WO2024051153A1 - 衣物处理设备 - Google Patents

衣物处理设备 Download PDF

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Publication number
WO2024051153A1
WO2024051153A1 PCT/CN2023/083894 CN2023083894W WO2024051153A1 WO 2024051153 A1 WO2024051153 A1 WO 2024051153A1 CN 2023083894 W CN2023083894 W CN 2023083894W WO 2024051153 A1 WO2024051153 A1 WO 2024051153A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
outlet
drainage
inner cylinder
heating
Prior art date
Application number
PCT/CN2023/083894
Other languages
English (en)
French (fr)
Inventor
薛二鹏
刘洪刚
王嘉
高弘锡
Original Assignee
无锡小天鹅电器有限公司
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.)
Filing date
Publication date
Application filed by 无锡小天鹅电器有限公司 filed Critical 无锡小天鹅电器有限公司
Publication of WO2024051153A1 publication Critical patent/WO2024051153A1/zh

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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/04Heating arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • 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 present disclosure relates to the technical field of daily electrical appliances, and in particular, to a clothing treatment device.
  • Clothes processing equipment such as washing machines, usually include an inner drum. Clothes are placed in the inner drum and washing, dehydration and other operations are performed as the inner drum rotates.
  • the washing water is usually normal temperature water, which leads to poor washing effect of clothes.
  • the washing water of existing clothes processing equipment is usually normal temperature water, which leads to poor washing effect of clothes.
  • a clothes treatment equipment including an inner cylinder, a circulating heating pipeline and a drainage pipeline;
  • the circulating heating pipeline includes a water containing chamber and a heating device;
  • the water containing chamber It has a water inlet, a circulating water outlet and a drainage outlet;
  • the water inlet is connected with the inner cavity of the inner cylinder, so that the water in the inner cylinder enters the water containing cavity through the water inlet;
  • the circulating water outlet It is connected with the inner cavity of the inner cylinder;
  • the inlet of the drainage pipeline is connected with the drainage outlet;
  • the heating device is used to control the water entering the water inlet from the water inlet when the clothes processing equipment is in the washing state.
  • the water in the water chamber is heated, so that the heated water enters the inner cavity of the inner cylinder through the circulating water outlet, and is used to stop heating when the clothes processing equipment is in a non-washing state, so as to The water entering the water-containing cavity is allowed to enter the drainage pipeline through the drainage port and be discharged.
  • the clothes processing equipment provided by the embodiment of the present disclosure is provided with a circulating heating pipeline to circulate
  • the ring heating pipeline includes a water chamber and a heating device, so that the water inlet of the water chamber is connected to the inner chamber of the inner cylinder, and the circulating water outlet of the water chamber is connected to the inner chamber of the inner cylinder, so that the water in the inner cylinder can pass through
  • the water inlet, water chamber, and circulating water outlet recirculate back into the inner cylinder for washing.
  • the water entering the water chamber from the water inlet is heated by the heating device.
  • the heated water then enters the circulating water outlet through the circulating water outlet.
  • the water in the inner cavity of the inner cylinder is heated cyclically through the circulating heating pipeline, thereby improving the washing effect of the clothes and effectively improving the washing cleanliness of the clothes.
  • a drainage outlet is opened in the water-containing cavity, and the inlet of the drainage pipeline is connected to the drainage outlet of the water-containing cavity, thereby realizing drainage. That is, the drainage pipeline uses a part of the circulating heating pipeline to communicate with the inner cavity of the inner cylinder.
  • the heating The device stops heating the water entering the water chamber from the water inlet, thus saving energy consumption.
  • the circulating heating pipeline includes a water container, and the inner cavity of the water container is formed as the water container; and the heating device is arranged in the water container.
  • the heating device is arranged in the water tank, so that the water tank can collect the heat released by the heating device to a certain extent, reducing the heat dissipation of the heating device, and improving the heating of the water in the water chamber by the heating device. efficiency, further improving the heating efficiency of the water in the inner cylinder.
  • the water tank also has a protective effect on the heating device.
  • the heating device includes a heating tube; there are at least two heating tubes, and at least two of the heating tubes are arranged at intervals in the water-containing chamber.
  • the heating efficiency of the heating device for the water in the water chamber is further improved, so that the heating efficiency of the water in the inner cylinder and the washing cleanliness of the clothes are higher.
  • the circulating water outlet is located away from the water inlet.
  • the circulation path and time of water in the water-containing cavity are extended, and the contact time between the water and the heat released by the heating device is longer, thereby improving the relationship between the heat released by the heating device and the water in the water-containing cavity.
  • the heat exchange efficiency further improves the heating efficiency of the heating device for water in the water chamber.
  • the circulating heating pipeline includes a circulating pump and a water outlet
  • the inner cylinder has a water outlet
  • the inlet of the water outlet pipe is connected to the water outlet
  • the outlet of the water outlet pipe is connected to the water outlet.
  • the inlet end of the circulation pump is connected to the water inlet
  • the outlet end of the circulation pump is connected to the water inlet.
  • the structure is simple and easy to connect.
  • a lint filter is provided at the inlet end of the circulation pump.
  • a lint filter is provided at the water inlet.
  • the circulating heating pipeline includes a return pipe, the inlet of the return pipe is connected to the circulating water outlet, the inner cylinder has a return port, and the outlet of the return pipe is connected to the return port, so as to The water heated by the heating device is allowed to enter the inner cylinder from the water return port.
  • the circulating water outlet of the water chamber and the return port of the inner cylinder are connected through a return pipe.
  • the structure is simple and easy to assemble. At the same time, the layout of the water chamber is made more flexible.
  • the drainage pipeline includes a drainage pump and a drainage pipe, the liquid inlet of the drainage pump is connected to the drainage outlet, and the drainage pipe is connected to the liquid outlet of the drainage pump.
  • the structure is simple and easy to assemble.
  • the liquid inlet of the drainage pump is disposed directly opposite the drainage outlet.
  • the inner cylinder has a central rotating shaft, which passes through the rear cover of the inner cylinder.
  • the central rotating shaft has a water passage connected with the inner cavity of the inner cylinder, and the water inlet It is connected with the water passage, so that the water in the inner cylinder enters the water chamber through the water passage and the water inlet.
  • a communication piece is provided on the outside of the inner cylinder, and the outlet end of the central rotating shaft is rotatably connected to the communication piece.
  • the communication piece has a communication channel, and the outlet of the water passage is connected to the communication piece.
  • the inlet of the communication channel is connected, and the outlet of the communication channel is connected with the water inlet.
  • a connecting piece is provided on the outside of the inner cylinder, and the inner cylinder can rotate relative to the connecting piece.
  • the water-containing chamber is connected with the inner cavity of the inner cylinder through the connecting piece and the central rotating shaft, so that the inner cylinder can rotate relative to the water-containing chamber, and the water-containing chamber It will not interfere with the rotation of the inner cylinder, has a simple structure and is easy to assemble.
  • the communication piece is provided with a water injection port for communicating with the water inlet pipe.
  • the water injection port is connected with the outlet end of the central rotating shaft through the communication channel to provide water to the inner cylinder through the water inlet pipe. Fill the inner cavity with water.
  • the inner cavity of the inner cylinder can be connected to the water inlet pipe through the connecting piece, and can also be connected to the circulating heating pipeline. In other words, it can be connected through the water inlet pipe, the connecting channel of the connecting piece, and the water passage of the central rotating shaft. Fill the inner barrel with water.
  • the water in the inner cylinder can enter the circulating heating pipeline through the water passage of the central rotating shaft and the connecting channel of the connecting piece, and is heated by the heating device in the circulating heating pipeline. It flows into the inner cavity of the inner cylinder, has a simple structure and is easy to connect, which helps save assembly costs.
