Atomizing equipment capable of continuously supplying oil
By designing a detachable oil supply bottle and oil storage tank structure in the atomizing device, users can add oil themselves, solving the problem of resource waste after the oil storage chamber is used up, and realizing sustainable oil supply and cost savings for the device.
Patent Information
- Application Number
- CN202423308648.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing atomizing devices cannot be used again after the oil in the oil storage chamber is used up, resulting in a waste of resources.
Design a detachable oil supply bottle and oil storage tank structure. By setting an oil column and opening a protrusion on the tank wall, the oil supply bottle and oil storage tank can be detachably connected, allowing users to add oil themselves.
It enables a continuous oil supply for atomizing devices, saving resources and reducing user costs.
Smart Images

Figure CN223759238U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of atomization technology, and in particular to an atomization device with sustainable oil supply. Background Technology
[0002] Existing atomizing devices have an oil reservoir, into which an atomizing component is installed. The atomizing component absorbs the oil in the reservoir, and a power supply unit heats it, converting the absorbed oil into a mist. This mist flows out through the mouthpiece for the user to inhale. However, existing atomizing devices are typically disposable, pre-filled with oil before being sold to customers. Customers cannot refill the oil themselves, and once the oil in the reservoir is used up, the device cannot be used again, easily wasting other remaining resources such as batteries and circuit boards. Therefore, a continuously refillable atomizing device is needed to rationally utilize resources and save on user costs. Utility Model Content
[0003] The main purpose of this invention is to provide a continuously supplied oil atomizing device, which aims to solve the problem that once the oil in the oil storage chamber of existing atomizing devices is used up, it cannot be used again, which easily wastes other remaining resources.
[0004] To achieve the above objectives, the atomizing device with sustainable oil supply proposed in this utility model includes:
[0005] The main body includes an oil storage tank, an oil storage cavity is formed inside the oil storage tank, an oil-passing column is formed in the tank wall of the oil storage tank, an oil-passing cavity is formed inside the oil-passing column and extends through both ends of the oil-passing column, the oil-passing cavity is connected to the oil storage cavity, and an opening protrusion is provided on the end wall of the oil-passing column away from the oil storage cavity.
[0006] An oil supply bottle is detachably installed in the oil storage tank. The oil supply bottle includes an oil bottle body and a sealing assembly that seals one end of the oil bottle body to form an oil supply cavity. The sealing assembly includes a first sealing portion. After the oil supply bottle is installed in the oil storage tank, the opening protrusion opens the first sealing portion to allow the oil in the oil supply cavity to flow into the oil storage cavity through the oil passage cavity.
[0007] Optionally, the sealing assembly includes a sealing seat and an elastic sealing gasket. The sealing seat is sealed to the oil bottle body to form the oil supply cavity. The sealing seat has an oil supply hole communicating with the oil storage cavity. The elastic sealing gasket is installed on the side of the sealing seat away from the oil supply cavity. The elastic sealing gasket includes a first sealing portion, which seals the oil supply hole. After the oil supply bottle is installed in the oil storage tank, the opening protrusion pierces the first sealing portion, so that the oil passage cavity communicates with the oil supply hole.
[0008] Optionally, the elastic sealing gasket is provided with a sealing hole, which is located on the side of the first sealing portion away from the oil supply chamber. After the oil supply bottle is installed in the oil storage tank, the end of the oil column near the oil storage chamber is inserted into the sealing hole.
[0009] Optionally, the inner wall of the sealing hole is provided with a sealing protrusion, the sealing protrusion extends circumferentially along the sealing hole, and the sealing protrusion abuts against the outer wall of the oil column.
[0010] Optionally, the sealing seat has an installation groove on the side away from the oil supply chamber. The bottom of the installation groove has a limiting hole and the oil supply hole. The elastic sealing gasket is inserted into the installation groove. The side of the elastic sealing gasket facing the bottom of the installation groove has a limiting protrusion, which is inserted into the limiting hole.
