CN108889489B - Humanized device applied to energy-saving shower faucet - Google Patents

Humanized device applied to energy-saving shower faucet Download PDF

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Publication number
CN108889489B
CN108889489B CN201810651789.5A CN201810651789A CN108889489B CN 108889489 B CN108889489 B CN 108889489B CN 201810651789 A CN201810651789 A CN 201810651789A CN 108889489 B CN108889489 B CN 108889489B
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CN
China
Prior art keywords
shower
sleeve
rod
wire body
water
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Application number
CN201810651789.5A
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Chinese (zh)
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CN108889489A (en
Inventor
陆海涛
杨跃滨
李�真
陈希敏
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Xiamen EASO Co Ltd
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Xiamen EASO Co Ltd
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Priority to CN201810651789.5A priority Critical patent/CN108889489B/en
Publication of CN108889489A publication Critical patent/CN108889489A/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/08Arrangements for controlling delivery; Arrangements for controlling the spray area responsive to condition of liquid or other fluent material to be discharged, of ambient medium or of target ; responsive to condition of spray devices or of supply means, e.g. pipes, pumps or their drive means
    • B05B12/085Arrangements for controlling delivery; Arrangements for controlling the spray area responsive to condition of liquid or other fluent material to be discharged, of ambient medium or of target ; responsive to condition of spray devices or of supply means, e.g. pipes, pumps or their drive means responsive to flow or pressure of liquid or other fluent material to be discharged
    • B05B12/087Flow or presssure regulators, i.e. non-electric unitary devices comprising a sensing element, e.g. a piston or a membrane, and a controlling element, e.g. a valve
    • 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
    • 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
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • Y02A20/40Protecting water resources

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  • Nozzles (AREA)

Abstract

The invention discloses a humanized device applied to an energy-saving shower faucet, which comprises a shower rod and a top shower head arranged at the top of the shower rod, wherein a waterway switching device is arranged in the top shower head; the invention also comprises a wire control mechanism, wherein the wire control mechanism comprises a driving component arranged at the lower part of the shower rod, a wire tube fixed in the shower rod and a movable wire body penetrating through the wire tube; the two ends of the wire body are respectively a driving end and a driving end; the driving end of the wire body is in linkage fit with the driving assembly, and the driving end of the wire body is in linkage fit with the waterway switching device; the driving assembly drives the wire body to move, so that the driving end of the wire body controls the waterway switching device to switch waterways. The remote control device can remotely control the water path switching device in the top-spraying shower to switch the water paths, and is convenient to operate and stable in switching.

Description

Humanized device applied to energy-saving shower faucet
Technical Field
The invention relates to the field of bathroom, in particular to a humanized device applied to an energy-saving shower faucet.
Background
In order to meet the use demands of users, the present shower device, the hand shower or the top shower has the following functional water for users, for example: column water, bubble water, mixed water, etc.
At present, each functional water of the handheld shower head or the top shower head is generally realized by arranging different functional water cavities, and is switched by a waterway switching device arranged in the handheld shower head or the top shower head, and the conventional waterway switching device is generally respectively pressed and rotated according to different operation modes.
At present, a problem exists for a top spraying shower head, and because the top spraying shower head is arranged at a high place, only a person with a high height can easily operate the top spraying shower head when water is discharged, and a person with a low height can operate the top spraying shower head by means of a chair or a ladder, so that great inconvenience exists under use.
Therefore, the water path switching of the top shower is controlled by utilizing the water pressure transformation, so that the water path switching of the top shower can be remotely controlled through the temperature regulating valve arranged on the shower rod, and the water path switching of the top shower is convenient for people to use; for example, the waterway remote control switching mechanism disclosed in chinese patent CN201410381666.6 adopts the principle, but the control of utilizing the water pressure change is limited by the water pressure of the water inlet end, and if the water pressure of the water inlet end is insufficient, waterway switching cannot be completed, so that the problem of unstable use exists.
Disclosure of Invention
The invention aims to provide a humanized device applied to an energy-saving shower faucet, which can remotely control waterway switching of a top shower head, is convenient for a user to use and is stable and reliable in switching.
