Battery compartment and electronic atomization device
By designing the battery compartment, battery cover and locking mechanism of the battery compartment, the problem of inability to be used continuously when charging the electronic atomization device is solved, and rapid battery replacement and user experience are improved.
Patent Information
- Application Number
- CN202421921028.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The existing electronic atomization device cannot be used continuously during charging, resulting in a reduced user experience.
A battery compartment is designed, including a compartment body, a battery cover and a locking mechanism, which enables the movable connection of the battery cover through the locking mechanism, allowing the battery to be quickly replaced when the battery power is exhausted.
It realizes rapid battery replacement when the battery is exhausted, improves user experience, and can be recycled with rechargeable batteries, making it more energy-saving and environmentally friendly.
Smart Images

Figure CN223207885U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of atomization devices, and in particular to a battery compartment and an electronic atomization device. Background Art
[0002] With the development of the field of atomization device technology, electronic atomization devices / electronic cigarettes are becoming more and more popular among the people. Electronic atomization devices usually include a power supply, an atomizer, a filter, etc. The power supply is used to power the atomizer, and the atomizer is used to heat the aerosol-generating matrix to form a mist-like aerosol for users to use. At present, the power supply of the electronic atomization device is usually a rechargeable battery, which has the advantages of small size, light weight, and long life, which is conducive to achieving the lightweight of the electronic atomization device and improving its portability. But at the same time, rechargeable batteries also have shortcomings: when the power of the electronic atomization device is insufficient, the user needs to use an adapted charger to connect the electronic atomization device to an external power source to charge the rechargeable battery. During charging, the user cannot continue to use the electronic atomization device, and the charging process takes a certain amount of time, which will reduce the user's experience, so the above problems need to be solved urgently. Utility Model Content
[0003] Based on this, it is necessary to provide a battery compartment and an electronic atomization device to address the problem that the current electronic atomization device cannot be used by users for a long time continuously due to the long charging time.
[0004] In a first aspect, an embodiment of the present application provides a battery compartment, which is used in an electronic atomization device. The battery compartment includes a compartment body, a battery cover, and a locking mechanism. The compartment body is provided with a battery cavity for accommodating a battery and a mounting opening connected to the battery cavity. The battery cover is movably connected to the compartment body to cover or expose the mounting opening. The locking mechanism is provided between the battery cover and the compartment body, and the locking mechanism is used to lock the battery cover when the battery cover covers the mounting opening, so that the relative position of the battery cover and the compartment body remains fixed.
[0005] In one embodiment, the battery compartment further includes a rotating shaft; a connecting hole is provided on the battery cover, the rotating shaft is connected to the compartment body and passes through the connecting hole, and when the locking mechanism is unlocked, the battery cover can be flipped relative to the compartment body with the rotating shaft as the axis to expose the installation port.
[0006] In one embodiment, the length of the connecting hole in the first direction is greater than the diameter of the rotating shaft, so that the battery cover can move relative to the warehouse body along the first direction to switch between the first position and the second position, and the first direction is perpendicular to the axial direction of the rotating shaft and to the extension direction of the battery cavity; when the battery cover is in the first position, the battery cover can be flipped relative to the warehouse body with the rotating shaft as the axis; when the battery cover is in the second position, the locking mechanism locks the battery cover to prevent the battery cover from moving relative to the warehouse body.
[0007] In one embodiment, the locking mechanism includes a first limiting component, which is disposed between the battery cover and the compartment body, and is used to prevent the battery cover from moving between the first position and the second position.
[0008] In one embodiment, the first limiting assembly includes a first clamping member and a second clamping member, the first clamping member is arranged on the bin body, and the second clamping member is arranged on the battery cover; when the battery cover is in the second position, the first clamping member and the second clamping member are arranged along the first direction, and the second clamping member is pressed against the side of the first clamping member close to the rotating shaft to limit the movement of the battery cover along the first direction.
[0009] In one embodiment, one of the first clamping member and the second clamping member is a spring sheet, and the other is a clamping protrusion; the spring sheet extends along the first direction, and the spring sheet has an elastic protrusion to form a clamping portion, and the clamping portion is used to abut against the clamping protrusion.
[0010] In one embodiment, the locking mechanism further includes a second limiting component, which is disposed between the battery cover and the compartment body, and is configured to prevent the battery cover from flipping relative to the compartment body when the battery cover is in the second position.
