Air mixing multifunctional box and multi-flavor atomization device
Patent Information
- Application Number
- CN202521690352.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-08
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-08-08
AI Technical Summary
[0003]本申请提供了一种混气多功能盒,用于解决或部分解决现有的雾化器口味单一的技术问题
[0014] When using the multi-functional mixing box according to the above embodiment, the user inhales through the first nozzle, and the gas enters the first accommodating chamber through the first air inlet, then enters the atomizer. The atomizer is activated, and the aerosol generated by heating inside the atomizer flows out through the second nozzle and enters the second accommodating chamber. The aerosols generated by at least two atomizers are mixed in the second accommodating chamber, and then output from the first air outlet for the user's use. With this design, the beneficial effects of this application are as follows: Firstly, using the multi-functional mixing box is equivalent to simultaneously inhaling at least two atomizers, allowing users to freely combine various flavors by placing atomizers of different flavors. Secondly, since at least part of the second accommodating cavity is adapted to the shape of the second mouthpiece, the second accommodating cavity can better accommodate the second mouthpiece, which not only facilitates the installation and fixation of the second mouthpiece but also allows the aerosols generated by at least two atomizers to quickly condense and mix together in the second accommodating cavity, resulting in more uniform flavor mixing, more stable aerosol output, and improved user experience. Furthermore, by disassembling the first mouthpiece and replacing the protective cover, the multi-functional mixing box can store and protect multiple atomizers when not in use. Therefore, the multi-functional mixing box of this application has the advantages of simple structure and convenient installation. It can uniformly mix the aerosols generated by at least two atomizers, enabling mixed inhalation of multiple flavors from atomizers, and also has the function of storing atomizers.
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Figure CN224734719U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic atomization technology, specifically to a multi-functional mixing box and a multi-flavor atomizing device. Background Technology
[0002] An atomizer is a device that heats an aerosol-generating matrix to produce an aerosol. However, in related technologies, some atomizers on the market can only produce one type of aerosol, resulting in a limited flavor and failing to meet user needs. Utility Model Content
[0003] This application provides a multi-functional mixing box to solve or partially solve the technical problem of the single flavor of existing atomizers.
[0004] In some embodiments, a multi-functional mixing box is provided, configured to work with at least two atomizers. The multi-functional mixing box includes a housing and a first mouthpiece. The housing has at least one first air inlet and at least two first receiving cavities, the first air inlet and the at least two first receiving cavities being in communication, each first receiving cavity corresponding to one atomizer. The first mouthpiece is detachably connected to the housing. The first mouthpiece has a second receiving cavity, each first receiving cavity being in communication with the second receiving cavity. The first mouthpiece has a first air outlet opposite to the second receiving cavity, the second receiving cavity being in communication with the first air outlet, the second receiving cavity being used to mix the aerosol generated by at least two atomizers and output it from the first air outlet. The second receiving cavity is configured to accommodate the second mouthpiece of at least two atomizers, and at least a portion of the second receiving cavity is adapted to the shape of the second mouthpiece.
[0005] In some embodiments, the second receiving cavity includes at least two receiving portions, each receiving portion being disposed and connected to one of the first receiving cavities, and each receiving portion containing a second suction nozzle, the shape of the receiving portion being adapted to the shape of the second suction nozzle.
[0006] In some embodiments, the first suction nozzle is provided with two first protrusions and a connecting block. The first suction nozzle has two opposing first cavity walls. The two first protrusions are respectively disposed on the two first cavity walls to divide the second receiving cavity into two adjacent receiving portions. The connecting block is disposed between the two first cavity walls and is connected to the end of the two first protrusions near the first air outlet. The connecting block limits the movement of the second suction nozzle toward the first air outlet.
[0007] In some embodiments, the second nozzle is provided with a second air outlet, and the second accommodating cavity further includes an air-gathering section disposed between at least two of the receiving sections and the first air outlet. One end of the air-gathering section is connected to all the second air outlets, and the other end of the air-gathering section is connected to the first air outlet. The air-gathering section is configured to mix the aerosol output from the second air outlet and then output it from the first air outlet.
[0008] In some embodiments, the cross-sectional area of the gas-gathering part gradually decreases from the end of the gas-gathering part near the second air outlet toward the end near the first air outlet; and / or, the cavity wall of the gas-gathering part on the side near the second nozzle is arranged around the edge of all the second air outlets.
[0009] In some embodiments, the housing has two opposing second cavity walls, each of which has a second protrusion extending along the length of the housing to divide the interior of the housing into two adjacent first accommodating cavities; at least one first air inlet includes two first air inlets, which are respectively provided for the two first accommodating cavities.
[0010] In some embodiments, the multi-functional gas mixing box further includes a protective cover detachably connected to the housing, the protective cover including a third receiving cavity; and the multi-functional gas mixing box has a suction state and a storage state, wherein in the suction state, the first suction nozzle is connected to the housing; and in the storage state, the protective cover is connected to the housing, and the third receiving cavity is configured to receive the second suction nozzle.