In order to achieve the above object, the solution of the present invention is:
the humanized device applied to the energy-saving shower faucet comprises a shower rod and a top shower head arranged at the top of the shower rod, wherein an internal flow passage of the shower rod is communicated with a water passage in the top shower head, and the top shower head has at least two water outlet states; the water path switching device is arranged in the top shower head and used for controlling the water outlet state of the top shower head, the humanized device applied to the energy-saving shower faucet further comprises a line control mechanism, and the line control mechanism comprises a driving assembly arranged at the lower part of a shower rod, a line pipe fixed in the shower rod and a movable line body penetrating through the line pipe; the two ends of the wire body are respectively a driving end and a driving end; the driving end of the wire body is in linkage fit with the driving assembly, and the driving end of the wire body is in linkage fit with the waterway switching device; the driving assembly drives the wire body to move, so that the driving end of the wire body controls the waterway switching device to switch waterways.
The wire body is a steel wire rope; the spool is soft structure, the head end of spool and the top fixed connection of shower pole, the tail end of spool and the lower part fixed connection of shower pole.
The lower part of the shower rod is provided with a lateral mounting opening for mounting the driving assembly; the driving assembly comprises a sleeve fixed in the lateral mounting opening, a movable piston penetrating through the sleeve, a button connected with the piston and a button spring arranged between the sleeve and the button; the driving end of the wire body penetrates through the sleeve and is connected with the piston.
The middle part of button is formed with a dabber, the outer end of sleeve is equipped with a through-hole that the aperture is less than the piston diameter, and the inner of sleeve is equipped with the jack that supplies line body and piston to penetrate, the dabber of button is followed the through-hole penetrates in the sleeve and with the piston links to each other.
The tail end of the spool is arranged in the lateral mounting opening in a penetrating mode, the outer wall of the tail end of the spool is provided with a convex blocking edge, the inner wall of the lateral mounting opening is provided with an inward convex clamping edge, and the blocking edge is clamped between the inner end of the sleeve and the clamping edge.
The fixing device is characterized in that a fixing screw hole is formed in the clamping edge, an outer wall of the sleeve is provided with a convex connecting edge, a connecting hole is formed in the connecting edge, and the sleeve is connected with the clamping edge through a bolt penetrating through the connecting hole and being screwed with the fixing screw hole.
At least two functional water cavities are formed in the top-spraying shower head; the waterway switching device comprises a push rod, a reset piece and a water distribution piece for rotating and opening water inlets of all functional water cavities; the water diversion sheet is rotatably arranged in the top shower head; the ejector rod is movably arranged in the top shower head in a penetrating way and drives the water distribution sheet to rotate in a unidirectional way; the reset piece is arranged in the top spraying shower head and drives the ejector rod to reset after moving forward; the two ends of the ejector rod are respectively a pressing end and a linkage end; the transmission end of the wire body props against the pressing end of the ejector rod to push the ejector rod to move forward.
The water inlet end of the top shower head is provided with a universal ball head connected with an opening at the top of the shower rod, and a water channel which is communicated with an internal flow channel of the shower rod and a water channel in the top shower head is formed in the universal ball head; the ejector rod is movably arranged in the universal ball head in a penetrating way; the pressing end of the push rod is provided with a groove for inserting the push rod.
A guide mechanism is matched in an opening at the top of the shower rod; the guide mechanism comprises a guide sleeve fixed in an opening at the top of the shower rod and a push rod movably sleeved in the guide sleeve; the driving end of the wire body is matched with a push block which is movably penetrated in the guide sleeve, and the push block supports one end of the push rod; the other end of the push rod props against the pressing end of the push rod.
The guide sleeve comprises a sleeve, an upper cover and a lower cover; an inner cavity with an upper opening and a lower opening is formed in the sleeve; the outer wall of the sleeve is provided with a connecting baffle edge connected with the inner wall of the opening at the top of the shower rod, and the connecting baffle edge is provided with a water passing hole; one end of the push rod, which is supported by the push block, forms a convex pressed block; the pushing block and the compression block are sleeved in the inner cavity and are in transition fit with the inner cavity; the upper cover is fixedly connected with the head end of the spool; the upper cover is detachably connected with the upper part of the sleeve, a through hole for the wire body to pass through is formed in the upper cover, and the aperture of the through hole is smaller than the diameter of the pushing block; the lower cover is detachably connected with the lower part of the sleeve, the lower cover is provided with a sleeve hole for the push rod to pass through, and the aperture of the sleeve hole is smaller than the diameter of the pressed block.
