Atomization device
By designing a atomization device with movable components, the problem of coordination of multiple atomization chambers is solved, and flexible switching of the atomization chamber and improved user experience are achieved.
Patent Information
- Application Number
- CN202421338496.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-12
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-12
AI Technical Summary
How to reasonably coordinate the work of multiple atomization warehouses to solve users’ personalized taste needs.
An atomization device is designed, including a housing, a movable assembly and at least two atomization chambers. The atomization chamber is connected through the ventilation channel on the mounting bracket, and the movable assembly is switched at different positions to selectively open the ventilation channel to realize the switching of the atomization chamber.
It realizes flexible switching of the atomization bin, improves the user's experience of using the atomization device, and meets the user's needs for different flavors.
Smart Images

Figure CN222869861U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the field of atomization devices, and specifically relates to an atomization device. Background Art
[0002] With the development of atomizers, atomizers with small size, easy to carry and use are becoming more and more popular. In the related art, in order to meet the personalized needs of users for flavors, atomizers are provided with multiple atomizer bins, but how to reasonably coordinate the work of multiple atomizer bins is still a technical problem that needs to be solved in this field. Utility Model Content
[0003] The purpose of the embodiments of the present application is to provide an atomization device that at least solves the technical problem of how to reasonably coordinate the work of multiple atomization chambers.
[0004] The embodiment of the present application provides an atomization device, which includes a housing, a movable component, and at least two atomization bins and a mounting bracket located in the housing;
[0005] Each of the atomizing bins has an air passage therein, and at least two air passages are arranged on the mounting bracket, and each of the air passages is respectively connected to the air passage of one of the atomizing bins;
[0006] The movable component is installed on the shell, and part of the movable component extends inside the shell, and the movable component is movable relative to the shell;
[0007] During the process of the movable component switching between at least three positions, the shielding area of the air passage by the movable component changes, so as to selectively open at least one of the air passages corresponding to the at least two atomization bins.
[0008] In one embodiment, the at least two atomization bins include a first atomization bin and a second atomization bin;
[0009] The first atomization bin has a first air passage, the second atomization bin has a second air passage, the mounting bracket is provided with a first air passage and a second air passage, the first air passage is communicated with the first air passage, and the second air passage is communicated with the second air passage;
[0010] The movable component is mounted on the shell, and a portion of the movable component extends inwardly from the shell. The movable component is movable relative to the shell, and a surface of the movable component relative to the shell is at least larger than the caliber of the first air passage and the caliber of the second air passage;
[0011] During the switching of the movable component among the first position, the second position and the third position, the shielding area of the first air passage and the second air passage by the movable component changes to selectively open at least one of the first air passage and the second air passage.
[0012] In one embodiment, when the movable component moves to the first position, the movable component blocks the first air passage to open the second air passage;
[0013] When the movable component moves to the second position, the movable component blocks the second air passage to open the first air passage;
[0014] When the movable component moves to the third position, the movable component releases the blocking of the first air passage and the second air passage to open the first air passage and the second air passage.
[0015] In one embodiment, the atomization device further includes a circuit board and a power supply;
[0016] The circuit board and the power supply are located in the housing, a movable switch, a first electrode assembly and a second electrode assembly are arranged on the circuit board, the movable switch selectively conducts at least one of the first electrode assembly and the second electrode assembly to be electrically connected to the power supply, and the movable switch moves synchronously with the movable assembly;
[0017] Wherein, the first electrode assembly is electrically connected to the first atomization chamber, and the second electrode assembly is electrically connected to the second atomization chamber.
[0018] In one embodiment, the movable switch is connected to the movable component, the movable switch is movable relative to the circuit board, and the movable switch is switchable between a first switch position, a second switch position, and a third switch position;
[0019] When the movable component moves to the first position, the movable switch correspondingly moves to the first switch position, the first electrode component operates, and the second electrode component stops operating;
[0020] When the movable component moves to the second position, the movable switch correspondingly moves to the second switch position, the second electrode component operates, and the first electrode component stops operating;
[0021] When the movable component moves to the third position, the movable switch correspondingly moves to the third switch position, the first electrode component operates, and the second electrode component both operates.
[0022] In one embodiment, the third position is located between the first position and the second position, and the third switch position is located between the first switch position and the second switch position.
[0023] In one embodiment, the movable switch is connected to the movable component, and the movable component includes a button cap and a button connector;
[0024] The key cap is connected to the key connector, the key connector is connected to the movable switch, and the key connector is movable relative to the housing;
[0025] When the key cap drives the key connector to move to the first position, the key connector blocks the first air passage, and the key connector drives the movable switch to move to the first switch position;
[0026] When the key cap drives the key connector to move to the second position, the key connector blocks the second air passage, and the key connector drives the movable switch to move to the second switch position;
[0027] When the key cap drives the key connector to move to the third position, the key connector releases the shielding of the first air passage and the second air passage, and the key connector drives the movable switch to move to the third switch position.
[0028] In one embodiment, the button cap includes a cap body and a hook disposed on the cap body, and the button connector is provided with a connecting hole, and the hook is connected to the connecting hole to connect the button cap to the button connector.
[0029] In one embodiment, a fixing column is further provided on the cap body, a fixing hole is provided on the button connector, and the fixing column is embedded in the fixing hole.
[0030] In one embodiment, when the movable component moves to the third position, the movable component blocks a portion of the first air duct and a portion of the second air duct to open a portion of the first air duct and a portion of the second air duct.
