WO2021057040A1 - Dispositif de stockage d'eau, dispositif d'alimentation en eau sanitaire et dispositif de nettoyage sanitaire - Google Patents

Dispositif de stockage d'eau, dispositif d'alimentation en eau sanitaire et dispositif de nettoyage sanitaire Download PDF

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Publication number
WO2021057040A1
WO2021057040A1 PCT/CN2020/090768 CN2020090768W WO2021057040A1 WO 2021057040 A1 WO2021057040 A1 WO 2021057040A1 CN 2020090768 W CN2020090768 W CN 2020090768W WO 2021057040 A1 WO2021057040 A1 WO 2021057040A1
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WO
WIPO (PCT)
Prior art keywords
water
water tank
buoyancy
storage device
control box
Prior art date
Application number
PCT/CN2020/090768
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English (en)
Chinese (zh)
Inventor
林孝发
林孝山
刘祖华
林山
徐衍新
Original Assignee
厦门科牧智能技术有限公司
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
Priority claimed from CN201921635235.2U external-priority patent/CN210718124U/zh
Priority claimed from CN201921639783.2U external-priority patent/CN210428205U/zh
Application filed by 厦门科牧智能技术有限公司 filed Critical 厦门科牧智能技术有限公司
Publication of WO2021057040A1 publication Critical patent/WO2021057040A1/fr

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47KSANITARY EQUIPMENT NOT OTHERWISE PROVIDED FOR; TOILET ACCESSORIES
    • A47K7/00Body washing or cleaning implements
    • A47K7/04Mechanical washing or cleaning devices, hand or mechanically, i.e. power operated
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D9/00Level control, e.g. controlling quantity of material stored in vessel
    • G05D9/12Level control, e.g. controlling quantity of material stored in vessel characterised by the use of electric means

