WO2023065973A1 - 一种多种进水模式的洗碗机 - Google Patents

一种多种进水模式的洗碗机 Download PDF

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Publication number
WO2023065973A1
WO2023065973A1 PCT/CN2022/121091 CN2022121091W WO2023065973A1 WO 2023065973 A1 WO2023065973 A1 WO 2023065973A1 CN 2022121091 W CN2022121091 W CN 2022121091W WO 2023065973 A1 WO2023065973 A1 WO 2023065973A1
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WO
WIPO (PCT)
Prior art keywords
water
tank
water inlet
water tank
dishwasher
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Application number
PCT/CN2022/121091
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English (en)
French (fr)
Inventor
蒲杰
刘克徳
Original Assignee
广东正美洗涤电器有限公司
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.)
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Publication date
Priority claimed from CN202111230212.5A external-priority patent/CN113768445A/zh
Priority claimed from CN202122545103.4U external-priority patent/CN216495177U/zh
Priority claimed from CN202122544369.7U external-priority patent/CN216454871U/zh
Priority claimed from CN202222310530.9U external-priority patent/CN218247162U/zh
Priority claimed from CN202211060012.4A external-priority patent/CN115399705A/zh
Application filed by 广东正美洗涤电器有限公司 filed Critical 广东正美洗涤电器有限公司
Publication of WO2023065973A1 publication Critical patent/WO2023065973A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

Definitions

  • the invention relates to a dishwasher with multiple water inlet modes.
  • dishwashers have been widely used. Some of the existing dishwashers have manual water inlets on the water tanks, and water is supplied to the inner tank through the water tanks. This water intake method requires manual water supply to the water tanks. Water can be supplied to the inner tank after adding water, which is time-consuming and laborious; the inner tank of some dishwashers is connected to the external water source through a solenoid valve.
  • the dishwasher with this structure needs to be connected to the faucet for a long time, which occupies the resources of the faucet and needs to be installed on the faucet. Nearby, long-distance water supply pipes are troublesome and prone to failure.
  • the present invention proposes a dishwasher with multiple water inlet modes, aiming to provide a water supply mode for the dishwasher that is convenient for users to use and easy to maintain.
  • the present invention proposes a dishwasher with multiple water inlet modes, including an inner container of the dishwasher, a water tank, a water inlet mechanism and a switching device.
  • the water tank is provided with a manual water inlet or is not provided with a manual water inlet.
  • the water inlet end of the water inlet mechanism is connected to an external water source, the water inlet mechanism is connected with the water tank and the inner tank, the water inlet mechanism is provided with a water inlet, and the switching device is arranged on the water inlet to realize the inward direction of the water inlet.
  • Water enters the tank or enters the water tank.
  • the water inlet can be provided with a flow meter.
  • the water tank is directly or indirectly connected to the inner tank.
  • the water inlet structure is connected to the water tank or the inner tank through the switching device on the water inlet mechanism.
  • the water mechanism When the water mechanism is connected to the water tank, after the water inlet mechanism adds water to the water tank, the water tank then supplies water to the inner tank to realize the water supply to the water tank, which can quickly fill the water tank with water without occupying the faucet. It is convenient for users to add water to the water tank. At the same time, users can also use the switching device to make the water inlet mechanism supply water to the inner tank to meet the different needs of users. Multiple modes of water inlet are beneficial for users to use according to different usage habits.
  • the water tank connected to the inner tank can directly supply water to the inner tank through the water tank, or the water tank is connected to the water inlet of the water tank of the water inlet mechanism, and the water inlet of the water tank is connected to the water inlet. After entering the water inlet mechanism and passing through the water inlet channel, under the switch of the switching device, it is selected to connect to the inner tank and supply water to the inner tank, reducing the number of openings of the inner tank, and at the same time, the water tank can be used to feed the inner tank with water, It is a high-quality product with ingenious structure and stability.
  • the water inlet mechanism is provided with a water channel of the water tank and a water channel of the inner tank, and the water inlet is respectively connected with the water channel of the water tank and the water channel of the inner tank, and the switching device is arranged on the water channel of the water tank, the water channel of the inner tank and the water inlet
  • the connection part is so that the switching device controls the water inlet to communicate with the water tank water channel or the inner tank water channel.
  • a valve cavity is provided at the junction of the water inlet, the liner water channel and the water tank water channel, and a first water outlet and a second water outlet are arranged on the valve cavity, and the valve cavity is A valve plate is provided, and the valve plate moves in the valve cavity to block the first water outlet or the second water outlet.
  • the upper movement of the valve chamber is to block the first water outlet to allow water to enter the water tank, and to block the second water outlet to allow water to enter the inner tank.