[0011] In some embodiments, the first suction nozzle is provided with a first magnetic suction member, and the housing is provided with a second magnetic suction member. The first magnetic suction member is adapted to attract the second magnetic suction member so that the first suction nozzle is magnetically connected to the housing. Alternatively, the housing is provided with a second magnetic suction member, and the protective cover is provided with a third magnetic suction member. The second magnetic suction member is adapted to attract the third magnetic suction member so that the housing is magnetically connected to the protective cover.
[0012] In some embodiments, a multi-flavor atomizing device is provided, comprising at least two atomizers and a mixing multi-functional box as described above, wherein the at least two atomizers are detachably installed in at least two first receiving cavities, and the at least two atomizers comprise at least one flavor of aerosol and at least one power selector.
[0013] In some embodiments, each atomizer includes a housing, a second mouthpiece, an atomizing assembly, and a power supply assembly. One end of the housing is connected to the second mouthpiece. The atomizing assembly and the power supply assembly are disposed within the housing, and the atomizing assembly is electrically connected to the power supply assembly. The atomizing assembly has an atomizing channel for generating aerosol. The housing is provided with a second air inlet. The first air inlet, the first accommodating cavity, the second air inlet, the atomizing channel, the second accommodating cavity, and the first air outlet are sequentially connected.
[0014] When using the multi-functional mixing box according to the above embodiment, the user inhales through the first nozzle, and the gas enters the first accommodating chamber through the first air inlet, then enters the atomizer. The atomizer is activated, and the aerosol generated by heating inside the atomizer flows out through the second nozzle and enters the second accommodating chamber. The aerosols generated by at least two atomizers are mixed in the second accommodating chamber, and then output from the first air outlet for the user's use. With this design, the beneficial effects of this application are as follows: Firstly, using the multi-functional mixing box is equivalent to simultaneously inhaling at least two atomizers, allowing users to freely combine various flavors by placing atomizers of different flavors. Secondly, since at least part of the second accommodating cavity is adapted to the shape of the second mouthpiece, the second accommodating cavity can better accommodate the second mouthpiece, which not only facilitates the installation and fixation of the second mouthpiece but also allows the aerosols generated by at least two atomizers to quickly condense and mix together in the second accommodating cavity, resulting in more uniform flavor mixing, more stable aerosol output, and improved user experience. Furthermore, by disassembling the first mouthpiece and replacing the protective cover, the multi-functional mixing box can store and protect multiple atomizers when not in use. Therefore, the multi-functional mixing box of this application has the advantages of simple structure and convenient installation. It can uniformly mix the aerosols generated by at least two atomizers, enabling mixed inhalation of multiple flavors from atomizers, and also has the function of storing atomizers. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of the gas mixing multifunctional box in one embodiment of this application;
[0016] Figure 2 This is an exploded view of the multi-functional mixing box in one embodiment of this application.
[0017] Figure 3 This is a schematic diagram of the connection between the housing and the first suction nozzle in one embodiment of this application;
[0018] Figure 4 for Figure 3 A structural diagram of the left view;
[0019] Figure 5 for Figure 4A schematic diagram of the structure without the atomizer in the AA cross-sectional view;
[0020] Figure 6 for Figure 4 A schematic diagram of the structure in the AA sectional view;
[0021] Figure 7 This is a schematic diagram of the structure of the first suction nozzle in one embodiment of this application;
[0022] Figure 8 This is a schematic diagram of the shell structure in one embodiment of this application;
[0023] Figure 9 This is a structural schematic diagram of an exploded view of a multi-functional mixing box with an atomizer installed in one embodiment of this application.
[0024] Figure 10 This is a schematic diagram of the structure of the protective cover in one embodiment of this application;
[0025] Figure 11 This is a schematic diagram of the atomizer.
[0026] The accompanying diagrams are labeled as follows:
[0027] 1. Housing; 11. Opening; 12. First accommodating cavity; 13. First air inlet; 14. Second cavity wall; 15. Second protrusion; 151. First part; 152. Second part;
[0028] 2. First suction nozzle; 21. First air outlet; 22. Second receiving cavity; 221. Receiving part; 222. Air gathering part; 23. First cavity wall; 24. First protrusion; 25. Connecting block; 26. Mounting groove;
[0029] 3. Protective cover; 31. Third accommodating cavity; 32. Third cavity wall; 33. Third protrusion;
[0030] 4. Atomizer; 41. Second nozzle assembly; 42. Second air inlet; 43. Second air outlet; 44. Housing; 45. Power supply assembly; 46. Atomization channel;
[0031] 51. First magnetic component; 52. Second magnetic component;
[0032] X, first direction; Y, second direction; Z, third direction. Detailed Implementation
[0033] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.
[0034] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments. At the same time, the steps or actions in the method description can be rearranged or adjusted in a manner obvious to those skilled in the art. Therefore, the various orders in the specification and drawings are only for the clear description of a particular embodiment and do not imply a necessary order, unless otherwise stated that a particular order must be followed.
