first inlet and said second inlet to.
  • the present invention is characterized in that, in the hand drying device configured as described above, the second air inlet is an elongated linear air inlet provided in a wall surface facing the fingertip direction of the hand to be inserted in the hand insertion portion.
  • the second intake port since the second intake port communicates with the intake duct connected to the high-pressure air generating unit, this linear intake port exhibits the suction force equivalent to the suction port of the vacuum cleaner and blows out to the manual insertion unit. High pressure air and water droplets scattered from the hand can be sucked.
  • the present invention is characterized in that in the hand dryer having the above-described configuration, a drain separator is provided between the second air inlet and the switching damper. According to this configuration, even if water droplets are sucked from the second air inlet, water and air can be separated by the drain separator, and only air can flow into the air intake duct, and air that does not contain moisture is used as high-pressure air for drying. Can be used.
  • the position of the switching damper is blocked from the first air inlet and sucks air from the second air inlet.
  • the switching damper is switched after a lapse of a predetermined time to cut off the air flow from the second air inlet and suck the air from the first air inlet.
  • a humidity sensor is provided in the vicinity of the drain separator, and when the humidity detected by the humidity sensor is equal to or lower than a predetermined humidity, the switching damper is switched so that the first suction port It is characterized by inhaling air.
  • the humidity sensor can be used to detect the time when water droplets do not scatter and switch the damper quickly, thereby shortening the drying time.
  • a lower tray and a drainage tank are provided below the manual insertion portion, and a lower tray exhaust duct communicating with the lower exhaust duct and the lower outlet nozzle are formed on the lower tray.
  • a drainage hole communicating with the drainage tank is formed.
  • the present invention is characterized in that, in the hand-drying device having the above-described configuration, a drain recovery port for guiding the water separated by the drain separator to the drainage tank is provided, and the drainage tank is made detachable from the apparatus main body. According to this configuration, when water accumulates in the drainage tank, the accumulated water can be discarded by removing the drainage tank.
  • the present invention is characterized in that, in the hand dryer having the above-described configuration, the lower exhaust duct and the lower tray exhaust duct can be brought into contact with and separated from each other, and the lower tray can be detached from the apparatus main body. According to this configuration, since the lower tray can be removed from the apparatus main body and cleaned, a hand-drying apparatus with easy maintenance can be obtained.
  • the present invention is characterized in that, in the hand-drying apparatus having the above-described configuration, the receiving surface of the lower tray has a shape that becomes a downward slope from the peripheral edge toward the drain hole. According to this structure, the water droplet which fell to the lower tray can be stored in the drainage tank.
  • the present invention is characterized in that, in the hand-drying apparatus having the above-described configuration, the lower tray is made of an antibacterial treated resin blow molded product. According to this configuration, when a wet hand is dried, the hand can be dried cleanly without being contaminated.
  • the present invention is characterized in that the lower tray is subjected to a water-repellent treatment in the hand dryer having the above-described configuration. According to this structure, it becomes a duct which does not become dirty easily, and can maintain the state which can perform clean drying.
  • the present invention is characterized in that, in the hand drying device having the above-described configuration, the blowing direction of the upper and lower blowing nozzles is directed toward the center back direction of the hand insertion portion. According to this configuration, since the blow-out from the front opening of the hand insertion portion does not occur, high-pressure air blown from the blow-out nozzle and water droplets scattered from the hand can be effectively guided to the back side second intake port.
  • the blow nozzles are respectively provided above and below the manual insertion portion, and the upper exhaust duct that communicates from the high-pressure air generator to the upper blow nozzle and the lower exhaust duct that communicates from the high-pressure air generator to the lower blow nozzle are provided.
  • the first intake port for sucking the air outside the apparatus and the second intake port provided inside the manual insertion portion for sucking the air in the manual insertion portion are provided as the intake ports, and the intake duct is provided with the first intake port.
  • An intake passage that communicates with the inlet and the second intake port, and a switching damper is provided in the intake passage, and the switching damper is switched to either the first intake port or the second intake port.
  • the hand drying device is configured to communicate with one side, when the hands are wet, the water droplets that scatter are sucked in at the second air intake port and dried, and when it dries to some extent and the water droplets are no longer a concern, Dried while inhaling air, prevented from jumping out of the leakage and water droplets of the high pressure air can be obtain a hand dryer capable to shorten the drying time.
