Electronic atomization device
By designing a detachable atomizer and liquid storage container structure in the electronic atomizing device, the problems of high replacement cost and flavor confusion in the prior art are solved, enabling flexible replacement of the liquid storage container and improving battery life, while ensuring the purity of the aerosol flavor.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN GEEKVAPE TECH CO LTD
- Filing Date
- 2025-04-08
- Publication Date
- 2026-05-12
AI Technical Summary
Existing electronic atomizing devices require replacing the entire atomizer when changing flavors or extending battery life, which increases operating costs. Furthermore, different flavor aerosol bases can easily mix together, affecting the performance.
Design an electronic atomizing device comprising an atomizer and at least two liquid storage containers. The atomizer is connected to one liquid storage container to form a working unit mounted on a work stand. The other liquid storage containers are detachably mounted on a storage stand. Magnetic attraction and a guiding structure are used to achieve quick assembly, disassembly, and positioning. The power supply component is connected to the battery via a spring pin. A portable charger can be selectively installed to improve battery life.
It enables quick replacement of the liquid storage container to reduce usage costs, avoids mixing of different flavored aerosol matrices to ensure the purity of aerosol flavor, and has a compact and portable overall structure, improving usage flexibility and battery life.
Smart Images

Figure CN224219467U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of electronic atomization equipment technology, and particularly relates to an electronic atomization device. Background Technology
[0002] Common electronic atomization products typically include a replaceable atomizer. The atomizer integrates a liquid reservoir, which is atomized to produce an aerosol during use. As user requirements increase, different aerosol bases can produce aerosols with different flavors.
[0003] However, the liquid reservoir on the atomizer can only hold one flavor of aerosol matrix. If you need to change the flavor or the liquid reservoir runs out, you have to replace the entire atomizer, which increases the cost of use. Utility Model Content
[0004] The purpose of this application is to provide an electronic atomizing device to solve the problem that existing electronic atomizing devices require the replacement of the entire atomizer when changing flavors or extending battery life, leading to increased usage costs.
[0005] To achieve the above objectives, the technical solution adopted in this application is as follows: This application provides an electronic atomizing device, comprising:
[0006] An atomizing assembly includes an atomizer and at least two liquid storage containers, wherein the atomizer is detachably connected to the liquid storage containers;
[0007] The main body includes a working base, a storage base, and a power supply component for supplying power to the atomizer; one of the at least two liquid storage containers is connected to the atomizer to form a working unit and is mounted on the working base; the remaining liquid storage containers are detachably disposed on the storage base.
[0008] The beneficial effects of the electronic atomizing device provided in this application are as follows: Compared with the prior art, the electronic atomizing device of this application includes a main body and an atomizing component. The atomizing component includes an atomizer and at least two liquid storage containers. One of these liquid storage containers is connected to the atomizer and installed on the working base of the main body. The remaining liquid storage containers are detachably mounted on the storage base of the main body. When the aerosol matrix in the liquid storage container connected to the atomizer is exhausted, a spare liquid storage container can be removed from the storage base for replacement, thereby achieving rapid battery life and reducing usage costs. Furthermore, these liquid storage containers can be filled with different flavored aerosol matrices, facilitating the replacement of liquid storage containers with different contents at any time to achieve rapid flavor changes and effectively improving usage flexibility.
[0009] In one embodiment, the body includes a housing with a partition plate inside, dividing the housing into adjacent closed cavities and open cavities. The closed cavities house the power supply components, and the open cavities form the storage base. The housing has an upwardly extending perimeter that surrounds the closed and open cavities to form a recess with an upper opening and a side opening, which forms the working base. This design allows the components of the electronic atomizing device to be compactly arranged, reducing space occupation and overall size, making the entire electronic atomizing device lighter, easier to store, and more portable.
