Power supply host, atomization mechanism and electronic atomization device
By incorporating a flavor enhancer and an auxiliary heating component into the electronic atomizing device, the problem of combining olfactory and gustatory sensations in the vaping experience has been solved, achieving stable aroma concentration and improved fragrance utilization, thus enhancing the user's vaping experience.
Patent Information
- Application Number
- CN202422888603.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2034-11-26
AI Technical Summary
In existing electronic atomization devices, the aerosol formed by the atomized liquid is only perceived through taste, which is difficult to satisfy users' demand for a combined olfactory and gustatory inhalation experience. In particular, the taste of odorless atomized liquids is bland, which affects the user experience.
An aroma enhancer and an auxiliary heating component are set in the electronic atomization device. The aroma enhancer stores volatile fragrances, and the auxiliary heating component is used to heat the fragrances, so that the aromas can be released through the diffuser, combining the sense of smell and taste.
By integrating smell and taste, we enhance the user's vaping experience, satisfy the user's demand for rich aroma, avoid fragrance waste, ensure stable aroma concentration, and improve the consistency of the vaping experience.
Smart Images

Figure CN223860185U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic atomization technology, and in particular to a power supply host, an atomizing mechanism, and an electronic atomization device. Background Technology
[0002] Electronic cigarettes and electronic devices used to atomize health care drugs, therapeutic drugs and other substances can be collectively referred to as electronic atomization devices. Electronic atomization devices generally include an atomizer for generating aerosols and a battery pack for providing power to the atomizer.
[0003] Currently, atomizers on the market typically consist of a housing and an atomizing coil. The housing contains an airflow channel connecting to the outside and a reservoir for storing the atomized liquid. The atomizing coil generally includes a liquid guide and a heating element that are connected and in contact. The atomizing coil is installed in the flow path of the airflow channel and is connected to the reservoir. The atomization process of an atomizer is generally as follows: the atomized liquid flows from the reservoir into the area where the liquid guide and the heating element are in contact. Under the heating effect of the heating element, the atomized liquid around the heating element is atomized to form an aerosol that the user can inhale. When the user inhales, a suction airflow is formed in the airflow path of the airflow channel. As the suction airflow passes through the heating element, it carries away the aerosol. The aerosol ultimately flows out from the outlet of the airflow channel along with the suction airflow and enters the user's mouth for inhalation.
[0004] Currently available atomizing liquids can be classified into flavored atomizing liquids and flavorless atomizing liquids according to their ingredients. Flavored atomizing liquids can be further divided into fruit-flavored, tobacco-flavored, and beverage-flavored liquids, etc. Although the flavors are rich, users can only experience the aroma through taste when vaping, which is difficult to satisfy the needs of some users. In particular, flavorless atomizing liquids can give a bland taste due to the aerosol formed by atomization, which greatly affects the user's vaping experience. Utility Model Content
[0005] The main purpose of this utility model is to provide a power supply unit, an atomizing mechanism, and an electronic atomizing device. The aim is to set up an aroma enhancer and an auxiliary heating component for heating the aroma enhancer on the electronic atomizing device, so that users can obtain a better vaping experience through the fusion of smell and taste when inhaling.
[0006] To achieve the above objectives, this utility model proposes an electronic atomizing device, comprising:
[0007] Power supply components;
[0008] The atomizer is mounted on the power supply assembly and is electrically connected to the power supply assembly.
[0009] A flavor enhancer includes a storage box, at least one of which is disposed on at least one of the atomizer and the power supply assembly. The storage box has at least one first ventilation hole communicating with the outside. The inner cavity of the storage box stores a volatile flavoring agent.
[0010] An auxiliary heating component is electrically connected to the power supply component and is used to heat the spices inside the storage box so that the aroma of the spices evaporates to the outside through the first vent.
[0011] Optionally, the storage box has an insertion port at one end near the power supply component that communicates with the inner cavity of the storage box. One end of the auxiliary heating component is inserted into the inner cavity of the storage box through the insertion port, and the other end is electrically connected to the power supply component.
[0012] Optionally, the auxiliary heating assembly includes a heating element, one end of which is inserted into the inner cavity of the storage box through the insertion port, and the other end of which is electrically connected to the power supply assembly.
[0013] Optionally, the auxiliary heating component includes a heating element and a hollow heat conductor. One end of the heat conductor is fixedly connected to the atomizer or the power supply component, and the other end is inserted into the inner cavity of the storage box through the insertion port. One end of the heating element along the axial direction of the storage box is disposed inside the heat conductor, and the other end of the heating element along the axial direction of the storage box protrudes outside the heat conductor and is electrically connected to the power supply component.
[0014] Optionally, when the auxiliary heating assembly includes the heating element and the heat conductor, the heating element and the heat conductor are insulated from each other and in close contact.
[0015] Optionally, the storage box is made of insulating material.
[0016] Optionally, the end of the heating element exposed outside the heat conductor is provided with a first electrode and a second electrode that are electrically connected to the power supply assembly. The first electrode and the second electrode are any one of electrode pins, electrode needles, conductive ceramic electrodes, and coated electrodes, respectively.
[0017] Optionally, the auxiliary heating component is in the form of a sheet, strip, or column.
[0018] Optionally, the end of the auxiliary heating component that is away from the power supply component is a pointed end.
[0019] Optionally, the atomizer is disposed adjacent to the storage box along the height direction of the atomizer.
[0020] Optionally, along the height direction of the atomizer, a groove is provided on the outer side wall of the atomizer extending from the end face of the atomizer near the power component to the end face of the atomizer away from the power component, and the storage box is placed in the groove.
[0021] Optionally, the storage box is made of a thermally conductive material, and the auxiliary heating component is located on the outer periphery of the storage box. When the auxiliary heating component is powered on, the heat generated by the auxiliary heating component is transferred to the spice through the storage box to heat the spice.
[0022] Optionally, the auxiliary heating component includes a heating element, which is mounted on the atomizer or the power supply component and electrically connected to the power supply component.
[0023] Optionally, the auxiliary heating assembly further includes a fixing member, which is mounted on the atomizer or the power supply assembly and sleeved on the outer periphery of the storage box, and the heating element is fixed on the fixing member.
