Oil supply bottle and atomizing equipment
By incorporating a rotatable first rotating component and a limiting protrusion in the oil supply bottle, the problem of oil leakage during disassembly of the oil supply bottle is solved, enabling reliable connection and separation between the oil supply bottle and the oil storage tank, thereby improving user experience and equipment cleanliness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-03-24
AI Technical Summary
When the oil supply bottle of existing atomizing devices is disassembled, the remaining oil can easily flow out from the oil supply channel, contaminating other parts of the atomizing device and resulting in a poor user experience.
An oil supply bottle was designed. By setting a rotatable first rotating component and a mounting base, and utilizing the cooperation of a limiting protrusion and an outlet, a reliable connection and separation between the oil supply bottle and the oil storage tank can be achieved, ensuring that the oil does not leak during disassembly.
This effectively prevents residual oil in the oil supply bottle from contaminating other components of the atomizing device, improving the user experience and the cleanliness of the equipment.
Smart Images

Figure CN224022887U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to atomization technical field, especially relate to a oil supply bottle and atomization equipment. BACKGROUND
[0002] The existing atomization equipment, form inside have oil storage cavity, then install atomization subassembly in oil storage cavity, atomization subassembly can adsorb the oil liquid in oil storage cavity, pass through setting power supply subassembly again, be used for power supply to atomization subassembly, make atomization subassembly heat, thereby convert the oil liquid that adsorbed into gas mist, gas mist flows out through the suction nozzle of atomization equipment, supply user to smoke.
[0003] In order to meet the large number and compliance requirements, more and more external hanging oil bottle type atomization equipment appears in the market, an oil supply bottle is hung outside the equipment main body, which is used to supply oil to the oil storage cavity of the equipment main body. During transportation, the oil supply bottle is packaged separately from the equipment main body to meet the compliance requirements. When in use, the oil supply bottle is installed on the equipment main body after being unpacked, which increases the amount of tobacco tar of the entire atomization equipment and realizes large number. However, the existing atomization equipment has an unreasonable structure design of the oil supply bottle, so that a small amount of residual oil liquid will flow out of the oil supply channel of the oil supply bottle during disassembly, which is easy to contaminate other parts of the atomization equipment, and the user experience is not high. Therefore, it is necessary to design a new type of atomization equipment, so that the oil liquid in the oil supply bottle will not leak out during disassembly of the oil supply bottle of the atomization equipment, so as not to contaminate other parts of the atomization equipment. SUMMARY
[0004] The main purpose of the utility model is to provide an oil supply bottle, which aims to solve the problem that a small amount of residual oil liquid will flow out of the oil supply channel of the oil supply bottle during disassembly of the oil supply bottle of the existing atomization equipment, which is easy to contaminate other parts of the atomization equipment.
[0005] To achieve the above purpose, the oil supply bottle provided by the utility model comprises:
[0006] An oil bottle main body is open at one end;
[0007] A sealing assembly is installed at the open end of the oil bottle main body to form an oil supply cavity, and the side wall of the sealing assembly is provided with an oil supply channel extending to communicate with the oil supply cavity;
[0008] An installation base is installed on the side of the sealing assembly away from the oil supply cavity, and the installation base is provided with an installation through hole and an oil outlet channel corresponding to the oil supply channel, and the hole wall of the installation through hole is provided with an installation notch extending radially along the installation through hole;
[0009] The first rotating member is provided with an oil passing channel penetrating through two sides thereof and a through hole, a hole wall of the through hole is provided with a through opening extending radially along the through hole, the first rotating member is rotatably installed between the mounting base and the sealing assembly, so that the first rotating member has a dismounting position and an oil passing position on a rotating track; in the dismounting position, the oil passing channel is misaligned with the oil supply channel, the through opening is in communication with the mounting gap, and the limiting protrusion of the oil storage compartment is sequentially inserted into the mounting gap and the through opening; in the oil passing position, two ends of the oil passing channel are in communication with the oil supply channel and the oil outlet channel respectively, the through opening is misaligned with the mounting gap, and a limiting step is formed between the opening wall of the through opening and the outer wall of the mounting through hole, so that the limiting protrusion of the oil storage compartment is clamped in the limiting step.
