Atomizer and atomizing device
By designing the coordination between the movable components and the connectors, rapid fluid communication between the atomizer component and the liquid storage tank is achieved, which solves the problem of long core lubrication time of the atomizer device, improves the user experience and prevents leakage, ensuring that the atomizer matrix enters the atomizer core evenly and avoids dry burning.
Patent Information
- Application Number
- CN202511113201.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-08
- Publication Date
- 2025-09-16
AI Technical Summary
In existing atomizer devices, the atomizer component and the liquid storage component are arranged separately, which results in a long core lubrication time and a poor user experience.
An atomizer is designed to achieve rapid fluid communication between the atomizing component and the liquid storage tank through the cooperation of the movable component and the connecting piece. The movable component is pushed by the connecting piece to quickly squeeze the atomized matrix into the atomizing component to achieve rapid core lubrication.
It shortens the core lubrication time, improves user experience, prevents leakage caused by air pressure changes during disassembly, ensures that the atomization matrix enters the atomization core evenly, and avoids dry burning damage.
Smart Images

Figure CN120642976A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electronic atomization, and in particular to an atomizer and an atomization device. Background Art
[0002] An atomizer is a device that converts an atomized matrix into an aerosol for user use. The atomizer's atomizer assembly heats the atomized matrix to form an aerosol. The atomizer assembly is separated from the liquid storage component that stores the atomized matrix. This prevents leakage from the atomizer assembly when not in use, which would result in poor freshness of the atomized matrix. However, with a separate atomizer assembly, the liquid storage component needs to soak the heating element in the atomizer assembly during initial use, resulting in a long lubrication period and a poor user experience. Summary of the Invention
[0003] The object of the present invention is to provide an atomizer and an atomizing device, which can quickly lubricate the core of the atomizing component and reduce the problem of long lubrication time during installation and use of the atomizing device.
[0004] To achieve the above objectives, the technical solutions adopted in this application are as follows: A first aspect provides an atomizer, the atomizer comprising: a first housing, provided with a fixed member and a movable assembly, one end of the movable assembly and an inner wall of the first housing defining a liquid storage bin, the movable assembly being in fluid communication with the liquid storage bin, and an end of the movable assembly remote from the liquid storage bin being movably connected to the fixed member; The second housing is provided with a connecting piece and an atomizing assembly, the atomizing assembly is in fluid communication with the connecting piece, the connecting piece is used to pass through the fixing piece and abut against the movable assembly; The movable component is configured to receive a push from the connecting piece so that the atomizing component is in fluid communication with the liquid storage tank through the connecting piece.
[0005] In some embodiments, the movable component and the fixing member form a snap-fit structure, and the snap-fit structure is used to limit the relative movement of the movable component.
[0006] In some embodiments, the movable assembly is provided with a snap fastener, and the fixing member is provided with a first protrusion and a second protrusion at intervals along the axis direction of the first shell, and a slot is defined between the first protrusion and the second protrusion; The first shell provides at least one assembly position suitable for maintaining relative positioning between the second shell and the first shell. When the second shell is in the assembly position, the latch is locked in the slot.
[0007] In some embodiments, elastic arms are provided on opposite sides of the fixing member, and correspondingly, the latching members are provided on opposite sides of the movable component. Each elastic arm defines a slot, and one latching member corresponds to one slot.
[0008] In some embodiments, the first shell is further provided with a liquid absorbent component, any of the elastic arms and the movable component defines a accommodating cavity, the movable component is penetrated by a vent hole connected to the fluid of the liquid storage tank, the accommodating cavity is connected to the liquid storage tank through the vent hole, and the liquid absorbent component is arranged in the accommodating cavity.
[0009] In some embodiments, the elastic arm includes an elastic portion and a connecting portion, the liquid-absorbing member made of flexible material is located between the elastic portion and the connecting portion, the first protrusion and the second protrusion are respectively arranged on the elastic portion, and the snap member is used to abut the first protrusion or the second protrusion to enable the elastic portion and the connecting portion to move relative to each other.
[0010] In some embodiments, the movable component is provided with a liquid outlet channel and a liquid blocking member, the liquid outlet channel is provided with a liquid outlet, the liquid blocking member is used to close the liquid outlet, and the connecting member is provided with a liquid inlet notch; When in the assembly position, a portion of the connecting member is passed through the liquid outlet channel and abuts against the liquid blocking member, the connecting member drives the liquid blocking member to move, and the liquid inlet notch corresponds to the liquid outlet, so that the liquid outlet channel is connected to the liquid storage tank through the liquid outlet.