  • FIG. 4 is a cross-sectional view of the hand-drying apparatus according to the present invention corresponding to the AA and BB directions of FIG. 3, wherein (a) shows the AA cross section and (b) shows the BB cross section.
  • the hand drying device 1 includes a hand insertion portion 10 provided at a substantially central portion of the front surface of the device main body, an intake port, an intake duct 3, a high-pressure air generation unit 2, an exhaust duct 4, and a blowout.
  • the apparatus includes a nozzle N (N1, N2) and blows high-pressure air on the wet hand HA inserted into the hand insertion unit 10 to dry it.
  • the blowout nozzle N an upper blowout nozzle N1 and a lower blowout nozzle N2 are provided, and high-pressure air is simultaneously blown onto both the front and back surfaces of the hand HA inserted into the hand insertion portion 10 to be dried.
  • drying capacity can be further improved by providing a heater 21 on the outlet side of the high-pressure air generator 2 to heat the high-pressure air that is blown out and send out high-temperature and high-pressure air.
  • the upper blowing nozzle N1 communicates with the high-pressure air generating unit 2 through the exhaust duct 4 and the upper exhaust duct 5, and the lower blowing nozzle N2 communicates with the high-pressure air generating unit 2 through the exhaust duct 4 and the lower exhaust duct 6. is doing.
  • the lower blowing nozzle N ⁇ b> 2 is integrally formed with the lower tray 7 provided at the lower portion of the manual insertion portion 10.
  • the lower tray 7 has a hollow interior, and the high-pressure air sent from the high-pressure air generator 2 is discharged from the lower blow nozzle N2 using the hollow interior 71 as an exhaust duct connected to the lower exhaust duct 6. To make up.
  • the high-pressure air sent out through the lower exhaust duct 6 communicates with the hollow interior 71 of the lower tray 7 and is blown out from the lower blowing nozzle N2.
  • the high-pressure air sent from the high-pressure air generator 2 is diverted from the exhaust duct 4 to the upper exhaust duct 5 and the lower exhaust duct 6 and is simultaneously blown out from both the upper blowing nozzle N1 and the lower blowing nozzle N2. It is configured.
  • a drain tank 8 is provided at the lower portion of the lower tray 7, and a drain hole 73 communicating with the drain tank 8 is formed at a predetermined position of the lower tray 7.
  • the drainage tank 8 is a tank for collecting water drops falling on the lower tray 7 and water drops blown off by high-pressure air.
  • the receiving surface 72 of the lower tray 7 is configured to have a downward slope from its peripheral edge toward the drain hole 73, and all the water drops that have fallen on the lower tray 7 are stored in the drain tank 8.
  • the lower tray 7 provided under the manual insertion portion 10 can be used as a lower exhaust duct and a water recovery tray.
  • a first intake port 18 for sucking air outside the apparatus and a second intake port 11 for sucking air in the manual insertion portion 10 are provided, and the intake duct 3 is connected to the first intake port 18.
  • an intake passage 13 communicating with the second intake port 11 a switching damper 17 is provided in the intake passage 13, and the switching damper 17 is switched to connect the first intake port 18 to the intake duct 3. Any one of the second intake ports 11 is configured to communicate.
  • the switching damper 17 is configured to be swingable via the swing fulcrum 17a so that the first intake port 18 is opened and closed, thereby closing the first intake port 18 shown in FIG. It swings to a position where the two intake ports 11 are communicated with the intake duct 3 and a position where the first intake port 18 shown in FIG. 1B is opened to communicate with the intake duct 3 and the second intake port 11 is closed. Can be controlled.
  • a drain recovery port 16 is provided in the lower part of the drain separator 14, and air and water are separated and separated when air sucked from the second air intake port 11 collides with the drain separator 14. Water falls into the drain tank 8.
  • An inclined plate 19 is provided on the side of the apparatus in order to guide water drops falling from the drain separator 14 to the drain tank 8.
  • Numeral 15 is a humidity sensor, which can detect the humidity of the air that is sucked from the second air inlet 11 and sent into the air intake duct 3 through the air in the manual insertion portion 10. Further, the humidity sensor 15 is provided in the vicinity of the drain separator 14, and it is possible to determine whether or not the air sucked from the second air inlet 11 contains a large amount of moisture based on information obtained from the humidity sensor. It becomes. For this purpose, when the humidity detected by the humidity sensor 15 becomes equal to or lower than the predetermined humidity, it is determined that most of the water droplets of the hand HA have been blown off, and the switching damper 17 is switched to control the atmosphere outside the apparatus from the first air inlet 18. Inhalation can further promote drying.