[0010] Wherein, the other end of the oil bottle body is provided with a suction nozzle, the suction nozzle is provided with a suction opening penetrating through two ends thereof, the oil bottle body is formed with a fog outlet column, the fog outlet column is provided with a fog outlet channel penetrating through two ends thereof, and two ends of the fog outlet channel are in communication with the suction opening and the mounting through hole respectively.
[0011] Optionally, a limiting ring is protruded from a side of the first rotating member facing the mounting base, an inner wall surface of the limiting ring is flush with an inner wall surface of the through hole, the limiting ring is inserted into the mounting through hole, and the limiting ring is provided with an avoiding opening corresponding to the position of the through opening.
[0012] Optionally, a limiting structure is arranged on a side of the mounting base facing the first rotating member, and the limiting structure is configured to be limitedly matched with the matching structure of the limiting protrusion when the first rotating member is in the oil passing position.
[0013] Optionally, an installation groove is arranged on a side of the mounting base facing the sealing assembly, a groove bottom of the installation groove is provided with the mounting through hole and the oil outlet channel, and the first rotating member is rotatably installed in the installation groove.
[0014] Optionally, a stroke limiting protrusion is arranged on a side groove wall of the installation groove, an outer peripheral wall of the first rotating member is formed with a stroke limiting recess, two end walls of an extension direction of the stroke limiting recess respectively include a first end wall and a second end wall, the stroke limiting protrusion is in contact with the first end wall when the first rotating member is in the dismounting position, and the stroke limiting protrusion is in contact with the second end wall when the first rotating member is in the oil passing position.
[0015] The utility model discloses still provide a kind of atomization equipment, including oil storage warehouse and above-mentioned oil supply bottle, the outer wall of the oil storage warehouse is formed with mounting boss, the outer peripheral wall of the mounting boss is protruded with the limiting protrusion including connecting portion and limiting portion, the connecting portion is connected with the outer peripheral wall of the mounting boss, the limiting portion is protruded on the side of the connecting portion away from the mounting boss, and it is located in the end of the connecting portion close to the end wall of the mounting boss, when the first rotating piece is in oil passage position, the connecting portion is inserted into the mounting through-hole and via hole, the limiting portion is partially inserted into the via hole and located on the step surface of the limiting step.
[0016] Optionally, the oil storage warehouse includes a warehouse body and a second rotating piece, the warehouse body is formed with an oil storage cavity and a first oil inlet channel communicated with the oil storage cavity, the second rotating piece is rotatably installed on the warehouse body, the second rotating piece is provided with a second oil inlet channel penetrating through both sides thereof, the second rotating piece has an oil inlet position and an oil sealing position on a rotating track, in the oil inlet position, both ends of the second oil inlet channel are respectively communicated with the first oil inlet channel and an oil outlet channel; in the oil sealing position, the second oil inlet channel is dislocated with the first oil inlet channel, and a side wall of the second rotating piece blocks the first oil inlet channel.
[0017] Optionally, the atomization equipment further includes a rotating drum, the rotating drum is sleeved on the warehouse body and can extend along the circumference of the warehouse body, one of the inner circumferential wall of the rotating drum and the outer circumferential wall of the second rotating piece is provided with a limiting groove, and the other is provided with a limiting protrusion, the limiting protrusion is adaptively inserted into the limiting groove, so that the rotating drum drives the second rotating piece to rotate.
[0018] Optionally, the oil storage cavity is installed with an atomization assembly, the atomization assembly is formed with an atomization cavity, the oil storage warehouse is formed with an air inlet channel communicated with the atomization cavity, the inner wall of the rotating drum is provided with an air inlet block, when the second rotating piece is located at the oil inlet position, the air inlet block is located at the side of the air inlet channel to open the air inlet channel; when the second rotating piece is located at the oil sealing position, the air inlet block blocks the channel opening of the air inlet channel.