After the scheme is adopted, when the water path switching device is used, the driving assembly is operated to enable the wire body to move, so that the driving end of the wire body controls the water path switching device to enable the water path switching device to switch the water path, and the water outlet state of the top shower head is switched; the driving component is arranged at the lower part of the shower rod, so that the height required by the operation control component is reduced, and the operation of people is facilitated; the waterway switching device is controlled by the driving assembly and is irrelevant to the water pressure change of the waterway, so that the waterway switching device is more stable and reliable when the waterway switching device is used for switching waterways.
Drawings
FIG. 1 is an exploded view of the present invention;
FIG. 2 is an enlarged view of FIG. 1 at a;
FIG. 3 is an enlarged view of FIG. 1 at b;
FIG. 4 is a schematic structural view of a guide sleeve;
fig. 5 is a combined sectional view of the present invention 1 (reset state);
FIG. 6 is an enlarged view at c of FIG. 5;
FIG. 7 is an enlarged view of FIG. 5 at d;
fig. 8 is a combined sectional view 2 (switching state) of the present invention;
FIG. 9 is an enlarged view of FIG. 8 at e;
FIG. 10 is an enlarged view at f of FIG. 8;
fig. 11 is a cross-sectional view of the top-spray shower of the present invention.
Detailed Description
In order to further explain the technical scheme of the invention, the invention is explained in detail by specific examples.
As shown in fig. 1 to 11, the invention discloses a humanized device applied to an energy-saving shower faucet, which comprises a shower rod a and a top shower head B arranged at the top of the shower rod a, wherein an internal flow passage of the shower rod a is communicated with a water way in the top shower head, and the top shower head B has at least two water outlet states; and a waterway switching device B1 for controlling the water outlet state of the top shower B is arranged in the top shower B.
The key point of the invention is that: the invention also comprises a wire control mechanism which comprises a driving component 1 arranged at the lower part of the shower rod A, a wire tube 2 fixed in the shower rod A and a wire body 3 movably penetrating through the wire tube 2; the two ends of the wire body 3 are respectively a driving end 31 and a driving end 32; the driving end 31 of the wire body 3 is in linkage fit with the driving assembly 1, and the driving end 32 of the wire body 3 is in linkage fit with the waterway switching device B1; the driving assembly 1 drives the wire body 3 to move, so that the driving end 32 of the wire body 3 controls the waterway switching device B1 to switch waterways, and the water outlet state of the top shower head B is changed. The driving component 1 is arranged at the lower part of the shower rod A, so that the height required by operating the control component 1 is reduced, and the operation of people is facilitated; the waterway switching device B1 is controlled by the driving assembly 1 and is irrelevant to the water pressure change of the waterway, so that the waterway switching device B1 is more stable and reliable when the waterway is switched.
Specifically, the wire body 3 may be a steel wire rope, so that the wire body 3 has a certain flexibility, and the wire body 3 may move along the spool 2 with a nonlinear structure and may perform a pressing operation on the waterway switching device B1; the spool 2 can be soft structure so that spool 2 can conveniently wear to place in shower pole A, wherein head end 21 and shower pole A's top fixed connection of spool 2, the tail end 22 and shower pole A's lower part fixed connection of spool 2, head end 21 and tail end 22 of spool 2 are all fixed in order to stop spool 2 like this to guarantee that line body 3 can remove in spool 2. The conduit 2 is not limited to a soft structure, and the conduit 2 may be a hard structure, and the conduit 2 may be inserted into the shower rod a by connecting a plurality of short pipes provided in the conduit 2.
