Atomizing equipment convenient for oil core separation
By using a rotatable nozzle to connect to the atomizing tube, the problem of oil leakage after the sealing rod is removed before use is solved, achieving separation of the oil core and improving the sealing performance and user experience of the device.
Patent Information
- Application Number
- CN202422888291.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-11-25
AI Technical Summary
In existing atomizing devices, after the sealing rod is removed before use, the oil in the oil storage chamber is prone to leaking out due to excessive air pressure, resulting in oil leakage.
By designing a rotatable nozzle and atomizing tube connection method, the nozzle drives the atomizing tube to switch between the oil-sealing position and the oil-inlet position, thereby achieving oil core separation and preventing oil leakage.
This effectively avoids oil leakage problems before and after use of the atomizing equipment, improving the sealing performance of the equipment and the user experience.
Smart Images

Figure CN223667268U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of atomization technology, and in particular to an atomization device that facilitates oil-core separation. Background Technology
[0002] Atomizing devices typically consist of an atomizing unit and a power supply unit for powering the atomizing unit. The atomizing unit usually comprises a mouthpiece and an oil reservoir. An atomizing tube with an oil inlet is installed inside the oil reservoir. The atomizing coil inside the atomizing tube communicates with the oil reservoir through the oil inlet, allowing it to absorb the oil in the reservoir. During operation, the power supply unit powers the atomizing coil, causing it to convert the absorbed liquid into a mist. The mist flows out through the mouthpiece for the user to inhale. Existing atomizing devices generally include a sealing rod that fits onto the outer wall of the atomizing tube to seal the oil inlet. This prevents oil from entering the atomizing coil from the reservoir before the device is used, thus preventing leakage.
[0003] However, when a user uses it for the first time, the sealing rod will be pulled out, and the oil inlet will remain open thereafter. The oil in the oil storage chamber can flow into the atomizer core at any time. As a result, if the external environment is too hot, the air pressure in the oil storage chamber may become too high, causing the e-liquid to seep out of the atomizer core, resulting in oil leakage. Utility Model Content
[0004] The main purpose of this invention is to provide an atomizing device that facilitates oil-core separation, aiming to solve the problem of easy oil leakage in existing atomizing devices.
[0005] To achieve the above objectives, the atomizing device for easy oil-core separation proposed in this utility model includes:
[0006] The first outer casing has a movable hole at one end and is open at the other end;
[0007] A sealing seat is installed at the open end of the first housing to form an oil storage cavity with the first housing. The sealing seat has an insertion hole on the side facing the oil storage cavity. The inner wall of the insertion hole has an oil passage groove extending radially along the insertion hole. The oil passage groove communicates with the oil storage cavity.
[0008] The suction nozzle is rotatably mounted in the movable hole;
[0009] The atomization assembly comprises an atomization tube and an atomization core arranged inside the atomization tube. An outer wall of the atomization tube is provided with an oil inlet hole extending to the inside of the atomization tube. One end of the atomization tube is movably inserted into the insertion hole, and the other end is fixedly connected to the suction nozzle, so that the atomization tube has an oil sealing position and an oil inlet position under the driving of the suction nozzle. In the oil sealing position, the oil inlet hole is blocked by the hole wall of the movable hole. In the oil inlet position, the oil inlet hole is in communication with the oil passage.
[0010] The second shell is open at one end facing the first shell to form a mounting cavity together with the first shell and the sealing seat. The battery is transversely arranged in the mounting cavity.
[0011] Optionally, the suction nozzle comprises a suction part and a mounting part connected together. The mounting part is rotatably inserted into the movable hole. The suction part extends out of the movable hole.
[0012] Optionally, the suction part and the mounting part form a mounting cavity for the atomization tube to extend into. An end of the suction part away from the mounting part extends into the mounting cavity to form a mist outlet column extending into the atomization tube. The mist outlet column is provided with a mist outlet channel penetrating through both ends thereof. A sealing plug is arranged between the outer peripheral wall of the mist outlet column and the inner wall of the atomization tube.
