Atomization bomb storage method, device and equipment, storage medium and program product

By adding a recycling bin to the device base of the atomizer device, automatic storage of atomizer cartridges is achieved when the device is turned off, solving the problems of manual disassembly and complex storage in the prior art, and improving storage efficiency and environmental protection performance.

CN120753442APending Publication Date: 2025-10-10GUANGDONG QISITECH CO LTD
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Patent Information

Application Number
CN202510855398.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

When replacing the atomizer cartridge, the existing atomizer equipment needs to be manually disassembled and stored, which makes the storage method complicated and inefficient, and lacks environmental protection performance.

Method used

A recovery bin is added to the device base of the atomizer device, and the recovery bin is automatically opened by receiving a trigger operation when the device is turned off, so that the atomizer cartridge falls into the recovery bin for storage.

Benefits of technology

It improves the efficiency of human-computer interaction, enriches the storage methods of atomizer cartridges, and improves environmental protection performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention is suitable for the technical field of atomizers, and provides an atomization bomb storage method, device and equipment, a storage medium and a program product, and the atomization bomb storage method comprises the steps that under the condition that the atomizer equipment is in a shutdown state, first triggering operation on the atomizer equipment is received; opening the recycling bin based on the first triggering operation; and under the condition that the recycling bin is in the open state, the first atomization bomb is triggered to fall into the recycling bin. By means of the mode of additionally arranging the recycling bin, when the atomizer equipment is in the shutdown state, the recycling bin is opened, operation is triggered to enable the atomization bombs to automatically fall into the recycling bin, the man-machine interaction efficiency is improved, the storage mode of the atomization bombs is enriched, and the environmental protection performance is improved.
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Description

Technical Field

[0001] The present application belongs to the technical field of atomization equipment, and in particular relates to a method, device, equipment, storage medium and program product for storing atomization cartridges. Background Art

[0002] During use of the atomizer device, the atomizer cartridge is electrically connected to the device base, and the device base is used to heat the atomizer cartridge, so that the atomizer cartridge generates an aerosol for the user to inhale.

[0003] In the related art, the atomizer cartridge is used after being electrically connected to the device base. If the aerosol-generating matrix in the atomizer cartridge is exhausted, a new atomizer cartridge needs to be replaced and the old one needs to be discarded.

[0004] Therefore, how to deal with the atomized cartridge after unpacking becomes a technical problem that needs to be solved urgently. Summary of the Invention

[0005] The embodiments of the present application provide a method, device, equipment, storage medium and program product for storing atomizer cartridges. By providing a recovery bin in the base of the device, the atomizer cartridges can automatically fall from the base of the device into the recovery bin under specified operations, thereby improving the efficiency of human-computer interaction.

[0006] In a first aspect, an embodiment of the present application provides an atomizer cartridge storage method, the method being applied to an atomizer device, the atomizer device comprising a device base and a first atomizer cartridge, the device base being provided with a recovery bin, the first atomizer cartridge being electrically connected to the device base, the recovery bin being used to store the atomizer cartridge; When the nebulizer device is in a powered-off state, receiving a first triggering operation on the nebulizer device; opening the recycling bin based on the first triggering operation; In response to receiving a second triggering operation on the first atomizing cartridge, the first atomizing cartridge is triggered to fall into the recovery bin.

[0007] Optionally, in some implementations of the first aspect, the atomizer device is provided with a first switch, the first switch being used to control an opening and closing state of the recovery bin, the opening and closing state including an open state or a closed state; The opening of the recycling bin based on the first triggering operation includes: Based on the triggering operation of the first switch, the recycling bin is opened.

[0008] Optionally, in some implementations of the first aspect, the recovery bin is provided with a first bin door, and the first bin door is located at a top position of the recovery bin when the recovery bin is in the closed state; The opening of the recovery bin based on the first switch includes: Based on the first switch, the first bin door is controlled to slide from the top position to the side position of the recovery bin pair.

[0009] Optionally, in some implementations of the first aspect, receiving a first triggering operation on the nebulizer device includes: In response to receiving a pressing operation on the first atomizing cartridge, and when the number of pressing operations reaches a preset number threshold, it is regarded as the first triggering operation.

[0010] Optionally, in some implementations of the first aspect, the method further includes: When the pressing operation does not reach the preset number threshold, a first prompt content is triggered, and the first prompt content is used to indicate that the recycling bin is not opened.

[0011] Optionally, in certain implementations of the first aspect, a second atomizing cartridge is stored in the recovery bin, and the recovery bin is provided with a second bin door, and the second bin door is located at the bottom of the recovery bin; The method further comprises: In response to receiving a third triggering operation on the recycling bin, starting the second bin door; When the second compartment door is in an open state, the second atomizing bomb is triggered to pop out from the second compartment door.

[0012] Optionally, in some implementations of the first aspect, the method further includes: Displaying the storage quantity of atomizer cartridges in the first area of ​​the atomizer device, wherein the storage quantity of atomizer cartridges is used to indicate the quantity of the atomizer cartridges currently stored in the recovery bin; When the first atomizer cartridge is triggered to fall into the recovery bin, the counting result corresponding to the storage quantity of the atomizer cartridges is synchronously updated.

[0013] Optionally, in some implementations of the first aspect, the method further includes: In response to receiving the first trigger operation on the atomizer device and the number of the atomizer cartridges stored in the recovery bin reaches a preset number threshold, a second prompt content is triggered, and the second prompt content is used to indicate that the recovery bin cannot store the first atomizer cartridge.