  • the switching device forms a solenoid valve, which is installed on one side of the water inlet mechanism, and the valve plate of the solenoid valve extends into the valve cavity at the junction of the water channel of the water tank and the water channel of the inner tank,
  • the electromagnetic valve controls the water inlet to communicate with the water channel of the water tank or the water channel of the inner tank, and the water inlet of the inner tank or the water tank is switched through the electromagnetic valve.
  • the structure is simple and stable.
  • the water inlet mechanism is also provided with an inner tank water inlet and a water tank water inlet, the water tank water inlet is connected to the water inlet, one end of the inner tank water inlet is connected to the inner tank water inlet, and the other is One end is connected to the inner tank or the water softener, and the water inlet of the inner tank is provided with balance air holes to balance the air pressure and prevent siphoning.
  • the water inlet communicates with the water inlet of the water tank, and the water inlet of the water tank is located on the upper part of the water tank near the top so that the water tank can be filled to the maximum when water is fed in, and the size of the water inlet of the water tank is larger than the water tank inlet.
  • the size of the water outlet is large, the water inlet of the water tank can be used as the overflow hole of the water tank.
  • the water exceeds the maximum limit height, the water can overflow from the water inlet of the water tank and flow into the water inlet mechanism.
  • the water tank is arranged on one side of the inner tank, the water tank and the inner tank are integrally formed, the upper end of the water tank is open, and a water tank cover is arranged on the opening, and the water tank cover and the water tank detachably connected together, the inner tank is provided with a breathing hole, the outer side of the breathing hole is provided with a first breathing tube extending upward, and the water tank cover is provided with a second breathing tube extending toward the breathing hole.
  • the second breathing tube is located in the first breathing tube, the water tank cover is provided with a manual water inlet, and the manual water inlet is provided with a filter screen to filter water and discharge gas.
  • the water inlet mechanism is also provided with an inverted U-shaped drainage channel, one end of which is connected to the drainage pump, and the other end is connected to the outside, forming an inverted U-shaped drainage channel can prevent water from flowing backward.
  • the water inlet mechanism is also provided with an overflow channel, and the overflow channel is connected to the bottom of the dishwasher or the drain to facilitate water overflow.
  • the sensor senses the overflow situation and gives an alarm.
  • the water tank is provided with a water tank water inlet, and the water inlet mechanism is provided with a water tank water inlet. Entering the water inlet of the water tank, when the water in the water tank is higher than the set height, the water in the water tank flows into the overflow channel from the side of the water inlet of the water tank.
  • the inner tank is also provided with a water cup structure
  • the water cup structure is provided with a washing port
  • the washing port is connected to a heating washing pump
  • the water inlet end of the heating washing pump is provided with a heating part
  • the heating part is provided with a heating chamber
  • the water inlet end and the water outlet end of the heating chamber are connected to form a water passage
  • a heater is arranged on the water passage
  • the water outlet end of the heating part is connected with the washing pump
  • the heating The water outlet end of the head is socketed with the water inlet end of the washing pump or a connecting sleeve is provided between the water outlet and the washing pump.
  • the water tank and the inner tank are integrally formed, the heat of the inner tank can transfer heat to the water tank, and a water pump is connected to the water outlet of the water tank to supply water to the inner tank.
  • the water supply method is as follows.
  • the switching device switches to the water supply of the inner tank, and the water inlet mechanism supplies the set water volume t1 to the inner tank.
  • the dishwasher starts to work, and the inner tank of the dishwasher will generate a lot of heat during operation.
  • the switching device switches to the water tank for water supply, and the water inlet mechanism supplies the set water volume t2 to the water tank, and in S2, the heat transferred by the inner tank preheats the water in the water tank.
  • the dishwasher stops working or the dishwasher performs the third washing.
  • the water inlet mechanism can be selected to directly supply water to the inner tank or the preheated water in the water tank can be selected. Supply water to the liner.
  • the water pressure of tap water is used to realize the initial water supply.
  • the preheat generated in the liner is transmitted to the water tank and preheats the water in the water tank, so that the heating time of the water tank can be reduced after the second washing and the third washing, and at the same time it can reduce
  • the heating power improves the heating efficiency, makes full use of the waste heat of the dishwasher, and reduces energy consumption at the same time.
  • the water inlet structure is connected to the water tank or the inner tank.
  • the water tank then supplies water to the inner tank to realize the water supply to the water tank, which can quickly fill the water tank. Water does not occupy the faucet.
  • the water tank can be equipped with a manual water filling port, which is also convenient for users to manually add water to the water tank, which is convenient for users to use.
