CN220678226U - Mechanical telescopic shower head - Google Patents

Mechanical telescopic shower head Download PDF

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Publication number
CN220678226U
CN220678226U CN202322295578.1U CN202322295578U CN220678226U CN 220678226 U CN220678226 U CN 220678226U CN 202322295578 U CN202322295578 U CN 202322295578U CN 220678226 U CN220678226 U CN 220678226U
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CN
China
Prior art keywords
shower head
water outlet
sliding
cavity
water
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Active
Application number
CN202322295578.1U
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Chinese (zh)
Inventor
吴穷羊
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Nan'an Wanma Pentium Sanitary Ware Co ltd
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Nan'an Wanma Pentium Sanitary Ware Co ltd
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Priority to CN202322295578.1U priority Critical patent/CN220678226U/en
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Abstract

The utility model discloses a mechanical telescopic shower head, which comprises a shower head, a rotating ring and a sliding shower head, wherein the shower head is of an annular structure, and a central through cavity penetrating through the shower head is formed in the middle of the shower head; the inner wall of the central through cavity is provided with a sliding cavity, the sliding spray head is arranged in the sliding cavity in a sliding manner, and the tail part of the sliding spray head is provided with a convex column; the rotary ring is rotationally connected with the shower head, a guide rail is formed on the rotary ring, the convex column slides in the guide rail, and the sliding shower head stretches out or retracts along with the rotation of the rotary ring. Compared with the prior art, the rotary ring is arranged to control the position of the sliding spray head, the sliding spray head can extend out of the central through cavity, and when the sliding spray head discharges water, water flow can drive part of air to flow from back to front in the central through cavity.

