Partitioned heating electronic atomization assembly and device easy to assemble
By adopting a partitioning design of brackets, liquid guides and isolation parts in the electronic atomization component, the problem of difficult and high cost assembly of multiple atomization cores is solved, simple assembly, low cost and efficient production are achieved, and the possibility of adjusting multiple flavors is provided.
Patent Information
- Application Number
- CN202422767769.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-12
AI Technical Summary
In existing electronic atomization devices, multiple atomization cores lead to difficulties in assembly, high costs, and difficulty in avoiding interference between atomized liquids.
A zoned heating electronic atomization component is designed, which adopts a bracket, a liquid guide unit and a heating unit structure. The liquid guide part and the isolation part are arranged at intervals along the extension direction of the cavity. The isolation part plays a supporting role to ensure that the spacing between the liquid guide parts meets the requirements. The assembly is simple and the cost is low.
The simple assembly of the liquid guide parts is achieved, the production cost is reduced, the production efficiency and product stability are improved, the mutual interference and mixing of different liquids are avoided, and a larger taste adjustment range is provided.
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Figure CN223429174U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic atomization field especially is concerned with a partition heating's electronic atomization subassembly and device. BACKGROUND
[0002] Electronic atomization core is a kind of device by the heat resistance effect of heating element generates heat energy, it is mainly applied in electronic cigarette field at present. With the development of electronic atomization technology, electronic cigarette appears more and more taste to meet the needs of different users, with the development of technology, some adjustable taste and mixed taste are more and more welcomed by market. Before mainly by adjusting the tobacco tar or the power output to adjust the taste, but the adjustment range is smaller, and user wishes can be adjusted to meet the different needs of different users, therefore some electronic atomization devices appear, are equipped with multiple liquid storage warehouses, different taste atomization liquid is stored respectively, multiple atomization areas atomize the atomization liquid of different liquid storage warehouses respectively, the output between multiple atomization cores is controlled to produce mixed atomization to meet the adjustable needs of user, and multiple atomization cores will cause the problems of cost rise, assembly difficulty and low production efficiency, for example, in the utility model patent with the authorization announcement No.CN217906306U, atomization assembly includes shell, heating unit and is used for adsorbing atomization liquid adsorption unit, heating unit and atomization unit are arranged in the cavity of shell, cavity extends to the edge of shell and forms opening, adsorption unit includes first adsorption member and second adsorption member, first and second adsorption member are spaced apart along the extension direction of cavity, avoid the mutual interference between the atomization liquid of two, cause the smell of stringing;Heating unit heats the atomization liquid adsorbed by first and second adsorption member respectively, after generating atomization vapor respectively, two atomization vapors are combined together. But the atomization assembly in production and assembly, first and second adsorption member need to be loaded into cavity from the opening of shell, but it is difficult to ensure that the interval of first and second adsorption member meets the requirements, leading to assembly difficulty, low production efficiency and high cost;And, although first and second adsorption member are spaced apart along the extension direction of cavity, but still difficult to completely avoid the risk of mutual interference of the atomization liquid of first and second adsorption member. Therefore, a kind of atomization core needs to be designed, can meet the needs of different liquid respectively atomization, at the same time, ensure that atomization core is simple to assemble, production efficiency is high, and cost is low. UTILITY MODEL CONTENT
[0003] The utility model solves the technical problem in the related art, provides a partition heating's electronic atomization subassembly and electronic atomization device.
[0004] The technical solution adopted by the present invention to solve its technical problems includes: providing a partitioned heating electronic atomization component with simple assembly, including a bracket, a liquid conducting unit for absorbing and conducting liquid, and a heating unit for heating the liquid in the liquid conducting unit, a cavity is provided in the bracket, the liquid conducting unit and the heating unit are arranged in the cavity, the cavity extends to the edge of the bracket to form an opening for the liquid conducting unit to be installed, the liquid conducting unit includes an isolating member and at least two liquid conducting members, the at least two liquid conducting members are arranged at intervals along the extension direction of the cavity, and the isolating member is provided between two adjacent liquid conducting members; the bracket is provided with a liquid inlet corresponding to the liquid conducting member that is connected to the cavity.
