WO2015184639A1 - 一种进水阀的防止小漏水装置 - Google Patents

一种进水阀的防止小漏水装置 Download PDF

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Publication number
WO2015184639A1
WO2015184639A1 PCT/CN2014/079363 CN2014079363W WO2015184639A1 WO 2015184639 A1 WO2015184639 A1 WO 2015184639A1 CN 2014079363 W CN2014079363 W CN 2014079363W WO 2015184639 A1 WO2015184639 A1 WO 2015184639A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
buoyancy
inlet valve
water tank
siphon
Prior art date
Application number
PCT/CN2014/079363
Other languages
English (en)
French (fr)
Inventor
刘永茂
张子鹏
Original Assignee
厦门立业卫浴工业有限公司
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 厦门立业卫浴工业有限公司 filed Critical 厦门立业卫浴工业有限公司
Priority to PT14894113T priority Critical patent/PT3153634T/pt
Priority to PL14894113T priority patent/PL3153634T3/pl
Priority to PCT/CN2014/079363 priority patent/WO2015184639A1/zh
Priority to EP14894113.1A priority patent/EP3153634B1/en
Priority to ES14894113T priority patent/ES2709756T3/es
Priority to CA2932337A priority patent/CA2932337C/en
Priority to US15/039,852 priority patent/US10041240B2/en
Publication of WO2015184639A1 publication Critical patent/WO2015184639A1/zh

Links

Classifications

    • 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
    • E03D1/30Valves for high or low level cisterns; Their arrangement ; Flushing mechanisms in the cistern, optionally with provisions for a pre-or a post- flushing and for cutting off the flushing mechanism in case of leakage
    • E03D1/33Adaptations or arrangements of floats
    • 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
    • E03D1/30Valves for high or low level cisterns; Their arrangement ; Flushing mechanisms in the cistern, optionally with provisions for a pre-or a post- flushing and for cutting off the flushing mechanism in case of leakage
    • E03D1/32Arrangement of inlet valves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/12Actuating devices; Operating means; Releasing devices actuated by fluid
    • F16K31/18Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float
    • F16K31/20Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float actuating a lift valve
    • F16K31/24Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float actuating a lift valve with a transmission with parts linked together from a single float to a single valve
    • F16K31/26Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float actuating a lift valve with a transmission with parts linked together from a single float to a single valve with the valve guided for rectilinear movement and the float attached to a pivoted arm
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/12Actuating devices; Operating means; Releasing devices actuated by fluid
    • F16K31/18Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float
    • F16K31/34Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float acting on pilot valve controlling the cut-off apparatus
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K33/00Floats for actuation of valves or other apparatus
    • 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
    • E03D1/02High-level flushing systems
    • E03D1/06Cisterns with tube siphons
    • E03D1/12Siphon action initiated by outlet of air
    • 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
    • E03D1/02High-level flushing systems
    • E03D1/06Cisterns with tube siphons
    • E03D1/12Siphon action initiated by outlet of air
    • E03D1/125Siphon action initiated by outlet of air in cisterns with tube siphons
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/12Actuating devices; Operating means; Releasing devices actuated by fluid
    • F16K31/18Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float
    • F16K31/20Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float actuating a lift valve
    • F16K31/24Actuating devices; Operating means; Releasing devices actuated by fluid actuated by a float actuating a lift valve with a transmission with parts linked together from a single float to a single valve
    • 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/2713Siphons
    • Y10T137/2842With flow starting, stopping or maintaining means
    • Y10T137/2849Siphon venting or breaking
    • 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/2713Siphons
    • Y10T137/2842With flow starting, stopping or maintaining means
    • Y10T137/2856With leakage or entrained air removal
    • 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/7287Liquid level responsive or maintaining systems
    • Y10T137/7329With supplemental or safety closing means or bias

