Atomizing bomb capable of preventing oil supplement and oil leakage
By setting a slide and a sealing component inside the atomizing bullet, the axial displacement of the heating element is achieved, which solves the problem of oil leakage when the oil inlet is closed, ensuring that the oil does not flow out from the oil inlet and achieving the effect of preventing oil leakage.
Patent Information
- Application Number
- CN202520267828.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-02-19
AI Technical Summary
When the oil inlet of the existing atomizing bomb is closed, the pressure inside the oil storage chamber increases, and the oil flows out through the oil inlet of the heating component, resulting in oil leakage.
A non-leaking atomizing bullet is designed to prevent oil leakage during oil replenishment. By setting a slide inside the shell, the heating component, including the nozzle and the heating core, can be axially displaced along the slide. The oil filling hole is blocked or opened by a sealing component to ensure that the oil does not leak out during oil replenishment and resetting.
It effectively prevents oil from flowing out of the oil inlet during oil replenishment and reset, ensuring that the oil does not impact the heating element, avoiding oil leakage, and achieving a sealing effect.
Smart Images

Figure CN223600856U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model embodiment relates to electronic atomization technical field, in particular to a kind of atomization bomb of oil supplementing and oil leakage prevention. BACKGROUND
[0002] In the prior art, a silica gel plug is arranged on the atomization bomb to block the oil injection hole. When the silica gel plug is pressed into the oil injection hole to close it after oil injection, the pressure in the oil storage cavity increases, and the oil flows out through the oil inlet of the heating assembly. SUMMARY
[0003] The technical problem to be solved by the utility model embodiment is to provide an atomization bomb that prevents oil leakage when the oil injection hole is closed.
[0004] To solve the above technical problems, the utility model embodiment adopts the following technical scheme: an atomization bomb that prevents oil leakage when the oil injection hole is closed, comprising:
[0005] A shell is provided with an oil storage compartment inside and an oil injection hole and a slide that penetrates the shell and communicates with the oil storage compartment outside;
[0006] A heating assembly includes a suction nozzle portion, a heating core coaxially communicated with the suction nozzle portion, an oil inlet hole circumferentially arranged on the heating core, the heating assembly penetratingly installed in the slide and communicating with the oil storage compartment, the heating assembly being axially displaceable in the slide, and the heating core being movable between the oil storage compartment and the slide;
[0007] The heating core is located in the oil storage compartment, the oil inlet hole is communicated with the oil storage compartment, and the suction nozzle portion is partially located inside the oil storage compartment to block the oil injection hole;
[0008] The heating core is displaced into the slide, the oil inlet hole is retracted into the slide, the suction nozzle portion is correspondingly displaced to open the oil injection hole inside the oil storage compartment, and the oil injection hole is respectively communicated with the oil storage compartment and the outside.
[0009] Further, the suction nozzle portion includes a suction nozzle rod and a blocking piece arranged circumferentially at the end of the suction nozzle rod, the blocking piece is arranged in the oil storage compartment to limit the movement range of the heating assembly and to block or open the oil injection hole.
[0010] Further, the blocking piece blocks the oil injection hole, and the suction nozzle rod extends outwardly from the shell.
[0011] Further, the oil injection hole is arranged on one side of the shell.
[0012] Further, a vertical block is arranged on the blocking piece to block the oil injection hole on one side of the shell.
[0013] Further, the oil injection hole is arranged on the top of the shell.
[0014] Further, the blocking piece is further provided with a convex part which is inserted into the oil injection hole of the top of the shell.
[0015] Further, the nozzle rod is outwardly extended from the shell, and the nozzle rod is further provided with a stopper.
[0016] Further, the bottom of the heating assembly is further provided with an electrode sheet which is electrically connected with the heating core.
[0017] By means of the above technical scheme, the utility model has at least the following beneficial effects: the utility model embodiment sets the slide in the shell, and the heating assembly penetrates the shell and moves up and down, the heating assembly comprises a nozzle part for blocking the oil injection hole and a heating core.
[0018] When the heating core is located in the oil storage compartment, the oil injection hole is communicated with the oil storage compartment to inject and atomize oil, at this time, the nozzle part is partially located in the oil storage compartment to block the oil injection hole;
[0019] When the heating assembly slides downward, the heating core is displaced into the slide, the oil injection hole is retracted into the slide and is not communicated with the oil storage compartment to inject oil, the nozzle part is partially displaced in the oil storage compartment to open the oil injection hole, the oil injection hole is respectively communicated with the oil storage compartment and the outside, at this time, the oil storage compartment can be refilled, and the added oil does not flow out of the oil injection hole due to the impact of the heating core, and the oil does not flow out of the oil injection hole due to the pressure of the oil storage compartment when the oil storage compartment is reset. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is a three-dimensional structure schematic of a combined state of an optional embodiment of the utility model Figure 1 .
[0021] Figure 2 is a three-dimensional structure schematic of a combined state of an optional embodiment of the utility model Figure 1 .