[0005] Furthermore, the liquid-guiding member is provided with a first air duct for gas flow, the isolating member is provided with a second air duct for gas flow, and the cavity, the first air duct and the second air duct are in communication.
[0006] Furthermore, the first air duct passes through the liquid guide member along the extension direction of the cavity, and the second air duct passes through the isolation member along the extension direction of the cavity, and the positions of the first air duct and the second air duct correspond to each other.
[0007] Furthermore, the liquid guiding member is a structure that is curled to form the first air channel.
[0008] Furthermore, the isolating member is a structure that is curled to form the second air duct.
[0009] Furthermore, the isolation piece is made of non-liquid-conducting material.
[0010] Furthermore, the isolation member is a silicone member.
[0011] Furthermore, the side of the bracket is provided with an outwardly open groove for allowing the excess part of the liquid guide and / or the isolation part to extend outward and be cut, the groove connects the cavity with the outside world, and the groove extends along the extension direction of the cavity to the opening and connects to the opening.
[0012] Furthermore, the simple-to-assemble partitioned heating electronic atomization component includes a sleeve sleeved on the outside of the bracket, the sleeve sleeved on the outside of the groove, and the positions of the isolation parts corresponding to the isolation parts separate the different liquid-guiding parts on the outside of the groove.
[0013] Furthermore, the heating unit includes a conductive connecting portion and at least two heating elements spaced apart along the extension direction of the cavity, each of the liquid guiding members corresponds to at least one heating element, and the heating element is in contact with the liquid guiding member.
[0014] Further, the support is provided with at least two liquid inlet ports arranged at intervals in the extending direction of the cavity, and each of the liquid guides corresponds to at least one of the liquid inlet ports.
[0015] Further, both ends of the support are provided with the openings, and the openings are respectively communicated with both ends of the cavity.
[0016] The utility model discloses a technical scheme that solves its technical problem still includes: provide a kind of simple partition heating electronic atomization device of assembly, including shell and above-mentioned electronic atomization component in the shell, the shell is equipped with air inlet and air outlet, the air inlet and the air outlet are communicated with the cavity of atomization component, the shell is equipped with at least two liquid storage bins, at least two the liquid storage bin is connected with at least two the liquid guide respectively, to supply the liquid guide absorption and conduction the liquid of liquid storage bin.
[0017] The utility model discloses a technical scheme, at least has following beneficial effect: in the electronic atomization component and electronic atomization device, at least two liquid guides are arranged at intervals along the extending direction of cavity, and the adjacent two liquid guides are equipped with spacer, and different liquid guides absorption and transmission different liquid, and spacer separates liquid guide, avoids different liquid mutual interference even mixes, and the liquid of different liquid guides is heated atomization by heating unit respectively.And in electronic atomization component production assembly, as long as liquid guide and spacer are together from the opening of shell and are loaded into cavity, spacer plays the supporting action between adjacent two liquid guides, ensure that the interval of liquid guide after installation meets the requirement, and assembly is simple, and cost is low, and the production efficiency and stability of product are greatly improved. ACCURATE DRAWINGS
[0018] In order to more clearly illustrate the technical scheme in the embodiment of the utility model, the following will be to the embodiment or the description of prior art needed to use the drawing briefly introduced, obviously, the following description in the drawing is only some embodiments of the utility model, for those skilled in the art, under the premise of not paying the creative labor, other drawings can also be obtained according to these drawings.
[0019] Figure 1 It is the perspective view of the atomization component of one embodiment of the utility model.
[0020] Figure 2 It is Figure 1 The cross-sectional view of the electronic atomization component of along axial section of
[0021] Figure 3 It is Figure 1 The explosion view of the electronic atomization component of
[0022] Figure 4This is an exploded view of the liquid guide unit, heating unit and isolation piece of the electronic atomization assembly of the present invention before curling.
[0023] Figure 5 yes Figure 4 Diagram of the combined state of the liquid guide unit, heating unit and isolation element before curling.
