Electronic atomization device
By designing an elastic element in the electronic atomizing device to connect the oil reservoir and the cap, the problem of difficulty in replenishing the oil reservoir caused by the independent electronic atomizing device and the oil reservoir is solved, realizing convenient replenishment of atomized liquid and improving the user experience.
Patent Information
- Application Number
- CN202422755434.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-11
AI Technical Summary
In the existing technology, the electronic atomizing device and the oil reservoir are two separate items, which leads to the problem that the atomizing liquid cannot be replenished in time after it is used up.
Design an electronic atomizing device, comprising a main body, an assembly cavity, an oil reservoir, an elastic element, and a cap. The oil reservoir and the cap are connected by the elastic element, enabling the oil reservoir to pop out automatically, facilitating quick replenishment of atomizing liquid by the user.
It enables timely replenishment of atomizing fluid after it runs out, improving the user experience and making operation convenient and quick.
Smart Images

Figure CN223554307U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to electronic atomization technical field, especially electronic atomization device. BACKGROUND
[0002] Electronic atomization device includes disposable and replaceable two types. Disposable electronic atomization device is disposable, and after using, discarding, and the cost is higher, and it is not in accord with environmental protection concept. And replaceable electronic atomization device, still need to have oil storage bottle. After the atomization liquid of electronic atomization device is used up, the atomization liquid of oil storage bottle is injected into electronic atomization device through oil injection port, and the atomization liquid of electronic atomization device is refilled. However, in the related art, electronic atomization device and oil storage bottle are two independent articles, so in the actual use process, sometimes it can be forgotten to carry the oil storage bottle, leading to the atomization liquid of electronic atomization device is used up and cannot be refilled in time, which does not meet the actual demand. SUMMARY
[0003] The technical problem to be solved by the utility model is to provide an electronic atomization device, which aims to solve the technical problem that electronic atomization device and oil storage bottle are two independent articles in the related art, which can sometimes lead to the atomization liquid of electronic atomization device being used up and not being refilled in time.
[0004] To solve the above technical problem, the utility model is realized in this way, an electronic atomization device, comprising: a body, an assembly cavity, an oil storage bottle, an elastic member and a cover body; the assembly cavity is integrally formed on the side of the body; the assembly cavity is provided with an opening, the cover body is connected to the body and covers the opening, and the assembly cavity is assembled with the elastic member; the oil storage bottle is assembled in the assembly cavity and connected between the elastic member and the cover body, and the elastic member is used to provide elastic force for moving the oil storage bottle to the opening.
[0005] Further, in some embodiments, the assembly cavity extends along the axial direction of the body, the cover body is arranged at one end of the assembly cavity along the axial direction, the elastic member is fixedly assembled at the other end of the assembly cavity, and the oil storage bottle is in abutment with the cover body at one end along the axial direction and is elastically connected to the elastic member at the other end, and the elastic member is used to provide elastic force for moving the oil storage bottle along the axial direction.
[0006] Or,
[0007] The assembly cavity extends along the lateral direction of the body, the cover body is arranged at one end of the assembly cavity along the lateral direction, the elastic member is fixedly assembled at the other end of the assembly cavity, and the oil storage bottle is in abutment with the cover body at one end along the lateral direction and is elastically connected to the elastic member at the other end, and the elastic member is used to provide elastic force for moving the oil storage bottle along the lateral direction.
[0008] Further, in some embodiments, a space is formed between the side of the elastic member away from the cover and the assembly cavity; the elastic member comprises an assembly part and a main part connected to the assembly part, the assembly part is assembled in the assembly cavity, and the oil storage bottle is elastically connected to the main part and the main part is located in the space.
[0009] Further, in some embodiments, the assembly part is provided with a first mounting structure, and the assembly cavity is provided with a second mounting structure, and the first mounting structure is connected to the second mounting structure.
[0010] Further, in some embodiments, the first mounting structure comprises an assembly groove formed in the assembly part, and the second mounting structure comprises a clamping protrusion provided on the assembly cavity and protruding towards the cover, and the clamping protrusion is clamped in the assembly groove.
[0011] Further, in some embodiments, the main part is provided with a through hole, and the main part further comprises an elastic leg located on the side of the through hole and protruding from the main part away from the cover, and the oil storage bottle is elastically connected to the elastic leg through the through hole, and the side of the elastic leg away from the cover abuts against the assembly cavity.
