WO2019226034A1 - Système pour salle de bains économique en eau - Google Patents

Système pour salle de bains économique en eau Download PDF

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Publication number
WO2019226034A1
WO2019226034A1 PCT/KR2019/095018 KR2019095018W WO2019226034A1 WO 2019226034 A1 WO2019226034 A1 WO 2019226034A1 KR 2019095018 W KR2019095018 W KR 2019095018W WO 2019226034 A1 WO2019226034 A1 WO 2019226034A1
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WO
WIPO (PCT)
Prior art keywords
water
control unit
air
auxiliary
drain
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Application number
PCT/KR2019/095018
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English (en)
Korean (ko)
Inventor
손정우
Original Assignee
진명홈바스(주)
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Publication date
Application filed by 진명홈바스(주) filed Critical 진명홈바스(주)
Publication of WO2019226034A1 publication Critical patent/WO2019226034A1/fr

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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/01Domestic plumbing installations for fresh water or waste water; Sinks for combinations of baths, showers, sinks, wash-basins, closets, urinals, or the like
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D1/00Water flushing devices with cisterns ; Setting up a range of flushing devices or water-closets; Combinations of several flushing devices
    • E03D1/003Cisterns in combination with wash-basins, urinals, or the like
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D5/00Special constructions of flushing devices, e.g. closed flushing system
    • E03D5/003Grey water flushing systems
    • E03D5/006Constructional details of cisterns for using greywater

Definitions

  • the present invention relates to a water-saving bathroom system, and more particularly to a water-saving bathroom system that can be utilized by sending the waste water from the faucet to the toilet.
  • a faucet is a device that opens and closes water at the end of a water supply pipe, and can be divided into various types according to an installation location, a use, or a function.
  • Cold water pipes and hot water pipes are installed in a room using hot water such as a bathroom or a shower room.
  • the faucet installed in such a bathroom is provided with a valve device capable of mixing hot and cold water so that the user can adjust the desired water temperature.
  • the hot water pipes such as the bathroom is connected to the boiler
  • the hot water in the pipe from the boiler to the faucet is cooled while not using the faucet. Therefore, even when the mixed water valve is opened to directly use hot water, the cooling water in the pipe flows for a while.
  • the ambient temperature is low, such as winter
  • the time for flowing cold water is long, and the user also starts to come out of hot water and waits until the desired temperature is reached.
  • the waste water used to wait until the desired temperature is reached in the faucet can be sent to both toilets to save water resources.
  • Patent Publication No. 10-1523628 name of the invention: a shower faucet external control system.
  • the present invention is to solve the above-mentioned problems of the prior art, an object of the present invention is to provide a water-saving bathroom system that can be utilized by sending waste water to the toilet bowl to wait until the desired temperature in the faucet.
  • the water discharge cover may close the drain port.
  • the water-saving bathroom system according to the present invention is formed inside the main body portion, it may further include an auxiliary storage of the open top form.
  • the water-saving bathroom system according to the present invention may be introduced into the open upper portion of the auxiliary storage when the water level of the water stored in the body portion is more than a predetermined level.
  • an auxiliary water supply pipe is formed at one side of the auxiliary storage unit, and when the water level of the water stored in the main body is less than a predetermined level, the water of the auxiliary storage unit is supplied through the auxiliary water supply pipe. It can be supplied to the body portion.
  • an auxiliary water control valve is formed at the inlet of the auxiliary water supply pipe, and when the water level of the water stored in the main body is less than a predetermined level, the auxiliary water control valve is opened to provide the auxiliary water supply pipe. Water may be supplied to the main body through the auxiliary storage.
  • the water-saving bathroom system includes an auxiliary base portion floating on the water surface inside the body portion; And an auxiliary water control unit, one end of which is connected to the auxiliary base unit through an open upper portion of the auxiliary storage unit, and the other end of which is connected to the auxiliary water control valve, wherein the water level of the water stored in the main body unit is less than a predetermined level.
  • the auxiliary water control unit may open the auxiliary water control valve.
  • the water level control unit for storing the air supplied from the drain control unit and a base portion floating on the water surface;
  • it may include an opening and closing control unit for adjusting the opening and closing of the air discharge.
  • the drain control portion water discharge cover for opening and closing the water outlet formed in the lower body portion; And an air storage unit formed at a lower end of the water discharge cover and having an air inlet formed therein to store air therein, wherein the water level control unit may adjust the water level by the air supplied from the air storage unit.
  • the water-saving bathroom system is an air outlet that the air discharge portion is formed on the base portion; An air discharge cover for opening and closing the air discharge port; A catching bar extending from the opening and closing cover; And a coupling plate protruding from the upper portion of the base and hinged to the middle of the locking bar to rotate the locking bar.
  • the faucet body faucet body is formed on one side;
  • a cold water inlet pipe one end of which is connected to the faucet body and the other end of which is connected to the water supply, into which cold water flows;
  • One end is connected to the faucet body, the other end is connected to the boiler hot water inlet pipe;
  • a hot water drain pipe having one end connected to the faucet body and discharging a portion of the hot water introduced through the hot water inflow pipe, and the other end of the hot water drain pipe is connected to the main body through the hot water inflow pipe.
