WO2012083847A1 - 切换水路装置 - Google Patents

切换水路装置 Download PDF

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Publication number
WO2012083847A1
WO2012083847A1 PCT/CN2011/084338 CN2011084338W WO2012083847A1 WO 2012083847 A1 WO2012083847 A1 WO 2012083847A1 CN 2011084338 W CN2011084338 W CN 2011084338W WO 2012083847 A1 WO2012083847 A1 WO 2012083847A1
Authority
WO
WIPO (PCT)
Prior art keywords
wire rope
waterway
switching
water
operating
Prior art date
Application number
PCT/CN2011/084338
Other languages
English (en)
French (fr)
Inventor
周华松
陈永华
黄辉
程东瀛
Original Assignee
厦门松霖科技有限公司
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 厦门松霖科技有限公司 filed Critical 厦门松霖科技有限公司
Priority to US13/994,049 priority Critical patent/US8955549B2/en
Publication of WO2012083847A1 publication Critical patent/WO2012083847A1/zh

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Classifications

    • 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
    • F16K31/44Mechanical actuating means
    • F16K31/46Mechanical actuating means for remote operation
    • F16K31/465Mechanical actuating means for remote operation by flexible transmission means, e.g. cable, chain, bowden wire
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/16Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets
    • B05B1/1627Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock
    • B05B1/1663Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock by relative translatory movement of the valve elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/18Roses; Shower heads
    • 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
    • E03C1/02Plumbing installations for fresh water
    • E03C1/021Devices for positioning or connecting of water supply lines
    • E03C1/023Devices for positioning or connecting of water supply lines with flow distribution, e.g. diverters
    • 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
    • E03C1/02Plumbing installations for fresh water
    • E03C1/04Water-basin installations specially adapted to wash-basins or baths
    • E03C1/0408Water installations especially for showers
    • 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
    • F16K11/00Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves
    • F16K11/02Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit
    • F16K11/04Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only lift valves
    • F16K11/044Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only lift valves with movable valve members positioned between valve seats
    • F16K11/0445Bath/shower selectors
    • 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
    • Y10T137/8593Systems
    • Y10T137/86493Multi-way valve unit
    • 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
    • Y10T137/8593Systems
    • Y10T137/86493Multi-way valve unit
    • Y10T137/86879Reciprocating valve unit
    • 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
    • Y10T137/8593Systems
    • Y10T137/877With flow control means for branched passages
    • Y10T137/87788With valve or movable deflector at junction

Definitions

  • the invention relates to a switching waterway device.
  • a conventional switching waterway device that includes a body.
  • the body has a water inlet and two water outlets.
  • the internal body switching mechanism such as a sliding switching mechanism or a rotation switching mechanism, is used to switch the two water outlets to the water inlet. Since the switching mechanism includes a movable member, switching is achieved by relative activities between the movable member and the body. Since the existing user generally switches directly through the movable member of the socket, the switching is inconvenient, especially when the position of the body is set high, the inconvenience is particularly prominent.
  • the present invention provides a switching waterway device that overcomes the deficiencies of the waterway device of the prior art.
  • Switching the waterway device which includes:
  • a waterway mechanism comprising a body (110), the body (110) is provided with a water inlet (111) and multiple water outlets (112, 113);
  • An execution portion (200) is attached to the body (110) and includes a movable member (210).
  • the movable member (210) and the body (110) are relatively movable to switch at least the plurality of water outlets (112, 113).
  • An operating portion (300) comprising a relatively rotatable handle (310);
  • the waterway mechanism (100) further includes a lifting pipe (120), the lifting pipe (120) is fixed to the body (110); and the operating portion (300) is attached to the lifting pipe (120), and the handle (310) is rotatable relative to the lift tube (120); the wire rope (410) is at least partially located within the lift tube (120).
  • the body (110) includes a three-way valve
  • the lift tube (120) is secured to the three-way valve and the water outlet (112) is closed.
  • the transfer portion (400) further includes a jacket (420), the jacket (420) is disposed in the lift pipe (120), and the two ports of the jacket (420) are respectively sealed and connected.
  • the operating portion (300) and the executing portion (200), and the wire rope (410) passes through the outer casing (420).
  • the body (110) includes a cantilever (130) and a shower (140) fixed to the cantilever (130), and the lift pipe (120) is fixed to the cantilever (130),
  • the plurality of water outlets (112, 113) are disposed in the shower (140), and the execution portion (200) is disposed in the shower (140), and the water outlet of the shower (140) can be switched by the handle (310) to switch the water function.
  • the transmitting portion (400) further includes a jacket (420), the jacket (420) is disposed within the lift pipe (120), and the two ports of the jacket (420) are respectively connected
  • the operating portion (300) and the cantilever (130), the other end of the wire rope (410) is resealed through the outer casing (420) into the cantilever (130), and then connected to the execution portion (200).
  • the operating portion (300) is attached to the body (110), and the handle (310) is rotatable relative to the body (110); the wire rope (410) is located within the body (110).
  • the operating portion (300) further includes an operating seat (320), a rotating base (330) and a connecting member (340), and the operating seat (320) is attached to the lifting tube (120) a port, the rotating seat (330) is rotatably mounted in the operating seat (320) and is provided with an eccentric guiding groove (331), and the connecting member (340) is slidably connected to the operating seat (320) and connected a wire rope (410), and the handle (310) is rotatably coupled to the operating seat (320) and synchronously coaxially coupled to the rotating seat (330), the connecting member (340) is fixed with a pin (341), the pin ( 341) Fit the connection guide groove (331).
  • the operating seat (320) is recessed with a plurality of positioning slots (351), and the handle (310) is coupled with a topping spring (352), the top abutting spring (352) The end is connected to a positioning pin (353), and the positioning pin (353) is adapted to be inserted into one of the plurality of positioning slots (351).