[0019] Optionally, the atomization equipment further includes a battery compartment, the battery compartment is installed on the oil storage warehouse away from the oil supply bottle, the battery compartment includes a shell and a battery inside the shell, and the two ends of the rotating drum are respectively in contact with the end wall of the oil bottle body and the end wall of the shell.
[0020] The technical scheme of the utility model discloses, through setting up rotatable first rotator, and first rotator is provided with the mouth, and the installation base is provided with the installation gap, and the limiting protrusion of oil storage bin is inserted, so that the user can rotate the oil storage bin or oil supply bottle and make the limiting protrusion push first rotator to rotate to the dismounting position or oil passage position, thereby realizing that the oil supply bottle can supply oil for the oil storage bin after the installation of the oil supply bottle and the oil storage bin is finished, and a small amount of residual oil in the oil supply cavity does not leak out, thereby not polluting other components of the atomization equipment. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, the following will briefly introduce the drawing needed to be used in the embodiment or prior art description, and obviously, the drawing in the following description is only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to the structure shown in these drawings without creating labor.
[0022] Figure 1 It is the structural diagram of the oil supply bottle of the utility model;
[0023] Figure 2 It is the structural diagram of the installation base of the oil supply bottle of the utility model;
[0024] Figure 3 It is the structural diagram of the first rotator of the oil supply bottle of the utility model;
[0025] Figure 4 It is the structural diagram of the installation base and the first rotator of the oil supply bottle of the utility model in the dismounting position;
[0026] Figure 5 It is the structural diagram of the installation base and the first rotator of the oil supply bottle of the utility model in the oil passage position;
[0027] Figure 6 It is the sectional view structural diagram of the first rotator of the oil supply bottle of the utility model in the dismounting position;
[0028] Figure 7 It is the structural diagram of the atomization equipment of the utility model;
[0029] Figure 8 It is the structural diagram of the oil storage bin of the atomization equipment of the utility model;
[0030] Figure 9 It is the structural diagram of the rotating drum of the atomization equipment of the utility model;
[0031] Figure 10 It is a cross-section structure schematic view of the second rotating part of the atomization equipment at the oil inlet position.
[0032] Figure 11 It is a cross-section structure schematic view of the second rotating part of the atomization equipment at the oil sealing position.
[0033] Explanation of reference numerals:
[0034] Reference Name Reference Name 100 Oil supply bottle 101 Oil supply cavity 110 Oil bottle body 111 Suction nozzle 112 Suction port 113 Mist outlet column 114 Mist outlet channel 120 Sealing assembly 121 Oil supply channel 130 Mounting base 131 Mounting groove 132 Mounting through hole 133 Mounting notch 134 Oil outlet channel 135 Limiting structure 136 Stroke limiting protrusion 140 First rotating member 141 Through hole 142 Through port 143 Oil passing channel 144 Limiting ring 145 Stroke limiting recess 200 Oil storage compartment 210 Compartment body 211 Oil storage cavity 212 Mounting boss 213 Limiting protrusion 214 Connecting portion 215 Limiting portion 216 Cooperating structure 217 First oil inlet channel 218 Air inlet channel 220 Second rotating member 221 Second oil inlet channel 222 Limiting groove 230 Atomization assembly 231 Atomization cavity 300 Battery compartment 310 Housing 320 Battery 400 Rotating drum 410 Limiting protrusion 420 Air inlet stop block
[0035] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0037] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly.
[0038] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" in the full text includes three schemes, for example, A and / or B includes A technical solution, B technical solution, and A and B simultaneously meet the technical solution; in addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the person skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the scope of protection required by the present application.
[0039] The specific structure of the oil supply bottle will be mainly described below.