[0010] The structure of the working base is improved by incorporating a magnetic element on the atomizer and a magnetic element in the working base that magnetically engages with the magnetic element. This magnetic engagement enables connection and fixation, facilitating assembly and disassembly while effectively ensuring the atomizer is securely held in place.
[0011] In one embodiment, both the atomizer and the liquid storage container have corresponding grooves on their connecting surfaces. The grooves on the atomizer and the liquid storage container fit together to form an isolation gap. The working base is provided with guide ribs that engage with the isolation gap for positioning. This allows the working unit to interlock with the guide ribs on the working base through the isolation gap, thereby sliding into the working base and being installed in place, effectively improving the positioning effect of the working unit.
[0012] The structure of the storage base is improved by providing protrusions for fixing the liquid storage containers, and each liquid storage container has a locking groove that engages with the protrusions. This ensures effective fixation of the liquid storage containers while simplifying installation and disassembly, enabling quick assembly and disassembly and improving operational efficiency.
[0013] In one embodiment, the storage base is further provided with a raised guide rail, and each of the liquid storage containers is provided with a guide groove that mates with the guide rail. Thus, by utilizing the interlocking fit between the guide groove and the guide rail, the liquid storage container can slide along the guide rail into the storage base and be installed in place, effectively improving the installation accuracy of the liquid storage container.
[0014] The structure of the main body is improved. The power supply component includes a circuit board and a battery that are electrically connected to each other. When the working unit is installed on the working base, the atomizer is electrically connected to the circuit board to realize the power supply and control of the atomizer.
[0015] In one embodiment, the atomizer has an atomizing core and an electrode electrically connected to the atomizing core, the electrode protruding from the bottom of the atomizer; the working base has a spring pin electrically connected to the circuit board, the spring pin being used to engage with the electrode. Thus, when the atomizer is mounted on the working base, the electrode on the atomizer can contact the spring pin, achieving an electrical connection with the circuit board.
[0016] In one embodiment, the body has an internal mounting bracket for housing the battery, and the circuit board is mounted on the mounting bracket. The mounting bracket includes a protective pad surrounding the outer periphery of the battery, with at least a portion of the protective pad located between the battery and the circuit board. This allows the mounting bracket to enclose and protect the battery, improving its protection. Furthermore, by adding the protective pad to the mounting bracket and filling the gap between the battery and the mounting bracket, the battery's secure hold is effectively improved.
[0017] In one embodiment, the electronic atomizing device further includes a portable charger, which is selectively mounted on the storage base along with the liquid reservoir; the circuit board has a charging terminal that extends to the storage base and is used to connect with the portable charger for charging, thereby improving the battery life of the electronic atomizing device. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 Schematic diagram of the assembly structure of the electronic atomizing device provided in the embodiments of this application Figure 1 ;
[0020] Figure 2 Schematic diagram of the assembly structure of the electronic atomizing device provided in the embodiments of this application Figure 2 ;
[0021] Figure 3 An internal perspective view of the assembly structure of the electronic atomizing device provided in the embodiments of this application;
[0022] Figure 4 A three-dimensional structural diagram of the electronic atomizing device body provided in the embodiments of this application. Figure 1 ;
[0023] Figure 5This is a schematic diagram of the internal structure of the electronic atomizing device body provided in the embodiments of this application;
[0024] Figure 6 Schematic diagram of the internal structure of the electronic atomizing device provided in the embodiments of this application Figure 1 ;
[0025] Figure 7 A three-dimensional structural schematic diagram of the atomizing component provided in the embodiments of this application;
[0026] Figure 8 This is a three-dimensional structural diagram of the atomizer provided in the embodiments of this application;
[0027] Figure 9 A three-dimensional structural diagram of the liquid storage container provided in the embodiments of this application. Figure 1 ;
[0028] Figure 10 A three-dimensional structural diagram of the electronic atomizing device body provided in the embodiments of this application. Figure 2 ;
[0029] Figure 11 A three-dimensional structural diagram of the electronic atomizing device body provided in the embodiments of this application. Figure 3 ;
[0030] Figure 12 A three-dimensional structural diagram of the liquid storage container provided in the embodiments of this application. Figure 2 ;
[0031] Figure 13 Schematic diagram of the internal structure of the electronic atomizing device provided in the embodiments of this application Figure 2 ;
[0032] Figure 14 A schematic diagram of the assembly structure of another electronic atomizer device provided in this application embodiment;
[0033] Figure 15 This is a three-dimensional structural diagram of a mobile charger provided in an embodiment of this application.