[0022] Figure 3 is a three-dimensional structure schematic of a combined state of an optional embodiment of the utility model Figure 1 .
[0023] Figure 4 is Figure 1 a three-dimensional structure schematic of a combined state after change Figure 1 .
[0024] Figure 5 is a three-dimensional structure schematic of a combined state of another optional embodiment of the utility model Figure 2 .
[0025] Figure 6is another optional embodiment of the shell cross section three-dimensional structure schematic of the utility model Figure 2 .
[0026] Figure 7 is another optional embodiment of the utility model's heating assembly three-dimensional structure schematic Figure 2 .
[0027] Figure 8 is Figure 5 combined state changes after the cross section three-dimensional structure schematic Figure 1 .
[0028] Figure 9 is an optional embodiment of the utility model's combined state bottom three-dimensional structure schematic. DETAILED DESCRIPTION
[0029] The utility model will be further explained in detail below in combination with the drawings and specific embodiments.It should be understood that the following illustrative embodiments and explanations are only used to explain the utility model, and are not as the limitation of the utility model, and in the case of no conflict, the embodiments in the utility model and the features in the embodiments can be combined with each other.
[0030] As Figures 1-9 indicated, an optional embodiment of the utility model provides an anti-oil leakage atomizing bullet, comprising: a shell 1, an oil storage compartment 10 is arranged in the shell 1, an oil injection hole 11 and a slide 12 penetrating the shell are arranged outside the shell 1 and are communicated with the oil storage compartment 10;
[0031] A heating assembly 2, the heating assembly 2 includes a suction nozzle part 21, a heating core 22 coaxially communicated with the suction nozzle part, an oil inlet hole 220 is arranged in the circumferential direction of the heating core 22, the heating assembly 2 is installed in the slide 12 and is communicated with the oil storage compartment 10, the heating assembly 2 can be axially displaced in the slide 12, and the heating core 22 is movable between the oil storage compartment 10 and the slide 12;
[0032] The heating core 22 is located in the oil storage compartment 10, the oil inlet hole 220 is communicated with the oil storage compartment 10, and the suction nozzle part 21 is partially located in the oil storage compartment 10 to block the oil injection hole 11;
[0033] The heating core 22 is displaced into the slide 12, the oil inlet hole 220 is retracted into the slide 12, the suction nozzle part 21 is partially displaced in the oil storage compartment 10 to open the oil injection hole 11, and the oil injection hole 11 is respectively communicated with the oil storage compartment 10 and the outside.
[0034] In the embodiment, the slide 12 is arranged in the shell 1, so that the heating assembly 2 moves up and down through the shell 1, and the heating assembly 2 includes the suction nozzle part 21 for blocking the oil injection hole 11 and the heating core 22.
[0035] When the heating core 22 is located in the oil storage chamber 10, the oil inlet hole 220 is communicated with the oil storage chamber 10 to inhale the oil mist, at this time, the suction nozzle part 21 is partially located in the oil storage chamber 10 to seal the oil injection hole 11;
[0036] When the heating assembly 2 slides downward, the heating core 22 is displaced into the slide 12, the oil inlet hole 220 is retracted into the slide 12 and is not communicated with the oil storage chamber 10, the suction nozzle part 21 is correspondingly displaced in the oil storage chamber 10 to open the oil injection hole 11, the oil injection hole 11 is respectively communicated with the oil storage chamber 10 and the outside, at this time, the oil storage chamber 10 can be refilled, and it is ensured that the added oil does not flow out of the oil inlet hole 220 due to the impact of the heating core 22 during the refilling, and the oil does not flow out of the oil inlet hole 220 due to the air pressure pressing the oil storage chamber 10 during the resetting.
[0037] As shown in Figure 2 , 3 , 6, 7, the suction nozzle part 21 comprises a suction nozzle rod 211 and a blocking piece 212 arranged at the periphery of the end of the suction nozzle rod 211, the blocking piece 212 is arranged in the oil storage chamber 10 to be movable and limit the movement range of the heating assembly 2, and the blocking piece 212 seals or opens the oil injection hole 11.
[0038] In the embodiment, the blocking piece 212 seals or opens the oil injection hole 11 when the suction nozzle part 21 is moved up and down, and the blocking piece 212 can only move in the oil storage chamber 10, so that the heating assembly 2 cannot be pulled out of the slide 12.
[0039] As shown in Figure 1 , 5 , in an optional embodiment of the utility model, the blocking piece 212 seals the oil injection hole 11, and the suction nozzle rod 211 extends out of the shell 1.
[0040] In the embodiment, the suction nozzle rod 211 extends out of the shell 1 when the blocking piece 212 seals the oil injection hole 11, which facilitates the user to smoke the atomized smoke, and also facilitates the user to press the suction nozzle rod 211 to open the oil injection hole 11.
[0041] As shown in Figure 2 , 4 , in another optional embodiment of the utility model, the oil injection hole 11 is arranged on one side of the shell 1.