  • the operating portion (300) further includes an operating seat (320), a rotating base (330) and a connecting member (340), and the operating seat (320) is attached to the lifting tube (120) a port and a water draining pipe (321) for turning on the lifting pipe (120), the rotating seat (330) being rotatably mounted in the operating seat (320) and provided with an eccentric guiding groove (331),
  • the connecting member (340) is slidably coupled to the operating seat (320) and connected to the wire rope (410), and the handle (310) is rotatably coupled to the operating seat (320) and synchronously coaxially coupled to the rotating seat (330),
  • the connecting member (340) is fixed with a pin (341), and the pin (341) is adapted to connect the guiding groove (331).
  • a waterway mechanism comprising a body (110), the body (110) is provided with a water inlet (111) and multiple water outlets (112, 113);
  • An execution portion (200) is attached to the body (110) and includes a movable member (210).
  • the movable member (210) and the body (110) are relatively movable to switch at least the plurality of water outlets (112, 113).
  • An operating portion (700) comprising a push-pull rod (710) capable of sliding relative to each other;
  • a waterway mechanism comprising a body (110), the body (110) is provided with a water inlet (111) and multiple water outlets (112, 113);
  • An execution portion (200) is attached to the body (110) and includes a movable member (210).
  • the movable member (210) and the body (110) are relatively movable to switch at least the plurality of water outlets (112, 113).
  • An operating portion (800) comprising a push button (810) that is relatively slidable;
  • a transfer portion (400) comprising a wire rope (410), the wire rope (410) is connected to the movable member (210) at one end, and the push button (810) is connected at the other end, wherein: the push button (810) is relatively slid, the wire rope (410) The movable member (210) moves relative to the body (110) relative to the waterway mechanism (100).
  • the execution part is set on the body
  • the handle or push button (push-pull rod) of the operating part can be set on the body, or can be placed at other positions other than the body, such as the lower end of the lifting tube, as long as the operating part is set at a convenient control position, no matter where the body is located At the same time, the user can operate conveniently;
  • the shape and length of the lifting pipe are not limited; the wire rope is arranged in the lifting pipe, which does not affect the appearance, and is also convenient for designing the sealing structure;
  • the outer set is set inside the lifting pipe, and the steel wire rope passes through the outer casing, so that the wire rope is formed into a cable, so that the steel wire rope can be directly contacted with the lifting pipe to prevent the wire rope from damaging the lifting pipe;
  • the execution part adopts the sliding switching mechanism, which has a simple structure and is convenient for designing the sealing structure
  • the operation part includes an operation seat, a rotating seat and a connecting piece, and has a simple structure and is convenient for operation;
  • the body includes a cantilever and a shower with a fixed cantilever, and the shower can be controlled by the handle of the operating part, and the operation is convenient and fast.
  • FIG. 1 is a schematic perspective view of a waterway device of Embodiment 1.
  • Embodiment 2 is a second perspective view of the waterway device of Embodiment 1.
  • FIG. 3 is a schematic exploded perspective view of the waterway device of Embodiment 1.
  • FIG. 4 is a second perspective exploded view of the waterway device of Embodiment 1.
  • FIG. 5 is a third perspective exploded view of the waterway device of Embodiment 1.
  • Fig. 6 is a cross-sectional view showing the operation portion of the water passage device of the first embodiment.
  • Fig. 7 is a cross-sectional view showing the water passage device of the first embodiment, in which the riser is discharged.
  • Fig. 8 is a view showing one of the schematic views of the operating portion of the waterway device of the first embodiment, in which the riser is discharged.
  • FIG. 9 is a cross-sectional view showing the second embodiment of the waterway device of the first embodiment. At this time, the elevating pipe and the other water outlet of the main body simultaneously discharge water.
  • Fig. 10 is a second schematic view showing the operation portion of the waterway device of the first embodiment, in which the riser and the other water outlet of the body simultaneously discharge water.
  • Figure 11 is a cross-sectional view showing the water passage device of Embodiment 1 in which the other water outlet of the body simultaneously discharges water.
  • Fig. 12 is a schematic view showing the operation portion of the water passage device of the first embodiment, in which the other water outlet of the main body simultaneously discharges water.
  • FIG. 13 is a schematic perspective view of the body of Embodiment 1.
  • FIG. 14 is a schematic perspective view of the water dividing body of Embodiment 1.
  • Fig. 15 is a perspective view showing the sliding body of the first embodiment.
  • FIG. 16 is a perspective view of the support member of Embodiment 1.
  • FIG. 17 is a schematic perspective view of the operation seat of Embodiment 1.
  • FIG. 18 is a second perspective view of the operation seat of Embodiment 1.
  • Figure 19 is a perspective view showing the rotating base of the first embodiment.
  • Figure 20 is a cross-sectional view showing the water passage device of Embodiment 2, in which a water outlet is discharged.
  • Figure 21 is a cross-sectional view showing the second embodiment of the waterway device of the second embodiment.
  • Fig. 22 is a cross-sectional view showing the third embodiment of the waterway device of the second embodiment, in which another water outlet is discharged.
  • Figure 23 is a cross-sectional view showing the water passage device of Embodiment 3, in which a water outlet is discharged.
  • Fig. 24 is a cross-sectional view showing the second embodiment of the waterway device of the third embodiment, in which the water outlets of the two outlets are discharged.
  • Fig. 25 is a cross-sectional view showing the third embodiment of the waterway device of the third embodiment, in which another water outlet is discharged.
  • Figure 26 is a cross-sectional view showing the water passage device of the fourth embodiment.
  • Fig. 27 is a view showing one of the schematic portions of the operation portion of the water passage device of the fourth embodiment.
  • Figure 28 is a diagram showing the second part of the operation of the water circuit device of the fourth embodiment.