  • the water-containing chamber is also provided with a detection device for detecting the liquid level in the water-containing chamber; the detection device is electrically connected to the heating device, and the heating device is used to detect the liquid level in the water-containing chamber.
  • the detection device detects that the liquid level in the water-containing chamber is not less than a preset liquid level threshold, the water in the water-containing chamber is heated.
  • the detection device detects that the liquid level in the water chamber is less than the preset liquid level threshold, the heating device will not heat the water in the water chamber. In this way, the detection device can It protects the water-containing cavity, effectively prevents the water-containing cavity from dry burning, and improves the safety of use and the service life of the circulating heating pipeline.
  • the detection device includes a reed switch and a magnetic float; the reed switch is relatively fixed to the cavity wall of the heating chamber; the float floats on the liquid surface in the water chamber, and the The float cooperates with the reed switch to detect the liquid level in the water chamber.
  • the magnetic float rises and falls with the rise and fall of the liquid level in the water chamber.
  • the reed switch can detect the magnetic float.
  • the heating device can heat the water in the water-containing cavity, thereby realizing the cyclic heating of the water in the inner cavity of the inner cylinder. If the liquid level in the water-containing chamber is less than the preset liquid level threshold, the reed switch cannot detect the magnetic float, and the heating device stops heating the water in the water-containing chamber, thereby protecting the water-containing chamber and effectively This prevents the water chamber from dry burning.
  • Figure 1 is an isometric view of the laundry treatment device from a first perspective according to an embodiment of the present disclosure
  • Figure 2 is a second perspective isometric view of the laundry treatment device according to an embodiment of the present disclosure, in which the inner tube is removed;
  • Figure 3 is a schematic diagram of the connection between the water tank and the drainage pipeline of the laundry treatment equipment according to the embodiment of the present disclosure from a first perspective;
  • FIG. 4 is a schematic diagram of the connection between the water tank and the drainage pipeline of the laundry treatment equipment according to the embodiment of the present disclosure from a second perspective;
  • Figure 5 is a schematic structural diagram of the water tank of the laundry treatment equipment according to the embodiment of the present disclosure.
  • Figure 6 is a schematic structural diagram of a circulation pump of the laundry treatment equipment according to an embodiment of the present disclosure.
  • the clothes processing device may be, for example, a drum washing machine. Specifically, it may be a drum washing machine without an outer drum.
  • the clothes treatment equipment provided in this embodiment includes an inner cylinder 1, a circulating heating pipeline 2 and a drainage pipeline 3.
  • the inner cylinder 1 may be a non-porous inner cylinder 1, for example.
  • the circulating heating pipeline 2 includes a water containing chamber and a heating device 22.
  • the water containing chamber has a water inlet 211, a circulating water outlet 212 and a drainage port 213.
  • the water inlet 211 is connected with the inner cavity of the inner cylinder 1, so that the water in the inner cylinder 1 can enter into the water containing chamber through the water inlet 211;
  • the circulating water outlet 212 is connected with the inner cavity of the inner cylinder 1, so that the water can be contained.
  • the water in the cavity can flow back into the inner cylinder 1 through the circulating water outlet 212 for recycling; the inlet of the drainage pipeline 3 is connected to the drainage port 213, that is, the drainage pipeline 3 is connected to the water-containing cavity, so that the water in the water-containing cavity The water can also enter the drainage pipe 3 through the drainage outlet 213 and be discharged.
  • the heating device 22 is used to heat the water entering the water chamber from the water inlet 211 when the clothes processing equipment is in the washing state, so that the heated water enters the inner cavity of the inner cylinder 1 through the circulating water outlet 212. That is, both ends of the circulating heating pipe 2 are respectively connected with the inner cavity of the inner cylinder 1 , and the washing water in the non-porous inner cylinder 1 can be circulated and heated through the circulating heating pipe 2 .
  • the circulating heating pipe 2 does not interfere with the rotation of the inner cylinder 1.
  • the water in the inner cylinder 1 enters the water chamber through the water inlet 211.
  • the heating device 22 heats the water in the water chamber, and the water chamber is heated.
  • the final water returns to the inner cylinder 1 of the inner cylinder 1 through the circulating water outlet 212, thereby realizing the effect of circulating water heating in the inner cylinder 1 through the circulating heating pipeline 2, thus improving the washing effect of clothes and effectively improving the washing efficiency of the clothes.
  • the cleanliness of laundry is
  • the clothes processing equipment is in a washing state, such as a normal state. Washing, soaking, rinsing and other undrained conditions.
  • the heating device 22 is also used to stop heating when the clothes treatment equipment is in a non-washing state, so that the water entering the water chamber can enter the drainage pipe 3 through the drainage port 213 and be discharged.
  • the water in the inner cylinder 1 enters the water containing cavity through the water inlet 211.
  • the heating device 22 does not heat the water in the water containing cavity, and the water containing cavity
  • the water in the inner cylinder 1 enters the drainage pipe 3 through the drain port 213 and is discharged. In this way, when the clothes processing equipment is in a non-washing state, the water in the inner cylinder 1 can be discharged through the water containing chamber and the drainage pipe 3.
  • the clothes processing equipment when in a non-washing state, it may be in a state that requires drainage such as dehydration.
  • the heating device 22 can be electrically connected to the controller of the clothes processing equipment, and the working status of the heating device 22 can be controlled by the controller, such as starting heating, stopping heating, heating power, etc. Specifically, when the clothes processing equipment is in the washing state, the controller controls the heating device 22 to turn on heating, and the heating device 22 heats the water entering the water chamber. When the clothes processing equipment is in a non-washing state, the controller controls the heating device 22 to stop heating, and the heating device 22 does not heat the water in the water chamber, thereby saving costs.
  • the heating device 22 may not be electrically connected to the controller of the laundry treatment equipment, but may have an independent control module through which the working state of the heating device 22 is controlled. It can be understood that the control module of the heating device 22 is electrically connected to the controller of the laundry treatment equipment.
  • the clothes processing equipment provided in this embodiment is provided with a circulating heating pipeline 2, which includes a water containing chamber and a heating device 22, so that the water inlet 211 of the water containing chamber is connected with the inner cavity of the inner cylinder 1, so that the water containing chamber can be
  • the circulating water outlet 212 of the water chamber is also connected to the inner cavity of the inner barrel 1, so that the water in the inner barrel 1 can be recirculated back to the inner barrel 1 through the water inlet 211, the water chamber, and the circulating water outlet 212 to achieve washing.
  • the water entering the water chamber from the water inlet 211 can be heated by the heating device 22, and the heated water enters the inner cylinder 1 through the circulating water outlet 212, thereby realizing the heating of the inner cylinder through the circulating heating pipeline 2.
  • the water in the inner cavity of the drum 1 is circulated and heated, thereby improving the washing effect of the clothes and effectively improving the washing cleanliness of the clothes.
  • a drainage outlet 213 is opened in the water chamber, and the entrance of the drainage pipeline 3 is It is connected with the drain port 213 of the water chamber to achieve drainage, that is, the drainage pipeline 3 uses a part of the circulating heating pipeline 2 to communicate with the inner cavity of the inner cylinder 1, and directly enters the drainage pipeline 3 for discharge, thereby saving
  • the space occupied by the drainage pipeline 3 has a high space utilization rate and provides a larger assembly space for other components.
  • the heating device 22 stops heating the water entering the water chamber from the water inlet 211, thereby saving energy consumption.
  • the clothes treatment equipment can specifically be a clothes treatment equipment without an outer cylinder.
  • the clothes treatment equipment includes an outer shell and the above-mentioned inner cylinder arranged in the outer shell.
  • the circulating heating pipeline and the drainage pipeline are located between the outer wall of the inner cylinder and the inner wall of the outer shell. space, and the drainage pipe passes through the housing to drain water to the outside of the laundry treatment equipment without an outer cylinder.