[0011] Optionally, the sealing assembly further includes a cap-shaped bottom cover, the end wall of which is disposed on the side of the elastic sealing gasket away from the oil storage cavity, the end wall of which is provided with a through hole corresponding to the oil supply hole, and the peripheral wall of which is sleeved on one end of the oil bottle body and snapped together with it, so that the elastic sealing gasket is clamped between the bottom cover and the sealing seat.
[0012] Optionally, the sealing assembly further includes an inner seal, which is sleeved on the side of the sealing seat facing the oil storage chamber. The inner seal includes a second sealing portion corresponding to the oil supply hole. The second sealing portion has a cross-shaped slit. After the oil supply bottle is installed in the oil storage chamber, the opening protrusion opens the second sealing portion to enlarge the gap of the cross-shaped slit. After the opening protrusion exits the oil storage chamber and leaves the second sealing portion, the second sealing portion returns to its original state.
[0013] Optionally, the outer peripheral wall of the sealing seat is formed with a limiting groove, the limiting groove extending circumferentially along the sealing seat, and the inner peripheral wall of the inner sealing member is formed with a limiting protrusion, the limiting protrusion being inserted into the limiting groove.
[0014] Optionally, the outer wall of the oil storage tank is formed with an insertion protrusion, and the outer wall of the sealing assembly is formed with an insertion groove. The insertion protrusion and the insertion groove are adapted to fit together. One of the outer wall of the insertion protrusion and the inner wall of the insertion groove is formed with a locking protrusion, and the other is formed with a locking groove that engages with the locking protrusion.
[0015] Optionally, the insert protrusion has a foolproof chamfer, and the insert groove has a mating chamfer that matches the foolproof chamfer.
[0016] The technical solution of this utility model involves forming an oil-passing column on the wall of the oil storage chamber, with an opening protrusion on the end wall of the oil-passing column. After the oil supply bottle is installed in the oil storage chamber, opening the protrusion opens the first seal of the oil supply bottle, allowing oil in the supply chamber to flow into the oil storage chamber through the oil-passing column, thus achieving oil filling. In this way, users can add oil themselves to continuously supply oil to the oil storage chamber, making full use of the circuit board, battery, and other components of the atomizing device, saving resources, and thereby reducing the cost incurred by users in using the atomizing device. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the structure of the atomizing device for sustainable oil supply according to this utility model.
[0019] Figure 2 This is a schematic diagram of the oil storage tank of the atomizing device for sustainable oil supply of this utility model.
[0020] Figure 3 This is a schematic diagram of the oil supply bottle of the atomizing device with sustainable oil supply according to this utility model.
[0021] Figure 4 This is a cross-sectional structural schematic diagram of the atomizing device for sustainable oil supply according to this utility model.
[0022] Figure 5 for Figure 4 A magnified view of a section at point A in the middle;
[0023] Figure 6 This is a schematic diagram of the sealing seat of the atomizing device with sustainable oil supply according to this utility model.
[0024] Figure 7This is a schematic diagram of the elastic sealing gasket of the atomizing device with sustainable oil supply according to this utility model.
[0025] Figure 8 This is a schematic diagram of the bottom cover of the atomizing device with sustainable oil supply according to this utility model.
[0026] Explanation of icon numbers:
[0027]
[0028]
[0029] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0031] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0032] Furthermore, the use of terms such as "first" and "second" in this utility model is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the term "and / or" throughout the text includes three solutions; taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0033] The following will mainly describe the specific structure of the atomizing device with sustainable fuel supply.
[0034] Reference Figures 1 to 8 In this embodiment of the invention, the atomizing device with sustainable oil supply includes:
[0035] The main body of the equipment includes an oil storage tank 100, an oil storage cavity 101 is formed inside the oil storage tank 100, an oil passage column 110 is formed in the tank wall of the oil storage tank 100, an oil passage cavity 111 is formed inside the oil passage column 110 that extends through both ends of the oil passage column 110, the oil passage cavity 111 is connected to the oil storage cavity 101, and an opening protrusion 112 is provided on the end wall of the oil passage column 110 away from the oil storage cavity 101.
