Atomizing equipment for controlling oil injection through turntable

By designing the rotating parts and ruptured teeth structures in the atomization equipment, the oil leakage problem caused by the continuous oil supply of the oil supply bottle is solved, and effective control of the oil supply volume and normal use of the equipment are achieved.

CN223081145UActive Publication Date: 2025-07-11SHENZHEN SKE TECH CO LTD
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Patent Information

Application Number
CN202421846083.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-11
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing atomization equipment is unreasonable in the installation design of the oil supply bottle and the oil storage chamber, which causes the oil supply bottle to be in a continuous oil supply state, which easily causes too much oil in the oil storage chamber to overflow, resulting in oil leakage.

Method used

By designing a rotating member in the atomization equipment, the rotating member includes a toggle part and a rotating dial part. The rotating member can block or connect the oil supply channel at different positions. The user controls the oil supply amount by rotating the rotating member to avoid the oil supply bottles for a long time and continuous oil supply. Combined with the ruptured tooth and sealing convex ring structure, the smoothness and sealing of the oil supply channel are ensured.

Benefits of technology

Effectively control the oil supply in the oil storage chamber, avoid excessive oil overflow in the oil storage chamber, ensure the normal use of atomization equipment, prevent oil leakage, and ensure the smoothness and sealing of the oil supply channel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses atomization equipment for controlling oil injection through a rotary table, which comprises an equipment main body, an atomization component, a rotary table, a rotary table, a rotary table and a rotary table, and is characterized in that the equipment main body comprises an oil storage bin and an atomization component; the oil supply bottle is installed in the oil storage bin, the oil supply bottle is provided with an oil supply cavity and an oil supply channel, the oil supply cavity is located below the oil storage cavity, the oil supply channel communicates with the oil inlet channel, the oil supply bottle forms a movable cavity, the movable cavity communicates with the outside of the oil supply bottle, and at least part of the movable cavity and the oil supply channel are overlapped to form a blocking area; and the rotating piece is rotatably installed in the movable cavity and comprises a stirring part and a rotating disc part, the stirring part communicates with the exterior of the oil supply bottle, and the rotating disc part is provided with a blocking part and an oil passing hole at intervals, so that the rotating piece has an oil blocking position and an oil passing position on the rotating track. According to the technical scheme, the oil supply amount of the oil supply bottle to the oil storage cavity is controlled by rotating the rotating piece and controlling the inversion time of the atomization equipment, and therefore the phenomenon of oil leakage caused by too much oil in the oil storage cavity is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of atomization, and particularly relates to an atomization device for controlling oil injection through a turntable. Background Art

[0002] In the existing atomization device, an oil storage cavity is formed inside, and then the atomization component is installed in the oil storage cavity. The atomization component can adsorb the oil liquid in the oil storage cavity, and then a power supply component is arranged to supply power to the atomization component, so that the atomization component is heated, and thus the adsorbed oil liquid is converted into aerosol, and the aerosol flows out through the nozzle of the atomization device for users to inhale.

[0003] To meet the requirements of large puff numbers and compliance, more and more external oil bottle type atomization devices have emerged on the market. An oil supply bottle is externally hung on the device main body to supply oil to the oil storage cavity of the device main body. During transportation, the oil supply bottle and the device main body are separately packaged to meet the compliance requirements. During use, after the oil supply bottle is unsealed, it is installed on the device main body to increase the oil amount of the entire atomization device and achieve large puff numbers. However, in the existing atomization device, due to the unreasonable installation design of the oil supply bottle and the oil storage cavity, the oil supply bottle is in a continuous oil supply state, which easily causes the oil amount in the oil storage cavity to be too much and overflow, and thus easily leads to oil leakage of the atomization device. Therefore, it is necessary to design an atomization device for controlling oil injection through a turntable to avoid oil leakage of the atomization device. Summary of the Utility Model

[0004] The main purpose of the utility model is to provide an atomization device for controlling oil injection through a turntable, aiming to solve the problem that the oil supply bottle of the existing atomization device is in a continuous oil supply state, which easily causes the oil amount in the oil storage cavity to be too much and overflow, and thus easily leads to oil leakage of the atomization device.