[0034] The following are the labeling elements in the figure:
[0035] 100-Ontology;
[0036] 200 - Atomizing component; 201 - Groove;
[0037] 1-Atomizer; 11-Magnetic attachment; 12-Atomizer coil; 121-Electrode;
[0038] 2-Liquid storage container; 2a-Working liquid storage container; 2b-Spare liquid storage container; 21-Secondary groove; 22-Guide groove;
[0039] 3-Working seat; 31-Magnetic component; 32-Guide rib; 33-Spring pin;
[0040] 4-Storage base; 41-Protrusion; 42-Guide rail; 43-Perforation;
[0041] 5-Power supply component; 51-Circuit board; 511-Charging terminal; 52-Battery;
[0042] 6-Shell; 61-Separator; 62-Closed cavity; 63-Open cavity; 64-Side enclosure;
[0043] 7-Fixed bracket; 71-Protective pad;
[0044] 8-Portable charger; 81-Charging contact terminal. Detailed Implementation
[0045] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.
[0046] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.
[0047] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0048] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.
[0049] Traditional e-cigarette devices have one or more detachable atomizers, each with an integrated reservoir. Each atomizer's reservoir can only hold one flavor of aerosol matrix. When a flavor needs changing or the reservoir runs out, the atomizer is replaced to switch flavors or extend battery life. Therefore, whether changing flavors or extending battery life, traditional e-cigarette devices require replacing the entire atomizer, making it a consumable component and increasing operating costs.
[0050] In related technologies, there are electronic atomizing devices with replaceable reservoirs. In these devices, the atomizer is integrated into the atomizing unit, and only the reservoir is detachably mounted. When the aerosol matrix in the reservoir is depleted, the device can be refilled by replacing the reservoir. Furthermore, when a different flavor is desired, the flavor can be changed by replacing the reservoir. However, because the atomizer is integrated into the electronic atomizing device, different flavor aerosol matrices are atomized and produced using the same atomizer. This leads to a tendency for different flavor aerosol matrices to mix during atomization, resulting in a lower purity of flavor and affecting the user experience.
[0051] Therefore, this application provides a novel electronic atomizing device, which improves the assembly structure of the atomizer and liquid storage container on the electronic atomizing device. This can not only improve the battery life and reduce the cost of use, but also avoid the problem of flavor mixing when changing flavors, which affects the use effect. It will now be described in detail.
[0052] Please refer to the following: Figure 1 , Figure 2 and Figure 3 An electronic atomizing device includes a body 100 of the electronic atomizing device and an atomizing component 200.
[0053] The atomizing assembly 200 includes an atomizer 1 and at least two liquid storage containers 2, wherein the atomizer 1 and the liquid storage containers 2 are detachably connected. The connection structure between the atomizer 1 and the liquid storage containers 2 can be achieved by means of adjacent snap-fit, plug-in, or sliding rail engagement, which facilitates quick assembly and disassembly and improves operational efficiency.
[0054] The main body 100 is provided with a working base 3, a storage base 4, and a power supply component 5 for supplying power to the atomizer 1. At least one liquid storage container 2 is connected to the atomizer 1 to form a working unit and is mounted on the working base 3. Figure 2 and Figure 3 As shown, this can be understood as follows: the liquid storage container 2 connected to the atomizer 1 serves as the working liquid storage container 2a. When the atomizer 1 is started, the aerosol matrix in the working liquid storage container 2a will be directly used for atomization to produce an aerosol with the flavor of the aerosol matrix.