[0012] Further, in some embodiments, the main part comprises a plurality of elastic legs distributed around the through hole.
[0013] Further, in some embodiments, the cover is movable along the transverse direction or the axial direction of the body to switch the cover between a first position and a second position; when the cover is in the first position, the cover is fixed to the body; when the cover is in the second position, the cover is rotatable along the circumferential direction of the body.
[0014] Further, in some embodiments, the body is provided with two connection holes distributed in sequence and communicated along the transverse direction or the axial direction, and a clamping point protruding inward is arranged between the two connection holes, and one side of the cover is provided with a connection structure, and the connection structure is movable along the two connection holes to switch the cover between the first position and the second position.
[0015] Further, in some embodiments, the side of the cover away from the assembly cavity is provided with a boosting structure.
[0016] Further, in some embodiments, the body further comprises an atomizer, and the body is provided with a receiving cavity, and the atomizer is detachably mounted in the receiving cavity, and the receiving cavity is isolated from the assembly cavity.
[0017] The electronic atomization device has the beneficial effects that, compared with the related art,
[0018] In the utility model, the electronic atomization device body is integrally formed with an assembly cavity which can be used to assemble an oil storage bottle, so when the atomization liquid of the electronic atomization device body is used up, the oil storage bottle in the assembly cavity can be directly taken out and the atomization liquid in the oil storage bottle is injected into the liquid storage compartment of the body through the oil injection port of the electronic atomization device body for use. Since the assembly cavity and the electronic atomization device body are integrally formed, the oil storage bottle can be carried together with the electronic atomization device body, so that the oil can be injected in time for replenishment after the atomization liquid of the electronic atomization device body is used up, improving the user experience. Further, the elastic member is arranged in the assembly cavity, and the oil storage bottle is connected between the cover body and the elastic member, so when the cover body is opened, the elastic member can push the oil storage bottle to move in the direction of the opening of the assembly cavity, that is, the oil storage bottle can be automatically ejected from the assembly cavity, so that the user can conveniently take out the oil storage bottle, and the operation is convenient and fast. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are only some embodiments of the present utility model, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0020] Figure 1 is the cross-sectional schematic view of the electronic atomization device in the embodiment of the present utility model;
[0021] Figure 2 is the partial structure schematic view of the electronic atomization device in the embodiment of the present utility model;
[0022] Figure 3 is the structure schematic view of the elastic member in the embodiment of the present utility model.
[0023] In the drawings, the reference signs represent: 1, the body;11, the connecting hole;12, the clamping point;2, the assembly cavity;21, the clamping convex;3, the oil storage bottle;4, the elastic member;41, the assembly groove;42, the through hole;43, the elastic leg;5, the cover body;51, the connecting structure;52, the boosting structure. DETAILED DESCRIPTION
[0024] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary, and are intended to explain the present application, and cannot be understood as a limitation of the present application, and all other embodiments obtained by those skilled in the art without creative labor on the basis of the embodiments in the present application belong to the scope of protection of the present application.
[0025] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "circumferential", "radial" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.
[0026] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0027] Please refer to Figures 1-3 The electronic atomization device provided by the embodiment of the present application comprises a body 1, an assembly cavity 2, an oil storage bottle 3, an elastic member 4 and a cover 5. The assembly cavity 2 is integrally formed on the side of the body 1. The assembly cavity 2 is provided with an opening, the cover 5 is connected to the body 1 and covers the opening, and the assembly cavity 2 is assembled with the elastic member 4. The oil storage bottle 3 is assembled in the assembly cavity 2 and connected between the elastic member 4 and the cover 5, and the elastic member 4 is used to provide elastic force for moving the oil storage bottle 3 to the opening.