[0024] Figure 6 This is a manufacturing process of an electronic atomization component of the utility model, Figure 5 Schematic diagram of the liquid guide unit, heating unit and isolation piece of the atomization assembly before being curled and the excess liquid guide unit and isolation piece are cut off and installed in the bracket.
[0025] Figure 7 yes Figure 6 Schematic diagram of the liquid conduction unit, heating unit and isolation component after being installed in the bracket.
[0026] Figure 8 In the manufacturing process of another embodiment of the electronic atomization component of the present invention, Figure 5 Schematic diagram of the liquid guide unit, heating unit and isolation unit after they are curled and before they are installed in the bracket.
[0027] Figure 9 yes Figure 8 Schematic diagram of the liquid conduction unit, heating unit and isolation component after being installed in the bracket.
[0028] Figure 10 yes Figure 9 Schematic diagram of the electronic atomization component after cutting off the redundant liquid guide unit and isolation parts.
[0029] Figure 11 This is a cross-sectional view of an electronic atomization device according to one embodiment of the present invention cut along the axial direction of the atomization component.
[0030] The numbers in the figure indicate: electronic atomization assembly 1, bracket 11, cavity 110, liquid inlet 111, groove 112, opening 113, liquid guide unit 12, liquid guide part 121, first air duct 1210, long strip part 122, accommodating groove 123, heating unit 13, heating element 131, conductive connecting part 132, electrode part 133, isolation part 14, second air duct 140, sleeve 15, shell 2, liquid storage tank 20, air inlet 21, air outlet 22. DETAILED DESCRIPTION
[0031] In order to have a clearer understanding of the technical features, purposes and effects of the present invention, the specific embodiments of the present invention are now described in detail with reference to the accompanying drawings. It should be understood that if the "front", "back", "up", "down", "left", "right", "longitudinal", "horizontal", "vertical", "horizontal", "top", "bottom", "inside", "outside", "head", "tail" and other indications of orientation or positional relationship appear in the text, they are based on the orientation or positional relationship shown in the drawings, constructed and operated in a specific orientation, and are only for the convenience of describing the technical solution, and do not indicate that the device or element referred to must have a specific orientation, and therefore should not be understood as limiting the present invention. It should also be noted that unless otherwise expressly specified and limited, if the terms "installed", "connected", "connected", "fixed", "set" and the like appear in the text, they should be understood in a broad sense, for example, they can be fixedly connected, detachably connected, or integrated; they can be directly connected, or indirectly connected through an intermediate medium, and can be internal communication between two elements or an interactive relationship between two elements. When an element is referred to as being "on" or "under" another element, the element can be "directly" or "indirectly" located on the other element, or one or more intervening elements may be present. If the terms "first," "second," "third," etc. appear in this document, they are merely for the purpose of describing the present technical solution and should not be construed as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, features defined as "first," "second," "third," etc. may explicitly or implicitly include one or more of such features. Those skilled in the art will understand the specific meanings of the above terms in this technical solution based on specific circumstances.
[0032] In the following description, specific details such as specific system structures and techniques are provided for purposes of illustration, not limitation, to facilitate a thorough understanding of the embodiments of the present invention. However, it will be apparent to those skilled in the art that the present invention may be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid obscuring the description of the present invention with unnecessary detail.
[0033] See also Figures 1-3The electronic atomization assembly 1 is simple to assemble, and the at least two liquid guiding pieces 121 are arranged at intervals along the extension direction of the cavity 110, and the adjacent two liquid guiding pieces 121 are provided with the isolation piece 14; the support 11 is provided with a liquid inlet 111 corresponding to the liquid guiding piece 121 and communicating with the cavity 110, and the liquid inlet 111 is used for contacting the liquid outside the support 11 with the liquid guiding piece 121. The at least two liquid guiding pieces 121 of the electronic atomization assembly 1 are arranged at intervals along the extension direction of the cavity 110, and the adjacent two liquid guiding pieces 121 are provided with the isolation piece 14; different liquid guiding pieces 121 absorb and transmit different liquids, the isolation piece 14 separates the liquid guiding pieces 121, the isolation effect is good, different liquids are prevented from interfering with each other or even mixing, and the liquids of different liquid guiding pieces 121 are atomized by being heated by the heating unit 13, so that the partition atomization effect is good. Moreover, when the electronic atomization assembly 1 is produced and assembled, as long as the liquid guiding piece 121 and the isolation piece 14 are loaded into the cavity 110 from the opening 113 of the shell 2 together, the isolation piece 14 plays a supporting role between the adjacent two liquid guiding pieces 121, the spacing of the liquid guiding piece 121 after installation meets the requirements, the assembly is simple, the cost is low, and the production efficiency and stability of the product are greatly improved.