[0055] The remaining liquid storage containers 2 are detachably mounted on the storage base 4. Here, "remaining liquid storage containers 2" can be understood as spare liquid storage containers 2b. One or more spare liquid storage containers 2b can be provided according to the volume and space available on the storage base 4, for selection and connection to the atomizer 1 and use as working liquid storage containers 2a. In this embodiment, as... Figure 2 and Figure 3 As shown, one spare liquid storage container 2b can be placed on the storage seat 4 of the main body 100; in other embodiments (not shown), multiple spare liquid storage containers 2b can also be placed on the storage seat 4 of the main body 100. The specific number of spare liquid storage containers 2b that can be placed on the storage seat 4 is not limited here.
[0056] Compared with the prior art, the electronic atomizing device provided in this application includes a main body 100 and an atomizing component 200. The atomizing component 200 includes an atomizer 1 and at least two liquid storage containers 2. One of these liquid storage containers 2 is connected to the atomizer 1 and mounted on the working base 3 of the main body 100. The remaining liquid storage containers 2 are detachably mounted on the storage base 4 of the main body 100. When the aerosol matrix in the liquid storage container 2 connected to the atomizer 1 is depleted, a spare liquid storage container 2 can be removed from the storage base 4 for replacement, thereby achieving rapid battery life and reducing usage costs.
[0057] In practical applications, these liquid storage containers 2 can be loaded with different flavored aerosol matrices, which facilitates the replacement of liquid storage containers 2 with different liquids at any time to achieve rapid flavor changes and effectively improve the flexibility of use.
[0058] Compared to the aforementioned related technologies where only the liquid storage container 2 can be replaced in electronic atomizing devices, the electronic atomizing devices of the related technologies integrate the atomizer 1 onto the main body 100. Different flavored aerosol bases are atomized and aerosols are produced through the same atomizer 1. This means that the atomizer 1 already contains the original flavored aerosol base, and newly replaced aerosol bases of different flavors are mixed with the original flavored aerosol base and atomized together, resulting in lower purity of the output aerosol and affecting the performance.
[0059] In the electronic atomizing device provided in this application embodiment, the atomizer 1 and the liquid storage container 2 are connected to form a working unit before being installed on the working base 3 of the main body 100. It can be seen that both the atomizer 1 and the liquid storage container 2 are detachable and replaceable components. During use, the liquid storage container 2 containing the same flavor aerosol matrix can be directly replaced to obtain a quick refill of the desired flavor. However, when it is necessary to change to a different flavor and the purity of the output flavor is required, a new atomizer 1 and a new liquid storage container 2 containing the new flavor aerosol matrix can be replaced simultaneously, connected to each other, and then installed on the main body 100 for use. In this way, the new flavor aerosol matrix can be output through the new atomizer 1, effectively preventing different flavor aerosol matrices from mixing and atomizing together, thereby ensuring the purity of the output aerosol flavor and improving the usage effect.
[0060] For the overall layout of the electronic atomizing device in the embodiments of this application, please refer to one embodiment of this application. Figure 4 and Figure 5 The main body 100 includes a housing 6, and a partition plate 61 is provided inside the housing 6. The partition plate 61 divides the housing 6 into an adjacent closed cavity 62 and an open cavity 63. The closed cavity 62 is used to accommodate the power supply component 5, and the open cavity 63 forms a storage base 4.
[0061] The housing 6 has an upwardly extending perimeter 64, which surrounds the closed cavity 62 and the open cavity 63 to form a recess with an upper opening and a side opening. This recess forms the aforementioned working seat 3.
[0062] The working unit, consisting of the atomizer 1 and a liquid storage container 2, is embedded in the recess, so that the atomizer 1 and the power supply component 5 are aligned vertically to achieve electrical connection, and at the same time, the working liquid storage container 2a in the working unit is aligned vertically with the spare liquid storage container 2b set in the storage seat 4.
