Atomizing bomb with oil supplementing and pressure releasing structure
By incorporating a pressure relief hole and a nozzle assembly into the atomizing cartridge, the problem of air not being able to escape during oil replenishment is solved, enabling smooth oil replenishment, preventing oil leakage, and improving the reliability and safety of the equipment.
Patent Information
- Application Number
- CN202520115742.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-17
AI Technical Summary
The existing atomizing cartridges cannot expel air during the refueling process, resulting in excessive air pressure in the fuel tank, which forces the fuel to leak out from the atomizing core.
An oil filling and pressure relief structure was designed. By setting a pressure relief hole and a suction nozzle assembly on the outer shell, the suction nozzle assembly can open the oil filling hole and connect with the pressure relief hole at the same time when it slides, forming a channel to discharge the air in the oil tank and avoid excessive air pressure.
This effectively prevents oil seepage and leakage, ensures a smooth oil replenishment process, and improves the reliability and safety of the atomizing bullet.
Smart Images

Figure CN223787142U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model embodiment relates to electronic atomization technical field, in particular to a kind of atomizing bomb with oil supplementing pressure relief structure. BACKGROUND
[0002] In existing products, the atomizing bomb with oil supplementing hole, since in oil supplementing, oil supplementing device is usually inserted into oil supplementing hole to supplement oil, since oil supplementing device blocks oil injection hole, air and oil liquid entering during oil supplementing are mixed with air in oil reservoir, and excess air cannot be discharged, air pressure in oil reservoir is too large, leading to slow oil intake, and part of oil liquid is extruded by air pressure, and oil leakage from atomizing core. SUMMARY
[0003] The technical problem to be solved by the utility model embodiment is to provide an atomizing bomb with oil supplementing pressure relief structure, to solve the problem that air cannot be discharged during oil supplementing, and oil leakage from atomizing core caused by pressure.
[0004] To solve the above technical problem, the utility model embodiment adopts the following technical scheme:
[0005] An atomizing bomb with oil supplementing pressure relief structure includes a shell, an oil reservoir arranged inside the shell, and an atomizing pipe arranged in the oil reservoir and connected with the outside, the shell is further provided with an oil injection hole and a pressure relief hole connected with the oil reservoir respectively, a suction nozzle assembly with a suction hole is slidably arranged on the shell, the suction hole of the suction nozzle assembly is connected with the atomizing pipe, and the oil injection hole and the pressure relief hole are closed to connect with the outside; the suction nozzle assembly slides on the shell, so that the oil injection hole is exposed, the atomizing pipe is closed to connect with the outside, and the suction hole is connected with the pressure relief hole to connect with the outside.
[0006] Further, the shell is provided with a guide rail part, the oil injection hole, the atomizing pipe and the pressure relief hole are arranged in the guide rail part and distributed along the track direction in sequence, and the suction nozzle assembly is inserted into the guide rail part to slide.
[0007] Further, the suction nozzle assembly includes a push block, a replaceable suction nozzle inserted on the push block, clamping pieces and limiting pieces arranged on both sides of the push block, the guide rail part is provided with convex pieces and stop pieces, the push block is inserted into the guide rail part, the clamping pieces are clamped with the convex pieces, the limiting pieces abut against the stop pieces to limit the insertion of the push block; the push block slides out of the guide rail part, the clamping pieces are separated from the convex pieces, the clamping pieces abut against the stop pieces to stop the push block from sliding off.
[0008] Further, the guide rail part is composed of a first guide rail provided on the shell and a second guide rail arranged on the opposite side of the first guide rail, and the first guide rail and the second guide rail are both provided with convex pieces and stop pieces.
[0009] Further, the shell is internally provided with a gas passing cavity, the shell is provided with an air inlet hole in the side, the air inlet hole is connected with the gas passing cavity, and the gas passing cavity is communicated with the atomizing pipe.
[0010] Further, the gas passing cavity is provided with a supporting portion at the bottom, the gas passing cavity is further provided with an oil absorbing portion, the oil absorbing portion is arranged on the supporting portion, and the gas passing cavity is divided into a gas passing portion and an oil containing portion.
[0011] Further, the shell is further provided with a sensing air channel, one end of the sensing air channel is connected with the gas passing portion, and the other end of the sensing air channel is externally provided for insertion of a sensing device.