Definitions

  • the invention relates to the technical field of water inlet valves, in particular to a small water leakage preventing device of an inlet valve.
  • the inlet valve usually includes an inlet pipe, a top cover, a back pressure pad, a swing arm, a buoy and a small water tank, and the lower end of the inlet pipe is installed on the water supply pipe of the water tank, and the top cover is installed at the upper end of the water inlet pipe, and the top is installed.
  • the back pressure hole is opened on the cover, the middle section of the swing arm is pivoted on the top cover, one end of the swing arm is opposite to the back pressure hole, and a back pressure pad is installed, and the other end of the swing arm is connected with the adjustment rod of the float, and the float is installed in a small In the water tank, the small water tank is installed on the water inlet pipe, and a sealing member for ensuring watertightness is provided between the members.
  • the pontoon When in use, when the water level of the small water tank drops, the pontoon is reduced by gravity, and the swing arm is deflected, so that the back pressure pad opens the back pressure hole, and the water flows from the water supply pipe through the inlet pipe, the top cover and the back pressure hole into the water tank.
  • the buoy When the water level of the small water tank rises, the buoy is lifted by the buoyancy force, which causes the swing arm to deflect, so that the back pressure pad re-closes the back pressure hole, and the water stop pad rises to generate back pressure to block the water inlet to stop the water inlet.
  • the water inlet valve is provided with a water leakage hole at the bottom of the small water tank. After the water level of the water tank is lowered, the water in the small water tank enters the water tank through the water leakage hole, so that the floating tube loses buoyancy, and is reduced by gravity, and the swing arm is deflected. Open the back pressure hole to achieve water intake.
  • the water tank is prone to failure after a period of use. For example, if the drain valve is closed tightly and slowly leaks (small water leakage), at this time, the inlet valve continues to enter the water, and the water tank continues to leak, resulting in waste of water resources. .
  • the inventors have improved the structure of the water inlet valve so as to stop the water inlet valve in time when the above situation occurs, and the present invention is produced.
  • the object of the present invention is to provide a small water leakage preventing device for the water inlet valve, so that when the water tank has a small water leakage, the water inlet valve is stopped in time to save water resources.
  • the solution of the present invention is:
  • the utility model relates to a water leakage preventing device for preventing the small water leakage, which is installed on the inlet valve body, and includes a swing arm, an adjusting rod, a floating tube, a small water tank, a siphon tube and a counterweight buoyancy switch;
  • the swing arm is pivotally connected to the inlet valve body, and the swing arm One end of the back pressure pad is opposite to the back pressure hole on the inlet valve body, and the other end of the swing arm is connected with the adjusting rod;
  • the floating tube is installed on the adjusting rod and placed in the small water tank, and the small water tank is installed on the water inlet valve body;
  • a siphon is installed on the small water tank, and a vent hole is formed on the siphon;
  • the counterweight buoyancy switch is installed on the small water tank, and the counterweight buoyancy switch includes independent weight water chambers and buoyancy water chambers, and a water leakage hole is arranged on the lower end of the weight water chamber, and the weight water is provided.
  • the counterweight buoyancy switch is mounted on the siphon tube in the manner of sliding above and below.
  • the counterweight buoyancy switch slides upward and floats upward, opens the air hole of the siphon tube, and the buoyancy of the counterweight buoyancy switch is smaller than the gravity state of the gravity.
  • the counterweight buoyancy switch slides down and sinks, and the sealing tablet blocks the air hole to close the air hole of the siphon.
  • the counterweight buoyancy switch is pivotally connected to the small water tank through the pivot.
  • the counterweight buoyancy switch swings upward and floats upward, opens the air hole of the siphon, and the buoyancy of the counterweight buoyancy switch is smaller than the gravity state of the gravity.
  • the counterweight buoyancy switch swings downward and sinks, and the sealing tablet blocks the air hole to close the air hole of the siphon.
  • an air suction hole is formed at a side of the lower end of the siphon pipe, and the air suction hole is connected to the air pump through a pipe, and the air pump is sucked to suck the air in the siphon pipe, and the siphon pipe is released and the water in the small water tank is discharged through the siphon pipe.
  • a lever is pivotally connected to the small water tank, a weight is arranged at one end of the lever, and a sealing piece matched with the drain of the siphon tube is disposed at the other end, and the sealing piece is opposite to the drainage port, and the air pump sucks the air in the siphon tube, and the sealing piece is sealed. Drainage port.
  • a connecting rod is pivotally connected to the small water tank, one end of the connecting rod is opposite to the floating tube installed in the small water tank, the other end is connected with the drawing wire, the drawing is connected with a button, the pressing button is pulled to pull the wire to make the connecting rod swing, and one end of the connecting rod is pressed downward by the floating tube.
  • the water in the small tank is drained through the siphon.
  • the utility model further comprises a water receiving tray and a counterweight buoy
  • the water receiving tray is mounted on the inlet valve body, located above the small water tank, the water receiving tray is provided with an overflow opening, the overflow opening is opposite to the small water tank, and the water receiving tray is provided at the bottom of the water receiving tray
  • the counterweight buoy is mounted at the lower end of the inlet valve body.
  • the counterweight buoy includes a water chamber, a buoyancy chamber and a fixed seat.
  • the water chamber and the buoyancy chamber are integrally formed integrally with each other, and the water chamber and the buoyancy chamber are movably mounted on the fixed seat, and the fixed seat Installed on the inlet valve body, a water outlet is arranged on the fixing seat, and the water outlet is connected with the bottom opening of the water receiving tray through the pipeline; when the gravity of the water chamber is greater than the buoyancy state, the water chamber blocks the water outlet, and the gravity of the water chamber is less than the buoyancy state Next, the water chamber opens the water outlet.
  • the water enters the water tank from the water supply pipe through the inlet valve body, and the water level of the water tank starts to rise, and when the water level of the water tank rises to the highest position of the small water tank, the water enters the small water tank, when small After the water level of the water tank rises, the buoy is lifted by the buoyancy force, which causes the swing arm to deflect, so that the back pressure pad closes the back pressure hole, and the water stop pad rises to generate back pressure to block the water inlet and stop the water inlet.