[0040] Reference Figures 1 to 11 In the embodiments of the present application, the oil supply bottle 100 is used to supply oil for the oil storage bin 200, and the oil supply bottle 100 comprises:
[0041] The oil bottle body 110 is open at one end;
[0042] The sealing assembly 120 is installed at the open end of the oil bottle body 110 to form an oil cavity 101 with it, and the side wall of the sealing assembly 120 is provided with an oil supply channel 121 extending to communicate with the oil cavity 101;
[0043] The mounting base 130 is installed on the side of the sealing assembly 120 away from the oil cavity 101, and is provided with a mounting through hole 132 and an oil outlet channel 134 corresponding to the oil supply channel 121, and the hole wall of the mounting through hole 132 is provided with a mounting notch 133 extending radially along the mounting through hole 132;
[0044] The first rotating part 140 is provided with an oil passing channel 143 and a through hole 141 extending through both sides, and the hole wall of the through hole 141 is provided with a passing notch 142 extending radially along the through hole 141, and the first rotating part 140 is rotatably installed between the mounting base 130 and the sealing assembly 120, so that the first rotating part 140 has a disassembly position and an oil passing position on the rotating track; in the disassembly position, the oil passing channel 143 is misaligned with the oil supply channel 121, and the passing notch 142 communicates with the mounting notch 133, so that the limiting protrusion 213 of the oil storage compartment 200 extends into the mounting notch 133 and the passing notch 142 in sequence; in the oil passing position, the two ends of the oil passing channel 143 respectively communicate with the oil supply channel 121 and the oil outlet channel 134, the passing notch 142 is misaligned with the mounting notch 133, and the wall of the passing notch 142 and the outer wall of the mounting through hole 132 form a limiting step therebetween, so that the limiting protrusion 213 of the oil storage compartment 200 is partially clamped in the limiting step;
[0045] Wherein, the other end of the oil bottle body 110 is provided with a suction nozzle 111, the suction nozzle 111 is provided with a suction port 112 extending through both ends, the oil bottle body 110 is formed with a mist outlet column 113, the mist outlet column 113 is provided with a mist outlet channel 114 extending through both ends, and the two ends of the mist outlet channel 114 respectively communicate with the suction port 112 and the mounting through hole 132.
[0046] Specifically, in this embodiment, since the first rotating component 140 is rotatably installed between the mounting base 130 and the sealing assembly 120, the user can operate the first rotating component 140 to position it in either the disassembly / removal position or the oil supply position. Before use, the oil supply bottle 100 can be operated to the disassembly / removal position. At this time, the oil passage 143 of the first rotating component 140 is misaligned with the oil supply channel 121, and other parts of the first rotating component 140 block the oil supply channel 121, preventing the oil in the oil supply chamber 101 from flowing out and ensuring the sealing of the oil supply bottle 100. Then, the oil supply bottle 100 and other parts of the atomizing device can be packaged and transported separately to meet compliance requirements.
[0047] When the first rotating component 140 is in the disassembly / assembly position, the through port 142 of the first rotating component 140 is connected to the mounting notch 133 of the mounting base 130. When the user needs to inhale the atomizing device, the user can align the limiting protrusion 213 of the oil storage tank 200 with and insert it into the mounting notch 133 and the through port 142, and then rotate the oil storage tank 200 or the oil supply bottle 100. In this way, the limiting protrusion 213 will push the first rotating component 140 to rotate until the first rotating component 140 is pushed to the oil-connecting position. At this time, the two ends of the oil passage 143 are connected to the oil supply passage 121 and the oil outlet passage 134 respectively, so that the oil in the oil supply chamber 101 can flow out sequentially through the oil supply passage 121, the oil passage 143 and the oil outlet passage 134. That is, at this time, as long as the oil storage tank 200 is opened, the oil supply bottle 100 can supply oil to the oil storage tank 200. At this time, the opening 142 and the installation notch 133 are misaligned, so that the opening wall of the opening 142 and the outer wall of the installation through hole 132 form a limiting step. The limiting protrusion 213 of the oil storage tank 200 is partially locked in the limiting step, so that the oil storage tank 200 will not separate from the oil supply bottle 100. After the oil storage tank 200 and the oil supply bottle 100 are installed, the mist outlet channel 114 is connected to the atomizing chamber 231 of the atomizing component 230. When the atomizing device is working, the atomizing component 230 is heated and produces mist, which flows out from the suction port 112 of the mouthpiece 111 through the mist outlet channel 114 for the user to inhale.
