Heating wire integrated conversion device

The integrated heating wire conversion device, designed with a heating wire rotating assembly and an oil storage tank, solves the problems of fixed e-cigarette vapor production and inconvenience in carrying, and achieves multiple flavor switching and portability.

CN224038491UActive Publication Date: 2026-03-27SHENZEN ZUN YI PIN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing e-cigarettes produce a fixed amount of vapor, making it difficult to switch between different flavors. Furthermore, carrying multiple cartridges is inconvenient and they are easily lost.

Method used

A heating wire integrated conversion device was designed. The heating wire rotating assembly drives the airway conversion interface to realize the connection of different airways. Combined with the design of the oil tank and the flow restrictor, it realizes the replenishment of e-liquid and the switching of different heating wires to achieve different atomization effects.

Benefits of technology

It enables multiple flavor switching for e-cigarettes, simplifies the carrying process, avoids losing cartridges, and improves ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a heating wire integration conversion device. A heating wire integration assembly is provided with a plurality of air channels; the flow limiting cover is arranged on the heating wire integrated assembly, and a plurality of oil inlet holes are formed in the flow limiting cover; the flow limiting cover is detachably arranged in the oil storage bin; and the heating wire rotating assembly is arranged on the heating wire integration assembly, the heating wire rotating assembly is provided with an air channel conversion passing interface, the air channel conversion passing interface corresponds to one air channel, and compared with the heating wire integration assembly, the heating wire rotating assembly enables the air channel conversion passing interface to switch different air channels. The heating wire rotating assembly rotates relative to the heating wire integration assembly, and then the air channel conversion passing connector is driven to rotate along with the heating wire rotating assembly, so that the air channel conversion passing connector is communicated with different air channels on the heating wire integration assembly, all the air channels correspond to different integrated heating wires, and therefore the different atomization effects of all the air channels are achieved; the different tastes can be switched by rotating the heating wire rotating assembly.
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Description

TECHNICAL FIELD

[0001] The application relates to a conversion device, in particular to a heating wire integrated conversion device. BACKGROUND

[0002] An electronic cigarette is a heating non-combustion device, which generates aerosol by heating treated tobacco tar to achieve the same feeling as smoking traditional cigarettes.

[0003] The atomization amount of the existing electronic cigarette is fixed, and different tastes (such as explosive taste, soft taste, wet taste, and dry taste) need to be replaced by different cartridges. However, carrying multiple cartridges is prone to loss of cartridges and inconvenience. CONTENT OF THE UTILITY MODEL

[0004] The application provides a heating wire integrated conversion device to solve the problems in the related art, and the technical scheme is as follows.

[0005] The application provides a heating wire integrated conversion device, which comprises:

[0006] The heating wire integrated assembly has a plurality of air channels.

[0007] The flow-limiting cover is arranged on the heating wire integrated assembly, and the flow-limiting cover has a plurality of oil inlet holes.

[0008] The oil storage bin is arranged in the flow-limiting cover, and the tobacco oil enters the heating wire integrated assembly through the oil inlet holes.

[0009] The heating wire rotating assembly is arranged on the heating wire integrated assembly, and the heating wire rotating assembly has an air channel conversion passage interface corresponding to one of the air channels.

[0010] In one embodiment,

[0011] The heating wire integrated assembly comprises:

[0012] The heating wire integrated support is arranged in the flow-limiting cover, and the heating wire rotating assembly is arranged at the bottom of the heating wire integrated support.

[0013] The plurality of integrated oil guide cottons are arranged on the heating wire integrated support, and the heating wire integrated support is provided with mounting grooves matched with the integrated oil guide cottons.

[0014] A plurality of integrated heating wires, the plurality of integrated heating wires are respectively arranged in the corresponding integrated oil guide cotton.

[0015] In an embodiment,

[0016] The heating wire integrated assembly further comprises:

[0017] A plurality of pin fixed electrodes, the number of pin fixed electrodes corresponds to the number of integrated heating wires;

[0018] A sealing silica gel pad, the sealing silica gel pad is arranged between the heating wire rotating assembly and the heating wire integrated support, and the sealing silica gel pad has through holes corresponding to the plurality of pin fixed electrodes and the plurality of air ducts.

