CN215669890U - Dual-mode water outlet nozzle - Google Patents

Dual-mode water outlet nozzle Download PDF

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Publication number
CN215669890U
CN215669890U CN202121755583.0U CN202121755583U CN215669890U CN 215669890 U CN215669890 U CN 215669890U CN 202121755583 U CN202121755583 U CN 202121755583U CN 215669890 U CN215669890 U CN 215669890U
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CN
China
Prior art keywords
water
water outlet
wall
sleeve
water distribution
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Active
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CN202121755583.0U
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Chinese (zh)
Inventor
钱世柱
张德丰
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Wenzhou Yisheng Sanitary Ware Co ltd
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Wenzhou Yisheng Sanitary Ware Co ltd
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Abstract

The utility model provides a dual-mode water outlet nozzle which comprises a cylindrical shell, wherein one end of the cylindrical shell is provided with a connecting part, and the inner wall of the cylindrical shell is provided with an inner retaining shoulder; the rear baffle piece is abutted against the inner baffle shoulder, one end of the rear baffle piece is provided with a buckling cylinder piece, and the surface of the rear baffle piece is also provided with a water diversion hole; the other end of the cylindrical shell is provided with a water distribution sleeve which can rotate relative to the buckling cylinder piece, a water distribution cone is arranged in the water distribution sleeve, water distribution partition plates are arranged between the outer cone wall of the water distribution cone and the inner wall of the water distribution sleeve, water distribution cavities are formed between adjacent water distribution partition plates, half of the water distribution cavities are provided with water outlet through holes, and the outer wall of the water distribution sleeve is provided with a water outlet notch communicated with the other half of the water distribution cavities; the water distribution sleeve is characterized by further comprising a water outlet barrel, one end of the water outlet barrel is located in the barrel-shaped shell and sleeved outside the water distribution sleeve, the water distribution sleeve is driven to rotate synchronously, a water outlet interlayer is formed between the inner wall of the water outlet barrel and the outer wall of the water distribution sleeve, and the water outlet interlayer is communicated with the water outlet notch. The utility model has the advantages of simple structure, convenient assembly and convenient water outlet regulation.