  • Fig. 29 is a third schematic view showing the operation portion of the water passage device of the fourth embodiment.
  • Figure 30 is a cross-sectional view showing the waterway device of the fifth embodiment.
  • Figure 31 is a view showing one of the schematic portions of the operation portion of the water passage device of Embodiment 5.
  • Figure 32 is a diagram showing the second part of the operation of the water circuit device of Embodiment 5.
  • Figure 33 is a diagram showing the third part of the operation of the water circuit device of Embodiment 5.
  • Embodiment 1 please refer to FIG. 1 to FIG. 19, a switching waterway device including a waterway mechanism 100, an execution portion 200 and an operating portion 300 and a transmitting portion 400.
  • the waterway mechanism 100 includes a body 110 and a lifting pipe 120.
  • the body 110 includes a three-way valve.
  • the three-way valve is provided with a water inlet 111 and two water outlets 112 and 113.
  • the lifting pipe 120 is fixed.
  • the body 110 is connected to the water outlet 112, and the water outlet 114 is connected to the water outlet 113.
  • the water inlet 111 of the body 110 is connected to the cantilever 500.
  • the lift pipe 120 is stably fixed by the suction mechanism 600.
  • the executing portion 200 is attached to the body 110 and includes a movable member 210 and a water dividing body 220.
  • the water dividing body 220 includes a bottom wall 221 and a curved wall 222 fixed to the bottom wall 221.
  • the bottom wall 221 is sealingly fixed to the first port of the lifting pipe 120, and the curved wall 222 is sealed.
  • two water-distributing water channels 2221, 2222 are arranged.
  • the water dividing channel 2221 is connected to the water outlet 113;
  • the water dividing channel 2222 is connected to the water outlet 112 and includes an inlet port located on the curved surface of the curved wall 222 and an outlet port located at the bottom side of the bottom wall 221. It is stated that the port is connected to the lift pipe 120.
  • the movable member 210 includes a sliding member 211 and a sealing ball 212.
  • the sliding member 211 includes a sliding rod 2111 and a mounting seat 2112 fixed on the sliding rod 2111.
  • the sealing ball 212 is movably mounted on the sliding member 2111. Within the mount 2112, the slide bar 2111 slides through the bottom wall 221.
  • the slide ball 211 slides relative to the water-dividing body 220 to drive the sealing ball 212 to move, and the sealing ball 212 can seal the water-dividing path under the action of water pressure, thereby switching at least the two water outlets 112, 113 to open the water inlet 111, as shown in FIG. 7 and Fig. 8 can realize the water discharge of the lifting pipe.
  • the water can be discharged simultaneously with the other water outlet.
  • the water outlet of the other water outlet can be realized.
  • the switching is performed by using a sliding fit sealing ball, but it is not limited thereto, and a rotation switching method or the like may be employed as needed.
  • the operating portion 300 is attached to the lift pipe 120 and includes a handle 310 that is rotatable relative to the lift pipe 120, an operating seat 320, a rotating base 330, and a connecting member 340.
  • the operation seat 320 is attached to the second port of the lift pipe 120 and is provided with a water draining pipe 321 that opens the lift pipe 120.
  • the mounting seat 320 defines a mounting groove 322 therein.
  • the rotating base 330 can be rotatably mounted in the mounting groove 322 of the operating base 320 and provided with an eccentric guiding groove 331.
  • the connecting member 340 is slidably connected to the operating seat 320 , and the connecting member 340 is fixed with a pin 341 , and the pin 341 is adapted to be connected to the guiding groove 331 .
  • the handle 310 is rotatably coupled to the outside of the operating base 320 and is synchronously coupled to the rotating base 330. Then, when the handle 310 rotates relative to the operating base 320, the rotating seat 330 is rotated to drive the eccentric guiding groove 331 to rotate, thereby driving the connecting member 340 to slide up and down relative to the operating base 320.
  • a side cover 360 is attached to the other side of the operating seat, and a rear cover 370 is attached below the operating seat.
  • the transfer portion 400 includes a wire rope 410 and a jacket 420 located within the lift tube 120.
  • the first end of the wire rope 410 is connected to the connecting member 340, and the second end is connected to the sliding member 211, so that the sliding member 211 can slide the sliding member 211 relative to the body 110 through the wire rope 410 when the connecting member 340 slides relative to the operating seat 320.
  • the end of the wire rope 410 extends into the connecting groove formed in the connecting member 340, and then the connecting piece is locked by a screw and pressed tightly on the wire rope to realize the locking connection.
  • the return spring 230 at the execution portion 200.
  • the wire rope 410 is pulled to realize the switching and the compression return spring 230.
  • the return spring 230 is reset and the wire rope 410 is tightened; in the operating portion 300, the position mechanism is used for avoiding After the hand is released, the return spring acts to reverse the movement of the operating portion.
  • the return spring 230 sleeves the sliding rod 2111 and abuts between the bottom wall 221 and the mounting seat 2112.
  • the positioning mechanism is disposed as follows: a plurality of positioning slots 351 are defined in the outer periphery of the operating base 320, and the handle 310 is connected with a topping spring 352, and the top end of the abutting spring 352 is connected with the positioning pin. 353.
  • the positioning pin 353 is adapted to be inserted into one of the plurality of positioning slots 351.
  • the outer casing 420 is installed in the lifting pipe 120.
  • the two outer casings 420 are sealed and fixed to a supporting member 430.
  • the steel wire 410 passes through the outer casing 420, and the steel wire 410 passes through the supporting member 430.
  • the support members 430 are respectively connected to the water dividing body 220 of the execution portion 200 and the operation seat 320 of the operation portion 300.
  • Embodiment 2 which differs from Embodiment 1 in that:
  • the body 110 includes a cantilever 130 and a head shower 140 fixed to the cantilever 130.