  • the clothes processing equipment provided by this embodiment can specifically solve the problem of heating washing water in clothes processing equipment without an outer drum (such as a washing machine without an outer drum).
  • the circulating heating pipeline 2 includes a water tank 21, the inner cavity of the water tank 21 is formed as a water tank, and the heating device 22 is arranged in the water tank.
  • the heating device 22 is arranged in the water tank 21, so that the water tank 21 can contain and collect the heat released by the heating device 22 to a certain extent, thereby reducing the heat dissipation of the heating device 22 and improving the efficiency of the heating device. 22 further improves the heating efficiency of the water in the water chamber 1.
  • the water tank 21 also has a protective effect on the heating device 22.
  • the heating device 22 may also be disposed outside the water chamber, and the heating device 22 is in heat exchange contact with the outer wall of the water chamber.
  • the outer wall of the water tank 21 has a slot 214 that matches the outer diameter of the water outlet pipe 24 .
  • the outlet pipe 24 is clamped in the slot 214 to facilitate assembly.
  • the heating device 22 includes a heating tube 221 , which is located in the inner cavity of the heating box.
  • the heating tube 221 is used to control the laundry when the laundry treatment equipment is in a washing state.
  • the water entering the water tank 21 through the water inlet 211 is heated.
  • multiple heating tubes 221 can be installed in the heating box, and the multiple heating tubes 221 are arranged at intervals in the water chamber.
  • This design increases the contact area between the water in the water chamber and the heating tubes 221, thereby improving the efficiency of the heating tube.
  • the heating efficiency of the heating device 22 on the water in the water chamber is improved, so that The heating efficiency of water in drum 1 and the washing cleanliness of clothes are higher.
  • the cavity wall of the heating cavity may be a hollow cavity wall, and heating wires, heating films, etc. are provided in the hollow cavity wall to heat the water in the water containing cavity.
  • the circulating water outlet 212 is located away from the water inlet 211 .
  • This design prolongs the circulation path and time of water in the water chamber, so that the water and the heating device 22 can be separated. The contact time of the released heat is longer, thereby improving the heat exchange efficiency between the heat released by the heating device 22 and the water in the water containing cavity, and further improving the heating efficiency of the heating device 22 in heating the water in the water containing cavity.
  • the circulating water outlet 212 and the water inlet 211 of the water containing chamber can be arranged on two opposite side walls of the water containing box 21, of course, or can also be arranged on two adjacent side walls, as long as the circulating water
  • the outlet 212 and the water inlet 211 can be located on both sides of the geometric center of the water tank 21 so as to be far away from each other.
  • the circulating heating pipeline 2 includes a circulating pump 23 and a water outlet pipe 24.
  • the inner cylinder 1 has a water outlet, and the inlet of the water outlet pipe 24 is connected with the water outlet.
  • the water outlet pipe 24 The outlet of the circulation pump 23 is connected with the inlet end 231 of the circulation pump 23, and the outlet end 232 of the circulation pump 23 is connected with the water inlet 211. That is, the inlet end 231 of the circulation pump 23 is connected with the water outlet of the inner cylinder 1 through the water outlet pipe 24.
  • the circulation pump 23 The outlet end 232 is connected with the water inlet 211 of the water chamber.
  • the outlet end 232 of the circulation pump 23 and the water inlet 211 of the water chamber can be connected through, for example, the second connecting pipe 82, which has a simple structure and is easy to assemble.
  • the outlet end 232 of the circulation pump 23 and the water inlet 211 of the water chamber can also be directly connected.
  • the circulation pump 23 is arranged between the water inlet 211 of the water chamber and the water outlet of the inner cylinder 1, so that the water flowing out from the water outlet of the inner cylinder 1 can quickly and smoothly enter the water chamber, which helps to improve the efficiency of the water chamber. Hydronic heating efficiency and drainage efficiency.
  • the pressure of the water flow in the circulation heating pipeline 2 is increased, so that the water maintains a certain flow rate in the circulation heating pipeline 2 and flows back to the inner cylinder 1, thereby improving the circulation efficiency. , further improving the heating efficiency of the water in the inner cylinder 1.
  • the structure is simple and easy to connect.
  • the water inlet 211 of the water containing chamber is connected to the inner cavity of the inner barrel 1, and the inlet end 231 of the circulating pump 23 can be connected to the circulating water outlet 212 of the water containing chamber.
  • the circulating pump The outlet end 232 of the water tank 23 is connected to the inner cavity of the inner cylinder 1, so that the circulation pump 23 is disposed between the circulating water outlet 212 of the water tank 21 and the inner cylinder 1.
  • a lint filter 4 is provided at the inlet end 231 of the circulation pump 23 .
  • the water discharged through the inner cylinder 1 carries impurities such as lint, lint and other impurities will be intercepted and filtered by the lint filter 4 at the inlet end 231 of the circulation pump 23, and the water will pass through the circulation pump. 23 is pumped into the water chamber, thereby avoiding impurities such as lint from clogging and damaging the circulation pump 23 and the heating device 22 in the water chamber, ensuring circulation efficiency and drainage efficiency.
  • the lint filter 4 can be, for example, a filter screen or the like.
  • the lint filter 4 is, for example, detachably connected to the inlet end 231 of the circulation pump 23, which is easy to install and disassemble, and is convenient for cleaning and replacement.
  • a lint filter 4 is provided at the water inlet 211 of the water chamber.
  • impurities such as lint
  • lint and other impurities are intercepted and filtered at the water inlet 211 of the water chamber, and water is pumped into the water chamber through the circulation pump 23, thereby preventing lint and other impurities from entering the water chamber and damaging the heating device 22. It also ensures circulation efficiency and drainage efficiency.
  • the circulating heating pipeline 2 includes a return pipe 25, the inlet of the return pipe 25 is connected with the circulating water outlet 212, the inner cylinder 1 has a return port, and the outlet of the return pipe 25 It is connected with the water return port, that is, the circulating water outlet 212 of the water chamber is connected with the water return port of the inner cylinder 1 through the return pipe 25, so that the water heated by the heating device 22 can enter the inner cylinder 1 from the return port.
  • the circulating water outlet 212 of the water chamber and the return port of the inner cylinder 1 are connected through the return pipe 25.
  • the structure is simple and easy to assemble. At the same time, the layout of the water chamber is made more flexible.
  • the drainage pipeline 3 includes a drainage pump 31 and a drainage pipe 32.
  • the liquid inlet of the drainage pump 31 is connected to the drainage outlet 213 of the water chamber, and the drainage pipe 32 is connected to the drainage port 213 of the water chamber.
  • the liquid outlet 311 of the drainage pump 31 is connected.
  • the space occupied within the clothing processing equipment has high space utilization, providing greater assembly space for other components.
  • the structure is simple and easy to assemble.
  • the liquid inlet of the drainage pump 31 is disposed directly opposite the drainage outlet 213 of the water-containing cavity.
  • Such design reduces the gap between the drainage pump 31 and the drainage opening 213 of the water-containing cavity. The distance allows the drainage pump 31 to be placed close to the drainage outlet 213 of the water chamber, which saves installation space and has high space utilization.
  • liquid inlet of the drainage pump 31 and the drainage outlet 213 of the water chamber can be directly connected together through fasteners such as clamps.
  • fasteners such as clamps.
  • the two can also be connected together through an intermediate pipe section.
  • the inner cylinder 1 has a central rotating shaft, which passes through the back cover of the inner cylinder 1.
  • the central rotating shaft has a water passage connected to the inner cavity of the inner cylinder 1, and the water inlet 211 is connected to the water passage. So that the water in the inner cylinder 1 enters the water chamber through the water channel and the water inlet 211.
  • a communication piece 5 is provided on the outside of the inner cylinder 1 , and the outlet end 232 of the central rotating shaft is rotatably connected to the communication piece 5 .