  • the faucet further comprises a cartridge mounted in the faucet body, one end of the cold water inlet pipe is connected to the cartridge, one end of the hot water inlet pipe is connected to the cartridge One end of the hot water drain pipe may be connected to the cartridge.
  • the housing is the cartridge is installed in the faucet body;
  • a fixed slide installed in the housing and including a cold water hole connected to the cold water inlet pipe, a hot water hole connected to the hot water inlet pipe, a drain hole connected to the hot water drain pipe, and a mixed water hole communicating with the water jetting body;
  • a moving slide disposed on the fixing part and having a connection groove for selectively communicating between the cold water hole or the hot water hole and the mixed water hole or the drain hole according to a rotation angle.
  • the water-saving bathroom system can save water resources by sending waste water faucet residue to the toilet bowl to wait until the user reaches the desired temperature in the faucet.
  • the water-saving bathroom system according to the present invention can improve the user's satisfaction because the cold water does not come out of the faucet from the user's point of view.
  • FIG. 1 is a schematic configuration diagram of a water-saving bathroom system according to the present invention.
  • Figure 2 is a perspective view of the inside of the toilet according to the present invention.
  • FIG. 3 is a plan view showing the interior of the toilet according to the invention.
  • FIG. 4 is a perspective view showing an auxiliary storage unit according to the present invention.
  • FIG. 5 is a plan view showing an auxiliary storage unit according to the present invention.
  • 6 and 7 are operational state diagrams of the auxiliary water control valve according to an embodiment of the present invention.
  • FIG. 8 is an operational state diagram of a toilet according to the present invention.
  • FIGS. 9 and 10 are perspective views showing the water level adjusting unit according to the present invention.
  • FIG. 11 is a perspective view showing the bottom of the drain control portion according to the present invention.
  • FIG. 12 is a cross-sectional view of the faucet according to the present invention.
  • FIG. 13 is an enlarged cross-sectional view of a faucet according to the present invention.
  • FIG. 14 is a plan view showing a structure of a movable slide according to the present invention.
  • 15 is a plan view showing a structure of a fixed slide according to the present invention.
  • 16 is an operational state diagram for explaining each state of the faucet according to the relative movement with respect to the fixed slide of the mobile slide according to the present invention.
  • FIG. 1 is a schematic configuration diagram of a water-saving bathroom system according to the present invention
  • Figure 2 is a perspective view showing the inside of the toilet according to the invention
  • Figure 3 is a plan view showing the inside of the toilet according to the invention. 1 to 3, the water-saving bathroom system according to the present invention basically includes a faucet 1000 and a toilet 2000.
  • the water-saving bathroom system according to the present invention can be utilized by sending the faucet residual waste in the faucet 1000 to the toilet (2000). Even if the existing toilet is sent to waste water remaining in the faucet, because the existing toilet is limited in size, there is a problem that it is difficult to store the residual water in the existing toilet. In order to save the remaining faucet remaining in the faucet, it is possible to increase the size of the toilet or make a separate faucet storage space, but even in this case, the existing toilet sends down all the water stored in the water tank at once. It is difficult to achieve.
  • the water-saving bathroom system is configured to send the remaining faucet remaining in the faucet 1000 to the toilet bowl 2000, the toilet bowl 2000 can be drained only as much water as necessary, to achieve a water saving effect, Let's look at this in detail.
  • Toilet (2000) comprises a main body portion 2100 for storing water and the drain port 2110 is formed at the bottom; 2300 including a rich man 2310 floating on the surface of the water stored in the main body 2100; A water discharge cover 2410 formed at an upper portion of the drain port 2110, and controlling water discharge according to the operation of the water discharge cover 2410 and storing air therein; And it may be configured to include an air discharge pipe (2430) for connecting the drain control unit 2400 and the water level control unit 2300, the water level control unit (2300) opening and closing control unit for controlling the opening and closing of the air discharge pipe (2430) And a water discharge cover 2410 to close the drain 2110 when the air is discharged through the air discharge pipe 2430 according to the operation of the opening / closing control unit 2330. Can be.
  • the faucet residual of the faucet 1000 is supplied to the main body portion 2100 through the hot water drain pipe 1140 can be used to send the faucet residual of the faucet 1000 to the toilet.
  • the remaining faucet remaining to wait until the user reaches the desired temperature may be supplied from the faucet 1000 to the body portion 2100 through the hot water drain pipe 1140.
  • FIGS. 4 is a perspective view showing an auxiliary storage unit according to the present invention
  • FIG. 5 is a plan view showing an auxiliary storage unit according to the present invention
  • FIGS. 6 and 7 are operational state diagrams of the auxiliary storage unit according to the present invention.
  • the water-saving bathroom system according to the present invention is formed inside the main body 2100, and may further include an auxiliary storage part 2600 having an open top.
  • the faucet residual water supply pipe 2610 communicated with the hot water drain pipe 1140 may be configured to supply the faucet residual water to the main body 2100 first.
  • the predetermined water level may be the height of the auxiliary storage unit 2600. That is, in this case, when the water level of the water stored in the main body 2100 is higher than the height of the auxiliary storage 2600, the upper part of the auxiliary storage part 2600 is open, so that the main body part through the opened upper part. Water of the 2100 naturally flows into the secondary storage unit 2600.