[0034] When the electronic atomization assembly 1 is applied to an electronic atomization device, the electronic atomization device is usually provided with a liquid storage bin 20, the liquid guiding piece 121 of the electronic atomization assembly 1 absorbs and transmits the liquid of the liquid storage bin 20, and the heating unit 13 heats the liquid of the liquid guiding piece 121 to generate atomized vapor.
[0035] Referring to Figure 2 Further, the liquid guiding piece 121 is provided with a first air passage 1210 for gas flow, the isolation piece 14 is provided with a second air passage 140 for gas flow, and the cavity 110, the first air passage 1210 and the second air passage 140 are communicated. The first air passage 1210 and the second air passage 140 are communicated to form a channel for gas flow, so that the heating unit 13 heats the liquid of the liquid guiding piece 121 to generate atomized vapor, and the atomized vapor flows in the cavity 110, the first air passage 1210 and the second air passage 140.
[0036] Referring to Figure 2Preferably, the first air passage 1210 extends through the liquid guide 121 along the direction of the cavity 110, the second air passage 140 extends through the isolation member 14 along the direction of the cavity 110, and the first air passage 1210 corresponds to the position of the second air passage 140, so that the first air passage 1210 and the second air passage 140 communicate to form a passage extending through the cavity 110 along the direction of the cavity 110.
[0037] Referring to Figure 3 Further, the liquid guide 121 is a structure formed by rolling to form the first air passage 1210.
[0038] Referring to Figure 3 Further, the isolation member 14 is a structure formed by rolling to form the second air passage 140. Specifically, for the liquid guide 121, a sheet, plate or block of liquid guide material is rolled to leave space at the bending part to form the first air passage 1210, thereby forming the liquid guide 121. For the isolation member 14, a sheet, plate or block of isolation material is rolled to leave space at the bending part to form the second air passage 140, thereby forming the isolation member 14.
[0039] Preferably, the isolation member 14 is a non-liquid guide material, which can prevent liquid from conducting between two different liquid guides 121,
[0040] To avoid odor mixing, the liquid guide 121 is preferably a soft non-liquid guide material, which can be rolled.
[0041] For example, the isolation member 14 is a silica gel member.
[0042] In some embodiments, referring to Figures 4-7 The liquid guide 121, the isolation member 14 and the heating unit 13 are combined Figure 4 and 5 After rolling, the liquid guide 121 and the isolation member 14 are cut or processed by other processing methods into a shape suitable for the cavity 110 Figure 6 , and then loaded into the cavity 110 Figure 7 . In other embodiments, referring to Figures 4-5 and 8-10, the liquid guide 121, the isolation member 14 and the heating unit 13 are combined Figure 4 and 5 After rolling Figure 8 , after being loaded into the cavity 110 Figure 9 , the liquid guide 121 and the isolation member 14 are cut into a shape suitable for the cavity 110 Figure 10 . Specifically, referring to Figure 8The side of the bracket 11 is provided with a groove 112 opening outwardly for the liquid guide 121 and / or the excess part of the isolation member 14 to extend outwardly and be cut, the groove 112 is in communication with the cavity 110 and the outside, the groove 112 extends to the opening 113 along the extending direction of the cavity 110 and is in communication with the opening 113, thus, referring to Figure 8 and 9 The liquid guide 121 before cutting is loaded into the cavity 110 from the opening 113, the part provided with the first air passage 1210 is loaded into the cavity 110, the excess part extends out of the bracket 11 through the groove 112, after the liquid guide 121 is loaded, the excess part of the liquid guide 121 extending out of the bracket 11 is cut along the outer wall of the bracket 11. Preferably, the liquid guide 121 and the isolation member 14 are bent together and then processed to adapt to the shape of the cavity 110, in particular, referring to Figure 4 and 5 The liquid guide unit 12 before being coiled is provided with a receiving groove 123, which can be one or more, thus the liquid guide 121 includes long strip-shaped parts 122 respectively located on both sides of the receiving groove 123, the isolation member 14 before