Description

Mechanical telescopic shower head
Technical Field
The utility model relates to the technical field of showers, in particular to a mechanical telescopic shower.
Background
The shower head is a shower nozzle which is arranged at the water outlet end of a water pipe and is used for bathing. Typically, the shower includes a shower head and a handle; one end of the shower head is provided with a water outlet panel with a plurality of water outlet holes; the handle sets up the one end of keeping away from the apopore at the gondola water faucet head, is provided with the water inlet channel that is linked together with the apopore in the handle. The switch is turned on, water enters the shower head through the water flow channel in the handle, and then is sprayed out from the water outlet hole on the shower head to form a plurality of uniform water columns.
The water outlet form of the existing shower is limited by the distribution of water outlet holes on a water outlet panel, and the style and the function are single. The demands of people on the increasing promotion of the shower heads cannot be met.
In view of the above, the present inventors have made intensive studies to solve the above-mentioned drawbacks of the prior art.
Disclosure of Invention
The utility model mainly aims to provide a mechanical telescopic shower head with a novel structure, which solves the problems of single style and function of the shower head in the background technology.
In order to achieve the above object, the solution of the present utility model is:
the mechanical telescopic shower head comprises a shower head body, a rotating ring and a sliding shower head, wherein the shower head body is of an annular structure, and a central through cavity penetrating through the shower head body is formed in the middle of the shower head body; the inner wall of the central through cavity is provided with a sliding cavity, the sliding spray head is arranged in the sliding cavity in a sliding manner, and the tail part of the sliding spray head is provided with a convex column; the rotary ring is rotationally connected with the shower head, a guide rail is formed on the rotary ring, the convex column slides in the guide rail, and the sliding shower head stretches out or retracts along with the rotation of the rotary ring.
Further, a plurality of sliding spray heads are arranged on the shower head, and a plurality of guide rails respectively corresponding to the sliding spray heads are arranged on the rotating ring; a plurality of sliding spray heads synchronously extend and retract; the water outlet directions of the sliding spray heads are the same.
Further, three sliding spray heads are arranged on the shower head and are uniformly arranged on the inner wall of the central through cavity in a sliding mode at intervals.
Further, the rotary ring comprises an annular water outlet panel and a track ring, wherein the annular water outlet panel is connected with the track ring and synchronously rotates, and the guide rail is formed on the track ring; a plurality of water outlet holes are formed on the annular water outlet panel; the water outlet direction of the sliding spray head is the same as the water outlet direction of the water outlet hole.
Further, a waterway switching seat is formed at the bottom of the annular water outlet panel, the shower head is provided with a water supply hole connected with the handle, a water inlet is formed on the waterway switching seat, and the water inlet is communicated with the water outlet hole on the annular water outlet panel; the water inlet is communicated with the water supply hole or the water supply hole is directly communicated with the inner cavity of the shower head along with the rotation of the rotating ring; the water flow in the inner cavity of the shower head enters the sliding shower head.
Further, the annular water outlet panel is provided with a first water outlet hole and a second water outlet hole, and a first water inlet and a second water inlet which are respectively communicated with the first water outlet hole and the second water outlet hole are formed on the waterway switching seat; the guide rail comprises a maintaining section and a changing section, and the track of the maintaining section is coaxially arranged with the rotation axis of the rotating ring; one end of the change section is connected with the maintenance section; the distance between the track point on the change section and the rotation axis of the rotating ring gradually decreases along the change section from the connection point.
After the structure is adopted, the mechanical telescopic shower head has at least the following beneficial effects:
1. through be formed with the center through-cavity in gondola water faucet head middle part to be formed with the flexible slip shower nozzle of slip in the center through-cavity, along with the rotation of swivel joint, guide rail on the swivel joint drives projection on the slip shower nozzle removes, so realize the extension or the withdrawal of slip shower nozzle. After the sliding spray head stretches out of the central through cavity and is filled with water, water flow is ejected out of the sliding spray head and penetrates through the opening of the central through cavity. In the flowing process of the water flow, surrounding air is driven to flow from back to front in the central through cavity.
2. Through setting up a plurality of water direction orientation the same slip shower nozzle, can strengthen rivers and drive the effect that the air flows, and a plurality of slip shower nozzles link through a plurality of guide rails on the swivel joint, realize stretching out in step and synchronous withdrawal in step.
3. Be provided with annular water outlet panel on the swivel ring, when the slip shower nozzle is retracted, can change the apopore that realizes on the annular water outlet panel through the runner and go out water, realized traditional gondola water faucet's play water effect promptly, will the play water direction on the slip shower nozzle is the same direction with the play water direction of apopore, rotates promptly behind the swivel ring, the rivers direction is the same side of gondola water faucet head.
4. The bottom of the annular water outlet panel is provided with a waterway switching seat, and the waterway of the sliding spray head is controlled to be conducted or not by rotating and adjusting the position relation between the water inlet and the water supply hole. When the water outlet of the sliding spray head needs to be switched, the rotary ring is driven to rotate, and the rotary ring drives the sliding spray head to extend. Meanwhile, the water inlet is staggered with the water supply hole, the water supply hole is directly communicated with the inner cavity of the shower head, and water flows from the inner cavity of the shower head into the sliding shower head.
5. The annular water outlet panel is provided with a first water outlet hole and a second water outlet hole which correspond to different water outlet modes respectively. When the water supply hole corresponds to the first water inlet, the first water outlet is used for discharging water, and when the water supply hole corresponds to the second water inlet, the second water outlet is used for discharging water.
Compared with the prior art, the rotary ring is arranged to control the position of the sliding spray head, the sliding spray head can extend out of the central through cavity, and when the sliding spray head discharges water, water flow can drive part of air to flow from back to front in the central through cavity.
Drawings
Fig. 1 is a schematic diagram of the overall structure of a mechanical telescopic shower head according to the present utility model.
Fig. 2 is a schematic view of the overall structure of the present utility model at another angle.
Fig. 3 is a schematic cross-sectional view of the present utility model.
Fig. 4 is a partial perspective cross-sectional view of the present utility model.
Fig. 5 is a schematic view of an exploded structure of the present utility model.
Fig. 6 is an exploded view of another angle of the present utility model.
