Atomizing equipment for controlling oil injection through knob

The oil-filled atomization equipment is controlled through the knob, and the oil inlet passage is blocked or connected through the movable components, which solves the oil leakage problem caused by the continuous oil supply of the oil supply bottle, and achieves precise control of the oil supply volume and normal use of the equipment.

CN223274940UActive Publication Date: 2025-08-29SHENZHEN SKE TECH CO LTD
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Patent Information

Application Number
CN202421848271.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-08-29
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The oil supply bottles of existing atomization equipment are in a continuous oil supply state, resulting in excessive oil in the oil storage chamber and overflow, which is prone to oil leakage.

Method used

Atomization device that controls oil injection through a knob is designed to block or connect the oil inlet channel through movable components. Users can control the oil supply by rotating the knob to avoid the oil supply bottles for a long time.

Benefits of technology

Effectively avoid excessive oil in the oil storage chamber, prevent oil leakage, ensure the normal use of the atomization equipment, and control the oil to flow into the oil supply bottle to ensure sufficient oil in the oil storage chamber.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses atomization equipment capable of controlling oil injection through a knob, which comprises an equipment main body and an atomization component, the equipment main body comprises an oil storage bin and an atomization component, an oil storage cavity and an oil inlet channel are formed in the oil storage bin, and the oil storage bin is provided with a movable hole communicated with the oil inlet channel; 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 communicated with the oil supply cavity, the oil supply cavity is located below the oil storage cavity, and the oil supply channel is communicated with the oil inlet channel; the movable assembly is rotatably arranged in the movable hole in a penetrating mode and comprises a rotary knob, a connecting piece and a plugging piece which are sequentially connected, the rotary knob is located outside the movable hole so that a user can rotate the rotary knob, the connecting piece penetrates through the movable hole, the plugging piece is located in the oil inlet channel, and an oil passing hole is formed in the plugging piece so that the movable assembly can have an oil plugging position and an oil inlet position on the rotating track. According to the technical scheme, the oil supply quantity of the oil supply bottle to the oil storage cavity is controlled by rotating the knob and controlling the inversion time, so that the phenomenon of oil leakage caused by excessive oil quantity 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, in particular to an atomization device with oil injection controlled by a knob. Background Art

[0002] The existing atomizing device has an oil storage chamber formed inside, and then the atomizing component is installed in the oil storage chamber. The atomizing component can absorb the oil in the oil storage chamber. Then, a power supply component is provided to power the atomizing component, so that the atomizing component is heated, thereby converting the absorbed oil into aerosol. The aerosol flows out through the nozzle of the atomizing device for the user to inhale.

[0003] In order to meet the requirements of large puff count and compliance, more and more external oil bottle atomizer devices have appeared on the market. An oil supply bottle is hung on the main body of the device to supply oil to the oil storage chamber of the main body of the device. During transportation, the oil supply bottle and the main body of the device are packaged separately to meet compliance requirements. When in use, the oil supply bottle is unsealed and installed on the main body of the device to increase the amount of smoke oil in the entire atomizer device and achieve a large puff count. However, the existing atomizer device has an unreasonable installation design between the oil supply bottle and the oil storage chamber, which makes the oil supply bottle in a state of continuous oil supply, which easily causes excessive oil in the oil storage chamber to overflow, thereby easily causing oil leakage in the atomizer device. Therefore, it is necessary to design an atomizer device that controls oil filling by a knob to avoid oil leakage in the atomizer device. Utility Model Content

[0004] The main purpose of the utility model is to provide an atomizing device that controls oil filling by a knob, aiming to solve the problem that the oil supply bottle of the existing atomizing device is in a state of continuous oil supply, which easily causes excessive oil in the oil storage chamber to overflow, thereby easily causing oil leakage in the atomizing device.

[0005] To achieve the above-mentioned purpose, the atomizing device for controlling oil injection by a knob proposed in the present invention comprises:

[0006] The device body includes an oil storage tank and an atomizing assembly. The oil storage tank is formed with an oil storage cavity and an oil inlet channel connected to the oil storage cavity. The atomizing assembly is installed in the oil storage cavity. A movable hole is opened on the side wall of the oil storage tank, and the movable hole is connected to the oil inlet channel.

[0007] an oil supply bottle, detachably mounted on the oil storage bin, the oil supply bottle being provided with an oil supply cavity and an oil supply passage communicating with the oil supply cavity, the oil supply cavity being located below the oil storage cavity, the oil supply passage being communicated with the oil inlet passage;

[0008] A movable component is rotatably inserted into the movable hole, and includes a knob, a connecting member, and a blocking member connected in sequence. The knob is located outside the movable hole for rotation by a user, the connecting member passes through the movable hole, and the blocking member is located in the oil inlet passage. The blocking member is provided with oil holes passing through opposite sides thereof, so that the movable component has an oil blocking position and an oil inlet position along its rotation trajectory.