[0031] In the embodiment of the present application, since there is an airway in each atomization bin, each airway on the mounting bracket is respectively connected to the airway of one of the atomization bins, therefore, by blocking at least one airway on the mounting bracket, it is difficult for the gas to enter the blocked airway, and then it is difficult to enter the atomization bin connected thereto, making the atomization bin difficult to be used, and the atomization bin corresponding to the unblocked airway can be used. Since the movable component is mounted on the shell, and part of the movable component extends inwardly into the shell, the movable component is movable relative to the shell, therefore, when applying force to the movable component, the movable component can be switched between different positions, that is, the movable component can be switched between at least three positions, so that the movable component can selectively open at least one of the airways corresponding to at least two atomization bins, and realize the switching of the atomization bin, that is, the movable component can open at least one airway on the mounting bracket, so that the gas can enter the airway of the atomization bin corresponding to the airway, so that the gas can enter the atomization bin, and another airway can be opened so that the gas can enter the airway of the atomization bin corresponding to the airway, so that the gas can enter the atomization bin, and another airway can be opened so that the gas can enter the airway of the atomization bin corresponding to the airway, so that the gas can enter the atomization bin. That is, in the embodiment of the present application, by setting up an active component, the active component can be moved to selectively open at least one of the airways corresponding to at least two atomization bins, thereby realizing the switching use of at least two atomization bins, thereby improving the user experience of using the atomization device. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 A schematic diagram showing an atomization device provided in an embodiment of the present application;
[0033] Figure 2 An exploded view of an atomization device provided in an embodiment of the present application is shown;
[0034] Figure 3 One of the schematic diagrams showing the connection between a movable component and a mounting bracket provided in an embodiment of the present application;
[0035] Figure 4 A second schematic diagram showing the connection between a movable component and a mounting bracket provided in an embodiment of the present application;
[0036] Figure 5 A schematic diagram showing a circuit board provided with a movable switch, a first electrode assembly, and a second electrode assembly in an embodiment of the present application;
[0037] Figure 6 One of the schematic diagrams showing the connection between a movable component and a movable switch provided in an embodiment of the present application;
[0038] Figure 7 One of the schematic diagrams showing the positional relationship between a mounting bracket and a circuit board provided in an embodiment of the present application;
[0039] Figure 8 A schematic diagram showing a mounting bracket provided in an embodiment of the present application;
[0040] Fig. 9 A second schematic diagram showing the positional relationship between a mounting bracket and a circuit board provided in an embodiment of the present application;
[0041] Fig.10 A second schematic diagram showing the connection between a movable component and a movable switch provided in an embodiment of the present application;
[0042] Fig.11 A schematic diagram showing a button cap provided in an embodiment of the present application;
[0043] Fig.12 A schematic diagram showing a key connector and a circuit board provided in an embodiment of the present application;
[0044] Fig.13 A schematic diagram showing a first subshell provided in an embodiment of the present application;
[0045] Fig.14 A schematic diagram showing a power supply provided by an embodiment of the present application connecting a first electrode assembly and a second electrode assembly through an active switch.
[0046] Reference numerals:
[0047] 10: Shell; 11: First sub-shell; 12: Second sub-shell; 110: Suction nozzle; 111: First sub-nozzle; 112: Second sub-nozzle; 20: Movable component; 21: Key cap; 22: Key connector; 211: Cap body; 212: Hook; 213: Fixing column; 221: Connecting hole; 222: Fixing hole; 223: Connecting groove; 2111: Anti-slip pattern; 30: First atomization bin; 40: Second atomization bin; 50: Mounting bracket; 501: First air duct; 502: Second air duct; 5011: Air vent; 61: Circuit board; 62: Movable switch; 63: First electrode assembly; 64: Second electrode assembly; 631: First sub-electrode member; 632: Second sub-electrode member; 641: Third sub-electrode member; 642: Fourth sub-electrode member; 70: Sealing cover; 100: Power supply. DETAILED DESCRIPTION
[0048] The term "first" or "second" in the specification and claims of this application may include one or more of the features explicitly or implicitly. In the description of this application, unless otherwise specified, "plurality" means two or more. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / " generally means that the objects connected before and after are in an "or" relationship.
[0049] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.
[0050] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0051] like Figures 1 to 14 As shown, the atomization device includes: a housing 10 , a movable assembly 20 , a housing 10 , a movable assembly 20 , at least two atomization bins located in the housing 10 , and a mounting bracket 50 .
[0052] There is an air duct in each atomization bin, and at least two air ducts are arranged on the mounting bracket 50, each of which is connected to the air duct of one of the atomization bins; the movable component 20 is mounted on the shell 10, and part of the movable component 20 extends inside the shell 10, and the movable component 20 is movable relative to the shell 10; in the process of switching the movable component 20 between at least three positions, the shielding area of the air duct by the movable component 20 changes to selectively open at least one of the air ducts corresponding to at least two atomization bins.
[0053] In the embodiment of the present application, since there is an air duct in each atomization bin, each air duct on the mounting bracket 50 is respectively connected to the air duct of one of the atomization bins. Therefore, by blocking at least one air duct on the mounting bracket 50, it is possible to make it difficult for gas to enter the blocked air duct, and then difficult to enter the atomization bin connected thereto, making the atomization bin difficult to use, while the atomization bin corresponding to the unblocked air duct can be used. Since the movable component 20 is installed on the housing 10, and part of the movable component 20 extends inwardly from the housing 10, the movable component 20 is movable relative to the housing 10. Therefore, when a force is applied to the movable component 20, the movable component 20 can be switched between different positions, that is, the movable component 20 can be switched between at least three positions, so that the movable component 20 can selectively open at least one of the airways corresponding to at least two atomization bins to achieve the switching of the atomization bins, that is, the movable component 20 can open at least one airway on the mounting bracket 50, so that the gas can enter the airway of the atomization bin corresponding to the airway, so that the gas can enter the atomization bin, and can also open another airway so that the gas can enter the airway of the atomization bin corresponding to the airway, so that the gas can enter the atomization bin. That is, in the embodiment of the present application, by setting the movable component 20, the movable component 20 can be moved so that the movable component 20 can selectively open at least one of the airways corresponding to at least two atomization bins, so that the switching use of at least two atomizations can be achieved, so that the user's experience of using the atomization device is improved.