[0063] In this embodiment, combined with Figure 5 and Figure 6 As shown, the housing 6 of the main body 100 includes upper and lower halves. The upper half is a working seat 3 formed by the upwardly extending perimeter 64 of the housing 6. The lower half is two cavities divided by a partition plate 61. One is a closed cavity 62, which can be used to house the power supply component 5. The other is an open cavity 63, which forms a storage seat 4 for installing the spare liquid storage container 2b.
[0064] Preferably, such as Figure 4 As shown, the storage seat 4 has a lower opening and a side opening so that the spare liquid storage container 2b can be inserted into the storage seat 4 through the connected lower opening and side opening.
[0065] In this embodiment, as Figure 2 , Figure 3and Figure 4 As shown, the atomizing component 200 includes two liquid storage containers 2, which are identical in shape. One of the two liquid storage containers 2 serves as the working liquid storage container 2a and is connected to the atomizer 1 and mounted on the working seat 3 of the main body 100. The other serves as the spare liquid storage container 2b and is mounted on the storage seat 4 of the main body 100 in a symmetrical manner, which effectively saves space and reduces the overall volume.
[0066] In other embodiments (not shown in the figures), the atomizing assembly 200 includes multiple liquid storage containers 2. One of these containers serves as a working liquid storage container 2a and is connected to the atomizer 1 and mounted on the working base 3 of the main body 100. The remaining liquid storage containers 2 serve as spare liquid storage containers 2b and are arranged sequentially on the storage base 4 of the main body 100. This allows multiple spare liquid storage containers 2b to be carried simultaneously on a single electronic atomizing device, effectively improving battery life.
[0067] This allows the various components of the electronic atomizer to be compactly integrated, which helps to reduce the space occupied and the overall size, making the entire electronic atomizer lighter, easier to store and carry, and thus improving its portability.
[0068] For the structure on the workbench 3, please refer to one embodiment of this application. Figure 5 and Figure 6 The atomizer 1 is provided with a magnetic suction component 11, and the working base 3 is provided with a magnetic component 31 that magnetically engages with the magnetic suction component 11.
[0069] In this embodiment, the magnetic element 11 can preferably be provided at the bottom of the atomizer 1; correspondingly, the magnetic element 31 is provided on the part of the working base 3 of the main body 100 corresponding to the power supply component 5, so that when the atomizer 1 is installed in the working base 3, the magnetic element 11 and the magnetic element 31 can be magnetically attracted to each other to achieve connection and fixation.
[0070] In this way, magnetic attraction is used to achieve connection and fixation, which is convenient for disassembly and assembly, and effectively ensures the fixation of atomizer 1.
[0071] The magnetic attracting component 11 and the magnetic component 31 can preferably be a combination of magnets, or a combination of a magnet and a metal that can be attracted magnetically, such as iron. The specific configuration can be set according to the cost and requirements of production and manufacturing, and no specific limitation is made here.
[0072] In one embodiment of this application, please refer to the following: Figure 7 , Figure 8 and Figure 9Both the atomizer 1 and the liquid storage container 2 have corresponding grooves 201 on their connecting surfaces, and the grooves 201 on the atomizer 1 and the grooves 201 on the liquid storage container 2 are combined to form an isolation gap M.
[0073] like Figure 10 As shown, the work base 3 is provided with a guide rib 32 that mates with the aforementioned isolation gap M. The entire work unit can be interlocked with the guide rib 32 through the isolation gap M and slide into the work base 3 along the guide rib 32 so that the work unit is installed in place.
[0074] In this way, the guide rib 32 in the work base 3 is engaged with the isolation gap M on the work unit to ensure that the work unit can be installed smoothly and effectively improve the positioning effect of the work unit.