  • the water level of the inner and outer tubes of the siphon tube is the same after the water stop.
  • the water level outside the small water tank of the water inlet valve drops rapidly, and the water of the weight water chamber above the counterweight buoyancy switch is leaked.
  • the small hole restricts the water flowing out slowly, so the inner and outer water levels are generated during the drainage process, and the buoyancy conversion is instantaneously overcome.
  • the opening of the siphon tube is blocked by gravity, the water level outside the inlet valve tank is lowered, and the siphon tube is disposed in the outer pipe. It also drops, creating a pressure differential with the internal piping, resulting in a siphon that automatically drains the water from the inlet tank (no need to unlock the unit).
  • the buoyancy switch of the counterweight is subjected to the buoyancy of the buoyant water chamber.
  • the buoyancy of the counterweight buoyancy switch is greater than the gravity of the buoyancy switch, the air hole of the siphon tube is opened, and the siphon tube does not produce siphon phenomenon.
  • the bottom of the small water tank of the invention does not open, so the water level of the small water tank does not fall, the swing arm does not deflect, the back pressure hole does not open, the inlet valve does not enter water, and water resources are saved.
  • the counterweight buoyancy switch remains Under the buoyancy of the buoyancy water chamber, the buoyancy of the counterweight buoyancy switch is still greater than its own gravity, the stomata of the siphon tube is still open, and the water level of the pipe outside the siphon tube is also decreasing at the same time; the water level of the water tank continues to slowly drop, eventually making the water in the weight water chamber Leaking clean, the weight buoyancy switch closes the air hole of the siphon under the action of gravity.
  • the water level of the water tank drops greatly, and the water level of the pipe outside the siphon tube has also dropped to near the opening, which cannot generate a large suction force, and the siphon does not produce a siphon phenomenon.
  • the water level of the water tank does not drop, and the inlet valve does not enter the water, effectively preventing the phenomenon of water leakage and saving water resources.
  • Figure 1 is a perspective assembled view of the present invention
  • Figure 2 is a partial exploded view of the present invention (counter weight buoy and lever decomposition);
  • Figure 3 is another perspective partial exploded view of the present invention (counter weight buoy and lever decomposition);
  • Figure 4 is a cross-sectional view of the present invention.
  • Figure 5 is a partial cross-sectional view of the present invention (a small water tank, a siphon tube and a counterweight buoy);
  • Figure 6 is another perspective partial cross-sectional view of the present invention (small section of the water tank, siphon tube and counterweight buoy);
  • Figure 7 is a cross-sectional view showing another mounting structure of the counterweight buoy of the present invention (the siphon tube air hole is not sealed);
  • Figure 8 is a cross-sectional view of another mounting structure of the weighted buoy of the present invention (sealing the siphon vent);
  • Figure 9 is a cross-sectional view of the pressure relief unlocking mechanism of the present invention.
  • Figure 10 is a cross-sectional view showing another structure of the pressure relief unlocking mechanism of the present invention.
  • Figure 11 is a schematic view showing the connection relationship between the water receiving tray and the counterweight buoy according to the present invention.
  • Figure 12 is a partial cross-sectional view showing the connection relationship between the water receiving tray and the weight buoy of the present invention.
  • Counterweight buoyancy switch 7 counterweight water chamber 71
  • the water leakage hole 711 seals the pressing piece 712
  • a small water leakage preventing device for a water inlet valve disclosed in the present invention is installed on the water inlet valve body 1, and includes a swing arm 2, an adjusting rod 3, a floating tube 4, a small water tank 5, and a siphon tube 6. And the counterweight buoyancy switch 7.
  • the swing arm 2 is pivotally connected to the water inlet valve body 1.
  • One end of the swing arm 2 is mounted with a back pressure pad 21 facing the back pressure hole 11 on the water inlet valve body 1, and the other end of the swing arm 2 is The adjustment lever 3 is connected.
  • the pontoon 4 is mounted on the adjustment rod 3 in the small water tank 5, and the small water tank 5 is mounted on the water inlet valve body 1, the structure being an existing structure.
  • a siphon tube 6 is installed on the small water tank 5, the water inlet 61 of the siphon tube 6 is placed at the bottom of the small water tank 5, and the water outlet 62 of the siphon tube 6 is placed outside the small water tank 5, and the water inlet 61 is The height is greater than the height of the drain port 62, the water inlet 61 is located above the drain port 62, and the height of the drain port 62 is lower than the bottom of the small water tank 5, which is a conventional principle of the siphon pipe 6, and the air hole 63 is formed in the siphon pipe 6.
  • the counterweight buoyancy switch 7 is mounted on the small water tank 5, and the counterweight buoyancy switch 7 includes mutually independent counterweight water chambers 71 and buoyancy water chambers 72, and a drain hole is provided at the lower end of the counterweight water chamber 71. 711, the upper end of the counterweight water chamber 71 is provided with a sealing pressing piece 712, the sealing pressing piece 712 is opposite to the air hole 63, and the counterweight buoyancy switch 7 controls the opening and closing of the air hole 63, that is, the buoyancy of the counterweight buoyancy switch 7 is greater than the self-gravity state, The buoyancy switch 7 is floated, and the air hole 63 of the siphon tube 6 is opened. When the buoyancy of the counterweight buoyancy switch 7 is less than the self-gravity state, the counterweight buoyancy switch 7 sinks, the sealing platen 712 blocks the air hole 63, and the air hole 63 of the siphon tube 6 is closed.
  • the weight buoyancy switch 7 is mounted on the siphon 6 in a manner of sliding up and down.
  • the specific installation manner is as follows: as shown in FIG. 3 , the insert 64 is formed on the siphon 6 , and A slot 73 is formed in the counterweight buoyancy switch 7, and the insert 64 is inserted into the slot 73 to cause the counterweight buoyancy switch 7 to slide up and down to be mounted on the siphon tube 6.
  • the counterweight buoyancy switch 7 slides upward and floats upward, opens the air hole 63 of the siphon tube 6, and the buoyancy force of the counterweight buoyancy switch 7 is smaller than the self-gravity state, and the counterweight buoyancy switch 7 slides downward.
  • the sealing sheet 712 blocks the air hole 63 and closes the air hole 63 of the siphon tube 6.
  • the counterweight buoyancy switch 7 can also be pivotally connected to the small water tank 5 via the pivot 74.
  • the counterweight buoyancy switch 7 swings upward and rises.
  • the air hole 63 of the siphon tube 6 is opened, and the buoyancy force of the counterweight buoyancy switch 7 is less than the self-gravity state, the weight buoyancy switch 7 is swung downward and sinks, the sealing pressure piece 712 blocks the air hole 63, and the air hole 63 of the siphon tube 6 is closed.
