Atomization device capable of continuously supplying liquid

By setting up a detachable installation mount in the atomization equipment, users are allowed to fill oil on their own, solving the problem of waste of resources in existing atomization equipment, and achieving sustainable utilization of resources and saving user costs.

WO2025113312A1PCT designated stage expired Publication Date: 2025-06-05SHENZHEN SKE TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/133559
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-30
Filing Date
2024-11-21
Publication Date
2025-06-05

AI Technical Summary

Technical Problem

The oil in the oil storage chamber of the existing atomization equipment cannot be used up after it is used up, resulting in the inability to fully utilize other remaining resources such as batteries and circuit boards, resulting in waste of resources.

Method used

Design atomization equipment that can supply oil continuously. By setting up a detachable mounting bracket, users can fill oil by themselves. The oil enters the oil storage chamber through the oil outlet hole, oil passing space and oil inlet hole, thereby continuously supplying oil.

Benefits of technology

It realizes the function of users filling oil by themselves, extends the service life of the atomization equipment, saves resources, and reduces user usage costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

Disclosed in the present invention is an atomization device capable of continuously supplying liquid. The atomization device comprises: a housing; a mount, comprising a mounting part and a surrounding part, wherein the mounting part is configured for detachable mounting of a liquid supply vial, a liquid outlet is formed on a side wall of the mounting part, so that when the liquid supply vial is mounted on the mounting part, liquid can enter the liquid outlet, a liquid inlet is formed on a side wall of the surrounding part, and the upper end of the liquid outlet is higher than the upper end of the liquid inlet; a lower sealing assembly, wherein a liquid passing space is defined between the lower sealing assembly and the mount, and the liquid passing space is communicated with the liquid outlet and the liquid inlet; a liquid storage chamber, formed in the housing, wherein a liquid storage cavity is defined by the liquid storage chamber, the surrounding part, and the lower sealing assembly, and the liquid storage cavity is communicated with the liquid inlet, so that the liquid flows out of the liquid outlet, then flows through the liquid passing space and the liquid inlet in sequence, and enters the liquid storage cavity; and an atomization assembly, mounted in the liquid storage cavity. The present invention realizes continuous liquid supply to the liquid storage cavity, so that other parts such as a circuit board and a battery of the atomization device are fully used, resources are saved, and the use cost of a user is saved.
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Description

Atomization equipment with sustainable oil supply

[0001] This application claims priority to the Chinese patent application filed with the China Patent Office on November 30, 2023, with application number 202311627070.5 and application name “Atomizing Device with Sustainable Oil Supply”, the entire contents of which are incorporated by reference into this application. Technical Field

[0002] The present invention relates to the field of atomization technology, in particular to atomization equipment with sustainable oil supply. Background Art

[0003] The existing atomizing equipment has an oil storage chamber formed inside, and then the atomizing assembly is installed in the oil storage chamber. The atomizing assembly can absorb the oil in the oil storage chamber, and then a power supply assembly is provided to power the atomizing assembly, so that the atomizing assembly is heated, thereby converting the absorbed oil into aerosol, and the aerosol flows out through the suction nozzle of the atomizing equipment for the user to inhale. However, the atomizing equipment of the prior art is usually a disposable atomizing equipment, and the product is usually pre-filled with oil before being sold to customers. Customers cannot refill the oil by themselves. After the oil in the oil storage chamber is used up, the atomizing equipment cannot be used anymore, which easily wastes other remaining resources of the atomizing equipment, such as batteries, circuit boards, etc. Therefore, it is necessary to design an atomizing equipment with sustainable oil supply to rationally utilize resources and save user usage costs. Summary of the Invention

[0004] The main purpose of the present invention is to provide an atomizing device with sustainable oil supply, aiming to solve the problem that the oil in the oil storage chamber of the existing atomizing device cannot be used after it is used up, which easily wastes other remaining resources.