[0048] When the oil in the oil supply bottle 100 is almost used up and needs to be disassembled and replaced, the oil storage tank 200 or the oil supply bottle 100 is rotated in the reverse direction, causing the limiting protrusion 213 to push the first rotating component 140 to the disassembly / reassembly position. At this time, the through port 142 connects with the installation notch 133, so that the limiting protrusion 213 can be removed, thus separating the oil supply bottle 100 from the oil storage tank 200. During the process of the first rotating component 140 rotating to the disassembly / reassembly position, the oil passage 143 gradually misaligns with the oil supply passage 121. That is, the first rotating component 140 gradually blocks the oil supply passage 121, so that the small amount of remaining oil in the oil supply chamber 101 will not leak out, thus preventing contamination of other components of the atomizing equipment.
[0049] The utility model discloses a technical scheme, through setting up rotatable first rotator 140, and first rotator 140 is provided with the through hole 142, and installation base 130 is provided with the installation gap 133, and the limiting protrusion 213 of oil storage warehouse 200 is inserted, so that the user can rotate oil storage warehouse 200 or oil supply bottle 100 makes the limiting protrusion 213 push first rotator 140 and rotates to the dismounting position or oil supply position, thereby realizing that oil supply bottle 100 can supply oil for oil storage warehouse 200 after the installation of oil supply bottle 100 and oil storage warehouse 200 is finished, and the remaining oil in the oil supply cavity 101 does not leak out, thereby not polluting other components of the atomization equipment.
[0050] In some embodiments, the first rotator 140 is provided with a limiting ring 144 on the side facing the installation base 130, the inner wall surface of the limiting ring 144 is flush with the inner wall surface of the through hole 141, the limiting ring 144 extends into the installation through hole 132, and the limiting ring 144 is provided with a clearance at the position corresponding to the through hole 142. The limiting ring 144 has a limiting effect, so that the first rotator 140 rotates according to the preset trajectory, ensuring that the first rotator 140 can reliably function. There are many ways to limit the first rotator 140, for example, in other embodiments, the installation base 130 is provided with an installation groove 131 on the side facing the sealing assembly 120, the groove bottom of the installation groove 131 is provided with the installation through hole 132 and the oil outlet channel 134, and the first rotator 140 is rotatably installed in the installation groove 131. In this way, the rotation of the first rotator 140 is not hindered, and the degree of deviation of the first rotator 140 during rotation is limited, so that the first rotator 140 rotates according to the preset trajectory, ensuring that the first rotator 140 can reliably function.
[0051] In some embodiments, the installation base 130 is provided with a limiting structure 135 on the side facing the first rotating piece 140, and the limiting structure 135 is configured to be in limiting cooperation with the cooperating structure 216 of the limiting protrusion 213 when the first rotating piece 140 is in the oil feeding position. The limiting structure 135 and the cooperating structure 216 can be one protrusion and the other groove. By providing the limiting structure 135 and the cooperating structure 216, the relative stability of the first rotating piece 140 in the oil feeding position is improved, thereby improving the stability and smoothness of the oil supply bottle 100 supplying oil to the oil storage tank 200. When it is needed to operate the first rotating piece 140 to the disassembly position, the limiting cooperation of the limiting structure 135 and the cooperating structure 216 can be released by rotating the oil storage tank 200 or the oil supply bottle 100 with force, that is, the provision of the limiting structure 135 and the cooperating structure 216 will not hinder the disassembly of the oil supply bottle 100.