Description

Dual-mode water outlet nozzle
Technical Field
The utility model relates to the field of bathroom accessories, in particular to a dual-mode water outlet nozzle.
Background
Various washbasin faucets, kitchen faucets, extraction faucets and spray gun water outlets in bathroom accessories are usually provided with a bubbler, but the existing bubblers are usually provided with only one water outlet mode, namely single bubble water or single needle-shaped water, and the quick switching between the two modes is realized by a water taking method; it is difficult to satisfy various cleaning needs of consumers.
Therefore, chinese patent CN201410087139.4 discloses a bubbler with double water-spraying functions, which comprises a flow control assembly, a water distribution body and a water outlet body, which are matched with a shell; the flow control assembly is matched with the water distributing body, the water distributing body is rotatably connected with the water outlet body, and the lower part of the water outlet body is provided with a water outlet net; the water outlet body protrudes out of the shell; water outlet holes are uniformly distributed on the near periphery of the water distribution plate surface at intervals, and an energy storage pool is formed at the upper end of each group of water outlet holes; needle-shaped water flow passages are uniformly distributed at intervals at the periphery of the inner cavity of the water outlet body corresponding to the water outlet holes of the water distribution body, bubble water passages are formed among the needle-shaped water flow passages, the middle part enclosed by the needle-shaped water flow passages forms the bubble water flow passages, and grid water outlet holes are arranged at the water outlet holes at the lower ends of the bubble water flow passages.
Although the switching function of single bubble water or single needle water has been solved to above-mentioned patent, its goes out the water body and divides the water body structure complicated, and the mould design degree of difficulty is higher, has increased the production input cost, also influences the success rate of drawing of patterns, and the rejection rate is directly proportional along with the complexity of its structure.
SUMMERY OF THE UTILITY MODEL
Based on the above problems, the present invention is directed to a dual-mode faucet with simple structure, reduced mold opening cost, easy assembly, and convenient adjustment of water outlet.
Aiming at the problems, the following technical scheme is provided: a double-mode water outlet nozzle comprises a cylindrical shell, wherein one end of the cylindrical shell is provided with a connecting part, and the inner wall of the cylindrical shell is provided with an annular inner retaining shoulder; the connecting piece is characterized by also comprising a rear baffle piece which is positioned on one side of the connecting part and is abutted against the inner retaining shoulder, wherein one end of the rear baffle piece facing the inner retaining shoulder is provided with a plurality of buckling cylinder pieces which are uniformly distributed at intervals along the circumferential direction of the rear baffle piece, and the surface of the rear baffle piece surrounded by the buckling cylinder pieces is also provided with a plurality of water diversion holes which are uniformly distributed at intervals along the circumferential direction of the rear baffle piece; the water diversion sleeve is buckled with the inner wall of the buckling cylinder piece and can rotate relative to the buckling cylinder piece, a water diversion cone with a cone tip arranged towards one side of the rear baffle piece is arranged in the water diversion sleeve, a plurality of water diversion partition plates which are uniformly distributed along the circumferential direction of the water diversion sleeve are arranged between the outer cone wall of the water diversion cone and the inner wall of the water diversion sleeve at intervals, the top surfaces of the water diversion partition plates and the end surfaces of the water diversion sleeve are level and abut against the surface of the rear baffle piece, water diversion cavities with the number being one time that of water diversion holes are formed between the adjacent water diversion partition plates, water outlet through holes communicated with the inner cavities of the water diversion sleeves are arranged in half of the water diversion cavities, water outlet notches communicated with the other half of the water diversion cavities are arranged on the outer wall of the water diversion sleeve, and the water diversion cavities communicated with the inner cavities of the water diversion sleeves are positioned between the adjacent water diversion cavities communicated with the water outlet notches; the water distribution sleeve is characterized by further comprising a water outlet barrel, one end of the water outlet barrel is located in the barrel-shaped shell, the water distribution sleeve is sleeved outside the water distribution sleeve, the water outlet barrel is fastened with the outer wall of the fastening barrel piece and can rotate relative to the fastening barrel piece, the water distribution sleeve is synchronously driven to rotate, a water outlet interlayer is formed between the inner wall of the water outlet barrel and the outer wall of the water distribution sleeve, and the water outlet interlayer is communicated with the water outlet notch.
