WO2018001220A1 - 洗干一体机 - Google Patents

洗干一体机 Download PDF

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Publication number
WO2018001220A1
WO2018001220A1 PCT/CN2017/090173 CN2017090173W WO2018001220A1 WO 2018001220 A1 WO2018001220 A1 WO 2018001220A1 CN 2017090173 W CN2017090173 W CN 2017090173W WO 2018001220 A1 WO2018001220 A1 WO 2018001220A1
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Prior art keywords
condenser
drying
drain
water
hot
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PCT/CN2017/090173
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English (en)
French (fr)
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王珊
迟宗锐
徐超
肖磊
栾厚利
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青岛海尔滚筒洗衣机有限公司
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Publication of WO2018001220A1 publication Critical patent/WO2018001220A1/zh

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/20General details of domestic laundry dryers 
    • D06F58/24Condensing arrangements

Definitions

  • the present disclosure relates to the field of washing and drying machine technology, for example, to a washing and drying machine.
  • the high-temperature steam in the inner cylinder exchanges heat with the humid air in the inner cylinder to form hot and humid air
  • the moist hot air enters the space between the inner cylinder and the outer cylinder and enters
  • the top-down condensed water in the condensing duct is in contact with the moist hot air from the bottom up, so that the moisture in the hot and humid air condenses and flows back to the space between the inner cylinder and the outer cylinder along with the condensed water, and then The condensed water is discharged through the drain pipe.
  • the condensed water When the condensed water is discharged in the above manner, when the condensed water is returned to the space between the inner cylinder and the outer cylinder, the condensed water absorbs the heat of the high-temperature steam for drying in the inner cylinder, and the drying time is prolonged. Reduced drying efficiency.
  • the invention relates to a washing and drying machine, which can solve the problem that the heat of the high-temperature steam used for drying in the inner cylinder is absorbed when the condensed water is returned between the inner and outer cylinders, thereby reducing the drying efficiency.
  • a washing and drying machine comprising an outer cylinder, an inner cylinder, a condenser, a water inlet device communicating with the water inlet of the outer cylinder, and a drainage device communicating with the water outlet of the outer cylinder, the condenser being provided There is a hot and humid air inlet connected to the outer cylinder, the first end of the condenser is in communication with the water inlet device, and the second end of the condenser is connected to the drainage device through the condensate drain pipe.
  • the washing and drying machine further comprises a drying heating device in communication with the outer cylinder, wherein the condenser is provided with a wet low temperature air outlet communicating with the drying heating device, the condenser A drying filter is arranged on the communication line between the wet low temperature air outlet and the drying heating device.
  • the upper end of the condenser is provided with a water inlet end
  • the lower end of the condenser is provided with a water outlet end
  • the water inlet end is connected with the water inlet device
  • the water outlet end passes through the condensed water discharge pipe and the drainage device.
  • the drain filter is connected.
  • the wet low temperature air outlet is located at one end of the condenser where the water inlet end is located, the humid hot air inlet is located at one end of the condenser where the water outlet end is located, and the humid hot air inlet is located at the water outlet end.
  • the humid hot air inlet is located at the water outlet end.
  • the drying heating device comprises a heater and a fan connected to the outer cylinder, and the heater heats the low temperature air formed by drying and filtering through the drying filter.
  • the washer-dryer further includes an ozone generator in communication with the drying heating device.
  • the drain device further includes a drain valve, the first end of the drain valve is connected to the outer tube by a pipe, and the second end of the drain valve is connected to the drain filter by a pipe.
  • a drain end is disposed on the condenser, and the drain end is communicated to the drain filter of the drain device through the condensate drain pipe.
  • the liquid water formed by the contact of the water vapor in the hot and humid air with the condensed water will not flow back into the accommodating space, but the liquid water and the condensed water will be filtered together through the drain of the drainage device through the condensed water discharge pipe.
  • the discharge of the device reduces the heat for drying in the inner cylinder due to the flow of the condensed water into the accommodating space, thereby saving energy and improving the drying efficiency.
  • Fig. 1 is a schematic view showing the structure of a washing and drying machine in an embodiment.
  • the embodiment provides a washing and drying machine.
  • the washing and drying machine includes an outer tube 1, an inner tube 7, a condenser 2, a water inlet device 3, and a drainage device 4, wherein
  • the outer cylinder 1 is sleeved on the outside of the inner cylinder 7, and an accommodation space 8 is disposed between the inner cylinder 7 and the outer cylinder 1, and the outer cylinder 1 is provided with a hot and humid air outlet 11 and a water inlet.
  • the condenser 2 is provided with a hot and humid air inlet 21, and the hot and humid air inlet 21 is connected to the hot and humid air outlet 11 on the outer cylinder 1 through a pipeline; optionally, the upper end of the condenser 2 is provided with a water inlet end 22 The lower end of the condenser 2 is provided with a water outlet end 23, and the water inlet end 22 is in communication with the water inlet device 3, the water outlet end 23 is communicated with the drain filter 41 of the drain 4 through the condensate drain pipe 5, which is located outside the outer cylinder 1.