[0075] Preferably, in this embodiment, please refer to Figure 7 , Figure 8 and Figure 9 As shown, the groove 201 on the atomizer 1 and the groove 201 on the liquid storage container 2 are grooves of the same shape, and preferably trapezoidal grooves that are narrower at the top and wider at the bottom, so that the isolation gap M formed by the two grooves 201 is a flared groove. Correspondingly, as... Figure 10 As shown, the guide rib 32 in the work base 3 is preferably a triangular piece with a matching shape. This facilitates accurate alignment of the isolation gap M with the guide rib 32 during the installation and alignment of the work unit and the work base 3, effectively improving the smoothness of the installation operation.
[0076] Regarding the structure on storage base 4, please refer to one embodiment of this application. Figure 11 and Figure 12 The storage base 4 is provided with a protrusion 41 for fixing the liquid storage container 2, and each liquid storage container 2 is provided with a snap groove 21 that engages with the protrusion 41.
[0077] In this embodiment, the inner walls of the storage base 4 on both sides of the main body 100 are provided with corresponding protrusions 41; correspondingly, the outer surfaces of both sides of the liquid storage container 2 are provided with grooves 21 that match the shape of the protrusions 41.
[0078] In other embodiments (not shown in the figure), multiple sets of protrusions 41 can be sequentially arranged in the storage base 4 according to the installation positions of multiple liquid storage containers 2. Each set of protrusions 41 can be used to fix a spare liquid storage container 2b, so that multiple spare liquid storage containers 2b can be fixed in the storage base 4.
[0079] In this way, by using the protrusion 41 in the storage base 4 to engage with the snap groove 21 on the liquid storage container 2, the fixed effect of the liquid storage container 2 is ensured, the installation operation of the liquid storage container 2 is simplified, and quick disassembly and assembly are achieved, thereby improving the operating efficiency.
[0080] In one embodiment of this application, please refer to the following: Figure 11 and Figure 12 The storage base 4 is also provided with a raised guide rail 42, and each liquid storage container 2 is provided with a guide groove 22 that is installed and cooperates with the guide rail 42.
[0081] In this embodiment, the inner walls on both sides of the storage base 4 are preferably provided with guide rails 42 extending downward; correspondingly, the liquid storage container 2 is provided with linear guide grooves 22 on both sides. These linear guide grooves 22 can engage with the guide rails 42 in the storage base 4 when the liquid storage container 2 is installed in the storage base 4, so that the liquid storage container 2 can be installed in place.
[0082] In this way, the liquid storage container 2 can enter the storage base 4 through the lower opening of the storage base 4, and by utilizing the interlocking cooperation between the guide groove 22 and the guide rail 42, the liquid storage container 2 can slide into the storage base 4 along the guide rail 42 and be installed in place, effectively improving the installation accuracy of the liquid storage container 2.
[0083] For the structure on the body 100, please refer to one embodiment of this application. Figure 5 and Figure 13 The power supply component 5 includes a circuit board 51 and a battery 52 that are electrically connected to each other. When the above-mentioned working unit is installed on the working base 3, the atomizer 1 is electrically connected to the circuit board 51 to realize the power supply and control of the atomizer 1.
[0084] In this embodiment, the power supply component 5 is disposed within the aforementioned enclosed cavity 62 of the main body 100, and the battery 52 can preferably adopt a rectangular structure. The circuit board 51 is vertically disposed on one side of the battery 52 to save space. When the working unit consisting of the atomizer 1 and a liquid storage container 2 is installed on the working base 3, the atomizer 1 is positioned above the power supply component 5, and is electrically connected to the circuit board 51 through mutual electrical contact of cables and mating parts.
[0085] Regarding the electrical connection structure between the atomizer 1 and the circuit board 51, please refer to one embodiment of this application. Figure 13 The atomizer 1 is provided with an atomizing core 12 and an electrode 121 electrically connected to the atomizing core 12. The electrode 121 is exposed from the bottom of the atomizer 1. It can be understood here that the atomizing core 12 includes at least a heating element, and the electrode 121 exposed at the bottom of the atomizer 1 is electrically connected to the heating element.
