Atomizing device and assembly method
By using modular design and automated assembly methods, the assembly process of the atomizing device is simplified, solving the problem of numerous and scattered parts, and enabling fast and easy assembly and maintenance.
Patent Information
- Application Number
- CN202310886234.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-17
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-07-17
AI Technical Summary
Traditional atomizing devices have many parts that are scattered, requiring manual installation, which is complex and costly.
The modular design integrates the atomization module, power module, and base module, and simplifies the assembly process by using automated assembly methods, reducing the number of parts and installation steps.
It enables quick and easy assembly of the atomizing device, reduces processing costs, and improves the convenience of maintenance and replacement.
Smart Images

Figure CN116687068B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of atomization, in particular to an atomization device and an assembling method. BACKGROUND
[0002] The atomization device is mainly used for heating and atomizing liquid to form aerosol, such as electronic cigarettes and the like. The conventional atomization device has many parts and the parts are arranged in a scattered manner. Therefore, the atomization device needs to be assembled manually by professional personnel. In addition, the assembling process is complicated, which greatly increases the processing cost. SUMMARY
[0003] Therefore, it is necessary to provide an atomization device and an assembling method to solve the problems that the atomization device has many parts, the parts are arranged in a scattered manner, the atomization device needs to be assembled manually, and the assembling process is complicated.
[0004] An embodiment of the first aspect of the present application provides an atomization device, which comprises:
[0005] An atomization module, which comprises an atomization core structure and an oil storage structure, and the oil storage structure is used for supplying oil to the atomization core structure;
[0006] A power module, which is used for supplying power to the atomization core structure;
[0007] A base module, which comprises a base piece and a circuit control piece, the circuit control piece is arranged on the base piece, the atomization module and the power module are arranged on the base module, and the atomization core structure and the power module are electrically connected to the circuit control piece.
[0008] In one of the embodiments, the atomization device further comprises a shell, the atomization module and the power module are arranged on the same side of the base module, the shell covers the atomization module and the power module, and the shell is connected to the base module.
[0009] In one of the embodiments, the oil storage structure is arranged circumferentially outside the atomization core structure, and the oil storage structure is provided with an air inlet channel and an air outlet channel which are connected to each other;
[0010] In the embodiment, the atomization core structure has an air inlet end and an air outlet end, the air inlet end is connected to the air inlet channel, and the air outlet end is connected to the air outlet channel.
[0011] In one of the embodiments, the oil storage structure comprises:
[0012] An oil storage chamber, which is used for placing the atomization core structure;
[0013] A first elastic sealing piece, which is detachably connected to one end of the oil storage chamber, and the air outlet channel is arranged on the first elastic sealing piece; and / or,
[0014] A second elastic seal is detachably connected to the other end of the oil reservoir, and is arranged between the oil reservoir and the base module, and the air inlet channel is arranged on the second elastic seal.
[0015] In one embodiment, the atomizing core structure comprises a heating wire and a pin connected to each other, and the second elastic seal is provided with a routing channel, and the pin is arranged in the routing channel.
[0016] The circuit control member comprises an electrode column, which extends into the routing channel and is connected to the pin.
[0017] In one embodiment, the base member comprises:
[0018] A first air passage is in communication with ambient air, and is used to introduce ambient air into the atomizing core structure.
[0019] A second air passage, the circuit control member is provided with a gas pressure detection member, the gas pressure detection member is provided with a balance gas pressure end and a detection end, the balance gas pressure end is in communication with the second air passage, and the detection end is in communication with the first air passage.
[0020] When the gas pressure of the detection end is less than that of the balance gas pressure end, the gas pressure detection member sends a signal to the circuit control member, and the circuit control member adjusts the atomizing core structure to start atomization.
[0021] In one embodiment, the base member comprises a seat body and a third elastic seal, and the third elastic seal is sealingly connected between the seat body and the circuit control member.
[0022] In one embodiment, the third seal comprises:
[0023] An air inlet cavity is in communication with ambient air.
[0024] A detection cavity is in communication with the detection end of the gas pressure detection member.
[0025] A gas delivery cavity is in communication with the atomizing core structure.