being coiled is arranged in the receiving groove 123, the isolation member 14 is made of soft non-liquid guide material, and the liquid guide 121 is a whole structure. Referring to Figure 8 The liquid guide 121, the isolation member 14 and the heating unit 13 are coiled, the heating body 131 and the liquid guide 121 are coiled together and form the first air passage 1210 and the second air passage 140 respectively. Referring to Figure 9 Then, the part of the liquid guide 121 and the isolation member 14 coiled to form the first air passage 1210 and the second air passage 140 is loaded into the cavity 110 of the bracket 11 from the opening 113, and the excess part of the liquid guide 121 and the isolation member 14 extends out of the bracket 11 through the groove 112. Referring to Figure 10 Then, the excess part of the liquid guide 121 and the isolation member 14 is cut along the outer wall of the bracket 11, thus the long strip-shaped parts 122 originally respectively located on both sides of the receiving groove 123 form at least two liquid guides 121, and the isolation member 14 separates the liquid guides 121. In this process, preferably, the heating unit 13 is arranged with the liquid guide 121 before the liquid guide 121 is coiled, and then the liquid guide 121 is coiled with the heating unit 13, the advantage of which is that the heating unit 13 and the liquid guide 121 are a whole before being cut, which facilitates the loading of the coiled heating unit 13 and the liquid guide 121 into the bracket 11, the whole heating unit 13 and the liquid guide 121 facilitate automatic assembly and can ensure the relative position of the heating unit 13 and the liquid guide 121 to be constant, better consistency and stability.
[0043] Further preferably, referring to Figure 10For the solution in which the above-mentioned liquid guiding part 121 is installed in the cavity 110 and then cut into a shape adapted to the cavity 110, after the liquid guiding part 121 and the isolating part 14 are cut, the electronic atomization assembly 1 includes a sleeve 15 sleeved on the outside of the bracket 11, and the sleeve 15 is sleeved on the outside of the groove 112, corresponding to the position of the isolating part 14, so that the sleeve 15 also plays a separating role, separating different liquid guiding parts 121 on the outside of the groove 112.
[0044] See also Figure 4 The heating unit 13 includes a conductive connection portion 132 and at least two heating elements 131 spaced apart along the extension direction of the cavity 110. The conductive connection portion 132 is preferably a wire. Each liquid-guiding element 121 corresponds to at least one heating element 131. The heating element 131 is curled and positioned inside the first air passage 1210 of the liquid-guiding element 121. It contacts the liquid-guiding element 121 and heats the liquid in the liquid-guiding element 121 to produce atomized vapor within the first air passage 1210, thereby forming at least two separate atomization zones. These zones are separated by a spacer 14 and do not affect each other. Furthermore, the vapors from different liquid-guiding elements 121 cannot mix and produce flavor. When the electronic atomization assembly 1 is in operation, the atomized vapors from different atomization zones share the common air passage formed by the connection between the first air passage 1210 and the second air passage 140. Therefore, the atomized vapors merge, producing a combined flavor. By adjusting the temperature or operating state of the different atomization zones, the flavor of the atomized vapor can be further adjusted. Of course, two or more atomization zones can also be formed. The at least two heating elements 131 are spaced apart and connected to form an integral structure via a conductive connection portion 132. Each liquid guide 121 corresponds to at least one heating element 131. The heating unit 13 also includes an electrode portion 133, which is conductively connected to the at least two heating elements 131 to form a common electrode for the at least two heating elements 131. Thus, power is supplied to the at least two heating elements 131 via the electrode portion 133, causing the heating elements 131 to generate heat. The electrode is preferably a wire that extends outside the bracket 11.
[0045] See also Figure 3 The bracket 11 is provided with at least two liquid inlets 111 spaced apart in the extending direction of the cavity 110 , and each liquid guide 121 corresponds to at least one liquid inlet 111 .