  • the communication piece 5 has a communication channel through which the water channel passes. The outlet is connected to the entrance of the connecting channel, and the outlet of the connecting channel is connected to the water inlet 211 .
  • a communication piece 5 is provided on the outside of the inner cylinder 1.
  • the inner cylinder 1 can rotate relative to the communication piece 5.
  • the water chamber is connected to the inner cavity of the inner cylinder 1 through the communication piece 5 and the central rotating shaft, so that the inner cylinder 1 can rotate relative to the container 5.
  • the water chamber rotates, and the water containing chamber will not interfere with the rotation of the inner cylinder 1.
  • the structure is simple and easy to assemble.
  • the central rotating shaft may be connected to the communication member 5 through a first connecting pipe 81, for example.
  • One end of the first connecting pipe 81 is rotationally connected to the outlet end 232 of the central rotating shaft, and the other end of the first connecting pipe 81 is connected to the communication channel.
  • the entrances are connected and relatively fixed.
  • outlet end 232 of the central rotating shaft may also be directly rotatably connected to the inlet of the communication channel.
  • the communication piece 5 can be, for example, a solenoid valve.
  • the solenoid valve is connected to the controller circuit of the clothes treatment device. sexual connection.
  • the communication member 5 such as the three-way solenoid valve is provided with a water injection port for communicating with the water inlet pipe 83 , and the water injection port is connected to the outlet end 232 of the central rotating shaft through the communication channel. , to inject water into the inner cavity of the inner cylinder 1 through the water inlet pipe 83.
  • the inner cavity of the inner cylinder 1 can be connected to the water inlet pipe 83 through the connecting piece 5, and can also be connected to the circulating heating pipeline 2, that is, through the water inlet pipe 83, the connecting channel of the connecting piece 5 and the central rotating shaft. Through the water passage, water can be injected into the inner cylinder 1.
  • the water in the inner cylinder 1 can enter the circulating heating pipeline 2 through the water passage of the central rotating shaft and the connecting channel of the connecting piece 5.
  • the heating device 22 heats and then flows into the inner cavity of the inner cylinder 1.
  • the structure is simple and the connection is convenient, which helps to save assembly costs.
  • the water inlet pipe 83 When the three-way solenoid valve is energized, the water inlet pipe 83 is connected to the inner cavity of the inner cylinder 1, and water can be injected into the inner cylinder 1 through the water inlet pipe 83, the communication channel of the connecting piece 5, and the water passage of the central rotating shaft.
  • the water outlet pipe 24 When the three-way valve is de-energized, the water outlet pipe 24 is connected to the inner cavity of the inner cylinder 1, and the water in the inner cylinder 1 can be circulated and heated or the water in the inner cylinder 1 can be discharged through the drainage pipe 3.
  • the water chamber is also provided with a detection device 6 for detecting the liquid level in the water chamber.
  • the detection device 6 is electrically connected to the heating device 22.
  • the heating device 22 is used when the clothes processing equipment is in the washing state. state, and when the detection device 6 detects that the liquid level in the water containing cavity is not less than the preset liquid level threshold, the water in the water containing cavity is heated.
  • the heating device 22 when the clothes processing equipment is in the washing state, if the detection device 6 detects that the liquid level in the water chamber is less than the preset liquid level threshold, the heating device 22 will not heat the water in the water chamber. In this way, The detection device 6 can protect the water-containing cavity, effectively prevent the water-containing cavity from dry burning, and improve the safety of use and the service life of the circulating heating pipeline 2. If the liquid level in the water-containing chamber is higher than or equal to the preset liquid level threshold, the heating device 22 will heat the water in the water-containing chamber, thereby achieving the effect of circulating heating of the water in the inner cylinder 1, which is helpful to Improve the washing effect of clothes.
  • the detection device 6 includes a reed switch 61 and a magnetic float 62; the reed switch 61 is relatively fixed to the wall of the heating chamber; the float floats on the liquid surface in the water chamber, and the float and The reed switch 61 cooperates to detect the liquid level in the water chamber.
  • the magnetic float 62 rises and falls with the rise and fall of the liquid level in the water-containing chamber.
  • the reed switch 61 can detect the magnetism.
  • the float 62 and the heating device 22 can heat the water in the water-containing cavity, thereby realizing the cyclic heating of the water in the inner cavity of the inner cylinder 1 .
  • the reed switch 61 cannot detect the magnetic float 62, and the heating device 22 stops heating the water in the water-containing chamber, thereby protecting the water-containing chamber. function, effectively preventing the water chamber from dry burning.
  • the magnetic float 62 can be, for example, a component with a magnet inside, as long as its density is lower than that of water, it can float on the liquid surface, and it can react magnetically with the reed switch 61 .
  • a guide member 7 such as a guide rod is provided in the water chamber.
  • the guide rod is arranged along the height direction of the water chamber.
  • the magnetic float 62 is movably connected to the guide rod. In this way, the magnetic float 62 moves in the water chamber. In the height direction of the cavity, it can move linearly toward the direction closer to the reed switch 61 or away from the reed switch 61 .
  • the reed switch 61 is an electric switch that is operated by sensing an applied magnetic field. Its basic type is to seal two magnetic reeds in a glass tube. Although the two magnetic reeds overlap, there is a gap in the middle. Small gaps.
  • the controller and the reed switch 61 are electrically connected, and the controller controls the heating device 22 to control the water content. The water in the cavity is heated.
  • the two magnetic reeds When the height of the magnetic float 62 is less than the preset liquid level threshold, the two magnetic reeds will return to the initial position, thereby disconnecting the circuit, and the heating device 22 will not heat the water in the water chamber, thereby heating the water in the water chamber.
  • the water chamber plays a protective role, effectively preventing the water chamber from dry burning.
  • FIG. 1 and 2 there is a base 9 inside the laundry treatment equipment.
  • the circulation pump 23, the drainage pump 31, the water tank 21, etc. can all be fixed on the base 9 to facilitate assembly.