[0011] In some embodiments, the movable component includes a sealing member and a movable member, the sealing member is connected to an end of the movable member facing away from the fixed member, and the sealing member and the inner wall of the first shell together define the liquid storage tank.
[0012] In some embodiments, a first atomization pipe is provided in the first shell, and the second shell extends toward an end close to the first shell to form a second atomization pipe. When in the assembled position, the first atomization pipe is connected to the second atomization pipe.
[0013] In some embodiments, the movable component at least partially extends toward the second atomizing duct, and when in the assembled position, the first atomizing duct abuts against the portion of the movable component extending toward the second atomizing duct.
[0014] A second aspect provides an atomization device, which includes a power supply component and the atomizer described in any one of the above embodiments, wherein the power supply component is used to supply power to the atomizer.
[0015] According to the atomizer and atomization device of the above embodiment, the second shell is used to connect to the first shell, and the connecting part of the second shell passes through the fixing part and is inserted into the movable component. At this time, the connecting part abuts the movable component and pushes the movable component to move relative to the fixing part. The atomized matrix in the liquid storage tank is squeezed by the movable component and can quickly flow into the atomization component of the second shell through the connecting part, thereby achieving the purpose of quickly lubricating the core of the atomization component, improving the user experience, and preventing the liquid storage tank from leaking due to changes in air pressure when disassembling and separating the second shell. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0017] Figure 1 A schematic diagram of the three-dimensional structure of an atomizer provided in some embodiments of the present invention; Figure 2 A schematic exploded perspective view of an atomizer provided in some embodiments of the present invention; Figure 3 A schematic cross-sectional view of an atomizer provided in some embodiments of the present invention; Figure 4 This is a schematic diagram of the three-dimensional structure of the second shell of the atomizer provided in some embodiments of the present invention; Figure 5 A schematic cross-sectional structural diagram of a second housing of an atomizer provided in some embodiments of the present invention; Figure 6 Schematic diagram of the cross-sectional structure of the atomizer provided in some embodiments of the present invention Figure 2 ; Figure 7 This is a schematic cross-sectional structural diagram of a first shell of an atomizer provided in some embodiments of the present invention.
[0018] Description of main component symbols; 100-atomizer; 110-first shell; 111-fixing member; 1111-first protrusion; 1112-second protrusion; 1113-slot; 1114-elastic arm; 1114a-elastic portion; 1114b-connecting portion; 1115-liquid outlet channel; 112-movable component; 1121-sealing member; 1122-movable member; 1122a-fastening member; 1122b-liquid outlet; 1122c-mounting slot; 1123-vent; 1124-liquid blocking member; 113-liquid storage tank; 114-liquid absorbing member; 115-limiting step; 116-first atomizing pipe; 117-fastening structure; 120-second shell; 121-connecting member; 122-atomizing component; 123-second atomizing pipe; 124-first direction. DETAILED DESCRIPTION
[0019] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.
[0020] The present application is further described in detail below by means of specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are numbered with associated similar elements. In the following embodiments, many detailed descriptions are provided to enable the present application to be better understood. However, those skilled in the art will readily appreciate that some of the features may be omitted in different circumstances, or may be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification. This is to avoid the core portion of the present application being overwhelmed by excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail. They can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.
[0021] It should also be noted that, in the description of this application, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0022] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various embodiments. Furthermore, the steps or actions in the method description may be reordered or adjusted in a manner readily apparent to those skilled in the art. Therefore, the various sequences in the specification and drawings are provided solely for the purpose of clearly describing a particular embodiment and are not intended to be mandatory, unless otherwise specified.
[0023] Component numbers used herein, such as "first" and "second," are used solely to distinguish the components being described and do not convey any sequential or technical meaning. References to "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings).
[0024] The following embodiments of the present invention are described in detail with reference to the accompanying drawings. In the absence of conflict, the following embodiments and features in the embodiments may be combined with each other.