[0019] In an embodiment,

[0020] The heating wire rotating assembly comprises:

[0021] An integrator anti-slip wheel, the integrator anti-slip wheel is arranged below the heating wire integrated support, the integrator anti-slip wheel rotates relative to the heating wire integrated support, and an air duct switching passage interface is arranged on the integrator anti-slip wheel;

[0022] A heating wire contact fixed PCB, the heating wire contact fixed PCB is arranged on the integrator anti-slip wheel;

[0023] Two contacts, the two contacts are arranged on the heating wire contact fixed PCB, and rotate with the integrator anti-slip wheel and contact two adjacent pin fixed electrodes when the integrator anti-slip wheel rotates relative to the heating wire integrated support.

[0024] In an embodiment,

[0025] A plurality of grooves are formed between the pin fixed electrodes and the sealing silica gel pad, and the contacts are located in the grooves when the contacts contact the corresponding pin fixed electrodes.

[0026] In an embodiment,

[0027] The two contacts are respectively connected to the positive and negative poles of a power supply.

[0028] In an embodiment,

[0029] Both the two contacts have elastic return.

[0030] In an embodiment, further comprising:

[0031] Leakage-proof cotton, the leakage-proof cotton is arranged between the heating wire integrated support and the current limiting cover, and a plurality of oil inlet holes on the current limiting cover correspond to the plurality of integrated oil guide cottons.

[0032] In an embodiment, further comprising:

[0033] The upper O-shaped ring is arranged at the air outlet of the top end of the flow limiting cover.

[0034] In one embodiment, further comprising:

[0035] The lower O-shaped ring is arranged between the integrator anti-skid wheel and the heating wire integrated support.

[0036] The above technical solution has at least the following advantages or beneficial effects:

[0037] By rotating the heating wire rotating assembly compared to the heating wire integrated assembly, the air passage switching interface is driven to rotate, so as to realize the communication of the air passage switching interface with different air passages on the heating wire integrated assembly, the integrated heating wires corresponding to each air passage are different, thereby realizing different atomization effects of each air passage, that is, different tastes are switched by rotating the heating wire rotating assembly.

[0038] The above summary is only for the purpose of the description and is not intended to limit in any way. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features will be readily apparent to those skilled in the art by reference to the drawings and the following detailed description. BRIEF DESCRIPTION OF DRAWINGS

[0039] In the drawings, like reference numerals refer to same or similar functionalities throughout the several views. The drawings are not necessarily to scale. It is to be understood that these drawings only depict several embodiments in accordance with the disclosure and should not be considered to be restrictive in scope.

[0040] Figure 1 It is a structural schematic diagram of the utility model;

[0041] Figure 2 It is a split structural schematic diagram of the utility model;

[0042] Figure 3 It is a structural schematic diagram of the air passage switching interface;

[0043] Figure 4 It is a structural schematic diagram of the air passage;

[0044] Figure 5 It is a structural schematic diagram of a single air passage and the air passage switching interface;

[0045] Figure 6 It is an exploded structural schematic diagram of the utility model;

[0046] In the drawings:

[0047] 100, switching device;

[0048] 110, heating wire integrated assembly; 111, air channel; 112, heating wire integrated support; 113, integrated oil guide cotton; 114, integrated heating wire; 115, pin fixed electrode; 116, sealing silica gel pad;

[0049] 120, flow limiting cover; 121, oil inlet hole;

[0050] 130, lower O-ring;

[0051] 140, heating wire rotating assembly; 141, air channel switching passage interface; 142, integrated anti-slip wheel; 143, heating wire contact fixed PCB; 144, contact;

[0052] 150, leakage prevention cotton;

[0053] 160, upper O-ring. DETAILED DESCRIPTION

[0054] Hereinafter, only certain exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than limiting.