  • the water-saving bathroom system may further store water in the auxiliary storage unit 2600 inside the toilet 2000.
  • the size of the main body 2100 may be larger than the conventional toilet in accordance with circumstances.
  • an auxiliary water supply pipe 2620 may be formed at one side of the auxiliary storage unit 2600, and the water stored in the auxiliary storage unit 2600 through the auxiliary water supply pipe 2620 is the residual water of the toilet. Can be supplied.
  • the remaining water in the toilet is the remaining water in the toilet seat where the user sits, not the main body 2100, and looks at the toilet.
  • the remaining water in the toilet may prevent the feces from being buried or contaminated. Therefore, the residual water must be supplied to the toilet.
  • the toilet is contaminated effectively Can be prevented.
  • the auxiliary water control valve 2630 may be formed at the inlet of the auxiliary water supply pipe 2620 to supply the water stored in the auxiliary storage unit 2600 to the remaining water of the toilet, and the auxiliary water control valve 2630 may have a special shape. There is no limitation and it is only necessary to be configured to supply the water of the auxiliary storage unit 2600 to the remaining water of the toilet bowl.
  • the auxiliary water control valve 2630 is opened and the auxiliary storage unit 2600 through the auxiliary water supply pipe 2620.
  • Water may be supplied to the remaining water of the toilet bowl, the auxiliary base portion (2640) floating on the water surface of the water in the main body portion 2100;
  • an auxiliary water control unit 2650 having one end connected to the auxiliary base unit 2640 through an open upper portion of the auxiliary storage unit 2600 and the other end connected to the auxiliary water control valve 2630.
  • the auxiliary water control unit 2650 opens the auxiliary water control valve 2630, so that the auxiliary storage unit 2600 through the auxiliary water supply pipe 2620. Water may be supplied to the remaining water of the toilet bowl at the bottom of the main body 2100.
  • FIGS. 6 and 7 are operational state diagrams of the auxiliary water control valve according to an embodiment of the present invention. 6 and 7, it can be seen that the auxiliary base portion 2640 is floated along the surface of the water inside the body portion 2100. And it can be seen that the auxiliary water control unit 2650 connected to the auxiliary base unit 2640 opens and closes the auxiliary water supply pipe 2620 by operating the auxiliary water control valve 2630. Referring to FIGS. 6 and 7, the auxiliary water control unit 2650 is generally connected to the auxiliary base unit 2640 and the auxiliary water control valve 2630 through an open upper portion of the auxiliary storage unit 2600. Although it is formed in the shape of a child, it is not limited to this form may be implemented in various forms to connect the auxiliary base portion 2640 and the auxiliary water control valve (2630).
  • the auxiliary water control valve 2630 may be implemented in the form of rotating by the hinge coupling, as shown in Figures 6 and 7, the water level rises, the auxiliary base portion 2640 and the auxiliary water control unit 2650 connected thereto. ), And the auxiliary water control unit 2650 pressurizes the auxiliary water control valve 2630 so that the auxiliary water control valve 2630 closes the auxiliary water supply pipe 2620.
  • the auxiliary water control valve 2630 may check a state in which the auxiliary water supply pipe 2620 is closed. As the water level is lowered, the auxiliary base unit 2640 and the auxiliary water control unit 2650 connected thereto are lowered. At this time, the auxiliary water control unit 2650 moves the auxiliary water control valve 2630, and the auxiliary water control valve 2630 may be implemented to open the auxiliary water supply pipe 2620.
  • the auxiliary water control valve 2630 is just one embodiment and may be implemented in various forms to open and close the auxiliary water supply pipe 2630 according to the level of water in the main body 2100.
  • the water-saving bathroom system may store the faucet residue of the faucet 1000 in the auxiliary storage unit 2600 and send it to the toilet bowl 2000.
  • the toilet 2000 since the toilet 2000 may store and utilize a larger amount of water, there is a need to adjust the amount of water drained.
  • the water-saving bathroom system may include an air discharge pipe 2430 connecting the drain control unit 2400 and the water level control unit 2300, wherein the water level control unit 2300 is an air discharge pipe ( It includes an opening and closing control unit 2330 for controlling the opening and closing of the 2430, the water discharge cover 2410 when the air of the drain control unit 2400 is discharged through the air discharge pipe 2430 according to the operation of the opening and closing control unit 2330 ) May be configured to close the drain 2110.
  • the toilet according to the present invention includes a main body portion 2100 for storing water and a drain 2110 is formed at the bottom;
  • it may be configured to include an air discharge pipe (2430) connecting the drain control unit 2400 and the water level control unit (2300).
  • the water level control unit 2300 includes an opening and closing control unit 2330 for controlling the opening and closing of the air discharge pipe (2430), the drain control unit 2400 through the air discharge pipe (2430) in accordance with the operation of the opening and closing control unit (2330).
  • the air is discharged to the water discharge cover 2410 may close the drain 2110.
  • the water level control unit 2300 is rich (23 ⁇ ) floating on the water surface of the water stored in the main body 2100 ( ⁇ ⁇ , 2310); An air discharge unit 2320 for controlling the discharge of the air stored in the drain control unit 2400; And an opening / closing control unit 2330 for opening or closing the air discharge unit 2320, and as the air discharge unit 2320 is opened and the air stored in the drain control unit 2400 is discharged to the outside. Drain control unit 2400 may be closed.