[0005] To achieve the above purpose, the atomization device for controlling oil injection through a turntable proposed by the utility model includes:

[0006] A device main body, including an oil storage bin and an atomization component, wherein the oil storage bin forms an oil storage cavity and an oil inlet channel communicating with the oil storage cavity, and the atomization component is installed in the oil storage cavity;

[0007] An oil supply bottle, detachably installed on the oil storage bin, the oil supply bottle is provided with an oil supply cavity and an oil supply channel communicating with the oil supply cavity, the oil supply cavity is located below the oil storage cavity, the oil supply channel is communicated with the oil inlet channel, the oil supply bottle forms a movable cavity, the movable cavity is communicated with the outside of the oil supply bottle, and at least part of the movable cavity overlaps with the oil supply channel to form a through-blocking area;

[0008] A rotating member is rotatably mounted on the movable cavity, the rotating member comprises a toggle portion and a turntable portion, the toggle portion is communicated with the outside of the oil supply bottle for a user to toggle, and the turntable portion is provided with a blocking portion and an oil-passing hole at intervals, so that the rotating member has an oil-blocking position and an oil-passing position on a rotation trajectory;

[0009] When the rotating member is at the oil blocking position, the blocking portion blocks the oil passage area;

[0010] When the rotating member is in the oil passing position, the oil passing hole is communicated with the oil passing area.

[0011] Optionally, a plurality of film-breaking teeth are protruding from the hole wall of the oil-through hole, and the film-breaking teeth extend along the length direction of the oil-through hole, and the plurality of film-breaking teeth are arranged along the circumference of the oil-through hole.

[0012] Optionally, a plurality of film-breaking protrusions are provided at positions of the oil supply channel adjacent to the unblocking area, the film-breaking protrusions extend along the extension direction of the oil supply channel, and the plurality of film-breaking protrusions are arranged along the circumference of the oil supply channel.

[0013] Optionally, a plurality of the film-breaking protrusions are arranged along the circumference of the oil supply channel to form a film-breaking layer, the number of the film-breaking layers is two, and the two film-breaking layers are respectively arranged adjacent to two ends of the unblocking area.

[0014] Optionally, the rotating member further includes a limiting portion, the limiting portion connects the toggle portion and the turntable portion, the limiting portion is provided with a limiting hole, a limiting column is installed inside the oil supply bottle, the limiting column passes through the limiting hole, and the rotating member can rotate around the limiting column.

[0015] Optionally, the limiting column is provided with a fixing hole, and a fixing protrusion is formed inside the oil supply bottle, and the fixing protrusion is inserted into the fixing hole.

[0016] Optionally, the oil storage tank comprises a tank body and a first sealing assembly, one side of the tank body is open, the first sealing assembly is installed on the open side of the tank body to enclose the tank body to form the oil storage cavity, and the first sealing assembly forms the oil inlet channel;

[0017] The oil supply bottle includes an oil bottle body and a second sealing component. One side of the oil bottle body is open. The second sealing component is installed on the open side of the oil bottle body to enclose the oil bottle body to form the oil supply cavity. The second sealing component forms the oil supply channel. The second sealing component is at least partially inserted in the oil inlet channel.

[0018] Optionally, the oil bottle body is provided with a movable notch, and the second sealing assembly comprises:

[0019] The first seal is inserted into the open side of the oil bottle body. On the side of the first seal facing away from the oil supply chamber, there is an insertion groove, which is annular. The first seal is provided with a first channel penetrating its upper and lower sides.

[0020] The installation member includes an upper part and a lower part. At least part of the upper part is inserted into the oil inlet channel. The upper part is provided with a third channel penetrating its upper and lower ends. At least part of the lower part is inserted into the insertion groove, and an installation cavity communicating with the third channel is formed by enclosing between the lower part and the upper side of the first seal. A movable hole is provided on the side wall of the lower part corresponding to the movable notch, and the movable hole communicates with the installation cavity.

[0021] The second seal is installed in the installation cavity and forms a movable gap between the second seal and the first seal above the first seal. The movable gap, the movable hole and the movable notch form the movable cavity. The first seal is provided with a second channel penetrating its upper and lower sides, and both ends of the second channel communicate with the movable gap and the third channel respectively.

