CN204466909U - Inhalator and atomizing component thereof and liquid storage pipe - Google Patents

Inhalator and atomizing component thereof and liquid storage pipe Download PDF

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Publication number
CN204466909U
CN204466909U CN201520081182.XU CN201520081182U CN204466909U CN 204466909 U CN204466909 U CN 204466909U CN 201520081182 U CN201520081182 U CN 201520081182U CN 204466909 U CN204466909 U CN 204466909U
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pipe
liquid storage
inhalator
component
reinforcement
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陈志平
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Shenzhen Mcwell Technology Co Ltd
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SHENZHEN MICROVAPOR TECHNOLOGY Co Ltd
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Abstract

The utility model relates to a kind of inhalator and atomizing component thereof and liquid storage pipe.The liquid storage pipe of above-mentioned inhalator comprises interior pipe and is positioned at the outer tube of pipe outside, and form liquid storage cylinder between inner and outer tubes, the inside of interior pipe offers gas channel; Liquid storage pipe also comprises the reinforcement being positioned at liquid storage cylinder, and in the form of sheets, the dual-side that reinforcement is relative is connected with inner and outer tubes reinforcement respectively.Reinforcement strengthens the support of internal pipe, when avoiding cooling forming, and interior pipe unbalance stress generation deflection.

Description

Inhalator and atomizing component thereof and liquid storage pipe
Technical field
The utility model relates to the technical field of training equipment atomizing medium being inputted human body, particularly relates to a kind of inhalator and atomizing component thereof and liquid storage pipe.
Background technology
Inhalator is the training equipment by inputting human body after the atomization of liquid, mainly comprises the electronic cigarette for cigarette substitute and the medical nebulizer being used for the treatment of upper respiratory disease.
General electronic cigarette and the medical nebulizer similar to its structure, its inside has liquid storage pipe, and liquid storage pipe comprises interior pipe and is positioned at the outer tube of pipe outside, and form liquid storage cylinder between inner and outer tubes, the inside of interior pipe offers gas channel.In liquid storage pipe procedure, during cooling forming easily there is deflection in interior pipe unbalance stress.
Utility model content
Based on this, be necessary the problem for easily there is deflection in liquid storage pipe during pipe cooling forming, a kind of inhalator and atomizing component thereof and liquid storage pipe and liquid storage pipe are provided.
A liquid storage pipe for inhalator, comprise interior pipe and the outer tube being positioned at described pipe outside, form liquid storage cylinder between described interior pipe and described outer tube, the inside of described interior pipe offers gas channel; Described liquid storage pipe also comprises the reinforcement being positioned at described liquid storage cylinder, and in the form of sheets, the dual-side that described reinforcement is relative is connected with described interior pipe and described outer tube described reinforcement respectively.
Wherein in an embodiment, one end of described liquid storage cylinder has opening, and described reinforcement is less than 60 degree near the side of described opening and the angle of described interior pipe.
Wherein in an embodiment, the quantity of described reinforcement is multiple.
Wherein in an embodiment, described interior pipe is cylindrical, and multiple described reinforcement distributes along the even circumferential of described interior pipe.
Wherein in an embodiment, the plane at described reinforcement place and the axle of described interior pipe coplanar.
An atomizing component for inhalator, form inhalator for being combined with battery component, described atomizing component comprises described liquid storage pipe, and sleeve pipe, suction nozzle, atomization core and mounting pipe;
Described sleeve pipe comprises first end and the second end, and described first end is connected with described suction nozzle, and described second end is for connecting described battery component;
One end of the described gas channel of described liquid storage cylinder is communicated with the suction hole of described suction nozzle; The one end open place of described liquid storage cylinder is provided with sealed piece, and described liquid storage cylinder is sealed;
Described atomization core comprises core body and puncture component; The inside of described core body offers atomization chamber, and described core body offers intercommunicating pore; Described puncture component is positioned at outside described atomization chamber and is fixedly connected with described core body, and the cutting tip of described puncture component is towards described sealed piece;
Described mounting pipe is set in outside described liquid storage pipe and described atomization core, and described mounting pipe, described liquid storage pipe and described atomization core load in described sleeve pipe by described first end; After loading, described liquid storage pipe is near described first end, and described atomization core is near described second end; When installing described battery component, described battery component promotes described core body and moves to described liquid storage pipe, and described puncture component punctures described sealed piece, and is drawn by the liquid in described liquid storage cylinder.
Wherein in an embodiment, described atomization core also comprises escape pipe and sealing shroud, described escape pipe is connected on described core body, and one end of described escape pipe is communicated with described atomization chamber, and described sealing shroud is set in the junction of described escape pipe and described core body; When installing described battery component, the other end of described escape pipe stretches into described gas channel one end away from described suction nozzle, described sealing shroud and described interior pipe compact siro spinning technology.
Wherein in an embodiment, described escape pipe offers return port, described return port is near described sealing shroud, and when installing described battery component, described return port is positioned at described gas channel.