[0028] In the embodiment of the utility model, the electronic atomization device body 1 is integrally formed with the assembly cavity 2 which can be used to assemble the oil storage bottle 3, therefore, when the atomization liquid of the electronic atomization device body 1 is used up, the oil storage bottle 3 in the assembly cavity 2 can be directly taken and the atomization liquid in the oil storage bottle 3 is injected into the liquid storage compartment of the body 1 through the oil injection port of the electronic atomization device body 1 for use. Since the assembly cavity 2 and the electronic atomization device body 1 are integrally formed, the oil storage bottle 3 can be carried together with the electronic atomization device body 1, so that the oil can be injected in time for replenishment after the atomization liquid of the electronic atomization device body 1 is used up, thereby improving the user experience. Further, the elastic member 4 is arranged in the assembly cavity 2, and the oil storage bottle 3 is connected between the cover body 5 and the elastic member 4, therefore, when the cover body 5 is opened, the elastic member 4 can push the oil storage bottle 3 to move in the direction of the opening of the assembly cavity 2, that is, the oil storage bottle 3 can be automatically ejected from the assembly cavity 2, so that the user can conveniently take the oil storage bottle 3, and the operation is convenient and fast.
[0029] Further, the elastic member 4 can be made of flexible material. For example, the elastic member 4 can be made of silica gel, so that the elastic member 4 has certain elastic performance.
[0030] Further, in some embodiments, the assembly cavity 2 extends along the axial direction of the body 1, the cover body 5 is arranged at one end of the assembly cavity 2 along the axial direction, the elastic member 4 is fixedly assembled at the other end of the assembly cavity 2, one end of the oil storage bottle 3 abuts against the cover body 5 and the other end of the oil storage bottle 3 is elastically connected to the elastic member 4, and the elastic member 4 is used to provide elastic force for moving the oil storage bottle 3 along the axial direction.
[0031] Specifically, the axial direction of the body 1 can be the height direction of the body 1, the extension direction of the assembly cavity 2 can be parallel to the axial direction of the body 1, and the assembly cavity 2 can be arranged adjacent to the body 1 along the transverse direction of the body 1 or along the axial direction of the body 1. The elastic member 4 is arranged in the assembly cavity 2 and at one end of the assembly cavity 2 along the axial direction, and the opening and the cover body 5 are arranged at the other end of the assembly cavity 2 along the axial direction. The oil storage bottle 3 can be adaptively arranged according to the shape of the assembly cavity 2, that is, the extension direction of the oil storage bottle 3 can be parallel to the axial direction of the body 1. Along the axial direction, one end of the oil storage bottle 3 is elastically connected to the elastic member 4 and the other end abuts against the cover body 5. Therefore, when the cover body 5 is closed, the elastic member 4 is compressed by the oil storage bottle 3, and the oil storage bottle 3 is fixedly assembled in the assembly cavity 2; when the cover body 5 is opened, the elastic member 4 can provide a restoring force for the oil storage bottle 3, so that the oil storage bottle 3 can be ejected from the assembly cavity 2. It can be understood that the ejection distance is affected by the deformation amount of the elastic member 4, and can be, for example, less than 1 / 20 of the height of the oil storage bottle 3. Because the oil storage bottle 3 is exposed to the assembly cavity 2 by a small distance, the user can conveniently take the oil storage bottle 3.
[0032] It should be noted that the transverse direction of the body 1 is parallel toFigure 2 The middle X-axis direction; the axial direction (height direction) of the body 1 is parallel to Figure 2 The middle Z-axis direction, and in the embodiment of the utility model, the axial direction (height direction) of the body 1 is the vertical direction of the suction nozzle to the atomizing core whether it is a long column type or a flat type. In addition, the setting position of the bottle mouth of the oil storage bottle 3 is not limited, that is, the bottle mouth can be arranged at one end of the extension direction of the oil storage bottle 3, or can be arranged at the side of the oil storage bottle 3, etc.
[0033] Further, in some embodiments, the elastic member 4 can be arranged in the assembly cavity 2, but not arranged at the end of the assembly cavity 2 in the axial direction, for example, the elastic member 4 can be arranged at the middle of the assembly cavity 2 in the axial direction, as long as the elastic member 4 is elastically connected with the oil storage bottle 3, the elastic member 4 can improve the axial force of the oil storage bottle 3, and also can make the oil storage bottle 3 pop out of the assembly cavity 2, which is convenient for the user to take.
[0034] Further, in some embodiments, the assembly cavity 2 can extend along the axial direction of the body 1, but the opening of the assembly cavity 2 can be arranged at one end in the transverse direction of the body 1, at this time, the force of the elastic member 4 on the oil storage bottle 3 is transverse, and also can make the oil storage bottle 3 pop out of the assembly cavity 2, which is convenient for the user to take.
