Atomizer and atomization system
By designing the inverted installed liquid supply container and first liquid conductor structure, the complex problem of existing atomizer installation is solved, and the effect of simplifying installation and improving fluid transmission efficiency is achieved.
Patent Information
- Application Number
- CN202421519717.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-06-28
AI Technical Summary
The installation and connection structure of existing atomizers and external liquid supply containers is complex, which makes it difficult to install and use.
A atomizer is designed, including a housing, an atomization assembly and a first liquid conductor. The liquid supply container can be installed in an inverted manner in the installation position and directly flows into the first liquid conductor using gravity without the need for a pumping device.
The installation and connection structure between the liquid supply container and the atomizer is simplified, the installation and use difficulty is reduced, and the fluid transmission efficiency is improved.
Smart Images

Figure CN222982474U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic atomization technology, and particularly to an atomizer and an atomization system. Background Art
[0002] As an atomization device for fluids, usually, the atomizer extracts and atomizes the fluid in an external liquid storage bottle by means of pumping, and the pumping atomization method usually requires corresponding devices such as liquid delivery pipelines. Therefore, the installation and connection structure between the above-mentioned liquid storage bottle and the atomizer is complex and the steps are cumbersome, making it difficult to install and use. Summary of the Invention
[0003] This application provides an atomization device, which is used to solve the problems of the large complexity of the installation and connection structure between the atomizer and the externally installed liquid supply container and the high difficulty of installation and use.
[0004] In one embodiment, an atomizer is provided, which includes a housing, an atomization component and a first liquid guiding member. An atomization chamber and an installation position are provided in the housing; the installation position is used for inversely installing an external liquid supply container.
[0005] The atomization component includes an atomization core and a liquid storage member. The atomization core is arranged in the atomization chamber, and the liquid storage member is connected to the atomization core.
[0006] The first liquid guiding member is arranged in the housing, is connected to the liquid storage member, is arranged below the installation position, and is configured to guide the fluid flowing down from the installation position to the liquid storage member.
[0007] In one embodiment, an oil injection end receiving cavity for accessing one end of the liquid supply container is provided at the bottom of the installation position;
[0008] A first liquid inlet is provided at the bottom of the oil injection end receiving cavity;
[0009] The first liquid guiding member covers at least part of the first liquid inlet;
[0010] The fluid in the liquid supply container flows to the first liquid guiding member through the first liquid inlet.
[0011] In one embodiment, a second liquid inlet is provided at the lower end of the atomization chamber;
[0012] The first liquid guiding member is communicated with the second liquid inlet and is in upper and lower fit with the liquid storage member.
[0013] In one embodiment, the lower end of the atomization chamber is designed to be open to form the second liquid inlet;
[0014] The lower end of the liquid storage member is exposed outside the second liquid inlet; the upper side of the first liquid guiding member is attached to the lower end surface of the liquid storage member.
[0015] In one embodiment, the atomizer further includes a second anti-leakage structure;
[0016] The housing includes an atomization housing and a base housing. An atomization chamber is formed inside the atomization housing. The atomization housing communicates with the base housing. The oil injection end receiving cavity is provided in the base housing;
[0017] The base housing is provided with an atomization receiving cavity, and the atomization housing is installed in the atomization receiving cavity; the outer periphery of the atomization housing and the atomization receiving cavity are hermetically fitted through the second anti-leakage structure.
[0018] In one embodiment, the atomizer further includes a first anti-leakage liquid structure provided on the inner side wall of the oil injection end receiving cavity; the first anti-leakage liquid structure surrounds the inner side wall of the oil injection end receiving cavity for one week;
[0019] When one end of the liquid supply container is connected to the oil injection end receiving cavity, the first anti-leakage liquid structure is sealed between the outer wall of one end of the liquid supply container and the inner wall of the oil injection end receiving cavity.
[0020] In one embodiment, the atomizer further includes a protective cover, and the protective cover is connected to the housing and covers the outside of the installation position.
[0021] In one embodiment, an atomization system is provided, including a liquid storage bottle and an atomizer as described above;
[0022] The liquid storage bottle is provided with an oil injection end, and the oil injection end is provided with a bottle mouth for fluid to enter and exit; the liquid storage bottle is installed at the installation position, and the oil injection end is tightly installed in the oil injection end receiving cavity;
[0023] The bottle mouth is arranged facing the first liquid guiding member.