Wherein in an embodiment, described first end is connected with described suction nozzle is dismountable, makes described liquid storage pipe, described atomization core and described mounting pipe replaceable.
A kind of inhalator, comprise the atomizing component of battery component and described inhalator, described battery component is connected with described second end of described atomizing component.
Above-mentioned inhalator and atomizing component thereof and liquid storage pipe, the dual-side that reinforcement is relative is connected with inner and outer tubes respectively.Reinforcement strengthens the support of internal pipe, when avoiding cooling forming, and interior pipe unbalance stress generation deflection.
Accompanying drawing explanation
Fig. 1 is the profile of an embodiment inhalator;
The A place partial schematic diagram that Fig. 2 is inhalator shown in Fig. 1;
The schematic diagram of the atomization core that Fig. 3 is inhalator shown in Fig. 1;
The combination schematic diagram of the liquid storage pipe that Fig. 4 is inhalator shown in Fig. 1, atomization core and mounting pipe;
The B-B sectional view of the liquid storage pipe that Fig. 5 is inhalator shown in Fig. 4, atomization core and mounting pipe;
The explosive view of the liquid storage pipe that Fig. 6 is inhalator shown in Fig. 4, atomization core and mounting pipe;
Fig. 7 is the profile of another embodiment inhalator.
Detailed description of the invention
For the ease of understanding the utility model, below with reference to relevant drawings, inhalator and atomizing component thereof and liquid storage pipe are described more fully.The first-selected embodiment of inhalator and atomizing component and liquid storage pipe is given in accompanying drawing.But inhalator and atomizing component thereof and liquid storage pipe can realize in many different forms, are not limited to embodiment described herein.On the contrary, provide the object of these embodiments be make the disclosure of inhalator and atomizing component and liquid storage pipe more comprehensively thorough.
Unless otherwise defined, all technology used herein and scientific terminology are identical with belonging to the implication that those skilled in the art of the present utility model understand usually.The object of the term used in the description of inhalator and atomizing component and liquid storage pipe herein just in order to describe specific embodiment, is not intended to be restriction the utility model.
As shown in Figure 1 and Figure 2, the inhalator 10 of one embodiment comprises atomizing component 100 and battery component 300, this inhalator 10 for by the atomization of liquid, and by the fog input human body after atomization, this inhalator 10 can as electronic cigarette, also can as medical nebulizer or other.
Atomizing component 100 comprises sleeve pipe 120, suction nozzle 140, liquid storage pipe 160, atomization core 180 and mounting pipe 220.Sleeve pipe 120 comprises first end 122 and the second end 124, and first end 122 is connected with suction nozzle 140.Second end 124 is for connecting battery component 300.Offer the liquid storage cylinder 162 for accommodating liquid in liquid storage pipe 160, the one end open place of liquid storage cylinder 162 is provided with sealed piece 164, and liquid storage cylinder 162 is sealed.If inhalator 10 is electronic cigarette, then the liquid in liquid storage cylinder 162 can be tobacco juice, if inhalator 10 is medical nebulizer, then the liquid in liquid storage cylinder 162 can be liquid drug.
Simultaneously see Fig. 3, atomization core 180 comprises core body 182 and puncture component 184.The inside of core body 182 offers atomization chamber 186, and core body 182 offers intercommunicating pore 188.Puncture component 184 is positioned at outside atomization chamber 186 and is fixedly connected with core body 182, and the cutting tip of puncture component 184 is towards sealed piece 164.In one embodiment, in a tubular form, the edge conjunction of puncture component 184 and core body 182, the cutting tip of puncture component 184 has puncture projection to puncture component 184.
Simultaneously see Fig. 4 to Fig. 6, mounting pipe 220 is set in outside liquid storage pipe 160 and atomization core 180, and mounting pipe 220, liquid storage pipe 160 and atomization core 180 are loaded in sleeve pipe 120 by first end 122.After loading, liquid storage pipe 160 is near first end 122, and atomization core 180 is near the second end 124.When installing battery component 300, battery component 300 promotes core body 182 and moves to liquid storage pipe 160, and puncture component 184 punctures sealed piece 164, and is drawn by the liquid in liquid storage cylinder 162.
Liquid is sealed in liquid storage cylinder 162 by sealed piece 164, and when needing to use, by installing battery component 300, punctured by sealed piece 164, the liquid in liquid storage cylinder 162 is drawn.Before avoiding use, for the liquid continuous volatilization be atomized, cause the aromatic substance smell in liquid to dribble, thus extend the shelf-life of inhalator 10.Simultaneously liquid obviously to shorten with the element in atomization core 180 time of contact, avoids contaminated because of Long Term Contact.Mounting pipe 220, liquid storage pipe 160 and atomization core 180 load in sleeve pipe 120 by first end 122, and can be arranged on first end 122 by suction nozzle 140 afterwards, ease of assembly, improves working (machining) efficiency.
Wherein in an embodiment, atomization core 180 can also comprise for the nebulising element (not shown) by the atomization of liquid, and nebulising element is arranged in atomization chamber 186, and partly atomized element is stretched out by intercommunicating pore 188.Nebulising element can comprise cordage and be wrapped in the heater strip in the middle of cordage, and the two ends of cordage are stretched out by intercommunicating pore 188, for liquid comes into contact, liquid is imported atomization chamber 186, and by heater strip heating atomization.
In one embodiment, sleeve pipe 120 can be double-decker, comprises internal layer and skin, and internal layer can be plastic material, preferably clear plastics, and skin can be stainless steel, can offer observation window, for checking the surplus of liquid in liquid storage cylinder 162 on outer.