[0011] In one embodiment, the second limiting assembly includes a third clamping member and a fourth clamping member; the third clamping member is arranged on the warehouse body, and the fourth clamping member is arranged on the battery cover; when the battery cover is in the second position, the third clamping member and the fourth clamping member are arranged along the extension direction of the battery cavity, and the fourth clamping member is held against the side of the third clamping member close to the battery cavity to limit the battery cover from flipping relative to the warehouse body with the rotating shaft as the axis; when the battery cover is in the first position, the third clamping member and the fourth clamping member do not contact each other.
[0012] In one embodiment, at least two groups of second limiting components are provided, and at least two groups of second limiting components are respectively located on two opposite sides of the battery cover.
[0013] In a second aspect, an embodiment of the present application further provides an electronic atomization device, which includes a shell and the above-mentioned battery compartment, and the battery compartment is arranged in the shell.
[0014] In the battery compartment provided in the embodiment of the present application, since the battery compartment is applied to the electronic atomization device, the battery compartment is provided with a compartment body, a battery cover and a locking mechanism. Among them, the compartment body is provided with a battery cavity for accommodating the battery and an installation port connected to the battery cavity. Therefore, when in use, the user places the battery in the battery cavity and locks the battery cover and the compartment body with the locking mechanism, so that the battery is stably accommodated in the battery cavity for power supply. When the battery is exhausted, the user unlocks the locking mechanism so that the battery cover can move relative to the compartment body, thereby exposing the installation port so that the battery in the battery cavity can be replaced. Through the above-mentioned arrangement, the electronic atomization device using the above-mentioned battery compartment can allow the user to quickly and conveniently replace the battery when the battery is out of power. The user can complete the battery replacement in a relatively short time and can continue to use the electronic atomization device, which meets the user's need to continue to use the electronic atomization device and greatly improves the user experience. In addition, the above-mentioned battery compartment can be used with rechargeable batteries, and the replaced rechargeable batteries can be recycled after charging, which is more energy-saving and environmentally friendly. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solution of the present application, the following is a brief introduction to the drawings required for use in the implementation. Obviously, the drawings described below are only some implementation methods of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0016] Figure 1 3 is a schematic structural diagram of an electronic atomization device provided in some embodiments of the present application, wherein the battery cover of the electronic atomization device is in the second position.
[0017] Figure 2 yes Figure 1 The structural explosion diagram of the electronic atomization device is shown.
[0018] Figure 3 yes Figure 1 The schematic diagram of the structure of the electronic atomization device shown is when the battery cover is in the first position.
[0019] Figure 4 yes Figure 1 The figure shows a schematic diagram of the structure of the electronic atomization device when the battery cover is flipped open.
[0020] Figure 5 yes Figure 1 The diagram shows the positional relationship between the battery cover, the first holding member and the rotating shaft of the electronic atomization device.
[0021] Figure 6 yes Figure 3 The diagram shows the positional relationship between the battery cover, the first holding member and the rotating shaft of the electronic atomization device.
[0022] Figure 7 yes Figure 1 Schematic diagram of the positional relationship between the third clamping member and the fourth clamping member of the electronic atomization device.
[0023] Figure 8 yes Figure 3 Schematic diagram of the positional relationship between the third clamping member and the fourth clamping member of the electronic atomization device.
[0024] Explanation of reference numbers: 100, battery compartment; 10, compartment body; 101, battery cavity; 102, mounting port; 103, side wall; 104, snap-in groove; 11, battery cover; 111, anti-slip groove; 12, locking mechanism; 13, rotating shaft; 14, connecting hole; 15, first limiting assembly; 151, first clamping member; 152, second clamping member; 153, clamping portion; 16, second limiting assembly; 161, third clamping member; 162, fourth clamping member; 17, first elastic support member; 18, second elastic support member; 200, electronic atomization device; 20, shell. DETAILED DESCRIPTION
[0025] In order to enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present invention.
[0026] In the description of this application, it should be understood that the terms "length," "width," "thickness," "up," "down," "left," "right," "front," "back," "top," "bottom," "inside," "outside," "center," "vertical," "horizontal," "transverse," and "longitudinal" and the like, indicating positions or state relationships, are based on the positions or state relationships shown in the accompanying drawings. These terms are primarily intended to better describe this application and its embodiments, and are not intended to limit the devices, elements, or components indicated to having a specific position, or being constructed or operated in a specific position.