[0025] In the field of atomization devices, in order to prevent leakage during the transportation of atomization products, the atomization matrix and the atomization core of the atomization component are separated before the atomization product is used to avoid the atomization matrix soaking the atomization core, resulting in poor freshness of the atomization matrix, and to prevent leakage at the position of the atomization component when it is not used. When the user intends to use the atomization product, the user will connect the liquid flow channel connecting the atomization matrix and the atomization core. The user may use the atomization product immediately after the connection, but at this time the atomization matrix may not have completely wetted the atomization core. In the related art, the solution of separately setting the atomization component has the problem of long core wetting time, and the user experience is not good. In order to minimize the time waiting for the atomization core to be wetted, the inventor proposed the solution of this application to solve this technical problem.
[0026] In order to solve the above technical problems, in the present application, the atomizing assembly 122 is quickly lubricated, which can reduce the long lubrication time during the installation and use of the atomizing device.
[0027] Please refer to Figure 1 As shown, in some embodiments, the first aspect of the present application provides a nebulizer 100, which includes a first shell 110 and a second shell 120, the second shell 120 is used to connect to the first shell 110, and the second shell 120 and the first shell 110 are assembled and connected for user use.
[0028] Combine Figure 2 and Figure 3As shown, the first housing 110 is provided with a fixing member 111 and a movable assembly 112. The fixing member 111 is fixed to one end of the first housing 110, and the movable assembly 112 is disposed within the first housing 110. One end of the movable assembly 112 and the inner wall of the first housing 110 define a liquid storage tank 113, and the movable assembly 112 is in fluid communication with the liquid storage tank 113. The end of the movable assembly 112 away from the liquid storage tank 113 is movably connected to the fixing member 111, and the liquid storage tank 113 is used to store the atomized substrate.
[0029] The second housing 120 is provided with a connecting piece 121 and an atomizing assembly 122. The atomizing assembly 122 is positioned in the second housing 120. The atomizing assembly 122 is connected to the connecting piece 121. One end of the connecting piece 121 away from the atomizing assembly 122 is used to pass through the fixing piece 111 and abut against the movable assembly 112. The movable assembly 112 is configured to receive the push of the connecting piece 121. The connecting piece 121 is a hollow structure. The atomizing assembly 122 is in fluid communication with the liquid storage tank 113 through the connecting piece 121. In one embodiment, the connecting piece 121 of the second shell 120 passes through the fixing piece 111 and is inserted into the movable component 112. At this time, the connecting piece 121 abuts against the movable component 112 and pushes the movable component 112 to move relative to the fixing piece 111. The atomized matrix in the liquid storage tank 113 is squeezed by the movable component 112 and can quickly flow into the atomizing component 122 of the second shell 120 through the connecting piece 121, thereby achieving the purpose of quickly lubricating the core of the atomizing component 122 and improving the user experience.
[0030] It can be understood that when the second shell 120 is inserted into the first shell 110 and the atomizer 100 is activated, the movable component 112 in the first shell 110 can move relative to each other to squeeze the liquid storage tank 113. When the volume space of the liquid storage tank 113 changes and shrinks, the pressure in the liquid storage tank 113 increases, thereby quickly squeezing the atomized matrix into the atomizer core.
[0031] In this application, if Figure 2 As shown, in one embodiment, the second shell 120 is detachably connected to the first shell 110. Under the action of an external force, the connecting member 121 is disengaged, allowing the second shell 120 to be disassembled and separated from the first shell 110, thereby facilitating the separate recovery of the second shell 120 and the first shell 110, thereby facilitating environmental protection. The movable assembly 112 and the fixing member 111 form a snap-fit structure 117, which is used to limit the relative movement of the movable assembly 112. At this time, the snap-fit structure 117 is used to limit the relative position of the movable assembly 112 so that the relative position of the movable assembly 112 remains unchanged, preventing the liquid storage tank 113 from leaking due to changes in air pressure when the second shell 120 is disassembled and separated.
[0032] It is easy to understand that the fixing member 111 and the movable component 112 form a snap-fit structure 117 for limiting the movable component 112. The movable component 112 has a fixed moving stroke, so that when the atomizer 100 is used for the first time, the atomizer matrix in the liquid storage tank 113 is squeezed due to the movement of the movable component 112, and the atomizer matrix in the liquid storage tank 113 is quickly and quantitatively injected into the atomizer component 122. When the second shell 120 is disassembled, the movable component 112 remains relatively positioned to avoid the movable component 112 following the second shell 120 out of the first shell 110, which may cause the pressure change in the liquid storage tank 113 to cause the residual atomizer matrix to leak out of the liquid storage tank 113, causing environmental pollution.