[0022] Optionally, a first sealing convex ring protrudes from the surface of the turntable part. The first sealing convex ring is arranged around and adjacent to the blocking part, and the first sealing convex ring is used for abutting against the wall of the movable cavity; and / or,

[0023] A second sealing convex ring protrudes from the surface of the turntable part. The second sealing convex ring is arranged around and adjacent to the wall of the oil passing hole, and the second sealing convex ring is used for abutting against the wall of the movable cavity.

[0024] Optionally, the device body further includes a power supply assembly, which is located on one side of the oil storage bin and the oil supply bottle and is detachably connected to the oil storage bin and the oil supply bottle respectively.

[0025] The technical solution of the present utility model is to install the oil supply bottle at the lower end of the oil storage bin, and by rotating the installation of the rotating member, the rotating member can block the oil supply oil channel or communicate with the oil inlet channel. In this way, the user can control the oil supply amount of the oil supply bottle to the oil storage cavity by rotating the rotating member and controlling the inversion time of the atomization device, avoiding the oil supply bottle being in a continuous oil supply state for a long time, thereby avoiding the phenomenon of oil leakage caused by excessive oil volume overflowing in the oil storage cavity. On the other hand, it can be controlled that the oil liquid in the oil storage cavity cannot flow into the oil supply bottle, ensuring that there is oil liquid in the oil storage cavity, thereby ensuring the normal use of the atomization device. Description of the Drawings

[0026] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on the structures shown in these drawings.

[0027] Figure 1 It is a schematic structural diagram of an atomizing device for controlling oil injection by a turntable according to the present invention;

[0028] Figure 2 It is an exploded schematic diagram of an oil storage tank, an oil supply bottle and a power supply component of an atomizing device for controlling oil injection by a turntable according to the present invention;

[0029] Figure 3 It is a cross-sectional structural schematic diagram of a rotating part of an atomizing device for controlling oil injection by a turntable according to the present invention when in an oil-passing position;

[0030] Figure 4 It is a cross-sectional structural schematic diagram of an oil supply bottle of an atomizing device for controlling oil injection by a turntable according to the present invention;

[0031] Figure 5 It is a schematic structural diagram of a rotating part of an atomizing device for controlling oil injection by a turntable according to the present invention.

[0032] Explanation of the reference numerals in the drawings:

[0033] Label name Label name 100 Oil storage tank 111 Warehouse 112 First sealing component 113 Oil storage chamber 114 Oil inlet channel 120 Atomization components 130 Power supply components 200 Oil supply bottle 201 Oil supply chamber 202 Oil supply channel 203 Ruptured membrane 204 Fixed protrusion 210 Oil bottle body 211 Activity gap 220 Second sealing assembly 221 First seal 222 Second seal 223 Mounting parts 224 First Channel 225 Second channel 226 Third Channel 227 Activity hole 228 Activity gap 230 Limit column 240 Sealing ring 300 Rotating parts 310 Toggle 320 Limiting part 321 Limit hole 330 Turntable 331 Blocking Department 332 Oil hole 333 Membrane breaking teeth 334 First sealing ring 335 Second sealing ring

[0034] The realization of the object, functional features and advantages of the present invention will be further described in conjunction with the embodiments with reference to the drawings. Specific embodiments

[0035] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0036] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative position relationship and movement conditions between components in a specific posture (as shown in the drawings). If the specific posture changes, the directional indications will also change accordingly.

[0037] In addition, the descriptions of "first", "second", etc. in the present utility model are only used for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, "and / or" in the full text includes three solutions. Taking A and / or B as an example, it includes technical solution A, technical solution B, and technical solution that satisfies both A and B; in addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.

[0038] The following will mainly describe the specific structure of the atomization device that controls oil injection through a turntable.

[0039] Reference Figures 1 to 5 In the embodiment of the utility model, the atomizing device for controlling oil injection by a turntable includes:

[0040] The device body includes an oil storage tank 100 and an atomizing assembly 120. The oil storage tank 100 is formed with an oil storage cavity 113 and an oil inlet passage 114 communicating with the oil storage cavity 113. The atomizing assembly 120 is installed in the oil storage cavity 113.