  • the rich 2310 may be formed of a material having a specific gravity smaller than that of water, and may be floated on the surface of water, and may be formed in a form including air therein as necessary.
  • the main body 2100 is a component in which water is supplied or discharged therein, and may store water supplied from the outside (for example, water), and the stored water may include the main body 2100 by opening the drain control unit 2400. It may be discharged through the drain 2110 formed in the).
  • the main body 2100 according to the present invention may receive and store a faucet residual from a faucet in addition to the water supply as necessary.
  • the water supply unit 2200 is a component for supplying water and may be connected to an external water supply (not shown) to supply water to the body portion 2100.
  • the water supply unit 2200 may supply water to the body portion 2100, but may supply a portion of the water to the remaining water of the toilet.
  • Water supply unit 2200 is a hollow water supply pipe 2210; And a residual water supply pipe 2220 installed through the hollow of the water supply pipe 2210, wherein the residual water supply pipe 2220 may be connected to the toilet bowl through the lower end of the main body 2100.
  • water may be supplied to the main body 2100 through the water supply pipe 2210, and a part of the water supplied from the water may be supplied to the remaining water of the toilet bowl at the bottom of the main body 2100 through the remaining water supply pipe 2220.
  • a water supply control valve 2211 may be installed to control the water supply.
  • Such a residual water supply pipe 2220 is configured to communicate with the auxiliary water supply pipe 2620 described above may be supplied to the toilet bowl also through the auxiliary water supply pipe 2620.
  • the water level control unit 2300 is a component that floats on the surface of the water, and adjusts the timing at which the drain 2110 is closed so that the amount of water stored in the main body 2100 and the water discharged to the outside from the main body 2100. You can adjust the amount. That is, the water discharge cover 2410 formed in the drain control unit 2400 closes the drain port 2110 before all of the water stored in the main body 2100 is discharged, so that only a part of the water stored in the main body 2100 is externally discharged. Can be discharged.
  • Drain control unit 2400 is formed on the upper portion of the drain 2110 as a control component to discharge the water of the body portion 2110, the water discharge cover 2410 formed in the drain control portion 2400 is opened to the body portion 2100 Water may be discharged through the drain hole 2110 formed at the bottom thereof, and the water discharge cover 2410 formed at the drain control unit 2400 may block the drain hole 2110 to block water discharge.
  • Such a drain control device by controlling the discharge of the air stored in the drain control unit 2400, it is possible to control the opening and closing of the drain control unit 2400.
  • the timing or the amount of air discharged from the drain control unit 2400 may be adjusted by the opening and closing control unit 2330, and the air discharge unit formed in the rich 2310 by the operation of the opening and closing control unit 2330 ( 2320 may be opened to allow the air inside the drain control unit 2400 to be discharged to the outside, and the drain control unit 2400 may be closed by discharging the air inside the rich 2310 to the outside.
  • the rich (2310) may be connected through the drain control unit 2400 and the air discharge pipe (2430), and also the rich (2310) air discharge port (2321) may be formed to communicate with the air discharge pipe (2430), such
  • the air inside the drain control unit 2400 may be discharged to the outside through the air discharge pipe 2430 and the air discharge port 2321.
  • the present invention provides the air of the drain control unit 2400.
  • the discharge to control the opening and closing of the drain 2110 the amount of water discharged from the main body 2100 to the outside can be adjusted.
  • the water discharge cover 2410 blocks the drain port 2110 by the operation of the opening and closing control unit 2330 at the timing of discharging the positive 6 liters, thereby preventing further water discharge, and thus the invention remains in the main body 2100. 6 liters will be saved.
  • the present invention may use 6 liters of water in the main body 2100 next, it is not a problem that additional water is not supplied through the water supply pipe 2210, but through the remaining water supply pipe 2220.
  • the toilet may be contaminated because the water is not supplied to the toilet.
  • the present invention can supply the water stored in the auxiliary storage unit 2600 to the remaining water of the toilet through the auxiliary water supply pipe 2620, it is possible to prevent contamination of the toilet due to the lack of the residual water.
  • the present invention may be further supplied to the main body portion 2100 through the faucet residual water supply pipe 2610 even in a state in which water remains in the main body portion 2100.
  • the further faucet remaining water is introduced into the body portion 2100 is merged with the existing water.
  • FIG. 8 is an operational state diagram of a toilet according to the present invention.
  • the drain opening 2110 is shown in an open state
  • FIG. 8B the drain opening 2110 is in a closed state.
  • FIG. 8 (a) when the user presses the lever 2500 installed in the main body 2100, the connecting rod 2510 coupled to the lever 2500 is raised, and when the connecting rod 2510 is raised, the connecting rod 2510.
  • the drain adjusting part 2400 is lifted upward through the chain 2520 coupled to the 2510 to open the drain 2110 to discharge water through the drain 2110.
  • the water level in the body portion 2100 is gradually lowered, and the rich man 2310 floating on the water surface is also moved downward along the water level.