  • the cantilever 130 is provided with an inner and outer through hole 131.
  • the lifting pipe 120 is fixed to the cantilever 130 and Corresponding to the hole 131.
  • the outer casing 420 is disposed within the lift pipe 120.
  • the outer casing 420 is connected to the operating portion 300 by one port, and the other port is connected to the connecting hole 131 of the cantilever 130.
  • the second end of the wire rope passes through the outer sleeve 420, the seal can slide through the lift pipe, protrude into the cantilever 130, and then connect the movable member 210 of the execution portion 200.
  • the water inlet of the head shower 140 is connected to the cantilever.
  • the head shower 140 has a water inlet chamber 141 capable of opening the water inlet, a sliding hole 142 for opening the water inlet chamber 141, and two water outlet terminals 143 and 144.
  • the water outlet 112 is connected to the sliding hole 142 and the water outlet terminal 143.
  • the water outlet 113 is connected to the sliding hole 142 and the water outlet terminal 144.
  • the water outlet 112 and the water outlet 113 are arranged along the axis of the sliding hole 142.
  • the operative portion 200 includes a movable member 210, and the movable member 210 is provided with a sealing sleeve 213, and a middle hole 214 is formed in the water inlet chamber 141.
  • the sealing sleeve 213 is adapted to the sliding hole 142.
  • the movable member 210 is slidably coupled within the sliding hole 142 and enables:
  • the sealing sleeve 213 is located at the water outlet 112, and the sealing sleeve 213 seals the water hole 112, and the water outlet terminal 143 is sealed and does not discharge water; the water in the water outlet chamber passes through the middle hole 214 and enters the sliding hole in the lower portion of the sealing sleeve 213. , entering the water outlet 113, the water outlet terminal 144 is discharged;
  • the sealing sleeve 213 is located at the water outlet 113, the sealing sleeve 213 seals the water hole 113, and the water outlet terminal 144 is sealed and does not discharge water; the water in the water outlet chamber directly enters the water outlet hole 112 through the sliding hole 142, and the water outlet terminal 143 is discharged;
  • the sealing sleeve 213 is located between the water outlet 112 and the water outlet 113, and the water in the water outlet directly enters the water outlet hole 112 through the sliding hole 142, and the water outlet terminal 143 discharges water, and the water in the water outlet chamber passes through the middle hole 214.
  • the portion of the sliding hole located at the lower portion of the sealing sleeve 213 enters the water outlet 113, and the water outlet terminal 144 discharges water.
  • a return spring 230 is provided between the shower and the movable member.
  • Embodiment 3 which differs from Embodiment 2 in that:
  • the body is a hand shower, which has a water inlet chamber 151 and two water outlet terminals 152, 153 which can be connected to the water inlet, and the water outlet 112 is connected to the water inlet chamber.
  • 151 and the water outlet terminal 152, the water outlet 113 is connected to the water inlet chamber 151 and the water outlet terminal 153, and the water outlet 112 and the water outlet 113 are arranged at a horizontal interval.
  • the operating portion is attached to the hand shower.
  • the movable member 210 is horizontally slidably coupled to the water inlet chamber 151 and causes:
  • the movable member 210 is located at the water outlet 112, the movable member 210 seals the water hole 112, and the water outlet terminal 152 does not discharge water; the water in the water outlet chamber passes through the water outlet hole 113, so that the water outlet terminal 153 is discharged;
  • the movable member 210 is located at the water outlet 113, the movable member 210 seals the water hole 113, and the water outlet terminal 153 does not discharge water; the water in the water outlet chamber passes through the water outlet hole 112, so that the water outlet terminal 152 is discharged;
  • the movable member 210 is located between the water outlet 112 and the water outlet 113, and the water in the water outlet chamber passes through the water outlet holes 112 and 113 to discharge the water outlet terminals 152 and 153.
  • Embodiment 4 which differs from Embodiment 1 in that:
  • the operation portion 700 is different from the first embodiment in the push-pull type.
  • the front end of the push-pull rod 710 is fixed to the connecting member 340, and the push-pull rod 710 is limited to the chute.
  • the structure and principle of the other parts of the operating portion 700 are substantially the same as those of the embodiment 1.
  • the push-pull rod 710 can slide up and down in the sliding slot 720, and the wire rope 410 is moved by the connecting member 340 to realize the switching of the waterway.
  • Embodiment 5 which differs from Embodiment 1 in that:
  • the operation portion 800 is different from the embodiment 1 in that a push button type and a push button are used.
  • the front end of the 810 is fixed to the connecting member 340, and the push button 810 is limited to the sliding slot 820.
  • the structure and principle of the other parts of the operating portion 800 are substantially the same as those of the embodiment 1.
  • the push button 810 can slide up and down in the chute 820, and the wire rope 410 is moved by the connecting member 340 to realize the switching of the water path.
  • the utility model relates to a switching waterway device, which is driven by a handle or a push rod to drive the wire rope to move the movable member relative to the body to realize the waterway switching, and the following effects are obtained: the execution part is arranged on the body, and the handle of the operating part can be set on the body
  • the upper part can also be disposed at other positions other than the body, such as the lower end of the lifting pipe, as long as the operating part is arranged in a convenient control position, no matter where the body is located, the user can conveniently operate.