  • the switching damper 17 is swung in the direction of the arrow D1 in the figure with the rocking fulcrum 17a as the center of rotation to close the second intake port 11, and the first intake port 18 is opened.
  • the air sent into the high-pressure air generator 2 is the atmosphere outside the apparatus that is sucked from the first intake port 18. Therefore, it is suitable as high-pressure air for drying hands by sending relatively dry air with low humidity.
  • the high pressure air generation unit 2 is activated via a control device (not shown).
  • a control device not shown.
  • high pressure air is blown onto a wet hand, water droplets scatter around the surface of the hand HA.
  • high-pressure air containing water droplets or moisture may blow out in the side surface direction of the device, which may contaminate a person beside the device or an object on the side. Occurs.
  • the second intake port 11 for sucking the air in the manual insertion portion 10 is provided as in the present embodiment, when the high pressure air generating unit 2 is driven, A strong suction force is generated, and the air in the hand insertion portion 10 can be strongly sucked. Therefore, when high-pressure air is simultaneously blown from both the upper blow-out nozzle N1 and the lower blow-off nozzle N2 to dry the hand HA, the blown high-pressure air and splashed water droplets are sucked from the second intake port 11, It is possible to prevent scattering around.
  • the switching damper 17 can be swung to open the first air inlet 18 to accelerate drying using the atmosphere outside the apparatus as drying air. That is, as the manual drying process, a two-stage process including a water droplet blowing process for a predetermined time at the start of drying and a subsequent drying process can be set in advance.
  • the switching damper 17 may be driven after detecting that the detected humidity is equal to or lower than the predetermined humidity and the hand HA has dried using the humidity sensor 15 described above instead of after the predetermined time has elapsed. It is possible, and the water droplet blowing process and the drying process can be automatically controlled as a series of processes.
  • the hand detection sensor 6 When the hand is extracted from the hand insertion unit 10 after the hand is dried, the hand detection sensor 6 does not detect the hand HA, so the high-pressure air generation unit 2 is stopped via the control device. Further, if the control is performed to swing the switching damper 17 at the start of driving of the high-pressure air generation unit 2 so that the second intake port 11 communicates with the intake duct 3, regardless of the position of the switching damper 17, When the hand is pulled out from the manual insertion part 10, the high-pressure air generation part 2 can be stopped.
  • both hands are horizontally aligned and inserted into the hand insertion portion 10 to dry. Therefore, the high pressure air blown from the upper blowout nozzle N1 and collides with the hand and flows from the lower blowout nozzle N2.
  • the second air inlet 11 in the direction of the fingertip of the inserted hand HA.
  • the shape of the 2nd inlet 11 is an elongate linear inlet provided in the wall surface facing the fingertip direction of both hands.
  • the linear intake port connected to the intake duct 3 connected to the high-pressure air generating unit 2 exhibits the same suction force as the suction port of the vacuum cleaner. Therefore, high-pressure air blown to the hand insertion unit 10 and water droplets scattered from the hand can be efficiently sucked.
  • the second intake port 11 is an elongated linear intake port as shown in FIG.
  • a wide end suction part 11a and a narrow central suction part 11b are provided, and suction in the central part is performed.
  • the elongated second intake port 11A having a high flow rate can also be used.
  • the shape and size are preferably capable of sucking high-pressure air blown from the blow-out nozzle and water droplets scattered from both hands arranged horizontally.
  • blowing nozzles N As the blowing nozzles N provided above and below the manual insertion portion 10, as shown in the front view of FIG. 2A, an upper blowing nozzle N1 provided on the manual insertion portion 10 and a lower blowing nozzle N2 provided below are provided. .
  • These blowing nozzles N are preferably capable of blowing high-pressure air over the entire width of both hands inserted side by side.
  • each nozzle is a single long and narrow nozzle or a long and narrow nozzle provided with many small-diameter nozzles.
  • a pair of left and right upper blowing nozzles N1a and N1b toward the center back direction side of the hand insertion portion 10 and a pair of left and right bottoms similarly toward the center back direction side of the hand insertion portion 10 are also shown. It can be set as the blowing nozzles N2a and N2b. With this configuration, high-pressure air is blown toward the center of the back of the hand insertion portion 10, so high-pressure air blown from the respective blowing nozzles and water droplets scattered from the hand are formed on the back side of the hand insertion portion 10. Therefore, it is possible to guide the second intake port more effectively.