  • the water level control unit 2300 is also moved downward along the water level as a whole, the opening and closing control included in the water level control unit 2300 in accordance with the movement of the water level control unit 2300
  • the part 2330 may be configured to control the opening and closing of the air discharge pipe 2430.
  • 9 and 10 are perspective views showing the water level adjusting unit according to the present invention.
  • the water level control unit 2300 according to the present invention is rich (2310) floating on the water surface (floating);
  • the air discharge unit 2320 is formed on the upper portion 2310 of the air discharge port (2321) in communication with the air discharge pipe (2430); An air discharge cover 2323 for opening and closing the air discharge port 2321; Hanging bar (2324) extending to the air discharge cover (2323); And a coupling plate 2325 that protrudes from the upper portion 2310 and is hinged to the middle of the locking bar 2324 so that the locking bar 2324 rotates.
  • the air discharge pipe 2232 may be formed to protrude on the upper portion 2310, and an air discharge port 2321 may be formed at an upper end of the air discharge pipe 2232.
  • a coupling plate rib 2325a may be formed in the coupling plate 2325 to improve the holding force of the coupled 2325.
  • the air discharge management tube (2322a) may be formed to improve the bearing capacity of the air discharge pipe (2322).
  • the air discharge unit 2320 in this configuration may be opened or closed by the operation of the opening and closing control unit 2330. That is, in the present invention, the opening and closing control unit 2330 may be configured in various forms such that the air discharge unit 2320 is opened or closed, according to an embodiment with reference to FIGS. 9 and 10. Let's look at the configuration of the concrete.
  • Opening and closing control unit 2330 is a rotary screw (2331); A central axis 2332 formed at the center of the rotation screw 2331; A connecting shaft 2333 which is screwed with the central shaft 2332; And it is formed on the connecting shaft 2333, it may be configured to include a locking projection 2334 to rotate in accordance with the rotation of the connecting shaft (2333).
  • the opening and closing adjustment unit 2330 rotates the connecting shaft 2333 which is screwed with the central shaft 2332 as the central shaft 2332 is rotated, and a locking protrusion 2334 formed on the connecting shaft 2333. ) Will rotate accordingly.
  • the locking protrusion 2334 may be formed to contact the locking bar 2324 at a predetermined point. In FIG. 10, the locking protrusion 2334 contacts one end of the locking bar 2324 to close one end of the locking bar 2324. The pressurized state is shown.
  • the connecting shaft support plate 2335 may be formed to protrude on the upper part 2310 so that the connecting shaft 2333 is disposed at the same height as the central axis 2332, and the bearing force of the connecting shaft support plate 2335 is provided.
  • the connecting shaft support plate ribs 2335a may be formed to improve the efficiency.
  • the locking projection 2334 presses the locking bar 2324 so that the air discharge cover 2323 is hinged and lifted up. And the air discharge cover (2323) is lifted up so that the air outlet (2321) is open so that the air stored in the drain control unit 2400 can be discharged to the outside through the air discharge pipe (2430) and the air discharge port (2321). .
  • the air stored in the drain control unit 2400 may be discharged to the outside so that the water discharge cover 2410 formed in the drain control unit 2400 may close the drain 2110.
  • the water discharge cover 2410 closes the drain 2110
  • the air inside the drain control unit 2400 is no longer discharged to the outside, whereby the air discharge cover 2323 closes the air outlet 2321. Done.
  • the amount of water discharged from the main body 2100 can be adjusted by adjusting the drain control unit 2400 to close the drain 2110 in the middle. have.
  • the toilet according to the present invention may be configured to further include a fixing part 2340, the fixing part 2340 is rich 2323 so that the rich 2310 is elevated along the surface of the water stored in the main body 2100, rich 2323 ) May be combined.
  • the fixing part 2340 has a straight-shaped strut 2342 formed at right angles to the water surface of the water stored in the main body 2100; And a screw portion 2341 formed on a side surface of the support stand 2342 along the longitudinal direction of the support stand 2342.
  • the screw portion 2341 is preferably configured to be screwed to each other and the rotation screw 2331 of the opening and closing control unit 2330.
  • the support base 2342 may have a protrusion formed on one side thereof in a vertical direction, and a fitting portion 2311 may be formed at one side of the rich portion 2310 to be fitted to the protrusion. In this state in which the fitting portion 2311 is coupled, the rich man 2310 may move in the vertical direction.
  • the opening and closing control unit 2330 can be elevated along the surface of the water stored in the main body 2100.
  • a support portion 2350 coupled to the lower end of the main body portion 2100 is separately formed, and the fixing portion 2340 is coupled to the support portion 2350. It may be configured as.
  • the water level adjusting unit 2300 moves up and down along the surface of the water stored in the main body 2100 by the coupling relationship between the fixing unit 2340 and the opening / closing control unit 2330.
  • the amount of water discharged from the tank can be controlled.
  • the central axis 2332 and the connecting shaft 2333 of the opening and closing control unit 2330 can be formed so that the shape of the screw can rotate only in one direction. have. If the central axis 2332 and the connecting shaft 2333 of the opening and closing control unit 2330 is formed as shown in Figures 9 and 10, when the central shaft 2332 is rotated in the clockwise direction, the connecting shaft 2333 is It is rotated clockwise while being screwed. On the contrary, when the central axis 2332 rotates in the counterclockwise direction, the central shaft 2332 and the connecting shaft 2333 are not screwed together, and only the central shaft 2332 rotates in the counterclockwise direction.