[0024] In one embodiment, a second liquid guiding member is provided at the bottle mouth of the liquid storage bottle; the second liquid guiding member covers the bottle mouth; the second liquid guiding member is configured to slow down the flow rate of the fluid in the liquid storage bottle at the bottle mouth of the liquid storage bottle;
[0025] and / or,
[0026] The second liquid guiding member is provided with air guiding holes penetrating through both the inside and outside ends of the liquid storage bottle.
[0027] In one embodiment, the bottle mouth is connected to the oil injection end receiving cavity, and the mouth edge of the bottle mouth abuts against the top of the first liquid guiding member.
[0028] For the atomizer and atomization system according to the above embodiments, the atomizer is provided with an installation position for the liquid supply container. Under the condition that the installation position is above the first liquid guiding member, the liquid supply container can be installed in an inverted manner above the first liquid guiding member. In this way, the fluid in the liquid supply container directly flows to the first liquid guiding member under the action of gravity, and there is no need to additionally provide a pumping device to transport the fluid in the liquid storage container to the atomizer. Furthermore, the complexity and tediousness of the installation or connection structure between the liquid supply container and the atomizer are reduced, and the installation and use difficulty is greatly reduced. Description of the Drawings
[0029] Figure 1 It is a first cross-sectional view of an atomizer in an embodiment;
[0030] Figure 2 It is another cross-sectional view of an atomizer in an embodiment;
[0031] Figure 3 It is a cross-sectional view of an atomization system in an embodiment;
[0032] Figure 4 It is Figure 3 The enlarged view of part A in
[0033] Figure 5 It is an exploded view of an atomization system in an embodiment.
[0034] Among them, the reference numerals are as follows:
[0035] 1 - Liquid storage bottle; 11 - Bottle mouth; 12 - Second liquid guiding member; 121 - Air guiding hole;
[0036] 2 - Housing; 210 - Atomization housing; 21 - Atomization chamber; 211 - Second liquid inlet; 212 - Second anti-leakage structure; 220 - Base housing; 22 - Oil filling end accommodating cavity; 221 - First liquid inlet; 222 - First anti-leakage liquid structure; 230 - Mounting base; 23 - Installation position;
[0037] 3 - Atomization component; 31 - Atomization core; 32 - Liquid storage member;
[0038] 4 - Power supply;
[0039] 5 - First liquid guiding member;
[0040] 6 - Protective cover. Detailed Embodiments
[0041] The present invention will be further described in detail below in conjunction with the specific embodiments and the accompanying drawings. Similar elements in different embodiments are denoted by related similar element numbers. In the following embodiments, many detailed descriptions are provided to enable a better understanding of the present application. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can 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 to avoid overwhelming the core part of the present application with excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.
[0042] In addition, 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 also be reordered or adjusted in a manner obvious to those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for clearly describing a certain embodiment and do not mean that they are necessary sequences, unless it is stated that a certain sequence must be followed.
[0043] The serial numbers assigned to the components herein, such as "first", "second", etc., are only used to distinguish the described objects and do not have any sequential or technical meaning. And the "connection" and "coupling" mentioned in the present application, unless otherwise specified, both include direct and indirect connection (coupling).
[0044] The connection structure between the atomization of existing products and the external liquid storage container is complex, the steps are cumbersome, and it has a relatively large installation and use difficulty.
[0045] In the present application, an installation position for installing an external liquid supply container is provided above the first liquid guiding member. The external liquid supply container can be configured to be installed upside down at the installation position. The external liquid supply container can directly achieve the outflow of the internal fluid by gravity without additionally configuring other pumping devices, greatly simplifying the structural complexity of the atomizer and reducing the installation and use difficulty.
[0046] Please refer to Figures 1 to 2 , Figure 1 which is a cross-sectional view of an atomizer in one embodiment, Figure 2 and
[0047] is another cross-sectional view of the atomizer in one embodiment. Figures 1 to 2As shown in the figure, an embodiment of the present application provides an atomizer, which mainly includes a housing 2, an atomization component 3 and a first liquid guide member 5. An atomization chamber 21 and an installation position 23 are provided in the housing 2; the installation position 23 is used for inversely installing an external liquid supply container; the atomization component 3 includes an atomization core 31 and a liquid storage member 32. The atomization core 31 is arranged in the atomization chamber 21, and the liquid storage member 32 is connected to the atomization core 31; the first liquid guide member 5 is arranged in the housing 2, the first liquid guide member 5 is connected to the liquid storage member 32, and is arranged below the installation position 23, and is configured to guide the fluid flowing down from the installation position 23 to the liquid storage member 32.