[0035] The serial numbers assigned to components in this document, such as "first" and "second," are used only to distinguish the described objects and have no sequential or technical meaning. Unless otherwise specified, the terms "connection" and "linkage" used in this application include both direct and indirect connections.
[0036] Reference Figures 1 to 11 As shown, a multi-functional mixing box is provided, which is configured to be used in conjunction with at least two atomizers 4. The atomizer 4 mainly includes an atomizing component (not shown in the figure) and a power supply component 45. The power supply component 45 provides electrical energy to the atomizing component, enabling the atomizing component to heat and atomize the aerosol generating matrix to form an aerosol.
[0037] The multi-functional mixing box includes intersecting first direction X, second direction Y, and third direction Z. When the multi-functional mixing box has a relatively regular structure, for example... Figure 1 As shown, the first direction X is the thickness direction of the gas mixing multi-functional box, the second direction Y is the width direction of the gas mixing multi-functional box, and the third direction Z is the height direction of the gas mixing multi-functional box.
[0038] In some embodiments, refer to Figure 1 As shown, the multi-functional mixing box includes a housing 1 and a first suction nozzle 2; further refer to Figure 5As shown, the housing 1 has at least one first air inlet 13 and at least two first accommodating cavities 12, the first air inlet 13 and the at least two first accommodating cavities 12 are connected, and each first accommodating cavity 12 corresponds to accommodating one atomizer 4; the first mouthpiece 2 is detachably connected to the housing 1; the first mouthpiece 2 has a second accommodating cavity 22 inside, and each first accommodating cavity 12 is connected to the second accommodating cavity 22; the first mouthpiece 2 has a first air outlet 21 opposite to the second accommodating cavity 22, the second accommodating cavity 22 is connected to the first air outlet 21, the second accommodating cavity 22 is used to mix the aerosol generated by at least two atomizers 4 and output it from the first air outlet 21; and the second accommodating cavity 22 is configured to accommodate the second mouthpiece 41 of at least two atomizers 4, and at least part of the second accommodating cavity 22 is adapted to the shape of the second mouthpiece 41.
[0039] Among them, reference Figure 2 As shown, the housing 1 has an opening 11 at one end in the third direction Z, and the opening 11 communicates with all the second receiving cavities 22. After the housing 1 is connected to the first suction nozzle 2, the first suction nozzle 2 seals the opening 11.
[0040] During assembly, the atomizer 4 is inserted into the first receiving cavity 12 of the housing 1 after passing through the opening 11. The number of atomizers 4 contained in the housing 1 is less than or equal to the number of the first receiving cavities 12. Then, the first mouthpiece 2 is connected to the housing 1. The second receiving cavity 22 of the first mouthpiece 2 contains the second mouthpiece 41 of the atomizer 4.
[0041] In use, the multi-functional mixing box of this embodiment allows the user to inhale through the first nozzle 2. The gas enters the first accommodating cavity 12 through the first air inlet 13, and then enters the atomizer 4. The atomizer 4 is activated, and the aerosol generated by heating inside the atomizer 4 flows out through the second nozzle 41 and enters the second accommodating cavity 22. The aerosols generated by at least two atomizers 4 are mixed in the second accommodating cavity 22, and then output from the first air outlet 21 for the user's use.
[0042] Since at least a portion of the second accommodating cavity 22 is shape-fitted to the second mouthpiece 41, the second accommodating cavity 22 can effectively accommodate the second mouthpiece 41, facilitating its installation and fixation. Furthermore, it allows the aerosols generated by at least two atomizers 4 to quickly condense and mix together in the second accommodating cavity 22, resulting in more uniform flavor mixing, more stable aerosol output, and improved user experience. Using the mixing box is equivalent to simultaneously inhaling from at least two atomizers 4, allowing for free combination of various flavors by placing atomizers 4 of different flavors. The mixing box can accommodate at least two atomizers 4, enabling storage of at least two atomizers 4. Therefore, the mixing box of this embodiment has the advantages of simple structure and convenient installation. It can uniformly mix the aerosols generated by at least two atomizers 4, enabling mixed inhalation of multiple flavors from atomizers 4, and also has the function of storing atomizers 4.
[0043] In this embodiment, the shape of the second accommodating cavity 22 and the second nozzle 41 of the atomizer 4 is adapted to each other, meaning that the shape of the cavity wall of the second accommodating cavity 22 and the second nozzle 41 are almost the same. The second nozzle 41 is placed in the second accommodating cavity 22, which can achieve better fixation and prevent the second nozzle 41 from shaking.
[0044] It is understood that the number of first accommodating cavities 12 is set according to usage requirements, and this application embodiment does not specifically limit this. For example, there are two first accommodating cavities 12, and two second accommodating cavities 22 are spaced apart along the second direction Y. Or, for another example, there are three first accommodating cavities 12, and three second accommodating cavities 22 are spaced apart along the second direction Y.