  • the combined configuration of the central shaft 2332 and the connecting shaft 2333 of the opening and closing control unit 2330, and the resulting movement is moved up and down along the water surface of the water level control unit 2300 stored in the main body 2100 (floating) In this case, the amount of water discharged from the main body 2100 can be adjusted.
  • the air discharge cover 2323 is eventually opened by the rotation of the rotation screw 2331 of the opening and closing control unit 2330, so that the air inside the rich 2310 is discharged to the outside through the air outlet 2321.
  • Rotation of the rotation screw 2331 is caused by rotational engagement with the screw portion (2341) formed on the side surface of the support base (2342).
  • the water level control unit 2300 moves up and down (floating) along the surface of the water stored in the main body 2100, and when the water level of the water stored in the main body 2100 is lowered, the rotating screw accordingly.
  • the 2233 may rotate to adjust a predetermined timing, that is, a timing at which air of the rich 2310, which is a part of the water level control unit 2300, is discharged to the outside.
  • the timing at which the air of the rich man 2310 is discharged to the outside is discharged by pressurizing one end of the catching bar 2324 in contact with one end of the catching bar 2324 as described above.
  • the cover 2323 can be viewed as the timing at which the air outlet 2321 is opened. Therefore, by adjusting the timing at which the air discharge cover 2323 opens the air discharge port 2321, it is possible to adjust the amount of discharge of the water inside the body portion 2100.
  • the water inside the main body 2100 starts to be discharged, and the air stored in the rich 2310 is discharged.
  • the drain control unit 2400 it is possible to adjust the amount of water discharged inside the body portion 2100.
  • the drain control part 2400 includes a water discharge cover 2410 for opening and closing a drain 2110 formed at a lower end of the main body 2100; And an air inlet 2421 formed at a lower end of the water discharge cover 2410 to store air therein.
  • the drain control unit 2400 may store air in the air storage unit 2420 by introducing air through the air inlet 2421 in a state in which the water discharge cover 2410 closes the drain port 2110.
  • the water discharge cover 2410 may be opened by the operation of the lever 2500, and then the air of the air storage unit 2420 is discharged to the outside through the air discharge pipe 2430 and the air discharge port 2321 connected thereto. Can be.
  • the locking projection 2334 contacts one end of the locking bar 2324 and presses one end of the locking bar 2324 to open the air exhaust port 2321 to open the air outlet 2231.
  • Air may be discharged, since the locking protrusion 2334 is a component that rotates together according to the rotation of the rotation screw 2331, and after pressing the locking bar 2324, the rotation screw 2331 is rotated.
  • the air exhaust cover 2323 is then rotated again (by the weight of the air exhaust cover 2323 because the locking protrusion 2334 no longer presses the catching bar 2324). It will close again.
  • the air discharge cover 2323 closes the air outlet 2321, air may be introduced into the air storage unit 2420 through the air inlet 2421.
  • the toilet according to the present invention while the air of the air storage unit 2420 is discharged at the same time through the air inlet 2421, the water inside the body portion 2100 can be partially introduced, through the air inlet 2421 After the water discharge cover 2410 closes the drain 2110, the inflowed water is directed through the air inlet 2421 since the air inlet 2421 faces downward (toward the drain 2110). It is discharged downward (to the drain 2110), and air can be naturally introduced again after the water is discharged.
  • the water-saving bathroom system according to the present invention may be utilized by sending the remaining faucet residual water to the toilet bowl 2000 without being used in the faucet 1000.
  • the faucet 1000 according to the present invention provides a user with hot water. When turned on, the warm water can be sent to the toilet (2000). This configuration will be described in more detail with reference to the accompanying drawings.
  • the faucet 1000 according to the present invention includes a faucet body 1110 having a water jetting body 1115 formed at one side thereof; One end is connected to the faucet body 1110, the other end is connected to the water supply cold water inlet pipe 1121, the cold water is introduced; One end is connected to the faucet body 1110, the other end is connected to the boiler hot water inlet pipe 1122; And one end is connected to the faucet body 1110, and comprises a hot water drain pipe 1140 for discharging some of the hot water flowing through the hot water inlet pipe 1122.
  • the hot water drain pipe 1140 may be connected to the main body 2100 of the toilet 2000 to send some of the hot water introduced through the hot water inlet pipe 1122 to the toilet 2000.
  • the cold water inlet pipe 1121 and the hot water inlet pipe 1122 may be formed separately, respectively.
  • the cold water inlet pipe 1121 and the hot water inlet pipe 1122 may be integrally formed.
  • the cold water inlet pipe 1121 and the hot water inlet pipe 1122 may be formed separately from each other outside the faucet 1000, and may have a form that is integrally integrated with each other in the faucet 1000, otherwise cold water inlet pipe 1121 )
  • the hot water inlet pipe 1122 may be integrally formed outside the faucet 1000 and branched from the faucet 1000.
  • the cold water inlet pipe 1121 and the hot water inlet pipe 1122 may be branched or merged based on a predetermined position rather than branching or merging based on the inside / outside of the faucet 1000.
