CN211608212U - Oil guide ceramic and ultrasonic atomizer - Google Patents

Oil guide ceramic and ultrasonic atomizer Download PDF

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Publication number
CN211608212U
CN211608212U CN201922322954.5U CN201922322954U CN211608212U CN 211608212 U CN211608212 U CN 211608212U CN 201922322954 U CN201922322954 U CN 201922322954U CN 211608212 U CN211608212 U CN 211608212U
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China
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oil
ceramic
oil storage
ultrasonic
inlet
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CN201922322954.5U
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Chinese (zh)
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刘建福
钟科军
郭小义
尹新强
易建华
黄朝相
周永权
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China Tobacco Hunan Industrial Co Ltd
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China Tobacco Hunan Industrial Co Ltd
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Abstract

The utility model relates to an electronic smoking set, especially a lead oily pottery and ultrasonic atomization ware. The ceramic body of the oil guide ceramic is rod-shaped, and the ceramic body is vertically provided with an oil storage blind hole (211). Ultrasonic nebulizer includes oil storage subassembly (1), leads oily pottery (21) and atomization component (3), and the bottom of oil storage subassembly sets up inlet port (121), lead oily pottery's oil storage blind hole with the inlet port (121) intercommunication of oil storage subassembly, lead oily pottery's bottom and arrange in on atomization component's ultrasonic atomization piece (322). The utility model discloses ultrasonic atomizer not only atomizes the start-up fast, and the smog volume is big and stable moreover.