[0042] In the embodiment, the oil injection hole 11 arranged on one side of the shell 1 facilitates the user to refill the oil.
[0043] As shown in Figure 3 , 4 , in still another optional embodiment of the utility model, a vertical block 2120 is arranged on the blocking piece 212 to seal the oil injection hole 11 on one side of the shell 1.
[0044] In the embodiment, the vertical block 2120 is arranged to vertically block the side oil injection hole 11, and the downward sliding range of the heating assembly 2 on the slide 12 is limited to ensure that the oil inlet hole 220 of the heating core 22 does not expose outside the slide 12.
[0045] As shown in Figure 6 , 8 in another optional embodiment of the utility model, the oil injection hole 11 is arranged on the top of the shell 1.
[0046] In the embodiment, the oil injection hole 11 arranged on the top of the shell 1 is convenient for the user to supplement oil.
[0047] As shown in Figure 7 , 8 in an optional embodiment of the utility model, the blocking piece 212 is further provided with a protruding part 2121, and the protruding part 2121 is inserted into the oil injection hole 11 on the top of the shell 1.
[0048] In the embodiment, the protruding part 2121 is inserted into the oil injection hole 11 on the top of the shell 1, so that the sealing effect of the oil injection hole 11 is better.
[0049] As shown in Figure 5 , 7 , 9 in another optional embodiment of the utility model, the suction nozzle rod 211 extends outward from the shell 1, and the suction nozzle rod 211 is further provided with a stopper 2110.
[0050] In the embodiment, the stopper 2110 is arranged on the part of the suction nozzle rod 211 extending outward from the shell 1, the downward sliding range of the heating assembly 2 on the slide 12 is limited to ensure that the oil inlet hole 220 of the heating core 22 does not expose outside the slide 12.
[0051] As shown in Figure 9 in another optional embodiment of the utility model, the heating assembly 2 is further provided with an electrode sheet 23 electrically connected with the heating core 22. In the embodiment, the electrode sheet 23 is arranged to ensure that the external power supply can be received to ensure that the heating assembly 2 works.
[0052] The embodiments of the utility model are described above in combination with the drawings, but the utility model is not limited to the above-mentioned specific embodiments, and the above-mentioned specific embodiments are only illustrative but not restrictive, and those skilled in the art can make many forms under the inspiration of the utility model without departing from the purpose of the utility model and the scope protected by the claims, and these all belong to the protection scope of the utility model.
Claims
1. An oil leak prevention atomizing cartridge, characterized by, The application relates to a heating device, which comprises the following parts: a shell, an oil storage chamber arranged in the shell, an oil injection hole communicated with the oil storage chamber and a sliding channel penetrating through the shell; a heating assembly, which comprises a suction nozzle, a heating core coaxially communicated with the suction nozzle, oil inlet holes arranged in the circumferential direction of the heating core, the heating assembly being arranged in the sliding channel and communicated with the oil storage chamber, the heating core being movable in the axial direction of the sliding channel, and the heating core being movable between the oil storage chamber and the sliding channel; the heating core is arranged in the oil storage chamber, the oil inlet holes are communicated with the oil storage chamber, and the suction nozzle is partially arranged in the oil storage chamber to block the oil injection hole; when the heating core is displaced into the sliding channel, the oil inlet holes are retracted into the sliding channel, the suction nozzle is correspondingly displaced in the oil storage chamber to open the oil injection hole, and the oil injection hole is communicated with the oil storage chamber and the outside respectively.
2. The anti-refill spill oil aerosol of claim 1 wherein, the suction nozzle comprises a suction rod and a blocking piece arranged in the circumferential direction of the end of the suction rod, the blocking piece is arranged in the oil storage chamber and movable to limit the moving range of the heating assembly and to block or open the oil injection hole.
3. The anti-bleed, anti-leak, aerosol projectile of claim 2 wherein, the blocking piece blocks the oil injection hole, and the suction rod is extended out of the shell.
4. The anti-bleed, anti-leak, aerosol projectile of claim 3 wherein, the oil injection hole is arranged on one side of the shell.
5. The anti-pouring, anti-leaking, aerosol can of claim 4 wherein, a vertical block is arranged on the blocking piece to block the oil injection hole on one side of the shell.
6. The anti-bleed, anti-leak, aerosol projectile of claim 3 wherein, the oil injection hole is arranged on the top of the shell.
7. The anti-pouring, anti-leaking, aerosol can of claim 6 wherein, a convex part is further arranged on the blocking piece, and the convex part is inserted into the oil injection hole on the top of the shell.
8. The anti-bleed, anti-leak, aerosol projectile of claim 7 wherein, the extended part of the suction rod out of the shell is further provided with a stopper.
9. The anti-pouring, anti-leaking, aerosol can of claim 1 wherein, an electrode sheet is further arranged at the bottom of the heating assembly and electrically connected with the heating core.