[0009] When the movable assembly is in the oil blocking position, the blocking member blocks the oil inlet channel, and both ends of the oil hole abut against opposite sides of the oil inlet channel respectively;

[0010] When the movable component is at the oil inlet position, the oil hole is communicated with the oil inlet channel.

[0011] Optionally, a first sealing ring is sleeved on the outer wall of the connecting member, and the peripheral wall of the first sealing ring abuts against the inner wall of the movable hole.

[0012] Optionally, a limiting groove is formed on the outer wall of the connecting member, the limiting groove extends along the circumference of the connecting member, and the first sealing ring is sleeved on the limiting groove.

[0013] Optionally, the blocking member is further provided with mounting holes running through its opposite sides, the mounting holes are arranged perpendicular to the oil hole, and the width of the mounting hole is smaller than the width of the oil hole; the connecting member includes a first connecting section and a second connecting section, the end of the first connecting section away from the second connecting section is connected to the knob, and the second connecting section is inserted into the mounting hole.

[0014] Optionally, the peripheral wall of the second connecting section forms a limiting chamfer, and the limiting chamfer extends to both ends of the second connecting section. The hole wall of the mounting hole forms a matching chamfer corresponding to the limiting chamfer to limit the rotation of the second connecting section relative to the mounting hole.

[0015] Optionally, the oil storage tank includes 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 shell to enclose the tank body to form the oil storage cavity, and the first sealing assembly forms the oil inlet channel;

[0016] The oil supply bottle includes an oil bottle body and a second sealing assembly. One side of the oil bottle body is open. The second sealing assembly 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 assembly forms the oil supply channel. The second sealing assembly is at least partially inserted into the oil inlet channel.

[0017] Optionally, an abutment platform extending along the circumference of the oil inlet channel is formed on the inner wall of the oil inlet channel, and the abutment platform is configured as an elastic structure for abutting against the circumferential surface of the blocking member.

[0018] Optionally, a second sealing ring is sleeved on the outer wall of the second sealing assembly, and the second sealing ring abuts against the side wall of the oil inlet channel.

[0019] Optionally, oil storage cotton is installed in the oil storage cavity, and the oil inlet channel includes a guide section, which is arranged close to the oil storage cavity. In the direction from the oil supply channel to the oil inlet channel, the inner diameter of the guide section gradually increases.

[0020] 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.

[0021] The technical solution of the present invention is to install the oil supply bottle at the lower end of the oil storage tank and to movably install a movable component so that the movable component can block the oil inlet channel or communicate with the oil inlet channel. In this way, the user can control the amount of oil supplied by the oil supply bottle to the oil storage chamber by rotating the movable component and controlling the inversion time of the atomizing device, thereby preventing the oil supply bottle from being in a continuous oil supply state for a long time, thereby avoiding the phenomenon of excessive oil overflowing from the oil storage chamber and causing oil leakage. On the other hand, the oil in the oil storage chamber can be controlled to prevent it from flowing into the oil supply bottle, ensuring that there is oil in the oil storage chamber, thereby ensuring the normal use of the atomizing device. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0023] Figure 1 This is a schematic diagram of the structure of the atomizing device of the utility model that controls oil injection through a knob;

[0024] Figure 2 This is an exploded schematic diagram of the oil storage tank, oil supply bottle and power supply assembly of the atomizing device of the utility model, which controls oil filling by a knob;

[0025] Figure 3 This is a schematic cross-sectional view of the active component of the atomizing device of the utility model that controls oil injection through a knob when in the oil inlet position;

[0026] Figure 4This is a structural schematic diagram of the movable components of the atomizing device of the utility model that controls oil injection through a knob.

[0027] Description of Figure Numbers:

[0028] Label name Label name 100 Oil storage tank 111 Warehouse 112 First sealing assembly 113 Oil storage chamber 114 Oil inlet channel 115 Butt station 116 Guide section 120 Atomization components 130 Oil storage cotton 140 Power supply components 200 Oil supply bottle 201 Oil supply chamber 202 Oil supply channel 210 Oil bottle body 220 Second sealing assembly 221 Second sealing ring 300 Active Components 310 knob 320 Connectors 321 First connecting section 322 Second connecting section 323 Limit chamfer 330 Sealing parts 331 Oil hole 332 Mounting holes 333 Matching chamfer 340 First sealing ring

[0029] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0031] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0032] In addition, the descriptions of "first", "second", etc. in this utility model are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features specified 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 a combination of technical solutions does not exist and is not within the scope of protection required by this utility model.