[0013] The inner wall of the mounting cavity forms a limiting step and at least two anti-rotation protrusions. The limiting step extends along the circumference of the suction nozzle. The anti-rotation protrusions are located on the side of the limiting step facing the sealing seat. An anti-rotation gap is formed between two adjacent anti-rotation protrusions. An anti-rotation extension arm of the atomization tube away from the sealing seat extends in a direction away from the sealing seat. The anti-rotation extension arm is inserted into the anti-rotation gap, and an end of the anti-rotation extension arm away from the atomization tube abuts against the step face of the limiting step.
[0014] Optionally, the first shell forms an opening column extending inwardly. The movable hole is arranged in the opening column and penetrates through both ends of the opening column. The inner end wall of the opening column is provided with a stroke limiting groove extending along the circumference of the opening column. The stroke limiting groove is in communication with the movable hole.
[0015] An end of the mounting part away from the suction part is provided with a stroke limiting protrusion protruding radially along the mounting part. The stroke limiting protrusion extends into the stroke limiting groove and can reciprocally move along the extension direction of the stroke limiting groove.
[0016] Optionally, both ends of the stroke limiting groove in the length direction comprise a first end and a second end. When the stroke limiting protrusion moves to the first end, the atomization tube is in the oil sealing position. When the stroke limiting protrusion moves to the second end, the atomization tube is in the oil inlet position.
[0017] Optionally, the groove bottom of the stroke limiting groove is provided with a first limiting hole corresponding to the first end and a second limiting hole corresponding to the second end, and the stroke limiting protrusion is provided with a limiting protrusion on the side facing the groove bottom of the stroke limiting groove, the limiting protrusion is inserted into the first limiting hole when the stroke limiting protrusion moves to the first end, and the limiting protrusion is inserted into the second limiting hole when the stroke limiting protrusion moves to the second end.
[0018] The groove bottom of the stroke limiting groove is provided with a first limiting protrusion corresponding to the first end and a second limiting protrusion corresponding to the second end, and the stroke limiting protrusion is provided with a limiting hole on the side facing the groove bottom of the stroke limiting groove, the first limiting protrusion is inserted into the limiting hole when the stroke limiting protrusion moves to the first end, and the second limiting protrusion is inserted into the limiting hole when the stroke limiting protrusion moves to the second end.
[0019] Optionally, the movable hole comprises a first hole section and a second hole section in sequence in the hole depth direction, the inner diameter of the second hole section is greater than the inner diameter of the first hole section, so as to form a limiting step at the connection of the first hole section and the second hole section, the outer diameter of the mounting portion is greater than the outer diameter of the suction portion, and one end of the mounting portion connected with the suction portion abuts against the step surface of the limiting step.
[0020] Optionally, the outer wall of the mounting portion is sleeved with an elastic sealing ring, and the elastic sealing ring abuts against the hole wall of the movable hole.
[0021] Optionally, the atomization assembly further comprises a base, the base is installed at one end of the atomization tube away from the suction nozzle, and the side of the base away from the oil storage cavity comprises an electricity connection area for electrically connecting or contacting with the lead of the atomization core.
[0022] The atomization equipment facilitating separation of the oil core further comprises a connected circuit board and a power supply conductive piece, the power supply conductive piece is located on the side of the base away from the oil storage cavity, the power supply conductive piece is away from the electricity connection area when the atomization tube is in the oil sealing position, and the power supply conductive piece contacts or abuts against the electricity connection area when the atomization tube is in the oil inlet position.
[0023] Optionally, the power supply conductive piece is a spring needle, and / or the end face of the power supply conductive piece facing the base is a convex arc face.
[0024] The technical solution of this utility model connects or limits the atomizing tube to the mouthpiece, and makes the mouthpiece rotatable. Rotating the mouthpiece drives the atomizing tube to rotate, thereby controlling the atomizing tube's position in either the oil-sealing or oil-inlet position. This allows the atomizing device to repeatedly separate the oil from the coil. Thus, whether before use (e.g., during transportation) or after use, users can easily separate the oil from the coil by rotating the mouthpiece to prevent leakage, improving the sealing of the atomizing device and enhancing the user experience. Attached Figure Description
[0025] 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.