As shown in fig. 1, the shower rod a may include a rod body A1 and a three-way joint A2 installed at a lower portion of the rod body A1; the rod body A1 is of a hollow structure, and the top of the rod body A1 is connected with the top shower head B; the three-way joint A2 comprises a transverse pipe A21 and a vertical pipe A22 which are vertically connected and communicated with each other, the upper end of the vertical pipe A22 is connected with the bottom of the rod body A1, the lower end of the vertical pipe A22 can be connected with a shower tap C with temperature adjusting function and water dividing function, the shower tap C can be formed by combining a temperature adjusting valve and a water dividing valve, and the temperature adjusting valve and the water dividing valve are combined into the shower tap C, which belongs to the conventional design for the person skilled in the art, so that the description is not expanded here. A lateral mounting opening A211 for mounting the driving assembly is formed in the transverse tube A21; with reference to fig. 2, the driving assembly 1 includes a sleeve 11, a piston 12, a button 13, and a button spring 14; the sleeve 11 is fixed in the side mounting opening A211, the piston 12 is movably penetrated in the sleeve 11, the button 13 is connected with the piston 12 to control the movement of the piston 12, and the button spring 14 is arranged between the sleeve 11 and the button 13 to reset the button 13 after the button 13 is pressed; the driving end of the wire body 3 is penetrated in the sleeve 11 and connected with the piston 12; the button 13 may form a cover 131 covering the transverse tube a21 to ensure the appearance of the invention and limit the movement of the button 13, two ends of the button spring 14 respectively prop against the cover 131 and the outer end of the sleeve 11, a mandrel 132 is formed in the middle of the button 13, a through hole 111 with a smaller aperture than the diameter of the piston 12 is formed in the outer end of the sleeve 11 to limit the piston 12 in the sleeve 11, an insertion hole 112 for the wire 3 and the piston 12 to penetrate is formed in the inner end of the sleeve 11, a mandrel 132 of the button 13 penetrates into the sleeve 11 from the through hole 111 and is connected with the piston 12, and the mandrel 132 and the piston 12 may be connected in a threaded connection manner or a clamping manner; the driving end 31 of the wire body 3 may be provided with a fixing block 311, the piston 12 is formed with a clamping groove 121 for nesting the fixing block 311, so that the driving end 31 of the wire body 3 is connected with the piston 12, and the fixing block 311 of the driving end 31 of the wire body 3 may also be connected with the piston 12 by screw threads. When the button 13 is pressed, the button 13 is acted by pressing force to drive the piston 12 to move forward, so that the wire body 13 is pushed to move forward, and the wire body 13 presses the waterway switching device B1; after the button 13 is pressed, the button is not pressed any more, and under the action of the button spring 14, the button 13 moves reversely to reset to drive the piston 12 to move reversely to reset, so that the wire body 3 is pulled to move reversely to reset the wire body 3.
As shown in fig. 6 and 9, the tail end 22 of the conduit 2 is inserted into the lateral mounting opening a211, an outer wall of the tail end 22 of the conduit 2 is formed with a convex blocking edge 221, an inner wall of the lateral mounting opening a211 is formed with an inward convex clamping edge a2111, and the blocking edge 221 is clamped between the inner end of the sleeve 11 and the clamping edge a2111, so that the tail end of the conduit 3 is fixed on the lower part of the shower rod a. The clamping edge A2111 can be provided with a fixing screw hole, the outer wall of the sleeve 11 is provided with a convex connecting edge 113, and the connecting edge 113 is provided with a connecting hole 1131, so that the sleeve 11 is connected with the clamping edge A2111 through a bolt 15 penetrating through the connecting hole 1131 and screwed with the fixing screw hole, and the sleeve 11 is fixed in the lateral mounting opening A211. The tail end 22 of the conduit 2 is not limited to being fixed on the lower part of the shower rod a by the blocking edge clamped between the inner end of the sleeve 11 and the clamping edge a2111, and the tail end 22 of the conduit 2 can also be matched with the lateral mounting opening a211 in a clamping way through a clamping structure.
At least two functional water cavities can be formed in the top shower head B; the waterway switching device B1 comprises a push rod B11, a reset piece B12 and a water diversion sheet B17 for opening the water inlets of the functional water cavities in a rotating way; the water diversion sheet B17 is rotatably arranged in the top shower head B; the ejector rod B11 is movably arranged in the top shower B in a penetrating manner and drives the water distribution sheet B17 to rotate in a unidirectional manner; the resetting piece B12 is arranged in the top shower B and drives the ejector rod B11 to reset after moving forward; the two ends of the ejector rod B11 are respectively a pressing end B111 and a linkage end B112; the driving end 32 of the wire body 3 supports the pressing end B111 of the ejector rod B11 to push the ejector rod B11 to move forward. Wherein, the push rod B11 drives the water diversion sheet B17 to rotate unidirectionally, and an existing ratchet mechanism or an automatic pen-type switching mechanism can be adopted.