[0005] To achieve the above objectives, the sustainable oil supply atomization device proposed by the present invention includes:

[0006] shell;

[0007] a mounting bracket mounted in the housing, the mounting bracket comprising a mounting portion and an enclosure portion, the mounting portion being used for detachably mounting the oil supply bottle, the side wall of the mounting portion being provided with an oil outlet hole so that after the oil supply bottle is mounted on the mounting portion, the oil in the oil supply bottle enters the oil outlet hole, and the side wall of the enclosure portion being provided with an oil inlet hole, the upper end of the oil outlet hole being higher than the upper end of the oil inlet hole;

[0008] A lower sealing assembly is mounted on the mounting frame, and an oil flow space is formed between the lower sealing assembly and the mounting frame, wherein the oil flow space is communicated with the oil outlet and the oil inlet respectively;

[0009] An oil storage tank is formed in the housing, and an oil storage cavity is formed between the oil storage tank, the enclosing portion, and the lower sealing assembly. The oil storage cavity is communicated with the oil inlet hole, so that after the oil flows out of the oil outlet hole, it passes through the oil passage space and the oil inlet hole in sequence and enters the oil storage cavity;

[0010] an atomizing assembly, mounted in the oil storage chamber;

[0011] The mounting frame has an upper side and a lower side facing each other, and the mounting portion and the enclosing portion are arranged left and right on the upper side so that the oil supply bottle and the oil storage tank are arranged left and right; an oil passage groove is formed on the lower side, and the lower sealing assembly is sealed in the notch of the oil passage groove to enclose the oil passage groove to form the oil passage space; the oil outlet hole and the oil inlet hole are both opened at the bottom of the oil passage groove and pass through the upper and lower sides of the mounting frame;

[0012] The atomizing device further comprises a battery, which is installed in the housing and is placed horizontally below the oil supply bottle and the oil storage tank.

[0013] In some embodiments, the mounting portion has a mounting groove, the oil outlet is provided at the bottom of the mounting groove, a puncture column is provided on the bottom of the mounting groove, a clamping piece is provided on the notch wall of the mounting groove, and a clamping protrusion is provided on the inner side of the clamping piece;

[0014] The sustainable oil supply atomization device also includes an oil supply bottle, the end wall of the oil supply bottle has a puncturable area, and the outer wall of the oil supply bottle is formed with a card groove corresponding to the card protrusion, so that when the oil supply bottle is at least partially inserted into the mounting groove, the puncture column pierces the puncturable area, and the card protrusion is locked in the groove wall of the card groove, so that the card protrusion locks the oil supply bottle on the mounting frame.

[0015] In some embodiments, the locking protrusion is provided at an end of the engaging member away from the mounting slot, and the locking protrusion has a top and a bottom.

[0016] The top portion has an introduction slope, and the introduction slope extends from the top portion to the bottom portion of the clamping protrusion in the direction in which the side groove wall of the installation groove extends toward the middle portion.

[0017] In some embodiments, an oil gap is provided between one end of the oil supply bottle facing the bottom of the mounting groove and the bottom of the mounting groove.

[0018] In some embodiments, a sealing groove is further formed on the outer side wall of the oil supply bottle, and a sealing ring is installed on the sealing groove, and opposite sides of the sealing ring are respectively in contact with the bottom of the sealing groove and the side wall of the installation groove.

[0019] In some embodiments, the bottom of the oil trough is provided with an anti-backflow rib, and the anti-backflow rib is arranged around the oil outlet hole, or the anti-backflow rib and the trough wall of the oil trough are combined to form an anti-backflow area, the oil outlet hole is located in the anti-backflow area, and the oil inlet hole is located outside the anti-backflow area.

[0020] In some embodiments, the lower sealing assembly includes a first seal and a second seal, the first seal is mounted on at least a portion of the second seal, the first seal is installed on the notch of the oil groove to seal the notch of the oil groove, and the second seal is located on the outside of the first seal and protrudes at least partially along the width direction of the oil groove to cover the notch of the oil groove.

[0021] In some embodiments, the sustainable oil supply atomization device also includes a circuit board, which is installed in the housing and is located below the battery and electrically connected to the battery. A charging interface structure is provided on the circuit board, and an avoidance hole is provided at the bottom of the housing corresponding to the position of the charging interface structure for an external charging head to be plugged into the charging interface structure.

[0022] In some embodiments, one end of the oil storage tank is open, the enclosing portion of the mounting frame is sealed on the open end of the oil storage tank, the enclosing portion is provided with an air inlet hole, the lower sealing assembly includes a sealing body and a sealing column protruding from the sealing body, the oil flow space is formed between the sealing body and the mounting frame, the sealing column is passed through the air inlet hole and extends into the oil storage cavity, and the lower sealing assembly is provided with an air inlet channel that sequentially passes through the sealing body and the sealing column.