[0024] Optionally, the fixing member is a hollow cylinder and is arranged around the outer periphery of the aroma enhancer; the heating element is sheet-like or repeatedly bent filament, and the heating element is fixed around the inner or outer wall surface of the fixing member.
[0025] When the heating element is fixed around the outer wall of the fixing member, the fixing member is made of a thermally conductive material;
[0026] When the heating element is fixed around the inner wall of the fixing member, the fixing member is made of thermal insulation material.
[0027] Optionally, the storage box is a hollow cylindrical shape and is arranged around the atomizer.
[0028] Optionally, the storage box is annular, and the end face of the atomizer away from the power supply component has a protrusion, with the storage box fitted around the outer periphery of the protrusion.
[0029] Optionally, the operating temperature range of the auxiliary heating component is 25℃-60℃.
[0030] Optionally, the fragrance is an herb, a porous body with adsorbed fragrance, a paste fragrance, or a solid fragrance.
[0031] Optionally, the flavor enhancer further includes a sealing film attached to the storage box to seal the first vent hole.
[0032] Optionally, the storage box is made of a rigid material.
[0033] Optionally, the operating temperature range of the auxiliary heating component is 40℃-60℃.
[0034] Optionally, the operating temperature of the auxiliary heating component is 45°C or 50°C.
[0035] To achieve the above objectives, the present invention also provides an atomizing mechanism for use in conjunction with the power supply component in any of the foregoing embodiments. The atomizing mechanism includes the atomizer and aroma enhancer in any of the foregoing embodiments.
[0036] Optionally, the atomizing mechanism may further include the auxiliary heating component found in any of the foregoing embodiments.
[0037] To achieve the above objectives, the present invention also provides a power supply unit, which is used in conjunction with the atomizer and aroma enhancer in any of the foregoing embodiments. The power supply unit includes the power supply component and the auxiliary heating component in any of the foregoing embodiments.
[0038] Compared with the prior art, the beneficial effects of this utility model are:
[0039] In this invention, an aroma enhancer and an auxiliary heating component are added to the electronic atomizing device. The aroma enhancer includes at least one storage box, which is disposed on at least one of the atomizer and the power supply component. The inner cavity of the storage box stores volatile fragrance, and the storage box has at least one first vent hole connecting to the outside. The auxiliary heating component is used to heat the fragrance in the storage box to promote the rapid evaporation of the fragrance. Thus, when a user inhales from the electronic atomizing device, the aerosol formed by the atomization of the atomized liquid is inhaled into the user's mouth. At the same time, because the electronic atomizing device is close to the user's mouth and nose, the aroma enhancer is also close to the user's mouth and nose. The auxiliary heating component heats the fragrance in the storage box, allowing the fragrance to quickly diffuse its aroma to the outside through the first vent hole. The aroma enters the user's nose, allowing the user to experience the fragrance through their sense of smell. Thus, the user obtains an excellent inhalation experience through the fusion of smell and taste.
[0040] Furthermore, compared to the natural evaporation of fragrances, the electronic atomizing device of this invention can heat the fragrance through an auxiliary heating component, thereby promoting the evaporation of the fragrance and increasing its concentration. This not only satisfies users' demand for a rich aroma but also ensures that the fragrance releases a sufficient amount of aroma when it becomes too weak to evaporate naturally, thus preventing waste caused by discarding the fragrance after it has faded. Additionally, heating the fragrance through the auxiliary heating component helps maintain a stable evaporation rate, preventing inconsistent aroma concentration during inhalation and further enhancing the user's vaping experience. Attached Figure Description
[0041] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, 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 utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0042] Figure 1 This is a three-dimensional structural diagram of the electronic atomizing device in the first embodiment of the present invention;
[0043] Figure 2 for Figure 1 Exploded view of the electronic atomizing device;
[0044] Figure 3 for Figure 2 Exploded view of the auxiliary heating component;
[0045] Figure 4 for Figure 1 A three-dimensional structural diagram of the atomizing mechanism;
[0046] Figure 5 for Figure 1 A three-dimensional structural diagram of an electronic atomizing device when the atomizing mechanism and power supply components are separated;
[0047] Figure 6 This is a three-dimensional structural diagram of the electronic atomizing device when the mouthpiece and atomizer are separated in the second embodiment of this utility model;
[0048] Figure 7 for Figure 6 Exploded view of the electronic atomizing device;
[0049] Figure 8 for Figure 6 A three-dimensional sectional view of a central electronic atomizing device;
[0050] Figure 9 for Figure 6 A three-dimensional structural diagram of the power supply unit and the aroma enhancer during assembly;
[0051] Figure 10 This is a three-dimensional structural diagram of the electronic atomizing device in the third embodiment of this utility model;
[0052] Figure 11 for Figure 10 Exploded view of the electronic atomizing device;
[0053] Figure 12 for Figure 10 A three-dimensional structural diagram of the atomizing mechanism;
[0054] Figure 13 for Figure 10 A three-dimensional structural diagram of the auxiliary heating component;
[0055] Figure 14 This is a three-dimensional structural diagram of the electronic atomizing device when the mouthpiece and atomizer are separated in the fourth embodiment of this utility model;
[0056] Figure 15 for Figure 14 Exploded view of the electronic atomizing device;
[0057] Figure 16 for Figure 14 A three-dimensional structural diagram of the power supply unit;
[0058] Figure 17 for Figure 16 Exploded view of the power supply unit.
[0059] Explanation of icon numbers:
[0060] 100. Atomizing mechanism;
[0061] 200, Power supply assembly; 210, Housing; 2101, Battery housing cavity; 2102, Mounting cavity; 220, Divider; 230, Battery; 240, Control circuit board; 250, First electrode assembly; 260, Third electrode; 270, Fourth electrode;
[0062] 300, Auxiliary heating component; 310, Heating element; 320, Heat conductor; 330, Tip; 340, Fixing element; 350, First electrode; 360, Second electrode;
[0063] 1. Atomizer; 11. Housing; 111. Groove; 113. Protrusion; 114. Base; 12. Atomizing coil; 13. Airflow channel; 131. Air outlet; 14. Liquid reservoir; 15. Second electrode assembly;
[0064] 2. Suction nozzle; 21. Outer cover; 211. Second air vent; 212. Connecting hole; 22. Suction nozzle body;
[0065] 3. Aroma enhancer; 31. Storage box; 311. First vent; 312. Insertion port; 32. Sealing film; 33. Fragrance.