[0014] In a second aspect, an embodiment of the present application provides an atomizer cartridge storage device, comprising: A receiving module, configured to receive a first triggering operation on the atomizer device when the atomizer device is in a powered-off state, wherein the method is applied to the atomizer device, wherein the atomizer device includes a device base and a first atomizer cartridge, wherein the device base is provided with a recovery bin, wherein the first atomizer cartridge is electrically connected to the device base, and wherein the recovery bin is used to store the atomizer cartridge; an opening module, configured to open the recycling bin based on the first triggering operation; The trigger module is used to trigger the first atomization bomb to fall into the recovery bin when the recovery bin is in an open state.

[0015] In a third aspect, an embodiment of the present application provides a computer device comprising: a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the computer program, the atomizer cartridge storage method described in any one of the first aspects above is implemented.

[0016] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, wherein the computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the atomizer cartridge storage method described in any one of the first aspects is implemented.

[0017] In a fifth aspect, an embodiment of the present application provides a computer program product. When the computer program product is run on a computer device, the computer device executes the atomizer cartridge storage method described in any one of the first aspects above.

[0018] It can be understood that the beneficial effects of the second to fifth aspects mentioned above can be found in the relevant description of the first aspect mentioned above, and will not be repeated here.

[0019] The beneficial effects of the technical solutions provided in the embodiments of the present application include at least: In the case of adding a recycling bin to the device base, if the atomizer device is in the off state and the first trigger operation of the atomizer device is received, the recycling bin is opened, and the first atomizer cartridge is triggered to fall into the recycling bin. In other words, by adding a recycling bin, when the atomizer device is in the off state, the recycling bin is opened, and the trigger operation causes the atomizer cartridge to automatically fall into the recycling bin, thereby improving the efficiency of human-computer interaction, enriching the storage methods of atomizer cartridges, and improving environmental performance. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0021] Figure 1 is a schematic diagram of a storage method of an aerosolizing bullet provided by an embodiment of the present application; Figure 2 is a flow chart of a storage method of an aerosolizing bullet provided by an embodiment of the present application; Figure 3 is a flow chart of a storage method of an aerosolizing bullet provided by an embodiment of the present application; Figure 4 is a structure diagram of a recycling bin provided by an embodiment of the present application; Figure 5 is a flow chart of a storage method of an aerosolizing bullet provided by an embodiment of the present application; Figure 6 is a structure diagram of a storage device of an aerosolizing bullet provided by an embodiment of the present application; Figure 7 is a structure diagram of a computer device provided by an embodiment of the present application. DETAILED DESCRIPTION

[0022] In the following description, for purposes of explanation and not limitation, specific details are set forth, such as particular system configurations, techniques, etc., in order to provide a thorough understanding of the embodiments of the present application. However, it will be apparent to those skilled in the art that the present application can be practiced in other embodiments that depart from these specific details. In other instances, detailed descriptions of well-known systems, devices, circuits, and methods are omitted so as not to obscure the description of the present application with unnecessary detail.

[0023] It should be understood that the term "comprises" when used in this specification and the appended claims specifies the presence of stated features, integers, steps, operations, elements, and / or components, but does not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof.

[0024] It should also be understood that the term "and / or" when used in this specification and the appended claims, unless otherwise stated, means one or both of the listed terms can be employed in the combination.

[0025] As used in this specification and the appended claims, the term "if' can, unless otherwise indicated, be construed to mean "when" or "upon" or "in response to determining" or "in response to detecting," rather than "prior to determining" or "prior to detecting." Similarly, the phrases "if determined" or "if detected" can, unless otherwise indicated, be construed to mean "upon determining" or "in response to determining" or "upon detecting" or "in response to detecting" the described condition or event.

[0026] In addition, in the description of the present application and the appended claims, the terms "first", "second", "third", etc. are used only to distinguish descriptions and cannot be understood as indicating or implying relative importance.

[0027] In the present application, the reference to "one embodiment" or "some embodiments" means that the specific features, structures or characteristics described in connection with the embodiment are included in one or more embodiments of the present application. Therefore, the statements "in one embodiment", "in some embodiments", "in other some embodiments", "in further some embodiments" and the like appearing in different places in the specification are not necessarily all referring to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized. The terms "include", "contain", "have" and their variants mean "including but not limited to", unless otherwise specifically emphasized.

[0028] In the related art, since the device base and the atomizing cartridge are packaged separately when leaving the factory, after the atomizing cartridge is unpacked and electrically connected with the device base, if there is no need to puff the atomizer device, the atomizing cartridge cannot be properly placed after being disconnected from the device base. Therefore, the user usually needs to purchase an atomizing cartridge storage device separately for placing the unpacked atomizing cartridge, which increases the device cost, and the user needs to manually place the atomizing cartridge in the atomizing cartridge storage device after disassembling it from the device base, which makes the storage of the atomizing cartridge more complicated and less efficient.

[0029] Based on this, the present application provides an atomizing cartridge storage method. In the case of adding a recovery bin to the device base, if the atomizer device is in a powered-off state and a first trigger operation of the atomizer device is performed, the recovery bin is opened, and the first atomizing cartridge is triggered to fall into the recovery bin. That is, by adding a recovery bin, the recovery bin is opened when the atomizer device is in a powered-off state, and the trigger operation causes the atomizing cartridge to automatically fall into the recovery bin, which improves the human-machine interaction efficiency and enriches the storage method of the atomizing cartridge and improves the environmental protection performance.