[0023] In some embodiments, the oil inlet hole includes a large diameter section and a small diameter section in sequence in the extension direction, the end of the large diameter section away from the small diameter section is connected to the oil flow space, and the end of the small diameter section away from the large diameter section is connected to the oil storage chamber.

[0024] The technical solution of the present invention provides a mounting bracket for detachably mounting the oil supply bottle, so that the user can choose to install the oil supply bottle filled with oil on the mounting bracket, so that the oil in the oil storage bottle can enter the oil storage cavity through the oil outlet hole, the oil passage space and the oil inlet hole in sequence, thereby supplying oil to the oil storage cavity. In this way, the user can add oil by himself and continuously supply oil to the oil storage cavity, so as to make full use of the circuit board, battery and other components of the atomizing device, save resources, and thus save the cost spent by the user on using the atomizing device. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] 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.

[0026] FIG1 is a schematic structural diagram of an atomizing device with sustainable oil supply according to the present invention;

[0027] FIG2 is a schematic cross-sectional view of the atomizing device with sustainable oil supply according to the present invention;

[0028] FIG3 is an exploded schematic diagram of a partial structure of the atomizing device with sustainable oil supply according to the present invention;

[0029] FIG4 is a structural schematic diagram of a mounting frame of a continuous oil supply atomization device according to the present invention from one perspective;

[0030] FIG5 is a schematic structural diagram of the mounting frame of the atomizing device with sustainable oil supply according to the present invention from another perspective;

[0031] FIG6 is a schematic structural diagram of the lower sealing assembly of the atomizing device with sustainable oil supply according to the present invention;

[0032] FIG7 is a schematic structural diagram of the oil supply bottle of the atomizing device with sustainable oil supply according to the present invention.

[0033] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0035] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, etc.) 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.

[0036] In addition, the descriptions of "first", "second", etc. in the present invention 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 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 they must be based on the ability of ordinary technicians in this field to implement them. 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 the present invention.

[0037] The following will mainly describe the specific structure of the atomization device with sustainable oil supply.

[0038] 1 to 7 , in an embodiment of the present invention, the atomizing device with sustainable oil supply includes:

[0039] Housing 100;

[0040] The mounting bracket 300 is mounted in the housing 100. The mounting bracket 300 includes a mounting portion and an enclosure portion. The mounting portion is used for detachably mounting the oil supply bottle 600. The side wall of the mounting portion is provided with an oil outlet hole 311 so that after the oil supply bottle 600 is mounted on the mounting portion, the oil in the oil supply bottle 600 can enter the oil outlet hole 311. The side wall of the enclosure portion is provided with an oil inlet hole 321. The upper end of the oil outlet hole 311 is higher than the upper end of the oil inlet hole 321.

[0041] The lower sealing assembly 400 is mounted on the mounting frame 300 and forms an oil flow space 440 between the lower sealing assembly 400 and the mounting frame 300. The oil flow space 440 is communicated with the oil outlet hole 311 and the oil inlet hole 321 respectively.

[0042] An oil storage tank 101 is formed in the housing 100. An oil storage cavity is formed between the oil storage tank 101, the enclosure portion, and the lower sealing assembly 400. The oil storage cavity is in communication with the oil inlet hole 321, so that oil flows out of the oil outlet hole 311 and then enters the oil storage cavity through the oil passage space 440 and the oil inlet hole 321 in sequence.

[0043] The atomizing assembly 500 is installed in the oil storage chamber.

[0044] Specifically, in this embodiment, the housing 100 can be composed of two or more shells. For example, in some embodiments, in order to facilitate the installation of other internal components of the atomizing device such as the mounting bracket 300, the lower sealing assembly 400, the battery 700, etc., the housing 100 can be detachably assembled by the top shell 110, the upper shell 120 and the lower shell 130. The upper end of the lower shell 130 is opened, and the two ends of the upper shell 120 are opened. The lower end of the upper shell 120 is installed on the upper end of the lower shell 130, and the top shell 110 covers the upper end of the upper shell 120. At least part of, in actual application, the atomizing device also includes a suction nozzle 200, which can be arranged on the top shell 110, or on the upper shell 120. Taking the upper shell 120 as an example, the suction nozzle 200 and the top shell 110 are arranged left and right, and are jointly covered on the upper end of the upper shell 120, so that the top shell 110, the upper shell 120, the lower shell 130 and the suction nozzle 200 are enclosed to form an installation space for installing the mounting frame 300, the lower sealing assembly 400, the battery 700 and other internal components of the atomizing device.