  • water that is initially cooled water remaining in the hot water inlet pipe 1122, water that has not yet reached the target temperature even though the boiler is operated
  • water that has not yet reached the target temperature even though the boiler is operated is transferred to the outside through the faucet body 1110. Since it is not discharged, only hot water whose temperature is sufficiently raised may be supplied through the faucet body 1110.
  • the hot water drain pipe 1140 formed in the faucet 1000 is a hot water drain the water flowing into the cold water inlet pipe 1121 and / or hot water inlet pipe 1122 by the user only by the operation of a simple handle portion 1150. It may be induced to be discharged to the pipe (1140).
  • the faucet 1000 is provided with a faucet body 1110 for mounting various components.
  • the faucet body 1110 is formed to be fixed to the target surface 1101 by a fastening element such as the union nut 1117, and the water jetting body 1115 may be formed on one side.
  • the interior of the water jetting body 1115 may be provided with a mixing chamber 116 for mixing the water to be discharged, the water jetting port 1130 is provided at the end of the water jetting body 1115 to improve the water flow of the water discharged Can be.
  • the cartridge 1200 may be mounted in the faucet body 1110.
  • the cartridge 1200 may be formed to open and close the mixed or mixed water of the cold water and the hot water, and may be formed to discharge the cooled hot water as described below.
  • the upper portion of the cartridge 1200 may be equipped with a handle portion 1150 formed to operate the cartridge 1200.
  • the cold water inlet pipe 1121 and the hot water inlet pipe 1122 and the hot water drain pipe 1140 formed so as to discharge the cooled hot water introduced into the hot water inlet pipe 1122 may be installed at the lower part of the cartridge 1200. Can be.
  • the cartridge 1200 may not be mounted, if necessary, in this case, the faucet body 1110 is formed to open and close the mixed or mixed water of cold water and hot water, the faucet body 1110 of the The handle part 1150 formed to be operated on the upper part may be mounted, and the cold water inflow pipe 1121 and the hot water inflow pipe 1122 and the hot water inflow pipe 1122 may be discharged to discharge the cooled hot water.
  • the formed hot water drain pipe 1140 may be mounted respectively.
  • the faucet body 1110 may be attached to the Zion mark portion 160 formed by the pigment discolored according to the temperature of the faucet body 1110.
  • the Zion mark unit 160 has a first color before reaching the reference temperature. Above the reference temperature, the sheet may be discolored and attached to the printed, painted or printed sheet by the pigment having the first color.
  • the faucet body 1110 may be configured to have a color corresponding to the temperature as a whole.
  • the cartridge 1200 may include a housing 1210, a lever member 1220, a fixed slide 1240, a moving slide 1240, and the like.
  • the housing 1210 may be formed in a cylindrical shape that may be installed in the faucet body 1110.
  • the lever member 1220 is coupled to the handle part 1150 and may be pivoted with respect to the housing 1210.
  • the housing 1210 may include a cylindrical guide 1215 in a first axial direction.
  • the operation member 221 is inserted into the guide 1215, and the operation member 221 may be rotated in the first axial direction by the guide 1215.
  • the lever member 1220 is pivoted with respect to the operating member 221, and an upper end of the lever member 1220 may be coupled to the handle part 1150.
  • the handle part 1150 When the handle part 1150 is moved up and down, the lower end of the pivoting lever member 1220 is moved to the left and right as seen in FIG.
  • the lower end of the lever member 1220 is restrained by the yoke 1245, and the yoke 1245 is also moved together with the movement of the lever member 1220.
  • the yoke 1245 is rotated together with the rotation of the operating member 221.
  • the yoke 1245 is coupled to the movable slide 1240, and the applied force or rotational force of the yoke 1245 is transmitted to the movable slide 1240. Accordingly, the movable slide 1240 may be rotated or moved in a state facing the fixed slide 1240.
  • Figure 14 is a plan view showing a structure of a mobile slide according to the present invention
  • Figure 15 is a plan view showing a structure of a fixed slide according to the present invention. Referring to Figures 14 and 15 look at the operation of the movable slide and the fixed slide.
  • the fixed slide 1240 is a cold water hole (1231) connected to the cold water inlet pipe 1121, hot water hole (1232) connected to the hot water inlet pipe (1122), drain hole (1233) connected to the hot water drain pipe (1140). ) And a mixed water hole 1235 communicating with the water jetting body 1115 may be formed.
  • the movable slide 1240 is disposed on the fixed slide 1240, and is in surface contact with the fixed slide 1240 to form cold water holes 1231, hot water holes 1232, drain holes 1233, and mixed water holes 1235. It communicates with each other to open and close.
  • the moving slide 1240 is constrained and moved by the lever member 1220 and the yoke 1245.
  • the movable slide 1240 has a connection groove 1241 for selectively communicating between the cold water hole 1231 or the hot water hole 1232 and the mixed water hole 1235 or the drain hole 1233 according to the rotation angle of the yoke 1245. Can be formed.
  • the connection groove 1241 may include a first groove 1241a and a second groove 1241b.