Definitions

  • the present invention relates to the field of sanitary ware, in particular to a water storage device, a sanitary water supply device and a sanitary cleaning device.
  • the water tank assembly of the existing sanitary cleaning device generally has a flow detector installed at the front end of the water tank water inlet, or a liquid level probe is inserted at a specific position of the water tank to detect whether the cleaning water reaches the upper limit of the water tank, so as to prevent the water tank from continuously entering the water and causing overflow And waste water resources.
  • the purpose of the present invention is to provide a low-cost, safe-to-use water storage device, sanitary water supply device and sanitary cleaning device in view of the technical problems existing in the prior art.
  • a water storage device which is arranged in the cleaning waterway of the sanitary cleaning device, and includes a water tank for storing cleaning water, and the water tank is provided with a water inlet structure and a water outlet structure; Also includes:
  • a buoyancy mechanism which is arranged in the water tank, and the buoyancy mechanism includes a first buoyancy component
  • the control switch is located on the top of the water tank
  • the linkage control switch When the first buoyancy component of the buoyancy mechanism floats to the first position, the linkage control switch outputs a signal for controlling the water tank to stop water intake, and when the first buoyancy component falls to the second position, the linkage control switch output is used to control the water tank Water ingress signal; the first position is higher than the second position.
  • control switch is located outside the water tank; the top wall of the water tank is provided with an accommodation hole, and the top of the first buoyancy component is fitted to the accommodation hole.
  • the top of the first buoyancy member is provided with a plurality of first claws, each of the first claws respectively includes a support arm and a barb provided on the top of the support arm, and the first buoyancy member is in the falling state, and each first pawl
  • the barbs of a claw are respectively hung on the top edge of the accommodating hole;
  • the side of the accommodating hole is provided with a plurality of accommodating grooves that are matched with the arms of the first claw one by one.
  • control switch is a micro switch, and when the first buoyancy member floats to the first position, the action reed of the micro switch is triggered, and when the first buoyancy member falls to the second position Release the action reed of the micro switch.
  • the buoyancy mechanism further includes a control box with an open top, the control box is arranged in the water tank, and the first buoyancy component is arranged in the control box in a liftable manner; the control box is provided with a water inlet and outlet control structure
  • the water inlet and outlet control structure controls the water inlet and outlet status of the control box according to the water level of the water tank, so that the water inlet and outlet time of the control box lags the water inlet and outlet time of the water tank.
  • the bottom end of the control box is higher than the lower limit water level of the water tank, and the top end of the control box is lower than the upper limit water level of the water tank.
  • the water inlet and outlet control structure is an orifice provided on the bottom wall or the bottom of the side wall of the control box, or the water inlet and outlet control structure includes a gasket mounted on the bottom wall of the control box An installation port is provided, and the gasket is provided with a slit connecting the control box and the water tank.
  • the water inlet and outlet control structure includes a water outlet provided on the bottom wall of the control box and a second buoyancy member movably installed at the water outlet. When the second buoyancy member floats up, the water outlet is closed. When the two buoyancy components fall, the water outlet is opened.
  • the outer bottom surface of the control box is provided with a sink groove
  • the water passage is provided at the bottom of the sink groove
  • the groove bottom of the sink groove is provided with an annular water stop flange surrounding the water passage hole.
  • the second buoyancy component cooperates to open or close the water passage.
  • the top of the second buoyancy component is provided with a plurality of second claws distributed along its circumference, each of the second claws respectively includes a support arm and a barb provided on the top of the support arm, and the bottom wall of the control box is
  • the water passage is provided with an annular chuck table extending toward the inside of the control box, and the second buoyancy member is in a falling state, and the barbs of each second jaw are respectively hung on the top edge of the annular chuck table.
  • the second buoyancy component is a float.
  • the water line of the first buoyancy component is flush with the lower limit water level of the water tank;
  • the first buoyancy component is a hollow buoy with an open bottom,
  • the water inlet structure is a water inlet, and the water outlet structure is At the water outlet, the water tank is also provided with an overflow structure.
  • the water inlet structure of the water tank is connected with a water inlet solenoid valve, and the signal output by the control switch is used to control the opening or closing of the water inlet solenoid valve.
  • the present invention also provides a sanitary water supply device, including a heater, a water pump, and the above-mentioned water storage device of the present invention.
  • the heater is used to heat the cleaning water from the water tank, and the water pump provides the transport of the cleaning water. power.
  • the present invention also provides a sanitary cleaning device, including a spraying device for spraying cleaning water, and further comprising the sanitary water supply device according to the present invention, and the spraying device is located at the side of the cleaning waterway where the sanitary water supply device is located. End.
  • the present invention has the following beneficial effects:
  • the buoyancy mechanism cooperates with the control switch to detect the upper and lower limit water levels of the water tank, which not only can effectively control the water inlet situation of the water tank, but also has low cost. It also adopts the hydroelectric separation mode of power-on and water-off, which is safe to use.
  • the control switch is located outside the water tank, which can prevent the micro switch from contacting water, thereby completely realizing the separation of water and electricity, and further improving the safety of use.