[0033] The following mainly describes the specific structure of the atomizing device that controls oil injection through a knob.

[0034] Reference Figures 1 to 4 In an embodiment of the present utility model, the atomizing device for controlling oil injection by a knob includes:

[0035] The main body of the device 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 channel 114 connected to the oil storage cavity 113. The atomizing assembly 120 is installed in the oil storage cavity 113. The side wall of the oil storage tank 100 is opened with a movable hole, which is connected to the oil inlet channel 114.

[0036] An oil supply bottle 200 is detachably mounted on the oil storage tank 100 . The oil supply bottle 200 is provided with an oil supply chamber 201 and an oil supply passage 202 communicating with the oil supply chamber 201 . The oil supply chamber 201 is located below the oil storage chamber 113 . The oil supply passage 202 is communicated with the oil inlet passage 114 .

[0037] The movable assembly 300 is rotatably inserted into the movable hole. The movable assembly 300 includes a knob 310, a connector 320, and a blocking member 330 connected in sequence. The knob 310 is located outside the movable hole for user rotation. The connector 320 passes through the movable hole. The blocking member 330 is located in the oil inlet passage 114. The blocking member 330 is provided with oil holes 331 extending through opposite sides thereof, so that the movable assembly 300 has an oil blocking position and an oil inlet position along its rotation trajectory.

[0038] When the movable assembly 300 is in the oil blocking position, the blocking member 330 blocks the oil inlet channel 114 , and both ends of the oil hole 331 abut against opposite sides of the oil inlet channel 114 ;

[0039] When the movable assembly 300 is at the oil inlet position, the oil hole 331 is in communication with the oil inlet channel 114 .

[0040] Specifically, in this embodiment, there are many ways to detachably install the oil supply bottle 200 and the oil storage bin 100, such as snap-on, plug-in, screw connection, etc., which are not specifically limited here. Before using the atomizing device, a sealing plug can be used to seal the oil inlet channel 114 of the oil storage bin 100 and the oil supply channel 202 of the oil supply bottle 200 respectively to ensure the sealing of the device body and the oil supply bottle 200. The oil supply bottle 200 and the device body can then be packaged separately to meet compliance requirements. When in use, remove the sealing plug and install the oil supply bottle 200 on the oil storage bin 100 so that the oil supply channel 202 is connected to the oil inlet channel 114.

[0041] During normal use of the atomizer, the movable assembly 300 is rotated to the oil blocking position, so that the oil inlet channel 114 is blocked by the blocking member 330 of the movable assembly 300, preventing oil from passing through. The oil in the oil supply bottle 200 cannot reach the oil storage chamber 113, and oil will not be supplied to the oil storage chamber 113. At the same time, the liquid in the oil storage chamber 113 will not flow into the oil supply bottle 200, ensuring the normal use of the atomizer. It is worth mentioning that the oil supply bottle 200 is located at the lower end of the oil storage tank 100, which is based on the orientation when the user uses the atomizer.

[0042] When the oil in the oil storage chamber 113 is low or exhausted, the movable assembly 300 is rotated to the oil inlet position by operating the knob 310, so that the oil hole 331 of the blocking member 330 is connected to the oil inlet channel 114. The atomizing device is then inverted so that the oil supply bottle 200 is above the oil storage tank 100. In this way, the oil in the oil supply bottle 200 will flow through the oil supply channel 202 and the oil inlet channel 114 under the action of gravity and enter the oil storage chamber 113, thereby supplying oil to the oil storage chamber 113. When the oil in the oil supply bottle 200 is exhausted, a new oil supply bottle 200 can be replaced.

[0043] The technical solution of the present invention is to install the oil supply bottle 200 at the lower end of the oil storage tank 100 and to movably install a movable component 300 so that the movable component 300 can block the oil inlet channel 114 or communicate with the oil inlet channel 114. In this way, the user can control the amount of oil supplied by the oil supply bottle 200 to the oil storage chamber 113 by rotating the movable component 300 and controlling the inversion time of the atomizing device, thereby preventing the oil supply bottle 200 from being in a continuous oil supply state for a long time, thereby avoiding the phenomenon of excessive oil overflowing from the oil storage chamber 113 and causing oil leakage. On the other hand, the oil in the oil storage chamber 113 can be controlled to prevent it from flowing into the oil supply bottle 200, ensuring that there is oil in the oil storage chamber 113, thereby ensuring the normal use of the atomizing device.