[0045] The mounting bracket 300 can be installed in the housing 100 by means of snap connection, screw connection, etc., which is not strictly limited here. In actual use, the atomizing device can also include an oil supply bottle 600. The oil supply bottle 600 can be pre-installed on the mounting bracket 300, or it can be installed on the mounting bracket 300 when in use. There are many ways to install the oil supply bottle 600 on the mounting bracket 300, such as by snap connection, plug-in connection or other methods. For example, in some embodiments, the mounting portion has a mounting groove 310, and the oil outlet hole 311 is provided at the bottom of the mounting groove 310. The bottom of the mounting groove 310 is also provided with a puncture column 312. The notch of the mounting groove 310 A locking piece 313 is protruding from the wall, and a locking protrusion 314 is protruding from the inner side of the locking piece 313; the end wall of the oil supply bottle 600 has a punctureable area, and the outer wall of the oil supply bottle 600 is formed with a locking groove 610 corresponding to the locking protrusion 314, so that when the oil supply bottle 600 is at least partially inserted into the mounting groove 310, the puncture column 312 pierces the punctureable area, and the locking protrusion 314 is locked in the groove wall of the locking groove 610, so that the locking protrusion 314 can lock the oil supply bottle 600 on the mounting bracket 300. In this way, after the punctureable area of ​​the oil supply bottle 600 is pierced by the puncture column 312, the oil in the oil supply bottle 600 flows out through the punctureable area, enters the mounting groove 310, and then flows out through the oil outlet hole 311 at the bottom of the mounting groove 310, and enters the oil flow space 440. Since the oil flow space 440 is connected to the oil inlet hole 321, the oil can flow into the oil storage cavity through the oil inlet hole 321 to supply oil to the oil storage cavity.

[0046] Specifically, when the oil supply bottle 600 needs to be installed, align the oil supply bottle 600 with the installation groove 310, and then push the oil supply bottle 600 toward the bottom of the installation groove 310. The outer wall of the oil supply bottle 600 squeezes the locking protrusion 314. After the locking protrusion 314 is subjected to the squeezing force, the locking part 313 is elastically deformed toward the side away from the oil supply bottle 600, so that the locking protrusion 314 will not block the oil supply bottle 600 from being inserted downward, and finally the oil supply bottle 600 is inserted into the installation groove 310. It is understandable that by reasonably setting the positions of the card slot 610 and the card protrusion 314, the oil supply bottle 600 can be inserted into the installation slot 310, and after the punctureable area is pierced by the puncture column 312, the locking member 313 is reset so that the card protrusion 314 can extend into the card slot 610 and be locked on the side wall of the card slot 610, so as to limit the oil supply bottle 600 from moving out of the installation slot 310, so that the oil supply bottle 600 is limited to the mounting frame 300, ensuring that the oil supply bottle 600 is firmly installed. When the oil supply bottle 600 needs to be replaced, pull the oil supply bottle 600 hard again. After the locking protrusion 314 is squeezed by the oil supply bottle 600, the locking part 313 is elastically deformed to the side away from the oil supply bottle 600, so that the locking protrusion 314 exits the locking groove 610, thereby releasing the limit of the locking protrusion 314 on the oil supply bottle 600. Finally, the oil supply bottle 600 is removed from the mounting bracket 300, and then the oil supply bottle 600 is replaced.

[0047] Among them, regarding how the oil in the oil-flowing space 440 enters the oil inlet hole 321, it is worth mentioning that the upper end of the oil outlet hole 311 is higher than the upper end of the oil inlet hole 321, which means that when the atomizing device is in use, the higher end of the oil outlet hole 311 is higher than the higher end of the oil inlet hole 321. In this way, there is a height difference between the oil outlet hole 311 and the oil inlet hole 321. When the oil in the oil-flowing space 440 reaches a sufficient amount to reach the lower end of the oil inlet hole 321, the oil can enter the oil inlet hole 321 and then flow out from the upper end of the oil inlet hole 321 and flow into the oil storage cavity.