  • the buoyancy mechanism also includes the control box and the water inlet and outlet control structure to strictly control the floating and falling states of the first buoyancy component, thereby accurately controlling the upper and lower limit water levels of the water tank.
  • Figure 1 is a schematic diagram of the three-dimensional structure of the water storage device of the present invention (a water-containing pump) in the first embodiment;
  • FIG. 2 is an exploded schematic diagram of the water storage device of the present invention (a water-containing pump) in Embodiment 1;
  • Figure 3 is a cross-sectional view of the first embodiment of the water storage device of the present invention.
  • Figure 4 is a schematic diagram of the first embodiment of the water inlet state of the water storage device of the present invention (initial water inlet);
  • FIG. 5 is a schematic diagram of the water inlet state of the water storage device of the present invention in the first embodiment (water submerges the bottom end of the control box);
  • FIG. 6 is a schematic diagram of the third embodiment of the water inlet state of the water storage device of the present invention (water inlet from the orifice);
  • Figure 7 is a schematic diagram of the fourth embodiment of the water intake state of the water storage device of the present invention (the buoy floats up);
  • FIG. 8 is a schematic diagram of the water inlet state of the water storage device of the present invention in the first embodiment (the water level of the control box is flush with the inside and outside);
  • Figure 9 is a schematic diagram of the water level drop of the water storage device of the present invention in the first embodiment (water out of the orifice);
  • Figure 10 is a schematic diagram of the water level drop of the water storage device of the present invention in the first embodiment (the buoy falls);
  • Figure 11 is an exploded schematic diagram of the buoyancy mechanism of the second embodiment of the present invention.
  • Figure 12 is a cross-sectional view of the second embodiment of the water storage device of the present invention.
  • Figure 13 is an exploded schematic diagram of the buoyancy mechanism of the present invention in the third embodiment
  • Figure 14 is a cross-sectional view of the third embodiment of the water storage device of the present invention.
  • 15 is a schematic diagram of the water inlet state of the water storage device of the present invention in the third embodiment (initial water inlet);
  • Figure 16 is the second embodiment of the second embodiment of the water inlet state of the water storage device of the present invention (the float starts to float);
  • Figure 17 is a third embodiment of the water storage device of the present invention, a schematic diagram of the third state of the water inlet (the water hole is closed);
  • Figure 18 is a third embodiment of the water storage device of the present invention, the water intake state schematic diagram four (floating float);
  • 19 is a schematic diagram of the water inlet state of the water storage device of the present invention in the third embodiment (the water level of the control box is flush with the inside and outside);
  • 20 is a schematic diagram of the water level drop of the water storage device of the present invention in the third embodiment (the water level of the water tank drops);
  • Figure 21 is the second embodiment of the second embodiment of the water level drop of the water storage device of the present invention (the water hole is opened and the buoy falls).
  • Figure 22 is a cross-sectional view of a water tank according to the fourth embodiment of the present invention.
  • Fig. 23 is a schematic diagram of water inlet in the water tank according to the fourth embodiment of the present invention.
  • Embodiment 24 is a schematic diagram of low liquid level detection in Embodiment 4 of the present invention.
  • Figure 25 is a cross-sectional view of Figure 24 or an embodiment
  • FIG. 26 is a schematic diagram of high liquid level detection according to the fourth embodiment of the present invention.
  • Figure 27 is a cross-sectional view of Figure 26 or an embodiment.
  • a water storage device of the present invention is set in the cleaning water path of the sanitary cleaning device, and includes a water tank 1 for storing cleaning water.
  • the water tank 1 is provided with a water inlet structure and a water outlet. Structure, the water inlet structure is specifically a water inlet provided at the bottom of the side wall of the water tank 1, and the water outlet structure is specifically a water outlet provided at the bottom of the side wall of the water tank 1, but is not limited to this.
  • the water tank 1 is also provided with an overflow structure, and the overflow structure is specifically an overflow pipe 11.
  • the water storage device of the present invention also includes:
  • a buoyancy mechanism which is provided in the water tank 1, and the buoyancy mechanism includes a first buoyancy component
  • the control switch is located on the top of the water tank 1;
  • the linkage control switch When the first buoyancy component of the buoyancy mechanism floats to the first position, the linkage control switch outputs a signal for controlling the water tank 1 to stop water intake, and when the first buoyancy component falls to the second position, the linkage control switch output is used for control
  • the water tank 1 is a signal; the first position is higher than the second position.
  • the control switch is located outside the water tank 1; the top wall of the water tank 1 is provided with an accommodation hole 12, and the top of the first buoyancy component is fitted with the accommodation hole 12.
  • a plurality of first claws 21 are provided on the top of the first buoyancy member.
  • Each first claw 21 includes a support arm 211 and a barb 212 provided on the top of the support arm 211.
  • the first buoyancy member is in the falling state, and The barbs 212 of each first pawl 21 are respectively hung on the top edge of the accommodating hole 12; the side of the accommodating hole 12 is provided with a plurality of accommodating arms 211 that are adapted to the first pawl 21 one by one. ⁇ 121 ⁇ Slot 121.
  • the assembly of the first buoyancy component is more convenient, and on the other hand, the arm 211 can be used to cooperate with the receiving groove 121 to achieve the purpose of stopping the rotation of the first buoyancy component, so that the first buoyancy component can only move up and down.
  • the control switch is a micro switch 3.
  • the first buoyancy component is a hollow buoy 2 with an open bottom end, but is not limited to this.
  • the first buoyancy component is a float or a floating ball, etc., and the shape of the control box is suitable for the shape of the buoy 2. Match.