[0044] In order to improve the sealing performance of the atomization device, in some embodiments, the outer wall of the connecting member 320 is provided with a first sealing ring 340, and the peripheral wall of the first sealing ring 340 abuts against the inner wall of the movable hole. In this way, on the one hand, the oil in the oil storage tank 100 or the oil supply bottle 200 is prevented from flowing out of the movable hole to prevent leakage; on the other hand, the resistance of the movable component 300 is increased, and manual force is required to rotate the movable component 300, thereby ensuring the reliability of the use of the movable component 300. Furthermore, a limiting groove is formed on the outer wall of the connecting member 320, and the limiting groove extends along the circumference of the connecting member 320, and the first sealing ring 340 is sleeved on the limiting groove. The limiting groove can limit the first sealing ring 340, ensuring that the first sealing ring 340 functions stably and reliably.

[0045] Regarding the specific structure of the movable assembly 300, in some embodiments, the blocking member 330 further defines mounting holes 332 extending through opposite sides thereof. The mounting holes 332 are perpendicular to the oil passage hole 331 and are narrower than the oil passage hole 331. The connecting member 320 includes a first connecting segment 321 and a second connecting segment 322. The end of the first connecting segment 321, distal from the second connecting segment 322, is connected to the knob 310, and the second connecting segment 322 is inserted into the mounting holes 332. During actual assembly, the blocking member 330 can be first installed in the oil inlet passage 114, and then the connecting member 320, already connected to the knob 310, can be inserted through the movable hole into the mounting hole 332 of the blocking member 330.

[0046] To prevent the connecting member 320 and the mounting hole 332 of the blocking member 330 from rotating after assembly, in some embodiments, the peripheral wall of the second connecting segment 322 is formed with limiting chamfers 323. These limiting chamfers 323 extend to both ends of the second connecting segment 322, and the wall of the mounting hole 332 is formed with matching chamfers 333 corresponding to the limiting chamfers 323 to limit rotation of the second connecting segment 322 relative to the mounting hole 332. In other words, the chamfers limit the connection member 320 and the blocking member 330, thereby preventing rotation of the connecting member 320 and the mounting hole 332 of the blocking member 330. This ensures that the connecting member 320 can drive the blocking member 330 to rotate, thereby ensuring the operational reliability of the movable assembly 300. In other embodiments, glue can be applied to the outer wall of the connecting member 320 or the inner wall of the mounting hole 332, so that after the connecting member 320 is inserted into the mounting hole 332, the connecting member 320 adheres to the mounting hole 332. Other methods may also be used to fix the connecting member 320 and the blocking member 330 , which are not listed here one by one.

[0047] 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. The tank body 111 has an open side, and the first sealing assembly 112 is mounted on the open side of the housing to enclose the tank body 111 to form the oil storage chamber 113. The first sealing assembly 112 defines the oil inlet passage 114. The oil supply bottle 200 includes an oil bottle body 210 and a second sealing assembly 220. The oil bottle body 210 has an open side, and the second sealing assembly 220 is mounted on the open side of the oil bottle body 210 to enclose the oil supply chamber 201. The second sealing assembly 220 defines the oil supply passage 202, and the second sealing assembly 220 is at least partially inserted into the oil inlet passage 114. That is, the oil supply bottle 200 is installed in the oil storage tank 100 by plugging, which improves the convenience of disassembly.

[0048] Furthermore, a second sealing ring 221 is sleeved on the outer wall of the second sealing assembly 220, and the second sealing ring 221 abuts against the side wall of the oil inlet channel 114. The second sealing ring 221 acts as a seal to prevent oil from leaking between the outer wall of the second sealing assembly 220 and the inner wall of the oil inlet channel 114, thereby preventing oil leakage.

[0049] In some embodiments, the inner wall of the oil inlet channel 114 is formed with an abutment platform 115 extending along the circumference of the oil inlet channel 114. The abutment platform 115 is configured as an elastic structure for abutting the circumferential surface of the blocking member 330. This allows the blocking member 330 to fit tightly against the inner wall of the oil inlet channel 114, ensuring the blocking effect of the blocking member 330. Therefore, during normal use of the atomizer device, the oil in the oil storage chamber 113 will not flow into the oil supply chamber 201, thereby improving the reliability of the atomizer device.

[0050] In some embodiments, an oil storage cotton 130 is installed in the oil storage chamber 113, and the oil inlet channel 114 includes a guide section 116. The guide section 116 is arranged near the oil storage chamber 113, and the inner diameter of the guide section 116 gradually increases in the direction from the oil supply channel 202 to the oil inlet channel 114. The oil storage cotton 130 has an oil locking function, so that when the oil in the oil supply chamber 201 is injected into the oil supply chamber 201, the oil can be locked in the oil storage cotton 130, preventing the oil from flowing back into the oil supply chamber 201 under the action of gravity when the atomizing device is placed upright again after the oil filling is completed. The setting of the guide section 116 has the function of guiding the oil to be dispersed to the periphery of the oil inlet channel 114, ensuring that the oil is quickly locked into the oil storage cotton 130.