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  • Detail Structures Of Washing Machines And Dryers (AREA)

Abstract

本公开涉及一种衣物处理设备,包括内筒、循环加热管路和排水管路,循环加热管路包括容水腔和加热装置,容水腔具有入水口、循环水出口和排水口;入水口与内筒的内腔连通,循环水出口与内筒的内腔连通,排水管路的入口与排水口连通;加热装置用于在衣物处理设备处于洗涤状态时对容水腔中的水进行加热,以使加热后的水经循环水出口进入至内筒中,这样通过循环加热管路即可对内筒中的水进行循环加热,提高了衣物的洗涤效果,有效提升了衣物的洗涤清洁度。且用于在衣物处理设备处于非洗涤状态时停止加热,以使容水腔中的水经排水口进入至排水管路中排出,节省了能耗和排水管路的占用空间,空间利用率高,为其他零部件提供了更大的装配空间。

Description

衣物处理设备
本公开要求于2022年09月08日提交中国专利局、申请号为2022110965528、发明名称为“衣物处理设备”的中国专利申请的优先权,其全部内容通过引用结合在本公开中。
技术领域
本公开涉及生活电器技术领域,尤其涉及一种衣物处理设备。
背景技术
衣物处理设备,比如洗衣机等,通常包括内筒,衣物放置在内筒中并随着内筒的转动实现洗涤、脱水等操作。
目前,洗衣机在洗涤过程中,洗涤水通常为常温水,进而导致衣物的洗涤效果不佳。
发明内容
本公开至少要解决的技术问题是现有的衣物处理设备的洗涤水通常为常温水,导致衣物的洗涤效果不佳的问题。
为了解决上述技术问题,本公开实施例提供了一种衣物处理设备,包括内筒、循环加热管路和排水管路;所述循环加热管路包括容水腔和加热装置;所述容水腔具有入水口、循环水出口和排水口;所述入水口与所述内筒的内腔连通,以使内筒中的水经所述入水口进入至所述容水腔中;所述循环水出口与所述内筒的内腔连通;所述排水管路的入口与所述排水口连通;所述加热装置用于在所述衣物处理设备处于洗涤状态时对由所述入水口进入至所述容水腔中的水进行加热,以使加热后的水经所述循环水出口进入至所述内筒的内腔中,且用于在所述衣物处理设备处于非洗涤状态时停止加热,以使进入至所述容水腔中的水经所述排水口进入至所述排水管路中排出。
本公开实施例提供的衣物处理设备,通过设置循环加热管路,循 环加热管路包括容水腔和加热装置,使容水腔的入水口与内筒的内腔连通,使容水腔的循环水出口与内筒的内腔连通,这样内筒中的水可经入水口、容水腔、循环水出口重新循环回流到内筒中实现洗涤,此时通过加热装置对由入水口进入到容水腔中的水进行加热,加热后的水再经循环水出口进入到内筒中,从而实现了通过循环加热管路对内筒的内腔中的水进行循环加热的效果,进而提高了衣物的洗涤效果,有效提升了衣物的洗涤清洁度。同时,在容水腔上开设排水口,并将排水管路的入口与容水腔的排水口连通,从而实现排水,即排水管路利用循环加热管路的一部分管段与内筒的内腔连通,直接进入到排水管路中排出,从而节省了排水管路的占用空间,空间利用率高,为其他零部件提供了更大的装配空间;而且当衣物处理设备处于非洗涤状态时,使加热装置停止对由入水口进入至容水腔中的水进行加热,节省了能耗。
可选的,所述循环加热管路包括容水箱,所述容水箱的内腔形成为所述容水腔;所述加热装置设置在所述容水腔内。
将加热装置设置在容水箱中,这样使得容水箱可在一定程度对加热装置释放的热量进行收容聚集,减小了加热装置的热耗散,提高了加热装置对容水腔内的水的加热效率,进一步提高了内筒中的水的加热效率。另外,容水箱对加热装置也具有保护作用。
可选的,所述加热装置包括加热管;所述加热管至少为两个,至少两个所述加热管间隔排布在所述容水腔内。
通过这样设置,进一步提高了加热装置对容水腔内的水的加热效率,这样内筒中的水的加热效率以及衣物的洗涤清洁度更高。
可选的,所述循环水出口远离所述入水口设置。
通过这样设置,延长了水在容水腔内的流通路径和时间,使水与加热装置所释放的热量的接触时间更长,从而提高了加热装置所释放的热量与容水腔内的水的换热效率,进一步提高了加热装置对容水腔内的水的加热效率。
可选的,所述循环加热管路包括循环泵和出水管,所述内筒具有出水口,所述出水管的入口与所述出水口连通,所述出水管的出口与 所述循环泵的入口端连通,所述循环泵的出口端与所述入水口连通。
这样在循环泵的作用下,增加了水流在循环加热管路中的压力,使得水在循环加热管路中保持一定的流量流回到内筒中,提升了循环效率,进一步提高内筒中的水的加热效率。另外,结构简单,方便连接。
可选的,所述循环泵的入口端处设置有毛屑过滤件。
通过这样设置,若经内筒排出的水中携带有毛屑等杂质,在毛屑过滤件的作用下,毛屑等杂质被拦截过滤在循环泵的入口端,水则经循环泵泵入到容水腔中,从而避免了毛屑等杂质堵塞损坏循环泵以及容水腔内的加热装置,保证了循环效率和排水效率。
可选的,所述入水口处设置有毛屑过滤件。
通过这样设置,若经内筒排出的水中携带有毛屑等杂质,在毛屑过滤件的作用下,毛屑等杂质被拦截过滤在容水腔的入水口处,水则经循环泵泵入到容水腔中,从而避免了毛屑等杂质进入到容水腔内损坏加热装置,也保证了循环效率和排水效率。
可选的,所述循环加热管路包括回水管,所述回水管的入口与所述循环水出口连通,所述内筒具有回水口,所述回水管的出口与所述回水口连通,以使经所述加热装置加热后的水自所述回水口进入至所述内筒中。
通过回水管将容水腔的循环水出口和内筒的回水口连通,结构简单,便于装配,同时,使得容水腔的布局更加灵活。
可选的,所述排水管路包括排水泵和排水管,所述排水泵的进液口与所述排水口连通,所述排水管与所述排水泵的出液口连通。
将排水泵的进液口连接在容水腔的排水口处,这样使得排水管路通过循环加热管路的一部分管段与内筒的内腔连通,节省了排水管路在衣物处理设备内的占用空间,空间利用率高,为其他零部件提供了更大的装配空间。另外,结构简单,便于装配。
可选的,所述排水泵的进液口正对所述排水口设置。
通过这样设置,缩小了排水泵与容水腔的排水口之间的距离,使得排水泵靠近容水腔的排水口设置,节省了安装空间,空间利用率高。
可选的,所述内筒具有中心转轴,所述中心转轴经所述内筒的后盖穿出,所述中心转轴具有与所述内筒的内腔连通的过水通道,所述入水口与所述过水通道连通,以使所述内筒中的水经所述过水通道、所述入水口进入至所述容水腔中。
可选的,所述内筒的外侧设置有连通件,所述中心转轴的出口端可转动的连接在所述连通件上,所述连通件具有连通通道,所述过水通道的出口与所述连通通道的入口连通,所述连通通道的出口与所述入水口连通。
在内筒的外侧设置连通件,内筒可相对于连通件转动,容水腔通过连通件以及中心转轴与内筒的内腔连通,这样使得内筒可相对于容水腔转动,容水腔不会对内筒的转动产生干涉,结构简单,便于装配。
可选的,所述连通件上开设有用于与进水管连通的注水口,所述注水口通过所述连通通道与所述中心转轴的出口端连通,以通过所述进水管向所述内筒的内腔中注水。
通过这样设置,内筒的内腔通过连通件既可以与进水管连通,还可以与循环加热管路连通,也就是说,通过进水管、连通件的连通通道以及中心转轴的过水通道就可以向内筒中注水。另外,当衣物处理设备处于洗涤状态时,内筒中的水通过中心转轴的过水通道、连通件的连通通道就可以进入到循环加热管路中,经循环加热管路中的加热装置加热后再流入到内筒的内腔中,结构简单,连接方便,有助于节省装配成本。
可选的,所述容水腔内还设置有用于对所述容水腔中的液位进行检测的检测装置;所述检测装置与所述加热装置电连接,所述加热装置用于在所述衣物处理设备处于洗涤状态时,且在所述检测装置检测到所述容水腔中的液位不小于预设液位阈值时,对所述容水腔中的水进行加热。
通过这样设置,衣物处理设备在洗涤状态时,若检测装置检测到容水腔中的液位小于预设液位阈值,加热装置则对容水腔中的水不进行加热,如此,检测装置可对容水腔起到保护作用,有效防止了容水腔被干烧,提高了使用安全性性以及循环加热管路的使用寿命。