  • the condensed water is injected into the condenser 2 through the water inlet device 3, and the moist hot air in the inner cylinder 7 passes through the accommodating space 8, the hot and humid air outlet 11, the pipe connecting the hot and humid air outlet 11 and the hot humid air inlet 21, and
  • the hot and humid air inlet 21 enters the condenser 2, the moist hot air moves from bottom to top in the condenser 2, and the condensed water moves from top to bottom in the condenser 2, and the water vapor in the moist hot air encounters the condensed water to become liquid, and then
  • the condensed water moves from top to bottom together and is discharged through the water discharge end 23, the condensate drain pipe 5, and the drain filter 41 of the drain device 4.
  • the liquid water formed by the contact of the water vapor in the hot and humid air with the condensed water is no longer returned into the accommodating space 8, but the liquid water is discharged together with the condensed water through the condensate drain pipe 5 through the drain filter 41 of the drain device 4,
  • the heat for drying in the inner cylinder 7 is absorbed due to the flow of the condensed water into the accommodating space 8, thereby saving energy and improving the drying efficiency.
  • the drain device 4 may further include a drain valve 42, the first end of the drain valve 42 is connected to the outer cylinder 1 through a pipe, the second end of the drain valve 42 is connected to the drain filter 41 through a pipe;
  • the condensed water is discharged through the drain filter 41 during the drying process.
  • the drain valve 42 is in an open state, and the waste water generated by the laundry is discharged through the drain valve 42 and the drain filter 41.
  • the hot and humid air inlet 21 is disposed at one end of the condenser 2 where the water outlet end 23 is disposed, and the hot and humid air inlet 21 is located above the water outlet end 23 . Since the hot and humid air inlet 21 is located above the water outlet end 23, the liquid water formed by the contact of the water vapor in the hot and humid air with the condensed water will move from top to bottom with the condensed water under the action of its own gravity, due to the drying process.
  • the drain valve 41 is always in an open state, and the condensed water does not flow back into the accommodating space 8, but is discharged through the cold water discharge pipe 5 and the drain filter 41 of the drain device 4.
  • the washing and drying machine of the embodiment is further provided with a drying heating device 6 communicating with the outer cylinder 1, the drying heating device 6 comprising a drying filter 61 connected by a pipeline in turn, and heating And a fan 63, the condenser 2 is provided with a wet low temperature air outlet 24 communicating with the drying filter 61 through a pipe, the wet low temperature air outlet 24 is located at one end of the condenser 2 provided with the water inlet end 22; The air outlet of the fan 63 is in communication with the outer cylinder 1.
  • a drying heating device 6 communicating with the outer cylinder 1
  • the drying heating device 6 comprising a drying filter 61 connected by a pipeline in turn, and heating And a fan 63
  • the condenser 2 is provided with a wet low temperature air outlet 24 communicating with the drying filter 61 through a pipe, the wet low temperature air outlet 24 is located at one end of the condenser 2 provided with the water inlet end 22;
  • the air outlet of the fan 63 is in communication with the outer
  • the water vapor in the hot and humid air encounters the condensed water to become a liquid, and the air in the hot and humid air becomes the wet low-temperature air, which moves from bottom to top along the condenser 2, and is dried.
  • the dry filter 61 is dried and filtered, and the heater 62 is heated to form high temperature air which is fed into the inner cylinder 7 by the blower 63.
  • the washing and drying machine further includes an ozone generator 9 connected to the drying heating device 6.
  • an ozone generator 9 connected to the drying heating device 6.
  • high temperature air is supplied into the inner cylinder 7 by the blower 63, and ozone is supplied into the inner cylinder 7 through the blower 63 to sterilize the laundry and prevent the laundry from breeding bacteria in a humid environment.
  • the drying process of the dryer integrated machine of this embodiment is as follows.
  • condensed water is supplied to the condenser 2 through the water inlet device 3, and the fan 63 sends the high-temperature air into the inner cylinder 7, and the high-temperature air dries the laundry in the inner cylinder 7, and the high-temperature air becomes hot and humid.
  • the air, the moist hot air in the inner cylinder 7 enters the accommodating space 8, the hot and humid air outlet 11, the pipe connecting the humidified hot air outlet 11 and the hot humid air inlet 21, and the hot humid air inlet 21 into the condenser 2.
  • the hot and humid air moves from bottom to top in the condenser 2, and the condensed water moves from top to bottom in the condenser 2, and the water vapor in the hot and humid air encounters the condensed water to become a liquid, and moves up and down together with the condensed water. And discharged through the drain end 23, the condensate drain pipe 5, and the drain filter 41 of the drain device 4.
  • the air in the hot and humid air encounters the condensed water to become wet low temperature air, and the wet low temperature air moves from bottom to top along the condenser 2, is dried and filtered by the drying filter 61, and the heater 62 is heated to form high temperature air.
  • the high temperature air will be fed into the inner cylinder 7 by the blower 63 for drying the laundry.
  • the washing and drying machine in the above embodiment reduces the heat for drying in the inner cylinder due to the flow of the condensed water into the accommodating space, saves energy, and improves the drying efficiency.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)