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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)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Mechanically-Actuated Valves (AREA)
  • Multiple-Way Valves (AREA)

Description

切换水路装置 技术领域
本发明涉及一种切换水路装置。
背景技术
传统切换水路装置,它包括一本体。所述本体具有一进水口和二出水口。所述本体内设切换机构,如滑动切换机构或旋转切换机构,用以切换二出水口接通进水口。由于切换机构包括一活动件,通过活动件和本体间的相对活动实现切换。由于现有用户操作时一般都是直接通过插座活动件进行切换,因此切换不便,尤其是在本体设置位置较高时,该不便尤其突出。
发明内容
本发明提供了切换水路装置,其克服了背景技术中水路装置所存在的不足。
本发明解决其技术问题的所采用的技术方案是:
切换水路装置,它包括:
一水路机构(100),它包括一本体(110),所述本体(110)设一进水口(111)和多出水口(112、113);
一执行部分(200),它装接在本体(110)内且包括一活动件(210),通过活动件(210)和本体(110)相对活动至少切换多出水口(112、113)接通进水口(111);
一操作部分(300),它包括一能相对转动的手柄(310);及
一传递部分(400),它包括一钢丝绳(410),所述钢丝绳(410)一端连接活动件(210),另一端传动连接手柄(310),其中:手柄(310)相对转动,钢丝绳(410)相对水路机构(100)活动,活动件(210)相对本体(110)活动。
一较佳实施例之中:所述水路机构(100)还包括一升降管(120),所述升降管(120)固接本体(110);所述操作部分(300)装接在升降管(120),且手柄(310)能相对升降管(120)转动;所述钢丝绳(410)至少部分位于升降管(120)内。
一较佳实施例之中:所述本体(110)包括三通阀,升降管(120)固接三通阀且接通出水口(112)。
一较佳实施例之中:所述传递部分(400)还包括一外套(420),所述外套(420)装设在升降管(120)内,所述外套(420)二端口分别密封连接操作部分(300)和执行部分(200),且所述钢丝绳(410)穿过外套(420)。
一较佳实施例之中:所述本体(110)包括悬臂(130)和固设接通悬臂(130)的花洒(140),所述升降管(120)固接悬臂(130),上述多出水口(112、113)设于花洒(140),上述执行部分(200)设于花洒(140),则通过手柄(310)能切换花洒(140)出水口,切换出水功能。
一较佳实施例之中:所述传递部分(400)还包括一外套(420),所述外套(420)装设在升降管(120)之内,所述外套(420)二端口分别连接操作部分(300)和悬臂(130),所述钢丝绳(410)另一端穿过外套(420)再密封穿进悬臂(130)内,再连接执行部分(200)。
一较佳实施例之中:所述操作部分(300)装接在本体(110),且手柄(310)能相对本体(110)转动;所述钢丝绳(410)位于本体(110)内。
一较佳实施例之中:所述操作部分(300)还包括一操作座(320)、一转动座(330)和一连接件(340),所述操作座(320)装接在升降管(120)端口,所述转动座(330)能转动装接在操作座(320)内且设一偏心的导向槽(331),所述连接件(340)滑动连接操作座(320)且连接钢丝绳(410),而且,所述手柄(310)转动连接操作座(320)且同步同轴转动连接转动座(330),所述连接件(340)固设销钉(341),所述销钉(341)适配连接导向槽(331)。
一较佳实施例之中:所述操作座(320)之外凹设有多个定位槽(351),所述手柄(310)连接有一顶抵弹簧(352),所述顶抵弹簧(352)末端连接定位销(353),所述定位销(353)适配插接入多个定位槽(351)中的一个。
一较佳实施例之中:所述操作部分(300)还包括一操作座(320)、一转动座(330)和一连接件(340),所述操作座(320)装接在升降管(120)端口且设一接通升降管(120)的下水路(321),所述转动座(330)能转动装接在操作座(320)内且设一偏心的导向槽(331),所述连接件(340)滑动连接操作座(320)且连接钢丝绳(410),而且,所述手柄(310)转动连接操作座(320)且同步同轴转动连接转动座(330),所述连接件(340)固设销钉(341),所述销钉(341)适配连接导向槽(331)。
本发明又一较佳实施例之中,它包括:
一水路机构(100),它包括一本体(110),所述本体(110)设一进水口(111)和多出水口(112、113);
一执行部分(200),它装接在本体(110)内且包括一活动件(210),通过活动件(210)和本体(110)相对活动至少切换多出水口(112、113)接通进水口(111);
一操作部分(700),它包括一能相对滑动的推拉杆(710);及
一传递部分(400),它包括一钢丝绳(410),所述钢丝绳(410)一端连接活动件(210),另一端传动连接推拉杆(710),其中:推拉杆(710)相对滑动,钢丝绳(410)相对水路机构(100)活动,活动件(210)相对本体(110)活动。
本发明再一较佳实施例之中,它包括:
一水路机构(100),它包括一本体(110),所述本体(110)设一进水口(111)和多出水口(112、113);
一执行部分(200),它装接在本体(110)内且包括一活动件(210),通过活动件(210)和本体(110)相对活动至少切换多出水口(112、113)接通进水口(111);
一操作部分(800),它包括一能相对滑动的推钮(810);及
一传递部分(400),它包括一钢丝绳(410),所述钢丝绳(410)一端连接活动件(210),另一端传动连接推钮(810),其中:推钮(810)相对滑动,钢丝绳(410)相对水路机构(100)活动,活动件(210)相对本体(110)活动。