[0054] It should be noted that, in the embodiment of the present application, the number of positions where the movable component 20 is movable is greater than the number of atomization bins. For example, if the number of atomization bins is two, the number of positions where the movable component 20 is movable is three. For another example, if the number of atomization bins is three, the number of positions where the movable component 20 is movable is four. Among them, the number of positions where the movable component 20 is movable is greater than the number of atomization bins, so that when the movable component 20 is movable, it can only block one of the air passages corresponding to at least two atomization bins, and it can also release the air passages corresponding to at least two atomization bins when the movable component 20 is movable to the set position, that is, the movable component 20 does not block the air passage on the mounting bracket 50.
[0055] In addition, in the embodiment of the present application, when the active component 20 switches between at least three positions, once the active component 20 moves to the position of an air duct, the active component 20 can completely block the air duct. Of course, the active component 20 can also block part of the air duct, that is, the active component 20 changes the blocking area of the air duct, so that the active component 20 can completely block the channel, or block part of the air duct.
[0056] In addition, in the embodiment of the present application, the flavor of each of the at least two atomization bins may be different, so that when the movable component 20 is moved, different atomization bins are used, so that the user can experience different flavors.
[0057] In addition, in some embodiments, at least two atomization bins include a first atomization bin 30 and a second atomization bin 40. The first atomization bin 30 has a first airway, the second atomization bin 40 has a second airway, and the mounting bracket 50 is provided with a first airway 501 and a second airway 502, the first airway 501 is connected to the first airway, and the second airway 502 is connected to the second airway; the movable component 20 is mounted on the housing 10, and a portion of the movable component 20 extends inwardly from the housing 10, the movable component 20 is movable relative to the housing 10, and the surface of the movable component 20 relative to the housing 10 is larger than the caliber of the first airway 501 and the caliber of the second airway 502; in the process of switching the movable component 20 between the first position, the second position and the third position, the shielding area of the first airway 501 and the second airway 502 by the movable component 20 changes to selectively open at least one of the first airway 501 and the second airway 502.
[0058] In the embodiment of the present application, since the first atomization bin 30 has a first air duct and the second atomization bin 40 has a second air duct, the first air duct 501 on the mounting bracket 50 is connected to the first air duct, and the second air duct 502 is connected to the second air duct. Therefore, by blocking the first air duct 501, it is difficult for gas to enter the first atomization bin 30, and by blocking the second air duct 502, it is difficult for gas to enter the second atomization bin 40, that is, after blocking the first air duct 501, it is difficult for gas to enter the first air duct 501, and then it is difficult to enter the first air duct through the first air duct 501 to enter the first atomization bin 30, and after blocking the second air duct 502, it is difficult for gas to enter the second air duct 502, and then it is difficult to enter the second atomization bin 40 through the second air duct 502. Since the movable component 20 is installed on the housing 10, and part of the movable component 20 extends inside the housing 10, the movable component 20 is movable relative to the housing 10. Therefore, when a force is applied to the movable component 20, the movable component 20 can be switched between different positions, that is, the movable component 20 can be switched between the first position, the second position and the third position, so that the movable component 20 can selectively open at least one of the first air duct 501 and the second air duct 502 to achieve the switching of the atomization bin, that is, the movable component 20 can open the first air duct 501, the second air duct 502, and the first air duct 501 and the second air duct 502 can be opened at the same time. That is, in the embodiment of the present application, by setting the movable component 20, the movable component 20 can be moved to open the first air duct 501 or the second air duct 502, so that the switching use of the first atomization bin 30 and the second atomization bin 40 can be achieved, so that the user's experience of using the atomization device is improved.
[0059] It should be noted that when the active component 20 switches between the first position, the second position and the third position, the active component 20 can change the blocking area of the first air duct 501, so that the active component 20 can completely block the first air duct 501, and can also block part of the first air duct 501; the active component 20 can also change the blocking area of the second air duct 502, so that the active component 20 can completely block the second air duct 502, and can also block part of the second air duct 502.
[0060] In addition, in the embodiment of the present application, when the movable component 20 moves to the third position, the movable component 20 blocks part of the first air duct 501 and part of the second air duct 502 to open part of the first air duct 501 and part of the second air duct 502. Through such a setting, once the movable component 20 moves to the third position, the movable component 20 only blocks part of the first air duct 501 and part of the second air duct 502, so that the first atomization warehouse 30 and the second atomization warehouse 40 are partially used. When the first atomization warehouse 30 and the second atomization warehouse 40 are connected to the electrode assembly, the electrode assembly corresponding to the first atomization warehouse 30 and the electrode assembly corresponding to the second atomization warehouse 40 are not fully output, so that the power of the atomization device is reduced while ensuring that the user can use the first atomization warehouse 30 and the second atomization warehouse 40 at the same time, which is conducive to reducing the power consumption of the atomization device.
[0061] In addition, in some embodiments, when the movable component 20 moves to the first position, the movable component 20 blocks the first air duct 501 to open the second air duct 502; when the movable component 20 moves to the second position, the movable component 20 blocks the second air duct 502 to open the first air duct 501; when the movable component 20 moves to the third position, the movable component 20 releases the blocking of the first air duct 501 and the second air duct 502 to open the first air duct 501 and the second air duct 502.