[0026] The air inlet cavity, the detection cavity and the gas delivery cavity are sequentially communicated to form the first air passage, a gas control hole is arranged between the detection cavity and the air inlet cavity, a gas delivery hole is arranged between the detection cavity and the gas delivery cavity, and the diameter of the gas control hole is smaller than that of the gas delivery hole.
[0027] In one of the embodiments, the atomization device comprises a fixing member fixedly connected between the atomization module and the power module.
[0028] The second aspect of the embodiments of the present application provides an assembling method of an atomization device. Based on the above-mentioned atomization device, the assembling method comprises:
[0029] assembling the atomization core structure into the oil storage structure to form an atomization module;
[0030] assembling the circuit control member on the base member to form a base module;
[0031] electrically connecting the power module with the circuit control member and electrically connecting the atomization core structure with the circuit control member;
[0032] covering and protecting the atomization module and the power module.
[0033] In one of the embodiments, electrically connecting the power module with the circuit control member and electrically connecting the atomization core structure with the circuit control member comprises:
[0034] the power module is provided with an electrode, the atomization core structure is provided with a pin, and the circuit control member is provided with a nickel sheet and an electrode column;
[0035] connecting the electrode of the power module with the nickel sheet of the circuit control member and connecting the pin of the atomization core structure with the electrode column of the circuit control member.
[0036] The above-mentioned atomization device integrates the atomization core structure and the oil storage structure into an atomization module, integrates the base member and the circuit control member into a base module, and the power module is used for supplying power to the atomization core structure. The atomization module and the power module are arranged on the base module, and the atomization core structure and the power module are both electrically connected with the circuit control member. That is, the atomization module, the power module and the base module are modularly designed, and then assembled between the modules. The assembling process is simple, and it is more convenient for automatic assembly. It is convenient to maintain and replace, greatly reduces the number of parts and multiple installation steps, and is more efficient. BRIEF DESCRIPTION OF DRAWINGS
[0037] Figure 1 It is an external structure diagram of the atomization device of the embodiments of the present application.
[0038] Figure 2 It is an internal structure diagram of the atomization device of the embodiments of the present application.
[0039] Figure 3 It is a structure diagram of the atomization module of the atomization device of the embodiments of the present application.
[0040] Figure 4 Connection diagram between the power module and the base module of the atomization device of the embodiment of the present application.
[0041] Figure 5 Structure diagram of the second elastic sealing piece of the atomization device of the embodiment of the present application.
[0042] Figure 6 Structure diagram of the base module of the atomization device of the embodiment of the present application.
[0043] Figure 7 Structure diagram of the third elastic sealing piece of the atomization device of the embodiment of the present application.
[0044] In the figure:
[0045] 1. atomization module;
[0046] 11. atomization core structure; 111. air inlet end; 112. air outlet end; 113. heating wire; 114. pin;
[0047] 12. oil storage structure; 121. air inlet channel; 122. air outlet channel; 123. oil reservoir; 124. first elastic sealing piece; 125. second elastic sealing piece; 1251. layout channel; 126. oil storage cotton; 127. oil absorption cotton;
[0048] 2. power module; 21. electrode sheet;
[0049] 3. base module;
[0050] 31. base piece; 311. first air duct; 312. second air duct; 313. base body; 314. third elastic sealing piece; 3141. air inlet cavity; 3142. detection cavity; 3143. air supply cavity; 3144. air control hole; 3145. air supply hole;
[0051] 32. circuit control piece; 321. electrode column; 322. air pressure detection piece; 3221. balanced air pressure end; 3222. detection end; 323. nickel sheet;
[0052] 4. shell; 41. shell body; 42. suction nozzle; 43. plugging piece;
[0053] 5. fixing piece. DETAILED DESCRIPTION
[0054] In order to make the above objectives, features and advantages of the present application more clear and comprehensible, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in a number of different ways beyond the specific embodiments described herein and by one of ordinary skill in the art without departing from the spirit and scope of the present application, and it is therefore intended that all such variations be considered as falling within the scope of the present application. It should be understood that the use of the terms "include", "comprise" or "contain" herein should not be understood as limiting the present application to the features or steps described herein, but rather the use of these terms is intended to cover the presence of the features or steps described herein as well as the presence of other features or steps not described herein.