[0033] In addition, the atomized matrix enters the atomizing assembly 122 from the liquid storage tank 113 to infiltrate the atomizing core in the atomizing assembly 122, and the atomized matrix is heated by the atomizing core to form an aerosol for the user to inhale. In this process, if the atomized matrix is only spontaneously sucked into the atomizing core by capillary action, there is a situation where the atomized matrix does not completely enter the atomizing core. The heating and dry burning of the atomizing core can easily cause damage to the cotton core or even carbonization, thereby affecting the user's experience. In the embodiment of the present application, the connecting member 121 not only pushes the movable component 112 to open the liquid path with the liquid storage tank 113, but in this process, the movable member 1122 itself has a certain area, squeezing the atomized matrix in the liquid storage tank 113 so that it enters the opened liquid path faster, thereby being conducted to the atomizing core faster, so that the user can use the atomizer 100 immediately after completing the assembly of the connecting member 121 and the movable component 112 without the above-mentioned dry burning situation. The above-mentioned atomizer 100 is only one embodiment of the present application, and the other specific structures inside the atomizer 100 are not described in detail here.
[0034] refer to Figure 3 and Figure 4 As shown, the movable component 112 is provided with a snap fit 1122a, and a first protrusion 1111 and a second protrusion 1112 are arranged at intervals on the fixing member 111 along the axial direction of the first shell 110, and a slot 1113 is defined between the first protrusion 1111 and the second protrusion 1112. The snap fit 1122a can be moved into the slot 1113 along the axial direction of the first shell 110, that is, the snap fit 1122a is located between the first protrusion 1111 and the second protrusion 1112, and the first protrusion 1111 and the second protrusion 1112 respectively limit the movement of the snap fit 1122a so that the movable component 112 maintains a relative positioning. On the one hand, after the movable component 112 moves into place, the atomized matrix is quantitatively injected into the atomizing component 122. On the other hand, the situation in which the pressure change in the liquid storage tank 113 caused by the movement of the movable component 112 causes the residual atomized matrix to leak out of the liquid storage tank 113, causing environmental pollution.
[0035] Combine Figure 2 、 Figure 3 and Figure 5 As shown, the atomizer 100 has a first direction 124. For example, the first direction 124 is the height direction of the atomizer 100. For example, the height direction of the atomizer 100 is the axial direction of the first shell 110, and the first direction 124 is the direction of the arrow in the figure. It can be understood that the above definition is only for the purpose of facilitating the understanding of the relative position relationship of the various parts of the atomizer 100 and should not be understood as limiting the present application. Figure 3 As shown, the first shell 110 provides at least one assembly position suitable for keeping the second shell 120 and the first shell 110 relatively positioned. For this assembly position, it can be understood as the position after the first shell 110 and the second shell 120 are connected. In combination with the usage scenario, for the atomizer device of the replaceable atomizer 100, it can also be understood as the atomizer 100 formed by the assembly connection of the first shell 110 and the second shell 120, and the atomizer 100 is in a state that can be used in conjunction with the power supply component of the atomizer device. When the second shell 120 is in the assembly position, the snap member 1122a is snapped into the slot 1113, that is, when the second shell 120 is assembled and moved to the assembly position, the snap member 1122a is snapped into the slot 1113 to form a snap structure 117, and the snap structure 117 is used to limit the movement of the movable component 112.
[0036] Further, refer to Figure 4 and Figure 5 As shown, elastic arms 1114 are provided on opposite sides of the fixing member 111, and corresponding latches 1122a are provided on opposite sides of the movable assembly 112. Each elastic arm 1114 defines a slot 1113, and one latch 1122a corresponds to one slot 1113. The elastic arms 1114 are used to provide a certain assembly space. When the latch 1122a is inserted into the slot 1113, the elastic arms 1114 will undergo elastic deformation so that the position of the latch 1122a is staggered with respect to the first protrusion 1111 or the second protrusion 1112, thereby better assembling the latch 1122a and the slot 1113, thereby achieving a better technical effect. Exemplarily, the material of the elastic arms 1114 is one of silicone, elastic rubber, thermoplastic polyurethane, and thermoplastic elastomer.
[0037] In this embodiment, the two elastic arms 1114 are disposed in parallel, and both elastic arms 1114 extend along the first direction 124 .