[0066] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0067] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0068] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0069] Furthermore, when an element is described as being "fixed to" another element, it can be directly on the other element, or one or more intermediate elements may exist between them. When an element is described as being "connected to" another element, it can be directly connected to the other element, or one or more intermediate elements may exist between them.
[0070] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or," "and / or," or "and / or" throughout the text implies three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where A and B are simultaneously satisfied. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0071] This utility model provides a power supply unit, an atomizing mechanism, and an electronic atomizing device. It aims to set up an aroma enhancer and an auxiliary heating component for heating the aroma enhancer on the electronic atomizing device, so that users can obtain a better vaping experience through the fusion of smell and taste when inhaling.
[0072] Reference Figure 1 , Figure 2 and Figure 8 This utility model provides an electronic atomizing device, including a power supply assembly 200, an atomizer 1, an aroma enhancer 3, and an auxiliary heating assembly 300. Wherein:
[0073] The atomizer 1 is mounted on the power supply assembly 200 and is electrically connected to the power supply assembly 200.
[0074] The flavor enhancer 3 includes a storage box 31, which is at least one and is disposed on at least one of the atomizer 1 and the power supply assembly 200. The storage box 31 is provided with at least one first ventilation hole 311 communicating with the outside. The inner cavity of the storage box 31 stores a volatile flavoring 33 (see Figure 8 ).
[0075] The auxiliary heating component 300 is electrically connected to the power supply component 200 and is used to heat the fragrance 33 in the storage box 31 so that the aroma of the fragrance 33 can be released to the outside through the first vent 311.
[0076] In this embodiment, there can be one or more storage boxes 31 and first air outlets 311, as long as the usage requirements are met, no specific limitation is made here. When there is one storage box, the storage box 31 can be disposed on the atomizer 1 or on the power supply assembly 200. When there are multiple storage boxes 31, in addition to the aforementioned arrangement, there is another arrangement in which some storage boxes 31 are disposed on the atomizer 1 and others are disposed on the power supply assembly 200.
[0077] In the technical solution of this utility model, an aroma enhancer 3 and an auxiliary heating component 300 are added to the electronic atomizing device. The aroma enhancer 3 may include at least one storage box 31. The storage box 31 is disposed on at least one of the atomizer 1 and the power supply component 200. The inner cavity of the storage box 31 stores a volatile fragrance 33. The storage box 31 is provided with at least one first ventilation hole 311 communicating with the outside. The auxiliary heating component 300 is used to heat the fragrance 33 in the storage box 31 to promote the rapid volatilization of the fragrance 33. Thus, when a user inhales through the electronic atomizing device, the aerosol formed by the atomization of the atomizing liquid is inhaled into the user's mouth. At the same time, because the electronic atomizing device is close to the user's mouth and nose, the aroma enhancer 3 is also close to the user's mouth and nose. Furthermore, the auxiliary heating component 300 heats the fragrance 33 in the storage box 31, allowing the fragrance 33 to quickly release its aroma into the outside world through the first vent 311. The aroma enters the user's nose, allowing the user to experience the fragrance through their sense of smell. In this way, the user can obtain an excellent inhalation experience through the fusion of the two senses of smell and taste.
[0078] Furthermore, compared to the fragrance 33 releasing its aroma through natural evaporation, the electronic atomizing device in this embodiment can heat the fragrance 33 by setting an auxiliary heating component 300 to promote the evaporation of the aroma in the fragrance 33, thereby increasing the aroma concentration. This not only helps to meet the user's demand for a rich aroma, but also helps to ensure that the fragrance 33 releases a sufficient amount of aroma when it is difficult to release enough aroma through natural evaporation due to the fading of the aroma. This avoids the waste of the fragrance 33 caused by discarding it after it has faded. In addition, heating the fragrance 33 by the auxiliary heating component 300 helps to keep the evaporation rate of the fragrance 33 stable, avoiding inconsistent aroma concentration during the user's inhalation of the electronic atomizing device, thereby further improving the user's inhalation experience.
[0079] In this embodiment, as Figure 2 , 5 As shown in Figures 7 and 8, the power supply assembly 200 includes a housing 210, a battery 230, a control circuit board 240, and a first electrode assembly 250. The housing 210 has an inner cavity with a partition 220, which divides the inner cavity of the housing 210 into a battery receiving cavity 2101 and an open mounting cavity 2102. The atomizer 1 is inserted into the mounting cavity 2102, and the battery 230 is disposed in the battery receiving cavity 2101. The first electrode assembly 250 is fixedly mounted on the partition 220, and the control circuit board 240 is electrically connected to both the battery 230 and the first electrode assembly 250.
[0080] like Figure 8As shown, the atomizer 1 includes a housing 11, an atomizing core 12, and a second electrode assembly 15. The housing 11 contains an airflow channel 13 and a liquid storage chamber 14 for storing atomized liquid. The atomizing core 12 is located on the airflow path of the airflow channel 13, is connected to the liquid storage chamber 14, and is electrically connected to the second electrode assembly 15. Figure 7 As shown, when the atomizer 1 is assembled and used with the power supply assembly 200, the second electrode assembly 15 and the first electrode assembly 250 are in electrical contact, thus achieving electrical connection between the atomizing core 12 and the control circuit board 240. When the user inhales the electronic atomizing device, a current path is formed between the battery 230, the control circuit board 240, the second electrode assembly 15, the first electrode assembly 250, and the atomizing core 12. The battery 230 supplies power to the atomizing core 12 through this current path, causing the atomizing core 12 to be energized and heated, thereby heating and atomizing the atomized liquid flowing out of the liquid storage chamber 14 into an aerosol that can be inhaled by the user.