Description

Oil guide ceramic and ultrasonic atomizer
Technical Field
The utility model relates to an electronic smoking set, concretely relates to lead oily pottery and ultrasonic atomization ware.
Background
The oil is led with leading oil cotton and the direct intercommunication realization in oil storehouse to current ultrasonic wave electron smog spinning disk atomiser, like aramid fiber, non-woven fabrics etc.. In the ultrasonic atomization ware use, along with ultrasonic atomization's going on, when the tobacco tar temperature risees in the oil storehouse, not only tobacco tar viscosity descends, but also the cotton pore space increase of oil guide, make the tobacco tar flow rate on oil guide cotton accelerate rapidly, oil guide cotton leads the oil quantity to increase, make the fuel feeding on the ultrasonic atomization piece too much, cause the ultrasonic atomization piece easily and be soaked by the tobacco tar, thereby make the atomizing of ultrasonic atomization piece start slowly, it is slow to go out the cigarette speed, the tobacco tar atomization is not abundant, oil and the scheduling problem of splashing appears inhaling easily.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that, it is slow to overcome prior art and easily appear ultrasonic atomization piece atomizing start, goes out the cigarette speed and is slow, and the tobacco tar atomization is insufficient, provides an atomizing start fast, goes out the cigarette speed fast, and the abundant oil guide pottery and the ultrasonic atomization ware of tobacco tar atomization.
In order to solve the technical problem, the utility model provides a lead oily pottery, it includes the ceramic body, the ceramic body is claviform, just vertical oil storage blind hole that sets up on the ceramic body.
When the utility model discloses when leading oily pottery and using, the tobacco tar flows earlier and stores up in the oil storage blind hole, when ultrasonic atomization piece during operation, the tobacco tar in the oil storage blind hole is close apart from the ultrasonic atomization piece, so the tobacco tar in the oil storage blind hole just is led the ultrasonic atomization piece to carry out ultrasonic atomization on the oil storage blind hole by leading oily pottery very fast, not only make ultrasonic atomization can start as early as possible, and then make out the cigarette speed and increase soon, the tobacco tar atomizing is abundant, and the tobacco tar water conservancy diversion is fast moreover, can avoid the phenomenon that ultrasonic atomization piece surface does not have the tobacco tar and burns futilely.
Furthermore, the oil storage blind hole is arranged in the center of the oil guide ceramic, so that the tobacco tar can be conducted to the ultrasonic atomization sheet from all directions as soon as possible.
For solving the technical problem, the utility model also provides an ultrasonic atomizer, it includes the oil storage subassembly, leads oil storage subassembly and atomization component, it installs to lead the oil storage subassembly with between the atomization component, the bottom of oil storage subassembly sets up the inlet port, it does to lead the oil storage subassembly lead oily pottery, lead oily pottery's oil storage blind hole with the inlet port intercommunication of oil storage subassembly, lead oily pottery's bottom and arrange in on atomization component's the ultrasonic atomization piece.
Furthermore, the lower part of the oil inlet hole is provided with a ceramic fixing hole, and the top of the oil guide ceramic is inserted and fixed in the ceramic fixing hole, so that the oil guide ceramic is closer to the tobacco tar in the oil bin, and the tobacco tar conduction speed is increased.
Furthermore, the oil guide ceramic is abutted against the central area of the ultrasonic atomization sheet, so that the smoke oil is directly transmitted to the central area of the ultrasonic atomization sheet with the most intense high-frequency oscillation, the ultrasonic atomization is started more quickly, and the smoke is larger.
Further, lead oily pottery with set up the oil storage cotton between the ultrasonic atomization piece, make the tobacco tar save better on the surface of ultrasonic atomization piece (because the cotton oily ability of lock of oil storage is stronger) to avoid the phenomenon that ultrasonic atomization piece burns futilely.
Specifically, the oil storage subassembly includes shell and cock body, set up air outlet channel in the shell, the inlet port sets up on the cock body, just the periphery of inlet port sets up the air vent, the ultrasonic atomization piece with set up the atomizing chamber between the cock body, the upper end of air vent with air outlet channel intercommunication, the lower extreme of air vent with atomizing chamber intercommunication.
The bottom of giving vent to anger passageway inserts the top of cock body, just the bottom of giving vent to anger passageway sets up the logical groove of oil feed and patchhole, the top of cock body sets up the insertion section, the inlet port sets up in the insertion section, the insertion section of cock body inserts in the plug hole of giving vent to anger passageway, the logical groove of oil feed with the inlet port intercommunication.
The bottom of the plug body is provided with an air inlet groove, and the air inlet groove is communicated with the atomization cavity.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses lead and set up the oil storage blind hole on the oily pottery, make the tobacco tar can be conducted on the ultrasonic atomization piece as early as possible for the ultrasonic atomization ware starts ultrasonic atomization's speed faster.
2. The utility model discloses can adopt and lead oily pottery and lead oil, the cotton oil storage of oil storage for the oil quantity of leading the oily subassembly is certain among the ultrasonic atomization process, and ultrasonic atomization piece can not soaked by the tobacco tar, has guaranteed ultrasonic atomization efficiency, and the smog volume is stable.
3. The utility model discloses lead the central zone of oily ceramic butt ultrasonic atomization piece, make the tobacco tar direct conduction to the central zone of the ultrasonic atomization piece that high-frequency oscillation is the most violent, make the tobacco tar can be by abundant atomizing, smog volume is bigger.
Drawings
Fig. 1 is a front sectional view of a first embodiment of the ultrasonic atomizer of the present invention, in which thick arrows indicate the flow direction of smoke and thin arrows indicate the flow direction of air.
FIG. 2 is a cross-sectional view taken along line A-A of FIG. 1, in which the heavy arrows indicate the direction of flow of the soot and the light arrows indicate the direction of flow.
Fig. 3 is a three-dimensional structure diagram of the oil-guiding ceramic of the present invention.
Fig. 4 is a cross-sectional view of the oil-guiding ceramic of the present invention.
Figure 5 is the utility model discloses oil storage component shell's partial section perspective view.
Fig. 6 is a three-dimensional structure view of the plug body of the present invention.
Fig. 7 is a partial cut-away perspective view of the front view of the plug body of the present invention.
Fig. 8 is a partial cut-away perspective view of the bottom viewing angle of the plug body of the present invention.