[0048] The housing 2, which can be a square housing. According to the prior art, an atomization chamber 21 is provided in the housing 2. Usually, one end of the atomization chamber 21 is arranged on the housing wall to communicate with the outside for releasing mist to the outside, and the other end extends into the interior of the housing 2; the housing 2 can also have other shapes, such as circular, oval, etc.
[0049] The atomization component 3, which usually includes an atomization core 31 and a liquid storage member 32. The liquid storage member 32 is surrounded and arranged on the side of the atomization core 31 and is connected to the atomization core 31. The connection method can be abutting contact. The connection method between the liquid storage member 32 and the first liquid guide member 5 can also be bonding, plugging, etc. The liquid storage member 32 can be a liquid-absorbing material such as liquid storage cotton or liquid storage foam, etc., which will not be elaborated here one by one.
[0050] The battery 4, which is arranged in the housing 2. It can be known from the prior art that the atomization core 31 is connected to the battery 4 to realize the energized operation of the atomization core 31, which will not be repeated here.
[0051] The first liquid guide member 5, one end of which can be in contact with the side or other positions of the liquid storage member 32; it is horizontally arranged in the housing 2. The first liquid guide member 5 can be a liquid-conducting cotton or liquid-conducting foam, microporous ceramics and other liquid-absorbing materials, which will not be elaborated here one by one.
[0052] When fluid enters the first liquid guide member 5, the fluid penetrates in the first liquid guide member 5 and is transmitted to the liquid storage member 32. Finally, the atomization core 31 atomizes the fluid stored in the liquid storage member 32, and the formed mist is discharged outside the housing 2 through the atomization chamber 21. The above setting of the first liquid guide member 5 effectively guides the fluid along a fixed path, realizes rapid transmission, enhances the transmission concentration of the fluid, and improves the transmission efficiency. The first liquid guide member 5 is horizontally arranged in the housing 2, so as to ensure that the fluid penetrates uniformly on the first liquid guide member 5.
[0053] In addition, if it is necessary to speed up the penetration rate of the fluid in the first liquid guiding member 5 into the liquid storage member 32, the end of the first liquid guiding member 5 connected to the liquid storage member 32 can be set at a low position, and the end away from the liquid storage member 32 can be set at a high position. In this way, the fluid enters the first liquid guiding member 5 from one end of the first liquid guiding member 5, and the fluid is accelerated to penetrate into the low end of the first liquid guiding member 5 under the action of gravity.
[0054] The mounting position 23 can be set in the shell 2 or outside the shell 2. Its function is to install an external liquid supply container. It can be expressed as a buckle position or a clamp, which is used to clamp the liquid supply container. If the mounting position 23 is in the shell 2, the shell 2 needs to be disassembled when installing the liquid supply container; if the mounting position 23 is outside the shell 2 (including on the shell wall or outside the shell wall), the shell 2 does not need to be disassembled when installing the liquid storage bottle. In this embodiment, the mounting position 23 is located above the first liquid guide member 5 in the vertical direction.
[0055] Combination Figure 3 When in use, the liquid supply container is inverted and fixed above the mounting position 23, and the fluid in the liquid supply container flows directly to the first liquid guide member 5 under the action of gravity. Therefore, this embodiment limits the spatial position relationship between the mounting position 23 and the first liquid guide member 5, so that after the liquid supply container is installed on the atomizer, the fluid in it flows toward the first liquid guide member 5 by itself, and there is no need to set up a component for transporting the fluid in the liquid supply container to the atomization core 31, thereby simplifying the complexity of the installation or connection structure between the liquid supply container and the atomizer itself and between each other, and also reducing the installation steps between the two, reducing the difficulty of installation and use; it can be known that the fluid in the liquid supply container finally reaches the atomization core 31 and is atomized after passing through the first liquid guide member 5 and the liquid storage member 32, so it can be known that the fluid can be various atomization matrices.
[0056] In one embodiment, an oil filling end accommodating chamber 22 for accessing one end of a liquid supply container is provided at the bottom of the mounting position 23; a first liquid inlet 221 is provided at the bottom of the oil filling end accommodating chamber 22; the first liquid guiding member 5 at least partially covers the first liquid inlet 221; and the fluid in the liquid supply container flows to the first liquid guiding member 5 through the first liquid inlet 221.