Abstract

一种洗干一体机,其中,该洗干一体机包括外筒(1),内筒(7),冷凝器(2),与外筒(1)的进水口连通的进水装置(3)和与外筒(1)的排水口连通的排水装置(4),冷凝器(2)上设有与所述外筒(1)连通的湿热空气进口(21),冷凝器(2)的第一端与进水装置(3)连通,冷凝器(2)的第二端通过冷凝水排放管(5)连通于排水装置(4)。

Description

洗干一体机 技术领域
本公开涉及洗干一体机技术领域,例如,涉及一种洗干一体机。
背景技术
相关技术中的洗干一体机在进行烘干工作时,内筒内的高温水蒸汽与内筒内的湿空气进行热交换形成湿热空气,湿热空气进入内筒和外筒之间的空间后进入冷凝管道中,冷凝管道中由上而下的冷凝水与由下而上的湿热空气接触,使得湿热空气中的水分凝结并随冷凝水一起回流到内筒和外筒之间的空间,随后随冷凝水经排水管排出。采用上述方式进行冷凝水的排放时,冷凝水在回流到内筒和外筒之间的空间时,冷凝水会吸收内筒内烘干用的高温水蒸汽的热量,延长了烘干时间长,降低了烘干效率。
发明内容
一种洗干一体机,可以解决冷凝水在回流到内外筒之间时吸收内筒内烘干用的高温水蒸汽的热量而导致降低烘干效率的问题。
一种洗干一体机,包括外筒,内筒,冷凝器,与所述外筒的进水口连通的进水装置和与所述外筒的排水口连通的排水装置,所述冷凝器上设有与所述外筒连通的湿热空气进口,所述冷凝器的第一端与进水装置连通,冷凝器的第二端通过冷凝水排放管连通于排水装置。
可选的,洗干一体机还包括与所述外筒连通的烘干加热装置,其中,所述冷凝器上设有与所述烘干加热装置连通的湿低温空气出口,所述冷凝器的湿低温空气出口与烘干加热装置的连通管路上设有烘干过滤器。
可选的,所述冷凝器的上端设有进水端,所述冷凝器的下端设有出水端,所述进水端与进水装置连通,所述出水端通过冷凝水排放管与排水装置的排水过滤器连通。
可选的,所述湿低温空气出口位于冷凝器设有进水端的一端,所述湿热空气进口位于冷凝器设有出水端的一端,且所述湿热空气进口位于所述出水端的 上方。
可选的,所述烘干加热装置包括加热器和与所述外筒连通的风机,所述加热器加热经烘干过滤器烘干过滤形成的低温空气。
可选的,所述洗干一体机还包括与烘干加热装置连通的臭氧发生器。
可选的,所述排水装置还包括排水阀,所述排水阀的第一端通过管道连接于外筒,排水阀的第二端通过管道连接于排水过滤器。
冷凝器上设置排水端,并将排水端通过冷凝水排放管连通于排水装置的排水过滤器。在干衣过程中,湿热空气中的水蒸气与冷凝水接触后形成的液态水将不再回流到容纳空间内,而是通过冷凝水排放管将液态水与冷凝水一起通过排水装置的排水过滤器排出,减少了由于冷凝水流到容纳空间内而吸收内筒内的用于烘干的热量,起到节能的作用,同时提高了烘干效率。
附图说明
图1是一实施例中洗干一体机的结构示意图。
图中:
外筒;11、湿热空气出口;2、冷凝器;21、湿热空气进口;22、进水端;23、出水端;24、湿低温空气出口;3、进水装置;4、排水装置;41、排水过滤器;42、排水阀;5、冷凝水排放管;6、烘干加热装置;61、烘干过滤器;62、加热器;63、风机;7、内筒;8、容纳空间;9、臭氧发生器。
具体实施方式
下面结合附图并通过具体实施方式来说明以下技术方案。
本实施例提供了一种洗干一体机,如图1所示,该洗干一体机包括外筒1、内筒7、冷凝器2、进水装置3以及排水装置4,其中,
所述外筒1套设于内筒7外部,所述内筒7和外筒1之间设有容纳空间8,所述外筒1上设有湿热空气出口11和进水口。