本技术方案与背景技术相比,它具有如下优点:
1.手柄相对转动或推钮(推拉杆)相对滑动,带动钢丝绳活动,带动活动件相对本体活动,实现水路切换,则能克服背景技术所存在不足,产生如下效果:a.执行部分设在本体上,操作部分的手柄或推钮(推拉杆)能设在本体上,也能设在非本体的其它位置上,如升降管下端,则只要操作部分设于便于控制位置,无论本体设于何处,用户都能方便操作;b.执行部分和操作部分间通过钢丝绳传动,用户无需直接操作活动件,便于密封结构设计;
2.升降管形状、长度不受限;钢丝绳设在升降管内,不影响美观,还便于设计密封结构;
3.升降管固接三通阀且接通出水口,则升降管内无需设内管,降低成本;
4、外套装设在升降管之内,钢丝绳穿过外套,使得其配合形成为拉索,则能避免钢丝绳直接接触升降管,避免钢丝绳损坏升降管;
5.执行部分采用滑动切换机构,结构简单,便于设计密封结构;
6.操作部分包括操作座、转动座和连接件,结构简单,便于操作;
7.本体包括悬臂和固设接通悬臂的花洒,则能够通过操作部分的手柄控制花洒切换出水功能,操作方便快速。
附图说明
下面结合附图和实施例对本发明作进一步说明。
图1绘示了实施例1水路装置的立体示意图之一。
图2绘示了实施例1水路装置的立体示意图之二。
图3绘示了实施例1水路装置的立体分解示意图之一。
图4绘示了实施例1水路装置的立体分解示意图之二。
图5绘示了实施例1水路装置的立体分解示意图之三。
图6绘示了实施例1水路装置的操作部分的剖面示意图。
图7绘示了实施例1水路装置的剖面示意图之一,此时升降管出水。
图8绘示了实施例1水路装置的操作部分的示意图之一,此时升降管出水。
图9绘示了实施例1水路装置的剖面示意图之二,此时升降管和本体另一出水口同时出水。
图10绘示了实施例1水路装置的操作部分的示意图之二,此时升降管和本体另一出水口同时出水。
图11绘示了实施例1水路装置的剖面示意图之一,此时本体另一出水口同时出水。
图12绘示了实施例1水路装置的操作部分的示意图之一,此时本体另一出水口同时出水。
图13绘示了实施例1的本体的立体示意图。
图14绘示了实施例1的分水体的立体示意图。
图15绘示了实施例1的滑动体的立体示意图。
图16绘示了实施例1的支撑件的立体示意图。
图17绘示了实施例1的操作座的立体示意图之一。
图18绘示了实施例1的操作座的立体示意图之二。
图19绘示了实施例1的转动座的立体示意图。
图20绘示了实施例2的水路装置的剖面示意图之一,此时一出水口出水。
图21绘示了实施例2的水路装置的剖面示意图之二,此时二出水口出水。
图22绘示了实施例2的水路装置的剖面示意图之三,此时另一出水口出水。
图23绘示了实施例3的水路装置的剖面示意图之一,此时一出水口出水。
图24绘示了实施例3的水路装置的剖面示意图之二,此时二出水口出水。
图25绘示了实施例3的水路装置的剖面示意图之三,此时另一出水口出水。
图26绘示了实施例4的水路装置的剖面示意图。
图27绘示了实施例4水路装置的操作部分的示意图之一。
图28绘示了实施例4水路装置的操作部分的示意图之二。
图29绘示了实施例4水路装置的操作部分的示意图之三。
图30绘示了实施例5的水路装置的剖面示意图。
图31绘示了实施例5水路装置的操作部分的示意图之一。
图32绘示了实施例5水路装置的操作部分的示意图之二。
图33绘示了实施例5水路装置的操作部分的示意图之三。
具体实施方式
实施例1,请查阅图1至图19,切换水路装置,它包括一水路机构100、一执行部分200和一操作部分300和一传递部分400。
所述水路机构100,它包括一本体110和一升降管120,所述本体110包括三通阀,所述三通阀设一进水口111和二出水口112、113,所述升降管120固接本体110且其接通出水口112,在出水口113处连接出水嘴114。本实施例之中,所述本体110的进水口111接通在悬臂500。所述升降管120通过吸附机构600稳定固设。
所述执行部分200,它装接在本体110内且包括一活动件210和一分水体220。
所述分水体220包括一底壁221和一固接在底壁221之上的弧形壁222,所述底壁221密封固接在升降管120第一端口,所述弧形壁222密封固接在本体110内且开口朝向进水口111,设二轴向排布的分水路2221、2222。所述分水路2221接通出水口113;所述分水路2222接通出水口112且包括一位于弧形壁222内弧面的入端口和一位于底壁221之底面侧部的出端口,所述出端口接通升降管120。
所述活动件210包括一滑动件211和一密封球212,所述滑动件211包括一滑动杆2111和一固设在滑动杆2111之上的装配座2112,所述密封球212活动装设在装配座2112内,所述滑动杆2111滑动穿过底壁221。
其中:通过滑动件211相对分水体220滑动带动密封球212活动,密封球212能在水压作用下密封分水路,以此至少切换二出水口112、113接通进水口111,如图7和图8能实现升降管出水,如图9和图10能实现升降管和另一出水口同时出水,如图11和图12能实现另一出水口出水。本实施例之中,采用滑动配合密封球实现切换,但并不以此为限,根据需要,也可采用旋转切换方式等。
所述操作部分300,它装接在升降管120且包括一能相对升降管120转动的手柄310、一操作座320、一转动座330和一连接件340。所述操作座320装接在升降管120第二端口且设一接通升降管120的下水路321,所述操作座320内开设装配槽322。所述转动座330能转动装接在操作座320的装配槽322内且设一偏心的导向槽331。所述连接件340滑动连接操作座320,所述连接件340固设销钉341,所述销钉341适配连接导向槽331。所述手柄310转动连接操作座320之外且同步同轴转动连接转动座330。则:所述手柄310相对操作座320转动时,带动转动座330转动,带动偏心的导向槽331转动,带动连接件340相对操作座320上下滑动。为了便于装配,在操作座另一侧连接有一侧盖360,在操作座之下连接有后盖370。