[0086] The work base 3 of the main body 100 is provided with a spring pin 33 electrically connected to the circuit board 51. The spring pin 33 is used to make contact with the electrode 121.
[0087] In this embodiment, please refer to Figure 5 and Figure 13 As shown, the lower end of the spring needle 33 is inside the enclosed cavity 62 of the main body 100 and can be electrically connected to the circuit board 51 via a cable. The upper end of the spring needle 33 protrudes from the bottom of the working seat 3 and corresponds to the position of the electrode 121 on the atomizer 1.
[0088] Thus, when the atomizer 1 is installed on the work base 3, the electrode 121 on the atomizer 1 can come into contact with the spring needle 33, thereby achieving an electrical connection with the circuit board 51.
[0089] Regarding the internal structure of the body 100, please refer to one embodiment of this application. Figure 13 The main body 100 has a fixed bracket 7 for housing the battery 52 inside, and the circuit board 51 is mounted on the fixed bracket 7.
[0090] In this embodiment, the fixing bracket 7 is preferably a frame disposed in the enclosed cavity 62 of the main body 100. The shape of the fixing bracket 7 can be set according to the shape of the battery 52, and is not specifically limited here. The fixing bracket 7 allows the battery 52 to be housed within it and provides protection by covering the battery 52, thus improving the protection effect. The circuit board 51 is vertically disposed on the side of the fixing bracket 7, making the components disposed within the housing 6 more compact and saving space.
[0091] In practical applications, the battery 52 needs to be housed in the fixed bracket 7. For ease of installation, the size of the fixed bracket 7 is generally made larger during manufacturing so that the battery 52 can be easily assembled into the fixed bracket 7. This makes it easy for there to be a margin gap between the inner wall of the fixed bracket 7 and the outer periphery of the battery 52. These margin gaps can cause the battery 52 to easily move within the fixed bracket 7, affecting the fixing effect of the battery 52 and the working stability.
[0092] Therefore, in the embodiments of this application, such as Figure 13 As shown, the fixing bracket 7 also includes a protective pad 71 surrounding the outer periphery of the battery 52. The protective pad 71 fills the gap between the battery 52 and the fixing bracket 7, effectively improving the fixing effect of the battery 52. At least a portion of the protective pad 71 is located between the battery 52 and the circuit board 51 to provide isolation.
[0093] Regarding the specific form of the protective pad 71, in this embodiment, as follows: Figure 13 As shown, the protective pad 71 can preferably be divided into at least three small pads, which are used to fill the gaps between the top, bottom, and outer periphery of the battery 52 and the inner wall of the fixing bracket 7, respectively. Among them, the protective pad 71 on the outer periphery of the battery 52 is located between the battery 52 and the circuit board 51.
[0094] In other embodiments (not shown), the protective pad 71 may also preferably be a full-coverage sleeve that can completely surround the outer periphery of the battery 52, thereby filling the gap between the battery 52 and the fixing bracket 7 in all directions.
[0095] For the overall structure of the electronic atomizing device in this application embodiment, please refer to another embodiment of this application. Figure 13 , Figure 14 and Figure 15 The electronic atomizing device also includes a portable charger 8, which is selectively mounted on the storage base 4 along with the liquid storage container 2.
[0096] Since the circuit board 51 is electrically connected to the battery 52, the circuit board 51 can be provided with a charging terminal 511 that can charge the battery 52. The charging terminal 511 extends into the storage base 4 and is used to connect to the portable charger 8 for charging, thereby improving the battery life of the electronic atomizing device.