[0036] The oil supply bottle 200 is detachably installed in the oil storage tank 100. The oil supply bottle 200 includes an oil bottle body 210 and a sealing assembly that seals one end of the oil bottle body 210 to form an oil supply chamber 201. The sealing assembly includes a first sealing portion 231. After the oil supply bottle 200 is installed in the oil storage tank 100, the opening protrusion 112 opens the first sealing portion 231 so that the oil in the oil supply chamber 201 flows into the oil storage chamber 101 through the oil passage chamber 111.
[0037] Specifically, in this embodiment, there are many options for the method of detachably installing the oil supply bottle 200 into the oil storage tank 100, such as snap-fit, plug-in, magnetic connection, etc. No strict limitation is made here, as long as the opening protrusion 112 of the oil storage tank 100 can open the first sealing part 231 of the oil supply bottle 200 after the oil supply bottle 200 is installed in the oil storage tank 100, allowing the oil in the oil supply chamber 201 to flow into the oil storage chamber 101 through the oil passage chamber 111 to achieve oil injection. For example, the outer wall of the oil storage tank 100 has an insertion protrusion 120, and the outer wall of the sealing component has an insertion groove 224. The insertion protrusion 120 and the insertion groove 224 are adapted to fit and insert into each other. One of the outer wall of the insertion protrusion 120 and the inner wall of the insertion groove 224 has a locking protrusion 121, and the other has a locking groove 225 that engages with the locking protrusion 121. That is, the oil supply bottle 200 is installed and confined in the oil storage tank 100 by a plug-in and snap-fit method, making disassembly and assembly convenient. Furthermore, the plug-in protrusion 120 has a foolproof chamfer 122, and the plug-in groove 224 has a matching chamfer 226 that matches the foolproof chamfer 122. This avoids incorrect installation direction and facilitates quick installation.
[0038] There are many ways to open the first sealing part 231 by opening the protrusion 112. For example, in some embodiments, the sealing assembly includes a sealing seat 220 and an elastic sealing gasket 230. The sealing seat 220 seals the oil bottle body 210 to form the oil supply cavity 201. The sealing seat 220 has an oil supply hole 221 that communicates with the oil storage cavity 101. The elastic sealing gasket 230 is installed on the side of the sealing seat 220 away from the oil supply cavity 201. The elastic sealing gasket 230 includes the first sealing part 231, which seals the oil supply hole 221. After the oil supply bottle 200 is installed in the oil storage tank 100, the opening protrusion 112 pierces the first sealing part 231, so that the oil passage cavity 111 communicates with the oil supply hole 221. Specifically, by appropriately positioning the first sealing part 231 and using a puncture-resistant material, such as a thin film or thin silicone, the first sealing part 231 can be opened and pierced by the protrusion 112 after the oil supply bottle 200 is installed in the oil storage tank 100. After the first sealing part 231 is pierced, the oil passage cavity 111 of the oil passage column 110 communicates with the oil supply hole 221, allowing the oil in the oil storage tank 101 to flow into the oil passage cavity 111 and then into the oil storage tank 101 to achieve oil injection. When the oil in the oil supply bottle 200 is used up, a new oil supply bottle 200 can be replaced.
[0039] The technical solution of this utility model involves forming an oil-passing column 110 on the wall of the oil storage chamber 100, with an opening protrusion 112 on the end wall of the oil-passing column 110. After the oil supply bottle 200 is installed in the oil storage chamber 100, opening the protrusion 112 opens the first sealing part 231 of the oil supply bottle 200, allowing the oil in the oil supply chamber 201 to flow into the oil storage chamber 101 through the oil-passing cavity 111 of the oil-passing column 110, thus achieving oil filling. In this way, the user can add oil themselves to continuously supply oil to the oil storage chamber 101, making full use of the circuit board, battery, and other components of the atomizing device, saving resources, and thereby reducing the cost incurred by the user in using the atomizing device.
