Atomization device and electronic cigarette
By incorporating conductive heating circuits and a battery storage module into the atomizing device, the device heats the atomizing liquid during atomization, and the battery storage module supplies power to the functional modules after power failure. This solves the problem of the atomizing device having only one method of use, enables the functional modules to work independently, and improves the user experience.
Patent Information
- Application Number
- CN202310356347.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-23
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2043-03-23
AI Technical Summary
Existing atomizing devices can only have other functional modules working simultaneously during atomization, resulting in limited usage and a poor user experience.
Design an atomizing device comprising a conductive heating circuit, a functional module, and a battery module. The conductive heating circuit is energized to heat the atomizing liquid during atomization. The battery module can still supply power to the functional module after power failure, enabling the functional module to work independently.
It achieves flexibility in atomization devices and e-cigarettes during atomization, and the functional modules can work independently when not atomizing, improving the user experience.
Smart Images

Figure CN116349931B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of electronic cigarettes, and particularly relates to an atomization device and an electronic cigarette. BACKGROUND
[0002] The atomization device is a device for atomizing a test solution, and is an important component in air humidifiers, medical atomizers or electronic cigarettes and the like.
[0003] At present, in order to realize the multifunction of the atomization device, some atomization devices with other functions (such as gas component detection function) have appeared on the market, but the atomization device usually supplies power to other function modules when the atomization device is used in cooperation with a battery module, that is, only when the atomization is performed, the other functions can be realized, which leads to single use method and poor flexibility, and poor user experience.
[0004] Therefore, there is an urgent need for an atomization device and an electronic cigarette to solve the above technical problems. SUMMARY
[0005] The present application aims to provide an atomization device and an electronic cigarette for improving the flexibility of use and thus improving the user experience.
[0006] To achieve this purpose, the present application adopts the following technical solutions:
[0007] The atomization device comprises:
[0008] a housing in which an atomization liquid is stored;
[0009] an atomization module arranged in the housing, the atomization module comprising a conductive heating circuit, the conductive heating circuit being capable of heating the atomization liquid when powered;
[0010] a function module comprising a gas component detection unit;
[0011] a storage battery module electrically connected to the function module and capable of supplying power to the function module, the storage battery module being electrically connected to the conductive heating circuit, and the storage battery module being charged when the conductive heating circuit is powered.
[0012] As a preferred technical solution of the above-mentioned atomization device, the conductive heating circuit comprises a first electrode, a conductive heating structure and a second electrode, one end of the first electrode being electrically connected to one end of the conductive heating structure, the other end of the first electrode extending to the outer surface of the housing, one end of the second electrode being electrically connected to the other end of the conductive heating structure, the other end of the second electrode extending to the outer surface of the housing, the positive electrode of the storage battery module being electrically connected to the first electrode, and the negative electrode of the storage battery module being electrically connected to the second electrode.
[0013] As one of the preferred technical solutions of the atomization device, the power storage battery module comprises a power storage battery, a first connecting terminal and a second connecting terminal, the power storage battery is electrically connected to the functional module, one end of the first connecting terminal is electrically connected to the first electrode, and the other end is electrically connected to the positive electrode of the power storage battery, one end of the second connecting terminal is electrically connected to the second electrode, and the other end is electrically connected to the negative electrode of the power storage battery.
[0014] As one of the preferred technical solutions of the atomization device, the first connecting terminal comprises a first sleeve part and a first elastic sheet, the first sleeve part is sleeved outside the first electrode, one end of the first elastic sheet is connected to the first sleeve part, and the other end is welded to the positive electrode of the power storage battery.
[0015] The second connecting terminal comprises a second sleeve part and a second elastic sheet, the second sleeve part is sleeved outside the second electrode, one end of the second elastic sheet is connected to the second sleeve part, and the other end is welded to the negative electrode of the power storage battery.
[0016] As one of the preferred technical solutions of the atomization device, a plurality of first through grooves are formed in the outer side wall of the first sleeve part and communicated with the inside, one end of the first through groove extends to the end of one end of the first sleeve part, and the other end of the first elastic sheet is connected to the first sleeve part.