[0012] Further, the sensing air channel is connected with one end of the gas passing portion, and the height of the sensing air channel is higher than the setting height of the oil absorbing portion.
[0013] Further, the shell is further provided with an electrode sheet, the electrode sheet is electrically connected with the atomizing pipe, so that the atomizing pipe is heated and atomized by receiving electric energy.
[0014] Further, the shell is further provided with a magnetic member.
[0015] By adopting the technical scheme, the utility model has at least the following beneficial effects: in the utility model, the pressure relief hole is arranged on the shell, the suction hole channel of the suction nozzle assembly can be communicated with the pressure relief hole and lead to the outside when the suction nozzle assembly slides to open the oil injection hole, the air in the oil tank can be discharged from the channel formed by the pressure relief hole and the suction hole channel when the oil is injected, the air cannot be discharged, the air pressure in the oil tank is too large, and the oil is pressed to seep out of the atomizing pipe. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a three-dimensional structure schematic diagram of a combined state of an optional embodiment of the utility model.
[0017] Figure 2 is a three-dimensional structure schematic diagram of a disassembled state of an optional embodiment of the utility model.
[0018] Figure 3 is a sectional three-dimensional structure schematic diagram of another optional embodiment of the utility model Figure 1 .
[0019] Figure 4 is a sectional three-dimensional structure schematic diagram of another optional embodiment of the utility model Figure 2 .
[0020] Figure 5 is a bottom surface three-dimensional structure schematic diagram of a combined state of another optional embodiment of the utility model. DETAILED DESCRIPTION
[0021] The utility model will be made further detailed explanation below combining with the drawings and specific embodiment. It should be understood that the following illustrative examples and explanation are only used to explain the utility model, and do not be regarded as the limitation of the utility model, and, in the case where there is no conflict, the embodiment in the utility model and the feature in the embodiment can be combined mutually.
[0022] As Figures 1-3 Indicated, the utility model one optional embodiment provides a kind of atomizing bomb of oil supplementing pressure relief structure, including shell 1, oil storehouse 10 being arranged in shell 1 interior, and the atomizing pipe 11 being arranged in oil storehouse 10 interior intercommunication outside, the oil injection hole 12 and the pressure relief hole 13 of oil storehouse 10 are also respectively equipped with intercommunication on the shell, the suction nozzle assembly 2 of setting suction hole channel 21 is slidably arranged on shell 1, the suction nozzle assembly suction hole channel 21 and atomizing pipe 11 butt joint intercommunication, closed oil injection hole 12 and pressure relief hole 13 intercommunication outside;The suction nozzle assembly 2 slides on shell 1, makes the oil injection hole 12 expose, closes atomizing pipe 11 intercommunication outside, the suction hole channel 21 and butt joint pressure relief hole 13 intercommunication outside.
[0023] In the embodiment, by setting pressure relief hole 13 on shell 1, the suction hole channel 21 of suction nozzle assembly 2 can be communicated with pressure relief hole 13 and lead to outside while opening oil injection hole 12 by sliding suction nozzle assembly 2, ensure that air in oil storehouse 10 can be discharged from the channel formed by butt joint of pressure relief hole 13 and suction hole channel 21 while oil injection, avoid that air cannot be discharged, air pressure in oil storehouse 10 is too large, oil liquid is pressed from atomizing pipe 11 and seeps out.
[0024] As Figure 2 , 3 Indicated, in another optional embodiment of the utility model, the shell 1 is equipped with guide rail part 14, the oil injection hole 12, atomizing pipe 11, pressure relief hole 13 are sequentially distributed and arranged in guide rail part 14 along the direction of track, the suction nozzle assembly 2 is inserted into guide rail part 14 and slides.
[0025] In the embodiment, by setting guide rail part 14 on shell 1, the oil injection hole 12, atomizing pipe 11, pressure relief hole 13 are sequentially distributed in guide rail part 14 along the direction of track, ensure that the sliding direction of guiding suction nozzle assembly 2 can be opened oil injection hole 12 at the same time, closes atomizing pipe 11, and makes suction hole channel 21 and pressure relief hole 13 intercommunication.