[0055] Figures 1-6 A structural diagram of a heating wire integrated switching device 100 according to an embodiment of the present application is shown. As shown, the switching device 100 can include: Figures 1-6

[0056] A heating wire integrated assembly 110, the heating wire integrated assembly 110 having a plurality of air channels 111 thereon;

[0057] A flow limiting cover 120, the flow limiting cover 120 being disposed on the heating wire integrated assembly 110, the flow limiting cover 120 having a plurality of oil inlet holes 121 thereon;

[0058] An oil storage compartment, the flow limiting cover 120 being detachably disposed in the oil storage compartment, and the tobacco tar entering the heating wire integrated assembly 110 through the oil inlet holes 121;

[0059] A heating wire rotating assembly 140, the heating wire rotating assembly 140 being disposed on the heating wire integrated assembly 110, the heating wire rotating assembly 140 having an air channel switching passage interface 141 thereon, the air channel switching passage interface 141 corresponding to one of the air channels 111, and the heating wire rotating assembly 140 being relatively movable with respect to the heating wire integrated assembly 110 so that the air channel switching passage interface 141 switches different air channels 111.

[0060] ​In the embodiment, the integrated oil guide cotton 113 in the heating wire integrated assembly 110 is ignited to make different integrated heating wires 114 produce different atomization effects and be output through different air channels 111. The air channel switching interface 141 of the heating wire rotating assembly 140 is connected with one of the air channels 111. At this time, the heating wire rotating assembly 140 ignites one of the integrated heating wires 114 in the heating wire integrated assembly 110. When the heating wire rotating assembly 140 is rotated again, the air channel switching interface 141 on the heating wire rotating assembly 140 corresponds to another air channel 111.

[0061] The heating wire rotating assembly 140 is rotated compared with the heating wire integrated assembly 110, and the air channel switching interface 141 is rotated to realize the connection between the air channel switching interface 141 and the different air channels 111 of the heating wire integrated assembly 110. The integrated heating wires 114 corresponding to the air channels 111 are different, so that the atomization effects of the air channels 111 are different. That is, the different tastes are switched by rotating the heating wire rotating assembly 140.

[0062] The oil in the oil storage bin enters the heating wire integrated assembly 110 through the oil inlet holes 121 on the oil storage bin and the flow limiting cover 120 when the flow limiting cover 120 is inserted into the oil storage bin. The oil storage bin is arranged to facilitate the heating wire integrated assembly 110 to supplement the tobacco tar.

[0063] As shown in Figure 2 , Figures 4-6 in an embodiment,

[0064] The heating wire integrated assembly 110 comprises:

[0065] The heating wire integrated support 112 is arranged in the flow limiting cover 120. The heating wire rotating assembly 140 is arranged at the bottom of the heating wire integrated support 112. The heating wire rotating assembly 140 is rotated compared with the heating wire integrated support 112.

[0066] The integrated oil guide cotton 113 is arranged on the heating wire integrated support 112. The heating wire integrated support 112 is provided with a mounting groove matched with the integrated oil guide cotton 113. The number of the integrated oil guide cotton 113 is matched with the number of the air channels 111. The air channels 111 are connected with the corresponding mounting grooves.

[0067] The integrated heating wire 114 is arranged in the corresponding integrated oil guide cotton 113.

[0068] In the embodiment, the integrated oil guide cotton 113 can be arranged in several numbers. When the integrated oil guide cotton 113 is arranged in one number, the heating wire rotating assembly 140 is not rotated.

[0069] Preferably, four integrated oil guide cottons 113 are provided, the heating wire integrated support 112 has four mounting slots, the integrated oil guide cotton 113 is arranged in the corresponding mounting slot, the integrated heating wire 114 is arranged in the integrated oil guide cotton 113, and different integrated heating wires 114 are switched by rotating the heating wire rotating assembly 140, so as to ignite different integrated oil guide cottons 113. Four integrated oil guide cottons 113 correspond to different air channels 111 respectively, the heating wire rotating assembly 140 drives the air channel switching interface 141 to rotate to adapt to different air channels 111, and then adapt to different integrated oil guide cottons 113 and integrated heating wires 114;

[0070] It should be noted that the resistance and shape of the integrated heating wire 114 are different, so that different integrated oil guide cottons 113 produce different atomization effects;

[0071] By rotating the heating wire rotating assembly 140, different integrated heating wires 114 are selected, and corresponding air channels 111 are selected at the same time, so as to produce different atomization effects;

[0072] Specifically, the oil inlet hole 121 on the flow limiting cover 120 is matched with the integrated oil guide cotton 113, and the tobacco tar of the integrated oil guide cotton 113 is supplemented through the oil inlet hole 121. When the flow limiting cover 120 is inserted into the oil storage bin, wait for three minutes, and then start smoking after the tobacco tar enters the integrated oil guide cotton 113.