[0026] Figure 1 This is a schematic diagram of the atomizing tube of the atomizing device of the present invention, which facilitates oil core separation, in the oil-sealing position.
[0027] Figure 2 This is a cross-sectional view of the atomizing tube of the atomizing device for easy oil-core separation of this utility model when it is in the oil-sealing position.
[0028] Figure 3 This is a schematic diagram of the atomizing tube of the atomizing device of the present invention, which facilitates oil-core separation, in the oil inlet position.
[0029] Figure 4 This is a cross-sectional view of the atomizing tube of the atomizing device for easy oil-core separation according to the present invention at the oil inlet position.
[0030] Figure 5 This is a schematic diagram of the structure of the first outer shell of the atomizing device for easy oil-core separation according to the present invention;
[0031] Figure 6 This is a schematic diagram of the nozzle structure of the atomizing device of this utility model that facilitates oil-core separation;
[0032] Figure 7 This is a schematic diagram of the atomizing component of the atomizing device that facilitates oil-core separation according to this utility model.
[0033] Explanation of icon numbers:
[0034]
[0035]
[0036] The purposes, functional features and advantages of the utility model will be further explained in combination with embodiments and with reference to the drawings. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0038] It should be noted that all the directionality indications (such as up, down, left, right, front, back, etc.) in the embodiments of the utility model are only used to explain the relative position relationship, movement condition, etc. between the components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directionality indications also change accordingly.
[0039] In addition, the description of "first", "second" and the like in the utility model is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" in the full text includes three schemes, taking A and / or B as an example, including A technical scheme, B technical scheme, and A and B simultaneously satisfying the technical scheme. In addition, the technical schemes of various embodiments can be combined with each other, but it must be based on the realization of those skilled in the art, and when the combination of technical schemes appears contradictory or unachievable, it should be considered that the combination of technical schemes does not exist, and is not within the protection scope required by the utility model.
[0040] The specific structure of the atomizing equipment facilitating oil core separation will be mainly described below.
[0041] Referring to Figures 1 to 7 In the embodiments of the utility model, the atomizing equipment facilitating oil core separation comprises:
[0042] The first shell 100 is provided with a movable hole 111 at one end and is open at the other end;
[0043] The sealing seat 200 is installed at the open end of the first shell 100 to form the oil storage cavity 101 together with the first shell 100, a plug-in hole 210 is formed on the side of the sealing seat 200 facing the oil storage cavity 101, an oil passing groove 211 extending radially along the plug-in hole 210 is arranged on the inner wall of the plug-in hole 210, and the oil passing groove 211 is in communication with the oil storage cavity 101;
[0044] The suction nozzle 300 is rotatably installed in the movable hole 111.
[0045] The atomization assembly comprises an atomization tube 410 and an atomization core 420 arranged inside the atomization tube 410. An outer wall of the atomization tube 410 is provided with an oil inlet hole 411 extending to the inside of the atomization tube 410. One end of the atomization tube 410 is movably inserted into the insertion hole 210, and the other end is fixedly connected with the suction nozzle 300, so that the atomization tube 410 has an oil sealing position and an oil inlet position under the driving of the suction nozzle 300. When the atomization tube 410 is in the oil sealing position, the oil inlet hole 411 is blocked by the hole wall of the movable hole 111. When the atomization tube 410 is in the oil inlet position, the oil inlet hole 411 is in communication with the oil groove 211.
[0046] The second shell 120 is open at one end facing the first shell 100 to form a mounting cavity together with the first shell 100 and the sealing seat 200. The battery 600 is horizontally arranged in the mounting cavity.
[0047] Specifically, in the embodiment, the shell of the atomization device is formed by splicing the first shell 100 and the second shell 120, which is beneficial to the internal components of the atomization device, such as the sealing seat 200, the atomization assembly, and the battery 600. Since the movable hole 111 is arranged at one end of the first shell 100, the suction nozzle 300 is rotatably installed in the movable hole 111, and the atomization tube 410 is fixedly connected with the suction nozzle 300, so that the user can drive the atomization tube 410 to the oil sealing position or the oil inlet position by rotating the suction nozzle 300. It can be explained that the atomization tube 410 and the suction nozzle 300 are limited and fixed relative to each other, so as not to rotate relative to each other, such as being inserted, sleeved, clamped, etc.