可选的,所述检测装置包括干簧管以及磁性浮子;所述干簧管与所述加热腔的腔壁相对固定;所述浮子漂浮在所述容水腔内的液面上,所述浮子与所述干簧管配合,以检测所述容水腔中的液位。
通过这样设置,磁性浮子随着容水腔内液面的升降而升降,具体使用时,若容水腔中的液位不小于预设液位阈值时,干簧管就可以检测到磁性浮子,加热装置即可对容水腔中的水进行加热,从而实现了对内筒的内腔中的水进行循环加热。若容水腔中的液位小于预设液位阈值时,干簧管就检测不到磁性浮子,加热装置停止对容水腔中的水进行加热,从而对容水腔起到保护作用,有效防止了容水腔被干烧。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本公开的实施例,并与说明书一起用于解释本公开的原理。
为了更清楚地说明本公开实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,对于本领域普通技术人员而言,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本公开实施例所述衣物处理设备的第一视角的轴测图;
图2为本公开实施例所述衣物处理设备的第二视角的轴测图,其中去除了内筒;
图3为本公开实施例所述衣物处理设备的容水箱与排水管路的第一视角的连接示意图;
图4为本公开实施例所述衣物处理设备的容水箱与排水管路的第二视角的连接示意图;
图5为本公开实施例所述衣物处理设备的容水箱的结构示意图;
图6为本公开实施例所述衣物处理设备的循环泵的结构示意图。
其中,1、内筒;2、循环加热管路;21、容水箱;211、入水口;212、循环水出口;213、排水口;214、卡槽;22、加热装置;221、加热管;23、循环泵;231、入口端;232、出口端;24、出水管;25、回水管;3、排水管路;31、排水泵;311、出液口;32、排水管;4、毛屑过滤件;5、连通件;6、检测装置;61、干簧管;62、磁性浮子; 7、导向件;81、第一连接管;82、第二连接管;83、进水管;9、基座。
具体实施方式
为使本公开实施例的目的、技术方案和优点更加清楚,下面将对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开的一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动的前提下所获得的所有其他实施例,都属于本公开保护的范围。
参考图1至图6中所示,本实施例提供了一种衣物处理设备,该衣物处理设备比如可以是滚筒洗衣机,具体地,可以是无外筒的滚筒洗衣机。
本实施例提供的衣物处理设备包括内筒1、循环加热管路2和排水管路3,内筒1比如可以是无孔内筒1。循环加热管路2包括容水腔和加热装置22,该容水腔具有入水口211、循环水出口212和排水口213。其中,入水口211与内筒1的内腔连通,从而可使内筒1中的水经入水口211进入至容水腔中;循环水出口212与内筒1的内腔连通,这样容水腔中的水经循环水出口212就可以重新回流至内筒1中,循环使用;排水管路3的入口与排水口213连通,即排水管路3与容水腔连通,这样容水腔中的水也可经排水口213进入到排水管路3中排出。
加热装置22用于在衣物处理设备处于洗涤状态时对由入水口211进入至容水腔中的水进行加热,以使加热后的水经循环水出口212进入至内筒1的内腔中,即,循环加热管路2的两端分别与内筒1的内腔连通,通过该循环加热管路2可实现无孔内筒1内的洗涤水的循环加热。循环加热管路2不干涉内筒1的转动。
具体使用时,衣物处理设备处于洗涤状态时,内筒1中的水经入水口211进入到容水腔中,同时,加热装置22对容水腔中的水进行加热,容水腔内被加热后的水再经循环水出口212返回到内筒1的内筒1中,从而通过循环加热管路2实现了内筒1中的水循环加热的效果,进而提高了衣物的洗涤效果,有效提升了衣物的洗涤清洁度。
在此需要说明的是,衣物处理设备处于洗涤状态比如可以是正常 洗涤、浸洗、漂洗等不排水的状态。
并且,加热装置22还用于在衣物处理设备处于非洗涤状态时停止加热,以使进入至容水腔中的水经排水口213进入至排水管路3中排出。
具体使用时,衣物处理设备处于非洗涤状态时,内筒1中的水经入水口211进入到容水腔中,此时,加热装置22并不对容水腔中的水进行加热,容水腔中的水经排水口213进入到排水管路3中排出,这样在衣物处理设备处于非洗涤状态时,通过容水腔以及排水管路3就可以将内筒1中的水排出。
在此需要说明的是,衣物处理设备处于非洗涤状态比如可以是脱水等需要排水的状态。
在本实施例中,加热装置22可以与衣物处理设备的控制器电性连接,通过控制器来控制加热装置22的工作状态,比如开启加热、停止加热、加热功率等。具体地,当衣物处理设备处于洗涤状态时,控制器控制加热装置22开启加热,加热装置22对进入到容水腔中的水进行加热。当衣物处理设备处于非洗涤状态时,控制器控制加热装置22停止加热,加热装置22不对容水腔中的水进行加热,节省成本。
在另一些实施例中,加热装置22也可以不与衣物处理设备的控制器电性连接,而是具有独立的控制模块,通过该控制模块来控制加热装置22的工作状态。可以理解的是,加热装置22的控制模块与衣物处理设备的控制器电性连接。
本实施例提供的衣物处理设备,通过设置循环加热管路2,循环加热管路2包括容水腔和加热装置22,使容水腔的入水口211与内筒1的内腔连通,使容水腔的循环水出口212也与内筒1的内腔连通,这样内筒1中的水可经入水口211、容水腔、循环水出口212重新循环回流到内筒1中实现洗涤,此时通过加热装置22可对由入水口211进入到容水腔中的水进行加热,加热后的水再经循环水出口212进入到内筒1中,从而实现了通过循环加热管路2对内筒1的内腔中的水进行循环加热的效果,进而提高了衣物的洗涤效果,有效提升了衣物的洗涤清洁度。同时,在容水腔上开设排水口213,并将排水管路3的入口 与容水腔的排水口213连通,从而实现排水,即排水管路3利用循环加热管路2的一部分管段与内筒1的内腔连通,直接进入到排水管路3中排出,从而节省了排水管路3的占用空间,空间利用率高,为其他零部件提供了更大的装配空间。而且当衣物处理设备处于非洗涤状态时,使加热装置22停止对由入水口211进入至容水腔中的水进行加热,节省了能耗。
该衣物处理设备具体可以为无外筒的衣物处理设备,比如,衣物处理设备包括外壳和设置在外壳内的上述内筒,循环加热管路和排水管路位于内筒的外壁和外壳的内壁之间,且排水管路经外壳穿出,以将水排出至无外筒的衣物处理设备的外部。
本实施例提供的衣物处理设备具体可解决无外筒衣物处理设备(比如无外筒洗衣机)对洗涤水的加热问题。
参考图1、图3至图5中所示,循环加热管路2包括容水箱21,容水箱21的内腔形成为容水腔,加热装置22设置在容水腔内。
具体实现时,将加热装置22设置在容水箱21中,这样使得容水箱21可在一定程度对加热装置22释放的热量进行收容聚集,减小了加热装置22的热耗散,提高了加热装置22对容水腔内的水的加热效率,进一步提高了内筒1中的水的加热效率。另外,容水箱21对加热装置22也具有保护作用。
在另一些实施例中,加热装置22也可以设置在容水腔的外侧,且加热装置22与容水腔的外壁换热接触。
进一步地,参考图3至图5中所示,容水箱21的外壁上具有与出水管24的外径相匹配的卡槽214,出水管24夹设在卡槽214内,便于装配。
在一些实施例中,参考图3和图5中所示,加热装置22包括加热管221,加热管221位于加热箱的内腔中,加热管221用于在衣物处理设备处于洗涤状态时对由入水口211进入至容水箱21中的水进行加热。
其中,在加热箱内可以设置多个加热管221,多个加热管221间隔排布在容水腔内,如此设计,增大了容水腔内的水与加热管221的接触面积,从而提高了加热装置22对容水腔内的水的加热效率,这样内 筒1中的水的加热效率以及衣物的洗涤清洁度更高。
具体实现时,加热腔的腔壁可以是中空腔壁,在中空腔壁内设置有加热丝、加热膜等,以对容水腔中的水进行加热。