In order to facilitate understanding of the present invention, a waterway switching device B1 is specifically described below, in which a ratchet mechanism is used to make the ejector B11 drive the water diversion sheet B17 to rotate unidirectionally. As shown in fig. 7, 10 and 11, a water diversion seat B18 is arranged in the top shower B, and the water diversion seat B18 and a water outlet panel B2 of the top shower B are matched to form at least two functional water cavities; the waterway switching device B1 comprises a push rod B11, a reversing swing block B13, a linkage rod B14, a resetting piece B12, a ratchet wheel B15, a water diversion sheet B17 and a pawl B16; the ejector rod B11 is movably matched in the top shower head B; the reversing swing block B13 is rotatably matched with the water diversion seat B18, the linkage rod B14 is movably matched with the water diversion seat B18, the reset piece B12 is a reset spring matched with the water diversion seat B18, the ratchet wheel B15 is synchronously and rotatably connected with the water diversion sheet B17, and the pawl B16 is rotatably matched with the water diversion seat B18; wherein the linkage end B112 of the ejector rod B11 supports one side of the reversing swing block B13; the other side of the reversing swing block B13 supports one end of the linkage rod B14; the other end of the linkage rod B14 movably supports a ratchet B151 of the ratchet B15; one end of the pawl B16 movably supports a ratchet B151 of the ratchet B15 to limit the ratchet B15 to rotate unidirectionally; the two ends of the return spring respectively abut against the linkage rod B14 and the water diversion seat B18 to enable the linkage rod B14 to reversely move and return after the linkage rod B17 moves forward, and the return piece B12 is not limited to adopting the return spring, but can also adopt elastic ribs arranged between the water diversion seat B18 and the linkage rod B14. As shown in fig. 7 and 10, when the wire body 3 applies a force to the ejector rod B11 to push the ejector rod B11 to move forward, the ejector rod B11 pushes the reversing swing block B13 to rotate forward, the forward rotation of the reversing swing block B13 pushes the linkage rod B14 to move forward to push the ratchet wheel B15 to rotate, and the rotation of the ratchet wheel B15 drives the water distribution plate B17 to rotate to complete waterway switching, so that the water outlet state of the top shower head B is changed; when the wire body 3 no longer applies force to the ejector rod B11, under the action of the reset spring, the linkage rod B14 moves reversely to reset to push the reversing pendulum block B13 to rotate reversely, the reversing pendulum block B13 rotates reversely to push the ejector rod B11 to move reversely to reset the ejector rod B11, and in the process, the ratchet wheel B15 is limited by the pawl B16 and does not rotate, and the waterway is kept unchanged.
For better pressing operation of the ejector rod B11, as shown in figures 3, 4, 7 and 10, a guide mechanism is matched in an opening at the top of the shower rod A; the guide mechanism comprises a guide sleeve 4 fixed in an opening at the top of the shower rod A and a push rod 5 movably sleeved in the guide sleeve 4; the transmission end 32 of the wire body 3 is matched with a push block 321 which is movably arranged in the guide sleeve 4 in a penetrating way, and the push block 321 supports one end of the push rod 5; the other end of the push rod 5 supports a pressing end B111 of the push rod B11; the invention can enable the forward movement of the wire body 3 to push the push rod 5 to perform directional movement by the guiding function of the guide sleeve 4 so as to ensure that the push rod 5 can be pressed to the push rod B11. Wherein the guide sleeve 4 may comprise a sleeve 41, an upper cover 42 and a lower cover 43; an inner cavity 411 with an upper opening and a lower opening is formed in the sleeve 41; one end of the push rod 5, which is supported by the push block 321, forms a convex pressed block 51; the pushing block 321 and the compression block 51 are movably arranged in the inner cavity 411 in a penetrating way and are in transition fit with the inner cavity 411; the outer wall of the sleeve 41 is provided with a connecting baffle edge 412 connected with the inner wall of the top opening of the shower rod A, and the connecting baffle edge 412 is provided with a water passing hole 4121 to ensure that the inner flow passage of the shower rod A is communicated with the water passage in the top shower head B; the connecting baffle edge 412 can be connected with the inner wall of the top opening of the shower rod A in a threaded or clamping way; the upper cover 42 is fixedly connected with the head end 21 of the spool 2; the upper cover 42 is detachably connected with the upper part of the sleeve 41 in a clamping or screwing way, the upper cover 42 is provided with a through hole 421 for the wire body 3 to pass through, and the aperture of the through hole 421 is smaller than the diameter of the push block 321 so as to limit the push block 321 in the sleeve 41; the lower cover 43 is detachably connected with the lower part of the sleeve 41 by means of clamping or screwing, the lower cover 43 is formed with a sleeve hole 431 for the push rod 5 to pass through, and the aperture of the sleeve hole 431 is smaller than the diameter of the pressed block 51 so as to limit the pressed block 51 in the sleeve 41.