[0073] As shown in Figure 3 and Figure 6 in an embodiment,

[0074] The heating wire integrated assembly 110 further comprises:

[0075] A plurality of pin fixed electrodes 115, the number of pin fixed electrodes 115 corresponds to the number of integrated heating wires 114;

[0076] A sealing silica gel pad 116 is arranged between the heating wire rotating assembly 140 and the heating wire integrated support 112, and the sealing silica gel pad 116 has through holes corresponding to the plurality of pin fixed electrodes 115 and the plurality of air channels 111.

[0077] In this embodiment, the pin fixed electrodes 115 are isolated by the sealing silica gel pad 116, so as to avoid the series connection of the pin fixed electrodes 115 and affect the ignition effect of the heating wire rotating assembly 140;

[0078] Specifically, the number of pin fixed electrodes 115 corresponds to the number of integrated heating wires 114, and the integrated heating wire 114 is arranged between adjacent pin fixed electrodes 115.

[0079] AsFigure 6 As shown in one embodiment,

[0080] The heating wire rotating assembly 140 comprises:

[0081] The integrator anti-skid wheel 142 is arranged below the heating wire integrated support 112, and rotates relative to the heating wire integrated support 112. The airway conversion passage interface 141 is arranged on the integrator anti-skid wheel 142.

[0082] The heating wire contact fixing PCB 143 is arranged on the integrator anti-skid wheel 142.

[0083] The two contacts 144 are arranged on the heating wire contact fixing PCB 143, and rotate with the integrator anti-skid wheel 142 and contact the two adjacent pin fixed electrodes 115 when the integrator anti-skid wheel 142 rotates relative to the heating wire integrated support 112.

[0084] In this embodiment, the integrator anti-skid wheel 142 is rotated to rotate relative to the heating wire integrated support 112, and the two contacts 144 contact the connected pin fixed electrodes 115. Specifically, the two contacts 144 are connected to the positive and negative poles of the power supply, respectively, and the power supply is connected through the contacts 144 to ignite the integrated heating wire 114, thereby igniting the integrated oil guide cotton 113.

[0085] As shown in one embodiment, Figures 3-6

[0086] The grooves are formed between the pin fixed electrodes 115 and the sealing silica gel pad 116. When the contacts 144 contact the corresponding pin fixed electrodes 115, the contacts 144 are located in the grooves.

[0087] In this embodiment, the grooves are matched with the contacts 144. Specifically, the two contacts 144 are both elastically returned. When the integrator anti-skid wheel 142 rotates, the contacts 144 are retracted under the action of the elastic return. When the contacts 144 rotate to the next groove, the elastic return is reset, so that the contacts 144 re-contact the pin fixed electrodes 115.

[0088] Further, the integrated oil guide cotton 113 is provided with four in this application. When the integrated heating wire 114 needs to be switched, the integrator anti-skid wheel 142 is rotated by 90°, so that the contacts 144 switch the pin fixed electrodes 115. When the contacts 144 re-contact the pin fixed electrodes 115, a collision sound is generated, which means that the integrated heating wire 114 is successfully selected by default.

[0089] Specifically, different rotation angles can be adjusted according to different numbers of integrated oil guide cotton 113.​

[0090] As Figure 6 shown, in an embodiment, further comprising:

[0091] Leak-proof cotton 150 is arranged between the heating wire integrated support 112 and the flow-limiting cover 120, and a plurality of oil inlet holes 121 on the flow-limiting cover 120 correspond to a plurality of integrated oil guiding cottons 113.

[0092] In the embodiment, the arrangement of the leak-proof cotton 150 avoids the leakage of tobacco tar in the integrated oil guiding cotton 113.

[0093] As Figure 6 shown, in an embodiment, further comprising:

[0094] Upper O-ring 160, the top end of the flow-limiting cover 120 has an air outlet hole, and the upper O-ring 160 is arranged at the air outlet hole.