  • the water In the normal water inlet, the water enters the water tank through the inlet valve body 1, and the water level of the water tank starts to rise.
  • the water tank 5 When the water tank 5 is raised to the highest position of the small water tank 5, the water enters the small water tank 5, and when the water level of the small water tank 5 rises, the floating tank 4 is increased by the buoyancy force, and the swing arm 2 is deflected, so that the back pressure pad 21 closes the back pressure hole 11, and the water cannot enter the water tank from the back pressure hole 11 on the water inlet valve body 1, and the water inlet is stopped.
  • the counterweight buoyancy switch 7 is subjected to the buoyancy of the buoyancy water chamber 72, and the buoyancy of the counterweight buoyancy switch 7 is greater than the self-gravity, and the air hole 63 of the siphon tube 6 is opened.
  • the siphon tube 6 does not produce a siphon phenomenon, and the bottom of the small water tank 5 of the present invention does not open, so the water level of the small water tank 5 does not decrease, the swing arm 2 does not deflect, the back pressure hole 11 does not open, and the inlet valve does not enter water, thereby saving water resources.
  • the counterweight buoyancy switch 7 As the water level of the water tank slowly drops, the water in the weight water chamber 71 of the counterweight buoyancy switch 7 slowly leaks out from the water leakage hole 711. At this time, the counterweight buoyancy switch 7 is still subjected to the buoyancy of the buoyancy water chamber 72, and the counterweight The buoyancy of the buoyancy switch 7 is still greater than its own gravity, the air vent 63 of the siphon tube 6 is still open, and the inlet valve does not enter the water.
  • the water level of the water tank continues to decrease slowly, and finally the water in the weight water chamber 71 is leaked clean.
  • the weight buoyancy switch 7 closes the air hole 63 of the siphon tube 6 under the action of gravity. At this time, the water level of the water tank drops greatly and the drop is slow, and cannot be generated. With a large suction force, the siphon tube 6 still does not produce a siphon phenomenon, the water level of the small water tank 5 does not fall, and the inlet valve still does not enter the water, thereby saving water resources.
  • the bottom of the small water tank 5 of the invention does not open, and when the water tank leaks slightly, the siphon tube 6 does not cause siphoning, the water in the small water tank 5 is difficult to discharge, the water inlet valve needs to be disassembled, and the water in the small water tank 5 is pressed by the buoy 4 It is discharged through the siphon 7 so that the inlet valve can continue to enter the water.
  • the present invention forms an air suction hole 65 at the lower end of the siphon tube 6.
  • the air suction hole 65 is connected to the air pump 66 through a pipe.
  • the pressing button of the air pump 66 and the pressing button of the drain valve are common, and the air pump 66 is pressed.
  • the air in the siphon tube 6 is sucked, the siphon tube 6 is released, and the water in the small water tank 5 is discharged through the siphon tube 6, so that the inlet valve continues to enter the water.
  • the air pump 66 is a conventional one, and the specific structure thereof is not described herein.
  • the present invention pivotally connects a lever 51 on the small water tank 5, and the lever 51 is provided with a weight 511 at one end and a drain port with the siphon tube 6 at the other end. 62 mating cover 512, the cover 512 is opposite the drain 62.
  • the lever 51 cover 512 seals the siphon 6 drain 62 so that the air suction in the siphon 6 is relatively clean, and when the siphon 6 is drained, the other end of the lever 51 is away from the drain 62.
  • the present invention can also pivotally connect a connecting rod 52 on the small water tank 5.
  • One end of the connecting rod 52 is opposite to the floating tube 4 installed in the small water tank 5, and the other end is connected to the drawing wire (not shown).
  • the wire is connected to the button, and the button can be used in common with the drain valve pressing button.
  • the button is pulled to pull the wire to swing the connecting rod 52.
  • One end of the connecting rod 52 presses the pontoon 4 to descend the water in the small water tank 5 through the siphon tube 6 to realize the inlet valve. Into the water.
  • the present invention further includes a water receiving tray 8 and a counterweight buoy 9 which is mounted on the inlet valve body 1 above the small water tank 5, and the water receiving tray 8 is provided with overflow water.
  • the port 81 has an overflow port 81 opposite to the small water tank 5, and the bottom of the water receiving tray 8 is provided with an opening 82;
  • the weight buoy 9 is mounted at the lower end of the inlet valve body 1, and
  • the counterweight buoy 9 includes a water chamber 91, a buoyancy chamber 92 and a fixing seat 93, the water chamber 91 and the buoyancy chamber 92 are integrally formed integrally with each other, the water chamber 91 and the buoyancy chamber 92 are movably mounted on the fixing seat 93, the fixing seat 93 is mounted on the inlet valve body 1, and the water outlet 931 is arranged on the fixing seat 93.
  • the water outlet 931 is connected to the bottom opening 82 of the water receiving tray 8 through a pipe 83; when the gravity of the water chamber 91 is greater than the buoyancy state, the water chamber 91 blocks the water outlet 931, and the gravity of the water chamber 91 is less than the buoyancy state, and the water chamber 91 is opened. Nozzle 931.
  • the bottom of the small water tank 5 of the present invention does not open at the bottom, and when the water tank continues to leak greatly, the water level of the water tank rapidly drops, and the counterweight buoyancy switch 7 rapidly drops, and the sealing pressure piece 712 of the counterweight buoyancy switch 7 blocks the air hole 63 of the siphon tube 6, which When the siphon tube 6 is siphoned, all the water in the small water tank 5 is discharged, and the back pressure pad 21 of the swing arm 2 opens the back pressure hole 11 on the inlet valve body 1, and the water enters the water tank through the inlet valve body 1, and the water inlet valve Into the water.
  • a water receiving tray 8 is mounted on the inlet valve body 1, and water enters the water receiving tray 8, and the opening 82 at the bottom of the water receiving tray 8 flows into the fixing seat 93 through the pipe 83.
  • the buoyancy chamber 92 is lost due to a large water leakage of the water tank. Buoyancy, the water chamber 91 blocks the water outlet 931 under the action of gravity, so that the water flow pipe 83 flows back, and the water overflow port 81 of the water receiving tray 8 enters the small water tank 5, and the bottom of the small water tank 5 does not open, so that the water level of the small water tank 5 rises.
  • the float 4 installed in the small water tank 5 rises, and the swing arm 2 is deflected, so that the back pressure pad 21 closes the back pressure hole 11, and the water cannot enter the water tank body 1 into the water tank, thereby stopping the water inlet and saving water resources.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Jet Pumps And Other Pumps (AREA)
  • Float Valves (AREA)