[0081] Optionally, such as Figure 1-17 As shown, the auxiliary heating component 300 can be configured in several ways, as detailed below:
[0082] like Figure 1-9 As shown, in some optional embodiments of this utility model, the storage box 31 is provided with an insertion port 312 communicating with the inner cavity of the storage box 31 at one end near the power assembly 200 (see [reference]). Figure 4 One end of the auxiliary heating component 300 is inserted into the inner cavity of the storage box 31 through the insertion port 312, and the other end of the auxiliary heating component 300 is electrically connected to the power supply component 200. Thus, when the auxiliary heating component 300 is powered on, the portion of the heating component 300 inserted into the inner cavity of the storage box 31 can directly contact the fragrance 33 and transfer heat to the fragrance 33 through thermal conduction. Because heat can be directly transferred from the auxiliary heating component 300 to the fragrance 33, this not only improves the efficiency of heat transfer and accelerates the evaporation rate of the fragrance 33's aroma, but also reduces heat loss, thereby achieving energy-saving effects.
[0083] Reference Figure 2 , Figure 3 , Figures 6 to 9 As shown, in some structural designs of this embodiment, the auxiliary heating assembly 300 includes a heating element 310. One end of the heating element 310 along the axial direction of the storage box 31 is inserted into the inner cavity of the storage box 31 through an insertion port 312, and the other end of the heating element 310 along the axial direction of the storage box 31 is electrically connected to the power supply assembly 200. That is, the lower end of the heating element 310 is electrically connected to the power supply assembly 200, and the upper end of the heating element 310 is inserted into the inner cavity of the storage box 31 through the insertion port 312.
[0084] In practice, the heating element can be a heating plate or a heating rod, as long as the heating element can be inserted into the storage box 31 and heat the fragrance 33 inside the storage box 31. No specific limitation is made here.
[0085] like Figure 1-5 As shown, in some structural designs of this embodiment, the auxiliary heating assembly 300 includes a heating element 310 and a hollow heat conductor 320. One end of the heat conductor 320 is fixedly connected to the atomizer 1 or the power supply assembly 200, and the other end of the heat conductor 320 is inserted into the inner cavity of the storage box 31 through the insertion port 312. One end of the heating element 310 along the axial direction of the storage box 31 is disposed inside the heat conductor 320, and the other end of the heating element 310 along the axial direction of the storage box 31 protrudes outside the heat conductor 320 and is electrically connected to the power supply assembly 200. Specifically, the lower end of the heat conductor 320 can be fixedly connected to the atomizer 1 or the power supply assembly 200, while the upper end of the heat conductor 320 is inserted into the inner cavity of the storage box 31 through the insertion port 312. In addition, the upper end of the heating element 310 is disposed inside the heat conductor 320, and the lower end of the heating element 310 protrudes outside the heat conductor 320.
[0086] Thus, by placing the upper end of the heating element 310 within the heat conductor 320, the strength of the heating element 310 can be increased, thereby increasing the strength of the auxiliary heating assembly 300 and reducing the risk of deformation of the heating element 310. Furthermore, since high-temperature points appear on the surface of the heating element 310 when it is energized, resulting in uneven heating, placing the heating element 310 within the heat conductor 320 allows the heating element 310 to first conduct heat to the heat conductor 320 when the auxiliary heating assembly 300 heats the fragrance 33. This allows the heat from the high-temperature points on the surface of the heating element 310 to diffuse to all parts of the heat conductor 320, reducing the risk of uneven heating. Then, the heat from all parts of the heat conductor 320 is evenly conducted to the fragrance 33, ensuring uniform heating of the fragrance 33 by the auxiliary heating assembly 300 and improving the heating uniformity of the fragrance 33.
[0087] Furthermore, the heating element 310 and the heat conductor 320 are insulated from each other and in close contact. Thus, since the heating element 310 can transfer heat to the heat conductor 320 through thermal conduction, the efficiency of heat transfer is improved, thereby accelerating the heating rate of the heat conductor 320.
[0088] Optionally, the storage box 31 is made of insulating material, giving it a heat-insulating function. In this way, during the heating of the fragrance 33 by the auxiliary heating component 300, the storage box 31 can prevent the heat generated by the auxiliary heating component 300 from dissipating to the outside. This not only reduces heat loss and improves heat utilization, thereby reducing the energy consumption of the electronic atomizing device, but also prevents the surface temperature of the electronic atomizing device from rising to a point where it becomes too hot to touch, thus improving the user experience.
[0089] like Figure 2 , 3 As shown, optionally, the heating element 310 can be a heating wire, which can be arranged in a winding manner to form a structure whose shape and size are adapted to the heat conductor 320. In this way, on the one hand, the heat conductor 320 can accommodate a longer heating wire, thereby improving the heating efficiency of the auxiliary heating component 300, which in turn helps to further promote the rapid release of aroma from the fragrance 33. On the other hand, the heating wire can be evenly distributed within the heat conductor 320, thus evenly conducting heat to all parts of the heat conductor 320, making the heating of the fragrance 33 by the auxiliary heating component 300 more uniform, and also increasing the effective heating area of the auxiliary heating component 300, further improving the heating uniformity and heating efficiency of the auxiliary heating component 300. Of course, the heating element 310 can also be a heating plate or heating rod, etc., as long as it meets the usage requirements; no specific limitation is made here. Optionally, the end of the heating element 310 exposed outside the heat conductor 320 is provided with a first electrode 350 and a second electrode 360 electrically connected to the power supply assembly 200. The first electrode 350 and the second electrode 360 are any one of electrode pins, electrode needles, conductive ceramic electrodes, and coated electrodes, respectively. Two specific examples are listed below:
[0090] Example 1, such as Figures 4 to 7 As shown, when one end of the heat conductor 320 is fixedly connected to the power supply assembly 200 along the axial direction of the storage box 31, the first electrode 350 and the second electrode 360 are both electrode leads. The heating element 310 is electrically connected to the control circuit board 240 through the first electrode 350 and the second electrode 360 respectively, thereby realizing the electrical connection between it and the power supply assembly 200. Specifically, the lower end of the heat conductor 320 can be fixedly mounted on the partition seat 220, and the first electrode 350 and the second electrode 360 are respectively welded to the control circuit board 240 through the partition seat 220.