[0057] The oil filling end accommodating chamber 22 is arranged at the top of the shell 2 and extends downward into the shell 2. It should be noted that the top of the oil filling end accommodating chamber 22 is open upward to serve as a connection point for connecting one end of the liquid supply container.
[0058] The first liquid inlet 221 is located at the bottom of the oil filling end accommodating chamber 22; it can be understood that the first liquid guide 5 is located directly below the first liquid inlet 221, and the first liquid guide 5 at least partially covers the first liquid inlet 221, thereby absorbing the fluid entering from the first liquid inlet 221. In this embodiment, in order to avoid leakage of the fluid, the first liquid guide 5 covers the entire first liquid inlet 221, so that the first liquid guide 5 can absorb all the fluid passing through the first liquid inlet 221 to avoid the outflow of the fluid; what is more, the first liquid guide 5 is laid below the first liquid inlet 221, extending from the center of the first liquid inlet 221 to the outer edge, so that the first liquid guide 5 has a larger area for receiving the flow at the first liquid inlet 221 to prevent the fluid from overflowing to the surrounding.
[0059] In addition, one end of the liquid supply container is an oil filling end for discharging oil, and the connection method between the oil filling end and the oil filling end receiving chamber 22 includes but is not limited to plug-in fit, interference fit, and thread fit, etc. For example, in this embodiment, the inner wall of the oil filling end receiving chamber 22 is provided with an internal thread, and one end of the liquid supply container is provided with an external thread, and the internal and external threads are screwed together to realize the connection between the liquid supply container and the atomizer.
[0060] In one embodiment, a second liquid inlet 211 is disposed at the lower end of the atomization chamber 21 ; the first liquid guiding member 5 is connected to the second liquid inlet 211 and is in contact with the liquid storage member 32 from top to bottom.
[0061] The atomization chamber 21 is usually of channel type, and the channel extends along the height direction of the shell 2, and its upper end is connected to the top of the shell 2, and the lower end is inside the shell 2. This is the prior art and will not be described again; the second liquid inlet 211 is located at the lower end of the channel; it can be known that an air intake route will be provided in the shell 2, and the lower end of the channel will be connected to the air intake route for air to pass through.
[0062] As can be known from the above, the liquid storage member 32 is surrounded and disposed on the side of the atomizer core 31 . In this embodiment, the bottom end of the liquid storage member 32 abuts against the first liquid guide member 5 at the second liquid inlet 211 .
[0063] In this embodiment, the first liquid guiding member 5 is arranged at one end away from the first liquid inlet 221 and abuts against the lower end of the liquid storage member 32; in this embodiment, the first liquid guiding member 5 completely covers the lower end of the liquid storage member 32, thereby ensuring that the first liquid guiding member 5 and the liquid storage member 32 have a maximum contact area, thereby accelerating the penetration of the fluid between the two.
[0064] Further, an implementable manner of the liquid storage member 32 includes that it is of a cylindrical structure, with a counterbore provided at one end, the counterbore is sleeved outside the atomization core 31, and the other end is exposed outside the second liquid inlet 211. At this time, the entire bottom end face of the liquid storage member 32 serves as an effective surface to contact the first liquid guiding member 5, ensuring the abutment between the liquid storage member 32 and the first liquid guiding member 5 to the greatest extent. If a through hole penetrating the upper and lower ends is provided in the middle of the liquid storage member 32, then only the annular surface at the lower end of the liquid storage member 32 contacts the first liquid guiding member 5.
[0065] In one embodiment, the lower end of the atomization chamber 21 is of an open design and forms a second liquid inlet 211; the lower end of the liquid storage member 32 is exposed outside the second liquid inlet 211; the upper side of the first liquid guiding member 5 is attached to the lower end face of the liquid storage member 32.
[0066] The liquid storage member 32 extends downward and is exposed outside the second liquid inlet 211. The purpose of the exposed lower end of the liquid storage member 32 is that the exposed part facilitates the abutment between the liquid storage member 32 and the first liquid guiding member 5, ensuring that the fluid of the first liquid guiding member 5 can flow better towards the liquid storage member 32. Additionally, the open design of the lower end of the atomization chamber 21 can better communicate with the air intake line inside the housing 2, better realizing the air intake of the atomization chamber 21; the open design can provide a chamfer at the edge of the second liquid inlet 211, or the second liquid inlet 211 is of an outward-opening horn design.