[0048] The technical solution of the present invention provides a mounting bracket 300 for detachably mounting the oil supply bottle 600, so that the user can choose to install the oil supply bottle 600 filled with oil on the mounting bracket 300, so that the oil in the oil storage bottle can enter the oil storage cavity through the oil outlet hole 311, the oil flow space 440 and the oil inlet hole 321 in sequence, thereby supplying oil to the oil storage cavity. In this way, the user can add oil by himself and continuously supply oil to the oil storage cavity, so as to make full use of other components of the atomization device such as the circuit board 800 and the battery 700, save resources, and thus save the cost spent by the user on using the atomization device.

[0049] In some embodiments, to facilitate installation of the fuel supply bottle 600 on the mounting bracket 300, a latching protrusion 314 is provided at the end of the engaging member 313 away from the mounting slot 310. The latching protrusion 314 has a top and a bottom, with the top having an inclined guide surface 315 extending from the top to the bottom of the latching protrusion 314 in the direction of extension of the side wall of the mounting slot 310 toward the middle. This provides a guiding function for the fuel supply bottle 600 to be gradually inserted into the mounting slot 310, thereby ensuring smooth installation of the fuel supply bottle 600 on the mounting bracket 300 and enhancing the ease of installation of the fuel supply bottle 600.

[0050] In some embodiments, an oil gap 316 is defined between the end of the oil supply bottle 600 facing the bottom of the mounting groove 310 and the bottom of the mounting groove 310. It is understood that after the puncture pin 312 punctures the puncture area of ​​the oil supply bottle 600, oil flows out of the puncture area. Since the puncture pin 312 and the oil outlet hole 311 are both located at the bottom of the mounting groove 310, there must be a certain distance between the puncture area and the oil outlet hole 311. The oil gap 316 is defined between the oil supply bottle 600 and the bottom of the mounting groove 310 to prevent the oil outlet hole 311 from being blocked by the oil supply bottle 600. This ensures that there is a sufficient oil gap 316 for oil to flow, thereby ensuring that the oil flowing out of the puncture area can smoothly flow to the oil outlet hole 311, thereby ultimately ensuring that the oil supply bottle 600 can supply oil to the oil storage chamber.

[0051] To prevent oil leakage, in some embodiments, a sealing groove 620 is formed on the outer wall of the oil supply bottle 600. A sealing ring 621 is mounted on the sealing groove 620. The opposite sides of the sealing ring 621 respectively abut against the bottom of the sealing groove 620 and the sidewall of the mounting groove 310. This ensures that oil flowing out of the oil supply bottle 600 does not flow out of the mounting groove 310, thereby preventing oil leakage.

[0052] Regarding the arrangement of the oil supply bottle 600 and the oil storage tank 101, in some embodiments, the mounting frame 300 has an upper side and a lower side facing each other, and the mounting portion and the enclosing portion are arranged left and right on the upper side, so that the oil supply bottle 600 and the oil storage tank 101 are arranged left and right; an oil flow groove 330 is formed on the lower side, and the lower sealing assembly 400 is sealed in the notch of the oil flow groove 330 to enclose the oil flow groove 330 to form the oil flow space 440, and the oil outlet hole 311 and the oil inlet hole 321 are both opened at the bottom of the oil flow groove 330, and both pass through the upper and lower sides of the mounting frame 300; the atomization device also includes a battery 700, which is installed in the outer shell 100 and is located below the oil supply bottle 600 and the oil storage tank 101. In this embodiment, after the oil supply bottle 600 is installed on the mounting frame 300, it is arranged on the left and right of the oil storage tank 101, and then the battery 700 is installed below the oil supply bottle 600 and the oil storage tank 101. In this way, the internal space of the atomizing device is reasonably utilized, and the battery 700 can be set to be relatively large, so that the battery 700 has a longer service life, thereby ensuring the service life of the atomizing device. It is worth mentioning that the directions proposed in this embodiment are all based on the direction of the atomizing device when it is in use.

[0053] Furthermore, the continuous oil supply atomizing device also includes a circuit board 800, which is installed in the housing 100 and is located below the battery 700 and electrically connected to the battery 700. The circuit board 800 is provided with a charging interface structure 810. The bottom of the housing 100 is provided with a clearance hole 102 corresponding to the position of the charging interface structure 810, so that an external charging head can be plugged into the charging interface structure 810. In this way, the user can charge the battery 700, thereby further extending the usable time of the atomizing device.