In the structure, the buckling cylinder piece fixes the water distributing sleeve and the water outlet cylinder in a buckling mode, and the water distributing sleeve and the water outlet cylinder can rotate relative to the rear blocking piece and the buckling cylinder piece, so that the water distributing holes uniformly select a water distributing cavity communicated with the water outlet through hole or a water distributing cavity communicated with the water outlet notch to be aligned through rotation, and when the water distributing holes are aligned with the water distributing cavities communicated with the water outlet through holes, water flows enter the water distributing sleeve through the water outlet through holes through the water distributing cavities to realize the central water outlet of the water distributing sleeve; when the water diversion cavity communicated with the water diversion hole and the water outlet notch is aligned, water flow enters the water outlet interlayer between the inner wall of the water outlet barrel and the outer wall of the water diversion sleeve through the water diversion cavity and the water outlet notch, so that water is discharged from the water outlet interlayer between the water outlet barrel and the water diversion sleeve; because the water distributing sleeve and the water outlet barrel which are mainly of the cylindrical structure construct the water outlet interlayer and the water outlet at the center of the water distributing sleeve, the structure is greatly simplified, the die opening cost and the die opening complexity are reduced, the die opening burden of an enterprise is reduced, the service life of the die is ensured, and the convenience of assembly is also ensured.
The utility model is further arranged that the inner wall and the outer wall of the buckling cylinder sheet are respectively provided with an inner buckling hook and an outer buckling hook; the outer wall of the water distribution sleeve is provided with an outer buckling edge buckled with the inner buckling hook; one end, facing the rear retaining piece, of the water outlet barrel abuts against the end face of the inner retaining shoulder and is provided with a closing-in opening, and the end face, facing away from the rear retaining piece, of one end of the closing-in opening is buckled with the outer buckling hook.
In the structure, the inner buckling hook and the outer buckling hook can be butted with the outer buckling edge and the closing-in edge after the installation is finished, and the convenience of assembly is effectively guaranteed.
The utility model is further provided that the outer wall of the water outlet barrel at the closing-in position is provided with an outer groove, and the outer groove is provided with a sealing ring which is sealed with the inner wall of the barrel-shaped shell.
In the structure, the sealing ring is used for sealing the gap between the water outlet barrel and the cylindrical shell, so that water leakage and leaping up are avoided.
The utility model is further provided that the connection is an internal or external thread.
In the structure, the connecting part can select the internal thread or the external thread according to the difference of the connecting objects so as to achieve wider adaptability.
The utility model is further arranged that when the connecting part is an internal thread, one surface of the rear blocking piece, which is back to the buckling cylinder piece, is provided with an annular sealing gasket.
In the structure, when the annular sealing gasket is connected with the water outlet of the water faucet, the sealing effect is realized, and meanwhile, the rear blocking piece is fixed through extrusion, so that the situation that the rear blocking piece and the fastening cylinder piece follow the rotation together due to the friction between the rear blocking piece and the fastening cylinder piece when the water outlet cylinder drives the water diversion sleeve to rotate is avoided.
The utility model is further provided that the end part of the water distribution sleeve at one end of the large-diameter end of the water distribution cone is provided with a bubbler installation part for installing a bubbler.
In the above structure, the bubbler installation part is used for installing the bubbler.
The utility model is further provided that the inner wall of one side of the extending end of the buckling cylinder piece is also provided with a limiting bulge, and the outer wall of the water distribution sleeve is provided with a plurality of positioning bulges which are arranged at intervals along the circumferential direction of the outer wall of the water distribution sleeve; when the water outlet barrel drives the water distribution sleeve to rotate, the limiting protrusions clamped between the adjacent positioning protrusions push the fastening barrel pieces to elastically deform in the radial direction of the water distribution sleeve to make a concession, and after the rotation is completed, the limiting protrusions are clamped between the adjacent positioning protrusions again through elastic resetting of the fastening barrel pieces to achieve the rotation positioning.
In the structure, the condition that the water outlet is switched due to accidental rotation when the water outlet barrel and the water distribution sleeve are used due to lack of circumferential positioning can be avoided.