[0041] The oil supply bottle 200 is detachably mounted on the oil storage tank 100. The oil supply bottle 200 is provided with an oil supply cavity 201 and an oil supply passage 202 communicating with the oil supply cavity 201. The oil supply cavity 201 is located below the oil storage cavity 113. The oil supply passage 202 is communicated with the oil inlet passage 114. The oil supply bottle 200 is formed with an active cavity, which is communicated with the outside of the oil supply bottle 200. The active cavity at least partially overlaps with the oil supply passage 202 to form a through-blocking area.

[0042] The rotating member 300 is rotatably mounted on the movable cavity. The rotating member 300 includes a toggle portion 310 and a turntable portion 330. The toggle portion 310 is connected to the outside of the oil supply bottle 200 for the user to toggle. The turntable portion 330 is provided with blocking portions 331 and oil holes 332 at intervals, so that the rotating member 300 has an oil blocking position and an oil passing position on the rotation trajectory.

[0043] When the rotating member 300 is at the oil blocking position, the blocking portion 331 blocks the oil passage area;

[0044] When the rotating member 300 is at the oil passing position, the oil passing hole 332 is in communication with the oil passing area.

[0045] Specifically, in this embodiment, there are many detachable installation methods for the oil supply bottle 200 and the oil storage chamber 100, such as snap connection, plug connection, screw connection, etc., which are not specifically limited herein. Before using the atomization device, the oil inlet passage 114 of the oil storage chamber 100 and the oil supply passage 202 of the oil supply bottle 200 can be sealed with sealing plugs respectively to ensure the sealing performance of the device main body and the oil supply bottle 200. Then, the oil supply bottle 200 and the device main body can be packaged separately to meet compliance requirements. During use, the sealing plugs are removed, and the oil supply bottle 200 is installed on the oil storage chamber 100 so that the oil supply passage 202 communicates with the oil inlet passage 114.

[0046] During normal use of the atomization device, the rotating member 300 is rotated to the oil blocking position, so that a partial small section of the oil supply passage 202 (i.e., the through-blocking area formed by the overlap of the movable cavity and the oil supply passage 202) is blocked by the blocking portion 331 of the turntable portion 330, and the oil liquid cannot pass through, so that the oil liquid in the oil supply bottle 200 cannot reach the oil storage cavity 113, and the oil storage cavity 113 is not supplied with oil. At the same time, the liquid in the oil storage cavity 113 will not flow into the oil supply bottle 200, ensuring the normal use of the atomization device. It should be noted that the oil supply bottle 200 is located at the lower end of the oil storage chamber 100, with reference to the orientation when the user uses the atomization device.

[0047] When the oil liquid in the oil storage cavity 113 is less or used up, the rotating member 300 is rotated to the oil inlet position, so that the oil through hole 332 communicates with the through-blocking area formed by the overlap of the movable cavity and the oil supply passage 202. In this way, the oil supply passage 202 is unblocked, and the atomization device is inverted so that the oil supply bottle 200 is above the oil storage chamber 100. In this way, the oil liquid in the oil supply bottle 200 will enter the oil storage cavity 113 through the oil supply passage 202 and the oil inlet passage 114 under the action of gravity to supply oil to the oil storage cavity 113. When the oil liquid in the oil supply bottle 200 is used up, a new oil supply bottle 200 can be replaced.

[0048] The technical solution of the present utility model is to install the oil supply bottle 200 at the lower end of the oil storage chamber 100 and rotate the rotating member 300 to install, so that the rotating member 300 can block the oil supply passage or communicate with the oil inlet passage 114. In this way, the user can control the oil supply amount of the oil supply bottle 200 to the oil storage cavity 113 by rotating the rotating member 300 and controlling the inversion time of the atomization device, avoiding the oil supply bottle 200 being in a continuous oil supply state for a long time, thereby avoiding the phenomenon of oil leakage caused by excessive oil volume overflowing in the oil storage cavity 113. On the other hand, the oil liquid in the oil storage cavity 113 can be controlled not to flow into the oil supply bottle 200, ensuring that there is oil liquid in the oil storage cavity 113, and thus ensuring the normal use of the atomization device.