所述传递部分400包括一位于升降管120内的钢丝绳410和一外套420。所述钢丝绳410第一端连接连接件340,第二端连接滑动件211,使得所述连接件340相对操作座320滑动时能通过钢丝绳410带动滑动件211相对本体110滑动。本实施例之中,所述钢丝绳410末端伸进开设在连接件340的连接槽,再通过螺钉锁紧连接件并压紧在钢丝绳实现锁紧连接。
为了保证,执行部分200能循环准确执行,最好:在执行部分200设复位弹簧230。用于使操作部分300正向活动时通过钢丝绳410拉接实现切换且压缩复位弹簧230,反向活动时复位弹簧230复位且拉紧钢丝绳410;在操作部分300设定位机构,用于避免因手松开后在复位弹簧作用而使操作部分反向活动。
本实施例之中,所述复位弹簧230套接滑动杆2111且顶抵在底壁221和装配座2112之间。
本实施例之中,所述定位机构如下设置:所述操作座320之外凹设有多个定位槽351,所述手柄310连接有一顶抵弹簧352,所述顶抵弹簧352末端连接定位销353,所述定位销353适配插接入多个定位槽351中的一个。
所述外套420装设在升降管120之内,所述外套420二端口都密封固接一支撑件430,所述钢丝绳410穿过外套420,所述钢丝绳410穿过支撑件430,所述二支撑件430分别连接执行部分200的分水体220和操作部分300的操作座320。
实施例2,它与实施例1不同之处在于:
请查阅图20、图21、图23,所述本体110包括悬臂130和固设接通悬臂130的头部花洒140,悬臂130设内外贯穿的接孔131;升降管120固接悬臂130且对应接孔131。
所述外套420装设在升降管120之内,所述外套420一端口连接操作部分300,另一端口密封连接悬臂130的接孔131。所述钢丝绳第二端穿过外套420、密封能滑动穿过升降管,伸进悬臂130内,再连接执行部分200的活动件210。
所述头部花洒140的进水口接通悬臂,头部花洒140具有一能接通进水口的进水腔141、一接通进水腔141的滑动孔142和二出水终端143、144,所述出水口112接通滑动孔142和出水终端143,所述出水口113接通滑动孔142和出水终端144,而且,所述出水口112和出水口113沿滑动孔142轴线间隔布置。
所述执行部分200包括活动件210,所述活动件210外套设密封套213,内设接通进水腔141的中孔214,所述密封套213适配滑动孔142。所述活动件210能滑动连接在滑动孔142内,并使得:
所述密封套213位于出水口112处,则密封套213密封出水孔112,出水终端143密封、不出水;所述出水腔内的水通过中孔214、进入滑动孔位于密封套213下部的部分,进入出水口113,出水终端144出水;
所述密封套213位于出水口113处,则密封套213密封出水孔113,出水终端144密封、不出水;所述出水腔内的水直接通过滑动孔142进入出水孔112,出水终端143出水;
所述密封套213位于出水口112和出水口113之间处,则所述出水腔内的水直接通过滑动孔142进入出水孔112,出水终端143出水,则出水腔内的水通过中孔214、进入滑动孔位于密封套213下部的部分,进入出水口113,出水终端144出水。
为了保证,执行部分200能循环准确执行,最好:在执行部分200设复位弹簧230。复位弹簧230设在花洒和活动件之间。
实施例3,它与实施例2不同之处在于:
请查阅图23、图24、图25,所述本体为手持花洒,它具有一能接通进水口的进水腔151和二出水终端152、153,所述出水口112接通进水腔151和出水终端152,所述出水口113接通进水腔151和出水终端153,所述出水口112和出水口113沿水平间隔布置。所述操作部分装接在手持花洒。
所述活动件210水平滑动连接在进水腔151,并使得:
所述活动件210位于出水口112处,则活动件210密封出水孔112,出水终端152不出水;所述出水腔内的水通过出水孔113,使出水终端153出水;
所述活动件210位于出水口113处,则活动件210密封出水孔113,出水终端153不出水;所述出水腔内的水通过出水孔112,使出水终端152出水;
所述活动件210位于出水口112和出水口113间,则出水腔内的水通过出水孔112、113,使出水终端152、153出水。
为了保证,执行部分200能循环准确执行,最好:在执行部分200设复位弹簧230。
实施例4,它与实施例1不同之处在于:
请查阅图26、图27、图28、图29,所述操作部分700与实施例1不同之处为推拉杆式,推拉杆710的前端固接连接件340,推拉杆710限位在滑槽720内。操作部分700其他部分的结构及原理与实施1基本相同。
如图27、图28、图29,推拉杆710可在滑槽720内上下滑动,通过连接件340带动钢丝绳410活动,进而实现水路的切换。
实施例5,它与实施例1不同之处在于:
请查阅图30、图31、图31、图33,所述操作部分800与实施例1不同之处为推钮式,推钮 810的前端固接连接件340,推钮810限位在滑槽820内。操作部分800其他部分的结构及原理与实施1基本相同。
如图31、图32、图33,推钮810可在滑槽820内上下滑动,通过连接件340带动钢丝绳410活动,进而实现水路的切换。
以上所述,仅为本发明较佳实施例而已,故不能依此限定本发明实施的范围,即依本发明专利范围及说明书内容所作的等效变化与修饰,皆应仍属本发明涵盖的范围内。
工业实用性
本发明一种切换水路装置,通过操作手柄或推杆,带动钢丝绳活动,带动活动件相对本体活动,实现水路切换,则产生如下效果:执行部分设在本体上,操作部分的手柄能设在本体上,也能设在非本体的其它位置上,如升降管下端,则只要操作部分设于便于控制位置,无论本体设于何处,用户都能方便操作。

Claims (14)

  1. 切换水路装置,其特征在于:它包括:
    一水路机构(100),它包括一本体(110),所述本体(110)设一进水口(111)和多出水口(112、113);
    一执行部分(200),它装接在本体(110)内且包括一活动件(210),通过活动件(210)和本体(110)相对活动至少切换多出水口(112、113)接通进水口(111);
    一操作部分(300),它包括一能相对转动的手柄(310);及
    一传递部分(400),它包括一钢丝绳(410),所述钢丝绳(410)一端连接活动件(210),另一端传动连接手柄(310),其中:手柄(310)相对转动,钢丝绳(410)相对水路机构(100)活动,活动件(210)相对本体(110)活动。