[0017] A plurality of second through grooves are formed in the outer side wall of the second sleeve part and communicated with the inside, one end of the second through groove extends to the end of one end of the second sleeve part, and the other end of the second elastic sheet is connected to the second sleeve part.
[0018] As one of the preferred technical solutions of the atomization device, the first electrode comprises a first connecting column and a first contact sheet connected to one end of the first connecting column, one end of the first connecting column away from the first contact sheet is electrically connected to the conductive heating structure, the first contact sheet is embedded on the outer surface of the shell, and the first connecting column is electrically connected to the positive electrode of the power storage battery module.
[0019] The second electrode comprises a second connecting column and a second contact sheet connected to one end of the second connecting column, one end of the second connecting column away from the second contact sheet is electrically connected to the conductive heating structure, the second contact sheet is embedded on the outer surface of the shell, and the second connecting column is electrically connected to the negative electrode of the power storage battery module.
[0020] As one of the preferred technical solutions of the atomization device, the atomization module further comprises a liquid permeable member, one side of the liquid permeable member is provided with the atomization liquid, the other side of the liquid permeable member is connected with the conductive heating circuit, and the liquid permeable member can permeate the atomization liquid.
[0021] As one of the preferred technical solutions of the atomization device, the shell comprises a main shell and a shell cover, the shell cover and the main shell are covered, one end of the liquid permeable member is arranged in the shell cover, and the other end is arranged in the main shell, a storage cavity for storing atomized liquid is arranged on the side of the liquid permeable member facing the main shell, and an atomization cavity is arranged on the side of the liquid permeable member facing the shell cover, the conductive heating circuit, the functional module and the storage battery module are all arranged in the atomization cavity.
[0022] As one of the preferred technical solutions of the atomization device, the functional module is integrated with the gas component detection unit, the blood oxygen detection unit and the heart rate detection unit.
[0023] The electronic cigarette comprises a power supply module and the atomization device, the power supply module is detachably connected to the shell and can supply power to the conductive heating circuit.
[0024] The present application has the following beneficial effects:
[0025] The present application provides an atomization device, when atomization is to be performed, the conductive heating circuit is powered on, the conductive heating circuit heats the atomized liquid to realize atomization, at the same time, the storage battery module is charged, after the conductive heating circuit is powered off, the atomization is completed, since the storage battery module stores electricity, the functional module can be powered independently, the atomization device does not perform atomization, and the surrounding gas can also be detected independently, therefore, the functional module can work independently, the use method of the atomization device is flexible and diverse, and the user experience is improved.
[0026] The present application also provides an electronic cigarette comprising a power supply module and the atomization device, when atomization is to be performed, the power supply module is matched with the atomization device, the power supply module powers on the conductive heating circuit in the atomization device, the conductive heating circuit heats the atomized liquid to realize atomization, at the same time, the storage battery module is charged, after the power supply module is detached, the atomization is completed, since the storage battery module stores electricity, the functional module can be powered independently, therefore, the functional module in the electronic cigarette does not need to work simultaneously with the atomization module and can work independently, the use method of the electronic cigarette is flexible and diverse, and the user experience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments of the present application will be briefly introduced, and obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained according to the contents of the embodiments of the present application and the drawings by those skilled in the art without creating any creative labor.
[0028] Figure 1 is a structural schematic diagram of an atomizing device provided by an embodiment of the present application;
[0029] Figure 2 is a sectional view of an atomizing device provided by an embodiment of the present application;
[0030] Figure 3 is a partial structural schematic diagram of an atomizing device provided by an embodiment of the present application; Figure 1 ;
[0031] Figure 4 is a partial structural schematic diagram of an atomizing device provided by an embodiment of the present application; Figure 2 ;
[0032] Figure 5 is an exploded view of a partial structure of an atomizing device provided by an embodiment of the present application;
[0033] Figure 6 is an exploded view of an atomizing device provided by an embodiment of the present application;
[0034] Figure 7 is a partial structural schematic diagram of an atomizing device provided by an embodiment of the present application; Figure 3 .