[0051] In some embodiments, the device body also includes a power supply assembly 140, located on one side of the oil storage tank 100 and oil supply bottle 200, and detachably connected to each. This effectively utilizes space, resulting in a compact internal structure for the power supply device and contributing to the compactness of the atomizer device. Furthermore, the oil storage tank 100, oil supply bottle 200, and power supply assembly 140 are detachably coupled, allowing for individual replacement of any one of them.

[0052] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made by using the contents of the present invention specification and drawings under the utility model concept, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. An atomizing device that controls oil injection through a knob, characterized in that: include: The device body includes an oil storage tank and an atomizing assembly. The oil storage tank is formed with an oil storage cavity and an oil inlet channel connected to the oil storage cavity. The atomizing assembly is installed in the oil storage cavity. A movable hole is opened on the side wall of the oil storage tank, and the movable hole is connected to the oil inlet channel. an oil supply bottle, detachably mounted on the oil storage bin, the oil supply bottle being provided with an oil supply cavity and an oil supply passage communicating with the oil supply cavity, the oil supply cavity being located below the oil storage cavity, the oil supply passage being communicated with the oil inlet passage; A movable component is rotatably inserted into the movable hole, and includes a knob, a connecting member, and a blocking member connected in sequence. The knob is located outside the movable hole for rotation by a user, the connecting member passes through the movable hole, and the blocking member is located in the oil inlet passage. The blocking member is provided with oil holes passing through opposite sides thereof, so that the movable component has an oil blocking position and an oil inlet position along its rotation trajectory. When the movable assembly is in the oil blocking position, the blocking member blocks the oil inlet channel, and both ends of the oil hole abut against opposite sides of the oil inlet channel respectively; When the movable component is at the oil inlet position, the oil hole is communicated with the oil inlet channel.

2. The atomizing device for controlling oil injection by a knob according to claim 1, characterized in that: A first sealing ring is sleeved on the outer wall of the connecting piece, and the peripheral wall of the first sealing ring abuts against the inner wall of the movable hole.

3. The atomizing device for controlling oil injection by a knob according to claim 2, characterized in that: A limiting groove is formed on the outer wall of the connecting piece, and the limiting groove extends along the circumference of the connecting piece. The first sealing ring is sleeved on the limiting groove.

4. The atomizing device for controlling oil injection by a knob according to claim 1, characterized in that: The blocking member is further provided with mounting holes running through opposite sides thereof, the mounting holes being arranged perpendicular to the oil hole, and the width of the mounting holes being smaller than the width of the oil hole; the connecting member includes a first connecting section and a second connecting section, the end of the first connecting section away from the second connecting section being connected to the knob, and the second connecting section being inserted into the mounting hole.

5. The atomizing device for controlling oil injection by a knob according to claim 4, characterized in that: The peripheral wall of the second connecting section forms a limiting chamfer, and the limiting chamfer extends to both ends of the second connecting section. The hole wall of the mounting hole forms a matching chamfer corresponding to the limiting chamfer to limit the rotation of the second connecting section relative to the mounting hole.

6. The atomizing device for controlling oil injection by a knob according to claim 1, characterized in that: The oil storage tank includes 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 assembly. One side of the oil bottle body is open. The second sealing assembly 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 assembly forms the oil supply channel. The second sealing assembly is at least partially inserted into the oil inlet channel.

7. The atomizing device for controlling oil injection by a knob according to claim 6, characterized in that: An abutment platform extending along the circumference of the oil inlet channel is formed on the inner wall of the oil inlet channel. The abutment platform is configured as an elastic structure for abutting against the circumferential surface of the blocking member.

8. The atomizing device for controlling oil injection by a knob according to claim 6, characterized in that: A second sealing ring is sleeved on the outer wall of the second sealing assembly, and the second sealing ring abuts against the side wall of the oil inlet channel.

9. The atomizing device for controlling oil injection by a knob according to claim 1, characterized in that: Oil storage cotton is installed in the oil storage cavity. The oil inlet channel includes a guide section. The guide section is arranged close to the oil storage cavity. In the direction from the oil supply channel to the oil inlet channel, the inner diameter of the guide section gradually increases.

10. The atomizing device with oil injection controlled by a knob as claimed in claim 1, characterized in that: The equipment body also includes a power supply component, 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.