CN214974945U - Ultra-micro fog drop nozzle adapter - Google Patents

Ultra-micro fog drop nozzle adapter Download PDF

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Publication number
CN214974945U
CN214974945U CN202023025133.4U CN202023025133U CN214974945U CN 214974945 U CN214974945 U CN 214974945U CN 202023025133 U CN202023025133 U CN 202023025133U CN 214974945 U CN214974945 U CN 214974945U
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China
Prior art keywords
adapter
hole
water inlet
head
nozzle body
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CN202023025133.4U
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Chinese (zh)
Inventor
刘伟
王伟
孙超
林郑辉
杨成花
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Wusu Auto Technology Nantong Co ltd
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Walsh Enterprise Development Shanghai Co ltd
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Abstract

The embodiment of the utility model provides a super little droplet shower nozzle adapter is related to, include: the super little droplet shower nozzle, super little droplet shower nozzle still include: the nozzle body is in threaded connection with one side of the ultramicro droplet spray head; a rotational flow head is arranged in the nozzle body; one end of the rotational flow head is propped against the spray hole on the nozzle body; one end of the spring is sleeved on one end of the rotational flow head, the other end of the spring is propped against one end of the water inlet cap, and one end of the water inlet cap is provided with a section of external thread; a first internal thread in the nozzle body inner bore; forming a thread structure; the filter screen is sleeved on the water inlet cap and is propped against the brim arranged on the water inlet cap; the effect of reducing the diameter of spray particle has mainly been solved, guarantees that liquid gets into the swirl chamber through the whirl groove completely. The filter screen guarantees that the liquid that gets into the shower nozzle does not contain large granule impurity. The adsorption capacity of liquid drops is improved, the consumption of disinfectant or water is reduced, and the cost waste is reduced.