[0045] It is understood that the gas mixing multi-functional box in this application embodiment does not include any battery circuit components, but is only used to accommodate at least two atomizers 4 and to mix and output the aerosol flowing out of at least two atomizers 4. The initiation and indication of the atomizer 4 inhalation are completely completed by the components of the atomizer 4 itself. The atomizer 4 can be used independently after being removed from the gas mixing multi-functional box.
[0046] In some embodiments, refer to Figure 5 and Figure 6 As shown, the second accommodating cavity 22 includes at least two receiving portions 221, each receiving portion 221 being disposed and connected to a first accommodating cavity 12, and each receiving portion 221 containing a second suction nozzle 41, the shape of the receiving portion 221 being adapted to the shape of the second suction nozzle 41.
[0047] In this embodiment, by placing a second nozzle 41 inside each receiving part 221, the shape of the receiving part 221 and the second nozzle 41 are adapted to each other, which facilitates the installation and fixation of the first nozzle 2 on the second nozzle 41, and the multi-functional mixing box can better accommodate the atomizer 4.
[0048] In this embodiment, the number of receiving portions 221 is the same as the number of first receiving cavities 12. For example, there are two first receiving cavities 12 and two receiving portions 221. The two first receiving cavities 12 are spaced apart along the second direction Y, and the two receiving portions 221 are spaced apart along the second direction Y. The shape of the receiving portion 221 is adapted to the shape of the second suction nozzle 41, meaning that the shapes of the receiving portion 221 and the second suction nozzle 41 are almost identical, and the second suction nozzle 41 will not wobble after being placed in the receiving portion 221.
[0049] In some embodiments, refer to Figure 7 As shown, the first suction nozzle 2 is provided with two first protrusions 24, and the second accommodating cavity 22 has two opposing first cavity walls 23. The two first protrusions 24 are respectively provided on the two first cavity walls 23 to divide the second accommodating cavity 22 into two adjacent receiving portions 221.
[0050] The first suction nozzle 2 has a first cavity wall 23 on both sides along the first direction X. A first protrusion 24 protrudes from the first cavity wall 23 into the second accommodating cavity 22 along the first direction X. Each first protrusion 24 extends along the third direction Z. Two first protrusions 24 that are opposite each other along the first direction X are spaced apart.
[0051] In this embodiment, the two first protrusions 24 divide the second accommodating cavity 22 into two adjacent receiving portions 221 in the second direction Y. Thus, the two receiving portions 221 are independent of each other, so that the shape of each receiving portion 221 is adapted to the second nozzle member 41. When the second nozzle member 41 is provided in each receiving portion 221, the two first protrusions 24 participate in the limiting in the second direction Y to avoid collisions between adjacent second nozzle members 41, etc. The multi-functional mixing box can better accommodate the atomizer 4.
[0052] In some embodiments, refer to Figure 7 As shown, the first suction nozzle 2 is provided with a connecting block 25, which is disposed between the two first cavity walls 23 and connected to the two first protrusions 24 near the first air outlet 21. The connecting block 25 limits the movement of the second suction nozzle 41 toward the first air outlet 21.
[0053] The connecting block 25 extends along the first direction X and is located at one end of the two first protrusions 24 near the first air outlet 21. The connecting block 25 is connected to the two first protrusions 24 that are opposite each other along the first direction X.
[0054] In this embodiment, the connecting block 25 is used to limit the movement of the second suction nozzle 41 toward the first air outlet 21, so that the second suction nozzle 41 is firmly fixed in the receiving part 221. Moreover, the connecting block 25 connects the two first protrusions 24 that are opposite each other along the first direction X, that is, connects the two first cavity walls 23, making the structure of the first suction nozzle 2 more stable.
[0055] It is understood that the connecting block 25 and the first protrusion 24, as part of the enclosure forming the receiving portion 221, have a streamlined design corresponding to the second suction nozzle 41 to adapt to the shape of the second suction nozzle 41.
[0056] In some embodiments, refer to Figure 5 As shown, the second accommodating cavity 22 further includes an air-gathering section 222, which is disposed between at least two receiving sections 221 and the first air outlet 21. One end of the air-gathering section 222 is connected to all the second air outlets 43, and the other end of the air-gathering section 222 is connected to the first air outlet 21. The air-gathering section 222 is configured to mix the aerosol output from the second air outlet 43 and then output it from the first air outlet 21.
[0057] In this embodiment of the application, when the user inhales, a negative pressure is generated in the first air outlet 21 and the air gathering part 222. This negative pressure acts directly on the second air outlet 43 of the atomizer 4 to start the atomizer 4. This is the same as the start-up method of directly inhaling the atomizer 4, which is convenient for the user.
[0058] The aerosol-gathering section 222 is designed to better gather aerosols, quickly condensing and mixing the aerosols generated by at least two atomizers 4 together, resulting in a more uniform flavor mix, more stable aerosol output, and improved user experience.