[0027] Furthermore, some of the above terms may be used to express other meanings besides indicating a position or state. For example, the term "on" may also be used to express a dependency or connection in certain circumstances. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.
[0028] In addition, the terms "first," "second," etc. are primarily used to distinguish different devices, elements, or components (the specific types and configurations of which may be the same or different), and are not intended to indicate or imply the relative importance or quantity of the devices, elements, or components indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of this application, "plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.
[0029] Furthermore, unless otherwise expressly specified or limited, the terms "mounted," "connected," "connect," and "fixed" should be interpreted broadly. For example, these terms may refer to fixed, removable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; internal communication between two components; or mere surface contact. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.
[0030] If certain terms are used in the specification and claims to refer to specific components, those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not distinguish components based on differences in name, but rather on differences in their functionality. For example, the term "including" used throughout the specification and claims is an open-ended term and should be interpreted as meaning "including but not limited to." "Substantially" means that those skilled in the art can solve the technical problem within a certain error range and achieve a substantial technical effect.
[0031] See also Figure 1 , Figure 1 It is a schematic diagram of the structure of the electronic atomization device 200 in some embodiments of the present application. The embodiment of the present application provides an electronic atomization device 200, which includes a shell 20 and a battery compartment 100. The battery compartment 100 is arranged inside the shell 20 to supply power to the electrical components in the electronic atomization device 200. It should be noted that the shell 20 and the battery compartment 100 can be integrally formed and fixedly connected, or can be detachably connected. For example, the shell 20 and the battery compartment 100 can be connected by the matching snap-fit connection of the buckle and the slot, or can be connected and fixed by fasteners such as bolts / screws. The battery compartment 100 can be completely accommodated inside the shell 20, or there can be at least part of the structure exposed to the shell 20. The electronic atomization device 200 can be an electronic atomizer, an electronic cigarette, or other atomization device that relies on electricity to drive. In this embodiment, the electronic atomization device 200 is explained by taking an electronic cigarette as an example.
[0032] In some embodiments, the electronic atomization device 200 further includes a battery (not shown), which is removably mounted within the battery compartment 100 and electrically connected to electrical components (e.g., a heating element) within the electronic atomization device 200 to provide power. The battery can be a dry cell battery or a rechargeable battery. Rechargeable batteries can be recharged with a suitable charger for recycling, thereby being more energy-efficient and environmentally friendly.
[0033] Please also see Figure 1 and Figure 2 ,in, Figure 1 is a schematic structural diagram of an electronic atomization device 200 in some embodiments of the present application; Figure 2 yes Figure 1 The exploded view of the structure of the electronic atomization device 200 shown. The embodiment of the present application also provides a battery compartment 100, which is applied to the above-mentioned electronic atomization device 200. The battery compartment 100 includes a compartment body 10, a battery cover 11 and a locking mechanism 12. The compartment body 10 is the main structure of the battery compartment 100. The compartment body 10 is provided with a battery cavity 101 for accommodating a battery and a mounting port 102 connected to the battery cavity 101. As a specific example, in this embodiment, the compartment body 10 is roughly cylindrical. In other embodiments, the compartment body 10 may also be in the shape of a cuboid, an irregular long strip or other arbitrary shapes, and the specific shape of the compartment body 10 is not limited.
[0034] The battery cover 11 is movably connected to the housing 10 to cover or expose the mounting opening 102, thereby facilitating user replacement of the battery in the battery cavity 101. As a specific example, in this embodiment, the battery cover 11 and the housing 10 are rotatably connected (the specific connection structure between the two will be described in detail below). In other embodiments, the battery cover 11 and the housing 10 may also be threaded, snap-fit, or detachably connected via fasteners such as bolts / screws. This application specification does not limit the specific connection method between the battery cover 11 and the housing 10. It should be noted that the battery cover 11 includes at least two different states: a closed state and an open state. When the battery cover 11 is in the closed state, it means that the battery cover 11 substantially covers or completely covers the mounting opening 102, and the battery is stably installed in the battery cavity 101. When the battery cover 11 is in the open state, it means that the battery cover 11 partially or completely exposes the mounting opening 102, and the battery in the battery cavity 101 is directly exposed through the mounting opening 102, facilitating battery replacement by the user.