[0030] For illustration, please refer to Figure 1 which shows an atomizing cartridge storage method provided by an example embodiment of the present application, as shown in Figure 1As shown, the nebulizer device includes a device base and a first atomizer cartridge 110, wherein the device base includes a recovery bin 120. At this time, the recovery bin 120 is in a closed state. When the nebulizer device is in a shut-down state, if a first trigger operation on the nebulizer device is received, the recovery bin 120 is opened based on the first trigger operation, so that the recovery bin 120 is in an open state. At this time, when the recovery bin 120 is in an open state, the first atomizer cartridge 110 is triggered to fall into the recovery bin 120, thereby realizing that the recovery bin 120 stores the first atomizer cartridge 110.

[0031] The following is a detailed description of the atomizer cartridge storage method provided in the embodiment of the present application. For schematic illustration, please refer to Figure 2 , which shows a flow chart of an atomizer cartridge storage method provided by an exemplary embodiment of the present application, the method includes the following steps 210 to 230.

[0032] Step 210: When the nebulizer device is in a shutdown state, a first triggering operation on the nebulizer device is received.

[0033] The atomizer device includes a device base and a first atomizer cartridge. A recovery bin is provided in the device base. The first atomizer cartridge is electrically connected to the device base. The recovery bin is used to store the atomizer cartridge.

[0034] Schematically, after the power of the atomizer device is started, the battery assembly provides electrical energy to the heating element in the atomizer device to make it heat up. After the heating element heats up, the heat is transferred to the atomizer cartridge, causing the aerosol matrix in the atomizer cartridge to reach the boiling point and atomize, generating a suspended aerosol for the user to inhale.

[0035] Schematically, a first electrode contact is provided on the outside of the first atomizer bomb, and a second electrode contact is provided on the inside of the device base. When the first atomizer bomb and the device base are in a connected state, the first electrode contact and the second electrode contact contact each other to form a current path, so that electrical conduction is achieved between the first atomizer bomb and the device base, completing the electrical connection.

[0036] Optionally, the connection between the atomizer cartridge and the device base includes at least one of the following methods: The first type is magnetic connection. That is, the bottom of the atomizer cartridge is usually equipped with a magnet, and the corresponding position on the device base is also equipped with a magnet, or a metal part that can be attracted by the magnet. When the atomizer cartridge is close to the device base, the attraction between the magnets will automatically attract the atomizer cartridge to the device base, completing the connection. The second type is the snap-on connection. This means the cartridge and the device base are each designed with matching snap-on structures, such as protrusions and grooves. During installation, align the snap on the cartridge with the groove on the device base and press firmly until the snap fits into the groove, completing the connection. The third type is a threaded connection. This means the bottom of the cartridge has external threads, and the top of the device base has internal threads. When installing, align the cartridge's external threads with the device base's internal threads. Then, rotate the cartridge clockwise until it's tightened, completing the connection.

[0037] It is worth noting that the above-mentioned connection method between the atomizer cartridge and the device base is only an illustrative example and is not limited to this embodiment of the present application.

[0038] Schematically, the recovery bin is a device for storing atomizer cartridges. For example, when the aerosol matrix in the atomizer cartridge is used up, the used atomizer cartridge can be stored in the recovery bin. For another example, when the user has no need for suction, the atomizer cartridge that has been unpacked but has not been exhausted can be temporarily stored in the recovery bin. When there is a need for suction, the atomizer cartridge can be taken out of the recovery bin and electrically connected to the device base to perform the suction operation.

[0039] Optionally, the design of the recycling bin includes at least one of the following methods: The first type: the recycling bin is an external structure of the equipment base, that is, the recycling bin is located outside the equipment base; The second type: the recovery bin is a built-in structure of the equipment base, that is, a cavity is provided in the equipment base as the recovery bin; The third type: the recovery bin is a detachable device of the device base, that is, the recovery bin can be installed at a designated position of the device base, and can also be removed from the designated position of the device base as an independent device.

[0040] It is worth noting that the above-mentioned design scheme for the recycling bin is only an illustrative example and is not limited to this embodiment of the present application.

[0041] Illustratively, the nebulizer device being in the off state means that a suction operation cannot be performed through the nebulizer cartridge.

[0042] Optionally, the shutdown state is triggered by at least one of the following methods: The first type: the atomizer cartridge is electrically connected to the device base. When the aerosol matrix in the atomizer cartridge is exhausted, the atomizer device is turned off. The second type is that the atomizer cartridge is electrically connected to the device base, but no start-up operation is received on the device base. In this case, the atomizer device is in the off state. The third type is when the battery power of the device base is lower than the preset power threshold, the device base cannot provide power to the atomizer cartridge, and the atomizer device is in the shutdown state; The fourth type is that the atomizer cartridge is electrically connected to the device base, and the atomizer device receives a shutdown operation. At this time, the atomizer device receiving the shutdown operation is in a shutdown state; The fifth type is that when the atomizer cartridge is electrically connected to the device base and no puffing operation is received for a predetermined time threshold, the atomizer device automatically shuts down. The sixth type is that the atomizer cartridge is electrically connected to the device base, and when the duration of the atomizer device being in the startup state reaches a preset time threshold, the atomizer device is automatically shut down.

[0043] It is worth noting that the above-mentioned method for triggering the shutdown state is only an illustrative example and is not limited to this embodiment of the present application.

[0044] Optionally, the first triggering operation is a triggering operation on the atomizing cartridge, for example, pressing the atomizing cartridge; or, the first triggering operation is a triggering operation on the device base.

[0045] Step 220: Open the recycling bin based on the first trigger operation.

[0046] Illustratively, the first trigger operation is used to open the recovery bin.