[0035] in the figure:
[0036] 1, housing; 11, main body shell; 12, shell cover; 121, air outlet; 13, storage cavity; 14, atomizing cavity; 15, gas passage; 16, column body;
[0037] 2, atomizing module; 21, liquid permeating piece; 22, conductive heating circuit; 221, first electrode; 2211, first connecting column; 2212, first contact sheet; 222, conductive heating structure; 223, second electrode;
[0038] 3, functional module; 31, block body; 32, heart rate detection piece; 33, blood oxygen detection piece; 34, gas detection piece;
[0039] 4, first sealing ring; 5, second sealing ring; 6, third sealing ring;
[0040] 7, fixing support; 71, limiting hole; 72, limiting groove;
[0041] 8, residual liquid adsorption layer;
[0042] 9, storage battery module; 91, storage battery; 92, first connecting terminal; 921, first sleeve portion; 9211, first through groove; 922, first elastic sheet; 93, second connecting terminal. DETAILED DESCRIPTION
[0043] Embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar components or components having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary and are intended to explain the present application, and should not be understood as limiting the present application.
[0044] In the description of the present application, unless explicitly defined and limited otherwise, the terms "connected", "connected", "mounted" should be understood broadly, for example, it can be mounted connection, but also can be detachable connection, can be mechanical connection, but also can be electrical connection, can be directly connected, but also indirectly connected through the intermediate medium, can be the internal communication of two elements or the interaction relationship of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0045] In the description of the present application, unless explicitly defined and limited otherwise, the first feature "on" or "under" the second feature can include that the first feature and the second feature are in direct contact, or the first feature and the second feature are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the first feature is less than the second feature in horizontal height.
[0046] The technical solutions of the present application are further illustrated below by specific embodiments in conjunction with the drawings.
[0047] As shown in Figures 1 to 3 The present embodiment provides an atomization device, which comprises a shell 1, an atomization module 2, a functional module 3 and a storage battery module 9, the shell 1 stores atomization liquid; the atomization module 2 is arranged in the shell 1, the atomization module 2 comprises a conductive heating circuit 22, the conductive heating circuit 22 can heat the atomization liquid when powered on; the functional module 3 comprises a gas component detection unit; the storage battery module 9 is electrically connected to the functional module 3 and can supply power to the functional module 3, the storage battery module 9 is electrically connected to the conductive heating circuit 22, and the storage battery module 9 is charged when the conductive heating circuit 22 is powered on.
[0048] The atomization device provided by the embodiment can supply power to the conductive heating circuit 22 when atomization is to be performed, so that the conductive heating circuit 22 heats the atomized liquid to achieve atomization. Meanwhile, the storage battery module 9 is charged, and after the conductive heating circuit 22 is powered off, the atomization is completed. Since the storage battery module 9 stores electricity, the functional module 3 can be independently powered. That is, the atomization device can independently detect the surrounding gas when atomization is not performed. Therefore, the functional module 3 can work independently, so that the use method of the atomization device is flexible and diverse, and the user experience is improved.
[0049] Specifically, the conductive heating circuit 22 includes a first electrode 221, a conductive heating structure 222, and a second electrode 223. One end of the first electrode 221 is electrically connected to one end of the conductive heating structure 222, and the other end of the first electrode 221 extends to the outer surface of the shell 1. One end of the second electrode 223 is electrically connected to the other end of the conductive heating structure 222, and the other end of the second electrode 223 extends to the outer surface of the shell 1. The positive electrode of the storage battery module 9 is electrically connected to the first electrode 221, and the negative electrode of the storage battery module 9 is electrically connected to the second electrode 223. The ends of the first electrode 221 and the second electrode 223 extending to the outer surface of the shell 1 are used to connect to the power supply module. After the power supply module is connected to the first electrode 221 and the second electrode 223, a loop is formed by the power supply module, the first electrode 221, the conductive heating structure 222, and the second electrode 223. When current passes through the conductive heating structure 222, the conductive heating structure 222 generates heat and warms up, thereby heating the atomized liquid. Meanwhile, when the current passes through the first electrode 221 and the second electrode 223 to flow through the storage battery module 9, the storage battery module 9 stores electrical energy.