  • users can also make the water inlet mechanism supply water to the inner tank through the switching device to meet different needs of users. , Multiple modes of water intake are beneficial for users to use according to different usage habits.
  • the structure is simple and practical.
  • Fig. 1 is a schematic diagram of a dishwasher liner, a water tank and a water inlet mechanism in various water inlet modes.
  • Fig. 2 is a disassembled schematic diagram of a dishwasher liner, a water tank and a water inlet mechanism in various water inlet modes.
  • Fig. 3 is a schematic diagram of a water circuit structure of a dishwasher with multiple water inlet modes.
  • Fig. 4 is a schematic diagram of the bottom structure of the dishwasher with multiple water inlet modes.
  • Fig. 5 is a partial enlarged schematic view of the inner container and the water inlet mechanism of the dishwasher in various water inlet modes.
  • Fig. 6 is a schematic cross-sectional view of the water tank and the liner.
  • Figure 7 is a schematic diagram of the inner tank and the water tank.
  • Fig. 8 is a partial cross-sectional schematic view of the inner container and the water tank.
  • Fig. 9 is a schematic cross-sectional view of the inner tank and the heating washing pump.
  • a dishwasher with multiple water inlet modes includes an inner container 1 of the dishwasher, a water tank 2, a water inlet mechanism 3 and a switching device 4, and the water inlet end of the water inlet mechanism 3 is connected to An external water source, the water inlet mechanism 3 communicates with the water tank 2 and the inner tank 1, the water inlet mechanism 3 is provided with a water inlet 31, and the switching device 4 is arranged on the water inlet 31 to realize that the water inlet 31 is connected to the inner tank.
  • the water tank 2 may be provided with a manual water inlet 21, or the water tank 2 may not be provided with a manual water inlet 21, the water inlet 31 may be provided with a flow meter 32, the The water tank 2 is directly connected to the inner tank 1 or the water tank 2 is connected to the water tank water inlet 33 of the water inlet mechanism 3 and then communicated with the inner tank 1 , and the water tank water inlet 33 is connected to the water inlet 31 .
  • the water tank 2 communicates with the water inlet 33 of the water tank through the booster pump 5, and the external water source is connected with the water inlet 34 of the external water source through the water inlet valve 7, and the water inlet 31 is the water inlet 34 of the external water source and the water inlet 33 of the water tank.
  • the shared water channel of the water tank is provided with a one-way valve 310 at the water outlet of the water inlet 33 of the water tank, and a one-way valve 310 is also arranged at the outlet of the water inlet of the external water source, so as to avoid the water inlet 33 of the water tank and the water inlet 34 of the external water source.
  • the water inlet 34 extends upwards and forms a hanging height, and a switching device 4 is arranged at the hanging height, and the switching device 4 selects to communicate with the water tank water channel 35 or the inner tank water channel 36 to realize water supply to the water tank 2 or to the inner tank 1; After the water supply to the water tank 2, the water in the water tank 2 can be supplied to the water inlet 33 of the water tank through the booster pump 5.
  • the water inlet mechanism 3 is provided with a water tank water channel 35 and an inner tank water channel 36, the water inlet channel 31 communicates with the water tank water channel 35 and the inner tank water channel 36 respectively, and the switching device 4 is arranged on the water tank water channel 35 and the inner tank water channel 36 And the junction of water inlet 31.
  • a valve chamber 37 is provided at the junction of the water inlet 31, the liner waterway 36 and the water tank waterway 35, and the valve chamber 37 is provided with a first water outlet 351 and a second water outlet 361.
  • the valve chamber 37 is provided with a valve plate 41 , and the valve plate 41 moves in the valve cavity 37 to block the first water outlet 351 or block the second water outlet 361 .
  • the switching device 4 forms a solenoid valve
  • the solenoid valve is connected with the valve plate 41 through the valve rod
  • the solenoid valve is installed on one side of the water inlet mechanism 3
  • the valve plate 41 of the solenoid valve extends into the water tank water channel 35 and the inner tank
  • the electromagnetic valve controls the water inlet channel 31 to communicate with the water tank water channel 35 or the liner water channel 36 .
  • the water inlet mechanism 3 is also provided with an inner tank water inlet 362, one end of the inner tank water inlet 362 is connected to the inner tank water inlet 36, and the other end is connected to the inner tank 1 or the water softener, and the inner tank water inlet 36 Equilibrium holes are provided on the top to balance the air pressure and prevent siphoning.
  • the water inlet 31 communicates with the water tank water inlet 22, and the water tank water inlet 22 is located at the upper part of the water tank 2 near the top.