[0047] Optionally, the triggering mode of the first triggering operation includes at least one of the following modes: The first type: The atomizer device is provided with a switch control, which is used to control the opening and closing of the recovery bin. The recovery bin is opened by triggering the switch control; The second type: the atomizer device has a voice input function. When the atomizer device receives the voice content "open the recycling bin", it serves as the first trigger operation; The third type: the recycling bin is provided with a bin door. When the bin door receives a sliding operation, the bin door can be slid to a certain position from the recycling bin to open the recycling bin.

[0048] It is worth noting that the above-mentioned triggering method for the first triggering operation is only an illustrative example and is not limited to this embodiment of the present application.

[0049] Optionally, the state change of the recycling bin includes at least one of the following ways: The first type: when the atomizer device receives the first trigger operation, the recovery bin remains in the open state until the atomizer device receives the fourth trigger operation, in which case the recovery bin is adjusted from the open state to the closed state; The second method is that when the atomizer device receives the first trigger operation, the recycling bin is in the open state. After a specified period of time, the recycling bin automatically adjusts from the open state to the closed state. The third type: when the atomizer device receives the first trigger operation, the recovery bin is in the open state. At this time, if an atomizer cartridge falls into the recovery bin, the recovery bin is automatically adjusted from the open state to the closed state.

[0050] It is worth noting that the above-mentioned state change mode of the recycling bin is only an illustrative example and is not limited to this embodiment of the present application.

[0051] Step 230: When the recovery bin is in an open state, trigger the first atomizer bomb to fall into the recovery bin.

[0052] Schematically, after the first atomizer cartridge falls into the recovery bin, the electrical connection with the device base is disconnected. At this time, the atomizer device cannot perform the suction process.

[0053] Optionally, the first atomized bullet falls into the air in at least one of the following ways: The first type: the first atomized cartridge automatically falls into the recovery bin; The second method: After the recovery chamber is opened, slide the first atomizer cartridge into the recovery chamber; The third method: After the recovery chamber is opened, manually disconnect the first atomizer cartridge from the device base and insert the first atomizer cartridge into the recovery chamber; The fourth method: after the recovery bin is opened, the atomizer device is shaken, and the first atomizer cartridge is disconnected from the device base by the shaking operation, and falls into the recovery bin.

[0054] It is worth noting that the above-mentioned manner in which the first atomizing bullet falls is merely an illustrative example and is not limited to this embodiment of the present application.

[0055] Optionally, one or more atomizing cartridges may be stored in the recovery bin, which is not limited in the embodiment of the present application.

[0056] Among them, when there are multiple atomizer cartridges stored in the recycling bin, there is an upper limit on the storage quantity of the atomizer cartridges in the recycling bin. That is to say, if the storage quantity of the atomizer cartridges in the recycling bin reaches a preset quantity threshold, the recycling bin can no longer store new atomizer cartridges.

[0057] The atomizer cartridge storage method provided in the embodiment of the present application, in which a recovery bin is added to the device base, opens the recovery bin when the atomizer device is in the off state and a first trigger operation is received on the atomizer device, triggering the first atomizer cartridge to fall into the recovery bin. In other words, by adding the recovery bin, when the atomizer device is in the off state, the recovery bin is opened, and the trigger operation causes the atomizer cartridge to automatically fall into the recovery bin, thereby improving the efficiency of human-computer interaction, enriching the storage methods of atomizer cartridges, and enhancing environmental performance.

[0058] Below, we will explain in detail how to start the recycling bin. For reference, Figure 3 , which shows a flow chart of an atomizer cartridge storage method provided by an exemplary embodiment of the present application, that is, step 220 also includes step 221.

[0059] Step 210: When the nebulizer device is in a shutdown state, a first triggering operation on the nebulizer device is received.

[0060] In one feasible manner, the operating time of the nebulizer device is detected at specified time intervals. If the operating time of the nebulizer device reaches a preset time threshold (for example, 270 seconds), the nebulizer device is automatically adjusted from the on state to the off state. Therefore, when it is detected that the operating time reaches the time threshold, it is determined that the nebulizer device is in the off state.

[0061] In another achievable embodiment, a first control is provided in the atomizer device. When the atomizer cartridge is electrically connected to the device base, if a shutdown operation of the atomizer device is received (for example, a triggering operation on the first control), it is determined that the atomizer device is in the shutdown state. For example, when a pressing operation on the first control is received and the pressing operation lasts for 5 seconds, it is considered that the atomizer device is adjusted from the power-on state to the power-off state.

[0062] In some embodiments, in response to receiving a pressing operation on the first atomizing cartridge, when the number of pressing operations reaches a preset number threshold, it is used as the first triggering operation.

[0063] Optionally, the pressing operation includes pressing the first nebulizer downward; or, pressing the first nebulizer to the left; or, pressing the first nebulizer to the right; or, pressing the first nebulizer forward; or, pressing the first nebulizer backward.

[0064] Optionally, when multiple pressing operations are performed, the operation types corresponding to the multiple pressing operations are the same; or, there are at least two pressing operations with different operation types, for example: three pressing operations are performed, wherein two are downward pressing operations on the first atomizer and one is pressing operation to the right of the first atomizer.

[0065] In this embodiment, when the nebulizer device is in the off state, when a pressing operation on the first atomizer cartridge is received and the number of pressing operations reaches a preset threshold, the pressing operation is used as the first trigger operation to open the recovery bin, so that the first atomizer cartridge falls into the recovery bin.

[0066] For illustration, please refer to Figure 4, which shows a schematic diagram of the recycling bin structure provided by an exemplary embodiment of the present application, such as Figure 4 As shown, the atomizer device 400 is currently displayed, which includes an atomizer bomb 410 and a device base 420. A recovery bin 421 is provided at the bottom of the device base 420, wherein the recovery bin 421 is a built-in structure of the device base 420.