  2. 根据权利要求1所述的切换水路装置,其特征在于:所述水路机构(100)还包括一升降管(120),所述升降管(120)固接本体(110);所述操作部分(300)装接在升降管(120),且手柄(310)能相对升降管(120)转动;所述钢丝绳(410)至少部分位于升降管(120)内。
  3. 根据权利要求2所述的切换水路装置,其特征在于:所述本体(110)包括三通阀,升降管(120)固接三通阀且接通出水口(112)。
  4. 根据权利要求3所述的切换水路装置,其特征在于:所述传递部分(400)还包括一外套(420),所述外套(420)装设在升降管(120)内,所述外套(420)二端口分别密封连接操作部分(300)和执行部分(200),且所述钢丝绳(410)穿过外套(420)。
  5. 根据权利要求2所述的切换水路装置,其特征在于:所述本体(110)包括悬臂(130)和固设接通悬臂(130)的花洒(140),所述升降管(120)固接悬臂(130),上述多出水口(112、113)设于花洒(140),上述执行部分(200)设于花洒(140),则通过手柄(310)能切换花洒(140)出水口,切换出水功能。
  6. 根据权利要求5所述的切换水路装置,其特征在于:所述传递部分(400)还包括一外套(420),所述外套(420)装设在升降管(120)之内,所述外套(420)二端口分别连接操作部分(300)和悬臂(130),所述钢丝绳(410)另一端穿过外套(420)再密封穿进悬臂(130)内,再连接执行部分(200)。
  7. 根据权利要求1所述的切换水路装置,其特征在于:所述操作部分(300)装接在本体(110),且手柄(310)能相对本体(110)转动;所述钢丝绳(410)位于本体(110)内。
  8. 根据权利要求3或4或5或6所述的切换水路装置,其特征在于:所述操作部分(300)还包括一操作座(320)、一转动座(330)和一连接件(340),所述操作座(320)装接在升降管(120)端口,所述转动座(330)能转动装接在操作座(320)内且设一偏心的导向槽(331),所述连接件(340)滑动连接操作座(320)且连接钢丝绳(410),而且,所述手柄(310)转动连接操作座(320)且同步同轴转动连接转动座(330),所述连接件(340)固设销钉(341),所述销钉(341)适配连接导向槽(331)。
  9. 根据权利要求8所述的切换水路装置,其特征在于:所述操作座(320)之外凹设有多个定位槽(351),所述手柄(310)连接有一顶抵弹簧(352),所述顶抵弹簧(352)末端连接定位销(353),所述定位销(353)适配插接入多个定位槽(351)中的一个。
  10. 根据权利要求3或4所述的切换水路装置,其特征在于:所述操作部分(300)还包括一操作座(320)、一转动座(330)和一连接件(340),所述操作座(320)装接在升降管(120)端口且设一接通升降管(120)的下水路(321),所述转动座(330)能转动装接在操作座(320)内且设一偏心的导向槽(331),所述连接件(340)滑动连接操作座(320)且连接钢丝绳(410),而且,所述手柄(310)转动连接操作座(320)且同步同轴转动连接转动座(330),所述连接件(340)固设销钉(341),所述销钉(341)适配连接导向槽(331)。
  11. 切换水路装置,其特征在于:它包括:
    一水路机构(100),它包括一本体(110),所述本体(110)设一进水口(111)和多出水口(112、113);
    一执行部分(200),它装接在本体(110)内且包括一活动件(210),通过活动件(210)和本体(110)相对活动至少切换多出水口(112、113)接通进水口(111);
    一操作部分(700),它包括一能相对滑动的推拉杆(710);及
    一传递部分(400),它包括一钢丝绳(410),所述钢丝绳(410)一端连接活动件(210),另一端传动连接推拉杆(710),其中:推拉杆(710)相对滑动,钢丝绳(410)相对水路机构(100)活动,活动件(210)相对本体(110)活动。
  12. 根据权利要求11所述的切换水路装置,其特征在于:所述水路机构(100)还包括一升降管(120),所述升降管(120)固接本体(110);所述操作部分(700)装接在升降管(120),且推拉杆(710)可相对升降管(120)滑动;所述钢丝绳(410)至少部分位于升降管(120)内;所述本体(110)包括三通阀,升降管(120)固接三通阀且接通出水口(112)。
  13. 切换水路装置,其特征在于:它包括:
    一水路机构(100),它包括一本体(110),所述本体(110)设一进水口(111)和多出水口(112、113);
    一执行部分(200),它装接在本体(110)内且包括一活动件(210),通过活动件(210)和本体(110)相对活动至少切换多出水口(112、113)接通进水口(111);
    一操作部分(800),它包括一能相对滑动的推钮(810);及
    一传递部分(400),它包括一钢丝绳(410),所述钢丝绳(410)一端连接活动件(210),另一端传动连接推钮(810),其中:推钮(810)相对滑动,钢丝绳(410)相对水路机构(100)活动,活动件(210)相对本体(110)活动。
  14. 根据权利要求13所述的切换水路装置,其特征在于:所述水路机构(100)还包括一升降管(120),所述升降管(120)固接本体(110);所述操作部分(800)装接在升降管(120),且推钮(810)可相对升降管(120)滑动;所述钢丝绳(410)至少部分位于升降管(120)内;所述本体(110)包括三通阀,升降管(120)固接三通阀且接通出水口(112)。
PCT/CN2011/084338 2010-12-23 2011-12-21 切换水路装置 WO2012083847A1 (zh)

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