[0062] Among them, when the movable component 20 moves to the first position, the movable component 20 blocks the first air channel 501, so that it is difficult for gas to enter the first air channel through the first air channel 501 and then enter the first atomization bin 30, and only the second atomization bin 40 can enter the gas through the second air channel 502, so that the second atomization bin 40 can be used, which is equivalent to opening the second air channel 502 so that gas can enter the second atomization bin 40; when the movable component 20 moves to the second position, the movable component 20 blocks the second air channel 502, so that it is difficult for gas to enter the second air channel through the second air channel 502 and then enter the second atomization bin 40, and only the first atomization bin 30 can enter the gas through the first air channel 501, so that The first atomization bin 30 can be used, which is equivalent to opening the first air duct 501, so that gas can enter the first atomization bin 30; when the movable component 20 moves to the third position, the movable component 20 releases the blocking of the first air duct 501 and the second air duct 502, so that gas can enter the first air duct through the first air duct 501 and then enter the first atomization bin 30, and gas can enter the second air duct through the second air duct 502 and then enter the second atomization bin 40, so that both the first atomization bin 30 and the second atomization bin 40 can be used, which is equivalent to opening the first air duct 501 and the second air duct 502 at the same time, so that gas can enter the first atomization bin 30 and the second atomization bin 40 at the same time.
[0063] It should be noted that in the embodiment of the present application, the flavor of the first atomization bin 30 is different from the flavor of the second atomization bin 40. Therefore, when using the atomization device provided in the embodiment of the present application, the user can use the first atomization bin 30 or the second atomization bin 40 by moving the movable component 20, so that the user can experience different flavors of smoke. For example, the flavor of the first atomization bin 30 is the first flavor, and the flavor of the second atomization bin 40 is the second flavor. When the user uses the atomization device, the user can move the movable component 20 to the first position, so that the movable component 20 blocks the first air channel 501, so that the gas is difficult to enter the first atomization bin 30, and the second atomization bin 40 can be used normally, and the user can experience the second flavor of the second atomization bin 40. When the user moves the movable component 20 to the second position, the movable component 20 blocks the second air channel 502, so that the gas is difficult to enter the second atomization bin 40, and the first atomization bin 30 can be used normally, and the user can experience the first flavor of the first atomization bin 30. When the user moves the movable component 20 to the third position, the movable component 20 releases the blocking of the first air channel 501 and the second air channel 502, so that the user can experience the first flavor of the first atomization bin 30 and the second flavor of the second atomization bin 40 at the same time.
[0064] In addition, in the embodiment of the present application, the first atomization bin 30 and the second atomization bin 40 can be arranged in parallel. Of course, the first atomization bin 30 and the second atomization bin 40 can also be arranged in other ways, for example, one end of the first atomization bin 30 and the center line of the second atomization bin 40 are on the same straight line. This embodiment of the present application is not limited here.
[0065] In addition, in the embodiments of the present application, Figure 4 and Figure 8As shown, the first air passage 501 has two air vents 5011, one of which is connected to the first air passage. When the movable component 20 moves to the first position, the movable component 20 blocks the other air vent 5011, so that it is difficult for gas to enter the first air passage 501 through the air vent 5011, and then enter the first air passage and the first atomization chamber 30; the second air passage 502 has two air vents 5011, one of which is connected to the second air passage. When the movable component 20 moves to the first position, the movable component 20 blocks the other air vent 5011, so that it is difficult for gas to enter the first air passage 501 through the air vent 5011, and then enter the first air passage and the first atomization chamber 30; When the movable component 20 moves to the second position, the movable component 20 blocks another vent 5011, so that it is difficult for gas to enter the second air passage 502 through the vent 5011, and then enter the second air passage and the second atomization chamber 40; when the movable component 20 moves to the third position, the movable component 20 removes the cover of the vent 5011 of the first air passage 501, and removes the cover of the vent 5011 of the second air passage 502, so that gas can enter the first air passage 501 and the second air passage 502. Among them, the surface of the movable component 20 relative to the housing 10 is larger than the vent 5011 of the first air passage 501 and the vent 5011 of the second air passage 502.
[0066] In addition, in the embodiment of the present application, the third position can be located between the first position and the second position. That is, the third position is equivalent to being located in the middle position, the first position is located on one side of the third position, and the second position is located on the other side of the third position, so that in actual application, the third position is equivalent to the center position, that is, when the user moves the button to the center position, the first atomization warehouse 30 and the second atomization warehouse 40 can be used at the same time, and when the user needs to switch the atomization warehouse, the movable component 20 can be moved only to one side of the center position, so that the movable component 20 can block the first airway 501 or the second airway 502, thereby making the first atomization warehouse 30 or the second atomization warehouse 40 usable. That is, by setting the third position between the first position and the second position, it is convenient for the user to operate the atomization device, and then it is convenient for the user to switch the atomization warehouse through the movable component 20.
[0067] In addition, in some embodiments, Figure 5 , Figure 6 and Fig.14 As shown, the atomization device may also include a circuit board 61 and a power supply 100; the circuit board 61 and the power supply 100 are located in the shell 10, and a movable switch 62, a first electrode assembly 63 and a second electrode assembly 64 are provided on the circuit board 61, the movable switch 32 selectively turns on at least one of the first electrode assembly 63 and the second electrode assembly 64 to be electrically connected to the power supply 100, and the movable switch 32 moves synchronously with the movable assembly 20; wherein, the first electrode assembly 63 is electrically connected to the first atomization bin 30, and the second electrode assembly 64 is electrically connected to the second atomization bin 40.