[0038] In some embodiments, combined Figure 4 and Figure 5As shown, the first shell 110 is also provided with a liquid absorption piece 114, and any elastic arm 1114 and the movable component 112 define a accommodating chamber. The movable component 112 is penetrated by a vent hole 1123 which is in fluid communication with the liquid storage tank 113. The vent hole 1123 is used for ventilating the liquid storage tank 113 with the outside. The accommodating chamber is connected to the liquid storage tank 113 through the vent hole 1123. The liquid absorption piece 114 is arranged in the accommodating chamber. The liquid absorption piece 114 of the accommodating chamber is used to absorb the atomized matrix leaked from the vent hole 1123 during the ventilation process of the liquid storage tank 113. The accommodating chamber and the liquid storage tank 113 realize gas exchange so as to keep the air pressure of the liquid storage tank 113 stable so that the user can use the nebulizer 100 normally.
[0039] In some embodiments, as Figure 4 As shown, the elastic arm 1114 includes an elastic portion 1114a and a connecting portion 1114b, the flexible material of the liquid-absorbing member 114 is sandwiched between the elastic portion 1114a and the connecting portion 1114b, the first protrusion 1111 and the second protrusion 1112 are respectively provided on the elastic portion 1114a, and the buckle 1122a is used to abut the first protrusion 1111 or the second protrusion 1112 to enable the elastic portion 1114a and the connecting portion 1114b to move relative to each other. Accordingly, the elastic portion 1114a 114a and the connecting portion 1114b are arranged opposite each other, and the liquid-absorbing member 114 is arranged within the accommodation cavity enclosed by the elastic portion 1114a and the connecting portion 1114b. When the latching member 1122a abuts the first protrusion 1111 or the second protrusion 1112, the elastic portion 1114a is elastically deformed. The flexible material of the liquid-absorbing member 114 does not hinder or affect the elastic deformation of the elastic portion 1114a, thereby ensuring the assembly process of the latching member 1122a and the locking slot 1113. The elastic portion 1114a and the connecting portion 1114b both have a certain degree of elasticity, or only the elastic portion 1114a has a certain degree of elasticity, while the connecting portion 1114b does not have elasticity. This is not specifically limited here.
[0040] In some embodiments, combined Figure 6 and Figure 7 As shown, the movable component 112 is provided with a liquid outlet channel 1115 and a liquid blocking member 1124. The liquid outlet channel 1115 is provided with a liquid outlet 1122b, and the liquid blocking member 1124 is used to close the liquid outlet 1122b. The connecting member 121 is provided with a liquid inlet notch. In other words, when the first shell 110 and the second shell 120 are separated from each other, the liquid blocking member 1124 serves to close the liquid outlet 1122b, thereby preventing the atomized matrix in the liquid storage tank 113 from flowing out through the position of the liquid outlet 1122b, thereby preventing the atomizer 100 from leaking when not in use.
[0041] When in the assembly position, or in other words, when the first shell 110 and the second shell 120 are connected, a part of the connecting part 121 is passed through the liquid outlet channel 1115 and abuts against the liquid blocking part 1124. The connecting part 121 provided on the second shell 120 drives the liquid blocking part 1124 to move, and the liquid inlet notch corresponds to the liquid outlet 1122b, so that the liquid outlet channel 1115 is connected to the liquid storage tank 113 through the liquid outlet 1122b, that is, the second shell 120 is inserted into the first shell 110 through the connecting part 121, so that the connecting part 121 abuts against the liquid blocking part 1124 and lifts the liquid blocking part 1124, and the liquid blocking part 1124 is staggered from the liquid outlet 1122b, and the liquid storage tank 113 and the liquid outlet channel 1115 are connected through the liquid outlet 1122b, so that the atomized matrix in the liquid storage tank 113 flows into the atomizing component 122 of the second shell 120, thereby achieving the purpose of quickly lubricating the core of the atomizing component 122.