  • the drainage tank 8 is conventionally detachable from the apparatus main body.
  • the lower tray 7 is also detachable from the apparatus main body.
  • an exhaust duct that is connected to the lower exhaust duct 6 and is detachable is provided on the lower tray 7 side to form a vertically divided lower exhaust duct, and the divided butted portions are connected in an airtight manner. That's fine.
  • the lower tray side exhaust duct and the divided lower exhaust duct 6 can be hermetically joined via a seal member such as seal packing. Further, it is possible to connect airtightly by covering the joint portion with a rubber band in place of the seal member, and as shown in the drawing, the pipe-like shape connected to the lower tray 7 is connected to the lower exhaust duct 6 formed into a pipe shape.
  • a lower tray exhaust duct 6 ⁇ / b> A may be provided, and the lower tray exhaust duct 6 ⁇ / b> A and the lower exhaust duct 6 may be fixed by a rubber band 20. With this configuration, the rubber band 20 can be shifted either up or down to release the connection between the lower exhaust duct 6 and the lower tray exhaust duct 6A, and the lower tray 7 can be pulled out from the apparatus main body.
  • the lower tray 7 When the lower tray 7 is mounted on the apparatus main body, for example, the lower tray 7 is pushed in and placed at a predetermined position so as to engage an engaging convex part provided on the tray side and an engaging concave part provided on the apparatus main body side. To do. Further, by this pushing operation, the lower tray exhaust duct 6A can be pressed against the seal member attached to the lower exhaust duct 6 and can be connected in an airtight manner. Further, in the case of the rubber band type, the lower tray 7 is pushed to a position where the lower tray exhaust duct 6A and the lower exhaust duct 6 are connected, and the joint portion of the duct is covered with the rubber band 20 and connected in an airtight manner. Can do.
  • the lower tray exhaust duct 6A and the lower exhaust duct 6 can be contacted and separated so that the lower tray 7 can be detached from the apparatus main body, so that the lower tray 7 is removed from the apparatus main body and cleaned when it becomes dirty. And a hand-drying device that is easy to maintain.
  • the lower tray 7 can be a molded product that integrally includes a lower outlet nozzle N2, a lower tray exhaust duct 6A, a receiving surface 72, and a drain hole 73. Moreover, it is preferable to set it as the antibacterial-treated resin blow molded article from a hygienic viewpoint.
  • the lower tray 7 is an antibacterial treated resin blow-molded product, bacteria will not grow even if moisture adheres to the lower tray 7, so that water and circulating air will not be contaminated with bacteria, and wet hands When it is dried, it can be dried cleanly without contaminating the hands.
  • the lower tray 7 made of a resin molded product can be subjected to water repellent treatment. If it is this structure, it will become a surface which does not get dirty easily, it becomes possible to maintain the tray surface in a clean state, and the state which can perform clean drying can be maintained.
  • the exhaust duct 4, the upper exhaust duct 5, the lower exhaust duct 6 and the like can also be formed as a resin molded product, these are also formed as an antibacterial treated resin blow molded product, and the surface thereof is further subjected to water repellent treatment. Therefore, it is possible to obtain a hand-drying device that suppresses the growth of bacteria and can maintain a clean state that is difficult to get dirty.
  • FIG. 4A is a cross-sectional view of the hand dryer 1 corresponding to the direction AA in FIG. 3
  • FIG. 4B is a cross-sectional view of the hand dryer 1 corresponding to the direction BB.
  • the lower exhaust duct 6 that guides the high-pressure air sent from the high-pressure air generator 2 to the hollow interior 71 of the lower tray 7 may be provided so as to penetrate the upper and lower corners of the apparatus. It is set as the structure provided in the position connected with 6 A of lower tray exhaust ducts provided in this. At this position, as shown in FIG. 4A, the second intake port 11, the first intake port 18, and the switching damper 17 are not provided.
  • the second intake port 11 is formed closer to the center of the apparatus, and is provided in the central portion where the lower exhaust duct 6 is not provided as shown in FIG. Further, a first intake port 18 and a switching damper 17 are provided on the rear side of the apparatus corresponding to the position where the second intake port 11 is disposed. Further, as is apparent from the drawing, the hollow interior 71 of the lower tray 7 is formed so as to surround the drain hole 73.