[0055] In the description of the present application, it should be understood that, if these terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0056] In addition, if these terms "first", "second" appear, these terms are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features referred to. Therefore, the features defined with "first", "second" can include at least one of the features explicitly or implicitly. In the description of the present application, if the term "a plurality of" appears, the meaning of "a plurality of" is at least two, for example, two, three, etc., unless otherwise specifically limited.
[0057] In the present application, unless otherwise specifically defined and limited, if the terms "mount", "connect", "connect", "fix" and the like appear, these terms should be interpreted broadly. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication or interaction relationship of two elements, unless otherwise specifically limited. For those of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0058] In the present application, unless otherwise explicitly specified and limited, if there is a description such as "on" or "under" or the like of the first feature to the second feature, it means that the first and second features are in direct contact or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature "above", "over" and "on" the second feature can be the first feature directly above or obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height. The first feature "below", "under" and "under" the second feature can be the first feature directly below or obliquely below the second feature, or only indicates that the first feature is lower than the second feature in horizontal height.
[0059] It should be noted that if an element is referred to as "fixed to" or "provided on" another element, it can be directly on another element or there can be a middle element. If an element is considered to be "connected" to another element, it can be directly connected to another element or there can be a middle element. If present, the terms "vertical", "horizontal", "up", "down", "left", "right" and similar expressions used in the present application are only for illustrative purposes and do not represent the only implementation.
[0060] Referring to Figures 1-2 An embodiment of the present application provides an atomization device, which comprises an atomization module 1, a power module 2 and a base module 3. The atomization module 1 comprises an atomization core structure 11 and an oil storage structure 12. The oil storage structure 12 is used to supply oil to the atomization core structure 11, that is, the atomization core structure 11 and the oil storage structure 12 are integrated and combined to facilitate unified assembly. The power module 2 is used to supply power to the atomization core structure 11, so that the atomization core structure 11 can work normally after being powered on. The base module 3 comprises a base piece 31 and a circuit control piece 32. The circuit control piece 32 is arranged on the base piece 31. The atomization module 1 and the power module 2 are arranged side by side on the base module 3. The atomization core structure 11 and the power module 2 are both electrically connected to the circuit control piece 32, that is, the power module 2 is electrically connected to the circuit control piece 32, so as to control the on-off working state of the atomization core structure 11 through the circuit control piece 32.
[0061] The embodiment modularizes the atomization module 1, the power module 2 and the base module 3, and then assembles the modules. The assembly process is simple, and it is more convenient for automatic assembly. Maintenance and replacement are convenient. The number of parts and the multiple installation processes are greatly reduced. The assembly is faster and more efficient. The problems of more parts and scattered arrangement of the atomization device, manual installation and complex process are solved.
[0062] Referring to Figures 1-2In some embodiments, the atomization device further comprises a shell 4, the atomization module 1 and the power module 2 are arranged side by side on the same side of the base module 3, the shell 4 covers the atomization module 1 and the power module 2, the shell 4 is connected with the base module 3, in this way, the shell 4 can cover the atomization module 1 and the power module 2 together, and the shell 4 is connected with the base module 3, so that the shell 4 and the base module 3 together form a containing cavity for assembling the atomization module 1 and the power module 2, which is convenient to install and has good protection stability.
[0063] In the present embodiment, the shell 4 can include a shell body 41 and a suction nozzle 42, the suction nozzle 42 can be detachably connected with the shell body 41, which can be but not limited to clamping connection, threaded connection or magnetic attraction connection. The shell body 41 can be a tubular structure, the shell body 41 is sleeved on the outer side of the atomization module 1 and the power module 2 in the circumferential direction, one end of the shell body 41 is connected with the base piece 31, the other end of the shell body 41 is connected with the suction nozzle 42, and the suction nozzle 42 is in communication with the atomization core structure 11 after being connected with the shell body 41.
[0064] Among them, the suction nozzle 42 can be provided with a blocking piece 43, the blocking piece 43 is detachably connected with the suction nozzle 42, when the atomization device is idle and not in use, the blocking piece 43 blocks the suction nozzle 42, so as to reduce the entry of foreign matter into the inner cavity of the atomization core structure 11. When the atomization device is used, the blocking piece 43 is removed.