[0068] Since the first electrode assembly 63 is electrically connected to the first atomization chamber 30, the second electrode assembly 64 is electrically connected to the second atomization chamber 40, and the movable switch 32 moves synchronously with the movable component 20, once the movable component 20 is activated, the movable switch 62 will be activated synchronously with the movable component 20. Since the movable switch 32 selectively conducts at least one of the first electrode assembly 63 and the second electrode assembly 64 to be electrically connected to the power source 100, when the movable component 20 is activated, the movable switch 62 can make at least one of the first electrode assembly 63 and the second electrode assembly 64 electrically connected to the power source 100, thereby making at least one of the first atomization chamber 30 and the second atomization chamber 40 usable. That is, when the movable component 20 is active, the movable switch 62 moves synchronously, so that not only gas can enter the first atomization chamber 30 through the first air duct 501, and / or gas can enter the second atomization chamber 40 through the second air duct 502, but also the first electrode assembly 63 can energize the first atomization chamber 30, and / or the second electrode assembly 34 can energize the second atomization chamber 40, so that when the first atomization chamber 30 and the second atomization chamber 40 are switched, not only gas can enter the first atomization chamber 30 and the second atomization chamber 40, but also electricity can be supplied through the electrode assembly, so that the first atomization chamber 30 and the second atomization chamber 40 can be effectively used when switching.
[0069] In addition, in some embodiments, the movable switch 62 is movable relative to the circuit board 61, and the movable switch 62 switches between a first switch position, a second switch position, and a third switch position; when the movable component 20 moves to the first position, the movable switch 62 correspondingly moves to the first switch position, the first electrode component 63 operates, and the second electrode component 64 stops operating; when the movable component 20 moves to the second position, the movable switch 62 correspondingly moves to the second switch position, the second electrode component 64 operates, and the first electrode component 63 stops operating; when the movable component 20 moves to the third position, the movable switch 62 correspondingly moves to the third switch position, the first electrode component 63 operates, and the second electrode component 64 both operate.
[0070] Since the movable switch 62 is movable relative to the circuit board 61, when force is applied to the movable switch 62, the movable switch 62 can be switched between different switch positions. Specifically, when the movable component 20 moves to the first position, the movable switch 62 moves to the first switch position accordingly, the first electrode component 63 operates, and the second electrode component 64 stops operating. At this time, gas can enter the first atomization chamber 30 through the first air duct 501, and the first atomization chamber 30 can be used normally due to the action of the first electrode component 63, while it is difficult for gas to enter the second atomization chamber 40, and the second electrode component 64 does not operate, so that the second atomization chamber 40 is difficult to use; when the movable component 20 moves to the second position, the movable switch 62 moves to the second switch position accordingly, the second electrode component 64 operates, and the first electrode component 63 stops operating. At this time, gas can enter the second atomization chamber 40 through the second air duct 502, and The second atomization chamber 40 can be used normally due to the action of the second electrode assembly 64, while it is difficult for gas to enter the first atomization chamber 30, and the first electrode assembly 63 is not operating, so that the first atomization chamber 30 is difficult to use; when the movable assembly 20 moves to the third position, the movable switch 62 moves to the third switch position accordingly, the first electrode assembly 63 operates, and the second electrode assembly 64 both operate. At this time, gas can enter the first atomization chamber 30 through the first air duct 501, and gas can enter the second atomization chamber 40 through the second air duct 502. The first atomization chamber 30 is operated due to the action of the first electrode assembly 63, and the second atomization chamber 40 is operated due to the action of the second electrode assembly 64. Both the first atomization chamber 30 and the second atomization chamber 40 can be used normally. That is, by arranging a movable switch 62, a first electrode assembly 63 and a second electrode assembly 64 on the circuit board 61, the first electrode assembly 63 is electrically connected to the first atomization chamber 30, and the second electrode assembly 64 is electrically connected to the second atomization chamber 40, it can be further ensured that the first atomization chamber 30 and the second atomization chamber 40 can be switched.
[0071] It should be noted that in the embodiment of the present application, the circuit board 61 can be located on one side of the mounting bracket 50, and the first atomization bin 30 and the second atomization bin 40 are both located on the other side of the mounting bracket 50, and a plurality of through holes are provided on the mounting bracket 50, and the first electrode assembly 63 can be passed through the through hole, and the second electrode assembly 64 can also be passed through the through hole, so that the first electrode assembly 63 is electrically connected to the first atomization bin 30, and the second electrode assembly 64 is electrically connected to the second atomization bin 40.
[0072] In addition, in some embodiments, Figure 6As shown, the movable switch 62 is connected to the movable component 20, and the movable component 20 may include a button cap 21 and a button connector 22; the button cap 21 is connected to the button connector 22, the button connector 22 is connected to the movable switch 62, and the button connector 22 is movable relative to the shell 10; when the button cap 21 drives the button connector 22 to move to the first position, the button connector 22 blocks the first air duct 501, and the button connector 22 drives the movable switch 62 to move to the first switch position; when the button cap 21 drives the button connector 22 to move to the second position, the button connector 22 blocks the second air duct 502, and the button connector 22 drives the movable switch 62 to move to the second switch position; when the button cap 21 drives the button connector 22 to move to the third position, the button connector 22 releases the blocking of the first air duct 501 and the second air duct 502, and the button connector 22 drives the movable switch 62 to the third switch position.