[0067] In some embodiments, when the number of pressing operations does not reach a preset number threshold, a first prompt content is triggered, and the first prompt content is used to indicate that the recycling bin is not opened.

[0068] Illustratively, when a press operation is received but the number of press operations does not reach a preset threshold, the recycling bin cannot be opened. Therefore, the first prompt content is triggered to remind the user that the current recycling bin is in an unopened state (i.e., closed state).

[0069] In this embodiment, taking the preset number threshold of 5 times as an example, if 3 pressing operations on the atomizer cartridge are received, which does not reach 5 times, the vibration effect of the atomizer device is triggered (for example, 3 consecutive vibrations) to remind the user that the recovery bin in the current atomizer device is not opened and is still in a closed state.

[0070] Step 221: Open the recycling bin based on the triggering operation of the first switch.

[0071] Among them, the atomizer device is provided with a first switch, and the first switch is used to control the opening and closing state of the recovery bin, and the opening and closing state includes an open state or a closed state.

[0072] In one practicable manner, a first switch is provided in the atomizer device, and the first switch is used to control the opening and closing states of the recovery bin.

[0073] In one example, when a trigger operation on the first switch is received, the recycling bin is controlled by the first switch to be adjusted from a closed state to an open state.

[0074] In this embodiment, if a pressing operation is performed on the atomizer cartridge, the recovery bin is activated according to the pressing operation. At this time, the atomizer cartridge is regarded as the first switch; or, an independent switch control is provided in the atomizer device, and the switch control is triggered to control the opening of the recovery bin, and then a pressing operation is performed on the atomizer cartridge, and the atomizer cartridge falls into the recovery bin after being pressed; or, an independent switch control is provided in the atomizer device, and a pressing operation is performed on the atomizer cartridge, and the switch control is triggered according to the pressing operation, and then the switch control is used to control the opening of the recovery bin.

[0075] In some embodiments, the recycling bin is provided with a first bin door, which is located at the top position of the recycling bin when the recycling bin is in a closed state; the first bin door is controlled to slide from the top position to the side position of the recycling bin based on the first switch.

[0076] In this embodiment, in a feasible manner, the recycling bin is provided with a first bin door. When the recycling bin is in a closed state, the first bin door is located at the top position of the recycling bin. If a trigger operation of the first switch is received, the first bin door is slid from the top position of the recycling bin to the side position of the recycling bin according to the trigger operation. At this time, there is no bin door at the top position of the recycling bin, and therefore, the recycling bin is in an open state.

[0077] In this embodiment, in another feasible manner, the recycling bin is provided with a first bin door, which includes a left door and a right door. When the recycling bin is in a closed state, the left door and the right door are in a closed state at the top position of the recycling bin. If a triggering operation of the first switch is received, the left door of the first bin door slides toward the left position of the recycling bin and the right door of the first bin door slides toward the right position of the recycling bin according to the triggering operation. Thus, there is a gap between the left door and the right door, and therefore, the recycling bin is in an open state.

[0078] In some embodiments, a second atomizing cartridge is stored in the recovery bin, and the recovery bin is provided with a second bin door, which is located at the bottom of the recovery bin; in response to receiving a second triggering operation on the recovery bin, the second bin door is started; when the second bin door is in the open state, the second atomizing cartridge is triggered to pop out from the second bin door.

[0079] In this embodiment, in addition to receiving and storing atomizer cartridges, the recycling bin can also eject atomizer cartridges from the recycling bin. Taking the case where a second atomizer cartridge is stored in the recycling bin as an example, the recycling bin is provided with a second bin door in addition to the first bin door. The second bin door is located at the bottom of the recycling bin. When a second trigger operation is received for the recycling bin, for example, a second control is provided near the bottom of the atomizer base. When a trigger operation for the second control is received (for example, long pressing the second control for 4 seconds), the second bin door of the recycling bin is opened. When the second bin door of the recycling bin is in the open state, the second atomizer cartridge is triggered to eject from the second bin door.

[0080] Optionally, when the second compartment door is in the open state, one atomizing cartridge is ejected at a time; or, multiple atomizing cartridges may be ejected at a time.

[0081] In some embodiments, the storage quantity of atomizer cartridges is displayed in the first area of ​​the atomizer device, and the storage quantity of atomizer cartridges is used to indicate the number of atomizer cartridges currently stored in the recovery bin; when the first atomizer cartridge is triggered to fall into the recovery bin, the counting result corresponding to the storage quantity of atomizer cartridges is synchronously updated.

[0082] Schematically, a first area is provided in the atomizer device, and the first area is used to display the number of atomizer cartridges stored. That is, the first area displays the number of atomizer cartridges currently stored in the recovery bin in real time. When a new atomizer cartridge falls into the recovery bin, the displayed atomizer cartridge storage number is updated and incremented by one. For example, if the recovery bin currently stores two atomizer cartridges, the atomizer cartridge storage number displayed in the first area of ​​the atomizer device is "2". When the first atomizer cartridge falls into the recovery bin, the number of atomizer cartridges stored in the recovery bin is updated to 3, and the atomizer cartridge storage number displayed in the first area is updated to "3".

[0083] Optionally, each time an atomizer cartridge falls into the recovery bin, the storage quantity of the atomizer cartridges is updated and displayed plus one count result; or, when there are multiple atomizer cartridges falling into the recovery bin, the last atomizer cartridge falling into the recovery bin is used as a basis, and the storage quantity of the atomizer cartridges is synchronously updated and displayed according to the number of atomizer cartridges falling into the recovery bin. For example: the current recovery bin stores 2 atomizer cartridges, therefore, the storage quantity of the atomizer cartridges is displayed as "2" in the first area of ​​the atomizer device. When 3 atomizer cartridges fall into the recovery bin in succession, at this time, after the last atomizer cartridge falls into the recovery bin, the storage quantity of the atomizer cartridges displayed in the first area is updated from "2" to "5".