[0046] See also Figure 3 The bracket 11 is tubular, and the liquid inlet 111 and the groove 112 are provided on the side wall of the bracket 11. Both ends of the bracket 11 are provided with openings 113, and the openings 113 are respectively connected to the two ends of the cavity 110.
[0047] In summary, the at least two liquid guides 121 of the simple-to-assemble partition heating electronic atomization assembly 1 are arranged at intervals along the extension direction of the cavity 110, and a partition 14 is arranged between the two adjacent liquid guides 121. Different liquid guides 121 absorb and conduct different liquids, and the partition 14 separates the liquid guides 121 to avoid mutual interference or even mixing of different liquids. The liquids in different liquid guides 121 are heated and atomized by the heating unit 13 respectively. Moreover, during production and assembly of the electronic atomization assembly 1, as long as the liquid guides 121 and the partition 14 are loaded into the cavity 110 from the opening 113 of the shell 2, the partition 14 plays a supporting role between the two adjacent liquid guides 121, ensuring that the spacing of the installed liquid guides 121 meets the requirements, and the assembly is simple, low in cost, and greatly improves the production efficiency and stability of the product.
[0048] Referring to Figure 11 In an embodiment of the simple-to-assemble partition heating electronic atomization device, the electronic atomization assembly 1 is arranged in the shell 2, the shell 2 is provided with an air inlet 21 and an air outlet 22, the air inlet 21 and the air outlet 22 are communicated with the cavity 110 of the atomization assembly, the shell 2 is provided with at least two liquid storage compartments 20, the at least two liquid storage compartments 20 are connected with the at least two liquid guides 121 respectively, so that the liquid guides 121 absorb and conduct the liquids in the liquid storage compartments 20, and then the liquids are heated by the heating unit 13 to generate atomized steam. The air outside the device enters the electronic atomization assembly 1 through the air inlet 21, and then flows out of the device together with the atomized steam through the air outlet 22.
[0049] During operation of the electronic atomization device, different liquid guides 121 absorb and conduct different liquids in the liquid storage compartments 20, and then the liquids are heated by the heating unit 13 to generate atomized steam. The air outside the device enters the electronic atomization assembly 1 through the air inlet 21, and then flows out of the device together with the atomized steam through the air outlet 22.
[0050] In summary, in the simple assembled partition heating electronic atomization device, each liquid guide 121 and the heating body 131 form an atomization area, different atomization areas are separated by the partition 14, and do not affect each other, and the liquids of different liquid guides 121 cannot be mixed and cannot be mixed. When working, the atomized vapor of different atomization areas is shared with the first air passage 1210 and the second air passage 140, and the air passage is formed, so that the atomized vapor is fused, and a combined taste is generated. By adjusting the temperature or working state of different atomization areas, the taste of the atomized vapor can be adjusted more. The at least two liquid guides 121 of the electronic atomization assembly 1 are arranged at intervals along the extension direction of the cavity 110, and the partition 14 is arranged between the adjacent two liquid guides 121. Different liquid guides 121 absorb and transmit different liquids, the partition 14 separates the liquid guides 121 to avoid mutual interference and even mixing of different liquids, and the liquids of different liquid guides 121 are heated and atomized by the heating unit 13 respectively. Moreover, when the electronic atomization assembly 1 is produced and assembled, as long as the liquid guide 121 and the partition 14 are loaded into the cavity 110 from the opening 113 of the shell 2 together, the partition 14 plays a supporting role between the adjacent two liquid guides 121, and ensures that the distance between the installed liquid guides 121 meets the requirements, so that the assembly is simple, the cost is low, the production efficiency and stability of the product are greatly improved, so that the demand for separate atomization of different liquids can be met, and the atomization assembly is simple to assemble, high in production efficiency and low in cost.
[0051] The above only describes preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications, combinations and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the scope of the claims of the present application.