[0048] When the atomization device is not needed, the atomization tube 410 can be operated to the oil sealing position by rotating the suction nozzle 300, so that the oil inlet hole 411 of the atomization tube 410 is blocked by the hole wall of the movable hole 111. In this way, the oil in the oil storage cavity 101 cannot enter the oil inlet hole 411, so as not to be adsorbed to the atomization core 420, so as to achieve oil core separation, to avoid the phenomenon of oil leakage caused by the oil seeping out of the atomization core 420.
[0049] When the user needs to suck the atomization device, the atomization tube 410 is operated to the oil inlet position by rotating the suction nozzle 300 again, so that the oil inlet hole 411 of the atomization tube 410 communicates with the oil passing groove 211, and thus the oil in the oil storage cavity 101 can enter the inside of the atomization tube 410 through the oil passing groove 211 and the oil inlet hole 411 in turn and be adsorbed to the atomization core 420, realizing the communication between the atomization core 420 and the oil storage cavity 101, so that the liquid adsorbed by the atomization core 420 is converted into aerosol for the user to suck under the power supply of the battery 600. Wherein, the battery 600 is transversely arranged in the mounting cavity to shorten the length of the whole atomization device, so that the whole atomization device is relatively uniform.
[0050] The technical scheme of the utility model, through connecting or limiting cooperation of atomization tube 410 and suction nozzle 300, and setting suction nozzle 300 as rotatable, can drive atomization tube 410 to rotate by rotating suction nozzle 300, thereby controlling atomization tube 410 to be located at oil sealing position or oil inlet position. In this way, the oil core separation of the atomization device can be repeatedly realized, so that whether before the use of the atomization device, such as the transportation link, or the atomization device has been used and sucked, the user can realize the oil core separation by rotating the suction nozzle 300 to avoid oil leakage, improve the sealing performance of the atomization device, and thus improve the user experience.
[0051] Regarding the rotatable mounting mode of the suction nozzle 300, in some embodiments, the suction nozzle 300 includes a suction part 310 and a mounting part 320 connected thereto, the mounting part 320 is rotatably inserted into the movable hole 111, and the suction part 310 extends outside the movable hole 111. The suction part 310 is used for the user to suck, and in actual operation, the suction nozzle 300 can be rotated by rotating the suction part 310.
[0052] Regarding the mounting mode of the atomizing pipe 410 and the suction nozzle 300, in some embodiments, the suction part 310 and the mounting part 320 enclose a mounting cavity for the atomizing pipe 410 to extend into, the end of the suction part 310 away from the mounting part 320 extends into the mounting cavity and forms a mist outlet column 330 extending into the atomizing pipe 410, the mist outlet column 330 is provided with a mist outlet channel 331 penetrating through both ends thereof, and a sealing plug 430 is mounted between the outer circumferential wall of the mist outlet column 330 and the inner wall of the atomizing pipe 410; the inner wall of the mounting cavity forms a limiting step 340 extending along the circumference of the suction nozzle 300 and at least two anti-rotation protrusions 350 located on the side of the limiting step 340 facing the sealing seat 200, a anti-rotation gap 351 is formed between two adjacent anti-rotation protrusions 350, and an anti-rotation extension arm 412 of the atomizing pipe 410 extends away from the sealing seat 200 and is inserted into the anti-rotation gap 351, with the end of the anti-rotation extension arm 412 away from the atomizing pipe 410 abutting against the step face of the limiting step 340. In this embodiment, the sealing plug 430 ensures the sealing between the atomizing pipe 410 and the suction nozzle 300, thereby avoiding oil leakage while ensuring that the aerosol flows out along the preset path, improving the mist outlet effect, and the friction between the sealing plug 430 and the atomizing pipe 410 and the mist outlet column 330 respectively helps to prevent the atomizing pipe 410 from rotating relative to the suction nozzle 300. The limiting step 340 allows the two ends of the atomizing pipe 410 to be clamped between the sealing seat 200 and the suction nozzle 300, improving the mounting stability of the atomizing pipe 410. The anti-rotation protrusions 350 and the anti-rotation extension arm 412 limit the rotation of the atomizing pipe 410 relative to the suction nozzle 300, thereby improving the reliability of the suction nozzle 300 driving the atomizing pipe 410 to rotate.