  • the water tank 2 is arranged on one side of the inner tank 1, the water tank 2 is integrally formed with the inner tank 1, the upper end of the water tank 2 is open, and a water tank cover 21 is arranged on the opening, and the water tank cover 21 is connected with the inner tank 1.
  • the water tanks 2 are detachably connected together, the inner tank 1 is provided with a breathing hole 22, and the outer side of the breathing hole 22 is provided with a first breathing tube 23 extending upwards , the water tank cover 21 is provided with a second breathing tube 24 extending toward the breathing hole 22, the second breathing tube 24 is located in the first breathing tube 23, and the water tank cover 21 is provided with a manual water inlet 25, so The manual water inlet 25 is provided with a strainer to filter water and discharge gas.
  • water inlet mechanism 3 is also provided with an inverted U-shaped drainage channel 38, one end of which is connected to the drainage pump, and the other end is connected to the outside world.
  • water inlet mechanism 3 is also provided with an overflow channel 39, and the overflow channel 39 communicates with the bottom of the dishwasher or the drain.
  • the water tank 2 is provided with a water tank water inlet 22, and the water inlet mechanism 3 is provided with a water tank water inlet 35.
  • the water tank water inlet 22 is connected to the water tank water inlet 35 and the overflow channel 39 respectively.
  • the water inlet 35 enters the water tank water inlet 22, and when the water in the water tank 2 was higher than the set height, the water in the water tank 2 flowed into the overflow channel 39 from the water tank water inlet 22 side.
  • the size of the water tank inlet 22 is larger than the size of the water outlet end of the water tank inlet channel 35 so that the water tank inlet 22 can not only enter water but also realize overflow.
  • the inner tank 2 is also provided with a water cup structure 11, the water cup structure 11 is provided with a washing port 12, and the washing port 12 is connected to the heating washing pump 6, and the water inlet end of the heating washing pump 6 is provided with a heating part 61, the heating part 61 is provided with a heating chamber 62, the water inlet end and the water outlet end of the heating chamber 62 are connected to form a water passage 63, and a heating pipe is arranged on the water passage 63 as a heater 64, and the heating The outlet end of the part 61 is connected with the washing pump 65, and the outlet end of the heating part 61 is sleeved with the inlet end of the washing pump 65 or a connecting sleeve 66 is provided between the outlet end of the heating part 61 and the washing pump 65.
  • the water tank 2 and the inner tank 1 are integrally formed, and a heat conducting partition 26 is arranged between the inner tank 1 and the water tank 2, so that the heat of the inner tank 1 can transfer heat to the water tank 2, and the water outlet of the water tank 2 is connected to There is a water pump to supply water to the inner tank 1 .
  • the switching device 4 switches to supply water to the inner tank 1, and the water inlet mechanism 3 supplies the inner tank 1 with a set water volume t1.
  • the dishwasher starts to work, and the inner tank 1 will generate a lot of heat during the operation of the dishwasher.
  • the switching device 4 switches to the water tank 2 for water supply, and the water inlet mechanism 3 supplies the water tank 2 with a set water volume t2, and in S2, the heat transferred by the inner tank 1 pre-heats the water in the water tank 2 hot.
  • the dishwasher stops working or the dishwasher performs the third washing.
  • the water inlet mechanism 3 can be selected to directly supply water to the inner tank 1 or the water tank 2 can be selected to be pre-loaded. Hot water is supplied to the liner 1 .