[0091] Example 2, combined with, for example Figure 2 and Figure 7As shown, both the first electrode 250 and the second electrode 360 are electrode needles. A third electrode 260 and a fourth electrode 270 are provided on the separator 220 corresponding to the first electrode 350 and the second electrode 360. One end of the third electrode 260 is electrically connected to the control circuit board 240, and the other end of the third electrode 260 is in electrical contact with the first electrode 350. One end of the fourth electrode 270 is connected to the control circuit board 240, and the other end of the fourth electrode 270 is in electrical contact with the second electrode 360. Thus, through the electrical contact between the first electrode 350 and the third electrode 260, and the electrical contact between the second electrode 360 and the fourth electrode 270, the heating element 310 and the control circuit board 240 can be electrically connected.
[0092] In this embodiment, optionally, the auxiliary heating component 300 is entirely sheet-shaped (e.g., Figure 4 and Figure 7 ( ), strip-shaped (not shown) or column-shaped (not shown), as long as it meets the usage requirements, there is no specific limitation here.
[0093] like Figure 2 , 4 As shown in Figures 7 and 8, in this embodiment, optionally, the end of the auxiliary heating component 300 away from the power supply component 200 is a tip 330. Since the tip 330 is easily inserted into the insertion port 312, and after the tip 330 is inserted into the insertion port 312, the tip 320 is also more easily inserted into the fragrance 33 inside the storage box 31, thus facilitating the insertion of the auxiliary heating component 300 into the fragrance enhancer 3. Furthermore, when the insertion port 312 is covered by a sealing film 32, the tip 330 can easily pierce the sealing film 32, thereby allowing the auxiliary heating component 300 to be inserted into the fragrance enhancer 3.
[0094] In this embodiment, the storage box 31 can be positioned relative to the atomizer 1 in various ways. Here are two specific examples:
[0095] Example 1, such as Figure 1-5 As shown, along the height direction of the atomizer 1, the atomizer 1 and the storage box 31 are arranged adjacent to each other. That is, the storage box 31 and the atomizer 1 can be arranged side by side or front and back. In other words, the storage box 31 can be located on the left, right, front or back of the atomizer 1, without specific limitation here.
[0096] Furthermore, such as Figure 2 , 3As shown, in this example, when the storage box 31 is disposed on the atomizer 1, in some optional embodiments, the storage box 31 and the atomizer 1 are detachably connected. The detachable connection can be a magnetic connection or a snap-fit connection, etc., which are not specifically limited here. In other optional embodiments, the atomizer 1 can also be fixedly connected to the storage box 31. The specific fixed connection method can be adhesive bonding or welding, etc., which are not specifically limited here.
[0097] When the storage box 31 is mounted on the power supply assembly 200 (not shown), in some optional embodiments, the storage box 31 is detachably connected to the power supply assembly 200, that is, the storage box 31 is detachably connected to the partition seat 220. The specific connection method can be plug-in, snap-fit, or magnetic connection, as long as it allows the aroma enhancer 3 and the power supply assembly 200 to be detached and assembled; no specific limitation is made here. In other optional embodiments, the storage box 31 is fixedly connected to the power supply assembly 200, that is, the storage box 31 is fixedly connected to the partition seat 220. The specific connection method can be adhesive or welding, etc.; no specific limitation is made here.
[0098] Example 2, such as Figure 6-9 As shown, along the height direction of the atomizer 1, a groove 111 is provided on the outer side wall of the atomizer 1, extending from the end of the atomizer 1 near the power supply assembly 200 to the end of the atomizer 1 away from the power supply assembly 200. The groove 111 is formed on the outer side wall of the atomizer 1 and extends from the lower end of the atomizer 1 to the upper end of the atomizer 1. The storage box 31 is placed in the groove 111.
[0099] Furthermore, when the storage box 31 is disposed on the atomizer 1 (not shown), in some optional embodiments, the storage box 31 is detachably connected to the atomizer 1. Specifically, the size and shape of the storage box 31 and the groove 111 are adapted to each other, and the storage box 31 is inserted into the groove 111 and detachably connected to the atomizer 1. Moreover, when the storage box 31 is inserted into the groove 111, the overall surface of the atomizer 1 and the storage box 31 can present a relatively flat state, which helps to improve the aesthetics of the electronic atomization device. In other optional embodiments, the storage box 31 is fixedly connected to the atomizer 1. Specifically, the storage box 31 can be fixedly connected to the atomizer 1 by interference fit or adhesive bonding, which is not specifically limited here.
[0100] like Figure 6-9 As shown, when the storage box 31 is mounted on the power supply assembly 200, the connection method between the two is the same as in Example 1. For details, please refer to Example 1, which will not be repeated here.
[0101] like Figure 10-17As shown, in some alternative embodiments of this invention, the storage box 31 is made of a thermally conductive material, and the auxiliary heating component 300 is sleeved on the outer periphery of the storage box 31. When the auxiliary heating component 300 is energized, the heat generated by the auxiliary heating component 300 is transferred to the fragrance 33 through the storage box 31 to heat the fragrance 33. Compared to the auxiliary heating component 300 heating the fragrance 33 through direct contact, in this embodiment, the heat generated by the auxiliary heating component 300 diffuses on the storage box 31 when it is conducted to the storage box 31. Therefore, the heat is distributed more evenly on the storage box 31, and the heat is then conducted from the storage box 31 to the fragrance 33, which is beneficial for evenly heating the fragrance 33. In addition, direct contact between the auxiliary heating component 300 and the fragrance 33 can be avoided, which helps to keep the auxiliary heating component 300 clean.
[0102] In this embodiment, as Figure 11-13 As shown in Figures 15-17, the auxiliary heating component 300 includes a heating element 310, which is mounted on the atomizer 1 or the power supply component 200 and is electrically connected to the power supply component 200.
[0103] In some alternative embodiments, the heating element 310 may be a heating sheet or heating rod made of conductive ceramic, or a heating sheet or heating rod made of metal that has undergone micro-arc oxidation treatment. The heating element 310 may also include a flexible circuit board and a heating circuit printed on the flexible circuit board, which is not specifically limited here.