[0042] Furthermore, if Figure 6 As shown, the number of connectors 121 is two, and the number of corresponding liquid outlet channels 1115 is two, so that each connector 121 corresponds to one liquid outlet channel 1115. Accordingly, after the first shell 110 and the second shell 120 are assembled and connected, the two connectors 121 correspond to the two liquid outlet channels 1115 one-to-one, so that the atomized matrix in the liquid storage tank 113 can enter the atomization assembly 122 through the positions of the two liquid outlet channels 1115 respectively. Exemplarily, the two connectors 121 are arranged in parallel, and the two connectors 121 extend along the first direction 124. The number of liquid blocking members 1124 is two, and the two liquid blocking members 1124 are at the same height along the first direction 124. One liquid blocking member 1124 corresponds to one connector 121, so that when the two connectors 121 are inserted into the liquid outlet channels 1115, the two liquid blocking members 1124 are lifted up and moved.
[0043] In this embodiment, the movable component 112 is provided with an installation groove 1122c, and the groove opening of the installation groove 1122c is arranged toward the liquid storage tank 113. There are four installation grooves 1122c, and the bottom of each installation groove 1122c corresponds to a liquid outlet 1122b. Every two installation grooves 1122c correspond to a liquid outlet channel 1115, which is beneficial for the atomized matrix in the liquid storage tank 113 to flow into the liquid outlet channel 1115 through the four installation grooves 1122c respectively, thereby ensuring the uniformity of the outflow of the atomized matrix.
[0044] In some embodiments, reference Figure 4As shown, the movable assembly 112 includes a sealing member 1121 and a movable member 1122. The sealing member 1121 is connected to one end of the movable member 1122 away from the fixed member 111, and the sealing member 1121 and the inner wall of the first housing 110 jointly define the liquid storage bin 113. On the one hand, the sealing member 1121 is used to define the liquid storage bin 113 with the first housing 110. On the other hand, the sealing member 1121 is used to isolate the movable member 1122 from the liquid storage bin 113, play a sealing role, and reduce the situation where the atomized matrix leaks into the movable member 1122. Exemplarily, the sealing member 1121 is made of silicone material. Of course, the fixed member 111 can also be made of other materials, for example, the material of the fixed member 111 is one of polyurethane, TPE, and latex.
[0045] Illustratively, a limiting step 115 is provided in the first shell 110. When the limiting step 115 is engaged with the sealing member 1121, the movable component 112 and the fixing member 111 form a snap structure 117, thereby ensuring the stability of the assembly positioning of the first shell 110 and the second shell 120 and avoiding misalignment.
[0046] In some embodiments, as Figure 6 As shown, a first atomization pipe 116 is provided in the first shell 110, and the second shell 120 extends toward one end close to the first shell 110 to form a second atomization pipe 123. When in the assembled position, the first atomization pipe 116 is connected to the second atomization pipe 123. At this time, the first atomization pipe 116 and the second atomization pipe 123 form an atomization channel so that the atomization matrix can be heated by the atomization component 122 to form an aerosol, and the aerosol flows out through the atomization channel when the user inhales.
[0047] Exemplarily, the movable component 112 extends at least partially toward the second atomization pipe 123. When in the assembled position, the first atomization pipe 116 abuts against the portion of the movable component 112 extending toward the second atomization pipe 123, so that the movable component 112 is used to seal the connection position between the first atomization pipe 116 and the second atomization pipe 123, avoiding leakage, and having a better technical effect.
[0048] Further, refer to Figure 2 As shown, the atomization channel is located between the two liquid outlet channels 1115, and the two snap structures 117 and the two liquid outlet channels 1115 are respectively arranged around the circumference of the atomization channel. The structure is relatively compact, the space utilization rate is high, and it has better technical effects.
[0049] In some embodiments, the second aspect of the present application provides an atomization device, comprising a power supply assembly and the atomizer 100 of any of the above embodiments, the power supply assembly being used to supply power to the atomizer 100, and the atomizer 100 being used to heat the atomized matrix into an aerosol. The atomization device may be a cartridge-replaceable product. For a cartridge-replaceable atomization device, the atomizer 100 and the power supply assembly are detachably connected, and the atomizer 100 and the power supply assembly can be replaced depending on the usage. Of course, the atomization device including the atomizer 100 has all the beneficial effects of the atomizer 100, which will not be described in detail here.
[0050] In all examples shown and described herein, any specific values should be interpreted as merely exemplary and not limiting, and thus other examples of the exemplary embodiments may have different values.
[0051] The above-described embodiments merely illustrate several implementations of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, and all such variations and improvements fall within the scope of protection of the present invention.