[0040] To improve the sealing performance of the oil injection, in some embodiments, the elastic sealing gasket 230 is provided with a sealing hole 232. The sealing hole 232 is located on the side of the first sealing portion 231 away from the oil supply chamber 201. After the oil supply bottle 200 is installed in the oil storage tank 100, one end of the oil column 110 near the oil storage chamber 101 is inserted into the sealing hole 232. This improves the circumferential sealing performance of the oil column 110, preventing oil in the oil supply chamber 201 from flowing out through the outer periphery of the oil column 110, ensuring that the oil in the oil supply chamber 201 is effectively injected into the oil storage chamber 101, and simultaneously preventing oil leakage from the atomizing device. Furthermore, the inner wall of the sealing hole 232 is provided with a sealing protrusion 233, which extends circumferentially along the sealing hole 232 and abuts against the outer wall of the oil column 110. The sealing protrusion 233 further improves the circumferential sealing of the oil column 110, thereby further improving the sealing of the oil injection.
[0041] Regarding the installation method of the sealing seat 220 and the elastic sealing gasket 230, in some embodiments, the sealing seat 220 has an installation groove on the side opposite to the oil supply chamber 201. A limiting hole 222 and the oil supply hole 221 are provided at the bottom of the installation groove. The elastic sealing gasket 230 is inserted into the installation groove. A limiting protrusion 234 is provided on the side of the elastic sealing gasket 230 facing the bottom of the installation groove, and the limiting protrusion 234 engages with the limiting hole 222. That is, the elastic sealing gasket 230 is inserted into the sealing seat 220, and by providing the limiting protrusion 234 and the limiting hole 222, the sealing seat 220 and the elastic sealing gasket 230 are mutually limited, ensuring the stability of their installation and thus improving the stability and reliability of oil injection.
[0042] In some embodiments, the sealing assembly further includes a cap-shaped bottom cover 250. The end wall of the bottom cover 250 covers the side of the elastic sealing gasket 230 facing away from the oil storage chamber 101. The end wall of the bottom cover 250 has a through hole corresponding to the oil supply hole 221. The peripheral wall of the bottom cover 250 is fitted onto one end of the oil bottle body 210 and snapped together, so that the elastic sealing gasket 230 is clamped between the bottom cover 250 and the sealing seat 220. This improves the stability of the sealing assembly structure, enhancing both the sealing performance of the oil supply bottle 200 and the stability and reliability of oil injection from the oil supply chamber 201 to the oil storage tank 100. Furthermore, the bottom cover 250 also improves the overall appearance of the oil supply bottle 200, enhancing the user's visual experience.
[0043] In some embodiments, the sealing assembly further includes an inner sealing member 240, which is sleeved on the side of the sealing seat 220 facing the oil storage chamber 101. The inner sealing member 240 includes a second sealing portion 241 corresponding to the oil supply port 221. The second sealing portion 241 has a cross-shaped slit 242. After the oil supply bottle 200 is installed in the oil storage chamber 100, the opening protrusion 112 pushes open the second sealing portion 241, enlarging the gap of the cross-shaped slit 242. After the opening protrusion 112 exits the oil storage chamber 101 and leaves the second sealing portion 241, the second sealing portion 241 returns to its original state. Thus, when the oil supply bottle 200 is disassembled, the second sealing portion 241, after returning to its original state, seals the oil supply chamber 201, preventing oil from flowing out and thus avoiding contamination of other components of the atomizing device.
[0044] In some embodiments, a limiting groove 223 is formed on the outer peripheral wall of the sealing seat 220, the limiting groove 223 extending circumferentially along the sealing seat 220, and a limiting protrusion 243 is formed on the inner peripheral wall of the inner sealing member 240, the limiting protrusion 243 being inserted into the limiting groove 223. The provision of the limiting protrusion 243 and the limiting groove 223 ensures that the sealing seat 220 and the inner sealing member 240 mutually limit each other, thereby preventing the inner sealing member 240 from falling off the sealing seat 220 when the second sealing part 241 is opened by the opening protrusion 112, improving the installation stability of the inner sealing member 240, and thus improving the performance of the second sealing part 241.