The utility model is further arranged in such a way that the outer edge of one end of the water distribution sleeve, which is back to the small diameter of the water distribution cone, is provided with an outer retaining shoulder in interference fit with the inner wall of the water outlet barrel, and the outer cylindrical wall of the outer retaining shoulder is provided with a plurality of water outlet grooves which are arranged at intervals along the circumferential direction of the outer cylindrical wall.
In the structure, the outer blocking shoulder in interference fit realizes the rigid connection of the water outlet barrel and the water distribution sleeve, the water outlet groove forms needle-shaped water outlet, and the bubbler forms bubble water.
The utility model is further provided that the outer wall of the water outlet barrel is provided with an anti-skid rubber sleeve.
In the structure, the anti-skid rubber sleeve is provided with the anti-skid protrusions on the surface to increase friction force and avoid skidding when the water outlet barrel rotates.
The utility model has the beneficial effects that: the buckling cylinder piece fixes the water distributing sleeve and the water outlet cylinder in a buckling mode, and the water distributing sleeve and the water outlet cylinder can rotate relative to the rear blocking piece and the buckling cylinder piece, so that a water distributing cavity communicated with the water outlet through hole or a water distributing cavity communicated with the water outlet notch is uniformly selected by rotating each water distributing hole, and when the water distributing cavity communicated with the water outlet through hole is aligned, water flows into the water distributing sleeve through the water outlet through hole through the water distributing cavity to realize central water outlet of the water distributing sleeve; when the water diversion cavity communicated with the water diversion hole and the water outlet notch is aligned, water flow enters the water outlet interlayer between the inner wall of the water outlet barrel and the outer wall of the water diversion sleeve through the water diversion cavity and the water outlet notch, so that water is discharged from the water outlet interlayer between the water outlet barrel and the water diversion sleeve; because the water distributing sleeve and the water outlet barrel which are mainly of the cylindrical structure construct the water outlet interlayer and the water outlet at the center of the water distributing sleeve, the structure is greatly simplified, the die opening cost and the die opening complexity are reduced, the die opening burden of an enterprise is reduced, the service life of the die is ensured, and the convenience of assembly is also ensured.
Drawings
Fig. 1 is a schematic top view perspective structure of the present invention.
Fig. 2 is a schematic bottom view perspective structure of the present invention.
FIG. 3 is a schematic top view perspective full-section structure of the present invention.
Fig. 4 is a schematic view of a bottom view full-section structure of the present invention.
Fig. 5 is a schematic diagram of a top view explosion structure according to the present invention.
Fig. 6 is a schematic diagram of a top view explosion structure according to the present invention.
The reference numbers in the figures mean: 10-a cylindrical housing; 11-a connecting portion; 12-an inner shoulder; 20-rear baffle plate; 21-buckling the cylinder sheet; 211-inner buckling hook; 212-outer fastening hook; 213-limit protrusion; 22-water distribution holes; 30-water distribution sleeve; 31-water dividing cone; 32-a water-dividing partition; 321-a water diversion cavity; 322-water outlet through hole; 323-water outlet notch; 33-outer snap-fit rim; 34-a bubbler mount; 35-positioning protrusions; 36-an outer shoulder; 361-water outlet groove; 40-water outlet cylinder; 41-closing up; 42-outer groove; 43-sealing ring; 44-antiskid rubber sleeve; 441-anti-slip protrusions; 50-annular seal; 60-a bubbler; a-water outlet interlayer.
Detailed Description
The following detailed description of embodiments of the present invention is provided in connection with the accompanying drawings and examples. The following examples are intended to illustrate the utility model but are not intended to limit the scope of the utility model.
Referring to fig. 1 to 6, the dual-mode water outlet nozzle shown in fig. 1 to 6 comprises a cylindrical housing 10, wherein one end of the cylindrical housing 10 is provided with a connecting part 11, and the inner wall of the cylindrical housing 10 is provided with an annular inner retaining shoulder 12; the connecting piece is characterized by further comprising a rear baffle sheet 20 which is positioned on one side of the connecting part 11 and is abutted against the inner retaining shoulder 12, wherein a plurality of buckling cylinder sheets 21 which are uniformly distributed and arranged at intervals along the circumferential direction of the rear baffle sheet 20 are arranged at one end of the rear baffle sheet 20 facing the inner retaining shoulder 12, and a plurality of water distribution holes 22 which are uniformly distributed and arranged at intervals along the circumferential direction of the surface of the rear baffle sheet 20 surrounded by the buckling cylinder sheets 21 are further arranged; the other end