[0084] In some embodiments, in response to receiving a first trigger operation on the nebulizer device and the number of atomizer cartridges stored in the recovery bin reaches a preset number threshold, a second prompt content is triggered, and the second prompt content is used to indicate that the recovery bin cannot store the first atomizer cartridge.

[0085] In this embodiment, when the first trigger operation is received, but the number of atomizer cartridges stored in the recovery bin reaches a preset threshold, the second prompt content is triggered to remind the user that the current recovery bin is full of atomizer cartridges and cannot store the first atomizer cartridge.

[0086] The atomizer cartridge storage method provided in the embodiment of the present application, in which a recovery bin is added to the device base, opens the recovery bin when the atomizer device is in the off state and a first trigger operation is received on the atomizer device, triggering the first atomizer cartridge to fall into the recovery bin. In other words, by adding the recovery bin, when the atomizer device is in the off state, the recovery bin is opened, and the trigger operation causes the atomizer cartridge to automatically fall into the recovery bin, thereby improving the efficiency of human-computer interaction, enriching the storage methods of atomizer cartridges, and enhancing environmental performance.

[0087] Below is a detailed description of the storage method of the atomizer cartridge. For schematic purposes, please refer to Figure 5 , which shows a flow chart of a method for storing an atomized cartridge provided by an exemplary embodiment of the present application, such as Figure 5 As shown, the method includes the following steps.

[0088] Step 510, set the recycling bin and switch control.

[0089] In the device base of the atomizer device, a recycling bin structure is additionally arranged, and a switch control is arranged, wherein the recycling bin is used for storing the atomization cartridge, and the switch control is used for controlling the opening state or the closing state of the recycling bin.

[0090] Step 520, configure the function module.

[0091] The atomizer device is programmed with a function application program, which is used for program compilation of various function modules of the atomizer device, such as indicator light display function, voice control function, display function, heating function, motor vibration function, charging and discharging function, voltage acquisition function, clock timing function, negative temperature coefficient thermistor (NTC) failure function (used for detecting or processing NTC failure), switch module, etc.

[0092] The switch module is used for controlling the opening state or the closing state of the switch control.

[0093] Step 530, start the atomizer device.

[0094] When the atomization cartridge is electrically connected with the device base, if a start operation of the atomizer device is received, the atomizer device is started, and the device base is used for heating the atomization cartridge, so as to realize the smoking process.

[0095] The program detects the current running duration of the atomizer device in real time, if the running duration reaches the pre-set 270 seconds, the atomizer device is automatically adjusted to the shutdown state; or if it is detected that the atomizer device receives a shutdown operation, it is determined that the atomizer device is adjusted from the running state to the shutdown state, at this time, step 540 is executed, otherwise, step 570 is executed.

[0096] Step 540, the smoking process is ended.

[0097] In the case where it is determined that the atomizer device is in the shutdown state, it indicates that the user has completed the smoking.

[0098] When the atomization cartridge receives a downward pressing operation, and the operation duration of a single pressing operation is less than 2 seconds, and the operation duration between adjacent two pressing operations is 5 seconds, step 550 is executed, otherwise, step 580 is executed.

[0099] Step 550, open the first switch.

[0100] When the atomization cartridge receives a downward pressing operation, and the operation duration of a single pressing operation is less than 2 seconds, and the operation duration between adjacent two pressing operations is 5 seconds, the switch control is opened, so as to control the opening of the recycling bin.

[0101] Step 560: Press the atomizer to drop it into the recovery bin.

[0102] If the atomizing cartridge is pressed downward again at this time, the atomizing cartridge falls into the recovery bin.

[0103] Step 570: Continue using without any further processing.

[0104] The program detects the current operating time of the nebulizer device in real time. If the operating time does not reach the preset 270 seconds, the nebulizer device is not in the shutdown state; or, if it is detected that the nebulizer device has not received the shutdown operation, it is determined that the nebulizer device is in the running state. At this time, the user can continue to use the nebulizer device without taking any action.

[0105] Step 580: Alert the user.

[0106] When the atomizer cartridge does not receive a downward press operation, or the operation duration of a single press operation is greater than 2 seconds, or the operation duration between two adjacent press operations is 5 seconds, a prompt content is triggered, and the user is prompted that the atomizer cartridge failed to fall into the recovery bin and needs to try again.

[0107] Step 590, end.

[0108] The atomizer cartridge storage method provided in the embodiment of the present application, in which a recovery bin is added to the device base, opens the recovery bin when the atomizer device is in the off state and a first trigger operation is received on the atomizer device, triggering the first atomizer cartridge to fall into the recovery bin. In other words, by adding the recovery bin, when the atomizer device is in the off state, the recovery bin is opened, and the trigger operation causes the atomizer cartridge to automatically fall into the recovery bin, thereby improving the efficiency of human-computer interaction, enriching the storage methods of atomizer cartridges, and enhancing environmental performance.