[0104] In some alternative embodiments, the auxiliary heating assembly 300 further includes a fixing member 340. The fixing member 340 is mounted on the atomizer 1 or the power supply assembly 200 and is located on the outer periphery of the storage box 31, with the heating element 310 fixed to the fixing member 340. In this way, by attaching to the fixing member 340, the heating element 310 can increase its own strength, thereby increasing the strength of the auxiliary heating assembly 300 and reducing the risk of deformation of the heating element 310.
[0105] Furthermore, such as Figure 11 , 15As shown, the fixing member 340 is a hollow cylinder and is arranged around the outer periphery of the aroma enhancer 3. The heating element 310 is sheet-like or repeatedly bent filament, and is fixed around the inner or outer wall surface of the fixing member 340. When the heating element 310 is fixed around the outer wall surface of the fixing member 340, the fixing member 340 is made of a thermally conductive material. When the heating element 310 generates heat when energized, the heat is sequentially conducted from the heating element 310 to the fixing member 340 and the storage box 31, and finally to the fragrance 33, causing the fragrance 33 to heat up and release its aroma. When the heating element 310 is fixed around the inner wall surface of the fixing member 340, the fixing member 340 is made of a heat-insulating material, thus providing heat insulation. During the process of the auxiliary heating component 300 heating the fragrance 33, the fixing component 340 can prevent the heat generated by the auxiliary heating component 300 from dissipating to the outside. In this way, not only can heat loss be reduced, thereby improving the heat utilization rate and reducing the energy consumption of the electronic atomizing device, but also the surface temperature of the electronic atomizing device can be prevented from rising and becoming too hot to touch, thus improving the user experience.
[0106] In this embodiment, the position of the storage box 31 relative to the atomizer 1 can be configured in various ways, and the following two specific examples are provided:
[0107] Example 1, such as Figure 10-13 As shown, the storage box 31 is a hollow cylindrical shape and is arranged around the atomizer 1.
[0108] Furthermore, such as Figure 11-13 As shown, when the storage box 31 is disposed on the atomizer 1, in some optional embodiments, the storage box 31 is detachably connected to the atomizer 1. Specifically, the size and shape of the hollow space of the atomizer 1 and the storage box 31 are adapted to each other, and the storage box 31 is sleeved on the outside of the atomizer 1 and detachably connected to the atomizer 1. Of course, in this embodiment, the detachable connection between the storage box 31 and the atomizer 1 can also be achieved by means such as magnetic connection or snap-fit connection, which is not specifically limited here. In other optional embodiments, the storage box 31 is fixedly connected to the atomizer 1. Specifically, the storage box 31 can be fixedly connected to the atomizer 1 by interference fit or adhesive, which is not specifically limited here.
[0109] When the storage box 31 is mounted on the power supply assembly 200 (not shown), in some optional embodiments, the storage box 31 and the power supply assembly 200 are detachably connected. The specific connection method can be plug-in, snap-fit, or magnetic connection, as long as it allows for the detachment of the aroma enhancer 3 from the power supply assembly 200; no specific limitation is made here. In other optional embodiments, the storage box 31 and the power supply assembly 200 are fixedly connected, and the specific connection method can be adhesive bonding; no specific limitation is made here.
[0110] Example 2, such as Figure 14-17 As shown, the storage box 31 is annular, and the end face of the atomizer 1 away from the power supply assembly 200 is provided with a protrusion 113, that is, the upper end face of the atomizer 1 is provided with a protrusion 113. The storage box 31 is fitted around the outer periphery of the protrusion 113.
[0111] like Figure 14 As shown, in this example, optionally, the protrusion 113 is located at the center of the atomizer 1, the air outlet 131 of the airflow channel 13 is located at the upper end of the protrusion 113, and the outer diameter of the storage box 31 is equal to the outer diameter of the atomizer 1. In this way, the overall appearance of the atomizer and the storage box 31 is relatively flat, which helps to improve the aesthetics of the electronic atomization device.
[0112] In this example, in some alternative implementations, such as Figure 14 , 15 As shown, the shape and size of the protrusion 113 are adapted to the shape and size of the inner ring space of the storage box 31. The storage box 31 is fitted over the protrusion 113 and is detachably connected to the atomizer 1. This not only improves the ease of replacing the storage box 31, but also allows the user to easily replace the flavor enhancer 3 by simply pulling it off the protrusion 113 and fitting a new flavor enhancer 3 around the protrusion 113. Of course, in this embodiment, the detachable connection between the storage box 31 and the atomizer 1 can also be achieved through methods such as magnetic connection or snap-fit connection; no specific limitation is made here.
[0113] In some alternative embodiments, the storage box 31 can also be fixedly connected to the protrusion 113 by means of interference fit or bonding, so that the storage box 31 is fixedly connected to the atomizer 1.
[0114] Furthermore, in some optional embodiments of this utility model, the operating temperature range of the auxiliary heating component 300 is 25℃-60℃. Within this temperature range, the auxiliary heating component 300 effectively promotes the evaporation of aroma from the fragrance 33, resulting in a moderate evaporation rate and suitable aroma concentration. This not only meets the aroma concentration requirements of most users but also helps extend the service life of the fragrance enhancer 3. Correspondingly, the following phenomena can be reduced: when the operating temperature of the auxiliary heating component 300 is higher than 60℃, the aroma evaporation rate of the fragrance 33 will be too fast, resulting in excessive consumption of the aroma and an excessively high aroma concentration. This not only shortens the service life of the fragrance enhancer 3 but also makes it difficult to meet the aroma concentration requirements of most users. When the operating temperature of the auxiliary heating component 300 is lower than 25℃, the aroma evaporation rate of the fragrance 33 is slower, the auxiliary heating component 300 is less effective in promoting the evaporation of aroma from the fragrance 33, and the aroma concentration of the evaporated fragrance 33 is lower, thus also making it difficult to meet the aroma concentration requirements of most users.