[0067] In one embodiment, the atomizer further includes a second anti-leakage structure 212; the housing 2 includes an atomization housing 210 and a base housing 220. An atomization chamber 21 is formed inside the atomization housing 210, the atomization housing 210 communicates with the base housing 220, and an oil injection end accommodation cavity 22 is provided in the base housing 220; the base housing 220 is provided with an atomization accommodation cavity, and the atomization housing 210 is installed in the atomization accommodation cavity; the outer periphery of the atomization housing 210 and the atomization accommodation cavity are hermetically fitted through the second anti-leakage structure 212.
[0068] The second anti-leakage structure 212 can be selected as a sealing ring, and the material can be selected as rubber.
[0069] The atomization housing 210, which is but not limited to a strip-shaped structure, the atomization chamber 21 penetrates the entire atomization housing 210 along the length direction of the atomization housing 210; thus, the atomization core 31 will be installed in the atomization chamber 21 of the atomization housing 210; accordingly, the liquid storage member 32 is also provided in the mounting sleeve 7.
[0070] The base shell 220, which has a square structure, has a hollow structure in the middle, and it is an atomization accommodation cavity. In this embodiment, the lower end of the atomization shell 210 is connected to the top of the base shell 220, and the two can be connected by means such as screwing or gluing. That is to say, the lower end of the atomization shell 210 is connected to the atomization accommodation cavity, and at this time the atomization chamber 21 is communicated with the atomization accommodation cavity. Importantly, the second anti-leakage structure 212 forms a seal between the outer periphery of the atomization shell 210 and the inner wall of the atomization accommodation cavity; the above-mentioned air intake line is arranged in the atomization accommodation cavity of the base shell 220. In addition, combined with the above, the separate setting between the atomization shell 210 and the base shell 220 is more conducive to replacing or cleaning the atomization core 31 after the atomization shell 210 is disassembled; and the lower end of the atomization shell 210 is also designed to be open, which is more conducive to the operation of taking out or installing the atomization core 31.
[0071] In this embodiment, the liquid injection end accommodation cavity 22 and the atomization shell 210 are arranged side by side on the top of the base shell 220; thus, after the liquid supply container is installed in the liquid injection end accommodation cavity 22, the liquid supply container is parallel to the atomization shell 210.
[0072] In one embodiment, the atomizer further includes a first anti-liquid leakage structure 222 arranged on the inner side wall of the liquid injection end accommodation cavity 22; the first anti-liquid leakage structure 222 surrounds the inner side wall of the liquid injection end accommodation cavity 22 for one week; when one end of the liquid supply container is connected to the liquid injection end accommodation cavity 22, the first anti-liquid leakage structure 222 seals the gap between the outer wall of one end of the liquid supply container and the inner wall of the liquid injection end accommodation cavity 22.
[0073] The first anti-liquid leakage structure 222 can be selected as a sealing ring, and the material can be selected as rubber. It can be understood that the sealing ring forms a closed-loop sealing structure between the outer wall of one end of the liquid supply container and the inner wall of the liquid injection end accommodation cavity 22, effectively preventing the fluid from leaking to the top of the liquid injection end accommodation cavity 22.
[0074] Specifically, for the convenience of installing and fixing the liquid guiding member 5 and the first anti-liquid leakage structure 222, the base shell 220 is provided with an upward-opening notch below the installation position 23. The liquid guiding member 5 is directly and conveniently installed into the atomization accommodation cavity through the notch. At this time, one end of the liquid guiding member 5 is communicated with the second liquid inlet 211, which can be used to fit with the liquid storage member 32, and the other end is located in the notch; in this embodiment, the shell 21 further includes an installation base 230. Importantly, the installation base 230 is adapted to the notch, and the liquid injection end accommodation cavity 22 is arranged in the installation base 230. After the above-mentioned liquid guiding member 5 is installed, the installation base 230 is directly arranged in the notch. At this time, the installation base 230 can press on the top of the liquid guiding member to fix the liquid guiding member 5; in addition, the connection between the installation base 230 and the notch can be fixed by connection methods such as but not limited to buckling or bonding.
[0075] Figure 5An exploded view of the atomization system in one embodiment.
[0076] In one embodiment, the atomizer further includes a protective cover 6, and the protective cover 6 is connected to the housing 2 and covers the outside of the installation position 23.