[0054] In some embodiments, the bottom of the oil trough 330 is provided with a raised anti-backflow rib 331. The anti-backflow rib 331 is disposed around the oil outlet hole 311. Alternatively, the anti-backflow rib 331 and the wall of the oil trough 330 form an anti-backflow area, with the oil outlet hole 311 located within the anti-backflow area and the oil inlet hole 321 located outside the anti-backflow area. In this embodiment, the anti-backflow rib 331 is provided so that a step is formed between the oil inlet hole 321 and the end of the anti-backflow rib 331. Thus, when the atomizer is placed sideways or upside down, even if oil in the oil storage chamber flows out of the oil inlet hole 321, the outflowing oil must accumulate to the height of the anti-backflow rib 331 before it can flow to the oil outlet hole 311. Thus, the provision of the anti-backflow rib 331 effectively prevents oil in the oil storage chamber from flowing back onto the surrounding wall of the oil supply bottle 600, thereby effectively reducing or even eliminating oil waste.

[0055] In some embodiments, the lower sealing assembly 400 includes a first sealing member 401 and a second sealing member 402. The first sealing member 401 is sleeved over at least a portion of the second sealing member 402. The first sealing member 401 is mounted on the notch of the oil passage groove 330 to seal the notch. The second sealing member 402 is located outside the first sealing member 401 and at least partially protrudes along the width of the oil passage groove 330 to cover the notch of the oil passage groove 330. In this way, a double sealing effect is achieved, ensuring the sealing of the enclosed oil passage space 440, thereby effectively preventing oil leakage.

[0056] In some embodiments, one end of the oil storage bin 101 is open, and the enclosure of the mounting bracket 300 is sealed to the open end of the oil storage bin 101. The enclosure is provided with an air inlet hole 322. The lower sealing assembly 400 includes a sealing body 410 and a sealing post 420 protruding from the sealing body 410. The oil passage space 440 is formed between the sealing body 410 and the mounting bracket 300. The sealing post 420 is disposed through the air inlet hole 322 and extends into the oil storage chamber. The lower sealing assembly 400 is provided with an air inlet channel 430 that sequentially passes through the sealing body 410 and the sealing post 420. That is, the air inlet channel 430 allows gas to enter the oil storage chamber, driving the aerosol converted from the oil in the oil storage chamber to flow out of the atomizing device through the suction nozzle 200 for inhalation by the user.

[0057] In some embodiments, the oil inlet 321 includes a large diameter section and a small diameter section in the extending direction. The end of the large diameter section remote from the small diameter section is connected to the oil flow space 440, and the end of the small diameter section remote from the large diameter section is connected to the oil storage chamber. Since the aperture of the end of the oil inlet 321 connected to the oil flow space 440 is larger, the oil in the oil flow space 440 can be easily entered into the oil inlet 321, ensuring smooth oil supply. Similarly, since the aperture of the end of the oil inlet 321 connected to the oil storage chamber is smaller, the oil can be prevented from quickly entering the oil inlet 321, thereby increasing the difficulty of oil flowing from the oil inlet 321 to the oil flow space 440 and reducing the risk of oil leakage.

[0058] 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 description and drawings under the inventive concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. A continuous oil supply atomization device, characterized in that: include: shell; A mounting frame is installed in the housing, the mounting frame comprises a mounting portion and an enclosure portion, the mounting portion is used for detachable mounting of the oil supply bottle, a side wall of the mounting portion is provided with an oil outlet hole, so that after the oil supply bottle is installed on the mounting portion, the oil in the oil supply bottle enters the oil outlet hole, and a side wall of the enclosure portion is provided with an oil inlet hole, the upper end of the oil outlet hole is higher than the upper end of the oil inlet hole; A lower sealing assembly is mounted on the mounting frame, and an oil-passing space is formed between the lower sealing assembly and the mounting frame, wherein the oil-passing space is respectively connected to the oil outlet and the oil inlet; An oil storage tank is formed in the housing, and an oil storage cavity is formed between the oil storage tank, the enclosure portion, and the lower sealing assembly. The oil storage cavity is connected to the oil inlet hole, so that after the oil flows out of the oil outlet hole, it enters the oil storage cavity through the oil passage space and the oil inlet hole in sequence; An atomizing assembly, installed in the oil storage chamber; The mounting frame has an upper side and a lower side facing each other, the mounting portion and the enclosing portion are arranged on the upper side in a left-right manner, so that the oil supply bottle and the oil storage tank are arranged on the left-right manner; an oil passage groove is formed on the lower side, the lower sealing assembly is sealed at the notch of the oil passage groove, so as to enclose the oil passage groove to form the oil passage space, the oil outlet hole and the oil inlet hole are both opened at the bottom of the oil passage groove, and both penetrate the upper side and the lower side of the mounting frame; The atomizing device further comprises a battery, which is installed in the housing and is horizontally placed below the oil supply bottle and the oil storage bin.