[0065] Referring to Figures 2-3 In some embodiments, the oil storage structure 12 is sleeved on the outer side of the atomization core structure 11 in the circumferential direction, that is, the atomization core structure 11 is located in the inner cavity of the oil storage structure 12, the oil storage structure 12 is provided with an air inlet channel 121 and an air outlet channel 122 in communication, the atomization core structure 11 has an air inlet end 111 and an air outlet end 112, the air inlet end 111 is in communication with the air inlet channel 121, so as to facilitate the smooth entry of gas outside the oil storage structure 12 into the atomization core structure 11. The air outlet end 112 is in communication with the air outlet channel 122, so as to facilitate the smooth outlet of the atomized gas of the atomization core structure 11 to the outside of the oil storage structure 12, and then output. In the present embodiment, the oil storage structure 12 is sleeved on the outer side of the atomization core structure 11 in the circumferential direction, which not only can fully supply oil for the atomization core structure 11, but also can form a relatively compact integrated structure, occupy small space, and can assist positioning between each other, and the sleeving installation is more convenient.
[0066] Referring to Figures 2-3In some embodiments, the oil storage structure 12 comprises an oil tank 123, a first elastic seal 124 and / or a second elastic seal 125, that is, the end of the oil tank 123 can be provided with only the first elastic seal 124, or can be provided with only the second elastic seal 125, when the end of the oil tank 123 is provided with only the first elastic seal 124 or only the second elastic seal 125, the end of the oil tank 123 without the elastic seal can maintain the original structure of the tank body. Of course, the oil tank 123 can also be provided with the first elastic seal 124 and the second elastic seal 125 together, at this time, the oil tank 123 can be a shell-shaped structure with both ends open, and the two ends are blocked by the first elastic seal 124 and the second elastic seal 125.
[0067] The oil tank 123 is used to place the atomizing core structure 11, that is, the atomizing core structure 11 is arranged in the inner cavity of the oil tank 123. The first elastic seal 124 is detachably connected to one end of the oil tank 123, and the connection can be but is not limited to clamping, threaded connection or bonding. The air outlet channel 122 is arranged on the first elastic seal 124, and the air outlet channel 122 is in communication with the air outlet end 112 of the atomizing core structure 11. The second elastic seal 125 is detachably connected to the other end of the oil tank 123, and the connection can be but is not limited to clamping, threaded connection or bonding. The air inlet channel 121 is arranged on the second elastic seal 125, and the air inlet channel 121 is in communication with the air inlet end 111 of the atomizing core structure 11. The second elastic seal 125 is arranged between the oil tank 123 and the base module 3, so as to play a buffering and damping role between the oil tank 123 and the base module 3.
[0068] One end of the first elastic seal 124 is connected to the oil tank 123, and the other end is connected to the suction nozzle 42, which can form an elastic connection and cooperation between the suction nozzle 42 and the oil tank 123, so that they are more easily aligned and assembled. The materials of the first elastic seal 124 and the second elastic seal 125 can be but are not limited to rubber or silicone. The first elastic seal 124 and the second elastic seal 125 are located at the vertical two ends of the oil tank 123, which can play a buffering and damping role at the two ends of the oil tank 123, and the first elastic seal 124 and the second elastic seal 125 are sealed and abutted with the corresponding end positions of the oil tank 123, which can greatly improve the sealing performance of the oil tank 123 and reduce oil leakage.
[0069] Referring to Figure 2In some embodiments, the oil storage structure 12 further comprises an oil storage cotton 126, which is sleeved on the atomization core structure 11 and filled in the oil storage chamber 123. The oil storage cotton 126 can make the oil in the oil storage chamber 123 permeate more uniformly and can play a role of locking oil and reducing oil leakage. The oil storage structure 12 further comprises an oil absorption cotton 127, which is arranged between the first elastic sealing member 124 and the suction nozzle 42. The oil absorption cotton 127 can absorb the condensate generated when the atomization core structure 11 atomizes.
[0070] Referring to Figure 2 In some embodiments, the atomization device comprises a fixing member 5, which is fixedly connected between the atomization module 1 and the power supply module 2, so as to make the atomization module 1 and the power supply module 2 be able to support each other and reduce the shaking of the power supply module 2 or the atomization module 1.