Further, the water inlet end of the top shower head B is provided with a universal ball head 6 connected with the top opening of the shower rod A, and a water channel 61 which is communicated with the internal flow passage of the shower rod A and the water channel in the top shower head B is formed in the universal ball head 6; the ejector rod 61 is movably arranged in the universal ball head 6 in a penetrating way, so that the top shower head B can be rotated through the universal ball head 6 to realize multi-angle water outlet; in order to avoid that the push rod 5 is separated from the supporting of the push rod B11 due to the rotation of the top shower head B, a groove B1111 for inserting the push rod 5 is formed at the pressing end B111 of the push rod B11, and the push rod 5 can be ensured to support the push rod B11 through the limiting function of the groove B1111, so that the push rod B11 can be ensured to move forward by the forward movement of the push rod 5 to press the push rod B11, and the push rod B11 can also push the push rod 5 to move backward for resetting when the push rod B11 moves backward for resetting; the groove B1111 is preferably a hemispherical structure, the groove B1111 is not limited to the hemispherical structure, and the cross section of the groove B111 may be a trapezoid or a V-shape.
In order to facilitate understanding of the present invention, the following description specifically describes the working principle of the present invention:
as shown in fig. 6 and 7, the present invention is in an initial state when the driving assembly 1 is not subjected to a pressing operation; as shown in fig. 6 and 7 and fig. 9 and 10, when the button 13 of the driving assembly 1 is pressed, the button 13 is pressed to move forward, so that the driving end 32 of the driving body 3 pushes the push rod 5 to move forward along the guide sleeve 4, so that the push rod 5 presses the push rod B11, and the waterway switching device B is driven to switch waterways; as shown in fig. 9 and 10 and fig. 6 and 7, after the pressing operation of the button 13 of the driving assembly 1 is finished, the button 1 is not acted by the pressing force, under the action of the button spring 14, the button 13 pulls the wire body 3 to move reversely for resetting, so that the push rod 5 is not pressed against the push rod B11, and at the moment, under the action of the reset spring, the push rod B11 pushes the push rod 5 to move reversely for resetting.
The above examples and drawings are not intended to limit the form or form of the present invention, and any suitable variations or modifications thereof by those skilled in the art should be construed as not departing from the scope of the present invention.

Claims (8)

1. The humanized device applied to the energy-saving shower faucet comprises a shower rod and a top shower head arranged at the top of the shower rod, wherein an internal flow passage of the shower rod is communicated with a water passage in the top shower head, and the top shower head has at least two water outlet states; be equipped with the water route auto-change over device of control top shower water outlet state in the top shower, its characterized in that: the wire control mechanism comprises a driving component arranged at the lower part of the shower rod, a wire tube fixed in the shower rod and a movable wire body penetrating through the wire tube; the two ends of the wire body are respectively a driving end and a driving end; the driving end of the wire body is in linkage fit with the driving assembly, and the driving end of the wire body is in linkage fit with the waterway switching device; the driving assembly drives the wire body to move so that the transmission end of the wire body controls the waterway switching device to switch waterways;
the wire body is a steel wire rope, moves along the wire pipe and presses the waterway switching device;
the lower part of the shower rod is provided with a lateral mounting opening for mounting the driving assembly; the driving assembly comprises a sleeve fixed in the lateral mounting opening, a movable piston penetrating through the sleeve, a button connected with the piston and a button spring arranged between the sleeve and the button; the driving end of the wire body penetrates through the sleeve and is connected with the piston;
at least two functional water cavities are formed in the top-spraying shower head; the waterway switching device comprises a push rod, a reset piece and a water distribution piece for rotating and opening water inlets of all functional water cavities; the water diversion sheet is rotatably arranged in the top shower head; the ejector rod is movably arranged in the top shower head in a penetrating way and drives the water distribution sheet to rotate in a unidirectional way; the reset piece is arranged in the top spraying shower head and drives the ejector rod to reset after moving forward; the two ends of the ejector rod are respectively a pressing end and a linkage end; the transmission end of the wire body props against the pressing end of the ejector rod to push the ejector rod to move forward.