[0095] Lower O-ring 130, the lower O-ring 130 is arranged between the integrator anti-slip pulley 142 and the heating wire integrated support 112.

[0096] In the embodiment, the arrangement of the upper O-ring 160 and the lower O-ring 130 seals the smoke outlet at the top of the outer cover and the connection between the integrator anti-slip pulley 142 and the heating wire integrated support 112, avoiding the leakage of oil.

[0097] The functions of each module in each device in the embodiments of the utility model can be referred to the corresponding description in the above method, which will not be repeated here.

[0098] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples without contradiction.

[0099] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one feature. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise specifically limited.

[0100] The above merely provides the specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of various changes or replacements within the technical range disclosed by the present application, and these should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A heat generating filament integrated conversion device, characterized by, Comprise: A heating wire integrated assembly with several air channels on it; A flow-limiting cover arranged on the heating wire integrated assembly, the flow-limiting cover has several oil inlet holes on it; An oil storage compartment, the flow-limiting cover is detachably arranged in the oil storage compartment, and tobacco tar enters the heating wire integrated assembly through the oil inlet holes; A heating wire rotating assembly arranged on the heating wire integrated assembly, the heating wire rotating assembly has an air channel switching passage interface corresponding to one of the air channels, and the heating wire rotating assembly is relatively rotatable with the heating wire integrated assembly to switch different air channels.

2. The heating wire integrated switching device according to claim 1, wherein the heating wire integrated assembly comprises: A heating wire integrated support arranged in the flow-limiting cover, the heating wire rotating assembly is arranged at the bottom of the heating wire integrated support, and the heating wire rotating assembly is relatively rotatable with the heating wire integrated support; Several integrated oil guide cottons, each of the integrated oil guide cottons is arranged on the heating wire integrated support, the heating wire integrated support is provided with mounting grooves matched with the integrated oil guide cottons, the number of the integrated oil guide cottons is matched with the number of the air channels, and the several air channels are in communication with the corresponding mounting grooves; And several integrated heating wires, each of the integrated heating wires is arranged in the corresponding integrated oil guide cotton.

3. The heating wire integrated switching device according to claim 2, wherein the heating wire integrated assembly further comprises: Several pin fixed electrodes, the number of the pin fixed electrodes corresponds to the number of the integrated heating wires; A sealing silica gel pad arranged between the heating wire rotating assembly and the heating wire integrated support, and the sealing silica gel pad has through holes corresponding to the several pin fixed electrodes and the several air channels.

4. The heating wire integrated switching device according to claim 3, wherein the heating wire rotating assembly comprises: An integrator anti-slip wheel arranged below the heating wire integrated support, the integrator anti-slip wheel is relatively rotatable with the heating wire integrated support, and the air channel switching passage interface is arranged on the integrator anti-slip wheel; A heating wire contact fixed PCB arranged on the integrator anti-slip wheel; Two contacts arranged on the heating wire contact fixed PCB, when the integrator anti-slip wheel rotates relatively with the heating wire integrated support, the two contacts rotate with the integrator anti-slip wheel and contact two adjacent pin fixed electrodes.

5. The heating wire integrated switching device according to claim 4, wherein recesses are formed between the several pin fixed electrodes and the sealing silica gel pad, and when the contacts contact the corresponding pin fixed electrodes, the contacts are located in the recesses.

6. The heating wire integrated switching device according to claim 4, wherein ​ ​ ​ ​ Two said contacts are connected to the positive and negative poles of the power supply respectively.

7. The integrated heating wire conversion device according to claim 4, characterized in that, Both said contacts have elastic return.

8. The integrated heat-generating wire conversion device of claim 2, wherein, Further comprising: Leak-proof cotton is arranged between the integrated support of the heating wire and the current-limiting cover, and a plurality of oil inlet holes on the current-limiting cover correspond to a plurality of integrated oil guide cottons.

9. The integrated heat generating filament conversion device of claim 1, wherein, Further comprising: An upper O-ring is arranged at the air outlet hole of the top end of the current-limiting cover.

10. The integrated heat-generating wire conversion device of claim 4, wherein, Further comprising: A lower O-ring is arranged between the integrated device anti-skid wheel and the integrated support of the heating wire.