[0049] In order to avoid the formation of oil film in the oil hole 332, in some embodiments, the hole wall of the oil hole 332 is provided with a plurality of film-breaking teeth 333, the film-breaking teeth 333 extend along the length direction of the oil hole 332, and the plurality of film-breaking teeth 333 are arranged along the circumference of the oil hole 332. The film-breaking teeth 333 are tooth-shaped and have chamfers, which can effectively avoid the formation of oil film in the oil hole 332. Even if an oil film is formed, under the action of the gravity of the oil, the tooth-shaped film-breaking teeth 333 can easily puncture the oil film, thereby ensuring that the oil hole 332 is unobstructed and the effectiveness of oil injection is ensured.

[0050] In some embodiments, the oil supply channel 202 is provided with a plurality of film-breaking protrusions 203 at positions adjacent to the unblocking zone, and the film-breaking protrusions 203 extend along the extension direction of the oil supply channel 202, and the plurality of film-breaking protrusions 203 are arranged along the circumference of the oil supply channel 202. The arrangement of the film-breaking protrusions 203 makes the inner wall of the oil supply channel 202 uneven, and it is not easy to produce an oil film. Furthermore, the plurality of film-breaking protrusions 203 are arranged along the circumference of the oil supply channel 202 to form a film-breaking layer, and the number of the film-breaking layers is two, and the two film-breaking layers are respectively arranged adjacent to the two ends of the unblocking zone. In this way, it is ensured that it is not easy to produce an oil film at the positions at both ends of the unblocking zone, the smoothness of the oil supply channel 202 is ensured, and the effectiveness of oil injection is ensured.

[0051] In some embodiments, the rotating member 300 further includes a limiting portion 320, the limiting portion 320 connects the toggle portion 310 and the turntable portion 330, the limiting portion 320 is provided with a limiting hole 321, the limiting column 230 is installed inside the oil supply bottle 200, the limiting column 230 is penetrated by the limiting hole 321, and the rotating member 300 can rotate around the limiting column 230. The setting of the limiting column 230 prevents the rotating member 300 from being skewed or offset during the rotation process, ensures that the rotating member 300 moves according to a preset path, thereby improving the reliability of the rotating member 300. Further, the limiting column 230 is provided with a fixing hole, and a fixing protrusion 204 is formed inside the oil supply bottle 200, and the fixing protrusion 204 is inserted into the fixing hole. In this way, the fixing protrusion 204 can play a fixing role on the limiting column 230, so that the limiting column 230 can play a limiting role stably and reliably.

[0052] Regarding the specific structures of the oil storage tank 100 and the oil supply bottle 200, in some embodiments, the oil storage tank 100 includes a tank body 111 and a first sealing assembly 112. One side of the tank body 111 is open, and the first sealing assembly 112 is installed on the open side of the tank body 111 to enclose the oil storage cavity 113 with the tank body 111. The first sealing assembly 112 forms the oil inlet passage 114. The oil supply bottle 200 includes an oil bottle main body 210 and a second sealing assembly 220. One side of the oil bottle main body 210 is open, and the second sealing assembly 220 is installed on the open side of the oil bottle main body 210 to enclose the oil supply cavity 201 with the oil bottle main body 210. The second sealing assembly 220 forms the oil supply passage 202, and at least a part of the second sealing assembly 220 is inserted into the oil inlet passage 114. That is, the oil supply bottle 200 is installed on the oil storage tank 100 in a plug-in manner, improving the convenience of disassembly. Further, a sealing ring 240 is sleeved on the outer wall of the second sealing assembly 220, and the sealing ring 240 abuts against the side wall of the oil inlet passage 114. The sealing ring 240 plays a sealing role to prevent the oil from leaking out between the outer wall of the second sealing assembly 220 and the inner wall of the oil inlet passage 114, so as to prevent oil leakage.