[0071] Referring to Figures 4-5 In some embodiments, the atomization core structure 11 comprises a heating wire 113 and a pin 114 connected with each other. The pin 114 can introduce current to power the heating wire 113. The second elastic sealing member 125 is provided with a layout channel 1251, and the pin 114 is arranged in the layout channel 1251, that is, the second elastic sealing member 125 can provide a layout space for the pin 114. The circuit control member 32 comprises an electrode column 321, which extends into the layout channel 1251 and is connected with the pin 114. That is, after the module integration between the atomization module 1 and the base module 3, the pin 114 and the electrode column 321 can be reserved. The electrode column 321 extends into the layout channel 1251 of the second elastic sealing member 125 and is connected with the pin 114, so that the electrical connection between the atomization module 1 and the base module 3 can be quickly and conveniently realized. Moreover, the second elastic sealing member 125 can be sleeved around the connection position of the electrode column 321 and the pin 114, so as to protect and position the connection position.
[0072] Referring to Figure 2 and Figure 6 In some embodiments, the base member 31 comprises a first air duct 311 and a second air duct 312, which are independently arranged. The first air duct 311 is in communication with the external gas, which is used to introduce the external gas into the atomization core structure 11, as shown by the dashed line in Figure 2 The circuit control member 32 is provided with a gas pressure detection member 322, which comprises a balanced gas pressure end 3221 and a detection end 3222. The balanced gas pressure end 3221 is in communication with the second air duct 312, and the detection end 3222 is in communication with the first air duct 311, as shown by the dashed line in Figure 2The dotted line in the figure shows the connection. When the air pressure of the detection end 3222 is less than that of the balanced air pressure end 3221, the air pressure detection member 322 sends a signal to the circuit control member 32, and the circuit control member 32 adjusts the starting of the atomization core structure 11.
[0073] In this way, the balanced air pressure end 3221 is connected to the external gas to maintain the external air pressure. When the atomization device is inhaled, the first air duct 311 and the second air duct 312 are independently arranged, and the gas in the first air duct 311 flows into the atomization core structure 11, forming a negative pressure in the first air duct 311. The air pressure of the detection end 3222 is less than that of the balanced air pressure end 3221, so that the air pressure detection member 322 can react in time, reducing the inhalation of the gas in the cavity of the shell 4 during the inhalation of the atomization device, causing the air pressure of the balanced air pressure end 3221 of the air pressure detection member 322 to approach that of the detection end 3222, and causing the air pressure detection member 322 to fail to start or start slowly.
[0074] The second air duct 312 can be arranged on the base member 31 or formed on the shell 4, and can be arranged according to actual needs. Alternatively, the second air duct 312 can be formed through the base member 31, the second air duct 312 can be connected to the cavity of the shell 4, and the second air duct 312 can be arranged at the position of the air pressure detection member 322 close to the circuit control member 32. The balanced air pressure end 3221 of the air pressure detection member 322 is located in the cavity of the shell 4, so that the second air duct 312 is connected to the balanced air pressure end 3221.
[0075] The circuit control member 32 can include a printed circuit board and a controller arranged on the printed circuit board, for adjusting the working state of the atomization core structure 11 in time according to the detection signal of the air pressure detection member 322. The air pressure detection member 322 can be but not limited to a microphone structure, which is an electronic air pressure sensor that can be used to sense the air pressure change caused by the inhalation of the atomization device and transmit the air pressure change signal to the circuit control member 32, so as to adjust the opening and closing of the power supply assembly to the atomization core structure 11.
[0076] Referring to Figures 6-7 In some embodiments, the base member 31 includes a seat body 313 and a third elastic sealing member 314 connected between the seat body 313 and the circuit control member 32, so as to increase the sealing between the seat body 313 and the circuit control member 32 and reduce the entry of external gas or impurities. The material of the third elastic sealing member 314 can be but not limited to rubber or silicone, so as to buffer and dampen the seat body 313 and the circuit control member 32.