See Fig. 1, Fig. 6, wherein in an embodiment, atomizing component 100 can also comprise elastic ring 240, and elastic ring 240 is set on liquid storage pipe 160, and between liquid storage pipe 160 and mounting pipe 220, and elastic ring 240 is near the end of suction nozzle 140.The outside of liquid storage pipe 160 offers the cannelure 166 suitable with elastic ring 240, and elastic ring 240 is partially submerged in cannelure 166.Elastic ring 240, for pre-fixing the position of liquid storage pipe 160, is conveniently installed liquid storage pipe 160, and liquid storage pipe 160 can not be rocked in mounting pipe 220, improve reliability of structure.
Liquid storage pipe 160 comprises interior pipe 168 and is positioned at the outer tube 172 of pipe 168 outside, and liquid storage cylinder 162 is formed between interior pipe 168 and outer tube 172, and the inside of interior pipe 168 offers gas channel 174, and one end of gas channel 174 is communicated with the suction hole of suction nozzle 140.
See Fig. 1 and Fig. 5, liquid storage pipe 160 also comprises the reinforcement 176 being positioned at liquid storage cylinder 162, and in the form of sheets, the dual-side that reinforcement 176 is relative is connected with interior pipe 168 and outer tube 172 reinforcement 176 respectively.Reinforcement 176 strengthens the support of internal pipe 168, when avoiding cooling forming, and interior pipe 168 unbalance stress generation deflection.The quantity of reinforcement 176 can be one or more, and the support effect of multiple reinforcement 176 is better, and interior pipe 168 is cylindrical, and multiple reinforcement 176 distributes along the even circumferential of interior pipe 168.Three reinforcements, 176, three reinforcements 176 are adopted to distribute along the even circumferential of interior pipe 168 in the present embodiment.Preferably, the reinforcement 176 of sheet, the plane at its place and the axle of interior pipe 168 coplanar, the support force of reinforcement 176 is the strongest.
Further, reinforcement 176 is less than 60 degree near the side 1762 of the one end open of liquid storage cylinder 162 with the angle of interior pipe 168, and such as, angle in Fig. 1 is a side 1762 of close atomization core 180 is 30 degree with the angle of interior pipe 168.This angle is set, when avoiding on the one hand the demoulding in process, stress is too concentrated, cause liquid storage pipe 160 to be out of shape, make on the other hand the liquid in liquid storage cylinder 162 easily flow out between adjacent two reinforcements 176, avoid liquid to be not easy to flow out because of capillary effect.
Atomization core 180 can also comprise escape pipe 192 and sealing shroud 194, and escape pipe 192 is connected on core body 182, and one end of escape pipe 192 is communicated with atomization chamber 186, and sealing shroud 194 is set in the junction of escape pipe 192 and core body 182.When installing battery component 300, the other end of escape pipe 192 stretches into gas channel 174 one end away from suction nozzle 140, sealing shroud 194 and interior pipe 168 compact siro spinning technology, thus is sealed by interior pipe 168.
As shown in Figure 2 and Figure 3, further, wherein in an embodiment, escape pipe 192 offers return port 1922, return port 1922 is near sealing shroud 194, and when installing battery component 300, return port 1922 is positioned at gas channel 174.The return port 1922 that escape pipe 192 is offered, the liquid backflow of condensation in gas channel 174 can be made to atomization chamber 186, prevent the gas outlet place of the end of escape pipe 192 because the viscosity of liquid is large, surface tension is large, form film, hinder liquid to be back to atomization chamber 186 from the gas outlet of escape pipe 192.And then, liquid can not be piled up in gas channel 174, when avoiding inhalator 10 to use, and the liquid of atomization gas by piling up in gas channel 174, send thud thud sound, user also can be avoided simultaneously by the fluid intake of accumulation in gas channel 174.
In one embodiment, first end 122 is connected with suction nozzle 140 is dismountable, such as, be threaded, and makes liquid storage pipe 160, atomization core 180 and mounting pipe 220 replaceable.Battery component 300 is just connected with atomizing component 100 when inhalator 10 first time uses, second end 124 of battery component 300 and atomizing component 100 can be threaded, the end of battery component 300 is advanced to liquid storage pipe 160 gradually by screw thread rotation, make puncture component 184 close gradually and puncture sealed piece 164, the liquid in liquid storage cylinder 162 is flowed out.
In one more specifically embodiment, the second end 124 is provided with spiro union portion 1242, and spiro union portion 1242 is threaded for battery component 300, and spiro union portion 1242 is conductor, and spiro union portion 1242 is for being electrically connected with power supply module as negative electrode.Atomization core 180 also comprises air inlet pipe 196 and insulation sleeve 198, and core body 182 offers air inlet, and air inlet pipe 196 is arranged on air inlet place, and air inlet pipe 196 and core body 182, between air inlet pipe 196 and the inwall of core body 182, are isolated by insulation sleeve 198.Air inlet pipe 196 is conductor, and air inlet pipe 196 is for being electrically connected with power supply module as positive electrode.
Insulation sleeve 198 is generally has flexible silica gel material, positive wire can between air inlet pipe 196 and insulation sleeve 198, be electrically connected with air inlet pipe 196, cathode conductor can between insulation sleeve 198 and the inwall of core body 182, be electrically connected with core body 182, insulation sleeve 198 has elasticity can extrude wire, guarantees connection reliability.
In the embodiment shown in fig. 1, liquid storage pipe 160 is fixedly connected with mounting pipe 220, and when installing battery component 300, suction nozzle 140 props up mounting pipe 220 or liquid storage pipe 160, or suction nozzle 140 props up mounting pipe 220 and liquid storage pipe 160 simultaneously.In the embodiment shown in fig. 7, liquid storage pipe 160 can slide in mounting pipe 220, and when installing battery component 300, core body 182 promotes mounting pipe 220 and moves to suction nozzle 140, and namely core body 182 moves together with mounting pipe 220, and suction nozzle 140 props up liquid storage pipe 160.
Above embodiment only have expressed several embodiment of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to the utility model the scope of the claims.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.