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  • Washing And Drying Of Tableware (AREA)

Abstract

一种多种进水模式的洗碗机,包括洗碗机的内胆(1)、水箱(2)、进水机构(3)以及切换装置(4),进水机构(3)的进水端连接外界水源,进水机构(3)与水箱(2)和内胆(1)连通,进水机构(3)上设置有进水道(31),切换装置(4)设置在进水道(31)上以实现进水道(31)向内胆(1)进水或者向水箱(2)进水,水箱(2)可设置有手动进水口(21),进水道(31)上可设置有流量计(32),水箱(2)连通内胆(1)或者水箱(2)连通进水机构(3)的水箱水进水口(33),水箱水进水口(33)连通进水道(31),通过进水机构(3)上的切换装置(4)使得进水机构(3)连通水箱(2)或者内胆(1),当进水机构(3)连通水箱(2)时,进水机构(3)给水箱(2)加水后,水箱(2)再向内胆(1)供水实现水箱(2)供水,能够快速给水箱(2)注满水。

Description

一种多种进水模式的洗碗机 技术领域
本发明涉及一种多种进水模式的洗碗机。
背景技术
随着科技的进步和发展,洗碗机已经被广泛使用,现有的洗碗机有的在水箱上设置有手动进水口,并通过水箱给内胆供水,这种进水方式需要人工给水箱加水后才能给内胆供水,这种方式费时费力;有的洗碗机的内胆通过电磁阀连通外界水源,这种结构的洗碗机需要长期连接水龙头,占用了水龙头资源同时需要安装在水龙头附近,远距离供水走管麻烦同时容易出现故障。
技术问题
为解决上述问题,本发明提出一种多种进水模式的洗碗机,旨在提供便于用户使用的又方便维修的洗碗机供水方式。
本发明提出一种多种进水模式的洗碗机,包括洗碗机的内胆、水箱、进水机构以及切换装置,所述水箱上设置有手动进水口或者不设置有手动进水口,所述进水机构的进水端连接外界水源,所述进水机构与水箱和内胆连通,所述进水机构上设置有进水道,所述切换装置设置在进水道上以实现进水道向内胆进水或者向水箱进水,所述进水道上可设置有流量计,所述水箱直接或者间接连通内胆,通过进水机构上的切换装置使得进水结构连通水箱或者内胆,当进水机构连通水箱时,进水机构给水箱加水后,水箱再向内胆供水实现水箱供水,能够快速给水箱注满水,不占用水龙头,该水箱上可设置有手动加水口,也方便用户手动给水箱加水,方便用户使用,同时用户也可以通过切换装置使得进水机构向内胆供水,满足用户不同的使用需要,多种模式进水,利于用户根据不同的使用习惯来使用,该结构简单实用,所述水箱连通内胆可以通过水箱直接向内胆供水,或者水箱连通进水机构的水箱水进水口,该水箱水进水口连通进水道,在水箱水供水时,水箱水通过水箱水进口进入进水机构并通过进水通道后在切换装置的切换下选择连通内胆并向内胆供水,减少内胆的开孔数,同时可以借用进水道和切换装置实现水箱给内胆进水,结构巧妙、稳定是款质优产品。
于一个或多个实施例中,所述进水机构上设置有水箱水道和内胆水道,该进水道分别与水箱水道和内胆水道连通,切换装置设置在水箱水道、内胆水道以及进水道的连接处以便于切换装置控制进水道连通水箱水道或者内胆水道。
于一个或多个实施例中,所述进水道、内胆水道和水箱水道的连接处设置有阀腔,所述阀腔上设置有第一出水口和第二出水口,所述阀腔上设置有阀片,该阀片在阀腔内运动以封堵第一出水口或者封堵第二出水口,该阀腔既形成三通,同时在阀腔上设置有阀片,该阀片在阀腔上运动以封堵第一出水口使得水箱进水,封堵第二出水口使得内胆进水。
于一个或多个实施例中,所述切换装置形成电磁阀,该电磁阀安装进水机构的一侧上,电磁阀的阀片伸入水箱水道和内胆水道的连接处的阀腔内,该电磁阀控制进水道连通水箱水道或者内胆水道,通过电磁阀切换内胆进水或者水箱进水,结构简单,且稳定。
于一个或多个实施例中,所述进水机构上还设置有内胆进水口和水箱水进水口,该水箱水进水口连通进水道,该内胆进水口一端连通内胆进水道,另一端连通内胆或者水软化器,该内胆进水道上设置有平衡气孔以平衡气压防止虹吸。
于一个或多个实施例中,所述进水道和水箱进水口连通,该水箱进水口位于水箱上部靠近顶部使得进水时能够最大化注满水箱,同时该水箱进水口的尺寸大于水箱进水道出水端尺寸时,水箱进水口可以充当水箱的溢水孔,在水超过最高限定高度时,水可以从水箱进水口溢出流入进水机构。