[0077] Referring to Figures 6-7In some embodiments, the third sealing member includes an air inlet cavity 3141, a detection cavity 3142, and an air supply cavity 3143. The air inlet cavity 3141 is in communication with the external air so as to introduce the external air into the detection cavity 3142. The detection cavity 3142 is in communication with the detection end 3222 of the air pressure detector 322, i.e., the detection end 3222 can be extended into the detection cavity 3142 so as to timely sense the air pressure change when the air flows in the first air passage 311. The air pressure detector 322 is extended into the third elastic sealing member 314, and the third elastic sealing member 314 can tightly fit the air pressure detector 322 so as to limit and fix the circuit control member 32. Moreover, the third elastic sealing member 314 can seal the air pressure detector 322, reduce the mutual flow of the air at both ends of the air pressure detector 322, and make the air pressure detector 322 more easily detect the pressure difference and quickly start. The air supply cavity 3143 is in communication with the atomizing core structure 11 so as to introduce the air in the detection cavity 3142 into the atomizing core structure 11.
[0078] The air inlet cavity 3141, the detection cavity 3142, and the air supply cavity 3143 are sequentially communicated to form the first air passage 311. The control air hole 3144 is arranged between the detection cavity 3142 and the air inlet cavity 3141, and the air supply hole 3145 is arranged between the detection cavity 3142 and the air supply cavity 3143. The diameter of the control air hole 3144 is smaller than the diameter of the air supply hole 3145, so that when the atomizing core structure 11 is sucked, the suction resistance in the detection cavity 3142 can be more quickly formed, thereby timely and quickly triggering the air pressure detector 322.
[0079] The power module 2 includes a battery cell, which is built in the shell 4. The battery cell is provided with an electrode sheet 21 at an end portion thereof. The electrode sheet 21 of the battery cell is electrically connected with the circuit control member 32. The circuit control member 32 is provided with a nickel sheet 323, which can be connected with the electrode sheet 21 of the battery cell of the power module 2, i.e., the nickel sheet 323 is connected with the electrode sheet 21 of the battery cell, so as to realize the electrical connection between the base module 3 and the power module 2, and the connection and assembly are more convenient and fast.
[0080] Referring to Figures 2-3 The application further provides an assembly method of the atomizing device. The assembly method of the atomizing device includes:
[0081] The atomizing core structure 11 is assembled into the oil storage structure 12 to form the atomizing module 1, i.e., the atomizing module 1 is integrated and assembled.
[0082] The circuit control member 32 is assembled on the base member 31 to form the base module 3, i.e., the base module 3 is integrated and assembled.
[0083] The power module 2 is electrically connected with the circuit control member 32, and the atomization core structure 11 is electrically connected with the circuit control member 32, so as to integrate the power module 2 and the atomization core structure 11 on the circuit control member 32, and the power module 2 adjusts the on-off working state of the atomization core structure 11 through the circuit control member 32.
[0084] The atomization module 1 and the power module 2 are covered and protected, that is, the atomization module 1 and the power module 2 are packaged and covered, so as to complete the assembly of the atomization device and reduce the damage of foreign matters to the atomization module 1 and the power module 2.
[0085] In the embodiment, the atomization module 1, the power module 2 and the base module 3 are modularly designed, and then assembled between the modules, so that the assembly process is simple, the automatic assembly is facilitated, the maintenance and replacement are convenient, the number of parts and the multiple installation steps are greatly reduced, and the assembly is more rapid and efficient.
[0086] Referring to Figures 2-3 In some embodiments, the power module 2 is electrically connected with the circuit control member 32, and the atomization core structure 11 is electrically connected with the circuit control member 32, including:
[0087] The atomization module 1 and the power module 2 are assembled on the same side of the base module 3, so that the shell 4 can jointly cover the atomization module 1 and the power module 2, and the shell 4 is connected with the base module 3, so that the shell 4 and the base module 3 jointly form a containing cavity for the atomization module 1 and the power module 2, the installation is convenient, and the protection stability is good.
[0088] Referring to Figure 2 and Figure 4 In some embodiments, the atomization core structure 11 is assembled into the oil storage structure 12 to form the atomization module 1, including:
[0089] The atomization core structure 11 is connected with the second elastic sealing member 125, and the pin 114 is prearranged in the arrangement channel 1251;
[0090] The oil tank 123 is sleeved outside the atomization core structure 11, and the oil tank 123 is connected with the second elastic sealing member 125;
[0091] The first elastic sealing member 124 is connected with the oil tank 123, so as to assemble and block the atomization core structure 11 in the oil tank 123, and the installation and disassembly are convenient.