Claims (10)

1. a liquid storage pipe for inhalator, comprise interior pipe and the outer tube being positioned at described pipe outside, form liquid storage cylinder between described interior pipe and described outer tube, the inside of described interior pipe offers gas channel; It is characterized in that, described liquid storage pipe also comprises the reinforcement being positioned at described liquid storage cylinder, and in the form of sheets, the dual-side that described reinforcement is relative is connected with described interior pipe and described outer tube described reinforcement respectively.
2. the liquid storage pipe of inhalator according to claim 1, is characterized in that, one end of described liquid storage cylinder has opening, and described reinforcement is less than 60 degree near the side of described opening and the angle of described interior pipe.
3. the liquid storage pipe of inhalator according to claim 1, is characterized in that, the quantity of described reinforcement is multiple.
4. the liquid storage pipe of inhalator according to claim 3, is characterized in that, described interior pipe is cylindrical, and multiple described reinforcement distributes along the even circumferential of described interior pipe.
5. the liquid storage pipe of inhalator according to claim 4, is characterized in that, the plane at described reinforcement place and the axle of described interior pipe coplanar.
6. an atomizing component for inhalator, forming inhalator for being combined with battery component, it is characterized in that, described atomizing component comprises the liquid storage pipe described in any one of claim 1 to 5, and sleeve pipe, suction nozzle, atomization core and mounting pipe;
Described sleeve pipe comprises first end and the second end, and described first end is connected with described suction nozzle, and described second end is for connecting described battery component;
One end of the described gas channel of described liquid storage cylinder is communicated with the suction hole of described suction nozzle; The one end open place of described liquid storage cylinder is provided with sealed piece, and described liquid storage cylinder is sealed;
Described atomization core comprises core body and puncture component; The inside of described core body offers atomization chamber, and described core body offers intercommunicating pore; Described puncture component is positioned at outside described atomization chamber and is fixedly connected with described core body, and the cutting tip of described puncture component is towards described sealed piece;
Described mounting pipe is set in outside described liquid storage pipe and described atomization core, and described mounting pipe, described liquid storage pipe and described atomization core load in described sleeve pipe by described first end; After loading, described liquid storage pipe is near described first end, and described atomization core is near described second end; When installing described battery component, described battery component promotes described core body and moves to described liquid storage pipe, and described puncture component punctures described sealed piece, and is drawn by the liquid in described liquid storage cylinder.
7. the atomizing component of inhalator according to claim 6, it is characterized in that, described atomization core also comprises escape pipe and sealing shroud, described escape pipe is connected on described core body, one end of described escape pipe is communicated with described atomization chamber, and described sealing shroud is set in the junction of described escape pipe and described core body; When installing described battery component, the other end of described escape pipe stretches into described gas channel one end away from described suction nozzle, described sealing shroud and described interior pipe compact siro spinning technology.
8. the atomizing component of inhalator according to claim 7, is characterized in that, described escape pipe offers return port, and described return port is near described sealing shroud, and when installing described battery component, described return port is positioned at described gas channel.
9. the atomizing component of the inhalator according to any one of claim 6 to 8, is characterized in that, described first end is connected with described suction nozzle is dismountable, makes described liquid storage pipe, described atomization core and described mounting pipe replaceable.
10. an inhalator, is characterized in that, comprises the atomizing component of battery component and the inhalator described in any one of claim 6 to 9, and described battery component is connected with described second end of described atomizing component.
CN201520081182.XU 2015-02-03 2015-02-03 Inhalator and atomizing component thereof and liquid storage pipe Active CN204466909U (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2019531085A (en) * 2016-11-14 2019-10-31 林 光榕 Electronic cigarette atomizer with Suehiro shaped smoke discharge pipe
CN110691521A (en) * 2017-06-06 2020-01-14 Jt 国际公司 Inhaler device and consumable cartridge
CN110709125A (en) * 2017-06-02 2020-01-17 Jt国际公司 Aerosol generating system with replaceable atomizer
WO2022199546A1 (en) * 2021-03-23 2022-09-29 深圳麦克韦尔科技有限公司 Atomizer and electronic atomization device
US11723405B2 (en) 2016-09-28 2023-08-15 Nicoventures Trading Limited Liquid storage tank for a vapor provision system