Abstract

一种进水阀的防止小漏水装置,安装于进水阀本体,包括摆臂、调节杆、浮筒、小水箱、虹吸管及配重浮力开关;摆臂枢接在进水阀本体上,摆臂的一端安装背压垫正对进水阀本体上的背压孔,摆臂的另一端与调节杆连接;浮筒安装在调节杆上置于小水箱中,小水箱安装在进水阀本体上;在小水箱上安装虹吸管,虹吸管上形成气孔;配重浮力开关安装在小水箱上,配重浮力开关包括相互独立的配重水腔及浮力水腔,配重水腔下端上设有漏水孔,配重水腔上端设有密封压片,密封压片与气孔相对,配重浮力开关控制气孔的开启与关闭,使水箱出现小漏水时,及时停止进水阀进水,节约水资源。

Description

一种进水阀的防止小漏水装置 技术领域
本发明涉及进水阀技术领域,尤其是指一种进水阀的防止小漏水装置。
背景技术
现有技术中,进水阀通常包括进水管、顶盖、背压垫、摆臂、浮筒和小水箱,进水管的下端安装在水箱的供水管上,顶盖安装在进水管的上端,顶盖上开设背压孔,摆臂的中段枢设在顶盖上,摆臂的一端正对背压孔,并安装背压垫,摆臂的另一端与浮筒的调节杆连接,浮筒安装在小水箱中,而小水箱安装在进水管上,各构件之间设有保证水密性的密封件。
使用时,当小水箱水位下降,浮筒受重力作用而随之下降,带动摆臂偏转,使背压垫开启背压孔,水从供水管流经进水管、顶盖及背压孔进入水箱中,实现进水。当小水箱水位上升后,浮筒受浮力作用而随之上升,带动摆臂偏转,使背压垫重新关闭背压孔,止水垫澎涨产生背压力将进水口堵住,实现停止进水。
所述进水阀在小水箱的底部设置有漏水孔,水箱排水水位下降后,小水箱中的水通过漏水孔进入水箱中,使得浮筒失去浮力,受重力作用而随之下降,带动摆臂偏转,开启背压孔,实现进水。然而,水箱在使用一段时间后容易出现故障,如排水阀出现关闭不严而慢慢漏水(小漏水),此时,出现进水阀持续进水,而水箱持续漏水的现象,造成水资源浪费。
因此,本发明人对进水阀的结构进行改进,以便在出现上述情况时及时停止进水阀进水,本案由此产生。
发明内容
本发明的目的在于提供一种进水阀的防止小漏水装置,以使水箱出现小漏水时,及时停止进水阀进水,节约水资源。
为达成上述目的,本发明的解决方案为:
一种进水阀的防止小漏水装置,安装于进水阀本体,包括摆臂、调节杆、浮筒、小水箱、虹吸管及配重浮力开关;摆臂枢接在进水阀本体上,摆臂的一端安装背压垫正对进水阀本体上的背压孔,摆臂的另一端与调节杆连接;浮筒安装在调节杆上置于小水箱中,小水箱安装在进水阀本体上;在小水箱上安装虹吸管,虹吸管上形成气孔;配重浮力开关安装在小水箱上,配重浮力开关包括相互独立的配重水腔及浮力水腔,配重水腔下端上设有漏水孔,配重水腔上端设有密封压片,密封压片与气孔相对,配重浮力开关控制气孔的开启与关闭。
进一步,配重浮力开关以上下滑动的方式安装在虹吸管上,配重浮力开关浮力大于自身重力状态下,配重浮力开关向上滑动而上浮,开启虹吸管的气孔,配重浮力开关浮力小于自身重力状态下,配重浮力开关向下滑动而下沉,密封压片堵住气孔而关闭虹吸管的气孔。
进一步,配重浮力开关通过枢轴枢接在小水箱上,配重浮力开关浮力大于自身重力状态下,配重浮力开关向上摆动而上浮,开启虹吸管的气孔,配重浮力开关浮力小于自身重力状态下,配重浮力开关向下摆动而下沉,密封压片堵住气孔而关闭虹吸管的气孔。
进一步,在虹吸管下端侧部形成吸气孔,吸气孔通过管道与气泵连接,按压气泵抽吸虹吸管中空气,虹吸管泄压而小水箱中的水经由虹吸管排出。
进一步,在小水箱上枢接一杠杆,杠杆一端设置配重,另一端设置与与虹吸管排水口匹配的封片,封片与排水口相对,气泵抽吸虹吸管中空气状态下,封片封住排水口。
进一步,在小水箱上枢接一连杆,连杆一端与安装在小水箱中的浮筒相对,另一端连接拉丝,拉丝连接按钮,按压按钮拉动拉丝使连杆摆动,连杆一端按压浮筒下行将小水箱中的水经由虹吸管排出。
进一步,还包括接水盘及配重浮筒,接水盘安装在进水阀本体上,位于小水箱上方,接水盘上设置有溢水口,溢水口与小水箱相对,接水盘底部设有开口;配重浮筒安装在进水阀本体下端,配重浮筒包括水腔、浮力腔及固定座,水腔及浮力腔相互独立一体成型,水腔及浮力腔活动安装在固定座上,固定座安装在进水阀本体上,固定座上设置出水口,出水口通过管道与接水盘底部开口连接;水腔的重力大于浮力状态下,水腔堵住出水口,水腔的重力小于浮力状态下,水腔开启出水口。
采用上述方案后,本发明在正常进水时,水从供水管经进水阀本体进入水箱,水箱水位开始升高,水箱水位升高至小水箱最高位置时,水进入小水箱中,当小水箱水位上升后,浮筒受浮力作用而随之上升,带动摆臂偏转,使背压垫关闭背压孔,止水垫澎涨产生背压力将进水口堵住,停止进水。