[0053] In some embodiments, the first housing 100 is formed with an opening column 110 extending inwardly, the movable hole 111 is formed in the opening column 110 and penetrates through the inner and outer ends of the opening column 110, the inner end wall of the opening column 110 is formed with a stroke limiting groove 113 extending along the circumference of the opening column 110, and the stroke limiting groove 113 communicates with the movable hole 111; the end of the mounting part 320 away from the suction part 310 is provided with a stroke limiting protrusion 321 protruding radially along the mounting part 320, the stroke limiting protrusion 321 extends into the stroke limiting groove 113 and can reciprocate along the extension direction of the stroke limiting groove 113. In this embodiment, the stroke limiting groove 113 and the stroke limiting protrusion 321 limit the rotation stroke of the suction nozzle 300 relative to the housing, avoid excessive rotation of the suction nozzle 300, and improve the relative stability of the suction nozzle 300.
[0054] Further, the two ends of the stroke limiting groove 113 in the length direction include a first end and a second end. When the stroke limiting protrusion 321 moves to the first end, the atomizing tube 410 is in the oil sealing position. When the stroke limiting protrusion 321 moves to the second end, the atomizing tube 410 is in the oil feeding position. In this way, the user can feel whether the rotation is in place, so that the user can quickly rotate the suction nozzle 300 to the oil sealing position or the oil feeding position.
[0055] Further, in some embodiments, the groove bottom of the stroke limiting groove 113 is provided with a first limiting hole 114 corresponding to the first end and a second limiting hole 115 corresponding to the second end. The side of the stroke limiting protrusion 321 facing the groove bottom of the stroke limiting groove 113 is provided with a limiting protrusion 322. When the stroke limiting protrusion 321 moves to the first end, the limiting protrusion 322 is inserted into the first limiting hole 114. When the stroke limiting protrusion 321 moves to the second end, the limiting protrusion 322 is inserted into the second limiting hole 115. In this way, it is ensured that the suction nozzle 300 cannot be easily rotated when the atomizing tube 410 is in the oil sealing position and the oil feeding position, so that the atomizing tube 410 can be relatively stably positioned in the oil sealing position and the oil feeding position, thereby improving the stability and reliability of the atomizing device as a whole. When it is necessary to switch the position of the atomizing tube 410, the suction nozzle 300 can be rotated by force. In other embodiments, the groove bottom of the stroke limiting groove 113 is provided with a first limiting protrusion corresponding to the first end and a second limiting protrusion corresponding to the second end. The side of the stroke limiting protrusion 321 facing the groove bottom of the stroke limiting groove 113 is recessed to form a limiting hole. When the stroke limiting protrusion 321 moves to the first end, the first limiting protrusion is inserted into the limiting hole. When the stroke limiting protrusion 321 moves to the second end, the second limiting protrusion is inserted into the limiting hole. Similarly, such a configuration can also ensure that the suction nozzle 300 cannot be easily rotated when the atomizing tube 410 is in the oil sealing position and the oil feeding position, so that the atomizing tube 410 can be relatively stably positioned in the oil sealing position and the oil feeding position, thereby improving the stability and reliability of the atomizing device.
[0056] In some embodiments, the movable hole 111 includes a first hole section and a second hole section in the hole depth direction in sequence. The inner diameter of the second hole section is greater than the inner diameter of the first hole section, so as to form a limiting step 112 at the connection between the first hole section and the second hole section. The outer diameter of the mounting portion 320 is greater than the outer diameter of the suction portion 310. The end of the mounting portion 320 connected to the suction portion 310 abuts against the step surface of the limiting step 112. In this way, the mounting portion 320 is limited in the shell, thereby avoiding the suction nozzle 300 from falling off the shell and improving the stability of the mounting of the suction nozzle 300.