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11723405B2 (en) 2016-09-28 2023-08-15 Nicoventures Trading Limited Liquid storage tank for a vapor provision system
JP2019531085A (en) * 2016-11-14 2019-10-31 林 光榕 Electronic cigarette atomizer with Suehiro shaped smoke discharge pipe
CN110709125A (en) * 2017-06-02 2020-01-17 Jt国际公司 Aerosol generating system with replaceable atomizer
CN110709125B (en) * 2017-06-02 2022-07-19 Jt国际公司 Aerosol generating system with replaceable atomizer
CN110691521A (en) * 2017-06-06 2020-01-14 Jt 国际公司 Inhaler device and consumable cartridge
CN110691521B (en) * 2017-06-06 2022-06-28 Jt 国际公司 Inhaler device and consumable cartridge
WO2022199546A1 (en) * 2021-03-23 2022-09-29 深圳麦克韦尔科技有限公司 Atomizer and electronic atomization device

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C56 Change in the name or address of the patentee

Owner name: SHENZHEN SMOORE LTD.

Free format text: FORMER NAME: SHENZHEN MICROVAPOR TECHNOLOGY CO., LTD.

CP01 Change in the name or title of a patent holder

Address after: 518102 Guangdong city of Shenzhen province Baoan District Xixiang Shu Dongcai Industrial Zone No. 16 8 2 floor

Patentee after: SHENZHEN MAIKEWEIER CO., LTD.

Address before: 518102 Guangdong city of Shenzhen province Baoan District Xixiang Shu Dongcai Industrial Zone No. 16 8 2 floor

Patentee before: SHENZHEN MICROVAPOR TECHNOLOGY CO., LTD.

CP03 Change of name, title or address
CP03 Change of name, title or address

Address after: 518000 Guangdong city of Shenzhen province Baoan District Xixiang street guwu community Dongcai Industrial Zone No. 16

Patentee after: Shenzhen Mcwell Technology Co., Ltd.

Address before: 518102 Guangdong city of Shenzhen province Baoan District Xixiang Shu Dongcai Industrial Zone No. 16 8 2 floor

Patentee before: SHENZHEN MAIKEWEIER CO., LTD.