Claims
1. A zoned heating electronic atomization assembly (1) with simple assembly, characterized in that: The invention comprises a bracket (11), a liquid conducting unit (12) for absorbing and conducting liquid, and a heating unit (13) for heating the liquid in the liquid conducting unit (12); a cavity (110) is provided in the bracket (11); the liquid conducting unit (12) and the heating unit (13) are arranged in the cavity (110); the cavity (110) extends to the edge of the bracket (11) to form an opening (113) for the liquid conducting unit (12) to be installed; the liquid conducting unit (12) comprises an isolating member (14) and at least two liquid conducting members (121); the at least two liquid conducting members (121) are arranged at intervals along the extension direction of the cavity (110); the isolating member (14) is provided between two adjacent liquid conducting members (121); and the bracket (11) is provided with a liquid inlet (111) corresponding to the liquid conducting member (121) and communicating with the cavity (110).
2. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 1 is characterized in that: The liquid guide member (121) is provided with a first air duct (1210) for gas flow, the isolation member (14) is provided with a second air duct (140) for gas flow, and the cavity (110), the first air duct (1210) and the second air duct (140) are in communication.
3. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 2 is characterized in that: The first air duct (1210) passes through the liquid guide member (121) along the extension direction of the cavity (110), and the second air duct (140) passes through the isolation member (14) along the extension direction of the cavity (110), and the positions of the first air duct (1210) and the second air duct (140) correspond to each other.
4. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 2 is characterized in that: The liquid guiding member (121) is a structure that is curled to form the first air passage (1210).
5. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 2 is characterized in that: The isolating member (14) is a structure that is curled to form the second air passage (140).
6. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 1 is characterized in that: The isolating member (14) is made of a non-liquid-conducting material.
7. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 6 is characterized in that: The isolation member (14) is a silicone member.
8. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 1 is characterized in that: The side surface of the bracket (11) is provided with a groove (112) open outwards for allowing the excess portion of the liquid guide member (121) and / or the isolation member (14) to extend outwards and be cut, the groove (112) connecting the cavity (110) with the outside world, and the groove (112) extends along the extension direction of the cavity (110) to the opening (113) and is connected to the opening (113).
9. The simple-to-assemble zoned heating electronic atomization assembly (1) according to claim 8, characterized in that: The partitioned heating electronic atomization assembly (1) with simple assembly comprises a sleeve (15) sleeved on the outside of the bracket (11), wherein the sleeve (15) is sleeved on the outside of the groove (112), and the positions of the isolation members (14) are correspondingly separated on the outside of the groove (112) to separate different liquid-conducting members (121).
10. The simple-to-assemble zoned heating electronic atomization assembly (1) according to any one of claims 1 to 9, characterized in that: The heating unit (13) comprises a conductive connecting portion (132) and at least two heating elements (131) spaced apart along the extension direction of the cavity (110); each of the liquid guide members (121) corresponds to at least one of the heating elements (131); and the heating elements (131) are in contact with the liquid guide members (121).
11. The simple-to-assemble zoned heating electronic atomization assembly (1) according to any one of claims 1 to 9, characterized in that: The bracket (11) is provided with at least two liquid inlets (111) spaced apart in the extension direction of the cavity (110), and each liquid guide (121) corresponds to at least one liquid inlet (111).
12. The simple-to-assemble zoned heating electronic atomization assembly (1) according to any one of claims 1 to 9, characterized in that: The openings (113) are provided at both ends of the bracket (11), and the openings (113) are respectively connected to the two ends of the cavity (110).
13. A zoned heating electronic atomization device with simple assembly, characterized in that: The invention comprises a shell (2) and an electronic atomization assembly (1) according to any one of claims 1 to 12 arranged in the shell (2), wherein the shell (2) is provided with an air inlet (21) and an air outlet (22), wherein the air inlet (21) and the air outlet (22) are communicated with the cavity (110) of the atomization assembly, and the shell (2) is provided with at least two liquid storage tanks (20), wherein the at least two liquid storage tanks (20) are respectively connected to the at least two liquid guide members (121) so that the liquid guide members (121) absorb and conduct the liquid in the liquid storage tanks (20).
Citation Information
Patent Citations
Atomizer and zoned heating atomization assembly
CN217906306U
Cited By
Easily assembled partitioned-heating electronic atomization assembly and device
WO2026103423A1