[0073] Since the key cap 21 is connected to the key connector 22, the key connector 22 is connected to the movable switch 62, and the key connector 22 is movable relative to the shell 10, force can be applied to the key cap 21 so that the key cap 21 drives the key connector 22 to move, so that the movable component 20 switches between different positions, and the movable component 20 drives the movable switch 62 to move, so that the movable switch 62 switches between different switch positions. Specifically, when the key cap 21 drives the key connector 22 to move to the first position, the key connector 22 blocks the first air passage 501, and the key connector 22 drives the movable switch 62 to move to the first switch position, so that it is difficult for the first atomization chamber 30 to enter the gas through the first air passage 501, and the first electrode assembly 63 is not operating, while the second atomization chamber 40 enters the gas through the second air passage 502. The second atomization chamber 40 can be used due to the action of the second electrode assembly 64, and the first atomization chamber 30 is difficult to use; when the key cap 21 drives the key connector 22 to move to the second position, the key connector 22 blocks the second air passage 502, and the key connector 22 drives the movable switch 62 to move to the second switch position, so that it is difficult for the second atomization chamber 40 to enter the gas through the second air passage 502, and the second The electrode assembly 64 is not in operation, and the first atomization chamber 30 allows gas to enter through the first air passage 501, and the second atomization chamber 40 can be used due to the action of the second electrode assembly 64, and the first atomization chamber 30 is difficult to use; when the key cap 21 drives the key connector 22 to move to the third position, the key connector 22 releases the obstruction of the first air passage 501 and the second air passage 502, and the key connector 22 drives the movable switch 62 to move to the third switch position, and the first atomization chamber 30 can allow gas to enter through the first air passage 501, and the first atomization chamber 30 can be used due to the action of the first electrode assembly 63, and the second atomization chamber 40 can allow gas to enter through the second air passage, and the second atomization chamber 40 can be used due to the action of the second electrode assembly 64. That is, by setting the button cap 21 and the button connector 22, it is convenient for the movable component 20 to connect to the movable switch 62, and then it is convenient for the movable switch 62 to switch between different switch positions. Through the button cap 21, force can be applied to the button connector 22 to facilitate the position switching of the movable component 20.
[0074] In addition, in the embodiment of the present application, the third position is located between the first position and the second position, so that the third switch position is located between the first switch position and the second switch position. That is, the third position and the third switch position are equivalent to the center position. When the user moves the button to the center position, the first atomization bin 30 and the second atomization bin 40 can be used at the same time. When the user needs to switch the atomization bin, the movable component 20 can be moved only to one side of the center position, so that the movable component 20 can block the first air duct 501 or the second air duct 502, thereby making the first atomization bin 30 or the second atomization bin 40 usable.
[0075] In addition, in the embodiment of the present application, the key connector 22 can be formed of rubber, so that when the key connector 22 blocks the first air duct 501, the key connector 22 can more tightly block the vent 5011 of the first air duct 501 to prevent gas from entering the first air duct 501; when the key connector 22 blocks the second air duct 502, the key connector 22 can more tightly block the vent 5011 of the second air duct 502 to prevent gas from entering the second air duct 502. That is, by setting the key connector 22 to be formed of rubber, it can be ensured that the key connector 22 effectively blocks the first air duct 501 or the second air duct 502. Of course, the key connector 22 can also be formed of other materials, for example, the key connector 22 is formed of plastic. The specific material of the key connector 22 is not limited in the embodiment of the present application.
[0076] In addition, in the embodiments of the present application, Figure 5 As shown, the first electrode assembly 63 may include a first sub-electrode member 631 and a second sub-electrode member 632, and the second electrode assembly 64 may include a third sub-electrode member 641 and a fourth sub-electrode member 642; the first sub-electrode member 631 and the second sub-electrode member 632 are both electrically connected to the first atomization chamber 30, and the third sub-electrode member 641 and the fourth sub-electrode member 642 are both electrically connected to the second atomization chamber 40. Through such a setting, it is equivalent to that the first atomization chamber 30 is electrically connected to multiple sub-electrode members, so that multiple sub-electrode members can act at the same time, so that the atomization effect of the first atomization chamber 30 is better. Similarly, the second atomization chamber 40 is also electrically connected to multiple sub-electrode members, and multiple sub-electrode members can act at the same time, so that the atomization effect of the second atomization chamber 40 is better.
[0077] It should be noted that the number of the first sub-electrode members 631, the number of the second sub-electrode members 632, the number of the third sub-electrode members 641, and the number of the fourth sub-electrode members 642 can be set according to actual needs. For example, the number of the first sub-electrode members 631, the number of the second sub-electrode members 632, the number of the third sub-electrode members 641, and the number of the fourth sub-electrode members 642 are all 1.
[0078] In addition, in some embodiments, Fig.11 and Fig.12 As shown, the key cap 21 may include a cap body 211 and a hook 212 disposed on the cap body 211 , and the key connector 22 is provided with a connecting hole 221 , in which the hook 212 is connected to connect the key cap 21 to the key connector 22 .
[0079] Since the cap body 211 is provided with a hook 212 and the key connector 22 is provided with a hook hole 221, when the key cap 21 needs to be connected with the key connector 22, the hook 212 can be directly hooked into the hook hole 221, so that the key cap 21 and the key connector 22 can be connected more conveniently; when the key cap 21 and the key connector 22 need to be disassembled, the hook 212 can be directly separated from the hook hole 221, so that the key cap 21 and the key connector 22 are separated. That is, by providing the hook 212 on the cap body 211 and providing the hook hole 221 on the key connector 22, the key cap 21 and the key connector 22 can be easily connected or separated.
[0080] It should be noted that the number of hooks 212 on the cap body 211 can be set according to actual needs. For example, the number of hooks 212 is 2, and the two hooks 212 can be distributed at intervals. For another example, the number of hooks 212 is 1. The specific number of hooks 212 is not limited in the embodiment of the present application.