[0050] Specifically, as shown in Figure 4 the storage battery module 9 includes a storage battery 91, a first connection terminal 92, and a second connection terminal 93. The storage battery 91 is electrically connected to the functional module 3. One end of the first connection terminal 92 is electrically connected to the first electrode 221, and the other end of the first connection terminal 92 is electrically connected to the positive electrode of the storage battery 91. One end of the second connection terminal 93 is electrically connected to the second electrode 223, and the other end of the second connection terminal 93 is electrically connected to the negative electrode of the storage battery 91. The first connection terminal 92 realizes the electrical connection between the first electrode 221 and the positive electrode of the storage battery 91, and the second connection terminal 93 realizes the electrical connection between the second electrode 223 and the negative electrode of the storage battery 91. The storage battery 91 is used to store electrical energy.
[0051] More specifically, the first connecting terminal 92 comprises a first sleeve part 921 sleeved on the first electrode 221 and a first elastic sheet 922, one end of which is connected to the first sleeve part 921 and the other end of which is welded to the positive pole of the power storage battery 91; the second connecting terminal 93 comprises a second sleeve part sleeved on the second electrode 223 and a second elastic sheet, one end of which is connected to the second sleeve part and the other end of which is welded to the negative pole of the power storage battery 91. The first sleeve part 921 and the first electrode 221 are sleeved, which improves the firmness of the electrical connection between them, and the first elastic sheet 922 and the power storage battery 91 are welded, which improves the firmness of the electrical connection between them; similarly, the second sleeve part and the second electrode 223 are sleeved, which improves the firmness of the electrical connection between them, and the second elastic sheet and the power storage battery 91 are welded, which improves the firmness of the electrical connection between them. The first elastic sheet 922 and the second elastic sheet have an elastic buffering effect, which avoids the disconnection of each electrical connection due to shaking and further ensures the firmness of the electrical connection.
[0052] In the embodiment, the first elastic sheet 922 is welded to the power storage battery 91 by laser or infrared; the second elastic sheet is welded to the power storage battery 91 by laser or infrared.
[0053] Further specifically, a plurality of first through grooves 9211 are formed in the outer side wall of the first sleeve part 921 and communicate with the inside, one end of each of the first through grooves 9211 extending to the end of one end of the first sleeve part 921, and the first elastic sheet 922 being connected to the other end of the first sleeve part 921; a plurality of second through grooves are formed in the outer side wall of the second sleeve part and communicate with the inside, one end of each of the second through grooves extending to the end of one end of the second sleeve part, and the second elastic sheet being connected to the other end of the second sleeve part. The first through grooves 9211 are arranged so that the side wall of the first sleeve part 921 can be elastically deformed to a certain extent, so that the first electrode 221 can be clamped; similarly, the second through grooves are arranged so that the side wall of the second sleeve part can be elastically deformed to a certain extent, so that the second electrode 223 can be clamped.
[0054] Specifically, the functional module 3 is arranged between the first electrode 221 and the second electrode 223, and the power storage battery 91 is arranged in the mounting groove at one end of the functional module 3. Such an arrangement makes the electrical connection line between the functional module 3 and the power storage battery 91 shorter, and the distance between the first electrode 221 and the second electrode 223 and the power storage battery 91 smaller, so that the lengths of the first connecting terminal 92 and the second connecting terminal 93 are smaller, which is conducive to reducing the cost of materials, and the structure is compact and occupies a small space, avoiding the increase in the size of the atomization device due to the addition of the power storage battery module 9.
[0055] Specifically, as Figure 1 , Figure 3 andFigure 4 As shown, the first electrode 221 comprises a first connecting column 2211 and a first contact sheet 2212 connected to one end of the first connecting column 2211, the end of the first connecting column 2211 away from the first contact sheet 2212 is electrically connected to the conductive heating structure 222, the first contact sheet 2212 is embedded on the outer surface of the shell 1, and the first connecting column 2211 is electrically connected to the positive electrode of the power storage battery module 9; the second electrode 223 comprises a second connecting column and a second contact sheet connected to one end of the second connecting column, the end of the second connecting column away from the second contact sheet is electrically connected to the conductive heating structure 222, the second contact sheet is embedded on the outer surface of the shell 1, and the second connecting column is electrically connected to the negative electrode of the power storage battery module 9. The first contact sheet 2212 and the second contact sheet increase the contact area with the power supply module, facilitating the power supply of the power supply module to the atomization device.