2. The atomizing device with sustainable oil supply according to claim 1, characterized in that: The mounting portion has a mounting groove, the oil outlet hole is arranged at the bottom of the mounting groove, a puncture column is convexly arranged at the bottom of the mounting groove, a clamping piece is convexly arranged on the notch wall of the mounting groove, and a clamping protrusion is convexly arranged on the inner side of the clamping piece; The sustainable oil supply atomization device also includes an oil supply bottle, the end wall of the oil supply bottle has a puncturable area, and the outer side wall of the oil supply bottle is formed with a slot corresponding to the latching protrusion, so that when the oil supply bottle is at least partially inserted into the mounting groove, the puncture column pierces the puncturable area, and the latching protrusion is latched in the slot wall of the slot, so that the latching protrusion latches the oil supply bottle to the mounting frame.

3. The atomizing device with sustainable oil supply according to claim 2, characterized in that: The clamping protrusion is arranged at one end of the clamping member away from the mounting groove, and the clamping protrusion has a top and a bottom. The top portion has an introduction slope, and the introduction slope extends from the top portion to the bottom portion of the clamping protrusion in the direction in which the side groove wall of the mounting groove extends toward the middle portion.

4. The atomizing device with sustainable oil supply according to claim 2, characterized in that: An oil-passing gap is provided between one end of the oil supply bottle facing the groove bottom of the mounting groove and the groove bottom of the mounting groove.

5. The atomizing device with sustainable oil supply according to claim 2, characterized in that: The outer side wall of the oil supply bottle is also formed with a sealing groove, and a sealing ring is installed on the sealing groove. The opposite sides of the sealing ring are respectively in contact with the bottom of the sealing groove and the side wall of the installation groove.

6. The atomizing device with sustainable oil supply according to claim 1, characterized in that: The bottom of the oil groove is provided with an anti-backflow rib, and the anti-backflow rib is arranged around the oil outlet hole, or the anti-backflow rib and the groove wall of the oil groove are combined to form an anti-backflow area, the oil outlet hole is located in the anti-backflow area, and the oil inlet hole is located outside the anti-backflow area.

7. The atomizing device with sustainable oil supply according to claim 1, characterized in that: The lower sealing assembly includes a first seal and a second seal, the first seal is sleeved on at least a portion of the second seal, the first seal is installed on the notch of the oil groove to seal the notch of the oil groove, the second seal is located on the outside of the first seal, and at least partially protrudes along the width direction of the oil groove to cover the notch of the oil groove.

8. The atomizing device with sustainable oil supply according to claim 1, characterized in that: The sustainable oil supply atomization device also includes a circuit board, which is installed in the shell and is located below the battery and electrically connected to the battery. A charging interface structure is provided on the circuit board, and an avoidance hole is provided at the bottom of the shell corresponding to the position of the charging interface structure for an external charging head to be plugged into the charging interface structure.

9. The atomizing device with sustainable oil supply according to claim 1, characterized in that: One end of the oil storage bin is open, and the enclosure portion of the mounting frame covers the open end of the oil storage bin, the enclosure portion is provided with an air inlet hole, the lower sealing assembly includes a sealing body and a sealing column protruding from the sealing body, the oil flow space is formed between the sealing body and the mounting frame, the sealing column is penetrated through the air inlet hole and extends into the oil storage cavity, and the lower sealing assembly is provided with an air inlet passage that sequentially passes through the sealing body and the sealing column.

10. The atomizing device with sustainable oil supply according to claim 1, characterized in that: The oil inlet hole includes a large diameter section and a small diameter section in the extending direction, wherein one end of the large diameter section away from the small diameter section is connected to the oil passage space, and one end of the small diameter section away from the large diameter section is connected to the oil storage cavity.

Citation Information

Patent Citations

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