由于虹吸管上方设有气孔,止水后虹吸管的内外管水位一致,当正常排水时,由于进水阀小水箱外部的水位下降很快,配重浮力开关上面的配重水腔的水受到漏水孔(小孔)的限制流出来的水较慢,因此在排水的过程产生内外水位,瞬间克服下面浮力转换在重力将虹吸管的开口堵住,进水阀水箱外部的水位下降,同时虹吸管设置在外部管道也下降,与内部的管道产生压力差,从而产生虹吸实现自动将进水阀小水箱的水排出(不需要带解锁装置)。
水箱持续小漏水(渗水)时,水箱水位慢慢下降,此时,配重浮力开关受到浮力水腔的浮力作用,配重浮力开关的浮力大于自身重力,虹吸管的气孔开启,虹吸管不产生虹吸现象,而本发明小水箱底部不开口,因此小水箱的水位不下降,摆臂不偏转,背压孔不开启,进水阀不进水,节约水资源。此时,随着水箱水位慢慢下降,而配重浮力开关的配重水腔中的水慢慢从漏水孔漏出,配重水腔的水位与外部的水位基本相等,此时,配重浮力开关依然受到浮力水腔的浮力作用,配重浮力开关的浮力依然大于自身重力,虹吸管的气孔依然开启,虹吸管外面的管道水位也同时在下降;水箱水位继续慢慢下降,最终使得配重水腔中的水漏干净,配重浮力开关在重力作用下关闭虹吸管的气孔,此时,水箱水位下降较大,虹吸管外管道的水位也已降至接近开口,无法产生较大吸力,虹吸管不产生虹吸现象,小水箱的水位不下降,进水阀不进水,有效的防止了漏水的现象,节约水资源。
附图说明
图1是本发明的立体组合图;
图2是本发明的局部分解图(配重浮筒及杠杆分解);
图3是本发明的另一角度局部分解图(配重浮筒及杠杆分解);
图4是本发明的剖视图;
图5是本发明的局部剖视图(局剖小水箱、虹吸管及配重浮筒);
图6是本发明的另一角度局部剖视图(局剖小水箱、虹吸管及配重浮筒);
图7是本发明配重浮筒的另一安装结构剖视图(未封住虹吸管气孔);
图8是本发明配重浮筒的另一安装结构剖视图(封住虹吸管气孔);
图9是本发明泄压解锁机构的剖视图;
图10是本发明泄压解锁机构另一结构的剖视图;
图11是本发明接水盘及配重浮筒连接关系示意图;
图12是本发明接水盘及配重浮筒连接关系局部剖视图。
标号说明
进水阀本体1背压孔11
摆臂2背压垫21
调节杆3浮筒4
小水箱5杠杆51
配重511封片512
连杆52虹吸管6
进水口61排水口62
气孔63插条64
吸气孔65气泵66
配重浮力开关7配重水腔71
漏水孔711密封压片712
浮力水腔72插槽73
枢轴74接水盘8
溢水口81开口82
管道83配重浮筒9
水腔91浮力腔92
固定座93出水口931
具体实施方式
以下结合附图及具体实施例对本发明做详细描述。
参阅图1至图12所示,本发明揭示的一种进水阀的防止小漏水装置,安装于进水阀本体1,包括摆臂2、调节杆3、浮筒4、小水箱5、虹吸管6及配重浮力开关7。
如图10所示,摆臂2枢接在进水阀本体1上,摆臂2的一端安装背压垫21正对进水阀本体1上的背压孔11,摆臂2的另一端与调节杆3连接。浮筒4安装在调节杆3上置于小水箱5中,小水箱5安装在进水阀本体1上,所述结构为现有结构。
如图3及图4所示,在小水箱5上安装虹吸管6,虹吸管6的进水口61置于小水箱5的底部,而虹吸管6的排水口62置于小水箱5外部,进水口61的高度大于排水口62的高度,进水口61位于排水口62之上,且排水口62的高度低于小水箱5的底部,所述为虹吸管6常规原理,虹吸管6上形成气孔63。
如图1及图4所示,配重浮力开关7安装在小水箱5上,配重浮力开关7包括相互独立的配重水腔71及浮力水腔72,配重水腔71下端上设有漏水孔711,配重水腔71上端设有密封压片712,密封压片712与气孔63相对,配重浮力开关7控制气孔63的开启与关闭,即配重浮力开关7浮力大于自身重力状态下,配重浮力开关7上浮,开启虹吸管6的气孔63,配重浮力开关7浮力小于自身重力状态下,配重浮力开关7下沉,密封压片712堵住气孔63,关闭虹吸管6的气孔63。
如图1、图3及图4所示,配重浮力开关7以上下滑动的方式安装在虹吸管6上,具体安装方式为:如图3所示,在虹吸管6上形成插条64,而在配重浮力开关7上形成插槽73,所述插条64插入该插槽73中,使配重浮力开关7上下滑动活动安装在虹吸管6上。
配重浮力开关7浮力大于自身重力状态下,配重浮力开关7向上滑动而上浮,开启虹吸管6的气孔63,配重浮力开关7浮力小于自身重力状态下,配重浮力开关7向下滑动而下沉,密封压片712堵住气孔63,关闭虹吸管6的气孔63。