[0035] Further, in some embodiments, the assembly cavity 2 extends along the transverse direction of the body 1, the cover 5 is arranged at one end of the assembly cavity 2 in the transverse direction, the elastic member 4 is fixedly arranged at the other end of the assembly cavity 2, one end of the oil storage bottle 3 abuts against the cover 5 and the other end of the oil storage bottle 3 is elastically connected with the elastic member 4, and the elastic member 4 is used to provide the elastic force for moving the oil storage bottle 3 in the transverse direction.
[0036] Specifically, the relative position direction of the elastic member 4 and the cover 5 is transverse, and the reset force direction of the elastic member 4 is transverse, so that the elastic member 4 can also improve the force of the oil storage bottle 3 to expose the oil storage bottle 3 to the assembly cavity 2, which is not described here.
[0037] Further, in some embodiments, the elastic member 4 can be arranged in the assembly cavity 2, but not arranged at the end of the assembly cavity 2 in the transverse direction, for example, the elastic member 4 can be arranged at the middle of the assembly cavity 2 in the transverse direction, as long as the elastic member 4 is elastically connected with the oil storage bottle 3, the elastic member 4 can improve the transverse force of the oil storage bottle 3, and also can make the oil storage bottle 3 pop out of the assembly cavity 2, which is convenient for the user to take.
[0038] Further, in some embodiments, the assembly cavity 2 can extend along the transverse direction of the body 1, but the opening of the assembly cavity 2 can be arranged at one end in the axial direction of the body 1, at this time, the force of the elastic member 4 on the oil storage bottle 3 is axial, and also can make the oil storage bottle 3 pop out of the assembly cavity 2, which is convenient for the user to take.
[0039] Further, in some embodiments, a space is formed between one side of the elastic member 4 facing away from the cover 5 and the assembly cavity 2 to form a deformation space; the elastic member 4 comprises an assembly part and a main part connected to the assembly part, the assembly part is assembled in the assembly cavity 2, and the oil storage bottle 3 is elastically connected to the main part and located in the deformation space.
[0040] Specifically, a space is formed between one side of the elastic member 4 and the assembly cavity 2, so that a deformation space is formed between the elastic member 4 and the assembly cavity 2. The assembly part of the elastic member 4 is assembled in the assembly cavity 2, so that the elastic member 4 and the assembly cavity 2 can be relatively fixed. The main part of the elastic member 4 is elastically connected to the oil storage bottle 3, so that when the cover 5 is opened, the main part of the elastic member 4 can elastically deform in the deformation space, so that the main part of the elastic member 4 can increase the elastic force with the oil storage bottle 3.
[0041] Further, in some embodiments, the assembly part is provided with a first mounting structure, the assembly cavity 2 is provided with a second mounting structure, and the first mounting structure is connected to the second mounting structure. Through the connection of the first mounting structure and the second mounting structure, the assembly part can be assembled in the assembly cavity 2, so that the elastic member 4 and the assembly cavity 2 can be relatively fixed.
[0042] Further, in some embodiments, the first mounting structure comprises an assembly groove 41 opened in the assembly part, the second mounting structure comprises a clamping protrusion 21 provided in the assembly cavity 2 and protruding towards the cover 5, and the clamping protrusion 21 is clamped in the assembly groove 41.
[0043] In some specific embodiments, the first mounting structure can be the assembly groove 41 with the opening direction facing away from the cover 5, the second mounting structure can be the clamping protrusion 21 protruding from the assembly cavity 2 towards the cover 5, and the clamping protrusion 21 is clamped in the assembly groove 41, so that the relative fixation of the elastic member 4 and the assembly cavity 2 can be achieved. Further, the oil storage bottle 3 is elastically connected to the side of the elastic member 4 facing the cover 5, so that the relative stability of the elastic member 4 in the assembly cavity 2 can be further achieved.
[0044] In some specific embodiments, the first mounting structure can be the assembly groove 41 with the opening direction facing away from the cover 5, the second mounting structure can be the clamping protrusion 21 protruding from the assembly cavity 2 towards the cover 5, and the clamping protrusion 21 is clamped in the assembly groove 41, so that the relative fixation of the elastic member 4 and the assembly cavity 2 can be achieved. Further, the oil storage bottle 3 is elastically connected to the side of the elastic member 4 facing the cover 5, so that the relative stability of the elastic member 4 in the assembly cavity 2 can be further achieved.