[0059] In some embodiments, from the end of the gas-gathering section 222 near the second gas outlet 43 toward the end near the first gas outlet 21, refer to Figure 5 As shown, the cross-sectional area of the aerosol-gathering section 222 gradually decreases. Thus, the aerosol-gathering section 222 has a better gathering effect, effectively gathering the aerosols generated by at least two atomizers 4. This allows for better contact, mixing, and aggregation of at least two types of aerosols, resulting in a more uniform flavor mix, more stable aerosol output, improved aerosol concentration and taste consistency, and enhanced user experience.
[0060] In some embodiments, the cavity wall of the gas-gathering section 222 near the second nozzle 41 is disposed around the edge of all the second air outlets 43. In this embodiment, the gas-gathering section 222, as described above, can connect all the second air outlets 43 and the first air outlet 21, thereby gathering the aerosols flowing from all the second air outlets 43. This allows for better contact, mixing, and aggregation of the aerosols within the gas-gathering section 222, resulting in a more uniform flavor mixture, more stable aerosol output, increased aerosol concentration and consistent taste, and improved user experience.
[0061] In some embodiments, the air-gathering section 222 has a frustum-like structure, with its upper bottom surface connected to the first air outlet 21 and its lower bottom surface connected to all the second accommodating cavities 22. This results in a smoother, more fluid cavity wall for the air-gathering section 22, preventing airflow obstruction and ensuring smoother airflow. This avoids the need for the user to inhale forcefully to activate the atomizer 4 and also gives the air-gathering section 222 a better air-gathering effect.
[0062] In some embodiments, the first suction nozzle 2 is the part of the multi-functional air-mixing box that directly contacts the user's lips. The first air outlet 21 is located on the first suction nozzle 2, and the aerosol flows out from the first air outlet 21 and directly enters the user's mouth. The gradually shrinking size of the first suction nozzle 2 will better fit the user's lips, and the streamlined structure of the first suction nozzle 2 can also reduce air leakage during suction.
[0063] In some embodiments, the first air outlet 21 is located at the middle of the first end of the first suction nozzle 2, which facilitates suction for the user.
[0064] In some embodiments, refer to Figure 8 As shown, the housing 1 has two opposing second cavity walls 14, each second cavity wall 14 is provided with a second protrusion 15, the second protrusion 15 extends along the length direction of the housing 1 to divide the interior of the housing 1 into two first accommodating cavities 12 adjacent in the second direction Y; at least one first air inlet 13 includes two first air inlets 13, the two first air inlets 13 are respectively provided corresponding to the two first accommodating cavities 12.
[0065] In this embodiment of the application, the housing 1 has two opposing second cavity walls 14 in the first direction X. Each second cavity wall 14 is provided with a second protrusion 15. The second protrusion 15 protrudes from the second cavity wall 14 into the second accommodating cavity 22 along the first direction X. Each second protrusion 15 extends along the third direction Z. The two opposing second protrusions 15 along the first direction X are spaced apart.
[0066] In this embodiment, the two second protrusions 15 divide the housing 1 into two adjacent second accommodating cavities 22. Thus, the two second accommodating cavities 22 are independent of each other, and each second accommodating cavity 22 can accommodate one atomizer 4. The two second protrusions 15 participate in limiting in the second direction Y to avoid collisions between adjacent atomizers 4, etc. The multi-functional mixing box can better accommodate the atomizer 4.
[0067] In some embodiments, refer to Figure 8 As shown, the second protrusion 15 includes a first part 151 and a second part 152. The first part 151 is connected to the second cavity wall 14 and has a cylindrical structure extending in the third direction Z. The second part 152 has a plate-like structure, and one end of the second part 152 is connected to the first part 151.
[0068] In some embodiments, the housing 1 is elongated, and the second receiving cavity 22 is also elongated to accommodate the shape of the atomizer 4. For example, if the portion of the atomizer 4 inserted into the second receiving cavity 22 is cylindrical, then the second receiving cavity 22 is cylindrical. At least two second receiving cavities 22 are arranged in parallel and side by side, and the atomizers 4 disposed in the housing 1 are also arranged in parallel and side by side.
[0069] In this embodiment of the application, when an atomizer 4 is installed inside the multi-functional mixing box, each first air inlet 13 corresponds to a second air inlet 42 of an atomizer 4. Here, "corresponds" means that when an atomizer 4 is installed inside the multi-functional mixing box, the first air inlet 13 and the second air inlet 42 face each other, allowing gas from outside the multi-functional mixing box to enter the second air inlet 42 after passing through the first air inlet 13.
[0070] In the above-described structure of this application embodiment, when the user inhales the first nozzle 2, the gas can directly enter the atomizer 4 through the first air inlet 13 and the second air inlet 42. The path of the gas outside the mixing multi-functional box into the atomizer 4 is relatively short, so as to avoid air resistance caused by a long airflow path, and avoid the user needing to inhale forcefully to start the atomizer 4.