of the cylindrical shell 10 is provided with a water distribution sleeve 30 which is fastened with the inner wall of the fastening cylinder piece 21 and can rotate relative to the fastening cylinder piece 21, a water distribution cone 31 with a cone tip arranged towards one side of the rear baffle piece 20 is arranged in the water distribution sleeve 30, a plurality of water distribution partition plates 32 which are uniformly distributed at intervals along the circumferential direction of the water distribution sleeve 30 are arranged between the outer cone wall of the water distribution cone 31 and the inner wall of the water distribution sleeve 30, the top surfaces of the water distribution partition plates 32 and the end surface of the water distribution sleeve 30 are level and are abutted against the surface of the rear baffle piece 20, water distribution cavities 321 with the quantity being one time as large as that of the water distribution holes 22 are formed between the adjacent water distribution partition plates 32, half of the water distribution cavities 321 are provided with water outlet through holes 322 communicated with the inner cavity of the water distribution sleeve 30, the outer wall of the water distribution sleeve 30 is provided with water outlet notches 323 communicated with the other half of the water distribution cavities 321, and the water distribution cavities 321 communicated with the water outlet notches 323 communicated with the inner cavity of the water distribution sleeve 30 are positioned between the adjacent water distribution cavities 321; the water distribution sleeve also comprises a water outlet barrel 40, one end of the water outlet barrel 40 is positioned in the cylindrical shell 10, is sleeved outside the water distribution sleeve 30, is fastened with the outer wall of the fastening barrel piece 21, can rotate relative to the fastening barrel piece 21, and synchronously drives the water distribution sleeve 30 to rotate, a water outlet interlayer a is formed between the inner wall of the water outlet barrel 40 and the outer wall of the water distribution sleeve 30, and the water outlet interlayer a is communicated with the water outlet notch 323.
In the above structure, the fastening barrel piece 21 fixes the water distribution sleeve 30 and the water outlet barrel 40 by fastening, and the water distribution sleeve 30 and the water outlet barrel 40 can rotate relative to the rear baffle 20 and the fastening barrel piece 21, so that each water distribution hole 22 is uniformly aligned with one water distribution cavity 321 communicated with the water outlet through hole 322 or one water distribution cavity 321 communicated with the water outlet notch 323 by rotating, when the water distribution cavity 321 communicated with the water outlet through hole 322 is aligned with the water distribution hole 22, water flows through the water distribution cavity 321 and enters the water distribution sleeve 30 through the water outlet through hole 322 to realize central water outlet of the water distribution sleeve 30; when the water diversion hole 22 is aligned with the water diversion cavity 321 communicated with the water outlet notch 323, water flow enters the water outlet interlayer a between the inner wall of the water outlet barrel 40 and the outer wall of the water diversion sleeve 30 through the water diversion cavity 321 through the water outlet notch 323, so that water is discharged from the water outlet interlayer a between the water outlet barrel 40 and the water diversion sleeve 30; because the water diversion sleeve 30 and the water outlet barrel 40 which mainly have cylindrical structures construct the water outlet interlayer a and the water outlet at the center of the water diversion sleeve 30, the structure is greatly simplified, the die sinking cost and the die sinking complexity are reduced, the die sinking burden of an enterprise is reduced, the service life of the die is ensured, and the convenience of assembly is also ensured.
In this embodiment, the inner wall and the outer wall of the fastening cylinder piece 21 are respectively provided with an inner fastening hook 211 and an outer fastening hook 212; the outer wall of the water distributing sleeve 30 is provided with an outer buckling edge 33 buckled with the inner buckling hook 211; one end of the water outlet barrel 40 facing the rear baffle 20 abuts against the end face of the inner baffle shoulder 12 and is provided with a closing-in 41, and the end face of the closing-in 41 facing away from the rear baffle 20 is fastened with the outer fastening hook 212.
In the above structure, the inner fastening hook 211 and the outer fastening hook 212 can be butted with the outer fastening edge 33 and the closing-in 41 after the installation is completed, so as to effectively ensure the convenience of assembly.
In this embodiment, the outer wall of the water outlet barrel 40 at the closing-in 41 is provided with an outer groove 42, and the outer groove 42 is provided with a sealing ring 43 sealed with the inner wall of the cylindrical shell 10.
In the above structure, the sealing ring 43 is used to seal the gap between the water outlet barrel 40 and the barrel-shaped housing 10, so as to avoid water leakage.
In this embodiment, the connecting portion 11 is an internal thread or an external thread.
In the structure, the connecting part 11 can select internal threads or external threads according to different connecting objects so as to achieve wider adaptability.