在一些实施例中,参考图2至图5中所示,循环水出口212远离入水口211设置,如此设计,延长了水在容水腔内的流通路径和时间,使水与加热装置22所释放的热量的接触时间更长,从而提高了加热装置22所释放的热量与容水腔内的水的换热效率,进一步提高了加热装置22对容水腔内的水的加热效率。
具体实现时,容水腔的循环水出口212和入水口211比如可以设置在容水箱21的两个相对的侧壁上,当然,也可以设置在两个相邻的侧壁上,只要循环水出口212和入水口211分设在容水箱21的几何中心的两侧实现远离设置即可。
在一些实施例中,参考图1和图2中所示,循环加热管路2包括循环泵23和出水管24,内筒1具有出水口,出水管24的入口与出水口连通,出水管24的出口与循环泵23的入口端231连通,循环泵23的出口端232与入水口211连通,即,循环泵23的入口端231通过出水管24与内筒1的出水口连通,循环泵23的出口端232与容水腔的入水口211连通。
其中,循环泵23的出口端232与容水腔的入水口211比如可以通过第二连接管82连通,结构简单,便于装配。当然,循环泵23的出口端232与容水腔的入水口211也可以直接连通。
将循环泵23设置在容水腔的入水口211与内筒1的出水口之间,这样从内筒1的出水口流出的水可快速、顺畅的进入到容水腔中,有助于提高循环加热效率和排水效率。
具体使用时,在循环泵23的作用下,增加了水流在循环加热管路2中的压力,使得水在循环加热管路2中保持一定的流量流回到内筒1中,提升了循环效率,进一步提高内筒1中的水的加热效率。另外,结构简单,方便连接。
在另一些实施例中,容水腔的入水口211与内筒1的内腔连通,循环泵23的入口端231可以与容水腔的循环水出口212连通,循环泵 23的出口端232与内筒1的内腔连通,如此将循环泵23设置在容水箱21的循环水出口212与内筒1之间。
在一些实施例中,参考图6中所示,循环泵23的入口端231处设置有毛屑过滤件4。
具体使用时,若经内筒1排出的水中携带有毛屑等杂质,在毛屑过滤件4的作用下,毛屑等杂质被拦截过滤在循环泵23的入口端231,水则经循环泵23泵入到容水腔中,从而避免了毛屑等杂质堵塞损坏循环泵23以及容水腔内的加热装置22,保证了循环效率和排水效率。
其中,毛屑过滤件4比如可以是过滤网等。
另外,毛屑过滤件4比如是可拆卸地连接在循环泵23的入口端231,安装拆卸方便,便于清理和更换。
在另一些实施例中,容水腔的入水口211处设置有毛屑过滤件4,如此设计,若经内筒1排出的水中携带有毛屑等杂质,在毛屑过滤件4的作用下,毛屑等杂质被拦截过滤在容水腔的入水口211处,水则经循环泵23泵入到容水腔中,从而避免了毛屑等杂质进入到容水腔内损坏加热装置22,也保证了循环效率和排水效率。
在一些实施例中,参考图1和图2中所示,循环加热管路2包括回水管25,回水管25的入口与循环水出口212连通,内筒1具有回水口,回水管25的出口与回水口连通,即,容水腔的循环水出口212通过回水管25与内筒1的回水口连通,从而可使经加热装置22加热后的水自回水口进入至内筒1中。
通过回水管25将容水腔的循环水出口212和内筒1的回水口连通,结构简单,便于装配,同时,使得容水腔的布局更加灵活。
在本实施例中,参考图1至图4中所示,排水管路3包括排水泵31和排水管32,排水泵31的进液口与容水腔的排水口213连通,排水管32与排水泵31的出液口311连通。
将排水泵31的进液口连接在容水腔的排水口213处,这样使得排水管路3通过循环加热管路2的一部分管段与内筒1的内腔连通,节省了排水管路3在衣物处理设备内的占用空间,空间利用率高,为其他零部件提供了更大的装配空间。另外,结构简单,便于装配。
进一步地,参考图2和图4中所示,排水泵31的进液口正对容水腔的排水口213设置,如此设计,缩小了排水泵31与容水腔的排水口213之间的距离,使得排水泵31靠近容水腔的排水口213设置,节省了安装空间,空间利用率高。
具体实现时,排水泵31的进液口与容水腔的排水口213可以通过紧固件比如卡箍等直接连接在一起。当然,也可以通过中间管段将两者连接在一起。
在一些实施例中,内筒1具有中心转轴,中心转轴经内筒1的后盖穿出,中心转轴具有与内筒1的内腔连通的过水通道,入水口211与过水通道连通,以使内筒1中的水经过水通道、入水口211进入至容水腔中。
将容水腔的入水口211与过水通道连通,也就是说,容水腔通过内筒1的中心转轴与内筒1的内腔连通,这样容水腔的入水口211不会对内筒1的转动产生干涉,连接方便,便于装配。同时,无需在内筒1上专门设置既要避让内筒1的转动、又要连通内筒1和容水腔的连接管段,空间利用率高,节省成本。
进一步地,参考1和图2中所示,内筒1的外侧设置有连通件5,中心转轴的出口端232可转动的连接在连通件5上,连通件5具有连通通道,过水通道的出口与连通通道的入口连通,连通通道的出口与入水口211连通。
在内筒1的外侧设置连通件5,内筒1可相对于连通件5转动,容水腔通过连通件5以及中心转轴与内筒1的内腔连通,这样使得内筒1可相对于容水腔转动,容水腔不会对内筒1的转动产生干涉,结构简单,便于装配。
具体实现时,中心转轴比如可以通过第一连接管81与连通件5连通,其中,第一连接管81的一端与中心转轴的出口端232转动连接,第一连接管81的另一端与连通通道的入口连通且相对固定。
在另一些实施例中,中心转轴的出口端232也可以直接与连通通道的入口转动连接。
连通件5比如可以是电磁阀,电磁阀与衣物处理设置的控制器电 性连接。
在一些实施例中,参考图1和图2中所示,连通件5比如三通电磁阀上开设有用于与进水管83连通的注水口,注水口通过连通通道与中心转轴的出口端232连通,以通过进水管83向内筒1的内腔中注水。
具体使用时,内筒1的内腔通过连通件5既可以与进水管83连通,还可以与循环加热管路2连通,也就是说,通过进水管83、连通件5的连通通道以及中心转轴的过水通道就可以向内筒1中注水。另外,当衣物处理设备处于洗涤状态时,内筒1中的水通过中心转轴的过水通道、连通件5的连通通道就可以进入到循环加热管路2中,经循环加热管路2中的加热装置22加热后再流入到内筒1的内腔中,结构简单,连接方便,有助于节省装配成本。
其中,当三通电磁阀通电时,进水管83与内筒1的内腔连通,通过进水管83、连通件5的连通通道以及中心转轴的过水通道就可以向内筒1中注水。当三通阀不通电时,出水管24与内筒1的内腔连通,可以对内筒1中的水进行循环加热或者将内筒1中的水通过排水管路3排出。
在一些实施例中,容水腔内还设置有用于对容水腔中的液位进行检测的检测装置6,检测装置6与加热装置22电连接,加热装置22用于在衣物处理设备处于洗涤状态时,且在检测装置6检测到容水腔中的液位不小于预设液位阈值时,对容水腔中的水进行加热。
具体使用时,当衣物处理设备在洗涤状态时,若检测装置6检测到容水腔中的液位小于预设液位阈值,加热装置22则对容水腔中的水不进行加热,如此,检测装置6可对容水腔起到保护作用,有效防止了容水腔被干烧,提高了使用安全性性以及循环加热管路2的使用寿命。若容水腔中的液位高于或等于预设液位阈值,加热装置22则对容水腔中的水进行加热,从而实现对内筒1中的水进行循环加热的效果,有助于提高衣物的洗涤效果。
参考图4和图5中所示,检测装置6包括干簧管61以及磁性浮子62;干簧管61与加热腔的腔壁相对固定;浮子漂浮在容水腔内的液面上,浮子与干簧管61配合,以检测容水腔中的液位。
具体使用时,磁性浮子62随着容水腔内液面的升降而升降,具体使用时,若容水腔中的液位不小于预设液位阈值时,干簧管61就可以检测到磁性浮子62,加热装置22即可对容水腔中的水进行加热,从而实现了对内筒1的内腔中的水进行循环加热。若容水腔中的液位小于预设液位阈值时,干簧管61就检测不到磁性浮子62,加热装置22停止对容水腔中的水进行加热,从而对容水腔起到保护作用,有效防止了容水腔被干烧。
其中,磁性浮子62比如可以是内部具有磁铁的部件,只要其密度小于水能够漂浮在液面上,并能够与干簧管61发生磁性反应即可。