[0097] In this embodiment, as Figure 14 and Figure 15 As shown, the shape of the mobile charger 8 is similar to that of the liquid storage container 2, and the mobile charger 8 has the same fixing structure and guiding structure as the liquid storage container 2 that can cooperate with the storage base 4, so that the mobile charger 8 can be placed in the storage base 4 of the main body 100 like the spare liquid storage container 2b.
[0098] The storage base 4 has a through hole 43 that mates with the charging terminal 511 on the circuit board 51, allowing the charging terminal 511 on the circuit board 51 to protrude from the storage base 4 through the through hole 43. The portable charger 8 has a charging contact terminal 81. When the portable charger 8 is placed in the storage base 4, the charging contact terminal 81 on the portable charger 8 contacts the charging terminal 511 exposed in the storage base 4, thereby achieving a charging connection with the circuit board 51.
[0099] In this way, the storage base 4 on the electronic atomizing device, which is used to house the spare liquid reservoir 2b, can also be equipped with a portable charger 8. The spare liquid reservoir 2b and the portable charger 8 can be alternately installed on the storage base 4. The portable charger 8 is used to charge the battery 52 in the electronic atomizing device, effectively improving the battery life of the electronic atomizing device.
[0100] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. An electronic atomizing device, characterized in that, include: An atomizing assembly includes an atomizer and at least two liquid storage containers, wherein the atomizer is detachably connected to the liquid storage containers; The main body includes a working base, a storage base, and a power supply component for supplying power to the atomizer; one of the at least two liquid storage containers is connected to the atomizer to form a working unit and is mounted on the working base; the remaining liquid storage containers are detachably disposed on the storage base.
2. The electronic atomizing device according to claim 1, characterized in that: The main body includes a housing, and a partition plate is provided inside the housing to divide the housing into an adjacent closed cavity and an open cavity. The closed cavity is used to accommodate the power supply component, and the open cavity constitutes the storage seat. The housing has an upwardly extending perimeter, which surrounds the closed cavity and the open cavity to form a recess with an upper opening and a side opening. The recess constitutes the working seat.
3. The electronic atomizing device according to claim 1, characterized in that: The atomizer is equipped with a magnetic suction component, and the working base is equipped with a magnetic component that magnetically engages with the magnetic suction component.
4. The electronic atomizing device according to claim 1, characterized in that: The atomizer and the liquid storage container each have corresponding grooves on their connecting surfaces. The grooves on the atomizer and the grooves on the liquid storage container are joined together to form an isolation gap. The working seat is provided with guide ribs that are positioned and engaged with the isolation gap.
5. The electronic atomizing device according to claim 1, characterized in that: The storage base is provided with a protrusion for fixing the liquid storage container, and each liquid storage container is provided with a snap groove that engages with the protrusion.
6. The electronic atomizing device according to claim 1, characterized in that: The storage base is also provided with a raised guide rail, and each of the liquid storage containers is provided with a guide groove that is installed and cooperates with the guide rail.
7. The electronic atomizing device according to any one of claims 1 to 6, characterized in that: The power supply component includes a circuit board and a battery that are electrically connected to each other. When the working unit is installed on the working base, the atomizer is electrically connected to the circuit board.
8. The electronic atomizing device according to claim 7, characterized in that: The atomizer has an atomizing core and an electrode electrically connected to the atomizing core, with the electrode protruding from the bottom of the atomizer; the working base has a spring pin electrically connected to the circuit board, which is used to engage with the electrode.
9. The electronic atomizing device according to claim 7, characterized in that: The body has a fixed bracket inside for housing the battery, and the circuit board is mounted on the fixed bracket; the fixed bracket has a protective pad arranged around the outer periphery of the battery, and at least a portion of the protective pad is located between the battery and the circuit board.
10. The electronic atomizing device according to claim 7, characterized in that: The electronic atomizing device also includes a portable charger, which is selectively mounted on the storage base along with the liquid storage container; the circuit board has a charging terminal that extends to the storage base and is used for charging connection with the portable charger.