如图7及图8所示,配重浮力开关7也可以通过枢轴74枢接在小水箱5上,配重浮力开关7浮力大于自身重力状态下,配重浮力开关7向上摆动而上浮,开启虹吸管6的气孔63,配重浮力开关7浮力小于自身重力状态下,配重浮力开关7向下摆动而下沉,密封压片712堵住气孔63,关闭虹吸管6的气孔63。
本发明在正常进水时,水经进水阀本体1进入水箱,水箱水位开始升高,升高至小水箱5最高位置时,水进入小水箱5中,当小水箱5水位上升后,浮筒4受浮力作用而随之上升,带动摆臂2偏转,使背压垫21关闭背压孔11,水无法从进水阀本体1上的背压孔11进入水箱中,停止进水。
水箱持续小漏水(渗水)时,水箱水位慢慢下降,此时,配重浮力开关7受到浮力水腔72的浮力作用,配重浮力开关7的浮力大于自身重力,虹吸管6的气孔63开启,虹吸管6不产生虹吸现象,而本发明小水箱5底部不开口,因此小水箱5的水位不下降,摆臂2不偏转,背压孔11不开启,进水阀不进水,节约水资源。
随着水箱水位慢慢下降,而配重浮力开关7的配重水腔71中的水慢慢从漏水孔711漏出,此时,配重浮力开关7依然受到浮力水腔72的浮力作用,配重浮力开关7的浮力依然大于自身重力,虹吸管6的气孔63依然开启,进水阀不进水。
水箱水位继续慢慢下降,最终使得配重水腔71中的水漏干净,配重浮力开关7在重力作用下关闭虹吸管6的气孔63,此时,水箱水位下降较大且下降较慢,无法产生较大吸力,虹吸管6依然不产生虹吸现象,小水箱5的水位依然不下降,进水阀依然不进水,节约水资源。
本发明小水箱5底部不开口,而在水箱小漏水时,虹吸管6不发生虹吸现象,小水箱5中的水较难排出,需要拆开进水阀,按压浮筒4使小水箱5中的水经虹吸管7排出,使得进水阀可以继续进水。
因此,本发明在虹吸管6下端形成吸气孔65,如图4及图9所示,吸气孔65通过管道与气泵66连接,气泵66的按压键与排水阀的按压键通用,按压气泵66抽吸虹吸管6中空气,虹吸管6泄压而小水箱5中的水经由虹吸管6排出,实现进水阀继续进水。所述气泵66为现有常规技术,其具体结构此处不赘述。
如图2及图3所示,为进一步将虹吸管6中的空气吸干净,本发明在小水箱5上枢接一杠杆51,杠杆51一端设置配重511,另一端设置与与虹吸管6排水口62匹配的封片512,封片512与排水口62相对。按压气泵66抽吸虹吸管6中空气时,杠杆51封片512封住虹吸管6排水口62,使得虹吸管6中空气抽吸较为干净,而虹吸管6排水时,杠杆51另一端远离排水口62。
如图10所示,本发明也可以在小水箱5上枢接一连杆52,连杆52一端与安装在小水箱5中的浮筒4相对,另一端连接拉丝(图中未示出),拉丝连接按钮,所述按钮可以与排水阀按压键通用,按压按钮拉动拉丝使连杆52摆动,连杆52一端按压浮筒4下行将小水箱5中的水经由虹吸管6排出,实现进水阀继续进水。
如图11及图12所示,本发明还包括接水盘8及配重浮筒9,接水盘8安装在进水阀本体1上,位于小水箱5上方,接水盘8上设置有溢水口81,溢水口81与小水箱5相对,接水盘8底部设有开口82;配重浮筒9安装在进水阀本体1下端,配重浮筒9包括水腔91、浮力腔92及固定座93,水腔91及浮力腔92相互独立一体成型,水腔91及浮力腔92活动安装在固定座93上,固定座93安装在进水阀本体1上,固定座93上设置出水口931,出水口931通过管道83与接水盘8底部开口82连接;水腔91的重力大于浮力状态下,水腔91堵住出水口931,水腔91的重力小于浮力状态下,水腔91开启出水口931。
本发明小水箱5底部不开口,水箱持续大漏水时,水箱水位迅速下降,配重浮力开关7随之迅速下降,配重浮力开关7的密封压片712将虹吸管6的气孔63堵住,此时,虹吸管6发生虹吸现象,小水箱中5的水全部排出,摆臂2背压垫21开启进水阀本体1上的背压孔11,水经进水阀本体1进入水箱,进水阀进水。
在进水阀本体1上安装接水盘8,水进入接水盘8,由接水盘8底部的开口82通过管道83流入固定座93中,此时,由于水箱大漏水,浮力腔92失去浮力,水腔91在重力作用下堵住出水口931,使得水流管道83返流,由接水盘8溢水口81进入小水箱5,而小水箱5底部不开口,使得小水箱5水位上升,安装在小水箱5中的浮筒4上升,带动摆臂2偏转,使背压垫21关闭背压孔11,水无法进水阀本体1进入水箱中,实现停止进水,节约水资源。
以上所述仅为本发明的较佳实施例,并非对本案设计的限制,凡依本案的设计关键所做的等同变化,均落入本案的保护范围。