Fig. 7 is a schematic view of a track ring driven sliding spray head.
In the figure:
a shower head 1; a central through cavity 11; a sliding chamber 12; a rotating ring 2; an orbital ring 21; a guide rail 210; a sustain section 211; a variation section 212; a jack 213; an annular water outlet panel 22; a first water outlet hole 221; a second water outlet 222; a post 223; a waterway switching seat 23; a first water inlet 231; a second water inlet 232; a decorative panel 24; a dial knob 241; a sliding nozzle 3; a post 31; a water supply hole 4; a handle 5.
Detailed Description
In order to further explain the technical scheme of the utility model, the utility model is explained in detail by specific examples.
As shown in fig. 1 to 7, the mechanical telescopic shower head comprises a shower head 1, a rotary ring 2 and a sliding shower head 3, wherein the shower head 1 is of an annular structure, and a central through cavity 11 penetrating through the shower head 1 is formed in the middle of the shower head; a sliding cavity 12 is formed on the inner wall of the central through cavity 11, the sliding nozzle 3 is arranged in the sliding cavity 12 in a sliding manner, and a convex column 31 is formed at the tail part of the sliding nozzle 3; the rotating ring 2 is rotatably connected with the shower head 1, a guide rail 210 is formed on the rotating ring 2, the convex column 31 slides in the guide rail 210, and the sliding shower head 3 extends or retracts along with the rotation of the rotating ring 2.
In this way, according to the mechanical telescopic shower head of the present utility model, the central through cavity 11 is formed in the middle of the shower head 1, and the sliding shower head 3 that slides and stretches is formed in the central through cavity 11, and along with the rotation of the rotating ring 2, the guide rail 210 on the rotating ring drives the boss 31 on the sliding shower head 3 to move, so as to implement the extension or retraction of the sliding shower head 3. After the sliding nozzle 3 extends into the central through cavity 11 and water is supplied, water flows out of the sliding nozzle 3 and passes through the opening of the central through cavity 11. During the water flow, the surrounding air is driven to flow from back to front in the central through cavity 11.
Preferably, a plurality of sliding spray heads 3 are arranged on the shower head 1, and a plurality of guide rails 210 corresponding to the sliding spray heads 3 are arranged on the rotating ring 2; a plurality of sliding spray heads 3 synchronously extend and retract; the water outlet directions of the sliding spray heads 3 are the same. Through setting up a plurality of water direction orientation the same slip shower nozzle 3, can strengthen rivers and drive the effect that the air flows, and a plurality of slip shower nozzles 3 link through a plurality of guide rails 210 on the swivel ring 2, realize stretching out in step and synchronous withdrawal in step. Furthermore, the shower head 1 is provided with three sliding spray heads 3, and the three sliding spray heads 3 are uniformly and slidingly arranged on the inner wall of the central through cavity 11 at intervals.
Preferably, the rotary ring 2 includes an annular water outlet panel 22 and a track ring 21, the annular water outlet panel 22 is connected with the track ring 21 and rotates synchronously (for example, a plug 223 is formed on the annular water outlet panel, the plug 223 is inserted into a jack 213 on the track ring 21), and the guide rail 210 is formed on the track ring 21; a plurality of water outlet holes are formed on the annular water outlet panel 22; the water outlet direction of the sliding spray head 3 is the same as the water outlet direction of the water outlet hole. Be provided with annular water outlet panel 22 on the rotatory ring 2, when the slip shower nozzle 3 is retracted, can change the apopore that realizes on the annular water outlet panel 22 through the runner and go out water, realized traditional gondola water faucet's play water effect promptly, will the play water direction on the slip shower nozzle 3 is the same direction with the play water direction of apopore, rotates promptly after the rotatory ring 2, the rivers direction is the same side of gondola water faucet head 1.
Preferably, a waterway switching seat 23 is formed at the bottom of the annular water outlet panel 22, the shower head 1 is provided with a water supply hole 4 connected with the handle 5, a water inlet is formed on the waterway switching seat 23, and the water inlet is communicated with the water outlet hole on the annular water outlet panel 22; along with the rotation of the rotary ring 2, the water inlet is communicated with the water supply hole 4 or the water supply hole 4 is directly communicated with the inner cavity of the shower head 1; the water flow in the inner cavity of the shower head 1 enters the sliding shower head 3. The bottom of the annular water outlet panel 22 is provided with a waterway switching seat 23, and whether the waterway of the sliding spray head 3 is conducted or not is controlled through the position relation between the water inlet and the water supply hole 4. When the water outlet needs to be switched to the sliding spray head 3, the rotary ring 2 is driven to rotate, and the rotary ring 2 drives the sliding spray head 3 to extend. Meanwhile, the water inlet is staggered with the water supply hole 4, the water supply hole 4 is directly communicated with the inner cavity of the shower head 1, and water flows from the inner cavity of the shower head 1 and enters the sliding shower head 3 from the tail part of the sliding shower head 3. Further, a decorative panel 24 is further disposed on the surface of the annular water outlet panel 22, the decorative panel 24 is fixedly connected with the annular water outlet panel 22, and a dial 241 is further disposed on the decorative panel 24.
Preferably, the annular water outlet panel 22 has a first water outlet 221 and a second water outlet 222, and the waterway switching seat 23 is formed with a first water inlet 231 and a second water inlet 232 respectively communicating with the first water outlet 221 and the second water outlet 222; the guide rail 210 comprises a maintaining section 211 and a changing section 212, wherein the track of the maintaining section 211 is coaxially arranged with the rotation axis of the rotating ring 2; one end of the changing section 212 is connected with the maintaining section 211; the distance of the locus of points on the varying section 212 from the axis of rotation of the rotating ring 2 decreases gradually along the varying section 212 from the junction.
The annular water outlet panel 22 is provided with a first water outlet 221 and a second water outlet 222, which respectively correspond to different water outlet modes, and are realized by the design of a layered waterway in the annular water outlet panel 22. When the water supply hole 4 corresponds to the first water inlet 231, the first water outlet 221 is used for discharging water, and when the water supply hole 4 corresponds to the second water inlet 232, the second water outlet 222 is used for discharging water.
When the water outlet of the first water outlet hole 221 and the water outlet of the second water outlet hole 222 are switched, namely, the water supply hole 4 is communicated with the first water inlet 231 or the second water inlet 232 through the rotation of the annular water outlet panel 22; at this time, the boss 31 slides in the holding section 211 of the guide rail 210, thus holding the sliding head 3 in the contracted state.
Compared with the prior art, the rotary ring 2 is arranged to control the position of the sliding spray head 3, the sliding spray head 3 can extend out of the central through cavity 11, and when the sliding spray head 3 discharges water, water flow can drive part of air to flow from back to front in the central through cavity 11.
The above examples and drawings are not intended to limit the form or form of the present utility model, 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 utility model.