于一个或多个实施例中,所述水箱设置在内胆一侧上,所述水箱与内胆一体成型,所述水箱上端开口,所述开口上设置有水箱盖,所述水箱盖与水箱可拆卸连接一起,所述内胆上设置有呼吸孔,所述呼吸孔外侧上设置有向上延伸的第一呼吸管,所述水箱盖上设置有向呼吸孔延伸的第二呼吸管,所述第二呼吸管位于第一呼吸管内,所述水箱盖上设置有手动进水口,所述手动进水口上设置有滤网以过滤水和排出气体。
于一个或多个实施例中,所述进水机构上还设置有倒U型的排水道,该排水道一端连接排水泵,另一端连接外界,形成倒U型的排水道能够避免水倒流。
于一个或多个实施例中,所述进水机构上还设置有溢水道,该溢水道连通洗碗机底部或者排水道以便于溢水,同时在洗碗机底部设置溢水感应器可以通过溢水感应器感应溢水情况并进行报警,所述水箱设置有水箱进水口,所述进水机构设置有水箱进水道,该水箱进水口分别连通水箱进水道和溢水道,进水时,水从水箱进水道进入水箱进水口,当水箱内水高于设定高度时,水箱内水从水箱进水口一侧流入溢水道。
于一个或多个实施例中,所述内胆还设置有水杯结构,所述水杯结构设置有洗涤口,所述洗涤口连接加热洗涤泵,所述加热洗涤泵的进水端设置有加热部,所述加热部设置有加热腔,所述加热腔的进水端和出水端连接形成过水道,所述过水道上设置有加热器,所述加热部的出水端与洗涤泵连接一起,加热部的出水端与洗涤泵的进水端套接一起或者所述出水口和洗涤泵之间设置有连接套。
于一个或多个实施例中,所述水箱和内胆一体成型,内胆的热量可向水箱传递热量,在所述水箱的出水口连接有水泵以向所述内胆供水。
   其供水方式如下。
   S1,切换装置切换到内胆供水,所述进水机构向内胆供应设定水量t1。
   S2,洗碗机开始工作,洗碗机在工作中内胆会产生大量热量。
   S3,洗碗机工作的同时,切换装置切换到水箱供水,所述进水机构向水箱供应设定水量t2,在S2中内胆传递的热量对水箱内的水进行预热。
S4,洗碗机第一次洗涤结束后,水箱内被预热的水向内胆供水以进行第二次洗涤。
S5,第二次洗涤结束后,洗碗机停止工作或者洗碗机进行第三次洗涤,在第三次洗涤时,可以选择进水机构直接向内胆供水或者选择水箱内被预热的水向内胆供水。
通过形成一体结构的水箱和内胆,使得洗碗机在工作时,内胆内产生的大量余热可以通过导热隔板传递到水箱内并对水箱内的水进行预热,降低了加热时间,提高加热效率和降低能耗,同时在S1中先进水机构先想内胆供水,由于进水机构一端连通自来水,在自来水水压下即可完成向内胆供水,若是S1中通过水箱给内胆供水即需要水泵工作,无疑增加了能耗,结构上合理利用了一体成型的内胆和水箱的热量传递进行预热,在供水步骤上通过利用自来水的水压实现初步供水,在初步供水完成后,洗碗机工作工作的同时,内胆内产生的预热传递到水箱内并预加热水箱内水,使得第二次洗涤和第三次洗涤时后可以减少了水箱水的加热时间,同时可以降低加热功率,提高了加热效率,充分利用了洗碗机工作的余热,同时降低了能耗。
有益效果
通过进水机构上的切换装置使得进水结构连通水箱或者内胆,当进水机构连通水箱时,进水机构给水箱加水后,水箱再向内胆供水实现水箱供水,能够快速给水箱注满水,不占用水龙头,该水箱上可设置有手动加水口,也方便用户手动给水箱加水,方便用户使用,同时用户也可以通过切换装置使得进水机构向内胆供水,满足用户不同的使用需要,多种模式进水,利于用户根据不同的使用习惯来使用,该结构简单实用。
附图说明
图1为多种进水模式的洗碗机内胆、水箱和进水机构示意图。
图2为多种进水模式的洗碗机内胆、水箱和进水机构拆分示意图。
图3为多种进水模式的洗碗机的水路结构示意图。
图4为为多种进水模式的洗碗机的底部结构示意图。
图5为多种进水模式的洗碗机内胆和进水机构的部分放大示意图。
图6为水箱和内胆的截面示意图。
图7为内胆和水箱示意图。
图8为内胆和水箱的部分截面示意图。
图9为内胆和加热洗涤泵的剖面示意图。
本发明的最佳实施方式
如下结合附图,对本申请方案作进一步描述。
参见附图1-9一种多种进水模式的洗碗机,包括洗碗机的内胆1、水箱2、进水机构3以及切换装置4,所述进水机构3的进水端连接外界水源,所述进水机构3与水箱2和内胆1连通,所述进水机构3上设置有进水道31,所述切换装置4设置在进水道31上以实现进水道31向内胆1进水或者向水箱2进水,所述水箱2可设置有手动进水口21,所述水箱2也可不设置有手动加水口21,所述进水道31上可设置有流量计32,所述水箱2直接连通内胆1或者水箱2连通进水机构3的水箱水进水口33后与内胆1连通,该水箱水进水口33连通进水道31。