[0057] In some embodiments, the outer wall of the mounting portion 320 is sleeved with an elastic sealing ring 323, which abuts against the hole wall of the movable hole 111. The elastic sealing ring 323 plays a sealing role, thereby improving the sealing performance of the oil storage cavity 101 and preventing oil leakage. In order to improve the mounting stability of the elastic sealing ring 323, a limiting installation groove 324 can be formed on the outer wall of the mounting portion 320, and the elastic sealing ring 323 is sleeved on the groove bottom of the limiting installation groove 324, so that the elastic sealing ring 323 is limited by the limiting installation groove 324, thereby improving the mounting stability of the elastic sealing ring 323 and improving the sealing effect of the elastic sealing ring 323.
[0058] In some embodiments, the atomization assembly further includes a base 440 mounted on the end of the atomization tube 410 away from the suction nozzle 300, and the side of the base 440 away from the oil storage cavity 101 includes an electricity connection area for electrically connecting or contacting the pin of the atomization core 420. The atomization device facilitating oil core separation further includes a connected circuit board 500 and a power supply conductive piece 510, the power supply conductive piece 510 is located on the side of the base 440 away from the oil storage cavity 101, when the atomization tube 410 is in the oil sealing position, the power supply conductive piece 510 is away from the electricity connection area, and when the atomization tube 410 is in the oil inlet position, the power supply conductive piece 510 contacts or abuts against the electricity connection area. In this way, the power supply device of the atomization device does not supply power to the atomization core 420 when the oil core is separated, thereby avoiding abnormal conditions such as dry burning of the atomization core 420 and improving the safety of the atomization device.
[0059] Further, the power supply conductive piece 510 is a spring needle. Since the spring needle has elasticity, the power supply conductive piece 510 can be tightly abutted against the electricity connection area while avoiding the spring needle from interfering with the rotation of the atomization assembly. There are many ways to avoid the power supply conductive piece 510 from interfering with the rotation of the atomization assembly, such as, in another embodiment, the end surface of the power supply conductive piece 510 facing the base 440 is a convex arc surface.
[0060] The above description is only preferred embodiments of the present application, and does not limit the patent scope of the present application. Any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application.
Claims
1. An atomizing apparatus facilitating separation of an oil wick, characterized by, The utility model relates to an oil atomizing device, including: First shell, one end is equipped with movable hole, the other end is open; Sealing seat, install in the open one end of first shell to with first shell enclosed formation has oil storage cavity, the side of sealing seat face to the oil storage cavity is equipped with the plug-in hole, the inner wall of plug-in hole is equipped with along the oil passage groove of plug-in hole radial extension, oil passage groove with oil storage cavity intercommunication; Suction nozzle, rotation is installed in movable hole; Atomization subassembly, including atomization tube and be equipped with in atomization tube inside atomization core, the outer wall of atomization tube is equipped with extend to the oil inlet hole of communication atomization tube inside, atomization tube one end movable and insert in plug-in hole, the other end with suction nozzle fixed cooperation, with the driving of suction nozzle, atomization tube has oil seal position and oil inlet position in oil seal position, oil inlet hole is blocked by hole wall of movable hole, in oil inlet position, oil inlet hole with oil passage groove intercommunication; Second shell and battery, the second shell face to the open one end of first shell, with first shell and sealing seat enclosed formation has installation cavity, the battery is transversely in installation cavity.
2. The atomizing apparatus for facilitating separation of the oil wick according to claim 1, wherein The suction nozzle includes a suction part and a mounting part connected thereto, the mounting part is rotatably inserted into the movable hole, and the suction part extends out of the movable hole.