  • the water line of the pontoon 2 is flush with the lower limit water level 14 of the water tank 1.
  • the top of the pontoon 2 is a pushing portion 22, the pushing portion 22 is used to activate the action reed 31 of the micro switch 3 and fits into the accommodation hole 12.
  • the number of the first claws 21 is two, and the two first claws are located on opposite sides of the pushing portion 22.
  • the buoyancy mechanism further includes a control box 6 with an open top.
  • the control box 6 has a bottom wall and surrounding side walls.
  • the control box 6 is arranged in the water tank 1 and the bottom end of the control box 6 is high. At the lower limit water level 14 of the water tank 1, the top end of the control box 6 is lower than the upper limit water level of the water tank 1.
  • the first buoyancy component ie, the buoy 2 is arranged in the control box 6 in a liftable manner.
  • the control box 6 is provided with a water inlet and outlet control structure, which controls the water inlet and outlet status of the control box 6 according to the water level of the water tank 1, so that the inlet and outlet water of the control box 6 lag behind the inlet and outlet water of the water tank 1.
  • the water inlet and outlet control structure is specifically an orifice 61 provided on the bottom wall of the control box 6.
  • the water inlet structure of the water tank 1 (that is, the water inlet) is connected with a water inlet solenoid valve 4, and the signal output by the control switch (ie, the micro switch 3) is used to control the water inlet solenoid valve 4 Turn on or off.
  • the water tank 1 is also equipped with a temperature sensor 7.
  • a water storage device of the present invention has a state before water intake as shown in Figure 3.
  • the water tank 1 and the control box 6 have no water
  • the buoy 2 is in the second position
  • the first jaws 21 of the buoy 2 The barbs 212 are respectively hung on the top edge of the accommodating hole 12 of the water tank 1.
  • the water inlet solenoid valve 4 connected to the water inlet of the water tank 1 is opened, and the water enters the water tank 1, as shown in FIG. 4.
  • the throttle hole 61 at the bottom end of the control box 6 starts to enter water, as shown in FIG. 5.
  • the buoy 2 floats in place, as shown in Figure 8.
  • the micro switch 3 outputs a signal for controlling the water tank 1 to stop the water intake, so that the water inlet solenoid valve 4 is closed, and the water tank 1 stops. Water in.
  • the water level of the water tank 1 drops.
  • the water in the control box 6 starts to be discharged into the water tank 1 through the orifice 61, as shown in FIG.
  • the buoy 2 starts to fall and releases the action reed 31 of the micro switch 3, as shown in Figure 10, makes the micro switch 3 output for controlling the water inflow of the water tank 1. Signal, so that the water inlet solenoid valve 4 is opened, and the water tank 1 starts to enter water.
  • the water storage device of the present invention adopts the buoyancy mechanism and the micro switch 3 to realize the hydroelectric separation mode of power on and off the water, and can effectively control the water inflow of the water tank 1 with low cost and safe use.
  • a sanitary water supply device of the present invention includes a heater (not shown in the figure), a water pump 5, and also includes the above-mentioned water storage device of the present invention.
  • the washing water from the water tank 1 is heated, and the water pump 5 provides the transportation power of the washing water, so that the washing water entering the water tank 1 flows through the heater and is output.
  • the water pump 5 is specifically fixed to the outside of the water tank 1 through a bracket 52, and the water inlet of the water pump 5 is connected to the water outlet of the water tank 1 through a water pipe 51.
  • the heater is arranged on the downstream side of the water pump 5, but is not limited to this. In other embodiments, the heater is arranged between the water tank and the water pump.
  • a sanitary cleaning device of the present invention includes a spraying device for spraying cleaning water, and also includes the sanitary water supply device of the present invention, the spraying device is located at the end of the cleaning water path where the sanitary water supply device is located Specifically, the spray washing device is located on the downstream side of the heater.
  • the water inlet and outlet control structure includes a gasket 8, which is installed in the control box. 6.
  • An installation port 62 is provided on the bottom wall, and the gasket 8 is provided with a slit 81 connecting the water tank 1 and the control box 6.
  • the gasket 8 can be made of silica gel, but is not limited to this.
  • a water storage device of the present invention has the same water inlet and outlet states as in the first embodiment, and therefore, the second embodiment will not be further described.
  • the water inlet and outlet control structure includes a water outlet 63 provided on the bottom wall of the control box 6 and a water storage device.
  • the second buoyancy member movably installed at the water passage 63 will close the water passage 63 when the second buoyancy member floats up, and open the water passage 63 when the second buoyancy member falls.
  • the outer bottom surface of the control box 6 is provided with a sink 64
  • the water passage 63 is provided at the bottom of the sink 64
  • the bottom of the sink 64 is provided with an annular ring surrounding the water passing hole.
  • the water stop flange 641 cooperates with the second buoyancy component to open or close the water passage 63. In this way, the sink groove 64 can be used to guide the vertical movement of the second buoyancy member.
  • the second buoyancy component is specifically a float 9, but it is not limited to this.
  • the top of the float 9 is provided with a number of second pawls 91 distributed along its circumference.
  • Each second pawl 91 includes a support arm 911 and a barb 912 on the top of the support arm 911.
  • the bottom wall of the control box 6 is located at the top of the float 9
  • the water outlet 63 is provided with an annular chuck 65 extending toward the water tank 1, and the second buoyancy member (that is, the float 9) is in a falling state, and the barbs 912 of each second jaw 91 are respectively hung on the annular chuck 65 top edge.
  • the side wall of the annular clamping platform 65 is provided with a water passing hole 651, but it is not limited thereto.
  • a water storage device of the present invention its state before water intake is shown in Figure 14.
  • the water tank 1 and the control box 6 are dry, the float 2 is in the second position, and the second jaws 91 of the float 9 are The barbs 912 are respectively hung on the top edge of the ring card platform 65, and the water outlet 63 is in an open state.