[0045] In some specific embodiments, the first mounting structure can be the assembly groove 41 with the opening direction facing away from the cover 5, the second mounting structure can be the clamping protrusion 21 protruding from the assembly cavity 2 towards the cover 5, and the clamping protrusion 21 is clamped in the assembly groove 41, so that the relative fixation of the elastic member 4 and the assembly cavity 2 can be achieved. Further, the oil storage bottle 3 is elastically connected to the side of the elastic member 4 facing the cover 5, so that the relative stability of the elastic member 4 in the assembly cavity 2 can be further achieved.
[0046] In addition, it is understandable that the elastic member 4 is elastically deformed due to the elastic connection between the elastic member 4 and the oil storage bottle 3, and thus the assembly groove 41 of the assembly portion of the elastic member 4 can also be slightly deformed.
[0047] Further, in some specific embodiments, the clamping protrusions 21 can be arranged in the assembly cavity 2 along the circumference of the body 1, the assembly grooves 41 are arranged on the assembly portion along the circumference of the body 1, and the clamping protrusions 21 and the assembly grooves 41 correspond to each other, which can improve the relative stability of the elastic member 4 and the assembly cavity 2.
[0048] Further, in some specific embodiments, the main body portion is provided with a through hole 42, and the main body portion further comprises elastic legs 43 located at the circumferential side of the through hole 42 and protruding from the main body portion to the side away from the cover 5, and the oil storage bottle 3 is elastically connected to the elastic legs 43 through the through hole 42, and the side of the elastic legs 43 away from the cover 5 abuts against the assembly cavity 2.
[0049] Specifically, the main body portion is provided with an axial or through hole 42, and the main body portion is further provided with elastic legs 43 located at the circumferential side of the through hole 42 and protruding from the main body portion to the side away from the cover 5, and thus the bottle mouth of the oil storage bottle 3 or a structure fixedly assembled with the oil storage bottle 3 can pass through the side of the through hole 42 and abut against the elastic legs 43. In addition, the main body portion is located in the deformation space, and thus the elastic legs 43 are also located in the deformation space, and the side of the elastic legs 43 away from the cover 5 abuts against the assembly cavity 2. Therefore, when the cover 5 is closed, the elastic flexible member is compressed by the oil storage bottle 3, i.e. the elastic legs 43 are compressed; when the cover 5 is opened, the elastic legs 43 can be elastically opened in the direction of the cover 5, and the elastic legs 43 can drive the oil storage bottle 3 to move in the direction of the cover 5, so that finally the oil storage bottle 3 can be elastically popped out of the assembly cavity 2.
[0050] It is understandable that the structure fixedly assembled with the oil storage bottle 3 can not be specifically limited, and only needs to be matched with the through hole 42, the elastic legs 43, etc. For example, the structure fixedly assembled with the oil storage bottle 3 can be a conical body provided on the bottle body of the oil storage bottle 3.
[0051] Further, in some embodiments, the main body portion comprises a plurality of elastic legs 43 which are arranged in a spaced manner around the circumferential side of the through hole 42.
[0052] Specifically, the elastic legs 43 can be relatively thin and arc-shaped elastic pieces. The elastic legs 43 are arranged around the circumferential side of the through hole 42, and a plurality of elastic legs 43 are arranged in a spaced manner along the circumference of the through hole 42, and thus the elastic legs 43 can be better compressed by the oil storage bottle 3 when the cover 5 is closed; and the plurality of elastic legs 43 can be better reset when the cover 5 is opened, so that enough deformation space can be given to each elastic leg 43 to deform better.
[0053] In some embodiments, the main body part can comprise elastic legs 43 in the shape of a ring, and deformation of the elastic legs 43 can also be achieved.
[0054] Further, the cover 5 can move along the transverse direction or the axial direction of the body 1 to switch the cover 5 between the first position and the second position; when the cover 5 is in the first position, the cover 5 is fixed to the body 1; when the cover 5 is in the second position, the cover 5 can rotate along the circumferential direction of the body 1.