[0109] For illustration, please refer to Figure 6 , which shows a schematic diagram of an atomizer cartridge storage device provided by an exemplary embodiment of the present application, wherein the atomizer cartridge storage device may specifically include the following modules: A receiving module 610 is configured to receive a first triggering operation on the nebulizer device when the nebulizer device is in a powered-off state, wherein the method is applied to the nebulizer device, wherein the nebulizer device includes a device base and a first atomizer cartridge, wherein the device base is provided with a recovery bin, wherein the first atomizer cartridge is electrically connected to the device base, and wherein the recovery bin is used to store the atomizer cartridge; An opening module 620 is configured to open the recycling bin based on the first triggering operation; The trigger module 630 is used to trigger the first atomizer bomb to fall into the recovery bin when the recovery bin is in an open state.

[0110] Optionally, the atomizer device is provided with a first switch, and the first switch is used to control the opening and closing state of the recovery bin, and the opening and closing state includes an open state or a closed state; The opening module 620 is configured to open the recycling bin based on a triggering operation on the first switch.

[0111] Optionally, the recycling bin is provided with a first bin door, and the first bin door is located at the top position of the recycling bin when the recycling bin is in the closed state; The opening module 620 is configured to control the first door to slide from the top position to the side position of the recovery bin based on the first switch.

[0112] Optionally, the receiving module 610 is configured to respond to receiving a pressing operation on the first atomizing cartridge and, when the number of pressing operations reaches a preset number threshold, use the pressing operation as the first triggering operation.

[0113] Optionally, the opening module 620 is configured to trigger a first prompt content when the number of pressing operations does not reach the preset number threshold, where the first prompt content is used to indicate that the recycling bin is not opened.

[0114] Optionally, a second atomizing cartridge is stored in the recovery bin, and the recovery bin is provided with a second bin door, and the second bin door is located at the bottom of the recovery bin; The opening module 620 is configured to activate the second door in response to receiving a second triggering operation on the recycling bin; and trigger the second atomizer cartridge to pop out of the second door when the second door is in the open state.

[0115] Optionally, the opening module 620 is used to display the storage quantity of atomizer cartridges in the first area of ​​the atomizer device, and the storage quantity of atomizer cartridges is used to indicate the number of atomizer cartridges currently stored in the recovery bin; when the first atomizer cartridge is triggered to fall into the recovery bin, the counting result corresponding to the storage quantity of atomizer cartridges is synchronously updated.

[0116] Optionally, the opening module 620 is used to trigger a second prompt content in response to receiving the first trigger operation on the nebulizer device and the number of the atomizer cartridges stored in the recovery bin reaches a preset number threshold, and the second prompt content is used to indicate that the recovery bin cannot store the first atomizer cartridge.

[0117] In the atomizer cartridge storage device provided in the embodiment of the present application, a recovery bin is added to the device base. When the atomizer device is in the off state and a first trigger operation is received on the atomizer device, the recovery bin is opened, triggering the first atomizer cartridge to fall into the recovery bin. In other words, by adding the recovery bin, when the atomizer device is in the off state, the recovery bin is opened, and the trigger operation causes the atomizer cartridge to automatically fall into the recovery bin, thereby improving the efficiency of human-computer interaction, enriching the storage methods of atomizer cartridges, and enhancing environmental performance.

[0118] See also Figure 7 , shows a schematic diagram of the structure of the computer device provided in the embodiment of the present application. Figure 7 As shown, the computer device 1000 of this embodiment includes: at least one processor 1010 ( Figure 7 Only one is shown in the figure) a processor, a memory 1020, and a computer program 1021 stored in the memory 1020 and executable on at least one processor 1010. When the processor 1010 executes the computer program 1021, the steps in the above-mentioned atomizing cartridge storage method embodiment are implemented.

[0119] The computer device 1000 may be a desktop computer, a notebook computer, a PDA, a cloud server, or other computing devices. The terminal device may include, but is not limited to, a processor 1010 and a memory 1020. Those skilled in the art will appreciate that Figure 7 This is merely an example of the computer device 1000 and does not constitute a limitation on the computer device 1000 . The computer device 1000 may include more or fewer components than shown in the figure, or a combination of certain components, or different components. For example, the computer device 1000 may also include input and output devices, network access devices, etc.

[0120] The processor 1010 may be a central processing unit (CPU), or may be another general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), an off-the-shelf programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components. A general-purpose processor may be a microprocessor or any conventional processor.

[0121] In some embodiments, the memory 1020 may be an internal storage unit of the computer device 1000, such as a hard drive or memory of the computer device 1000. In other embodiments, the memory 1020 may also be an external storage device of the computer device 1000, such as a plug-in hard drive, a Smart Media Card (SMC), a Secure Digital (SD) card, a flash memory card, etc. equipped on the computer device 1000. Furthermore, the memory 1020 may include both an internal storage unit of the computer device 1000 and an external storage device. The memory 1020 is used to store an operating system, application programs, a boot loader, data, and other programs, such as the program code of a computer program. The memory 1020 may also be used to temporarily store data that has been output or is about to be output.

[0122] Those skilled in the art can clearly understand that, for the convenience and brevity of description, only the division of the above-mentioned functional units and modules is used as an example for illustration. In actual applications, the above-mentioned functions can be distributed and completed by different functional units and modules as needed, that is, the internal structure of the device can be divided into different functional units or modules to complete all or part of the functions described above. The functional units and modules in the embodiment can be integrated into one processing unit, or each unit can exist physically alone, or two or more units can be integrated into one unit. The above-mentioned integrated unit can be implemented in the form of hardware or in the form of software functional units. In addition, the specific names of the functional units and modules are only for the convenience of distinguishing each other, and are not used to limit the scope of protection of this application. The specific working process of the units and modules in the above-mentioned system can refer to the corresponding process in the aforementioned method embodiment, and will not be repeated here.

[0123] In the above embodiments, the description of each embodiment has its own focus. For parts that are not described or recorded in detail in a certain embodiment, reference can be made to the relevant description of other embodiments.