[0092] The atomizing core structure 11 is connected with the second elastic sealing member 125, the oil storage cotton 126 is sleeved on the atomizing core structure 11, the oil reservoir 123 is installed, the oil is injected into the oil reservoir 123, and then the first elastic sealing member 124 is assembled.
[0093] Referring to Figure 2 In some embodiments, after the atomizing core structure 11 is assembled into the oil storage structure 12 to form the atomizing module 1, the assembling method further comprises: assembling the fixing member 5 on the atomizing module 1, so as to connect the power supply module 2, support the atomizing module 1 and the power supply module 2, and reduce the shaking of the power supply module 2 or the atomizing module 1.
[0094] Referring to Figure 2 In some embodiments, the circuit control member 32 is assembled on the base member 31 to form the base module 3, comprising:
[0095] The third elastic sealing member 314 is assembled on the base member 31 to form the first air channel 311 and the second air channel 312.
[0096] The circuit control member 32 is assembled on the third elastic sealing member 314, so that the circuit control member 32 is connected with the base member 31, and the third elastic member is clamped together.
[0097] Referring to Figures 4-5 In some embodiments, the power supply module 2 is electrically connected with the circuit control member 32, and the atomizing core structure 11 is electrically connected with the circuit control member 32, comprising:
[0098] The power supply module 2 is provided with the electrode sheet 21, the atomizing core structure 11 is provided with the lead 114, and the circuit control member 32 is provided with the nickel sheet 323 and the electrode column 321.
[0099] The electrode sheet 21 of the power supply module 2 is connected with the nickel sheet 323 of the circuit control member 32, so as to realize the electrical connection between the power supply module 2 and the circuit control member 32.
[0100] The lead 114 of the atomizing core structure 11 is connected with the electrode column 321 of the circuit control member 32, so as to realize the electrical connection between the atomizing core structure 11 and the circuit control member 32.
[0101] In this way, the welding wire can be omitted, the assembling between the power supply module 2, the atomizing module 1 and the base module 3 is more convenient and fast, and the automatic production is more convenient.
[0102] Referring to Figure 2 In some embodiments, the atomizing module 1 and the power supply module 2 are covered and protected, comprising:
[0103] The shell body 41 of the shell 4 is assembled on the outer side of the power module 2 and the atomization module 1 in a circumferential direction, so that the shell body 41 is connected with the base piece 31.
[0104] The suction nozzle 42 of the shell 4 is assembled on the shell body 41, so that the suction nozzle 42 is in communication with the atomization core structure 11. Specifically, the suction nozzle 42 can be connected to the first elastic sealing piece 124 in an inner extension manner, and the suction nozzle 42 is in communication with the air outlet passage 122.
[0105] Wherein, after the suction nozzle 42 is assembled with the first elastic sealing piece 124, a blocking piece 43 can be further assembled on the suction nozzle 42 to block the suction nozzle 42, so as to reduce foreign matters from entering the inner cavity of the atomization core structure 11. The base piece 31 can also be provided with a sticker for decoration or recording information of the atomization device.
[0106] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description simple, all possible combinations of the technical features in the above-mentioned embodiments are not described, however, as long as the combinations of the technical features do not exist contradictory, it should be considered that they are within the scope of the present application.
[0107] The above-mentioned embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation to the patent application scope. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, several modifications and improvements can be made, which are all within the protection scope of the present application. Therefore, the patent protection scope of the present application should be subject to the appended claims.
Claims
1. An atomising device characterised in that, The atomization device comprises: An atomization module (1) comprising an atomization core structure (11) and an oil storage structure (12) for supplying oil to the atomization core structure (11); A suction nozzle (42) in communication with the atomization core structure (11); A power module (2) for supplying power to the atomization core structure (11); A base module (3) comprising a base piece (31) and a circuit control piece (32), the circuit control piece (32) being arranged on the base piece (31), the atomization module (1) and the power module (2) being arranged on the base module (3), and the atomization core structure (11) and the power module (2) both being electrically connected to the circuit control piece (32); The base piece (31) comprises a first air channel (311) and a second air channel (312), the first air channel (311) being in communication with external air for introducing external air into the atomization core structure (11); the circuit control piece (32) is provided with an air pressure detection piece (322), the air pressure detection piece (322) being provided with a balanced air pressure end (3221) and a detection end (3222), the balanced air pressure end (3221) being in communication with the second air channel (312), and the detection end (3222) being in communication with the first air channel (311); when the air pressure of the detection end (3222) is less than the air pressure of the balanced air pressure end (3221), the air pressure detection piece (322) sends a signal to the circuit control piece (32), and the circuit control piece (32) adjusts the atomization core structure (11) to start atomization.