  • the switching damper 17 is driven to close the intake flow path 13 to stop the intake from the second intake port 11 and the first intake By opening the mouth 18 and using the dry atmosphere outside the apparatus to complete the drying, the hand can be efficiently dried.
  • the hand drying device 1 having the above-described configuration, it is possible to quickly dry using the upper and lower two blowing nozzles N1 and N2, and the high pressure air is generated by sucking the air in the manual insertion portion 10.
  • the high-pressure air blown out to the unit 10 and water droplets scattered from the hand do not leak outside the device, and even if it is a compact type, it can prevent leakage of high-pressure air and water droplets and reduce the drying time. It becomes a device.
  • a first intake port for sucking air outside the apparatus and a second intake port for sucking air in the manual insertion portion are provided, and either one of the intake ports is closed via the switching damper, Since the other intake port is opened, when the hand is wet, the air inside the hand insertion part is circulated through the second intake port and dried so as not to blow out water droplets. Drying can be promoted by spraying with the air outside the apparatus at the stage where the drying has been performed. Furthermore, the drying time can be further shortened by rubbing both hands in the hand insertion portion.
  • the dirty lower tray can be removed from the main unit, and the receiving surface and the hollow interior forming the exhaust duct can be cleaned, making maintenance easy and clean. It becomes a hand dryer capable of maintaining
  • the blowing nozzles are provided above and below the manual insertion portion, respectively, and the upper exhaust duct that communicates from the high-pressure air generating unit to the upper blowing nozzle, and the high-pressure air generating unit communicates with the lower blowing nozzle.
  • a lower exhaust duct is provided, and a first intake port for sucking air outside the apparatus and a second intake port for sucking air inside the manual insertion portion are provided as intake ports, and the intake duct is connected to the first intake port and the second intake port.
  • An intake passage communicating with the intake port is provided, a switching damper is provided in the intake passage, and the switching damper is switched to communicate either the first intake port or the second intake port with the intake duct.
  • the hand dryer is configured so that when the hands are wet, the water droplets that scatter are sucked in at the second air intake port and dried, and when the water drops to a certain extent and the water droplets are no longer concerned, the air is sucked in from the first air intake port. While drying, prevents protrusion of leakage or water droplets of the high pressure air, it is possible to shorten the drying time becomes hand dryer possible. Therefore, even if it is a compact type, it is possible to obtain a hand-drying apparatus that can prevent leakage of high-pressure air and water droplets and shorten the drying time.
  • the hand-drying device suppresses the jumping out of high-pressure air and water droplets containing moisture when drying wet hands, maintains a clean state, and facilitates maintenance. It can be suitably used for a hand-drying apparatus.

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  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

L'invention concerne un sèche-mains qui sèche les mains après lavage par soufflage de flux d'air. Afin d'obtenir un sèche-mains qui peut empêcher la fuite d'air haute pression et la diffusion de gouttes d'eaux et réduire le temps de séchage, en dépit de présenter une taille compacte, le sèche-mains (1) présente des buses d'évacuation respectivement au-dessus et au-dessous d'une zone d'insertion des mains (10), un conduit de sortie d'air supérieur (5), qui s'étend depuis un générateur d'air haute pression (2) jusqu'à la buse d'évacuation supérieure (N1), un conduit de sortie d'air inférieur (6), qui s'étend depuis le générateur d'air haute pression jusqu'à la buse d'évacuation inférieure (N2), et comme orifices d'entrée d'air un premier orifice d'entrée d'air (18), qui aspire l'air atmosphérique depuis l'extérieur du dispositif, et un second orifice d'entrée d'air (11), qui aspire l'air à l'intérieur de la zone d'insertion des mains (10), un conduit d'entrée d'air (3) étant équipé d'un chemin d'entrée d'air (13) qui relie le premier orifice d'entrée d'air (18) et le second orifice d'entrée d'air (11), et un volet de commutation (17) est disposé dans ledit chemin d'entrée d'air, et ledit volet de commutation (17) commute pour relier l'un ou l'autre des premier orifice d'entrée d'air (18) ou second orifice d'entrée d'air (11) vers le conduit d'entrée d'air (3) susmentionné.