2. A humanization apparatus for an energy efficient shower faucet as defined in claim 1, wherein: the spool is soft structure, the head end of spool and the top fixed connection of shower pole, the tail end of spool and the lower part fixed connection of shower pole.
3. A humanization apparatus for an energy efficient shower faucet as defined in claim 1, wherein: the middle part of button is formed with a dabber, the outer end of sleeve is equipped with a through-hole that the aperture is less than the piston diameter, and the inner of sleeve is equipped with the jack that supplies line body and piston to penetrate, the dabber of button is followed the through-hole penetrates in the sleeve and with the piston links to each other.
4. A humanization apparatus for an energy efficient shower faucet as defined in claim 1, wherein: the tail end of the spool is arranged in the lateral mounting opening in a penetrating mode, the outer wall of the tail end of the spool is provided with a convex blocking edge, the inner wall of the lateral mounting opening is provided with an inward convex clamping edge, and the blocking edge is clamped between the inner end of the sleeve and the clamping edge.
5. A humanization apparatus for an energy efficient shower faucet as defined in claim 4, wherein: the fixing device is characterized in that a fixing screw hole is formed in the clamping edge, an outer wall of the sleeve is provided with a convex connecting edge, a connecting hole is formed in the connecting edge, and the sleeve is connected with the clamping edge through a bolt penetrating through the connecting hole and being screwed with the fixing screw hole.
6. A humanization apparatus for an energy efficient shower faucet as defined in claim 1, wherein: a guide mechanism is matched in an opening at the top of the shower rod; the guide mechanism comprises a guide sleeve fixed in an opening at the top of the shower rod and a push rod movably sleeved in the guide sleeve; the driving end of the wire body is matched with a push block which is movably penetrated in the guide sleeve, and the push block supports one end of the push rod; the other end of the push rod props against the pressing end of the push rod.
7. A humanization apparatus for an energy efficient shower faucet as defined in claim 6, wherein: the water inlet end of the top shower head is provided with a universal ball head connected with an opening at the top of the shower rod, and a water channel which is communicated with an internal flow channel of the shower rod and a water channel in the top shower head is formed in the universal ball head; the ejector rod is movably arranged in the universal ball head in a penetrating way; the pressing end of the push rod is provided with a groove for inserting the push rod.
8. A humanization apparatus for an energy efficient shower faucet as defined in claim 6, wherein: the guide sleeve comprises a sleeve, an upper cover and a lower cover; an inner cavity with an upper opening and a lower opening is formed in the sleeve; the outer wall of the sleeve is provided with a connecting baffle edge connected with the inner wall of the opening at the top of the shower rod, and the connecting baffle edge is provided with a water passing hole; one end of the push rod, which is supported by the push block, forms a convex pressed block; the pushing block and the compression block are sleeved in the inner cavity and are in transition fit with the inner cavity; the upper cover is fixedly connected with the head end of the spool; the upper cover is detachably connected with the upper part of the sleeve, a through hole for the wire body to pass through is formed in the upper cover, and the aperture of the through hole is smaller than the diameter of the pushing block; the lower cover is detachably connected with the lower part of the sleeve, the lower cover is provided with a sleeve hole for the push rod to pass through, and the aperture of the sleeve hole is smaller than the diameter of the pressed block.
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CN113693469B (en) * 2021-08-27 2023-07-28 厦门欧圣斯卫浴有限公司 Remote hydraulic switching shower

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