[0045] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A self-sustaining oil supply atomizing apparatus characterized by, The utility model provides a kind of oil supply device, including: Device body, including oil storage warehouse, the inside of the oil storage warehouse is formed with oil storage cavity, the warehouse wall of the oil storage warehouse is formed with oil passing column, the inside of the oil passing column is formed with oil passing cavity passing through both ends thereof, the oil passing cavity is communicated with the oil storage cavity, and the end wall of the oil passing column away from the oil storage cavity is provided with opening protrusion; Oil supply bottle, detachably installed in the oil storage warehouse, the oil supply bottle includes oil bottle body and sealing assembly sealed to one end of the oil bottle body to form oil supply cavity with oil bottle body, the sealing assembly includes first sealing portion, after the oil supply bottle is installed in the oil storage warehouse, the opening protrusion opens the first sealing portion, so that the oil in the oil supply cavity flows into the oil storage cavity through the oil passing cavity.
2. The self-replenishing atomization device of Claim 1, wherein, The sealing assembly includes sealing seat and elastic sealing gasket, the sealing seat is sealed to the oil bottle body to form the oil supply cavity with the oil bottle body, the sealing seat is provided with oil supply hole communicated with the oil storage cavity, and the elastic sealing gasket is installed on the side of the sealing seat away from the oil supply cavity, the elastic sealing gasket includes the first sealing portion, the first sealing portion seals the oil supply hole, after the oil supply bottle is installed in the oil storage warehouse, the opening protrusion pierces the first sealing portion, so that the oil passing cavity is communicated with the oil supply hole.
3. The self-replenishing atomization device of Claim 2, wherein, The elastic sealing gasket is provided with sealing hole, the sealing hole is located on the side of the first sealing portion away from the oil supply cavity, after the oil supply bottle is installed in the oil storage warehouse, the oil passing column is inserted into the sealing hole.
4. The self-replenishing atomization device of Claim 3, wherein, The inner wall of the sealing hole is provided with sealing protrusion, the sealing protrusion extends along the circumference of the sealing hole, and the sealing protrusion is in abutment with the outer wall of the oil passing column.
5. The self-refilling atomization device of claim 2, wherein, The side of the sealing seat away from the oil supply cavity is formed with mounting groove, the groove bottom of the mounting groove is provided with limiting hole and oil supply hole, the elastic sealing gasket is inserted into the mounting groove, the side of the elastic sealing gasket facing the groove bottom of the mounting groove is provided with limiting protrusion, and the limiting protrusion is inserted into the limiting hole.
6. The self-replenishing atomization device of Claim 2, wherein, The sealing assembly further includes bottom cover in the form of cover, the end wall of the bottom cover is provided on the side of the elastic sealing gasket away from the oil storage cavity, the end wall of the bottom cover is provided with through hole at the position corresponding to the oil supply hole, the circumferential wall of the bottom cover is sleeved on one end of the oil bottle body and is buckled with the oil bottle body, so that the elastic sealing gasket is clamped between the bottom cover and the sealing seat.
7. The self-replenishing atomization device of Claim 2, wherein, The sealing assembly further includes inner sealing piece, the inner sealing piece is sleeved on the side of the sealing seat facing the oil storage cavity, the inner sealing piece includes second sealing portion at the position corresponding to the oil supply hole, the second sealing portion is provided with cross cut, after the oil supply bottle is installed in the oil storage warehouse, the opening protrusion opens the second sealing portion, so that the gap of the cross cut becomes larger, and after the opening protrusion exits the oil storage cavity and leaves the second sealing portion, the second sealing portion returns to the original state.
8. The self-replenishing atomization device of Claim 7, wherein, The outer circumferential wall of the sealing seat is formed with limiting groove, the limiting groove extends along the circumference of the sealing seat, the inner circumferential wall of the inner sealing piece is formed with limiting protruding ring, and the limiting protruding ring is inserted into the limiting groove.
9. The self-replenishing atomization device of Claim 1, wherein, The outer wall of the oil storage bin is formed with an insertion protrusion, the outer wall of the sealing assembly is formed with an insertion groove, the insertion protrusion and the insertion groove are adapted to be inserted into each other, one of the outer wall of the insertion protrusion and the inner wall of the insertion groove is formed with a clamping protrusion, and the other is formed with a clamping groove matched with the clamping protrusion.
10. The self-replenishing atomization device of Claim 9, wherein, The insertion protrusion is formed with an anti-stupidity chamfer, and the insertion groove is formed with a matched chamfer matched with the anti-stupidity chamfer.