Description

Ultra-micro fog drop nozzle adapter
Technical Field
The embodiment of the utility model relates to a shower nozzle adapter, in particular to ultramicro droplet shower nozzle adapter.
Background
In existing droplet ejection heads. The front end of the spray head is provided with a larger hole. When the device works, the liquid flow rate is high, the spray particles are more than 80 microns, the liquid drop adsorption capacity is not strong, the liquid drop phenomenon can be caused frequently, the use rate of disinfectant or water is low, and the cost is wasted.
SUMMERY OF THE UTILITY MODEL
An object of the embodiment of the utility model is to provide an ultramicro droplet shower nozzle mainly is in order to reduce the diameter of spraying granule, improves liquid drop adsorption efficiency, reduces the consumption of antiseptic solution or water, and it is extravagant to reduce the cost.
In order to achieve the above object, an embodiment of the utility model designs an ultramicro droplet shower nozzle adapter, a serial communication port, include:
the super little droplet shower nozzle, super little droplet shower nozzle still include:
the nozzle body is in threaded connection with one side of the ultramicro droplet spray head;
the rotational flow head is arranged in the nozzle body; one end of the rotational flow head props against the spray hole on the nozzle body;
one end of the spring is sleeved on one end of the rotational flow head, the other end of the spring props against one end of the water inlet cap, and one end of the water inlet cap is provided with a section of external thread; a first internal thread formed in the inner bore of the nozzle body; forming a thread structure;
the filter screen is sleeved on the water inlet cap and is propped against the brim of the water inlet cap;
the sprayer adapter is in threaded connection with the ultramicro fogdrop nozzle;
and the O-shaped ring is arranged in a cavity between the ultramicro fogdrop spray head and the sprayer adapter.
Furthermore, one end of the nozzle body is in a regular polygon shape, and the other end of the nozzle body is provided with a section of first external thread; the inside of nozzle body set up the hole in set up the whirl head with the spring one side of orifice, set up an oblique shrinkage pool, the one end laminating of whirl head on the oblique shrinkage pool the other end of hole connect first internal thread for connect the cap of intaking.
Furthermore, one end of the rotational flow head is provided with a conical surface, the conical surface is provided with rotational flow grooves, and the number of the rotational flow grooves is 6; the boss at the other end of the cyclone head is embedded into the inner hole of the spring.
Furthermore, the filter screen is cylindrical, and a plurality of small holes are formed in the surface of the filter screen at the same row spacing and the same column spacing.
Furthermore, the mesh number of the filter screen is 100 meshes.
Furthermore, one end of the water inlet cap is provided with a section of external thread for being in threaded connection with the nozzle body, one side of the external thread is provided with a tool withdrawal groove, one side of the tool withdrawal groove is longitudinally provided with a first through hole on the body of the water inlet cap, the first through hole is communicated with a transverse round hole arranged on the central line of the body of the water inlet cap, the filter screen is arranged on the outer side of the first through hole, and one side of the filter screen is provided with the brim for positioning the filter screen; the top of the other end of the water inlet cap is provided with a hexagonal hole.
The effect of reducing the diameter of spray particle has mainly been solved, guarantees that liquid gets into the swirl chamber through the whirl groove completely. The filter screen guarantees that the liquid that gets into the shower nozzle does not contain large granule impurity. The adsorption capacity of liquid drops is improved, the consumption of disinfectant or water is reduced, and the cost waste is reduced.
In order to be able to better realize the technical functions described above, at the same time, the spray gun can be adapted to different types of spray guns, spray mechanisms and cleaning tools. The utility model discloses an embodiment has still designed an ultramicro droplet shower nozzle adapter, a serial communication port, include:
the nozzle body is in threaded connection with one side of the ultramicro droplet spray head; the rotational flow head is arranged in the nozzle body; one end of the rotational flow head props against the spray hole on the nozzle body; one end of the spring is sleeved on one end of the rotational flow head, the other end of the spring props against one end of the water inlet cap, and one end of the water inlet cap is provided with a section of thread; a first internal thread formed in the inner bore of the nozzle body; forming a thread structure; the filter screen is sleeved on the water inlet cap and is propped against the brim on the water inlet cap.
One end of the nozzle body is in a regular polygon shape, and the other end of the nozzle body is provided with a section of first external thread; the inside of nozzle body set up the hole in set up the whirl head with the spring one side of orifice, set up an oblique shrinkage pool, the one end laminating of whirl head on the oblique shrinkage pool the other end of hole connect first internal thread for connect the cap of intaking.
One end of the rotational flow head is provided with a conical surface, the conical surface is provided with rotational flow grooves, and the number of the rotational flow grooves is 6; the boss at the other end of the cyclone head is embedded into the inner hole of the spring.
The filter screen be cylindric, the filter screen surface with the same row spacing set up a plurality of aperture. The mesh number of the filter screen is 100 meshes.
One end of the water inlet cap is provided with a section of external thread which is used for being in threaded connection with the nozzle body, one side of the external thread is provided with a tool withdrawal groove, one side of the tool withdrawal groove is longitudinally provided with a first through hole on the body of the water inlet cap, the first through hole is communicated with a transverse round hole arranged on the central line of the body of the water inlet cap, the filter screen is arranged on the outer side of the first through hole, and one side of the filter screen is provided with the brim for positioning the filter screen; the top of the other end of the water inlet cap is provided with a hexagonal hole.
The sprayer adapter is in threaded connection with the ultramicro fogdrop nozzle;
and the O-shaped ring is arranged in a cavity between the ultramicro fogdrop spray head and the sprayer adapter.
Further, a second through hole is transversely formed in the center line of the sprayer adapter; a first round hole and a second round hole are respectively formed in two sides of the second through hole, and the ultramicro fog drop spray head is in threaded connection with the first round hole; one end of the sprayer adapter is provided with a stepped water inlet nozzle outside the second round hole on the sprayer adapter body.
Further, the sprayer adapter is made of 316F stainless steel.