另外,为了提高检测精度,在容水腔内设置有导向件7比如导向杆,导向杆沿容水腔的高度方向设置,磁性浮子62活动连接在导向杆上,如此,磁性浮子62在容水腔的高度方向上,可朝向靠近干簧管61或者远离干簧管61的方向直线移动。
需要说明的是,干簧管61是一种感应所施加的磁场而操作的电开关,其基本型式是将两片磁簧片密封在玻璃管内,两片磁簧片虽重叠,但中间间隔有一小空隙。当磁性浮子62所在的高度大于或者等于预设液位阈值时,磁场的作用使得两片磁簧片接触,控制器与干簧管61电性导通,控制器即控制加热装置22对容水腔内的水进行加热。当磁性浮子62所在的高度小于预设液位阈值时,两片磁簧片将返回至初始位置,进而断开电路,加热装置22就不会对容水腔内的水进行加热,从而对容水腔起到保护作用,有效防止了容水腔被干烧。
参考图1和图2中所示,衣物处理设备内具有基座9,循环泵23、排水泵31、容水箱21等都可以固定在基座9上,便于装配。
需要说明的是,在本文中,诸如“第一”和“第二”等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有 更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
以上所述仅是本公开的具体实施方式,使本领域技术人员能够理解或实现本公开。对这些实施例的多种修改对本领域的技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本公开的精神或范围的情况下,在其它实施例中实现。因此,本公开将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (15)

  1. 一种衣物处理设备,其特征在于,包括内筒、循环加热管路和排水管路;
    所述循环加热管路包括容水腔和加热装置;所述容水腔具有入水口、循环水出口和排水口;所述入水口与所述内筒的内腔连通,以使内筒中的水经所述入水口进入至所述容水腔中;所述循环水出口与所述内筒的内腔连通;所述排水管路的入口与所述排水口连通;
    所述加热装置用于在所述衣物处理设备处于洗涤状态时对由所述入水口进入至所述容水腔中的水进行加热,以使加热后的水经所述循环水出口进入至所述内筒的内腔中,且用于在所述衣物处理设备处于非洗涤状态时停止加热,以使进入至所述容水腔中的水经所述排水口进入至所述排水管路中排出。
  2. 根据权利要求1所述的衣物处理设备,其特征在于,所述循环加热管路包括容水箱,所述容水箱的内腔形成为所述容水腔;
    所述加热装置设置在所述容水腔内。
  3. 根据权利要求2所述的衣物处理设备,其特征在于,所述加热装置包括加热管;
    所述加热管至少为两个,至少两个所述加热管间隔排布在所述容水腔内。
  4. 根据权利要求1所述的衣物处理设备,其特征在于,所述循环水出口远离所述入水口设置。
  5. 根据权利要求1所述的衣物处理设备,其特征在于,所述循环加热管路包括循环泵和出水管,所述内筒具有出水口,所述出水管的入口与所述出水口连通,所述出水管的出口与所述循环泵的入口端连通,所述循环泵的出口端与所述入水口连通。
  6. 根据权利要求5所述的衣物处理设备,其特征在于,所述循环泵的入口端设置有毛屑过滤件。
  7. 根据权利要求1所述的衣物处理设备,其特征在于,所述入水口处设置有毛屑过滤件。
  8. 根据权利要求1所述的衣物处理设备,其特征在于,所述循环加热管路包括回水管,所述回水管的入口与所述循环水出口连通,所述内筒具有回水口,所述回水管的出口与所述回水口连通,以使经所述加热装置加热后的水自所述回水口进入至所述内筒中。
  9. 根据权利要求1所述的衣物处理设备,其特征在于,所述排水管路包括排水泵和排水管,所述排水泵的进液口与所述排水口连通,所述排水管与所述排水泵的出液口连通。
  10. 根据权利要求9所述的衣物处理设备,其特征在于,所述排水泵的进液口正对所述排水口设置。
  11. 根据权利要求1所述的衣物处理设备,其特征在于,所述内筒具有中心转轴,所述中心转轴经所述内筒的后盖穿出,所述中心转轴具有与所述内筒的内腔连通的过水通道,所述入水口与所述过水通道连通,以使所述内筒中的水经所述过水通道、所述入水口进入至所述容水腔中。
  12. 根据权利要求11所述的衣物处理设备,其特征在于,所述内筒的外侧设置有连通件,所述中心转轴的出口端可转动的连接在所述连通件上,所述连通件具有连通通道,所述过水通道的出口与所述连通通道的入口连通,所述连通通道的出口与所述入水口连通。
  13. 根据权利要求12所述的衣物处理设备,其特征在于,所述连通件上开设有用于与进水管连通的注水口,所述注水口通过所述连通通道与所述中心转轴的出口端连通,以通过所述进水管向所述内筒的内腔中注水。
  14. 根据权利要求1至13任一项所述的衣物处理设备,其特征在于,所述容水腔内还设置有用于对所述容水腔中的液位进行检测的检测装置;
    所述检测装置与所述加热装置电连接,所述加热装置用于在所述衣物处理设备处于洗涤状态时,且在所述检测装置检测到所述容水腔中的液位不小于预设液位阈值时,对所述容水腔中的水进行加热。
  15. 根据权利要求14所述的衣物处理设备,其特征在于,所述检测装置包括干簧管以及磁性浮子;
    所述干簧管与所述加热腔的腔壁相对固定;所述浮子漂浮在所述容水腔内的液面上,所述浮子与所述干簧管配合,以检测所述容水腔中的液位。
PCT/CN2023/083894 2022-09-08 2023-03-24 衣物处理设备 WO2024051153A1 (zh)

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CN1378004A (zh) * 2001-03-29 2002-11-06 叶林森 全自动节水洗衣机及其中水利用装置
JP2008073308A (ja) * 2006-09-22 2008-04-03 Toshiba Corp 洗濯機
CN106381635A (zh) * 2016-10-25 2017-02-08 无锡小天鹅股份有限公司 洗衣机
CN106436143A (zh) * 2016-10-25 2017-02-22 无锡小天鹅股份有限公司 洗衣机
CN108866920A (zh) * 2017-05-09 2018-11-23 青岛海尔滚筒洗衣机有限公司 一种滚筒洗衣机
CN212152815U (zh) * 2020-01-17 2020-12-15 青岛海尔洗衣机有限公司 一种洗衣机
CN113605060A (zh) * 2021-08-04 2021-11-05 海信(山东)冰箱有限公司 滚筒洗衣机

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Publication number Priority date Publication date Assignee Title
CN1378004A (zh) * 2001-03-29 2002-11-06 叶林森 全自动节水洗衣机及其中水利用装置
JP2008073308A (ja) * 2006-09-22 2008-04-03 Toshiba Corp 洗濯機
CN106381635A (zh) * 2016-10-25 2017-02-08 无锡小天鹅股份有限公司 洗衣机
CN106436143A (zh) * 2016-10-25 2017-02-22 无锡小天鹅股份有限公司 洗衣机
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CN113605060A (zh) * 2021-08-04 2021-11-05 海信(山东)冰箱有限公司 滚筒洗衣机

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