所述冷凝器2上设有湿热空气进口21,所述湿热空气进口21与外筒1上的湿热空气出口11通过管道连通;可选的,所述冷凝器2的上端设有进水端22,冷凝器2的下端设有出水端23,所述进水端22与进水装置3连通,所述出水端 23通过冷凝水排放管5与排水装置4的排水过滤器41连通,所述冷凝水排放管5位于外筒1的外部。在干衣过程中,冷凝水通过进水装置3注入到冷凝器2中,内筒7内的湿热空气经过容纳空间8、湿热空气出口11、连通湿热空气出口11与湿热空气进口21的管道以及湿热空气进口21进入冷凝器2,湿热空气在冷凝器2中由下至上运动,而冷凝水在冷凝器2中由上至下运动,湿热空气中的水蒸气遇到冷凝水变为液态,而后随着冷凝水一起由上至下运动,并经过出水端23、冷凝水排放管5以及排水装置4的排水过滤器41排出。湿热空气中的水蒸气与冷凝水接触后形成的液态水不再回流到容纳空间8内,而是通过冷凝水排放管5将液态水与冷凝水一起通过排水装置4的排水过滤器41排出,减少了由于冷凝水流到容纳空间8内而吸收内筒7内的用于烘干的热量,起到节能的作用,同时提高了烘干效率。
本实施例中,所述排水装置4还可以包括排水阀42,所述排水阀42的第一端通过管道连接于外筒1,排水阀42的第二端通过管道连接于排水过滤器41;在干衣过程中,冷凝水通过排水过滤器41排出。在洗衣过程中,通过所述排水装置4排出洗衣产生的废水时,所述排水阀42处于打开状态,洗衣产生的废水通过排水阀42以及排水过滤器41排出。
可选的,本实施例中,所述湿热空气进口21设于冷凝器2设有出水端23的一端,且所述湿热空气进口21位于所述出水端23的上方。由于湿热空气进口21位于出水端23的上方,湿热空气中的水蒸气与冷凝水接触后形成的液态水在自身重力的作用下将随着冷凝水由上至下运动,由于干衣过程中所述排水阀41始终处于打开状态,冷凝水不回流至容纳空间8内,而是经冷水排放管5以及排水装置4的排水过滤器41排出。
可选的,本实施例所述洗干一体机还设有与所述外筒1连通的烘干加热装置6,所述烘干加热装置6包括依次通过管道连接的烘干过滤器61、加热器62和风机63,所述冷凝器2上设有与烘干过滤器61通过管道连通的湿低温空气出口24,所述湿低温空气出口24位于冷凝器2设有进水端22的一端;所述风机63的出风口与外筒1连通。在干衣过程中,湿热空气中的水蒸气遇到冷凝水变为液态,而湿热空气中的空气将变为湿低温空气,所述湿低温空气沿着冷凝器2由下至上运动,经过烘干过滤器61烘干过滤以及加热器62加热后形成高温空气,所述高温空气在风机63的作用下将被送入内筒7内。
作为可选技术方案,本实施例中,所述洗干一体机还包括与烘干加热装置6连通的臭氧发生器9。在干衣过程中,通过风机63向内筒7内送入高温空气,同时通过风机63向内筒7内送入臭氧,对衣物进行杀菌,并防止衣物在潮湿的环境中滋生细菌。
本实施例所述干衣一体机的干衣过程如下。
在干衣过程中,通过进水装置3向冷凝器2通入冷凝水,风机63将高温空气送入内筒7内,高温空气对内筒7内的衣物进行烘干,高温空气变为湿热空气,内筒7内的湿热空气进入容纳空间8、湿热空气出口11、连通湿热空气出口11与湿热空气进口21的管道以及湿热空气进口21进入冷凝器2。湿热空气在冷凝器2中由下至上运动,而冷凝水在冷凝器2中由上至下运动,湿热空气中的水蒸气遇到冷凝水变为液态,随着冷凝水一起由上至下运动,并经过出水端23、冷凝水排放管5以及排水装置4的排水过滤器41排出。湿热空气中空气遇到冷凝水变为湿低温空气,所述湿低温空气沿着冷凝器2由下至上运动,经过烘干过滤器61烘干过滤以及加热器62加热后形成高温空气,所述高温空气在风机63的作用下将被送入内筒7内,用于烘干衣物。
工业实用性
上述实施例中的洗干一体机减少了由于冷凝水流到容纳空间内而吸收内筒内的用于烘干的热量,节能,提高了烘干效率。