[0071] In some embodiments, refer to Figure 10 As shown, the multi-functional mixing box also includes a protective cover 3, which is detachably connected to the housing 1. Further details can be found in the attached diagram. Figure 10 As shown, the protective cover 3 includes a third accommodating cavity 31; and the multi-functional mixing box has a suction state and a storage state. In the suction state, the first suction nozzle 2 is connected to the housing 1; in the storage state, the protective cover 3 is connected to the housing 1, and the third accommodating cavity 31 is configured to accommodate the second suction nozzle 41.
[0072] In this embodiment, during inhalation, the first mouthpiece 2 is connected to the housing 1, and the multi-functional mixing box can be used as an inhalation device. Placing atomizers 4 of different flavors inside the multi-functional mixing box allows for free combination of various flavors, resulting in a more uniform flavor mix, more stable aerosol output, and improved user experience. In the storage state, the protective cover 3 is connected to the housing 1, and the atomizers 4 are stored inside the multi-functional mixing box. The multi-functional mixing box provides storage and protection for multiple atomizers 4 when not in use. It is understood that whether the atomizers 4 are placed in the multi-functional mixing box during inhalation or in storage, the multi-functional mixing box can store and protect the atomizers 4 to prevent damage from impacts, drops, or compression.
[0073] In some embodiments, refer to Figure 2 As shown, the first suction nozzle 2 is provided with a first magnetic suction member 51, and the housing 1 is provided with a second magnetic suction member 52. The first magnetic suction member 51 is adapted to attract the second magnetic suction member 52 so that the first suction nozzle 2 and the housing 1 are magnetically connected. In this embodiment, the housing 1 and the first suction nozzle 2 are connected by the attraction of the first magnetic suction member 51 and the second magnetic suction member 52, which has the advantages of simple connection structure and reliable connection.
[0074] In some embodiments, refer to Figure 7 As shown, the first protrusion 24 of the first suction nozzle 2 is provided with a mounting groove 26 facing the surface of the housing 1, and the first magnetic suction member 51 is assembled in the mounting groove 26.
[0075] In some embodiments, refer to Figure 8 As shown, a mounting cavity is formed in the first part 151 of the second protrusion 15 of the housing 1, and the second magnetic member 52 is assembled in the mounting cavity.
[0076] It is understandable that the first magnetic component 51 and the second magnetic component 52 can be selected according to the usage requirements. For example, both the first magnetic component 51 and the second magnetic component 52 can be magnets, or one can be a magnet and the other can be a component that can be attracted by a magnet, such as an iron block.
[0077] In some embodiments, the end of the housing 1 with the opening 11 is provided with a first step, the first step facing inward of the housing 1. The end of the first mouthpiece 2 away from the first air outlet 21 is provided with a second step, the second step facing outward of the first mouthpiece 2. When the housing 1 and the first mouthpiece 2 are connected, the first step and the second step engage to limit the housing 1 and the first mouthpiece 2, and can prevent gas from flowing in through the gap between the housing 1 and the first mouthpiece 2 when the user inhales, thus affecting the taste, and also prevent the user from having to inhale forcefully to activate the atomizer 4.
[0078] In some embodiments, the housing 1 is provided with a second magnetic member 52, and the protective cover 3 is provided with a third magnetic member. The second magnetic member 52 is adapted to attract the third magnetic member so that the housing 1 and the protective cover 3 are magnetically connected. In this embodiment, the housing 1 and the protective cover 3 are connected by the attraction of the second magnetic member 52 and the third magnetic member, which has the advantages of simple connection structure and reliable connection.
[0079] It is understandable that the third magnetic component and the second magnetic component 52 can be selected according to the usage requirements. For example, both the third magnetic component and the second magnetic component 52 can be magnets, or one can be a magnet and the other can be a component that can be attracted by a magnet, such as an iron block.
[0080] In some embodiments, refer to Figure 10 As shown, the protective cover 3 has two opposing third cavity walls 32 in the first direction X. Each third cavity wall 32 is provided with a third protrusion 33. The third protrusion 33 protrudes from the third cavity wall 32 along the first direction X toward the protective cover 3 and extends along the third direction Z. The two opposing third protrusions 33 along the first direction X are spaced apart to divide the inside of the protective cover 3 into two adjacent third receiving cavities 31.
[0081] In the embodiments of this application, reference is made to Figure 10 As shown, the two third protrusions 33 make the second nozzle parts 41 independent of each other. The two third protrusions 33 participate in the limiting in the second direction Y to avoid collisions between adjacent second nozzle parts 41, etc. The multi-functional mixing box can better accommodate the atomizer 4.
[0082] In some embodiments, a transparent portion may be provided in a part of the housing 1 so that the indicator light of the atomizer 4 can be seen through, thereby preventing the housing 1 from obstructing the indication effect of the internal atomizer 4.
[0083] In some embodiments, a portion of the first nozzle 2 may be provided with a transparent part, allowing the user to see the atomizer 4 located inside the mixing multi-functional box.