[0053] Specifically, the oil bottle body 210 is provided with a movable notch 211. The second sealing assembly 220 includes: a first seal 221 inserted into the open side of the oil bottle body 210. On the side of the first seal 221 facing away from the oil supply chamber 201, there is an insertion groove which is annular. The first seal 221 is provided with a first channel 224 penetrating through its upper and lower sides; a mounting member 223 including an upper part and a lower part. At least part of the upper part is inserted into the oil inlet channel 114. The upper part is provided with a third channel 226 penetrating through its upper and lower ends. At least part of the lower part is inserted into the insertion groove, and an installation cavity communicating with the third channel 226 is formed between the lower part and the upper side of the first seal 221. A movable hole 227 is provided in the side wall of the lower part corresponding to the movable notch 211, and the movable hole 227 communicates with the installation cavity; a second seal 222 is installed in the installation cavity and is located above the first seal 221 to form a movable gap 228 therebetween. The movable gap 228, the movable hole 227 and the movable notch 211 form the movable cavity. The first seal 221 is provided with a second channel 225 penetrating through its upper and lower sides, and the two ends of the second channel 225 communicate with the movable gap 228 and the third channel 226 respectively. In this embodiment, the second sealing assembly 220 is composed of multiple parts, which can not only effectively seal the oil supply chamber 201, but also ensure the sealing performance of the combined oil supply channel 202 to avoid oil leakage during the oil supply process. Moreover, it is also convenient to install the rotating member 300. During the actual assembly process, the second seal 222 can be installed on the mounting member 223 first, then the rotating member 300 can be installed, and then the first seal 221 can be installed on the mounting member 223, and finally the whole can be installed on the oil bottle body 210.

[0054] In some embodiments, a first sealing convex ring 334 protrudes from the surface of the turntable portion 330. The first sealing convex ring 334 is arranged around and adjacent to the blocking portion 331, and the first sealing convex ring 334 is used for abutting against the wall of the movable cavity; and / or, a second sealing convex ring 335 protrudes from the surface of the turntable portion 330. The second sealing convex ring 335 is arranged around and adjacent to the wall of the oil passing hole 332, and the second sealing convex ring 335 is used for abutting against the wall of the movable cavity. In this way, both the first sealing convex ring 334 and the second sealing convex ring 335 can play a sealing role, effectively preventing the oil liquid from leaking out through the movable cavity and ensuring the sealing effect of the atomization device.

[0055] In some embodiments, the device body further includes a power supply component 130, which is located on one side of the oil storage tank 100 and the oil supply bottle 200 and is detachably connected to the oil storage tank 100 and the oil supply bottle 200 respectively. In this way, the space is reasonably utilized, the internal structure of the power supply device is compact, and it is beneficial to the miniaturization of the atomization device. At the same time, the oil storage tank 100, the oil supply bottle 200 and the power supply component 130 can be detachably matched with each other, so that any one of them can be replaced separately.

[0056] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or direct / indirect application in other related technical fields, is included in the patent protection scope of the present invention.

Claims

1. An atomizing device that controls oil injection through a turntable, characterized in that, include: The main body of the device comprises an oil storage tank and an atomizing assembly, wherein the oil storage tank is formed with an oil storage cavity and an oil inlet passage communicating with the oil storage cavity, and the atomizing assembly is installed in the oil storage cavity; An oil supply bottle is detachably mounted on the oil storage bin, the oil supply bottle is provided with an oil supply cavity and an oil supply passage communicating with the oil supply cavity, the oil supply cavity is located below the oil storage cavity, the oil supply passage is communicated with the oil inlet passage, the oil supply bottle is formed with an active cavity, the active cavity is communicated with the outside of the oil supply bottle, and the active cavity at least partially overlaps with the oil supply passage to form a through-blocking area; A rotating member is rotatably mounted on the movable cavity, the rotating member comprises a toggle portion and a turntable portion, the toggle portion is communicated with the outside of the oil supply bottle for a user to toggle, and the turntable portion is provided with a blocking portion and an oil-passing hole at intervals, so that the rotating member has an oil-blocking position and an oil-passing position on a rotation trajectory; When the rotating member is at the oil blocking position, the blocking portion blocks the oil passage area; When the rotating member is in the oil passing position, the oil passing hole is communicated with the oil passing area.