In this embodiment, when the connecting portion 11 is an internal thread, an annular sealing gasket 50 is disposed on a surface of the rear blocking piece 20 opposite to the buckling cylinder piece 21.
In the above structure, when the connecting portion 11 is connected to the water outlet of the faucet, the annular sealing gasket 50 achieves a sealing effect, and meanwhile, the rear blocking piece 20 is fixed by extrusion, so that the situation that the rear blocking piece 20 and the fastening cylinder piece 21 rotate together along with each other due to friction with the fastening cylinder piece 21 when the water outlet cylinder 40 drives the water distribution sleeve 30 to rotate is avoided.
In this embodiment, the end of the water diversion sleeve 30 at the end of the large diameter end of the water diversion cone 31 is provided with a bubbler installation part 34 for installing a bubbler 60.
In the above structure, the bubbler mounting portion 34 is used to mount the bubbler 60.
In this embodiment, the inner wall of one side of the extending end of the fastening cylinder piece 21 is further provided with a limiting protrusion 213, and the outer wall of the water distribution sleeve 30 is provided with a plurality of positioning protrusions 35 arranged at intervals along the circumferential direction of the outer wall of the water distribution sleeve 30; when the water outlet barrel 40 drives the water distribution sleeve 30 to rotate, the limiting protrusions 213 clamped between the adjacent positioning protrusions 35 push the buckling barrel piece 21 to elastically deform in the radial direction of the water distribution sleeve 30 to make a yielding, and after the rotation is completed, the limiting protrusions 213 are clamped between the adjacent positioning protrusions 35 again through elastic resetting of the buckling barrel piece 21 to realize the rotation positioning.
In the above structure, the situation that the water outlet is switched due to accidental rotation when the water outlet barrel 40 and the water distribution sleeve 30 are used due to lack of circumferential positioning can be avoided.
In this embodiment, an outer edge of one end of the water distribution sleeve 30, which is opposite to the small diameter of the water distribution cone 31, is provided with an outer retaining shoulder 36 in interference fit with the inner wall of the water outlet barrel 40, and an outer cylindrical wall of the outer retaining shoulder 36 is provided with a plurality of water outlet grooves 361 arranged at intervals along the circumferential direction.
In the above structure, the external shoulder 36 with interference fit realizes the rigid connection between the water outlet barrel 40 and the water distribution sleeve 30, the water outlet groove 361 forms needle-shaped water outlet, and the bubbler 60 forms bubble water.
In this embodiment, the outer wall of the water outlet barrel 40 is provided with an anti-slip rubber sleeve 44.
In the above structure, the surface of the anti-slip rubber sleeve 44 is provided with the anti-slip protrusions 441 to increase friction force and prevent the water outlet barrel 40 from slipping when rotating.
The utility model has the beneficial effects that: the buckling cylinder piece 21 fixes the water distributing sleeve 30 and the water outlet cylinder 40 in a buckling mode, the water distributing sleeve 30 and the water outlet cylinder 40 can rotate relative to the rear blocking piece 20 and the buckling cylinder piece 21, so that a water distributing cavity 321 communicated with the water outlet through hole 322 or a water distributing cavity 321 communicated with the water outlet notch 323 are uniformly selected by rotating each water distributing hole 22, when the water distributing cavity 321 communicated with the water outlet through hole 322 is aligned with the water distributing hole 22, water flow enters the water distributing sleeve 30 through the water outlet through hole 322 through the water distributing cavity 321 to realize water outlet at the center of the water distributing sleeve 30; when the water diversion hole 22 is aligned with the water diversion cavity 321 communicated with the water outlet notch 323, water flow enters the water outlet interlayer a between the inner wall of the water outlet barrel 40 and the outer wall of the water diversion sleeve 30 through the water diversion cavity 321 through the water outlet notch 323, so that water is discharged from the water outlet interlayer a between the water outlet barrel 40 and the water diversion sleeve 30; because the water diversion sleeve 30 and the water outlet barrel 40 which mainly have cylindrical structures construct the water outlet interlayer a and the water outlet at the center of the water diversion sleeve 30, the structure is greatly simplified, the die sinking cost and the die sinking complexity are reduced, the die sinking burden of an enterprise is reduced, the service life of the die is ensured, and the convenience of assembly is also ensured.
The above description is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, several modifications and variations can be made without departing from the technical principle of the present invention, and those modifications and variations assumed in the above are also considered to be within the protective scope of the present invention.