[0052] In some embodiments, the side groove wall of the installation groove 131 is provided with a stroke limiting protrusion 136, and the outer peripheral wall of the first rotating piece 140 is formed with a stroke limiting recess 145, and the two end walls of the extending direction of the stroke limiting recess 145 respectively include a first end wall and a second end wall. When the first rotating piece 140 is in the disassembly position, the stroke limiting protrusion 136 is in contact with the first end wall, and when the first rotating piece 140 is in the oil feeding position, the stroke limiting protrusion 136 is in contact with the second end wall. The provision of the stroke limiting protrusion 136 and the stroke limiting recess 145 limits the rotating stroke of the first rotating piece 140 and also has a positioning effect, which ensures that the user can accurately feel whether the first rotating piece 140 is rotated to the position, thereby improving the operation experience of the user.
[0053] The utility model discloses still propose a kind of atomization equipment, the atomization equipment includes oil storage 200 and above-mentioned oil supply bottle 100, the outer wall of the oil storage 200 is formed with mounting boss 212, the outer circumferential wall of the mounting boss 212 is protruded with the limiting protrusion 213 including connecting portion 214 and limiting portion 215, the connecting portion 214 is connected with the outer circumferential wall of the mounting boss 212, the limiting portion 215 is protruded on the side of the connecting portion 214 away from the mounting boss 212, and it is located at one end of the connecting portion 214 close to the end wall of the mounting boss 212, when the first rotating part 140 in oil passage position, the connecting portion 214 is inserted into the mounting through-hole 132 and via hole 141, the limiting portion 215 is partially inserted into the via mouth 142 and located on the step surface of the limiting step.This time, limiting portion 215 is limited in oil supply bottle 100, so that oil storage 200 cannot be separated from oil supply bottle 100.When rotating oil storage 200 or oil supply bottle 100, limiting portion 215 pushes the first rotating part 140 to rotate, when the first rotating part 140 rotates to dismounting position, mounting gap 133 and via mouth 142 are communicated, to release the limiting of limiting portion 215, so that limiting portion 215 can extend out of oil supply bottle 100, then oil supply bottle 100 and oil storage 200 can be separated, to finally realize the dismounting of oil supply bottle 100.
[0054] In some embodiments, the oil storage 200 includes a storage body and a second rotating part 220, the storage body is formed with an oil storage cavity 211 and a first oil inlet channel 217 communicating with the oil storage cavity 211, the second rotating part 220 is rotatably installed on the storage body, the second rotating part 220 is provided with a second oil inlet channel 221 penetrating through both sides thereof, the second rotating part 220 has an oil inlet position and an oil sealing position on the rotation track, in the oil inlet position, both ends of the second oil inlet channel 221 respectively communicate with the first oil inlet channel 217 and the oil outlet channel 134; in the oil sealing position, the second oil inlet channel 221 is out of position with the first oil inlet channel 217, and the side wall of the second rotating part 220 blocks the first oil inlet channel 217. In this embodiment, after the installation of the oil storage 200 and the oil supply bottle 100 is completed, the second rotating part 220 can be rotated to control the opening or closing of the oil inlet channel. When the second rotating part 220 rotates to the oil inlet position, both ends of the second oil inlet channel 221 respectively communicate with the first oil inlet channel 217 and the oil outlet channel 134, at this time, the oil inlet channel is opened, and the oil in the oil supply cavity 101 can flow into the oil storage cavity 211 through the oil supply channel 121, the oil passing channel 143, the oil outlet channel 134, the second oil inlet channel 221 and the first oil inlet channel 217 in sequence to supply oil to the oil storage cavity 211; when the second rotating part 220 rotates to the oil sealing position, the second oil inlet channel 221 is out of position with the first oil inlet channel 217, thereby closing the oil inlet channel, and the oil supply cavity 101 stops supplying oil to the oil storage cavity 211.
[0055] For ease of operation, in some embodiments, the atomization device further comprises a rotating drum 400 sleeved on the cartridge body and extending along the circumference of the cartridge body, one of the inner circumferential wall of the rotating drum 400 and the outer circumferential wall of the second rotating member 220 is provided with a limiting groove 222, and the other is provided with a limiting protrusion 410, the limiting protrusion 410 and the limiting groove 222 are matched and combined, so that the rotating drum 400 drives the second rotating member 220 to rotate. That is, by rotating the rotating drum 400, the second rotating member 220 can be driven to rotate, which is convenient for user operation.