PCT/JP2009/069243 2009-02-06 2009-11-12 Sèches-mains WO2010089926A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2009025690A JP4567792B2 (ja) 2009-02-06 2009-02-06 手乾燥装置
JP2009-025690 2009-02-06

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WO2010089926A1 true WO2010089926A1 (fr) 2010-08-12

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JP (1) JP4567792B2 (fr)
CN (1) CN201658303U (fr)
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EP3295852A1 (fr) * 2016-09-20 2018-03-21 The Boeing Company Sèche-mains présentant un écoulement d'air géré

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KR101343196B1 (ko) * 2009-07-16 2013-12-19 파나소닉 주식회사 손 건조 장치
CN102614076B (zh) * 2011-01-27 2014-04-16 佛山市顺德区盛熙电器制造有限公司 手脸蒸汽护理装置
CN202277293U (zh) * 2011-11-05 2012-06-20 浙江艾克电器有限公司 一种干手器的进出风装置
EP2861113B1 (fr) * 2012-06-14 2016-11-16 Dyson Technology Limited Agencement comprenant évier et sèche-mains
CN104684448B (zh) * 2012-09-27 2017-05-17 松下知识产权经营株式会社 手干燥装置
CN104771108B (zh) * 2015-04-20 2017-10-10 台州美龙亚电器有限公司 一种空气自循环干手器
KR101783760B1 (ko) * 2016-02-11 2017-10-10 충북대학교 산학협력단 유로를 구비한 전자타월
CN109717779A (zh) * 2018-12-26 2019-05-07 南京英维尔科技服务有限公司 一种智能出风烘手器
CN114601361A (zh) * 2022-01-18 2022-06-10 丁小红 智能风干装置

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06154125A (ja) * 1992-11-19 1994-06-03 Matsushita Electric Works Ltd 手乾燥器
JPH06304090A (ja) * 1993-04-23 1994-11-01 Matsushita Electric Works Ltd 手乾燥機
JPH08164087A (ja) * 1994-12-13 1996-06-25 Mitsubishi Electric Corp 手乾燥装置
JPH08196470A (ja) * 1995-01-23 1996-08-06 Mitsubishi Electric Corp 手乾燥装置
JPH1156673A (ja) * 1997-08-26 1999-03-02 Sakae Masumoto 手の乾燥装置
JPH11113794A (ja) * 1997-10-15 1999-04-27 Mitsubishi Electric Corp 手乾燥装置
JP2002153399A (ja) * 2000-11-22 2002-05-28 Mitsubishi Electric Corp 手乾燥装置
JP2002360464A (ja) * 2001-06-05 2002-12-17 Toto Ltd 手乾燥装置
JP2004313577A (ja) * 2003-04-18 2004-11-11 Mitsubishi Electric Corp 手乾燥装置

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06154125A (ja) * 1992-11-19 1994-06-03 Matsushita Electric Works Ltd 手乾燥器
JPH06304090A (ja) * 1993-04-23 1994-11-01 Matsushita Electric Works Ltd 手乾燥機
JPH08164087A (ja) * 1994-12-13 1996-06-25 Mitsubishi Electric Corp 手乾燥装置
JPH08196470A (ja) * 1995-01-23 1996-08-06 Mitsubishi Electric Corp 手乾燥装置
JPH1156673A (ja) * 1997-08-26 1999-03-02 Sakae Masumoto 手の乾燥装置
JPH11113794A (ja) * 1997-10-15 1999-04-27 Mitsubishi Electric Corp 手乾燥装置
JP2002153399A (ja) * 2000-11-22 2002-05-28 Mitsubishi Electric Corp 手乾燥装置
JP2002360464A (ja) * 2001-06-05 2002-12-17 Toto Ltd 手乾燥装置
JP2004313577A (ja) * 2003-04-18 2004-11-11 Mitsubishi Electric Corp 手乾燥装置

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* Cited by examiner, † Cited by third party
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EP3295852A1 (fr) * 2016-09-20 2018-03-21 The Boeing Company Sèche-mains présentant un écoulement d'air géré
JP2018047224A (ja) * 2016-09-20 2018-03-29 ザ・ボーイング・カンパニーThe Boeing Company 管理された空気流を有するハンドドライヤ
US10455992B2 (en) 2016-09-20 2019-10-29 The Boeing Company Hand dryer having managed air flow
EP3692878A1 (fr) * 2016-09-20 2020-08-12 The Boeing Company Sèche-mains présentant un écoulement d'air géré
US11129505B2 (en) 2016-09-20 2021-09-28 The Boeing Company Hand dryer having managed air flow

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