[0056] Continuing to refer to Figure 1 , Figure 3 and Figure 4 , in this embodiment, the first sleeve part 921 is sleeved on the first connecting column 2211, one end of the first through slot 9211 provided on the first sleeve part 921 is arranged close to the first contact sheet 2212, and the end of the first connecting column 2211 away from the first contact sheet 2212 is provided with a conical head, which facilitates the penetration into the first sleeve part 921 and the assembly of the first electrode 221 and the first connecting terminal 92. Similarly, the second sleeve part is sleeved on the second connecting column, one end of the second through slot provided on the second sleeve part is arranged close to the second contact sheet, and the end of the second connecting column away from the second contact sheet is provided with a conical head, which facilitates the penetration into the second sleeve part and the assembly of the second electrode 223 and the second connecting terminal 93.
[0057] Specifically, as shown in Figure 2 , the atomization module 2 further comprises a liquid-permeable piece 21, one side of the liquid-permeable piece 21 is provided with atomization liquid, and the other side is connected with a conductive heating circuit 22, and the liquid-permeable piece 21 can permeate the atomization liquid. The atomization liquid permeates into the liquid-permeable piece 21, and the conductive heating circuit 22 is heated when powered on, heating the atomization liquid in the liquid-permeable piece 21 to realize atomization.
[0058] In this embodiment, the liquid-permeable piece 21 is made of food-grade environmentally friendly high-temperature-resistant porous material.
[0059] Specifically, as shown in Figure 1 and Figure 2As shown in the drawings, the shell 1 comprises a main body shell 11 and a shell cover 12, the shell cover 12 and the main body shell 11 are lapped, one end of the liquid permeable member 21 is arranged in the shell cover 12, and the other end is arranged in the main body shell 11, the side of the liquid permeable member 21 towards the main body shell 11 is provided with a storage cavity 13 for storing atomized liquid, the side of the liquid permeable member 21 towards the shell cover 12 is provided with an atomization cavity 14, the conductive heating circuit 22, the functional module 3 and the storage battery module 9 are all arranged in the atomization cavity 14. The liquid permeable member 21 is blocked between the storage cavity 13 and the atomization cavity 14, which prevents the atomized liquid in the storage cavity 13 from flowing into the atomization cavity 14, and also realizes the heating and atomization of the atomized liquid by the conductive heating circuit 22. The main body shell 11 and the shell cover 12 are lapped and connected, which facilitates the placement of the components and the atomized liquid in the shell 1.
[0060] In this embodiment, the main body shell 11 and the shell cover 12 are both made of food-grade environmentally friendly materials.
[0061] Specifically, as shown in the drawings, Figure 2 and Figure 5 The atomization cavity 14 is provided with a fixed bracket 7, the fixed bracket 7 is provided with two limiting holes 71 and a limiting groove 72 arranged between the two limiting holes 71, the functional module 3 is arranged in the limiting groove 72, and the first electrode 221 and the second electrode 223 are respectively arranged in the two limiting holes 71. The fixed bracket 7 realizes the positioning of the functional module 3 and the first electrode 221 and the second electrode 223.
[0062] Specifically, the storage cavity 13 is provided with a column 16 extending along the assembly direction of the main body shell 11 and the shell cover 12, one end of the column 16 is connected to the end wall of the storage cavity 13, and the other end is arranged in the liquid permeable member 21, the column 16 is provided with a gas passage 15 along the length direction, and the atomization cavity 14 is provided with a gas outlet 121 communicating with the outside. The gas outside can enter the atomization cavity 14 through the gas passage 15 to balance the gas pressure in the atomization cavity 14 and the outside, and ensure that the atomized gas formed in the atomization cavity 14 can be dispersed through the gas outlet 121.