优选地,水箱2通过增压泵5与水箱进水口33连通,外界水源通过进水阀7与外界水源进水口34连接,所述进水道31为外界水源进水口34和水箱水进水33口的共用水道,在所述水箱水进水口33的出水端设置有单向阀310,外界水源进水口的出水端也设置有单向阀310,以避免水箱水进水口33和外界水源进水口34串水,进水道34向上延伸并形成挂高,在挂高处设置有切换装置4,切换装置4选择连通水箱水道35或者内胆水道36以实现给水箱2供水或者给内胆1供水;当给水箱2供水后,水箱2内的水可以通过增压泵5向水箱水进水口33供水。
进一步地,所述进水机构3上设置有水箱水道35和内胆水道36,该进水道31分别与水箱水道35和内胆水道36连通,切换装置4设置在水箱水道35、内胆水道36以及进水道31的连接处。
进一步地,所述进水道31、内胆水道36和水箱水道35的连接处设置有阀腔37,所述阀腔37上设置有第一出水口351和第二出水口361,所述阀腔37上设置有阀片41,该阀片41在阀腔37内运动以封堵第一出水口351或者封堵第二出水口361。
进一步地,所述切换装置4形成电磁阀,电磁阀通过阀杆与阀片41连接,该电磁阀安装进水机构3的一侧上,电磁阀的阀片41伸入水箱水道35和内胆水道36的连接处,该电磁阀控制进水道31连通水箱水道35或者内胆水道36。
进一步地,所述进水机构3上还设置有内胆进水口362,该内胆进水口362一端连通内胆进水道36,另一端连通内胆1或者水软化器,该内胆进水道36上设置有平衡气孔以平衡气压防止虹吸。
进一步地,所述进水道31和水箱进水口22连通,该水箱进水口22位于水箱2上部靠近顶部。
进一步地,所述水箱2设置在内胆1一侧上,所述水箱2与内胆1一体成型,所述水箱2上端开口,所述开口上设置有水箱盖21,所述水箱盖21与水箱2可拆卸连接一起,所述内胆1上设置有呼吸孔22,所述呼吸孔22外侧上设置有向上延伸的第一呼吸管23   ,所述水箱盖21上设置有向呼吸孔22延伸的第二呼吸管24,所述第二呼吸管24位于第一呼吸管23内,所述水箱盖21上设置有手动进水口25,所述手动进水口25上设置有滤网以过滤水和排出气体。
进一步地,所述进水机构3上还设置有倒U型的排水道38,该排水道38一端连接排水泵,另一端连接外界。
进一步地,所述进水机构3上还设置有溢水道39,该溢水道39连通洗碗机底部或者排水道。
进一步地,所述水箱2设置有水箱进水口22,所述进水机构3设置有水箱进水道35,该水箱进水口22分别连通水箱进水道35和溢水道39,进水时,水从水箱进水道35进入水箱进水口22,当水箱2内水高于设定高度时,水箱2内水从水箱进水口22一侧流入溢水道39。
优选地,所述水箱进水口22的尺寸大于水箱进水道35的出水端尺寸以使得水箱进水口22既可进水也可以实现溢水。
进一步地,所述内胆2还设置有水杯结构11,所述水杯结构11设置有洗涤口12,所述洗涤口12连接加热洗涤泵6,所述加热洗涤泵6的进水端设置有加热部61,所述加热部61设置有加热腔62,所述加热腔62的进水端和出水端连接形成过水道63,所述过水道63上设置有加热管作为加热器64,所述加热部61的出水端与洗涤泵65连接一起,加热部61的出水端与洗涤泵65的进水端套接一起或者加热部61的出水端和洗涤泵65之间设置有连接套66。
进一步地,所述水箱2和内胆1一体成型,内胆1和水箱2之间设置有导热隔板26,内胆1的热量可向水箱2传递热量,在所述水箱2的出水口连接有水泵以向所述内胆1供水。
其供水方式如下。
S1,切换装置4切换到内胆1供水,所述进水机构3向内胆1供应设定水量t1。
S2,洗碗机开始工作,洗碗机在工作中内胆1会产生大量热量。
S3,洗碗机工作的同时,切换装置4切换到水箱2供水,所述进水机构3向水箱2供应设定水量t2,在S2中内胆1传递的热量对水箱2内的水进行预热。
S4,洗碗机第一次洗涤结束后,水箱2内被预热的水向内胆1供水以进行第二次洗涤。
S5,第二次洗涤结束后,洗碗机停止工作或者洗碗机进行第三次洗涤,在第三次洗涤时,可以选择进水机构3直接向内胆1供水或者选择水箱2内被预热的水向内胆1供水。
上述优选实施方式应视为本申请方案实施方式的举例说明,凡与本申请方案雷同、近似或以此为基础作出的技术推演、替换、改进等,均应视为本专利的保护范围。

Claims (10)