  • the first groove 1241a extends in the direction of the mixing water hole 1235 at the hot water hole 1232, the cold water hole 1231, and the drain hole 1233, and the second groove 1241b has the first groove 1241a. It is formed in the hot water hole (1232), cold water hole (1231) and the drain hole (1233) of the shape having a wider width than the first groove (1241a).
  • the hot water hole 1232 may be disposed between the drain hole 1233 and the cold water hole 1231.
  • the second groove portion 1241b has a cold slide hole 1231 and a hot water hole 1232 in the movable slide 1240 in the first rotational position (general hot and cold water mixed use mode), but the drain hole 1233 Not in communication, the hot water hole 1232 and the drain hole 1233 is in communication with the movable slide 1240 in the second rotational position (drain mode of the cooled hot water), but not in communication with the cold water hole 1231 ( W1).
  • the mixing hole 1235 of the fixed slide 1240 may have a width W2 such that the movable slide 1240 does not communicate with the first groove 1241a at the second rotational position. Accordingly, the second groove 1241b may be larger than the first groove 1241a.
  • FIG. 16 is an operational state diagram for explaining each state of the faucet according to the relative movement with respect to the fixed slide of the mobile slide according to the present invention.
  • FIG. 16A illustrates a state in which the handle part 1150 is raised, and the connection groove 1241 is in a neutral position.
  • FIG. 16B illustrates that only the cold water is discharged because the second groove 1241b is positioned only in the cold water hole 1231
  • FIG. 16C illustrates that the second groove 1242b is located only in the hot water hole 1232. Only hot water is discharged.
  • FIG. 16 (d) shows a state in which the handle part 1150 is further rotated in the hot water mode.
  • the second groove part 1241b is in common contact with the hot water hole 1232 and the drain hole 1233. ) Is not in contact with the mixing manual work 1235. Therefore, the cooled hot water discharged through the hot water hole 1232 is discharged through the drain hole 1233.
  • the water-saving bathroom system can save water resources by using waste water faucet remaining in the faucet to wait until the user reaches the desired temperature in the faucet, and at the same time cold water that the user does not want Since it does not come out of this faucet, user satisfaction can be improved.

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  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Sanitary Device For Flush Toilet (AREA)

Abstract

La présente invention concerne des toilettes à chasse d'eau. Les toilettes à chasse d'eau économiques en eau selon la présente invention comprennent : une partie corps conçue pour pouvoir recevoir ou évacuer de l'eau ; une partie d'alimentation en eau pour fournir de l'eau à la partie corps ; une partie de réglage du niveau d'eau, formée à l'intérieur de la partie corps de façon à régler le niveau d'eau fourni à la partie corps ; et une partie de réglage d'évacuation d'eau, formée à l'intérieur de la partie corps de façon à évacuer l'eau et à fournir de l'air à la partie de réglage du niveau d'eau. La partie de réglage du niveau d'eau comprend : une partie de base pour stocker de l'air fourni par la partie de réglage d'évacuation d'eau, la partie de base flottant sur la surface de l'eau ; une partie d'évacuation d'air pour évacuer l'air stocké dans la partie de base ; et une partie de réglage d'ouverture/fermeture pour régler l'ouverture et la fermeture de la partie d'évacuation d'air. Lorsque la partie d'évacuation d'air est ouverte, la partie de réglage d'évacuation d'eau est fermée.
PCT/KR2019/095018 2018-05-24 2019-05-23 Système pour salle de bains économique en eau WO2019226034A1 (fr)

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KR102186897B1 (ko) * 2018-12-19 2020-12-07 진명홈바스(주) 변기용수배출장치
KR102271341B1 (ko) * 2019-01-22 2021-06-30 진명홈바스(주) 변기용수배출장치
KR102225457B1 (ko) * 2019-05-07 2021-03-09 손정우 온도차단 제어가 가능한 수전의 드레인 시스템
KR102035339B1 (ko) * 2019-07-08 2019-10-22 손정우 잔수배출장치
KR102035340B1 (ko) * 2019-07-08 2019-10-22 손정우 잔수배출장치
KR102035338B1 (ko) * 2019-07-08 2019-11-08 손정우 플러싱밸브 개폐장치

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JP2001323530A (ja) * 2000-05-16 2001-11-22 Seikichi Hata 水洗トイレにおける洗浄水節水装置
KR20090011182U (ko) * 2009-10-06 2009-11-02 박희홍 물 절약 시스템
KR20150145030A (ko) * 2014-06-18 2015-12-29 서태석 이중 물탱크 구조의 양변기 및 이를 이용한 절수 시스템
KR20160050205A (ko) * 2014-10-29 2016-05-11 송복석 양변기의 물공급 제어장치

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KR920002368Y1 (ko) * 1989-04-14 1992-04-10 윤여복 좌변기용 자동 물공급장치
JP2001323530A (ja) * 2000-05-16 2001-11-22 Seikichi Hata 水洗トイレにおける洗浄水節水装置
KR20090011182U (ko) * 2009-10-06 2009-11-02 박희홍 물 절약 시스템
KR20150145030A (ko) * 2014-06-18 2015-12-29 서태석 이중 물탱크 구조의 양변기 및 이를 이용한 절수 시스템
KR20160050205A (ko) * 2014-10-29 2016-05-11 송복석 양변기의 물공급 제어장치

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