[0063] Specifically, as shown in the drawings, Figure 2 and Figure 6As shown, the circumferential outer wall of the liquid permeable member 21 and the circumferential inner wall of the shell cover 12 are sealed by a first sealing ring 4, which improves the sealing of the connection between the liquid permeable member 21 and the shell cover 12; the inner wall of the liquid permeable member 21 and the outer wall of the column 16 are sealed by a second sealing ring 5, which improves the sealing of the connection between the liquid permeable member 21 and the column 16; the circumferential outer wall of the liquid permeable member 21 and the circumferential inner wall of the main body shell 11 are sealed by a third sealing ring 6, which improves the sealing of the connection between the liquid permeable member 21 and the main body shell 11. In this way, the sealing between the storage cavity 13 and the atomization cavity 14 is ensured, and the atomized liquid in the storage cavity 13 is prevented from flowing into the atomization cavity 14, thereby ensuring the normal operation of the components in the atomization cavity 14.
[0064] Specifically, as shown in Figure 6 the first sealing ring 4 and the second sealing ring 5 are connected and integrally formed. This improves the manufacturing efficiency and improves the sealing effect.
[0065] More specifically, the inner and outer surfaces of the first sealing ring 4, the second sealing ring 5, and the third sealing ring 6 are corrugated surfaces, which further improves the sealing.
[0066] In this embodiment, the first sealing ring 4, the second sealing ring 5, and the third sealing ring 6 are all made of food-grade environmentally friendly silica gel.
[0067] Specifically, as shown in Figure 2 the third sealing ring 6 is sealed between the first sealing ring 4 and the circumferential inner wall of the main body shell 11.
[0068] Specifically, as shown in Figure 2 and Figure 6 the inner end wall of the end of the atomization cavity 14 away from the storage cavity 13 is provided with a residual liquid adsorption layer 8. The atomized vapor formed by the atomization module 2 diffuses in the atomization cavity 14, and when the air pressure at the air outlet 121 decreases, the atomized vapor in the atomization cavity 14 is discharged through the air outlet 121 due to the pressure difference. During use, a small amount of atomized vapor in the atomization cavity 14 will be liquefied in the atomization cavity 14, and the residual liquid adsorption layer 8 is used to adsorb these liquidized liquids to avoid affecting the normal operation of the components.
[0069] In this embodiment, the residual liquid adsorption layer 8 is made of food-grade environmentally friendly condensation fiber.
[0070] Specifically, the gas component detection unit, the blood oxygen detection unit and the heart rate detection unit are integrated on the functional module 3. The arrangement of the functional module 3 enables the atomization device to detect the component of the gas, the blood oxygen concentration and the heart rate, to know whether the harmful gas is contained in the gas by detecting the component of the surrounding gas, to remind the user to timely leave, and to be conducive to the safety of the person; by detecting the blood oxygen concentration and the heart rate, the physical condition of the user is obtained, the physical health condition is known in time, the doctor is visited in time, and the symptoms are avoided from further aggravating.
[0071] More specifically, as shown in Figure 1 and Figure 7 , the functional module 3 includes a block 31, the block 31 is arranged in the atomization cavity 14, and the end face of the block 31 facing the gas channel 15 is a detection face, the blood oxygen detection unit, the heart rate detection unit and the gas component detection unit are arranged on the detection face. The external gas enters the atomization cavity 14 through the gas channel 15, directly flows through the detection face, the gas component detection unit detects the gas to obtain the component of the gas; the blood oxygen detection unit and the heart rate detection unit emit light outward through the gas channel 15 to obtain the blood oxygen concentration and the heart rate of the user.
[0072] Further specifically, a first mounting hole is arranged at the center of the detection face, a plurality of second mounting holes arranged in a circle and a plurality of third mounting holes arranged in a circle are arranged on the detection face with the first mounting hole as the center, the third mounting holes are arranged at the outer circle of the second mounting holes, the heart rate detection unit includes a heart rate detection piece 32, the heart rate detection piece 32 is arranged in the first mounting hole, the blood oxygen detection unit includes a plurality of blood oxygen detection pieces 33, the plurality of blood oxygen detection pieces 33 are arranged in the plurality of second mounting holes one by one, and the gas component detection unit includes a plurality of gas detection pieces 34, the plurality of gas detection pieces 34 are arranged in the plurality of third mounting holes one by one. In this way, the gas component detection unit, the blood oxygen detection unit and the heart rate detection unit are integrated on the functional module 3, multiple functions are realized at the same time, the functional diversity of the atomization device is increased, the atomization device has multiple purposes, and the user experience is improved. Moreover, the distribution positions of the heart rate detection piece 32, the blood oxygen detection piece 33 and the gas detection piece 34 on the detection face improve the detection accuracy.