Compared with the prior art, the utility model, liquid flow reduces more than 60% under equal pressure, effectively saves the use of antiseptic solution or water. The fog drop particles can reach 40 microns on average, the adsorption capacity of the liquid drops is stronger, the use rate of disinfectant or water is effectively improved, the cost is saved, and the problem of the existing fog drop spray head is solved. The front end of the spray head is provided with a larger hole. The liquid velocity of flow is big during operation, and the spraying granule is above 80 microns, and the liquid drop adsorption efficiency is not strong, can cause the liquid drop phenomenon often, causes the antiseptic solution or the rate of utilization of water not high, causes the extravagant technical problem of cost.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention;
fig. 2 is a schematic view of a front view direction according to a first embodiment of the present invention.
FIG. 3 is a schematic view of the three-dimensional structure of the present invention
Fig. 4 is a schematic view of the full-section structure of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the following will explain in detail each embodiment of the present invention with reference to the accompanying drawings. However, it will be appreciated by those of ordinary skill in the art that in various embodiments of the invention, numerous technical details are set forth in order to provide a better understanding of the present application. However, the technical solutions claimed in the claims of the present application can be implemented without these technical details and with various changes and modifications based on the following embodiments.
The first embodiment of the present invention relates to an ultramicro droplet ejection head, as shown in fig. 1, 2 and 4, comprising:
the nozzle body 1 is in threaded connection with one side of the ultramicro droplet spray head;
a rotational flow head 2 is arranged in the nozzle body 1; one end of the rotational flow head 2 is propped against the spray hole 11 on the nozzle body 1; the action that one end of the rotational flow head 2 is propped against the spray hole 11 on the nozzle body 1 can be better and closely matched through the pretightening force of the spring 3,
one end of the spring 3 is sleeved on one end of the rotational flow head 2, the other end of the spring 3 is propped against one end of the water inlet cap 5, the spring 3 provides pretightening force, and one end of the water inlet cap 5 is provided with a section of external thread 51; a first internal thread 12 formed in the nozzle body inner bore 1; forming a thread structure; the water inlet cap 5, the cyclone head 2 and the spring 3 are fixed inside the nozzle body 1 in a threaded manner, meanwhile, the filter screen 4 is sleeved on the water inlet cap 5, and the filter screen 4 abuts against the brim 52 arranged on the water inlet cap 5.
The effect that reduces the diameter of spraying granule has been solved to the ultramicro droplet shower nozzle in foretell embodiment, guarantees that liquid passes through the whirl groove completely and gets into the swirl chamber. The filter screen guarantees that the liquid that gets into the shower nozzle does not contain large granule impurity. The technical effects of improving the liquid drop adsorption capacity, reducing the consumption of disinfectant or water and reducing the cost waste are achieved.
In order to further achieve the above technical effects, as shown in fig. 4, one end of the nozzle body 1 is in a regular polygon shape, and a section of first external thread 13 is arranged on the other end of the nozzle body 1; the utility model provides a be used for being connected with other parts, hole 14 is seted up in the inside of nozzle body 1, set up whirl head 2 and spring 3 in hole 14, place whirl head 2 and spring 3 in hole 14 of nozzle body 1, the position of whirl head 2 and spring 3 has been fixed, in one side of orifice 11, set up a slant shrinkage pool 15, the one end laminating of whirl head 2 is on slant shrinkage pool 15, under spring 3's effect, the one end of whirl head 2 can closely laminate on slant shrinkage pool 15, connect first internal thread 12 at the other end of hole 14, be used for connecting into water cap 5.
In order to further achieve the above technical effects, as shown in fig. 4, one end of the vortex head 2 is provided with a tapered surface 21, the tapered surface 21 is provided with vortex grooves 22, and the number of the vortex grooves 22 is 6; a boss 23 at the other end of the cyclone head 2 is embedded in the inner bore of the spring 3. The swirl grooves 22 of the swirl head 2 ensure that the liquid completely enters the spray holes 11 through the swirl grooves 22.
In order to further achieve the above technical effects, as shown in fig. 4, the filter screen 3 is cylindrical, and a plurality of small holes 31 are arranged on the surface of the filter screen 3 at the same row pitch and the same column pitch. The mesh number of the filter screen 3 is 100 meshes. The filter screen 3 ensures that the liquid entering the spray head does not contain large particle impurities.
In order to further achieve the technical effects, as shown in fig. 4, one end of the water inlet cap 5 is provided with a section of external thread 51 for being in threaded connection with the nozzle body 1, one side of the external thread 51 is provided with a tool withdrawal groove 53, one side of the tool withdrawal groove 53 is provided with a first through hole 54 longitudinally arranged on the body of the water inlet cap 5, the first through hole 54 is communicated with a transverse round hole 55 arranged on the center line of the body of the water inlet cap 5, the filter screen 4 is arranged outside the first through hole 54, and one side of the filter screen 4 is provided with a brim 52 for positioning the filter screen 4; a hexagonal hole 55 is provided on the top of the other end of the water inlet cap 5.
The present invention also provides a second embodiment of an ultramicro droplet spraying head, as shown in fig. 3 and 4, including:
the ultra-fine droplet ejection head in example 1; the ultramicro fogdrop nozzle is in threaded connection with the sprayer adapter 6;
an O-ring 7 is disposed in the cavity 8 between the ultra fine spray head and the spray adaptor 6. Ultramicro droplet shower nozzle adapter mainly used adaptation has the effect that can solve the diameter that reduces the spraying granule equally to the spray gun, spraying mechanism and the cleaning appliance of different grade type, guarantees that liquid gets into the swirl chamber through the whirl groove completely. The filter screen guarantees that the liquid that gets into the shower nozzle does not contain large granule impurity. The technical effects of improving the liquid drop adsorption capacity, reducing the consumption of disinfectant or water and reducing the cost waste are achieved.
Further, in the second embodiment, as shown in fig. 4, a second through hole 61 is transversely provided at a center line position of the sprayer adapter 6; a first round hole 62 and a second round hole 63 are respectively formed in two sides of the second through hole 61, and the first round hole 62 is in threaded connection with an ultramicro droplet spray head; at the one end of atomizer adapter 6, in the outside of second round hole 63, set up stairstepping intake nozzle 64 on atomizer adapter 6 body for connect the spray gun of different grade type, spraying mechanism and burnisher.
Further, in the second embodiment, the material of the nebulizer adapter 6 is 316F stainless steel. The material of the ultramicro fogdrop nozzle adapter is 316F stainless steel.
It will be understood by those skilled in the art that the foregoing embodiments are specific examples of the invention, and that various changes in form and details may be made therein without departing from the spirit and scope of the invention in its practical application.