Fig. 9 is an exploded view of the first embodiment of the ultrasonic atomizer according to the present invention.
Fig. 10 is a perspective view of a second embodiment of the ultrasonic atomizer according to the present invention.
In the figure:
1. an oil storage assembly; 11. a housing; 12. a plug body; 13. an oil bin; 14. an air outlet channel; 111. a suction nozzle; 121. an oil inlet hole; 122. a ceramic fixing hole; 123. a vent channel; 124. an insertion section; 125. an air inlet groove; 141. an oil inlet through groove; 142. an insertion hole;
2. an oil guide assembly; 21. oil-conducting ceramic; 22. oil storage cotton; 211. oil storage blind holes;
3. an atomizing assembly; 31. a bottom cover; 32. an atomizing head; 33. an air intake passage; 321. an atomizing sleeve; 322. an ultrasonic atomization sheet; 323. an insulating base; 324. an electrode assembly;
4. an atomizing chamber.
Detailed Description
The invention is further described below with reference to specific preferred embodiments, without thereby limiting the scope of protection of the invention.
For convenience of description, the relative positional relationship of the components, such as: the descriptions of the upper, lower, left, right, etc. are described with reference to the layout directions of the drawings in the specification, and do not limit the structure of the present patent.
Example 1:
as shown in fig. 1-9, an embodiment of the ultrasonic atomizer of the present invention includes an oil storage assembly 1, an oil guiding assembly 2 and an atomizing assembly 3, wherein the oil guiding assembly 2 and the atomizing assembly 3 are sequentially installed at the bottom of the oil storage assembly 1.
The oil storage assembly 1 comprises a casing 11 and a plug body 12 which are jointed with each other, and an oil bin 13 is formed in the casing 11 and the plug body 12 after being jointed. The housing 11 is provided with a suction nozzle 111 and an air outlet channel 14, and the air outlet channel 14 is communicated with the suction nozzle 111. The plug body 12 is preferably a silicone plug having elasticity. An oil inlet hole 121 is formed in the middle of the plug body 12, and a ceramic fixing hole 122 is formed in the lower portion of the oil inlet hole 121. The vent grooves 123 are symmetrically arranged on two sides of the oil inlet hole 121, and the upper ends of the vent grooves 123 are communicated with the air outlet channel 14.
The bottom of the gas outlet channel 14 is inserted into the top of the plug body 12, the bottom of the gas outlet channel 14 is provided with a fuel inlet through groove 141 and an insertion hole 142, the top of the plug body 12 is provided with an insertion section 124, the fuel inlet 121 is arranged in the insertion section 124, the insertion section 124 of the plug body 12 is inserted into the insertion hole 142 of the gas outlet channel 14, one end of the fuel inlet through groove 141 is communicated with the oil bin 13, and the other end of the fuel inlet through groove is communicated with the fuel inlet 121.
The oil guide member 2 is a rod-shaped oil guide ceramic 21. The center of the oil guide ceramic 21 is vertically provided with an oil storage blind hole 211. The top of the oil guide ceramic 21 is inserted and fixed in the ceramic fixing hole 122 of the oil storage assembly 1, and the oil storage blind hole 211 is communicated with the oil inlet 121.
The bottom of the oil guide ceramic 21 is abutted against the central area of the ultrasonic atomization sheet 322, so that the smoke oil is directly transmitted to the central area of the ultrasonic atomization sheet 322 with the most intense high-frequency oscillation, and the ultrasonic atomization is started more quickly and the smoke is larger.
The atomizing assembly 3 includes a bottom cap 31, and an atomizing head 32 disposed within the bottom cap 31.
The atomizing head 32 includes a hollow atomizing sleeve 321 with conductivity, and an ultrasonic atomizing sheet 322 and an insulating base 323 are sequentially arranged in an inner cavity of the atomizing sleeve 321 from top to bottom. An electrode assembly 324 is disposed at the middle of the insulating base 323. The upper end of the atomizing sleeve 321 is connected with the upper surface electrode of the ultrasonic atomizing sheet 322 in an abutting mode, the lower end of the atomizing sleeve 321 is coated at the bottom of the insulating base 323 to serve as a first electrode connecting end, the lower surface electrode of the ultrasonic atomizing sheet 322 is electrically connected with the electrode assembly 324, and the electrode assembly 324 serves as a second electrode end.
Set up air outlet channel 14 in the shell 11 of oil storage subassembly 1, the bottom of cock body 12 sets up air inlet channel 125, sets up air inlet channel 33 on the atomization component 3, sets up atomizing chamber 4 between ultrasonic atomization piece 322 and the cock body 12 of oil storage subassembly 1, and air inlet channel 33 communicates atomizing chamber 4 through air inlet channel 125 of oil storage subassembly 1 and communicates air outlet channel 14 through air channel 123 of oil storage subassembly 1.
When the ultrasonic atomization device is used in the embodiment, a user sucks food from the suction nozzle 111 of the oil storage assembly 1, so that external air enters from the air inlet channel 33 and enters the atomization cavity 4 through the air inlet groove 125, tobacco tar is conducted onto the ultrasonic atomization sheet 322 from the oil bin 13 through the oil guide assembly 2 (oil guide ceramic 21), the ultrasonic atomization sheet 322 is electrically connected with an external power supply through the atomization sleeve 321 and the electrode assembly 324 to achieve ultrasonic atomization, and the ultrasonically atomized smoke on the ultrasonic atomization sheet 322 and the oil storage cotton 22 is carried out to the oral cavity of the user through the air flow passing through the air outlet channel 14 and is sucked food.
As shown in fig. 10, the second embodiment of the ultrasonic atomizer of the present invention is substantially the same as the first embodiment, and the difference is that the oil guiding assembly 2 includes an oil guiding ceramic 21 and an oil storage cotton 22, and the oil storage cotton 22 is disposed between the oil guiding ceramic 21 and the ultrasonic atomizing sheet 322. The oil storage cotton 22 only plays a role of oil storage, so that the tobacco tar is better stored on the surface of the ultrasonic atomization sheet (because the oil storage cotton has stronger oil locking capacity), and the phenomenon of dry burning of the ultrasonic atomization sheet is avoided.
The above description is only for the preferred embodiment of the present application and should not be taken as limiting the present application in any way, and although the present application has been disclosed in the preferred embodiment, it is not intended to limit the present application, and those skilled in the art should understand that they can make various changes and modifications within the technical scope of the present application without departing from the scope of the present application, and therefore all the changes and modifications can be made within the technical scope of the present application.