[0073] In the embodiment, the end face of the block 31 away from the detection face is provided with a mounting groove for accommodating the storage battery 91. One end of the mounting groove is arranged in the limiting groove 72 on the fixed support 7, and the groove bottom of the limiting groove 72 is arranged in the limiting groove 72, so that the storage battery 91 is firmly fixed.
[0074] Specifically, the gas detection member 34 comprises a sensor for real-time monitoring of nicotine, PM2.5, formaldehyde, heavy metals, carbon monoxide, etc. in the air. When the external gas passes through the contact surface through the gas channel 15, the gas detection member 34 detects the composition of the gas. The specific composition and detection principle of the gas detection member 34 can be referred to the prior art, which will not be described in detail here.
[0075] Specifically, the heart rate detection member 32 obtains the heart rate of the user by emitting green light to the outside, which penetrates into the skin of the user. The specific composition and detection principle of the heart rate detection member 32 can be referred to the prior art, which will not be described in detail here.
[0076] Specifically, the blood oxygen detection member 33 obtains the blood oxygen concentration of the user by emitting infrared rays and red light to the outside, which penetrates into the skin of the user. The specific composition and detection principle of the blood oxygen detection member 33 can be referred to the prior art, which will not be described in detail here.
[0077] Specifically, the function module 3 further comprises a Bluetooth or wifi transmitting module. The data measured by the function module 3 can be connected to the APP software on the mobile phone through the Bluetooth or wifi transmitting module, and data analysis and summary can be performed, and an environmental and health examination report can be automatically generated, so that the user can understand the environmental and physical conditions in a timely and more clear manner.
[0078] The embodiment also provides an electronic cigarette, which comprises a power supply module (not shown in the figure) and the above-mentioned atomization device. The power supply module is detachably connected to the shell 1 and can supply power to the conductive heating circuit 22.
[0079] In use of the electronic cigarette, the power supply module is connected to the shell 1 of the atomization device. At this time, the two terminals on the power supply module are in contact with the first contact sheet 2212 and the second contact sheet on the atomization device respectively, realizing electrical conduction. The conductive heating circuit 22 heats the atomization liquid on the liquid permeation member 21, and the atomization vapor formed by atomization is discharged through the air outlet 121 and enters the oral cavity of the user. In the process of smoking, the storage battery 91 is automatically charged. Therefore, the storage battery 91 can supply power to the function module 3 when the electronic cigarette is not smoked. Therefore, the function module 3 of the electronic cigarette can work independently, so that the use method of the electronic cigarette is flexible and various, and the user experience is improved.
[0080] Obviously, the above-mentioned embodiments of the present application are only examples for clearly illustrating the present application, and are not intended to limit the embodiments of the present application. Based on the above-mentioned description, other different forms of changes or variations can be made by those skilled in the art. Here, all the embodiments need not and cannot be exhausted. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the claims of the present application.