2. The atomization device of claim 1, wherein, The atomization device further comprises a shell (4), the atomization module (1) and the power module (2) being arranged side by side on the same side of the base module (3), the shell (4) being arranged on the atomization module (1) and the power module (2), and the shell (4) being connected to the base module (3).
3. The atomization device of claim 1, wherein, The oil storage structure (12) is arranged circumferentially outside the atomization core structure (11), and the oil storage structure (12) is provided with an air inlet channel (121) and an air outlet channel (122) in communication; The atomization core structure (11) has an air inlet end (111) and an air outlet end (112), the air inlet end (111) being in communication with the air inlet channel (121), and the air outlet end (112) being in communication with the air outlet channel (122).
4. The atomization device of claim 3, wherein, The oil storage structure (12) comprises: An oil storage space (123) for placing the atomization core structure (11); A first elastic sealing piece (124) detachably connected to one end of the oil storage space (123), the air outlet channel (122) being arranged on the first elastic sealing piece (124); and / or, A second elastic seal (125) is detachably connected to the other end of the oil reservoir (123), and is arranged between the oil reservoir (123) and the base module (3), and the air inlet channel (121) is arranged on the second elastic seal (125).
5. The atomization device of claim 4, wherein, The atomization core structure (11) comprises a heating wire (113) and a pin (114) connected to each other, and the second elastic seal (125) is provided with a layout channel (1251), and the pin (114) is arranged in the layout channel (1251); The circuit control member (32) comprises an electrode column (321) which extends into the layout channel (1251) and is connected to the pin (114).
6. The atomization device of claim 1, wherein, The base member (31) comprises a seat body (313) and a third elastic seal (314) which is sealingly connected between the seat body (313) and the circuit control member (32).
7. The atomization device of claim 6, wherein, The third elastic seal (314) comprises: An air inlet cavity (3141) which is in communication with external air; A detection cavity (3142) which is in communication with the detection end (3222) of the air pressure detection member (322); An air supply cavity (3143) which is in communication with the atomization core structure (11); The air inlet cavity (3141), the detection cavity (3142) and the air supply cavity (3143) are sequentially communicated to form the first air passage (311), and a gas control hole (3144) is arranged between the detection cavity (3142) and the air inlet cavity (3141), and an air supply hole (3145) is arranged between the detection cavity (3142) and the air supply cavity (3143), and the diameter of the gas control hole (3144) is smaller than the diameter of the air supply hole (3145).
8. The atomization device of claim 1, wherein, The atomization device comprises a fixing member (5) which is fixedly connected between the atomization module (1) and the power supply module (2).
9. A method of assembling an atomising device, characterised by, The atomization device according to any one of claims 1-8, the assembly method comprising: Assembling the atomization core structure (11) into the oil storage structure (12) to form the atomization module (1); Assembling the circuit control member (32) on the base member (31) to form the base module (3); Electrically connecting the power supply module (2) and the circuit control member (32), and electrically connecting the atomization core structure (11) and the circuit control member (32); Covering and protecting the atomization module (1) and the power supply module (2).
10. The method of assembling an atomizer according to claim 9, wherein, Electrically connecting the power supply module (2) and the circuit control member (32), and electrically connecting the atomization core structure (11) and the circuit control member (32), comprising: The power module (2) is reserved with an electrode sheet (21), the atomization core structure (11) is reserved with a pin (114), and the circuit control piece (32) is reserved with a nickel sheet (323) and an electrode column (321); The electrode of the power module (2) is connected with the nickel sheet (323) of the circuit control piece (32), and the pin (114) of the atomization core structure (11) is connected with the electrode column (321) of the circuit control piece (32).
Citation Information
Patent Citations
Modular electronic cigarette
CN210054639U
Atomization device
CN220369505U