[0084] In some embodiments, a portion of the protective cover 3 may be made transparent, allowing the user to see the atomizer 4 located inside the mixing multi-functional box.
[0085] In some embodiments, the housing 1, the first nozzle 2, and the protective cover 3 may also be provided with soft materials that have a cushioning effect, such as rubber, plastic, sponge, etc., to prevent the atomizer 4 from colliding or rubbing within the air-mixing multi-functional box.
[0086] In some embodiments, taking the mixed-air multi-functional box containing two atomizers 4 as an example, the housing 1 is provided with two first accommodating cavities 12, the first mouthpiece 2 is provided with a second accommodating cavity 22, the second accommodating cavity 22 is provided with two receiving parts 221, and the protective cover 3 is provided with two third accommodating cavities 31 as an example.
[0087] When a user needs to vape multiple flavors, two atomizers 4 with different flavors are placed in their respective second accommodating chambers 22. The first mouthpiece 2 is then placed on the housing 1, and the second mouthpiece 41 of the atomizer 4 is inserted into the receiving section 221. The multi-functional mixing box is in the vaping state. When the user vapes, the airflow enters the second accommodating chamber 22 inside the housing 1 from the first air inlet 13, and then enters the atomizer 4 from the second air inlet 42. The atomizer 4 is activated, and the aerosol flowing from the second mouthpiece 41 of the two atomizers 4 flows into the gathering section 222. The gathering section 222 enables the aerosol flowing from the two atomizers 4 to quickly condense and mix together, making the flavor mixing effect more uniform. Then, the multi-functional mixing box flows out through the first air outlet 21 for the user to use.
[0088] When the user needs to store the atomizer 4, the two atomizers 4 are placed in different second accommodating cavities 22 respectively, and then the protective cover 3 is placed on the housing 1. The second mouthpiece 41 of the atomizer 4 is inserted into the third accommodating cavity 31 of the protective cover 3, and the multi-functional mixing box is in the storage state.
[0089] The multi-functional mixing box of this application embodiment can achieve multiple flavor inhalation effects by placing atomizers 4 of different flavors, and makes the flavor mixing effect more uniform, the aerosol output more stable, and has the function of storing and protecting the atomizers 4. Therefore, the multi-functional mixing box can simultaneously meet the user's multiple flavor inhalation needs and storage needs.
[0090] In some embodiments, refer to Figure 9As shown, this application provides a multi-flavor atomizing device, which includes at least two atomizers 4 and a multi-functional mixing chamber as described above. The at least two atomizers 4 are detachably installed within at least two first receiving cavities 12. Each atomizer 4 includes at least one flavor of aerosol and at least one power selection option. Thus, the multi-flavor atomizing device can store and protect multiple atomizers 4, and can achieve multiple flavor inhalation effects by placing atomizers 4 with different flavors. The multi-functional mixing chamber ensures uniform mixing of multiple flavors, resulting in more stable multi-flavor aerosol output and improved user satisfaction. Furthermore, users can select atomizers 4 with appropriate power to meet their power requirements. For example, if a user wants a 3W atomizer 4, they can use one 1W atomizer 4 and another 2W atomizer 4 to achieve the 3W atomizer 4 requirement. Therefore, the multi-flavor atomizing device of this application can simultaneously meet users' needs for multiple flavors and multiple power levels.
[0091] In some embodiments, each atomizer 4 includes a housing 44, a second mouthpiece 41, an atomizing assembly, and a power supply assembly 45. One end of the housing 44 is connected to the second mouthpiece 41. The atomizing assembly and the power supply assembly 45 are disposed inside the housing 44, and the atomizing assembly and the power supply assembly 45 are electrically connected. The atomizing assembly has an atomizing channel 46 for generating aerosol. The housing 44 is provided with a second air inlet 42. The first air inlet 13, the first accommodating cavity 12, the second air inlet 42, the atomizing channel 46, the second accommodating cavity 22, and the first air outlet 21 are sequentially connected.
[0092] In this embodiment, the atomizer 4 is an independent component including a housing 44, a second mouthpiece 41, an atomizing assembly, and a power supply assembly 45. The inhalation of the atomizer 4 is initiated and indicated entirely by the components of the atomizer 4 itself. The atomizer 4 can be used independently after being removed from the mixing multi-functional box.
[0093] When using the multi-flavor atomizing device, the user inhales through the first mouthpiece 2. Gas enters the first accommodating chamber 12 through the first air inlet 13 and then through the second air inlet 42 into the atomizer 4. The atomizer 4 activates, and the gas, carrying aerosol, flows out through the second air outlet 43 as it passes through the atomization channel 46, entering the second accommodating chamber 22. The aerosols generated by at least two atomizers 4 rapidly condense and mix together in the second accommodating chamber 22, finally being output to the user through the first air outlet 21. In this embodiment of the multi-flavor atomizing device, each atomizer 4 can be used independently. By placing atomizers 4 with different flavors, multiple flavors can be inhaled. By placing atomizers 4 with different power levels, multiple power levels can be achieved. The device also has the function of storing and protecting multiple atomizers 4. Therefore, the multi-flavor atomizing device can meet various user needs and effectively improve user satisfaction.