Claims (9)

1. The oil guide ceramic comprises a ceramic body and is characterized in that the ceramic body is rod-shaped, and oil storage blind holes (211) are vertically formed in the ceramic body.
2. The oil guide ceramic according to claim 1, wherein the oil storage blind hole is arranged at the center of the oil guide ceramic (21).
3. An ultrasonic atomizer, includes oil storage subassembly (1), leads oil subassembly (2) and atomization component (3), it installs to lead the oil subassembly the oil storage subassembly with between the atomization component, characterized in that, the bottom of oil storage subassembly sets up inlet port (121), it leads oil pottery (21) to lead the oil subassembly to be any one of claims 1-2, lead the ceramic oil storage blind hole of oil with the inlet port intercommunication of oil storage subassembly, lead the ceramic bottom of oil and place in on the ultrasonic atomization piece (322) of atomization component.
4. An ultrasonic atomizer according to claim 3, wherein a ceramic fixing hole (122) is provided at a lower portion of said oil inlet hole, and a top portion of said oil-conducting ceramic is inserted into said ceramic fixing hole.
5. An ultrasonic atomizer according to claim 3, wherein said oil-conducting ceramic abuts against a central region of said ultrasonic atomizing plate.
6. An ultrasonic atomizer according to claim 3, characterized in that an oil storage cotton (22) is arranged between said oil-conducting ceramic and said ultrasonic atomizing plate.
7. An ultrasonic atomizer according to claim 3, characterized in that the oil storage assembly comprises a housing (11) and a plug body (12), an air outlet channel (14) is arranged in the housing, the oil inlet is arranged on the plug body, a vent groove (123) is arranged on the periphery of the oil inlet, an atomizing cavity (4) is arranged between the ultrasonic atomizing plate and the plug body, the upper end of the vent groove is communicated with the air outlet channel, and the lower end of the vent groove is communicated with the atomizing cavity.
8. The ultrasonic atomizer according to claim 7, wherein the bottom of said air outlet channel is inserted into the top of said plug body, and said bottom of said air outlet channel is provided with an oil inlet through groove (141) and an insertion hole (142), said top of said plug body is provided with an insertion section (124), said oil inlet is disposed in said insertion section, said insertion section of said plug body is inserted into said insertion hole of said air outlet channel, and said oil inlet through groove is communicated with said oil inlet.
9. An ultrasonic nebulizer as claimed in claim 7, wherein the bottom of the plug body is provided with an air inlet slot (125), the air inlet slot communicating with the nebulization chamber.
CN201922322954.5U 2019-12-20 2019-12-20 Oil guide ceramic and ultrasonic atomizer Active CN211608212U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922322954.5U CN211608212U (en) 2019-12-20 2019-12-20 Oil guide ceramic and ultrasonic atomizer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922322954.5U CN211608212U (en) 2019-12-20 2019-12-20 Oil guide ceramic and ultrasonic atomizer

Publications (1)

Publication Number Publication Date
CN211608212U true CN211608212U (en) 2020-10-02

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ID=72631004

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922322954.5U Active CN211608212U (en) 2019-12-20 2019-12-20 Oil guide ceramic and ultrasonic atomizer

Country Status (1)

Country Link
CN (1) CN211608212U (en)

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