Claims
1. An atomizer, characterized in that: include: A first shell (110) is provided with a fixing member (111) and a movable component (112), one end of the movable component (112) and an inner wall of the first shell (110) define a liquid storage tank (113), and the movable component (112) is in fluid communication with the liquid storage tank (113), and one end of the movable component (112) away from the liquid storage tank (113) is movably connected to the fixing member (111); The second housing (120) is provided with a connecting piece (121) and an atomizing assembly (122), wherein the atomizing assembly (122) is in fluid communication with the connecting piece (121), and the connecting piece (121) is used to pass through the fixing piece (111) and abut against the movable assembly (112); The movable component (112) is configured to receive a push from the connecting member (121) so that the atomizing component (122) is in fluid communication with the liquid storage tank (113) through the connecting member (121).
2. The atomizer according to claim 1, characterized in that The movable component (112) and the fixing member (111) form a buckle structure (117), and the buckle structure (117) is used to limit the relative movement of the movable component (112); The movable component (112) is provided with a snap fastener (1122a), and the fixing member (111) is provided with a first protrusion (1111) and a second protrusion (1112) at intervals along the axial direction of the first shell (110), and a slot (1113) is defined between the first protrusion (1111) and the second protrusion (1112); The first shell (110) provides at least one assembly position suitable for maintaining relative positioning between the second shell (120) and the first shell (110); when the second shell (120) is in the assembly position, the latch (1122a) is snapped into the slot (1113).
3. The atomizer according to claim 2, characterized in that Elastic arms (1114) are provided on opposite sides of the fixing member (111), and correspondingly, the latching members (1122a) are provided on opposite sides of the movable component (112), each elastic arm (1114) defines a latching slot (1113), and one latching member (1122a) corresponds to one latching slot (1113).
4. The atomizer according to claim 3, characterized in that The first shell (110) is further provided with a liquid absorbing member (114), and any of the elastic arms (1114) and the movable component (112) define a receiving cavity, and the movable component (112) is penetrated by a vent hole (1123) which is in fluid communication with the liquid storage tank (113), and the receiving cavity is connected to the liquid storage tank (113) through the vent hole, and the liquid absorbing member (114) is arranged in the receiving cavity.
5. The atomizer according to claim 4, characterized in that The elastic arm (1114) includes an elastic portion (1114a) and a connecting portion (1114b); the liquid-absorbing member (114) made of a flexible material is located between the elastic portion (1114a) and the connecting portion (1114b); the first protrusion (1111) and the second protrusion (1112) are respectively arranged on the elastic portion (1114a); and the latch (1122a) is used to abut against the first protrusion (1111) or the second protrusion (1112) to enable relative movement between the elastic portion (1114a) and the connecting portion (1114b).
6. The atomizer according to claim 2, characterized in that The movable component (112) is provided with a liquid outlet channel (1115) and a liquid blocking member (1124); the liquid outlet channel (1115) is provided with a liquid outlet (1122b); the liquid blocking member (1124) is used to close the liquid outlet (1122b); and the connecting member (121) is provided with a liquid inlet notch; When in the assembly position, a portion of the connecting member (121) passes through the liquid outlet channel (1115) and abuts against the liquid blocking member (1124), the connecting member (121) drives the liquid blocking member (1124) to move, and the liquid inlet notch corresponds to the liquid outlet (1122b), so that the liquid outlet channel (1115) is connected to the liquid storage tank (113) through the liquid outlet (1122b).
7. The atomizer according to any one of claims 1 to 6, characterized in that The movable assembly (112) comprises a sealing member (1121) and a movable member (1122), wherein the sealing member (1121) is connected to an end of the movable member (1122) facing away from the fixed member (111), and the sealing member (1121) and the inner wall of the first shell (110) jointly define the liquid storage tank (113).
8. The atomizer according to any one of claims 2 to 6, characterized in that A first atomizing pipe (116) is provided in the first shell (110), and the second shell (120) extends toward an end close to the first shell (110) to form a second atomizing pipe (123). When in the assembled position, the first atomizing pipe (116) is connected to the second atomizing pipe (123).
9. The atomizer according to claim 8, characterized in that The movable component (112) at least partially extends toward the second atomizing pipe (123), and when in the assembled position, the first atomizing pipe (116) abuts against the portion of the movable component (112) extending toward the second atomizing pipe (123).
10. An atomizing device, characterized in that: It comprises a power supply component and the atomizer (100) according to any one of claims 1 to 9, wherein the power supply component is used to supply power to the atomizer (100).