[0055] Further, in some specific embodiments, the assembly cavity 2 extends along the axial direction of the body 1, the opening is arranged at one end of the assembly cavity 2 along the axial direction of the body 1, and the cover 5 is used to cover the opening, so the cover 5 is also located at one end of the assembly cavity 2 along the axial direction of the body 1. The cover 5 can move along the transverse direction of the body 1, and when the cover 5 is in the first position of the body 1, both sides of the cover 5 are fixed relative to the body 1, so that the cover 5 can completely cover the opening; when the cover 5 is pushed to move along the transverse direction of the body 1, the cover 5 is in the second position of the body 1, and one side of the cover 5 is separated from the body 1, so that the oil storage bottle 3 is no longer clamped by the cover 5 and the elastic member 4, and the oil storage bottle 3 is pushed away from the opening under the elastic force of the elastic member 4. The oil storage bottle 3 that is pushed away can apply a force to the cover 5 in the second position, so that the cover 5 is automatically rotated along the circumferential direction of the body 1, that is, the cover 5 is automatically pushed away by a small angle under the action of the oil storage bottle 3, and then the user only needs to open the cover 5 by another angle to completely open the cover 5, and then the oil storage bottle 3 exposed in the assembly cavity 2 can be taken, so that the whole operation process is convenient and fast, and user experience can be provided.
[0056] It can be understood that when the oil storage bottle 3 is placed in the assembly cavity 2, the cover 5 only needs to be rotated and pushed from the second position to the first position, so that the oil storage bottle 3 is clamped between the cover 5 and the elastic member 4, and at the same time the oil storage bottle 3 compresses the elastic member 4 in the assembly cavity 2.
[0057] Further, in some specific embodiments, the assembly cavity 2 extends along the transverse direction of the body 1, and the opening is arranged at one end of the assembly cavity 2 along the transverse direction of the body 1. Similarly, when the cover 5 is in the first position of the body 1, both sides of the cover 5 are fixed relative to the body 1, so that the cover 5 can completely cover the opening; and when the cover 5 is pushed to move along the axial direction of the body 1, the cover 5 is in the second position of the body 1, and the cover 5 can be automatically pushed away by a small angle under the action of the oil storage bottle 3 that is pushed away, so that the user can conveniently and quickly take the oil storage bottle 3, and details are not described herein.
[0058] It can be understood that the extension direction of the assembly cavity 2 and the arrangement position of the opening are not limited in the embodiments of the utility model, and the pushing direction of the cover 5 is also not limited, and can be set according to actual conditions.
[0059] In some other embodiments, the cover 5 can be detachably connected to the body 1, and when the opening needs to be covered, the cover 5 is assembled to the body 1; and when the opening needs to be opened, the cover 5 is detached from the body 1.
[0060] Further, in some specific embodiments, the side of the cover 5 facing the oil storage bottle 3 is provided with a clamping protrusion, and the side of the oil storage bottle 3 facing the cover 5 is inwardly recessed to form an arc-shaped clamping position. Therefore, when the cover 5 covers the opening, the clamping protrusion abuts against the arc-shaped clamping position, so that the oil storage bottle 3 and the cover 5 can be acted on by a force, thereby enabling the cover 5 to be stably fixed to the first position of the body 1.
[0061] In addition, the clamping protrusion can be arranged at the middle of the side of the cover 5 facing the oil storage bottle 3, and correspondingly, the arc-shaped clamping position can be arranged at the middle of the side of the oil storage bottle 3 facing the cover 5, so that the oil storage bottle 3 and the cover 5 can be better acted on by the force, and the cover 5 can be more stably fixed to the body 1.
[0062] Further, in some embodiments, the body 1 is provided with two connecting holes 11 which are distributed in sequence along the transverse direction or the axial direction and are in communication, and a clamping point 12 is arranged inwardly between the two connecting holes 11, one side of the cover 5 is provided with a connecting structure 51, and the connecting structure 51 can move along the two connecting holes 11 to switch the cover 5 between the first position and the second position.