[0026] As Figure 2 , 3As shown in the utility model still another optional embodiment, the suction nozzle assembly 2 includes push block 22, the replaceable suction nozzle 23 of inserting in push block 22, the push block 22 both sides are provided with clamping part 221 and limiting part 222, the guide rail part 14 is equipped with convex part 140 and stop piece 141, the push block 22 is inserted into guide rail part 14, clamping part 221 with The clamping of convex part 140, limiting part 222 and stop piece 141 abut, limit push block 22 insertion activity;The push block 22 slides out from guide rail part 14, clamping part 221 and convex part 140 are separated from fixed, clamping part 221 and stop piece 141 abut and stop, limit push block 22 sliding drop from guide rail part 14, the one-way cooperation of clamping part 22 and stop piece 141 installs stop setting structure, simple operation, lower use cost.
[0027] In the embodiment, the push block 22 is inserted into the guide rail part 14, the clamping part 22 is extruded from the stop piece 141, and is clamped with the convex part 140. When the push block 22 slides out of the guide rail part 14, the clamping part 22 abuts against the stop piece 141, thereby limiting the push block 22 from sliding out of the guide rail part 14. The one-way cooperation of the clamping part 22 and the stop piece 141 is simple in structure, convenient to operate, and low in use cost.
[0028] As shown in the utility model one optional embodiment, the guide rail part 14 is composed of the first guide rail 145 and the second guide rail 147 arranged on the opposite side of the first guide rail 145. Figure 2 In the embodiment, the first guide rail 145 and the second guide rail 147 are arranged as the guide rail part 14, thereby improving the mounting stability of the push block 22.
[0029] As shown in the utility model one optional embodiment, the shell 1 is further provided with the air passing cavity 31, the air inlet hole 30 is arranged on the side surface of the shell 1, the air passing cavity 31 is connected with the air inlet hole 30, and the air passing cavity 31 is communicated with the atomizing pipe 11.
[0030] Figure 4 In the embodiment, the air inlet hole 30 is arranged on the side surface of the shell 1, and the air passing cavity 31 is communicated with the atomizing pipe 11, thereby avoiding that the air inlet hole 30 is arranged at the bottom of the atomizing pipe 11 in the conventional design, and the condensate generated in the atomizing pipe 11 flows out along the air inlet hole 30.
[0031] As shown in the utility model one optional embodiment, the air passing cavity 31 is provided with the supporting part 32 at the bottom, the air passing cavity 31 is further provided with the oil suction part 33, the oil suction part 33 is arranged on the supporting part 32, and the air passing cavity 31 is divided into the air passing part 311 and the oil retaining part 312.
[0032] As shown in the utility model one optional embodiment, the air passing cavity 31 is provided with the supporting part 32 at the bottom, the air passing cavity 31 is further provided with the oil suction part 33, the oil suction part 33 is arranged on the supporting part 32, and the air passing cavity 31 is divided into the air passing part 311 and the oil retaining part 312. Figure 4 As shown in the utility model one optional embodiment, the air passing cavity 31 is provided with the supporting part 32 at the bottom, the air passing cavity 31 is further provided with the oil suction part 33, the oil suction part 33 is arranged on the supporting part 32, and the air passing cavity 31 is divided into the air passing part 311 and the oil retaining part 312.
[0033] In the embodiment, the support part 32 is arranged at the bottom of the air passing cavity 31, and the oil absorbing part 33 is arranged on the support part 32, so that the condensed liquid generated in the atomizing tube 11 can be absorbed on the oil absorbing part 33, and meanwhile, when the oil absorbing part 33 is immersed in the condensed liquid, the condensed liquid can be stored in the oil containing part 312, and the condensed liquid is further prevented from leaking out.
[0034] As shown in Figure 4 , 5 in an optional embodiment of the utility model, the shell 1 still is provided with the induction air channel 40, one end of the induction air channel 40 is connected through the air passing part 311, and the opposite end is externally inserted for the induction device.
[0035] In the embodiment, the induction air channel 40 is connected through the air passing part 311 and is inserted externally for the induction device, so that the induction device can perceive the negative pressure generated when inhaling, and then the power supply for the atomizing tube 11 is started.
[0036] As shown in Figure 4 in an optional embodiment of the utility model, the one end of the induction air channel 40 is connected through the air passing part 311, and the height of the induction air channel 40 is higher than the arrangement height of the oil absorbing part 33.