[0124] Those skilled in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional and technical personnel can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.

[0125] In the embodiments provided in this application, it should be understood that the disclosed apparatus / computer equipment and methods can be implemented in other ways. For example, the apparatus / computer equipment embodiments described above are merely schematic. For example, the division of modules or units is merely a logical function division. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of the apparatus or unit, which can be electrical, mechanical or other forms.

[0126] Units described as separate components may or may not be physically separate, and components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.

[0127] In addition, the functional units in the various embodiments of the present application may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.

[0128] If the integrated module / unit is implemented as a software functional unit and sold or used as a standalone product, it can be stored in a computer-readable storage medium. Based on this understanding, the present application can implement all or part of the process steps in the above-mentioned method embodiments by using a computer program to instruct the relevant hardware. The computer program can be stored in a computer-readable storage medium. When executed by a processor, the computer program can implement the steps of each of the above-mentioned method embodiments. The computer program includes computer program code, which can be in source code form, object code form, executable file, or some intermediate form. Computer-readable media can include: any entity or device capable of carrying computer program code, recording media, USB flash drives, removable hard drives, magnetic disks, optical disks, computer memory, read-only memory (ROM), random access memory (RAM), electrical carrier signals, telecommunications signals, and software distribution media. It should be noted that the content included in computer-readable media can be appropriately increased or decreased based on the requirements of legislation and patent practice in a jurisdiction. For example, in some jurisdictions, based on legislation and patent practice, computer-readable media does not include electrical carrier signals and telecommunications signals.

[0129] In an embodiment, the method can be implemented by a computer device. The computer device can include a memory and a processor. The memory can store a computer program. The processor can be configured to execute the computer program. The computer program can include instructions. The instructions can be configured to cause the computer device to perform the steps of the above method embodiments.

[0130] The above embodiments are only used to illustrate the technical solutions of the present application, but not limit the present application. Although the present application is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalent replacements; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should be included in the protection scope of the present application.

Claims

1. A method for storing an atomized cartridge, characterized in that: The method is applied to an atomizer device, which includes a device base and a first atomizer cartridge. The device base is provided with a recovery bin, the first atomizer cartridge is electrically connected to the device base, and the recovery bin is used to store the atomizer cartridge. When the nebulizer device is in a powered-off state, receiving a first triggering operation on the nebulizer device; opening the recycling bin based on the first triggering operation; When the recovery bin is in an open state, the first atomization bomb is triggered to fall into the recovery bin.

2. The method according to claim 1, characterized in that The atomizer device is provided with a first switch, and the first switch is used to control the opening and closing state of the recovery bin, and the opening and closing state includes an open state or a closed state; The opening of the recycling bin based on the first triggering operation includes: Based on the triggering operation of the first switch, the recycling bin is opened.

3. The method according to claim 2, characterized in that The recycling bin is provided with a first bin door, and the first bin door is located at the top position of the recycling bin when the recycling bin is in the closed state; The step of opening the recycling bin based on the triggering operation of the first switch includes: The first door is controlled to slide from the top position to the side position of the recovery bin based on the first switch.

4. The method according to any one of claims 1 to 3, characterized in that The receiving a first triggering operation on the atomizer device includes: In response to receiving a pressing operation on the first atomizing cartridge, and when the number of pressing operations reaches a preset number threshold, it is regarded as the first triggering operation.

5. The method according to claim 4, characterized in that The method further comprises: When the number of pressing operations does not reach the preset number threshold, a first prompt content is triggered, and the first prompt content is used to indicate that the recycling bin is not opened.

6. The method according to any one of claims 1 to 3, characterized in that: The recovery bin stores a second atomizing cartridge, and the recovery bin is provided with a second bin door, which is located at the bottom of the recovery bin; The method further comprises: In response to receiving a second triggering operation on the recycling bin, starting the second bin door; When the second compartment door is in an open state, the second atomizing bomb is triggered to pop out from the second compartment door.

7. The method according to any one of claims 1 to 3, characterized in that: The method further comprises: Displaying the storage quantity of atomizer cartridges in the first area of ​​the atomizer device, wherein the storage quantity of atomizer cartridges is used to indicate the quantity of the atomizer cartridges currently stored in the recovery bin; When the first atomizer cartridge is triggered to fall into the recovery bin, the counting result corresponding to the storage quantity of the atomizer cartridges is synchronously updated.

8. The method according to claim 7, characterized in that The method further comprises: In response to receiving the first trigger operation on the atomizer device and the number of the atomizer cartridges stored in the recovery bin reaches a preset number threshold, a second prompt content is triggered, and the second prompt content is used to indicate that the recovery bin cannot store the first atomizer cartridge.

9. An atomized cartridge storage device, characterized in that: The device comprises: a receiving module, configured to receive a first triggering operation on the atomizer device when the atomizer device is in a powered-off state, wherein the atomizer device includes a device base and a first atomizer cartridge, the device base is provided with a recovery bin, the first atomizer cartridge is electrically connected to the device base, and the recovery bin is used to store the atomizer cartridge; an opening module, configured to open the recycling bin based on the first triggering operation; The trigger module is used to trigger the first atomization bomb to fall into the recovery bin when the recovery bin is in an open state.

10. A computer device, characterized in that: The computer device includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the atomizer cartridge storage method according to any one of claims 1 to 8 is implemented.

11. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the atomizer cartridge storage method according to any one of claims 1 to 8 is implemented.

12. A computer program product, characterized in that The invention comprises a computer program, which enables the atomizer cartridge storage method according to any one of claims 1 to 8 to be executed when the computer program is executed.