[0081] In addition, in some embodiments, Fig.11 and Fig.12 As shown, a fixing column 213 may be provided on the cap body 211 , and a fixing hole 222 may be provided on the button connector 22 , in which the fixing column 213 is embedded.
[0082] Since the cap body 211 is provided with a fixing column 213 and the key connector 22 is provided with a fixing hole 222, when the cap body 211 and the key connector 22 need to be connected, the fixing column 213 can be embedded in the fixing hole 222, so that the cap body 211 and the key connector 22 are connected. That is, by providing the fixing column 213 and the fixing hole 222, the cap body 211 can be easily connected to the key connector 22.
[0083] It should be noted that the number of the fixing columns 213 can be set according to actual needs. For example, the number of the fixing columns 213 is 1, and for another example, the number of the fixing columns 213 is 2. The specific number of the fixing columns 213 is not limited in the embodiment of the present application.
[0084] In addition, in the embodiment of the present application, a fixing column 213 can be provided on the cap body 211, and a hook 212 can be provided on the cap body 211 at the same time, so that the key connector 22 is provided with a fixing hole 222 and a clamping hole 221 at the same time. When the cap body 211 needs to be connected to the key connector 22, the fixing column 213 is embedded in the fixing hole 222, and the clamping hook 212 is clamped in the clamping hole 221, so that the cap body 211 and the key connector 22 can be more firmly connected. When there are two clamping hooks 212 and one fixing column 213, the fixing column 213 can be between the two clamping hooks 212.
[0085] In addition, in some embodiments, Fig.11 As shown, the surface of the button cap 21 facing away from the button connector 22 may be provided with anti-slip grooves 2111. With such a setting, when a user uses the atomization device provided in an embodiment of the present application, once the user needs to switch the atomization chamber, after the user touches the button cap 21, the anti-slip grooves 2111 on the button cap 21 can make the user's hand and the button cap 21 move with each other, resulting in the problem that it is difficult for the user to apply force to the button cap 21 to move the button cap 21. That is, by providing the anti-slip grooves 2111 on the button cap 21, it can be ensured that the user can move the button cap 21 more conveniently, thereby switching the atomization chamber. It should be noted that the specific shape of the anti-slip grooves 2111 can be set according to actual needs.
[0086] In addition, in some embodiments, a connection groove 223 may be provided on the button connector 22 , and the movable switch 62 is embedded in the connection groove 223 , so that the button connector 22 is connected to the movable switch 62 .
[0087] Since the connecting member may have a connecting groove 223, when the movable switch 62 needs to be connected to the key connecting member 22, the movable switch 62 may be directly embedded in the connecting groove 223 to achieve the connection between the movable switch 62 and the key connecting member 22. That is, by providing the connecting groove 223 on the key connecting member 22, the movable switch 62 may be easily connected to the key connecting member 22.
[0088] It should be noted that the movable switch 62 can be interference-fitted in the connecting groove 223 , so that the movable switch 62 is not easily detached from the connecting groove 223 .
[0089] In addition, in some embodiments, Figure 1 and Fig.13As shown, the shell 10 may include a first sub-shell 11 and a second sub-shell 12; a suction nozzle 110 is arranged on the first sub-shell 11, and the suction nozzle 110 includes a first sub-nozzle 111 and a second sub-nozzle 112, the first atomization bin 30 and the second atomization bin 40 are both in the first sub-shell 11, the movable component 20 is arranged in the second sub-shell 12, and the mounting bracket 50 is located in the second sub-shell 12; wherein, the first sub-nozzle 111 is connected to the first atomization bin 30, and the second sub-nozzle 112 is connected to the second atomization bin 40.
[0090] Since the first sub-shell 11 is provided with a suction nozzle 110, the suction nozzle 110 includes a first sub-nozzle 111 and a second sub-nozzle 112, and the first atomization bin 30 and the second atomization bin 40 are both in the first sub-shell 11, the first sub-nozzle 111 can be connected to the first atomization bin 30, and the second sub-nozzle 112 can be connected to the second atomization bin 40, so that when the user uses the atomization device provided in the embodiment of the present application, the user can experience the flavors of different atomization bins through different sub-nozzles. In addition, the movable component 20 is arranged in the second sub-shell 12, and the mounting bracket 50 is located in the second sub-shell 12, so that after the first sub-shell 11 and the second sub-shell 12 are connected, the first atomization bin 30, the second atomization bin 40 and the mounting bracket 50 can be conveniently arranged in the first sub-shell 11 and the second sub-shell 12, so that the space utilization rate in the housing 10 is improved.
[0091] It should be noted that the first sub-shell 11 and the second sub-shell 12 are detachably connected, for example, a buckle is provided on the first sub-shell 11, and a groove adapted to the buckle is provided on the second sub-shell 12, and the buckle is inserted into the groove, so that the first sub-shell 11 and the second sub-shell 12 are detachably connected. For another example, a first type of buckle is provided on the first sub-shell 11, and a second type of buckle is provided on the second sub-shell 12, and the first type of buckle is engaged with the second type of buckle, so that the first sub-shell 11 and the second sub-shell 12 are detachably connected.
[0092] In addition, in some embodiments, Figure 1 As shown, the atomizing device may further include a blocking cover 70, which covers the suction nozzle 110. By providing the blocking cover 70, after the user finishes using the atomizing device, the blocking cover 70 is covered on the suction nozzle 110, which can effectively prevent dust from entering the suction nozzle 110 and ensure the cleanliness of the inside of the suction nozzle 110. That is, by providing the suction nozzle 110, the inside of the suction nozzle 110 can be ensured to be relatively clean.
[0093] It should be noted that the blocking cover 70 is detachably connected to the suction nozzle 110 , and the blocking cover 70 can be formed of a rubber material or a plastic material.