  • the water inlet solenoid valve 4 connected to the water inlet of the water tank 1 is opened, and the water enters the water tank 1, as shown in FIG. 15.
  • the buoy 2 floats in place, as shown in Figure 19.
  • the micro switch 3 outputs a signal for controlling the water tank 1 to stop the water intake, so that the water inlet solenoid valve 4 is closed, and the water tank 1 stops. Water in.
  • the float 9 starts to fall, thereby opening the water outlet 63, so that the water in the control box 6 starts to drain into the water tank 1 through the water outlet 63, and when the water level in the control box 6 drops
  • the pontoon 2 starts to fall and releases the action reed 31 of the micro switch 3, as shown in Figure 21, makes the micro switch 3 output a signal for controlling the water inflow of the water tank 1, so as to make the water inlet solenoid valve 4 is turned on, and water tank 1 starts to enter water.
  • the buoyancy mechanism does not include the control box, but includes a guide member to guide the up and down movement of the first buoyancy member.
  • control switch is a Hall switch
  • a magnet is provided on the first buoyancy component.
  • the Hall switch senses the magnet and outputs it for control.
  • the water tank stops the water intake signal.
  • the Hall switch cannot sense the magnet, and outputs a signal for controlling the water intake of the water tank.
  • a water tank liquid level detection device which is installed in the water tank body; further comprising: a buoyancy mechanism, which is arranged in the water tank;
  • the buoyancy mechanism communicates with the control switch to output first water level information when it floats to the first position, and the buoyancy mechanism communicates with the control switch to output second water level information when it falls to the second position; the first position is higher than the second position.
  • a water tank liquid level detection device is installed in the water tank body 10 and includes a connecting rod 20, a float 30, a magnetic induction switch, etc., and the buoyancy mechanism is a float 30.
  • the water tank body 10 is used to store washing water, and is provided with a water inlet 15 or a water inlet pipe for water inlet; and a water outlet or water outlet pipe 16 for water outlet.
  • the connecting rod 20 is installed in the water tank body 10 and can be installed vertically.
  • the top end is fixed to the top of the water tank body 10 and the bottom end is close to the bottom of the water tank body 10.
  • the float 30 is slidably sleeved outside the connecting rod 20, and can be located at the bottom end under the action of gravity.
  • the connecting rod 20 and the float 30 are in clearance fit to prevent the float from being blocked by impurities.
  • a baffle 40 is provided at the bottom end of the connecting rod 20 to limit the float 30.
  • the magnetic induction switch is arranged on the connecting rod 20 and the float 30.
  • the magnetic induction switch can be set to a normally open type.
  • the magnetic induction switch is turned on and sends the corresponding liquid level information, which is the second position- -Low liquid level information or first position-high liquid level information, etc.
  • the magnetic induction switch includes a reed switch and a magnetic member 35, the reed switch is installed in the connecting rod 20, and the magnetic member 35 is installed in the float 30.
  • the magnetic member 35 is a magnet, which can be ring-shaped, arc-shaped or block-shaped. If it is block-shaped, a limit structure must be provided to prevent the float from rotating relative to the connecting rod.
  • the magnetic member 35 is located on the inner wall of the float 30 and is ring-shaped.
  • the magnetic induction switch is not limited to the reed switch and the magnetic member 31, and can also be realized by a micro switch or the like.
  • the first dry reed switch 25 is located near the top end of the connecting rod 20 and is used to send high liquid level information
  • the second dry reed switch 26 is located near the bottom end of the connecting rod 20 and is used to send information.
  • Low level information The liquid level can be achieved by adjusting the position of the reed switch.
  • the present invention also provides a water tank water inlet mechanism, including a water tank body 10, a water inlet valve, and the above-mentioned water tank liquid level detection device.
  • the water inlet valve is connected with the water inlet 15 of the water tank body 10 to control water inlet.
  • the water inlet valve is controlled by the controller.
  • the working principle of the water tank inlet is as follows:
  • the float 30 When there is no water in the water tank or at a low water level, the float 30 is located at the lowest position under the action of gravity. Under the action of magnetic induction, it triggers the second dry reed switch 26 to turn on, and sends the second position information to the controller to control
  • the device controls the water inlet valve to enter the water, the water level gradually rises, the float 30 also rises relative to the connecting rod 20 under the action of buoyancy, reaches the first dry reed switch 25, triggers the first dry reed switch 25 to turn on, and sends the first position information to Controller, the controller controls the water inlet valve to stop water inlet.
  • the invention discloses a water storage device, a sanitary water supply device and a sanitary cleaning device.
  • the water storage device is arranged in the cleaning water path of the sanitary cleaning device and includes a water tank for storing cleaning water.
  • the water tank is provided with a water inlet structure, The water outlet structure; further comprising: a buoyancy mechanism, which is arranged in the water tank, the buoyancy mechanism includes a first buoyancy component; a control switch, which is arranged on the top of the water tank; the first buoyancy component of the buoyancy mechanism is linked when it floats to the first position
  • the control switch outputs a signal for controlling the water tank to stop the water entering, and the first buoyancy component is linked to the control switch to output a signal for controlling the water entering the water tank when the first buoyancy component falls to the second position; the first position is higher than the second position.
  • the buoyancy mechanism cooperates with the control switch to detect the upper and lower limit water levels of the water tank, which not only can effectively control the water inlet situation of the water tank, but also has low cost. It also adopts the hydroelectric separation mode of power-on and water-off, which is safe to use and has industrial practicability.