Claims (8)

1. The utility model provides an ultramicro droplet shower nozzle adapter which characterized in that includes:
the super little droplet shower nozzle, super little droplet shower nozzle still include:
the nozzle body is in threaded connection with one side of the ultramicro droplet spray head;
the rotational flow head is arranged in the nozzle body; one end of the rotational flow head props against the spray hole on the nozzle body;
one end of the spring is sleeved on one end of the rotational flow head, the other end of the spring props against one end of the water inlet cap, and one end of the water inlet cap is provided with a section of external thread; a first internal thread formed in the inner bore of the nozzle body; forming a thread structure;
the filter screen is sleeved on the water inlet cap and is propped against the brim of the water inlet cap;
the sprayer adapter is in threaded connection with the ultramicro fogdrop nozzle;
and the O-shaped ring is arranged in a cavity between the ultramicro fogdrop spray head and the sprayer adapter.
2. The adapter of claim 1, wherein one end of the nozzle body is in the shape of a regular polygon, and a first external thread is provided on the other end of the nozzle body; the inside of nozzle body set up the hole in set up the whirl head with the spring one side of orifice, set up an oblique shrinkage pool, the one end laminating of whirl head on the oblique shrinkage pool the other end of hole connect first internal thread for connect the cap of intaking.
3. The adapter of claim 2, wherein a tapered surface is provided at one end of the swirl head, and swirl grooves are provided on the tapered surface, and the number of swirl grooves is 6; the boss at the other end of the cyclone head is embedded into the inner hole of the spring.
4. The adapter for an ultra fine mist head of claim 1 wherein the screen is cylindrical and the screen surface has a plurality of holes in the same row spacing and the same column spacing.
5. The adapter of claim 4, wherein the mesh size of the screen is 100 mesh.
6. The adapter of claim 1, wherein an external thread is provided at one end of the water inlet cap for being screwed with the nozzle body, a relief groove is provided at one side of the external thread, a first through hole is longitudinally provided at one side of the relief groove on the body of the water inlet cap, the first through hole is communicated with a transverse circular hole provided at a center line of the body of the water inlet cap, the strainer is provided at an outer side of the first through hole, and the brim is provided at one side of the strainer for positioning the strainer; the top of the other end of the water inlet cap is provided with a hexagonal hole.
7. The adapter of claim 1, wherein a second through hole is provided transversely at a centerline of the adapter; a first round hole and a second round hole are respectively formed in two sides of the second through hole, and the ultramicro fog drop spray head is in threaded connection with the first round hole; one end of the sprayer adapter is provided with a stepped water inlet nozzle outside the second round hole on the sprayer adapter body.
8. The adapter of claim 1, wherein the material of the adapter is 316F stainless steel.
CN202023025133.4U 2020-12-14 2020-12-14 Ultra-micro fog drop nozzle adapter Active CN214974945U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023025133.4U CN214974945U (en) 2020-12-14 2020-12-14 Ultra-micro fog drop nozzle adapter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023025133.4U CN214974945U (en) 2020-12-14 2020-12-14 Ultra-micro fog drop nozzle adapter

Publications (1)

Publication Number Publication Date
CN214974945U true CN214974945U (en) 2021-12-03

Family

ID=79083616

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023025133.4U Active CN214974945U (en) 2020-12-14 2020-12-14 Ultra-micro fog drop nozzle adapter

Country Status (1)

Country Link
CN (1) CN214974945U (en)

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20221027

Address after: 226333 Plot 11 # C, Zhongnan Hi tech Industrial Park, Tongzhou Bay River Sea Linkage Development Demonstration Zone, Nantong City, Jiangsu Province

Patentee after: Wusu Auto Technology (Nantong) Co.,Ltd.

Address before: 201706, Qingpu District, Shanghai, 7523 North Green Road

Patentee before: WALSH ENTERPRISE DEVELOPMENT (SHANGHAI) CO.,LTD.

TR01 Transfer of patent right