[0063] Specifically, the two connecting holes 11 correspond to the first position and the second position respectively, one side of the cover 5 is provided with the connecting structure 51, and the clamping point 12 between the two connecting holes 11 can limit the connecting structure 51 of the cover 5 from moving from one connecting hole 11 to the other connecting hole 11 without external force. In addition, a clamping structure is further arranged on the other side of the cover 5, when the cover 5 is at the first position, the connecting structure 51 of the cover 5 is fixed in one of the connecting holes 11, and the clamping structure of the cover 5 is clamped with the body 1, so that the cover 5 can cover the opening and be fixed to the body 1 at the first position. When the cover 5 is pushed to the second position, the connecting structure 51 of the cover 5 is located in the other connecting hole 11, and the clamping structure of the cover 5 is separated from the body 1, so that the connecting structure 51 of the cover 5 can be opened by a certain angle under the pushing of the oil storage bottle 3, facilitating the user to completely open the cover 5 and take the oil storage bottle 3. In addition, since the clamping point 12 is arranged between the two connecting holes 11, when the user pushes the cover 5 from one connecting hole 11 to the other connecting hole 11, the clamping point 12 can give feedback to the user, so that the user has a better feeling when pushing.
[0064] It can be understood that the two connecting holes 11 correspond to the first position and the second position respectively, the two connecting holes 11 are arranged in sequence and one clamping point 12 is arranged between the two connecting holes 11, that is, the moving distance of the cover body 5 relative to the body 1 is small, which can be 0.03mm, 0.04mm, 0.05mm, 0.06mm and the like, so that even if the connecting structure 51 of the cover body 5 and the connecting hole 11 are rigidly connected, it does not affect the user to push the cover body 5.
[0065] Further, in some specific embodiments, the side of the cover body 5 provided with the connecting structure 51 can be provided with a connecting shaft extending in the first direction, wherein the first direction is perpendicular to the axial direction of the body 1 and perpendicular to the transverse direction of the body 1. Therefore, the two ends of the connecting shaft in the first direction can be respectively provided with the connecting structure 51, that is, provided with two connecting structures 51, and correspondingly, the two ends of the body 1 in the first direction can be respectively provided with the connecting hole 11, and the connecting structure 51 and the connecting hole 11 correspond one by one.
[0066] It should be noted that the first direction is parallel to Figure 2 the Y-axis direction in the coordinate system shown in FIG. 1.
[0067] Further, in some specific embodiments, two clamping points 12 can be provided. For example, when the two connecting holes 11 are arranged in sequence along the transverse direction of the body 1, the two clamping points 12 are arranged between the two connecting holes 11, and the two clamping points 12 can be oppositely arranged along the axial direction of the body 1.
[0068] Further, in some embodiments, the side of the cover body 5 away from the assembly cavity 2 is provided with a pushing structure 52, so that when the user pushes the cover body 5, the user can increase the friction between the user and the cover body 5 through the pushing structure 52, so that the user can more conveniently and quickly push the cover body 5 between the first position and the second position.
[0069] Further, in some specific embodiments, the pushing structure 52 can be a plurality of strip-shaped grooves or a plurality of strip-shaped protrusions arranged in sequence along the transverse direction or the axial direction, so that the user can push the cover body 5 by clamping the strip-shaped grooves or the strip-shaped protrusions, improve the friction effect between the user and the cover body 5, and facilitate the user to better push the cover body 5. In addition, in some embodiments, the extension length of the strip-shaped grooves or the strip-shaped protrusions can gradually shorten to the left and gradually shorten to the right along the transverse direction, so as to form two arrows pointing left and right to indicate the pushing direction of the cover body 5. Similarly, in some embodiments, the extension length of the strip-shaped grooves or the strip-shaped protrusions can gradually shorten upward and gradually shorten downward along the axial direction, which can also indicate the pushing direction of the cover body 5, which will not be described here.
[0070] Further, in some specific embodiments, the boosting structure 52 can be two grooves or two protrusions symmetrically arranged with the first direction as the axis of symmetry, and the arrow is arranged on the groove or the protrusion, so as to facilitate the user to push the cover 5 and indicate the pushing direction.
[0071] It can be understood that the boosting structure 52 is not specifically limited in the embodiments of the utility model.
[0072] Further, in some embodiments, the body 1 comprises an atomizer, the body 1 is provided with a receiving cavity, the atomizer is detachably installed in the receiving cavity, and the receiving cavity is isolated from the assembly cavity 2.