  1. 一种多种进水模式的洗碗机,其特征在于,包括洗碗机的内胆、水箱、进水机构以及切换装置,所述水箱设置有手动进水口或者不设置有手动进水口,所述进水机构的进水端连接外界水源,所述进水机构与水箱和内胆连通,所述进水机构上设置有进水道,所述切换装置设置在进水道上以实现进水道向内胆进水或者向水箱进水,所述进水道上可设置有流量计,所述水箱直接或间接连通内胆。
  2. 根据权利要求1所述的多种进水模式的洗碗机,其特征在于,所述进水机构上设置有水箱水道和内胆水道,该进水道分别与水箱水道和内胆水道连通,切换装置设置在水箱水道、内胆水道以及进水道的连接处。
  3. 根据权利要求2所述的多种进水模式的洗碗机,其特征在于,所述进水道、内胆水道和水箱水道的连接处设置有阀腔,所述阀腔上设置有第一出水口和第二出水口,所述阀腔上设置有阀片,该阀片在阀腔内运动以封堵第一出水口或者封堵第二出水口。
  4. 根据权利要求1所述的多种进水模式的洗碗机,其特征在于,所述进水机构上还设置有内胆进水口和水箱水进水口,该水箱水进水口连通进水道,该内胆进水口一端连通内胆进水道,另一端连通内胆或者水软化器,该内胆进水道上设置有平衡气孔以平衡气压防止虹吸。
  5. 根据权利要求2所述的多种进水模式的洗碗机,其特征在于,所述进水道和水箱进水口连通,该水箱进水口位于水箱上部靠近顶部。
  6. 根据权利要求1所述的多种进水模式的洗碗机,其特征在于,所述水箱设置在内胆一侧上,所述水箱与内胆一体成型,所述水箱上端开口,所述开口上设置有水箱盖,所述水箱盖与水箱可拆卸连接一起,所述内胆上设置有呼吸孔,所述呼吸孔外侧上设置有向上延伸的第一呼吸管,所述水箱盖上设置有向呼吸孔延伸的第二呼吸管,所述第二呼吸管位于第一呼吸管内,所述水箱盖上设置有手动进水口,所述手动进水口上设置有滤网以过滤水和排出气体。
  7. 根据权利要求1所述的多种进水模式的洗碗机,其特征在于,所述进水机构上还设置有倒U型的排水道,该排水道一端连接排水泵,另一端连接外界,所述进水机构上还设置有溢水道,该溢水道连通洗碗机底部或者排水道,所述溢水道还可以作为通风孔,内胆的水汽可以通过溢水道进入进水结构。
  8. 根据权利要求7所述的多种进水模式的洗碗机,其特征在于,所述水箱设置有水箱进水口,所述进水机构设置有水箱进水道,该水箱进水口分别连通水箱进水道和溢水道,进水时,水从水箱进水道进入水箱进水口,当水箱内水高于设定高度时,水箱内水从水箱进水口一侧流入溢水道。
  9. 根据权利要求1所述的多种进水模式的洗碗机,其特征在于,所述内胆还设置有水杯结构,所述水杯结构设置有洗涤口,所述洗涤口连接加热洗涤泵,所述加热洗涤泵的进水端设置有加热部,所述加热部设置有加热腔,所述加热腔的进水端和出水端连接形成过水道,所述过水道上设置有加热器,所述加热部的出水端与洗涤泵连接一起,加热部的出水端与洗涤泵的进水端套接一起或者所述出水口和洗涤泵之间设置有连接套。
  10. 根据权利要求1所述的多种进水模式的洗碗机,其特征在于,所述水箱和内胆一体成型,内胆的热量可向水箱传递热量,在所述水箱的出水口连接有水泵以向所述内胆供水;
       其供水方式如下:
       S1,切换装置切换到内胆供水,所述进水机构向内胆供应设定水量t1;
       S2,洗碗机开始工作,洗碗机在工作中内胆会产生大量热量;
       S3,洗碗机工作的同时,切换装置切换到水箱供水,所述进水机构向水箱供应设定水量t2,在S2中内胆传递的热量对水箱内的水进行预热;
    S4,洗碗机第一次洗涤结束后,水箱内被预热的水向内胆供水以进行第二次洗涤;
    S5,第二次洗涤结束后,洗碗机停止工作或者洗碗机进行第三次洗涤,在第三次洗涤时,可以选择进水机构直接向内胆供水或者选择水箱内被预热的水向内胆供水。
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CN202122544369.7U CN216454871U (zh) 2021-10-21 2021-10-21 一种洗碗机呼吸结构
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CN216495177U (zh) * 2021-10-21 2022-05-13 蒲杰 一种洗碗机加热结构

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