[0077] As Figure 5 shown, in this embodiment, an inwardly recessed L-shaped installation position 23 is provided on one side of the housing 2, and the liquid supply container is arranged in the installation position 23, so that the liquid supply container does not protrude outside the housing 2, increasing the overall aesthetic feeling. Further, a protective cover 6 can be further arranged outside the liquid supply container, and the protective cover 6 covers the outside of the liquid supply container and is fixedly or detachably connected to the housing 2. Importantly, the outer wall surfaces of the protective cover 6 are aligned with the outer wall surface of the housing 2 to form a flat plane, whereby the protective cover 6 and the housing 2 form a beautiful whole.
[0078] Exemplarily, the protective cover 6 of this embodiment can also be connected to the above-mentioned installation base 230. Specifically, a snap protrusion is provided on the inner wall of the installation base 230, and a snap hole is provided on the outer wall of the protective cover 6. After the protective cover 6 covers the outside of the liquid supply container, the snap hole is snap-connected to the snap protrusion, thus completing the installation of the protective cover 6.
[0079] Figure 3 A cross-sectional view of the atomization system in one embodiment.
[0080] As Figure 3 shown, an atomization system includes a liquid storage bottle 1 and the above-mentioned atomizer; the liquid storage bottle 1 is provided with an oil injection end, and the oil injection end is provided with a bottle mouth 11 for fluid to enter and exit; the liquid storage bottle 1 is installed in the installation position 23, and the oil injection end is tightly installed in the oil injection end receiving cavity 22; the bottle mouth 11 faces the first liquid guiding member 5.
[0081] The liquid storage bottle 1 is the above-mentioned liquid supply container. It can be known that one end of the liquid storage bottle 1 is the oil injection end, and the oil injection end is provided with a bottle mouth 11 for fluid to enter and exit. The bottle mouth 11 of the liquid storage bottle 1 in this embodiment is arranged downward, and the fluid in the liquid storage bottle 1 flows downward onto the first liquid guiding member 5 below. If the oil injection end receiving cavity 22 is provided at the bottom of the installation position 23, the bottle mouth 11 of the liquid storage bottle 1 is screwed to the oil injection end receiving cavity 22.
[0082] In this embodiment, the axis of the bottle mouth 11 is perpendicular to the plane where the first liquid guiding member 5 is located; in other embodiments, the axis of the bottle mouth 11 can form an angle with the plane where the first liquid guiding member 5 is located.
[0083] In one embodiment, a second liquid guiding member 12 is provided at the bottle mouth 11 of the liquid storage bottle 1; the second liquid guiding member 12 covers the bottle mouth 11; the second liquid guiding member 12 is configured to slow down the flow rate of the fluid in the liquid storage bottle 1 at the bottle mouth 11 of the liquid storage bottle 1.
[0084] The second liquid guiding member 12 can be a porous material with liquid absorption properties such as liquid guiding cotton, liquid guiding foam, or microporous ceramics, and will not be elaborated one by one here. When the liquid storage bottle 1 is inverted at the installation position 23, the liquid in the liquid storage bottle 1 can permeate outward through the second liquid guiding member 12 when it flows to the bottle mouth 11. The second liquid guiding member 12 effectively controls the speed of the fluid flowing out of the bottle mouth 11, thereby giving enough time for the liquid storage bottle 1 to be inverted and installed into the oil injection end accommodation cavity 22, avoiding the leakage of the fluid.
[0085] In one embodiment, the second liquid guiding member 12 is provided with a gas guiding hole 121 penetrating through both the inner and outer ends of the liquid storage bottle 1.
[0086] In this embodiment, the second liquid guiding member 12 is provided with a gas guiding hole 121 penetrating through both ends along the axial direction of the bottle mouth 11. The gas guiding hole 121 is used to introduce the gas outside the liquid storage bottle 1 to balance the internal and external air pressures. When the liquid storage bottle 1 is inverted, it is more conducive to the outflow of the fluid.
[0087] In one embodiment, the rim of the bottle mouth 11 abuts against the top of the first liquid guiding member 5. After the bottle mouth 11 abuts against the top of the first liquid guiding member 5, the fluid flowing out of the bottle mouth 11 directly enters the first liquid guiding member 5, and no splashing problem will occur.