Claims
1. An atomising device characterised in that, The utility model relates to a kind of atomization module and battery module, including: Shell (1), which stores atomized liquid inside; Atomization module (2) is arranged in the shell (1), and the atomization module (2) includes conductive heating circuit (22), which can heat and atomize the atomized liquid when energized; Functional module (3) includes gas component detection unit; Storage battery module (9) is electrically connected to the functional module (3) and can power the functional module (3). The storage battery module (9) is electrically connected to the conductive heating circuit (22). When the conductive heating circuit (22) is energized, the storage battery module (9) is charged. The conductive heating circuit (22) includes a first electrode (221), a conductive heating structure (222), and a second electrode (223). One end of the first electrode (221) is electrically connected to one end of the conductive heating structure (222). The other end of the first electrode (221) extends to the outer surface of the shell (1). One end of the second electrode (223) is electrically connected to the other end of the conductive heating structure (222). The other end of the second electrode (223) extends to the outer surface of the shell (1). The positive electrode of the storage battery module (9) is electrically connected to the first electrode (221), and the negative electrode of the storage battery module (9) is electrically connected to the second electrode (223). The storage battery module (9) includes a storage battery (91), a first connection terminal (92), and a second connection terminal (93). The storage battery (91) is electrically connected to the functional module (3). One end of the first connection terminal (92) is electrically connected to the first electrode (221), and the other end is electrically connected to the positive electrode of the storage battery (91). One end of the second connection terminal (93) is electrically connected to the second electrode (223), and the other end is electrically connected to the negative electrode of the storage battery (91). The first connection terminal (92) includes a first sleeve portion (921) and a first elastic sheet (922). The first sleeve portion (921) is sleeved outside the first electrode (221). One end of the first elastic sheet (922) is connected to the first sleeve portion (921), and the other end is welded to the positive electrode of the storage battery (91). The second connection terminal (93) includes a second sleeve portion and a second elastic sheet. The second sleeve portion is sleeved outside the second electrode (223). One end of the second elastic sheet is connected to the second sleeve portion, and the other end is welded to the negative electrode of the storage battery (91).
2. The atomization device of claim 1, wherein, A plurality of first through grooves (9211) are formed on the outer sidewall of the first sleeve portion (921) and communicate with the interior. One end of the first through groove (9211) extends to the end of one end of the first sleeve portion (921). The first elastic sheet (922) is connected to the other end of the first sleeve portion (921). A plurality of second through grooves are formed in the outer side wall of the second sleeve part and communicated with the interior, one end of the second through grooves extending to the end of one end of the second sleeve part, and the second elastic sheet is connected to the other end of the second sleeve part.
3. The atomization device of claim 1, wherein, The first electrode (221) comprises a first connecting column (2211) and a first contact sheet (2212) connected to one end of the first connecting column (2211), one end of the first connecting column (2211) away from the first contact sheet (2212) being electrically connected to the conductive heating structure (222), the first contact sheet (2212) being embedded in the outer surface of the shell (1), and the first connecting column (2211) being electrically connected to the positive electrode of the power storage battery module (9). The second electrode (223) comprises a second connecting column and a second contact sheet connected to one end of the second connecting column, one end of the second connecting column away from the second contact sheet being electrically connected to the conductive heating structure (222), the second contact sheet being embedded in the outer surface of the shell (1), and the second connecting column being electrically connected to the negative electrode of the power storage battery module (9).
4. The atomization device of claim 1, wherein, The atomization module (2) further comprises a liquid permeating piece (21), one side of the liquid permeating piece (21) being provided with the atomization liquid, and the other side being connected with the conductive heating circuit (22), the liquid permeating piece (21) being capable of permeating the atomization liquid.
5. The atomization device of claim 4, wherein, The shell (1) comprises a main body shell (11) and a shell cover (12), the shell cover (12) and the main body shell (11) being coverable, one end of the liquid permeating piece (21) being arranged in the shell cover (12), and the other end being arranged in the main body shell (11), one side of the liquid permeating piece (21) facing the main body shell (11) being provided with a storage cavity (13) for storing the atomization liquid, and the other side of the liquid permeating piece (21) facing the shell cover (12) being provided with an atomization cavity (14), the conductive heating circuit (22), the functional module (3) and the power storage battery module (9) all being arranged in the atomization cavity (14).
6. The atomizing device according to any one of claims 1 to 5, wherein The functional module (3) is integrated with the gas component detection unit, the blood oxygen detection unit and the heart rate detection unit.
7. Electronic cigarette comprising a power supply module, characterized in that Further comprising the atomization device according to any one of claims 1-6, the power supply module being detachably connected to the shell (1) and capable of supplying power to the conductive heating circuit (22).
Citation Information
Patent Citations
Electronic cigarette atomizer
CN210169057U
Atomizer
CN217791454U