[0073] Specifically, the electronic atomization device body 1 is also provided with a receiving cavity for assembling the atomizer, and the receiving cavity and the assembly cavity 2 are isolated from each other, so that when the atomization liquid is supplemented, the oil storage bottle 3 needs to be taken out from the assembly cavity 2, and then the atomization liquid is supplemented from the oil injection port of the atomizer to the liquid storage compartment of the atomizer. Among them, by arranging the elastic member 4 and the cover 5, it is convenient for the user to quickly take out the oil storage bottle 3 from the assembly cavity. In addition, the receiving cavity and the assembly cavity 2 are integrally formed, but since the receiving cavity and the assembly cavity 2 are completely isolated, the effect of simplifying the mold structure can be achieved.
[0074] In the above embodiments, the description of each embodiment has its own emphasis, and the parts not described in detail in a certain embodiment can be referred to the related description of other embodiments.
[0075] The above is the description of the technical scheme provided by the utility model, for those skilled in the art, according to the idea of the embodiments of the utility model, the specific implementation and application range will be changed, in conclusion, the content of the specification should not be understood as the limitation of the utility model.
Claims
1. An electronic atomizing device, characterized by, The utility model relates to a kind of oil storage bottle, including: Body, assembly cavity, oil storage bottle, elastic member and cover;The assembly cavity is integrally formed in the body side;The assembly cavity is provided with opening, the cover is connected to the body and covers the opening, the assembly cavity is assembled with the elastic member;The oil storage bottle is assembled in the assembly cavity and the oil storage bottle is connected between the elastic member and the cover, and the elastic member is used to provide the elastic force that makes the oil storage bottle move to the opening.
2. The electronic atomizing device of claim 1, wherein, The assembly cavity extends along the axial direction of the body, one end of the assembly cavity along the axial direction is provided with the cover, and the other end of the assembly cavity is fixedly assembled with the elastic member, one end of the oil storage bottle along the axial direction abuts against the cover, and the other end of the oil storage bottle is elastically connected to the elastic member, and the elastic member is used to provide the elastic force that makes the oil storage bottle move along the axial direction. Or, The assembly cavity extends along the lateral direction of the body, one end of the assembly cavity along the lateral direction is provided with the cover, and the other end of the assembly cavity is fixedly assembled with the elastic member, one end of the oil storage bottle along the lateral direction abuts against the cover, and the other end of the oil storage bottle is elastically connected to the elastic member, and the elastic member is used to provide the elastic force that makes the oil storage bottle move along the lateral direction.
3. The electronic atomizing device of claim 1, wherein, The side of the elastic member away from the cover and the assembly cavity are spaced to form a deformation space, and the elastic member includes an assembly part and a main body part connected to the assembly part, the assembly part is assembled in the assembly cavity, and the oil storage bottle is elastically connected to the main body part and located in the deformation space.
4. The electronic atomizing device of claim 3, wherein, The assembly part is provided with a first mounting structure, the assembly cavity is provided with a second mounting structure, and the first mounting structure is connected to the second mounting structure.
5. The electronic atomizing device of claim 4, wherein, The first mounting structure includes an assembly groove opened in the assembly part, the second mounting structure includes a clamping protrusion provided in the assembly cavity and protruding towards the cover, and the clamping protrusion is clamped in the assembly groove.
6. The electronic atomizing device of claim 3, wherein, The main body part is provided with a through hole, and further includes an elastic leg located on the side of the through hole away from the cover and protruding from the main body part, the oil storage bottle is elastically connected to the elastic leg through the through hole, and the side of the elastic leg away from the cover abuts against the assembly cavity.
7. The electronic atomizing device of claim 1, wherein, The cover can move along the lateral direction or the axial direction of the body to switch between a first position and a second position, the cover is fixed to the body when the cover is in the first position, and the cover can rotate along the circumferential direction of the body when the cover is in the second position.
8. The electronic atomizing device of claim 7, wherein, The body is provided with two connection holes sequentially distributed and communicated along the lateral direction or the axial direction, and a clamping point protruding inward is arranged between the two connection holes, one side of the cover is provided with a connecting structure, and the connecting structure can move along the two connection holes to switch between the first position and the second position.
9. The electronic atomizing device of claim 7, wherein, The side of the cover away from the assembly cavity is provided with a boosting structure.
10. The electronic atomizing device of claim 1, wherein, The body further includes an atomizer, the body is provided with a receiving cavity, the atomizer is detachably mounted in the receiving cavity, and the receiving cavity is isolated from the assembly cavity.