[0088] Figure 4 For Figure 3 the enlarged view at position A in
[0089] As Figure 4 shown, in addition, the rim of the bottle mouth 11 abuts against the top of the first liquid guiding member 5. At this time, one end of the second liquid guiding member 12 near the first liquid guiding member 5 at the bottle mouth 11 is retracted into the bottle mouth. The retraction depth D of the second liquid guiding member 12 is (0.5 mm - 1 mm). This distance forms a gap between the second liquid guiding member 12 and the first liquid guiding member 5. This depth ensures that under the action of gravity, the fluid in the liquid storage bottle 1 flows downward through the second liquid guiding member 12 and permeates into the first liquid guiding member 5.
[0090] The above uses specific examples to elaborate on the present invention, which is only used to help understand the present invention and is not intended to limit the present invention. For those skilled in the technical field to which the present invention belongs, according to the idea of the present invention, several simple deductions, deformations, or replacements can also be made.
Claims
1. Atomizer, characterized in that, It comprises a shell, an atomizing assembly and a first liquid guiding member, wherein the shell is provided with an atomizing bin and a mounting position; the mounting position is used for inverted mounting of an external liquid supply container; The atomization assembly comprises an atomization core and a liquid storage component, wherein the atomization core is arranged in the atomization bin, and the liquid storage component is connected to the atomization core; The first liquid guiding member is disposed in the housing, connected to the liquid storage member, and disposed below the mounting position, and is configured to guide the fluid flowing down from the mounting position to the liquid storage member.
2. The atomizer according to claim 1, characterized in that The bottom of the installation position is provided with an oil filling end receiving cavity for receiving one end of the liquid supply container; A first liquid inlet is provided at the bottom of the oil filling end accommodating chamber; The first liquid guiding member covers at least a portion of the first liquid inlet; The fluid in the liquid supply container flows toward the first liquid guide member through the first liquid inlet.
3. The atomizer according to claim 2, characterized in that A second liquid inlet is provided at the lower end of the atomization bin; The first liquid guiding member is connected to the second liquid inlet and is in contact with the liquid storage member from top to bottom.
4. The atomizer according to claim 3, characterized in that The lower end of the atomization bin is open and forms the second liquid inlet; The lower end of the liquid storage component is exposed at the second liquid inlet; the upper side of the first liquid guide component is in contact with the lower end surface of the liquid storage component.
5. The atomizer according to claim 3 or 4, characterized in that: Also includes a second leak-proof structure; The housing comprises an atomizing shell and a base shell, the atomizing chamber is formed in the atomizing shell, the atomizing shell is connected to the base shell, and the oil filling end accommodating chamber is arranged in the base shell; The base shell is provided with an atomization accommodating cavity, and the atomization shell is installed in the atomization accommodating cavity; the outer periphery of the atomization shell and the atomization accommodating cavity are sealed and matched through the second leak-proof structure.
6. The atomizer according to claim 2, characterized in that It also includes a first anti-leakage structure arranged on the inner side wall of the oil filling end accommodating chamber; the first anti-leakage structure surrounds the inner side wall of the oil filling end accommodating chamber; When one end of the liquid supply container is connected to the oil filling end accommodating chamber, the first anti-leakage structure is sealed between the outer wall of one end of the liquid supply container and the gap between the inner wall of the oil filling end accommodating chamber.
7. The atomizer according to claim 1, characterized in that Also included is a protective cover, which is connected to the housing and is arranged outside the installation position.
8. An atomization system, characterized in that: A liquid storage bottle and an atomizer as claimed in any one of claims 2 to 6; The liquid storage bottle is provided with an oil filling end, and the oil filling end is provided with a bottle mouth for fluid to enter and exit; the liquid storage bottle is installed at the installation position, and the oil filling end is tightly installed in the oil filling end accommodating cavity; The bottle mouth is arranged toward the first liquid guiding member.
9. The atomization system according to claim 8, characterized in that: The bottle mouth of the liquid storage bottle is provided with a second liquid guide member; the second liquid guide member covers the bottle mouth; the second liquid guide member is configured to slow down the speed of the fluid in the liquid storage bottle flowing out at the bottle mouth of the liquid storage bottle; and / or, The second liquid guiding member is provided with air guiding holes penetrating the inner and outer ends of the liquid storage bottle.
10. The atomization system according to claim 8 or 9, characterized in that: The bottle mouth is connected to the oil filling end accommodating cavity, and the edge of the bottle mouth abuts against the top of the first liquid guiding member.