Claims (7)

  1. 1、一种进水阀的防止小漏水装置,安装于进水阀本体,其特征在于:包括摆臂、调节杆、浮筒、小水箱、虹吸管及配重浮力开关;摆臂枢接在进水阀本体上,摆臂的一端安装背压垫正对进水阀本体上的背压孔,摆臂的另一端与调节杆连接;浮筒安装在调节杆上置于小水箱中,小水箱安装在进水阀本体上;在小水箱上安装虹吸管,虹吸管上形成气孔;配重浮力开关安装在小水箱上,配重浮力开关包括相互独立的配重水腔及浮力水腔,配重水腔下端上设有漏水孔,配重水腔上端设有密封压片,密封压片与气孔相对,配重浮力开关控制气孔的开启与关闭。
  2. 2、如权利要求1所述的一种进水阀的防止小漏水装置,其特征在于:配重浮力开关以上下滑动的方式安装在虹吸管上,配重浮力开关浮力大于自身重力状态下,配重浮力开关向上滑动而上浮,开启虹吸管的气孔,配重浮力开关浮力小于自身重力状态下,配重浮力开关向下滑动而下沉,密封压片堵住气孔而关闭虹吸管的气孔。
  3. 3、如权利要求1所述的一种进水阀的防止小漏水装置,其特征在于:配重浮力开关通过枢轴枢接在小水箱上,配重浮力开关浮力大于自身重力状态下,配重浮力开关向上摆动而上浮,开启虹吸管的气孔,配重浮力开关浮力小于自身重力状态下,配重浮力开关向下摆动而下沉,密封压片堵住气孔而关闭虹吸管的气孔。
  4. 4、如权利要求1所述的一种进水阀的防止小漏水装置,其特征在于:在虹吸管下端侧部形成吸气孔,吸气孔通过管道与气泵连接,按压气泵抽吸虹吸管中空气,虹吸管泄压而小水箱中的水经由虹吸管排出。
  5. 5、如权利要求4所述的一种进水阀的防止小漏水装置,其特征在于:在小水箱上枢接一杠杆,杠杆一端设置配重,另一端设置与与虹吸管排水口匹配的封片,封片与排水口相对,气泵抽吸虹吸管中空气状态下,封片封住排水口。
  6. 6、如权利要求1所述的一种进水阀的防止小漏水装置,其特征在于:在小水箱上枢接一连杆,连杆一端与安装在小水箱中的浮筒相对,另一端连接拉丝,拉丝连接按钮,按压按钮拉动拉丝使连杆摆动,连杆一端按压浮筒下行将小水箱中的水经由虹吸管排出。
  7. 7、如权利要求1所述的一种进水阀的防止小漏水装置,其特征在于:还包括接水盘及配重浮筒,接水盘安装在进水阀本体上,位于小水箱上方,接水盘上设置有溢水口,溢水口与小水箱相对,接水盘底部设有开口;配重浮筒安装在进水阀本体下端,配重浮筒包括水腔、浮力腔及固定座,水腔及浮力腔相互独立一体成型,水腔及浮力腔活动安装在固定座上,固定座安装在进水阀本体上,固定座上设置出水口,出水口通过管道与接水盘底部开口连接;水腔的重力大于浮力状态下,水腔堵住出水口,水腔的重力小于浮力状态下,水腔开启出水口。
PCT/CN2014/079363 2014-06-06 2014-06-06 一种进水阀的防止小漏水装置 WO2015184639A1 (zh)

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PT14894113T PT3153634T (pt) 2014-06-06 2014-06-06 Aparelho de prevenção de vazamentos menores de água para válvula de entrada de água
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EP14894113.1A EP3153634B1 (en) 2014-06-06 2014-06-06 Minor water leak prevention apparatus for water inlet valve
ES14894113T ES2709756T3 (es) 2014-06-06 2014-06-06 Aparato de prevención de fugas de agua menores para válvulas de entrada de agua
CA2932337A CA2932337C (en) 2014-06-06 2014-06-06 Minor water leak prevention apparatus for water inlet valve
US15/039,852 US10041240B2 (en) 2014-06-06 2014-06-06 Minor water leak prevention apparatus for water inlet valve

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