[0094] In the embodiment of the present application, since there is an air duct in each atomization bin, each air duct on the mounting bracket 50 is respectively connected to the air duct of one of the atomization bins. Therefore, by blocking at least one air duct on the mounting bracket 50, it is possible to make it difficult for gas to enter the blocked air duct, and then difficult to enter the atomization bin connected thereto, making the atomization bin difficult to use, while the atomization bin corresponding to the unblocked air duct can be used. Since the movable component 20 is installed on the housing 10, and part of the movable component 20 extends inwardly from the housing 10, the movable component 20 is movable relative to the housing 10. Therefore, when a force is applied to the movable component 20, the movable component 20 can be switched between different positions, that is, the movable component 20 can be switched between at least three positions, so that the movable component 20 can selectively open at least one of the airways corresponding to at least two atomization bins to achieve the switching of the atomization bins, that is, the movable component 20 can open at least one airway on the mounting bracket 50, so that the gas can enter the airway of the atomization bin corresponding to the airway, so that the gas can enter the atomization bin, and can also open another airway so that the gas can enter the airway of the atomization bin corresponding to the airway, so that the gas can enter the atomization bin. That is, in the embodiment of the present application, by setting the movable component 20, the movable component 20 can be moved so that the movable component 20 can selectively open at least one of the airways corresponding to at least two atomization bins, so that the switching use of at least two atomizations can be achieved, so that the user's experience of using the atomization device is improved.
[0095] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", 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. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner.
[0096] Although the embodiments of the present application have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present application, and that the scope of the present application is defined by the claims and their equivalents.
Claims
1. An atomizing device, characterized in that: The atomizing device comprises a housing, a movable assembly, at least two atomizing bins and a mounting bracket located in the housing; Each of the atomizing bins has an air passage therein, and at least two air passages are arranged on the mounting bracket, and each of the air passages is respectively connected to the air passage of one of the atomizing bins; The movable component is installed on the shell, and part of the movable component extends inside the shell, and the movable component is movable relative to the shell; During the process of the movable component switching between at least three positions, the shielding area of the air passage by the movable component changes, so as to selectively open at least one of the air passages corresponding to the at least two atomization bins.
2. The atomizing device according to claim 1, characterized in that: The at least two atomization bins include a first atomization bin and a second atomization bin; The first atomization bin has a first air passage, the second atomization bin has a second air passage, the mounting bracket is provided with a first air passage and a second air passage, the first air passage is communicated with the first air passage, and the second air passage is communicated with the second air passage; The movable component is installed on the shell, and part of the movable component extends inside the shell, and the movable component is movable relative to the shell; During the switching of the movable component among the first position, the second position and the third position, the shielding area of the first air passage and the second air passage by the movable component changes to selectively open at least one of the first air passage and the second air passage.
3. The atomizing device according to claim 2, characterized in that: When the movable component moves to the first position, the movable component blocks the first air passage to open the second air passage; When the movable component moves to the second position, the movable component blocks the second air passage to open the first air passage; When the movable component moves to the third position, the movable component releases the blocking of the first air passage and the second air passage to open the first air passage and the second air passage.
4. The atomizing device according to claim 3, characterized in that: The atomization device also includes a circuit board and a power supply; The circuit board and the power supply are located in the housing, a movable switch, a first electrode assembly and a second electrode assembly are arranged on the circuit board, the movable switch selectively conducts at least one of the first electrode assembly and the second electrode assembly to be electrically connected to the power supply, and the movable switch moves synchronously with the movable assembly; Wherein, the first electrode assembly is electrically connected to the first atomization chamber, and the second electrode assembly is electrically connected to the second atomization chamber.
5. The atomizing device according to claim 4, characterized in that: The movable switch is movable relative to the circuit board, and the movable switch is switchable between a first switch position, a second switch position, and a third switch position; When the movable component moves to the first position, the movable switch correspondingly moves to the first switch position, the first electrode component operates, and the second electrode component stops operating; When the movable component moves to the second position, the movable switch correspondingly moves to the second switch position, the second electrode component operates, and the first electrode component stops operating; When the movable component moves to the third position, the movable switch correspondingly moves to the third switch position, and the first electrode component and the second electrode component are both in operation.
6. The atomizing device according to claim 5, characterized in that: The third position is located between the first position and the second position, and the third switch position is located between the first switch position and the second switch position.
7. The atomizing device according to claim 5, characterized in that: The movable switch is connected to the movable component, and the movable component includes a button cap and a button connector; The key cap is connected to the key connector, the key connector is connected to the movable switch, and the key connector is movable relative to the housing; When the key cap drives the key connector to move to the first position, the key connector blocks the first air passage, and the key connector drives the movable switch to move to the first switch position; When the key cap drives the key connector to move to the second position, the key connector blocks the second air passage, and the key connector drives the movable switch to move to the second switch position; When the key cap drives the key connector to move to the third position, the key connector releases the shielding of the first air passage and the second air passage, and the key connector drives the movable switch to move to the third switch position.
8. The atomizing device according to claim 7, characterized in that: The button cap comprises a cap body and a hook arranged on the cap body, the button connector is provided with a hook hole, and the hook is hooked in the hook hole to connect the button cap with the button connector.
9. The atomizing device according to claim 8, characterized in that: The cap body is provided with a fixing column, the button connector is provided with a fixing hole, and the fixing column is embedded in the fixing hole.
10. The atomizing device according to claim 3, characterized in that: When the movable component moves to the third position, the movable component blocks a portion of the first air passage and a portion of the second air passage to open a portion of the first air passage and a portion of the second air passage.