[0115] Furthermore, when the auxiliary heating component 300 operates at a temperature range of 40°C to 60°C, the volatilization of the fragrance 33 can better meet the olfactory sensory needs of users during inhalation.
[0116] Furthermore, the optimal operating temperature of the auxiliary heating component 300 is 45°C or 50°C, at which point the user experiences the best olfactory sensory enjoyment when inhaling.
[0117] In some optional embodiments of this utility model, the fragrance 33 is an herbaceous plant, a porous body adsorbed with fragrance, a paste fragrance, or a solid fragrance.
[0118] It should be noted that the herbal plants can be one or more of the following: tobacco, lavender, lemongrass, mint, flowers (such as osmanthus, rose, chrysanthemum, orange blossom, cherry blossom, jasmine, etc.), rosemary, sandalwood, star anise, fennel, cinnamon, coffee, etc., and can also be other herbal plants, without specific limitations here. The porous body that adsorbs the fragrance serves as the fragrance carrier and can be porous ceramics, sponges, cotton strips, etc., without specific limitations here. Both paste fragrances and solid fragrances are fragrances in different forms from perfumes 33, and both contain a mixture of fragrances. For example, paste fragrances can be paste incense, and solid fragrances can be solid perfumes. Furthermore, the aforementioned fragrances can be natural fragrances or synthetic fragrances, and the types of fragrances can be fruity, tobacco-based, beverage-based, floral, etc., without specific limitations here.
[0119] In some optional embodiments of this utility model, such as Figure 2 , 7As shown in Figure 15, the aroma diffuser 3 may also include a sealing film 32, which is attached to the storage box 31 to seal the first vent 311. Before using the aroma diffuser 3, the sealing film 32 seals the first vent 311 to prevent the fragrance from diffusing to the outside. When the user needs to use the aroma diffuser 3, the fragrance of the fragrance 33 inside the aroma diffuser 3 will diffuse outward by tearing open the sealing film 32. This helps to preserve the fragrance of the fragrance 33 and avoids the fragrance 33 from evaporating and being wasted before use. After the aroma diffuser 3 is used, the first vent 311 of the aroma diffuser 3 can be resealed, for example, by reattaching the sealing film 32 to the first vent 311 of the storage box 31 or by using a sealing material such as a rubber stopper to seal the first vent 311 of the storage box 31 to reseal the aroma diffuser 3 and avoid the fragrance 33 from evaporating and being wasted. Of course, after the electronic atomizing device is used, the first vent 311 of the storage box 31 may not be resealed, in which case the aroma diffuser 3 can be used as an aromatherapy diffuser.
[0120] In some optional embodiments of this utility model, the storage box 31 is made of a rigid material. By using a rigid material to make the storage box 31, the rigidity of the storage box 31 can be enhanced and its shape can be kept stable. This not only helps to keep the aroma enhancer 3 intact during transportation, but also facilitates the interconnection between the storage box 31 and the atomizer 1, and also helps to improve the aesthetics of the electronic atomization device.
[0121] In this embodiment, the rigid material can be plastic, ceramic, metal, wood, etc., and is not specifically limited here.
[0122] In some optional embodiments of this utility model, such as Figure 2 , 7 As shown in Figures 8, 11, and 14, the electronic atomizing device also includes a mouthpiece 2. The mouthpiece 2 includes a mouthpiece body 22 and an outer cover 21. The mouthpiece body 22 is connected to the air outlet 131 of the airflow channel 13. Figure 14 The outer cover 21 is installed over the atomizer 1 and the flavor enhancer 3 and is detachably connected to the atomizer 1. The outer cover 21 has at least one second air vent 211 that communicates with the first air vent 311 on the storage box 31 of the flavor enhancer 3. The top of the outer cover 21 is connected to one end of the mouthpiece body 22. The outer cover 21 also has a connecting hole 212 that connects the mouthpiece body 22 and the airflow channel 13 (e.g., Figure 8 The outer cover 21 is installed over the atomizer 1 and the flavor enhancer 3, which not only protects the atomizer 1 and the flavor enhancer 3, but also the auxiliary heating component 300 inserted into the flavor enhancer 3, thereby improving the impact resistance of the electronic atomizing device. It also integrates the appearance of the atomizer 1 and the flavor enhancer 3, thus further improving the overall aesthetics of the electronic atomizing device.
[0123] In this embodiment, in some optional implementations, such as Figure 2 , 11 As shown, the atomizer 1 has a base 114 at the end away from the mouthpiece body 22, and the outer cover 21 is detachably connected to the base 114. Specifically, the detachable connection between the outer cover 21 and the base 114 can also be a snap-fit, plug-in, or magnetic connection, etc., which are not specifically limited here.
[0124] In some other alternative implementations, please refer to Figure 7 The outer cover 21 can be engaged with the outer wall of the atomizer 1 via a snap-fit structure (not shown). Specifically, the snap-fit structure may include a first snap-fit portion and a second snap-fit portion, wherein the first snap-fit portion is disposed on the inner wall of the outer cover 21, and the second snap-fit portion is disposed on the outer wall of the atomizer 1 and engages with the first snap-fit portion, thereby achieving the snap-fit between the outer cover 21 and the atomizer 1. It should be noted that one of the first snap-fit portion and the second snap-fit portion is a protrusion 113, and the other is a recess that matches the protrusion 113.
[0125] Correspondingly, please refer to Figures 1-15 This utility model embodiment also provides an atomizing mechanism 100 for assembly and use with the power supply component 200 in any of the foregoing embodiments. The atomizing mechanism 100 includes the atomizer 1 and the aroma enhancer 3 in any of the foregoing embodiments. It should be noted that the specific details of the atomizer 1 and the aroma enhancer 3 in this embodiment can be found in the relevant descriptions of the foregoing electronic atomizing device embodiments, and will not be repeated here.
[0126] Optionally, in this embodiment, the atomizing mechanism 100 further includes the auxiliary heating component 300 of any of the foregoing embodiments.
[0127] It should be noted that the specific details of the atomizer 1, aroma enhancer 3, and auxiliary heating component 300 in this embodiment can be found in the description of the relevant content in the aforementioned embodiment of the electronic atomizing device, and will not be repeated here.