Claims (9)

1. A dual mode faucet, includes the tube-shape casing, its characterized in that: one end of the cylindrical shell is provided with a connecting part, and the inner wall of the cylindrical shell is provided with an annular inner retaining shoulder; the connecting piece is characterized by also comprising a rear baffle piece which is positioned on one side of the connecting part and is abutted against the inner retaining shoulder, wherein one end of the rear baffle piece facing the inner retaining shoulder is provided with a plurality of buckling cylinder pieces which are uniformly distributed at intervals along the circumferential direction of the rear baffle piece, and the surface of the rear baffle piece surrounded by the buckling cylinder pieces is also provided with a plurality of water diversion holes which are uniformly distributed at intervals along the circumferential direction of the rear baffle piece; the water diversion sleeve is buckled with the inner wall of the buckling cylinder piece and can rotate relative to the buckling cylinder piece, a water diversion cone with a cone tip arranged towards one side of the rear baffle piece is arranged in the water diversion sleeve, a plurality of water diversion partition plates which are uniformly distributed along the circumferential direction of the water diversion sleeve are arranged between the outer cone wall of the water diversion cone and the inner wall of the water diversion sleeve at intervals, the top surfaces of the water diversion partition plates and the end surfaces of the water diversion sleeve are level and abut against the surface of the rear baffle piece, water diversion cavities with the number being one time that of water diversion holes are formed between the adjacent water diversion partition plates, water outlet through holes communicated with the inner cavities of the water diversion sleeves are arranged in half of the water diversion cavities, water outlet notches communicated with the other half of the water diversion cavities are arranged on the outer wall of the water diversion sleeve, and the water diversion cavities communicated with the inner cavities of the water diversion sleeves are positioned between the adjacent water diversion cavities communicated with the water outlet notches; the water distribution sleeve is characterized by further comprising a water outlet barrel, one end of the water outlet barrel is located in the barrel-shaped shell, the water distribution sleeve is sleeved outside the water distribution sleeve, the water outlet barrel is fastened with the outer wall of the fastening barrel piece and can rotate relative to the fastening barrel piece, the water distribution sleeve is synchronously driven to rotate, a water outlet interlayer is formed between the inner wall of the water outlet barrel and the outer wall of the water distribution sleeve, and the water outlet interlayer is communicated with the water outlet notch.
2. A dual mode faucet as set forth in claim 1, wherein: the inner wall and the outer wall of the buckling cylinder sheet are respectively provided with an inner buckling hook and an outer buckling hook; the outer wall of the water distribution sleeve is provided with an outer buckling edge buckled with the inner buckling hook; one end, facing the rear retaining piece, of the water outlet barrel abuts against the end face of the inner retaining shoulder and is provided with a closing-in opening, and the end face, facing away from the rear retaining piece, of one end of the closing-in opening is buckled with the outer buckling hook.
3. A dual mode faucet as set forth in claim 2, wherein: the outer wall of the water outlet barrel at the closing-in position is provided with an outer groove, and the outer groove is provided with a sealing ring sealed with the inner wall of the barrel-shaped shell.
4. A dual mode faucet as set forth in claim 1, wherein: the connecting part is an internal thread or an external thread.
5. A dual mode faucet as set forth in claim 1, wherein: when the connecting part is an internal thread, an annular sealing gasket is arranged on one surface of the back blocking piece, which is back to the buckling cylinder piece.
6. A dual mode faucet as set forth in claim 1, wherein: and the end part of the water distribution sleeve at one end of the large-diameter end of the water distribution cone is provided with a bubbler installation part for installing a bubbler.
7. A dual mode faucet as set forth in claim 1, wherein: the inner wall of one side of the extending end of the buckling cylinder piece is also provided with a limiting bulge, and the outer wall of the water distribution sleeve is provided with a plurality of positioning bulges arranged at intervals along the circumferential direction of the outer wall of the water distribution sleeve; when the water outlet barrel drives the water distribution sleeve to rotate, the limiting protrusions clamped between the adjacent positioning protrusions push the fastening barrel pieces to elastically deform in the radial direction of the water distribution sleeve to make a concession, and after the rotation is completed, the limiting protrusions are clamped between the adjacent positioning protrusions again through elastic resetting of the fastening barrel pieces to achieve the rotation positioning.
8. A dual mode faucet as set forth in claim 1, wherein: the outer edge of one end of the water distribution sleeve, which is back to the small diameter of the water distribution cone, is provided with an outer retaining shoulder in interference fit with the inner wall of the water outlet barrel, and the outer cylindrical wall of the outer retaining shoulder is provided with a plurality of water outlet grooves which are arranged at intervals along the circumferential direction of the outer retaining shoulder.
9. A dual mode faucet as set forth in claim 1, wherein: and the outer wall of the water outlet cylinder is provided with an anti-slip rubber sleeve.
CN202121755583.0U 2021-07-29 2021-07-29 Dual-mode water outlet nozzle Active CN215669890U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121755583.0U CN215669890U (en) 2021-07-29 2021-07-29 Dual-mode water outlet nozzle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121755583.0U CN215669890U (en) 2021-07-29 2021-07-29 Dual-mode water outlet nozzle

Publications (1)

Publication Number Publication Date
CN215669890U true CN215669890U (en) 2022-01-28

Family

ID=79982377

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121755583.0U Active CN215669890U (en) 2021-07-29 2021-07-29 Dual-mode water outlet nozzle

Country Status (1)

Country Link
CN (1) CN215669890U (en)

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