[0037] In the embodiment, the height of the induction air channel 40 is higher than the arrangement height of the oil absorbing part 33, so that when the oil absorbing part 33 is immersed in the condensed liquid, the condensed liquid cannot be quickly absorbed and flows out from the induction air channel 40 to pollute and damage the induction device.
[0038] As shown in Figure 5 in another optional embodiment of the utility model, the shell 1 is further provided with the electrode sheet 41, and the electrode sheet 41 is electrically connected with the atomizing tube 11 to receive electric energy to make the atomizing tube 11 heat and atomize.
[0039] In the embodiment, the electrode sheet 41 is arranged to receive electric energy to make the atomizing tube 11 heat and atomize.
[0040] As shown in Figure 5 in another optional embodiment of the utility model, the shell 1 is further provided with the magnetic part 42.
[0041] In the embodiment, the magnetic part 42 is arranged to facilitate the positioning and installation of the whole device.
[0042] 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 the ordinary 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-supplementing pressure-releasing structure atomizing bullet, comprising a shell, an oil tank arranged inside the shell, and an atomizing tube arranged inside the oil tank and connected with the outside, characterized in that, the shell is further provided with an oil injection hole and a pressure relief hole respectively connected with the oil tank, and a suction nozzle assembly provided on the shell and provided with a suction hole channel, the suction hole channel of the suction nozzle assembly is connected with the atomizing tube, and the oil injection hole and the pressure relief hole are closed and connected with the outside; the suction nozzle assembly is slid on the shell, so that the oil injection hole is exposed, the atomizing tube is closed and connected with the outside, and the suction hole channel is connected with the outside through the pressure relief hole. The shell is provided with a guide rail part, and the oil injection hole, the atomizing tube and the pressure relief hole are arranged in the guide rail part in sequence along the rail direction. The suction nozzle assembly comprises a push block, a replaceable suction nozzle inserted on the push block, clamping pieces and limiting pieces arranged on both sides of the push block, and convex pieces and stop pieces arranged in the guide rail part, the push block is inserted into the guide rail part, the clamping pieces are clamped with the convex pieces, and the limiting pieces are abutted with the stop pieces to limit the insertion of the push block; 2. The oil-supplementing pressure-releasing structure's atomizing cartridge according to claim 1, wherein The push block is slid out of the guide rail part, the clamping pieces are separated from the convex pieces, the clamping pieces are abutted with the stop pieces to limit the sliding of the push block.
3. The oil-supplementing pressure-releasing structure's atomizing cartridge according to claim 2, wherein The guide rail part is composed of a first guide rail arranged on the shell and a second guide rail arranged on the opposite side of the first guide rail, and the first guide rail and the second guide rail are both provided with convex pieces and stop pieces. The shell is further provided with a gas passing cavity, the shell is provided with an air inlet hole on the side, the air inlet hole is connected with the gas passing cavity, and the gas passing cavity is connected with the atomizing tube for air intake.
4. The oil-supplementing pressure-releasing structure's atomizing cartridge according to claim 3, wherein The bottom of the gas passing cavity is provided with a support part, the gas passing cavity is further provided with an oil suction part, and the oil suction part is arranged on the support part to divide the gas passing cavity into a gas passing part and an oil containing part.
5. The oil-supplementing pressure-releasing structure's atomizing cartridge according to claim 1, wherein The shell is further provided with a sensing air channel, one end of the sensing air channel is connected with the gas passing part, and the opposite end is connected with the outside for insertion of a sensing device.
6. The oil-supplementing pressure-releasing structure's atomizing cartridge according to claim 5, wherein The sensing air channel is connected with the gas passing part, and the height of the sensing air channel is higher than the arrangement height of the oil suction part.
7. The oil-supplementing pressure-relieving structure's atomizing cartridge according to claim 6, wherein The shell is further provided with an electrode sheet, the electrode sheet is electrically connected with the atomizing tube to receive electric energy and heat the atomizing tube for atomization.
8. The oil-supplementing pressure-relieving structure cartridge case according to claim 7, wherein The shell is further provided with a magnetic piece.
9. The oil-supplementing pressure-relieving structure's atomizing cartridge according to claim 8, wherein 10. The oil-supplementing pressure-relieving structure's atomizing cartridge according to claim 9, wherein