[0094] The above-described specific examples are for illustrative purposes only and are not intended to limit the scope of this invention. Those skilled in the art to which this invention pertains can make various simple deductions, modifications, or substitutions based on the concept of this invention.
Claims
1. A multi-functional cartridge configured to be used with at least two atomizers, the cartridge comprising: The gas mixing multifunctional box includes: The housing has at least one first air inlet and at least two first accommodating cavities, the first air inlet and the at least two first accommodating cavities are connected, and each first accommodating cavity corresponds to accommodating one atomizer; A first nozzle assembly, detachably connected to the housing; the first nozzle assembly has a second receiving cavity, each of the first receiving cavities communicating with the second receiving cavity; the first nozzle assembly has a first air outlet opposite to the second receiving cavity, the second receiving cavity communicating with the first air outlet, the second receiving cavity being used to mix aerosols generated by at least two of the atomizers and output them from the first air outlet; and... The second accommodating cavity is configured to accommodate a second mouthpiece for at least two of the atomizers, and at least a portion of the second accommodating cavity is adapted to the shape of the second mouthpiece.
2. The gas-mixing multi-functional cartridge of claim 1, wherein The second accommodating cavity includes at least two receiving portions, each receiving portion being disposed and connected to one of the first accommodating cavities, and each receiving portion containing a second suction nozzle, the shape of the receiving portion being adapted to the shape of the second suction nozzle.
3. The gas-mixing multi-functional cartridge of claim 2, wherein, The first suction nozzle is provided with two first protrusions and a connecting block. The first suction nozzle has two opposing first cavity walls. The two first protrusions are respectively disposed on the two first cavity walls to divide the second accommodating cavity into two adjacent receiving portions. The connecting block is disposed between the two first cavity walls and is connected to the two first protrusions near the first air outlet. The connecting block limits the movement of the second suction nozzle toward the first air outlet.
4. The gas-mixing multi-functional cartridge of claim 2, wherein, The second nozzle is provided with a second air outlet, and the second accommodating cavity further includes an air-gathering part. The air-gathering part is disposed between at least two of the receiving parts and the first air outlet. One end of the air-gathering part is connected to all the second air outlets, and the other end of the air-gathering part is connected to the first air outlet. The air-gathering part is configured to mix the aerosol output from the second air outlet and then output it from the first air outlet.
5. The gas-mixing multi-functional cartridge of claim 4, wherein, The cross-sectional area of the gas-gathering part gradually decreases from the end of the gas-gathering part near the second gas outlet toward the end near the first gas outlet; And / or, the cavity wall of the air-gathering part near the side of the second nozzle is arranged around the edge of all the second air outlets.
6. The gas-mixing multi-functional cartridge of claim 1, wherein, The housing has two opposing second cavity walls, each of which has a second protrusion extending along the length of the housing to divide the interior of the housing into two adjacent first accommodating cavities. At least one of the first air inlets includes two first air inlets, and the two first air inlets are respectively provided for the two first accommodating cavities.
7. The gas-mixing multi-functional cartridge of any one of claims 1-6, wherein, The multi-functional gas mixing box further includes a protective cover, which is detachably connected to the housing and includes a third accommodating cavity; and the multi-functional gas mixing box has a suction state and a storage state. In the suction state, the first suction nozzle is connected to the housing; In the stored state, the protective cover is connected to the housing, and the third accommodating cavity is configured to accommodate the second suction nozzle.
8. The gas-mixing multi-functional cartridge of claim 7, wherein, The first suction nozzle is provided with a first magnetic suction element, and the housing is provided with a second magnetic suction element. The first magnetic suction element is adapted to attract the second magnetic suction element so that the first suction nozzle is magnetically connected to the housing. Alternatively, the housing may be provided with a second magnetic element and the protective cover may be provided with a third magnetic element, wherein the second magnetic element is adapted to attract the third magnetic element so that the housing and the protective cover are magnetically connected.
9. A multi-flavor atomization device, comprising: It includes at least two atomizers and a multi-functional mixing box as described in any one of claims 1-8, wherein the at least two atomizers are detachably installed in at least two first receiving chambers, and the at least two atomizers include at least one flavored aerosol and at least one power selector. 10.The multi-flavor atomization device of claim 9, wherein, Each of the atomizers includes a housing, a second mouthpiece, an atomizing component, and a power supply component. One end of the housing is connected to the second mouthpiece. The atomizing component and the power supply component are disposed inside the housing, and the atomizing component is electrically connected to the power supply component. The atomizing component has an atomizing channel for generating aerosol, and the outer shell is provided with a second air inlet. The first air inlet, the first accommodating cavity, the second air inlet, the atomizing channel, the second accommodating cavity, and the first air outlet are connected in sequence.