[0056] Further, the oil storage cavity 211 is installed with an atomization assembly 230, the atomization assembly 230 is formed with an atomization cavity 231, the oil storage cartridge 200 is formed with an air inlet channel 218 communicating with the atomization cavity 231, the inner wall of the rotating drum 400 is provided with an air inlet block 420, when the second rotating member 220 is located at the oil inlet position, the air inlet block 420 is located at the side of the air inlet channel 218 to open the air inlet channel 218; when the second rotating member 220 is located at the oil sealing position, the air inlet block 420 blocks the channel opening of the air inlet channel 218. That is, when the oil supply bottle 100 supplies oil to the oil storage cavity 211, the atomization cavity 231 can inhale air, the user can inhale the atomization device to make the microphone control the battery 320 to supply power to the atomization assembly 230, and the atomization assembly 230 is heated to generate aerosol for the user to inhale. When the oil supply bottle 100 stops supplying oil to the oil storage cavity 211, the air inlet block blocks the channel opening of the air inlet channel 218, which blocks the microphone and the atomization cavity 231, so that the microphone cannot be sensed, and the battery 320 cannot control the power supply to the atomization assembly 230, so that the atomization assembly 230 cannot be heated, avoiding dry burning phenomenon.
[0057] In some embodiments, the atomization device further comprises a battery cartridge 300 installed at the end of the oil storage cartridge 200 away from the oil supply bottle 100, the battery cartridge 300 comprises an outer shell 310 and a battery 320 inside the outer shell 310, and the two ends of the rotating drum 400 are in contact with the end wall of the oil bottle body 110 and the end wall of the outer shell 310, respectively. In this way, the connection between the oil storage cartridge 200 and the oil storage cartridge 200 is hidden in the mounting cavity, improving the external beauty of the atomization device. In this embodiment, the oil supply bottle 100, the oil storage cartridge 200 and the battery 320 are arranged in an upper-middle-lower manner, the structure is compact, the appearance of the atomization device is improved, and the oil in the oil supply bottle 100 can flow into the oil storage cavity 211 by gravity, which is convenient for oil supply.
[0058] The above merely describes preferred embodiments of the present application, and is not intended to limit the patent scope of the present application, and any equivalent structural transformation or direct / indirect application in other related technical fields under the inventive concept of the present application, as described in the present application specification and drawings, is included in the patent protection scope of the present application.
Claims
1. An oil supply bottle for supplying oil to an oil storage tank, characterized in that, The oil supply bottle includes: The main body of the oil bottle is open at one end; A sealing assembly is installed at the open end of the oil bottle body to enclose and form an oil supply chamber therewith, and the side wall of the sealing assembly is provided with an oil supply channel extending to communicate with the oil supply chamber. The mounting base is installed on the side of the sealing assembly away from the oil supply chamber. The mounting base is provided with a mounting through hole and an oil outlet channel corresponding to the oil supply channel. The wall of the mounting through hole is provided with a mounting notch extending radially along the mounting through hole. The first rotating component has an oil passage and a through hole extending through both sides. The wall of the through hole has an opening extending radially along the through hole. The first rotating component is rotatably mounted between the mounting base and the sealing assembly, so that the first rotating component has a disassembly position and an oil-connecting position on the rotation trajectory. In the disassembly position, the oil passage is misaligned with the oil supply passage, and the opening communicates with the mounting notch, so that the limiting protrusion of the oil storage tank can sequentially extend into the mounting notch and the opening. In the oil-connecting position, the two ends of the oil passage are respectively connected to the oil supply passage and the oil outlet passage, the opening is misaligned with the mounting notch, and the opening wall of the opening and the outer wall of the mounting through hole form a limiting step, so that the limiting protrusion of the oil storage tank can be engaged in the limiting step. The oil bottle body has a suction nozzle at one end, the suction nozzle has a suction port that extends through both ends, the oil bottle body forms a mist column, the mist column has a mist outlet channel that extends through both ends, and the two ends of the mist outlet channel are respectively connected to the suction port and the mounting through hole.