3. The atomizing apparatus for facilitating separation of the oil wick according to claim 2, wherein The suction part and the mounting part enclose a mounting cavity for the atomization tube to extend into, an end of the suction part away from the mounting part extends into the mounting cavity to form a mist outlet column partially extending into the atomization tube, the mist outlet column is provided with a mist outlet channel penetrating through both ends thereof, and a sealing plug is mounted between the outer peripheral wall of the mist outlet column and the inner wall of the atomization tube; The inner wall of the mounting cavity forms a limiting step and at least two anti-rotation protrusions, the limiting step extends along the circumference of the suction nozzle, the anti-rotation protrusions are located on the side of the limiting step facing the sealing seat, an anti-rotation gap is formed between two adjacent anti-rotation protrusions, an anti-rotation extension arm extends from an end of the atomization tube away from the sealing seat in a direction away from the sealing seat, the anti-rotation extension arm is inserted into the anti-rotation gap, and an end of the anti-rotation extension arm away from the atomization tube abuts against the step face of the limiting step.
4. The atomizing apparatus for facilitating separation of the oil wick according to claim 2, wherein The first shell forms an opening column extending inwardly, the movable hole is formed in the opening column and penetrates through both ends of the opening column, and the inner end wall of the opening column is formed with a stroke limiting groove extending along the circumference of the opening column, the stroke limiting groove communicates with the movable hole; An end of the mounting part away from the suction part is provided with a stroke limiting protrusion protruding radially along the mounting part, the stroke limiting protrusion extends into the stroke limiting groove and can reciprocate along the extension direction of the stroke limiting groove.
5. The atomizing apparatus for facilitating separation of the oil wick according to claim 4, wherein The two ends of the stroke limiting groove in the length direction include a first end and a second end, when the stroke limiting protrusion moves to the first end, the atomization tube is in the oil seal position, and when the stroke limiting protrusion moves to the second end, the atomization tube is in the oil inlet position.
6. The atomizing apparatus of claim 5, wherein the oil core is separated by the user's finger. The groove bottom of the stroke limiting groove is provided with a first limiting hole corresponding to the first end and a second limiting hole corresponding to the second end, and the stroke limiting protrusion is provided with a limiting protrusion on the side facing the groove bottom of the stroke limiting groove, the limiting protrusion is inserted into the first limiting hole when the stroke limiting protrusion moves to the first end, and the limiting protrusion is inserted into the second limiting hole when the stroke limiting protrusion moves to the second end; or, The groove bottom of the stroke limiting groove is provided with a first limiting protrusion corresponding to the first end and a second limiting protrusion corresponding to the second end, and the stroke limiting protrusion is recessed with a limiting hole on the side facing the groove bottom of the stroke limiting groove, the first limiting protrusion is inserted into the limiting hole when the stroke limiting protrusion moves to the first end, and the second limiting protrusion is inserted into the limiting hole when the stroke limiting protrusion moves to the second end.
7. The atomizing apparatus for facilitating separation of the oil wick according to claim 2, wherein The movable hole includes a first hole section and a second hole section in the hole depth direction in sequence, the inner diameter of the second hole section is greater than that of the first hole section, so as to form a limiting step at the connection of the first hole section and the second hole section, the outer diameter of the mounting part is greater than that of the suction part, and one end of the mounting part connected with the suction part abuts against the step surface of the limiting step.
8. The atomizing apparatus for facilitating separation of the oil wick according to claim 2, wherein The outer wall of the mounting part is sleeved with an elastic sealing ring, and the elastic sealing ring abuts against the hole wall of the movable hole.
9. The atomizing apparatus for facilitating separation of the oil wick according to claim 1, wherein, The atomization assembly further includes a base, the base is installed at one end of the atomization tube away from the suction nozzle, and the side of the base away from the oil storage cavity includes an electrical connection area for electrical connection or contact with the lead of the atomization core. The atomization equipment facilitating oil core separation further includes a connected circuit board and a power supply conductive part, the power supply conductive part is located on the side of the base away from the oil storage cavity, the power supply conductive part is away from the electrical connection area when the atomization tube is in the oil sealing position, and the power supply conductive part contacts or abuts against the electrical connection area when the atomization tube is in the oil inlet position.
10. The atomizing apparatus for facilitating separation of the oil wick according to claim 9, wherein, The power supply conductive part is a spring needle; and / or, the end face of the power supply conductive part facing the base is a convex arc face.