Claims (6)

1. The mechanical telescopic shower head is characterized by comprising a shower head, a rotating ring and a sliding shower head, wherein the shower head is of an annular structure, and a central through cavity penetrating through the shower head is formed in the middle of the shower head; the inner wall of the central through cavity is provided with a sliding cavity, the sliding spray head is arranged in the sliding cavity in a sliding manner, and the tail part of the sliding spray head is provided with a convex column; the rotary ring is rotationally connected with the shower head, a guide rail is formed on the rotary ring, the convex column slides in the guide rail, and the sliding shower head stretches out or retracts along with the rotation of the rotary ring.
2. The mechanical telescopic shower head according to claim 1, wherein a plurality of sliding spray heads are arranged on the shower head, and a plurality of guide rails respectively corresponding to the sliding spray heads are arranged on the rotating ring; a plurality of sliding spray heads synchronously extend and retract; the water outlet directions of the sliding spray heads are the same.
3. A mechanical telescopic shower head according to claim 2, wherein three sliding spray heads are arranged on the shower head and are uniformly and slidingly arranged on the inner wall of the central through cavity at intervals.
4. A mechanical telescopic shower according to any of claims 1-3, wherein said swivel ring comprises an annular water outlet panel and a track ring, said annular water outlet panel being connected to and rotating synchronously with said track ring, said guide rail being formed on said track ring; a plurality of water outlet holes are formed on the annular water outlet panel; the water outlet direction of the sliding spray head is the same as the water outlet direction of the water outlet hole.
5. The mechanical telescopic shower head according to claim 4, wherein a waterway switching seat is formed at the bottom of the annular water outlet panel, the shower head is provided with a water supply hole connected with a handle, a water inlet is formed on the waterway switching seat, and the water inlet is communicated with the water outlet on the annular water outlet panel; the water inlet is communicated with the water supply hole or the water supply hole is directly communicated with the inner cavity of the shower head along with the rotation of the rotating ring; the water flow in the inner cavity of the shower head enters the sliding shower head.
6. The mechanical telescopic shower head according to claim 5, wherein the annular water outlet panel is provided with a first water outlet hole and a second water outlet hole, and the waterway switching seat is provided with a first water inlet and a second water inlet which are respectively communicated with the first water outlet hole and the second water outlet hole; the guide rail comprises a maintaining section and a changing section, and the track of the maintaining section is coaxially arranged with the rotation axis of the rotating ring; one end of the change section is connected with the maintenance section; the distance between the track point on the change section and the rotation axis of the rotating ring gradually decreases along the change section from the connection point.
CN202322295578.1U 2023-08-25 2023-08-25 Mechanical telescopic shower head Active CN220678226U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322295578.1U CN220678226U (en) 2023-08-25 2023-08-25 Mechanical telescopic shower head

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322295578.1U CN220678226U (en) 2023-08-25 2023-08-25 Mechanical telescopic shower head

Publications (1)

Publication Number Publication Date
CN220678226U true CN220678226U (en) 2024-03-29

Family

ID=90403879

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322295578.1U Active CN220678226U (en) 2023-08-25 2023-08-25 Mechanical telescopic shower head

Country Status (1)

Country Link
CN (1) CN220678226U (en)

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