[0035] The locking mechanism 12 is arranged between the battery cover 11 and the storage body 10. The locking mechanism 12 is used to lock the battery cover 11 when the battery cover 11 covers the installation opening 102, so that the relative position of the battery cover 11 and the storage body 10 remains fixed. The use state of the locking mechanism 12 includes at least a locked state and an unlocked state. When the locking mechanism 12 is in the locked state, the locking mechanism 12 can keep the relative position of the battery cover 11 and the storage body 10 fixed. When the locking mechanism 12 is in the unlocked state, the locking mechanism 12 loses its locking effect on the battery cover 11, and the position of the battery cover 11 relative to the storage body 10 can be changed. The locking method of the battery cover 11 by the locking mechanism 12 can be any method such as clamping locking, pressing locking, etc., and this application specification does not limit this.
[0036] With the above arrangement, the electronic atomization device 200 equipped with the battery compartment 100 can allow the user to replace the battery when the battery is exhausted, thereby quickly resuming operation of the electronic atomization device 200 and satisfying the user's need to continue using the electronic atomization device 200, greatly improving the user experience. In addition, when the battery compartment 100 is used with a rechargeable battery, the rechargeable battery can be recharged and recycled after replacement, thereby being more energy-efficient and environmentally friendly.
[0037] Next, the electronic atomization device 200 and the battery compartment 100 in some embodiments provided in this application will be described in detail with reference to specific illustrations.
[0038] See also Figure 2 , Figure 2 It is an exploded view of the structure of the electronic atomization device 200 in some embodiments of the present application. The tank body 10 is a physical structure occupying a certain space, the battery cavity 101 is a space opened inside the tank body 10, and the mounting port 102 is located at one end of the tank body 10, so that the battery cavity 101 is connected to the outside world through the mounting port 102. The battery cover 11 is connected to the end of the tank body 10 where the mounting port 102 is provided to cover or expose the mounting port 102 and the battery cavity 101. As a specific example, the battery cavity 101 is a roughly circular hole, the mounting port 102 is roughly circular, and the battery cavity 101 has an extension direction Y. The extension direction Y of the battery cavity 101 is basically consistent with the central axis of the mounting port 102, and the extension direction Y of the battery cavity 101 limits the movement direction of the battery from the mounting port 102 into / out of the battery cavity 101, that is, the extension direction Y is consistent with the movement direction of the battery into / out of the battery cavity 101.
[0039] In some embodiments, the end surface of the compartment body 10 provided with the mounting opening 102 is further provided with two raised side walls 103. The two side walls 103 are spaced apart from each other, and the mounting opening 102 is located between the two side walls 103. The side walls 103 extend along a first direction X, which is substantially perpendicular to the extension direction Y of the battery cavity 101. When the battery cover 11 covers the mounting opening 102, at least a portion of the structure of the battery cover 11 is embedded between the two side walls 103. With this arrangement, the side walls 103 can be used to mount other structures of the battery compartment 100, and the battery cover 11 can be restrained by the two side walls 103. When the battery cover 11 covers the mounting opening 102, the two side walls 103 are located on either side of the battery cover 11, respectively, which can, to a certain extent, prevent the battery cover 11 from being accidentally opened by touching it.
[0040] Please also see Figure 2 、 Figure 3 and Figure 4 ,in, Figure 2 This is an exploded view of the structure of the electronic atomization device 200 in some embodiments of the present application; Figure 3 is a schematic structural diagram of an electronic atomization device 200 in some embodiments of the present application; Figure 4 yes Figure 3 Schematic diagram of the structure of the electronic atomization device 200 shown when the battery cover 11 is flipped open. In some embodiments, the battery cover 11 is provided with a connecting hole 14, the connecting hole 14 passes through the battery cover 11, and the rotating shaft 13 is connected to the warehouse body 10 and is passed through the connecting hole 14. When the locking mechanism 12 is unlocked (i.e., in the unlocked state), the battery cover 11 can be flipped relative to the warehouse body 10 with the rotating shaft 13 as the axis to expose the mounting port 102. As an example, the connecting hole 14 is provided at one end of the battery cover 11 and passes through both sides of the battery cover 11 to allow the rotating shaft 13 to pass through. Through the above arrangement, the battery cover 11 is flippably connected to the warehouse body 10 through the rotating shaft 13, and the locking mechanism 12 can lock the position of the battery cover 11. When the battery cover 11 is flipped and moved to a position covering the mounting port 102, the locking mechanism 12 can lock the battery cover 11 to prevent the battery in the battery cavity 101 from accidentally falling out. When the user needs to replace the battery in the battery cavity 101, the user can adjust the locking mechanism 12 to the unlocked state, and then flip the battery cover 11 relative to the compartment body 10 to expose the installation opening 102, thereby facilitating the battery replacement operation.