[0128] Correspondingly, please refer to Figures 1-17 This utility model embodiment also provides a power supply unit for use in conjunction with the atomizer 1 and aroma enhancer 3 in any of the foregoing embodiments. The power supply unit includes the power supply component 200 and the auxiliary heating component 300 in any of the foregoing embodiments. It should be noted that the specific details of the power supply component 200 and the auxiliary heating component 300 in this embodiment can be found in the relevant descriptions of the foregoing electronic atomization device embodiments, and will not be repeated here.
[0129] It should be noted that other contents of the atomizing mechanism 100, power supply host and electronic atomizing device disclosed in this utility model can be found in the prior art, and will not be repeated here.
[0130] The above are merely preferred embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural transformations made based on the inventive concept of this utility model and the contents of the specification and drawings of this utility model, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this utility model.
Claims
1. An electronic atomizing device, characterized in that, include: Power supply components; The atomizer is mounted on the power supply assembly and is electrically connected to the power supply assembly. A flavor enhancer includes a storage box, at least one of which is disposed on at least one of the atomizer and the power supply assembly. The storage box has at least one first ventilation hole communicating with the outside. The inner cavity of the storage box stores a volatile flavoring agent. An auxiliary heating component is electrically connected to the power supply component and is used to heat the spices inside the storage box so that the aroma of the spices evaporates to the outside through the first vent.
2. The electronic atomizing device as described in claim 1, characterized in that, The storage box has an insertion port at one end near the power supply component that communicates with the inner cavity of the storage box. One end of the auxiliary heating component is inserted into the inner cavity of the storage box through the insertion port, and the other end is electrically connected to the power supply component.
3. The electronic atomizing device as described in claim 2, characterized in that: The auxiliary heating assembly includes a heating element, one end of which is inserted into the inner cavity of the storage box through the insertion port, and the other end of which is electrically connected to the power supply assembly. or, The auxiliary heating component includes a heating element and a hollow heat conductor. One end of the heat conductor is fixedly connected to the atomizer or the power supply component, and the other end is inserted into the inner cavity of the storage box through the insertion port. One end of the heating element along the axial direction of the storage box is disposed inside the heat conductor, and the other end of the heating element along the axial direction of the storage box protrudes outside the heat conductor and is electrically connected to the power supply component.
4. The electronic atomizing device as described in claim 3, characterized in that, When the auxiliary heating assembly includes the heating element and the heat conductor, the heating element and the heat conductor are insulated from each other and in close contact; And / or, the storage box is made of insulating material.
5. The electronic atomizing device as described in claim 3, characterized in that, The end of the heating element that protrudes outside the heat conductor is provided with a first electrode and a second electrode that are electrically connected to the power supply assembly. The first electrode and the second electrode are any one of electrode pins, electrode needles, conductive ceramic electrodes, and coated electrodes.
6. The electronic atomizing device as described in claim 3, characterized in that, The auxiliary heating component is generally in the shape of a sheet, strip, or column. And / or, the end of the auxiliary heating component that is away from the power supply component is a pointed end.
7. The electronic atomizing device according to any one of claims 2-6, characterized in that: Along the height direction of the atomizer, the atomizer is arranged adjacent to the storage box; or, Along the height direction of the atomizer, a groove is provided on the outer side wall of the atomizer, extending from the end of the atomizer near the power component to the end of the atomizer away from the power component, and the storage box is placed in the groove.
8. The electronic atomizing device as described in claim 1, characterized in that, The storage box is made of thermally conductive material, and the auxiliary heating component is sleeved on the outer periphery of the storage box. When the auxiliary heating component is powered on, the heat generated by the auxiliary heating component is transferred to the fragrance through the storage box to heat the fragrance.
9. The electronic atomizing device as described in claim 8, characterized in that, The auxiliary heating component includes a heating element, which is mounted on the atomizer or the power supply component and is electrically connected to the power supply component.
10. The electronic atomizing device as described in claim 9, characterized in that, The auxiliary heating component also includes a fixing member, which is mounted on the atomizer or the power supply component and located on the outer periphery of the storage box, and the heating element is fixed on the fixing member.
11. The electronic atomizing device as described in claim 10, characterized in that, The fixing component is a hollow cylindrical shape and is arranged around the outer periphery of the aroma enhancer. The heating element is sheet-like or repeatedly bent filament, and is fixed around the inner or outer wall surface of the fixing component. When the heating element is fixed around the outer wall of the fixing member, the fixing member is made of a thermally conductive material; When the heating element is fixed around the inner wall of the fixing member, the fixing member is made of thermal insulation material.
12. The electronic atomizing device according to any one of claims 8-11, characterized in that, The storage box is a hollow cylindrical shape and is arranged around the atomizer; or... The storage box is annular, and the end face of the atomizer away from the power supply component has a protrusion. The storage box is fitted around the outer periphery of the protrusion.
13. The electronic atomizing device according to any one of claims 1-6 and 8-11, characterized in that, The operating temperature range of the auxiliary heating component is 25℃-60℃; And / or, the fragrance is an herbaceous plant, a porous body with adsorbed fragrance, a paste fragrance, or a solid fragrance; And / or, the aroma enhancer further includes a sealing film, which is attached to the storage box to seal the first vent hole; And / or, the storage box is made of a rigid material.
14. The electronic atomizing device as described in claim 13, characterized in that, The operating temperature range of the auxiliary heating component is 40℃-60℃.
15. The electronic atomizing device as described in claim 14, characterized in that, The operating temperature of the auxiliary heating component is 45℃ or 50℃.
16. An atomizing mechanism, characterized in that, For use in conjunction with a power supply assembly as described in any one of claims 1-15, the atomizing mechanism includes an atomizer as described in any one of claims 1-15 and the flavor enhancer.
17. The atomizing mechanism as described in claim 16, characterized in that, The atomizing mechanism further includes an auxiliary heating component as described in any one of claims 1-15.
18. A power supply unit, characterized in that, For use in conjunction with the atomizer and the flavor enhancer as described in any one of claims 1-15, the power unit includes the power supply component as described in any one of claims 1-15 and the auxiliary heating component.