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  • Automation & Control Theory (AREA)
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  • Bidet-Like Cleaning Device And Other Flush Toilet Accessories (AREA)

Abstract

L'invention concerne un dispositif de stockage d'eau, un dispositif d'alimentation en eau sanitaire et un dispositif de nettoyage sanitaire. Le dispositif de stockage d'eau est disposé dans une voie d'eau de nettoyage du dispositif de nettoyage sanitaire et comprend un réservoir d'eau (1) utilisé pour stocker de l'eau de nettoyage, et le réservoir d'eau (1) est pourvu d'une structure d'entrée d'eau et d'une structure de sortie d'eau. Le dispositif de stockage d'eau comprend en outre : un mécanisme de flottabilité, qui est disposé dans le réservoir d'eau (1) et comprend un premier élément de flottabilité (2), et un commutateur de commande, qui est disposé au niveau de la partie supérieure du réservoir d'eau (1). Le premier composant de flottabilité (2) du mécanisme de flottabilité, lorsqu'il est amené à flotter dans une première position, est relié au commutateur de commande pour délivrer en sortie un signal afin de commander le réservoir d'eau (1) pour arrêter l'entrée d'eau, le premier composant de flottabilité (2), lorsqu'il est abaissé dans une seconde position, est relié au commutateur de commande (3) pour délivrer en sortie un signal afin de commander le réservoir d'eau (1) pour effectuer l'entrée d'eau, et la première position est supérieure à la seconde position. Le mécanisme de flottabilité correspond au commutateur de commande (3) pour détecter un niveau d'eau limite supérieur et un niveau d'eau limite inférieur du réservoir d'eau (1), de telle sorte que non seulement l'état d'entrée d'eau du réservoir d'eau (1) est efficacement commandée, et le coût est faible, mais un mode de séparation eau-électricité de mise sous tension sans eau est également utilisé, de telle sorte que le mécanisme peut être utilisé en toute sécurité.
PCT/CN2020/090768 2019-09-27 2020-05-18 Dispositif de stockage d'eau, dispositif d'alimentation en eau sanitaire et dispositif de nettoyage sanitaire WO2021057040A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201921635235.2U CN210718124U (zh) 2019-09-27 2019-09-27 一种储水装置及卫生供水装置和卫生清洗装置
CN201921639783.2 2019-09-27
CN201921639783.2U CN210428205U (zh) 2019-09-27 2019-09-27 一种水箱液位检测装置和进水机构
CN201921635235.2 2019-09-27

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WO2021057040A1 true WO2021057040A1 (fr) 2021-04-01

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PCT/CN2020/090768 WO2021057040A1 (fr) 2019-09-27 2020-05-18 Dispositif de stockage d'eau, dispositif d'alimentation en eau sanitaire et dispositif de nettoyage sanitaire

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* Cited by examiner, † Cited by third party
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CN112880109A (zh) * 2021-04-12 2021-06-01 安徽逸天科技有限公司 一种新型空气净化设备
CN112880109B (zh) * 2021-04-12 2024-05-07 安徽逸天科技有限公司 一种新型空气净化设备

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