2. The oil supply bottle as described in claim 1, characterized in that, The first rotating component has a limiting ring protruding on the side facing the mounting base. The inner wall surface of the limiting ring is flush with the inner wall surface of the through hole. The limiting ring extends into the mounting through hole. The limiting ring has a clearance opening corresponding to the position of the through hole.
3. The oil supply bottle as described in claim 1, characterized in that, The mounting base has a limiting structure on the side facing the first rotating component. When the first rotating component is in the oil-filled position, the limiting structure is configured to limit and cooperate with the matching structure of the limiting protrusion.
4. The oil supply bottle as described in claim 1, characterized in that, The mounting base has a mounting groove on the side facing the sealing component. The bottom of the mounting groove has the mounting through hole and the oil outlet channel. The first rotating component is rotatably mounted in the mounting groove.
5. The oil supply bottle as described in claim 4, characterized in that, The side wall of the mounting groove is provided with a travel limiting protrusion, and the outer peripheral wall of the first rotating component is formed with a travel limiting recess. The two end walls of the travel limiting recess extending in the direction of extension respectively include a first end wall and a second end wall. When the first rotating component is in the disassembly / assembly position, the travel limiting protrusion contacts the first end wall. When the first rotating component is in the oil-connected position, the travel limiting protrusion contacts the second end wall.
6. An atomizing device, characterized in that, The device includes an oil storage tank and an oil supply bottle as described in any one of claims 1 to 5. The outer wall of the oil storage tank is formed with a mounting boss. The outer peripheral wall of the mounting boss is provided with a limiting protrusion including a connecting portion and a limiting portion. The connecting portion is connected to the outer peripheral wall of the mounting boss. The limiting portion protrudes from the side of the connecting portion away from the mounting boss and is located at the end of the connecting portion near the end wall of the mounting boss. When the first rotating member is in the oil-through position, the connecting portion extends into the mounting through hole and the through hole, and the limiting portion partially extends into the through hole and is located on the step surface of the limiting step.
7. The atomizing device as described in claim 6, characterized in that, The oil storage tank includes a main body and a second rotating component. The main body forms an oil storage cavity and a first oil inlet channel communicating with the oil storage cavity. The second rotating component is rotatably mounted on the main body. The second rotating component has a second oil inlet channel passing through both sides of it. The second rotating component has an oil inlet position and an oil sealing position on its rotation trajectory. In the oil inlet position, the two ends of the second oil inlet channel are respectively connected to the first oil inlet channel and the oil outlet channel. In the oil sealing position, the second oil inlet channel is misaligned with the first oil inlet channel, and the side wall of the second rotating component blocks the first oil inlet channel.
8. The atomizing device as described in claim 7, characterized in that, The atomizing device also includes a rotating cylinder, which is sleeved on the chamber body and can extend circumferentially along the chamber body. One of the inner peripheral wall of the rotating cylinder and the outer peripheral wall of the second rotating member is provided with a limiting groove, and the other is provided with a limiting protrusion. The limiting protrusion is adapted to fit into the limiting groove so that the rotating cylinder drives the second rotating member to rotate.
9. The atomizing device as described in claim 8, characterized in that, The oil storage chamber is equipped with an atomizing component, which forms an atomizing cavity. The oil storage tank has an air intake channel communicating with the atomizing cavity. The inner wall of the rotating cylinder is provided with an air intake baffle. When the second rotating component is in the oil inlet position, the air intake baffle is located to the side of the air intake channel to open the air intake channel. When the second rotating component is in the oil sealing position, the air intake baffle blocks the opening of the air intake channel.
10. The atomizing device as described in claim 8, characterized in that, The atomizing device also includes a battery compartment, which is installed at the end of the oil storage tank away from the oil supply bottle. The battery compartment includes an outer shell and a battery inside the outer shell. The two ends of the rotating cylinder are in contact with the end wall of the oil bottle body and the end wall of the outer shell, respectively.