Claims (7)

  1. 一种洗干一体机,包括外筒(1)、内筒(7)、冷凝器(2)、与所述外筒(1)的进水口连通的进水装置(3)和与所述外筒(1)的排水口连通的排水装置(4),其中,所述冷凝器(2)上设有与所述外筒(1)连通的湿热空气进口(21),所述冷凝器(2)的第一端与进水装置(3)连通,所述冷凝器(2)的第二端通过冷凝水排放管(5)连通于排水装置(4)。
  2. 根据权利要求1所述的洗干一体机,还包括与所述外筒(1)连通的烘干加热装置(6),其中,所述冷凝器(2)上设有与所述烘干加热装置(6)连通的湿低温空气出口(24),所述冷凝器(2)的湿低温空气出口(24)与烘干加热装置(6)的连通管路上设有烘干过滤器(61)。
  3. 根据权利要求2所述的洗干一体机,其中,所述冷凝器(2)的上端设有进水端(22),所述冷凝器(2)的下端设有出水端(23),所述进水端(22)与进水装置(3)连通,所述出水端(23)通过冷凝水排放管(5)与排水装置(4)的排水过滤器(41)连通。
  4. 根据权利要求3所述的洗干一体机,其中,所述湿低温空气出口(24)位于冷凝器(2)设有进水端(22)的一端,所述湿热空气进口(21)位于冷凝器(2)设有出水端(23)的一端,且所述湿热空气进口(21)位于所述出水端(23)的上方。
  5. 根据权利要求2所述的洗干一体机,其中,所述烘干加热装置(6)包括加热器(62)和与所述外筒(1)连通的风机(63),以及所述加热器(62)加热经烘干过滤器(61)烘干过滤形成的低温空气。
  6. 根据权利要求5所述的洗干一体机,还包括与烘干加热装置(6)连通的臭氧发生器(9)。
  7. 根据权利要求3所述的洗干一体机,其中,所述排水装置(4)还包括 排水阀(42),所述排水阀(42)的第一端通过管道连接于外筒(1),以及所述排水阀(42)的第二端通过管道连接于排水过滤器(41)。
PCT/CN2017/090173 2016-06-27 2017-06-27 洗干一体机 WO2018001220A1 (zh)

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CN114775218B (zh) * 2022-04-29 2023-08-04 珠海格力电器股份有限公司 衣物处理装置

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