2. The atomization device for controlling oil injection through a turntable according to claim 1, wherein A plurality of film-breaking teeth are convexly provided on the hole wall of the oil-through hole. The film-breaking teeth extend along the length direction of the oil-through hole. The plurality of film-breaking teeth are arranged along the circumference of the oil-through hole.

3. The atomizing device for controlling oil injection through a turntable according to claim 1, characterized in that, A plurality of film-breaking protrusions are provided at positions of the oil supply channel adjacent to the unblocking area. The film-breaking protrusions extend along the extending direction of the oil supply channel, and the plurality of film-breaking protrusions are arranged along the circumferential direction of the oil supply channel.

4. The atomization device for controlling oil injection through a turntable according to claim 3, wherein A plurality of the film-breaking protrusions are arranged along the circumference of the oil supply channel to form a film-breaking layer. The number of the film-breaking layers is two, and the two film-breaking layers are respectively arranged adjacent to the two ends of the unblocking area.

5. The atomization device for controlling oil injection through a turntable according to claim 1, characterized in that, The rotating member also includes a limiting portion, which connects the toggle portion and the turntable portion, and has a limiting hole. A limiting column is installed inside the oil supply bottle, and the limiting column passes through the limiting hole. The rotating member can rotate around the limiting column.

6. The atomizing device for controlling oil injection through a turntable according to claim 5, characterized in that, The limiting column is provided with a fixing hole, and a fixing protrusion is formed inside the oil supply bottle, and the fixing protrusion is inserted into the fixing hole.

7. The atomizing device for controlling oil injection through a turntable according to claim 1, characterized in that The oil storage tank comprises a tank body and a first sealing assembly, one side of the tank body is open, the first sealing assembly is installed on the open side of the tank body to enclose the tank body to form the oil storage cavity, and the first sealing assembly forms the oil inlet channel; The oil supply bottle includes an oil bottle body and a second sealing component. One side of the oil bottle body is open. The second sealing component is installed on the open side of the oil bottle body to enclose the oil bottle body to form the oil supply cavity. The second sealing component forms the oil supply channel. The second sealing component is at least partially inserted in the oil inlet channel.

8. The atomizing device for controlling oil injection through a turntable according to claim 7, characterized in that, The oil bottle body is provided with a movable notch, and the second sealing assembly comprises: A first sealing member is inserted into the open side of the oil bottle body, a plug-in groove is provided on the side of the first sealing member away from the oil supply cavity, the plug-in groove is annular, and the first sealing member is provided with a first channel running through the upper and lower sides thereof; The mounting member includes an upper part and a lower part. The upper part is at least partially inserted into the oil inlet passage. The upper part is provided with a third passage penetrating through its upper and lower ends. The lower part is at least partially inserted into the insertion groove, and an installation cavity communicating with the third passage is formed by enclosing between the lower part and the upper side of the first seal. An activity hole is provided on the side wall of the lower part corresponding to the activity notch, and the activity hole communicates with the installation cavity. The second seal is installed in the installation cavity and forms an activity gap with the first seal above the first seal. The activity gap, the activity hole and the activity notch form the activity cavity. The first seal is provided with a second passage penetrating through its upper and lower sides, and the two ends of the second passage communicate with the activity gap and the third passage respectively.

9. The atomization device for controlling oil injection through a turntable according to claim 1, characterized in that, The surface of the turntable part is convexly provided with a first sealing convex ring, the first sealing convex ring is arranged around and adjacent to the blocking part, and the first sealing convex ring is used for abutting against the cavity wall of the activity cavity; and / or, The surface of the turntable part is convexly provided with a second sealing convex ring, the second sealing convex ring is arranged around and adjacent to the hole wall of the oil passing hole, and the second sealing convex ring is used for abutting against the cavity wall of the activity cavity.

10. The atomization device for controlling oil injection through a turntable according to claim 1, characterized in that, The equipment main body further includes a power supply component, the power supply component is located on one side of the oil storage tank and the oil supply bottle, and is detachably connected to the oil storage tank and the oil supply bottle respectively.