[0041] Please also see Figure 1 、 Figure 2 and Figure 3 ,in, Figure 1 is a structural diagram of an electronic atomization device 200 in some embodiments of the present application; Figure 2 yes Figure 1 An exploded view of the structure of the electronic atomization device 200 is shown;
[0042] Figure 3 yes Figure 1 Another structural schematic diagram of the electronic atomization device 200 is shown. In some embodiments, the hole axis direction of the connecting hole 14 is coaxial with the axial direction of the rotating shaft 13. The length of the connecting hole 14 in the first direction X is greater than the diameter of the rotating shaft 13, so that the battery cover 11 can move relative to the chamber body 10 along the first direction X to switch between the first position and the second position. The first direction X is perpendicular to the axial direction of the rotating shaft 13 and perpendicular to the extension direction Y of the battery chamber 101; the first position and the second position represent two different positions of the battery cover 11 when it moves along the first direction X, wherein the first position is as shown in FIG. Figure 3 The battery cover 11 is located in the position shown in FIG. Figure 1 The battery cover 11 is shown in its position. As an example, the connection hole 14 is a waist-shaped hole, with the first direction X being the radial direction of the connection hole 14. The waist-shaped hole has a major axis and a minor axis. When the battery cover 11 covers the mounting opening 102, the major axis of the waist-shaped hole coincides with the first direction X, allowing for relative movement between the waist-shaped hole and the rotating shaft 13. The minor axis of the waist-shaped hole can be substantially equal to the diameter of the rotating shaft 13 to prevent excessive shaking during rotation of the battery cover 11. In other embodiments, the cross-sectional profile of the connection hole 14 can also have other shapes, such as a rectangle, a parallelogram, etc.
[0043] Since the battery cover 11 can move relative to the housing 10 along the first direction X, the battery cover 11 has two different first positions (eg Figure 1 the position where the battery cover 11 is located) and the second position (eg Figure 3When the battery cover 11 is in the first position, the battery cover 11 can be flipped relative to the housing 10 about the rotation axis 13. When the battery cover 11 is in the second position, the locking mechanism 12 locks the battery cover 11 to prevent the battery cover 11 from moving relative to the housing 10. Through the above arrangement, when the user moves the battery cover 11 to the second position, the locking mechanism 12 has a locking effect on the battery cover 11, and the locking mechanism 12 can limit the movement of the battery cover 11 relative to the housing 10 to ensure that the battery in the battery cavity 101 is stably installed. When the user moves the battery cover 11 to the first position, the locking mechanism 12 loses its locking effect on the battery cover 11, and the locking mechanism 12 can no longer limit the movement of the battery cover 11 relative to the housing 10. At this time, the user can flip the battery cover 11 to replace the battery in the battery cavity 101. Since the battery cover 11 can be opened only by first moving the battery cover 11 along the first direction X to the first position and then flipping the battery cover 11, external forces in at least two different directions need to be applied to the battery cover 11 in order to open the battery cover 11. This can improve the stability of the battery cover 11 in the closed state, minimize the battery cover 11 from being accidentally opened due to external forces, and ensure the stability of the battery installation in the battery cavity 101.
[0044] Please also see Figure 1 、 Figure 4 and Figure 5 ,in, Figure 1 is a schematic structural diagram of an electronic atomization device 200 in some embodiments of the present application; Figure 4 yes Figure 1 A schematic structural diagram of the electronic atomization device 200 when the battery cover 11 is flipped open; Figure 5 yes Figure 1 Schematic diagram of the positional relationship between the battery cover 11 and other structures in the second position. In some embodiments, the locking mechanism 12 includes a first limiting component 15, which is disposed between the battery cover 11 and the housing 10. The first limiting component 15 is used to prevent the battery cover 11 from moving between the first position and the second position. It should be noted that the fact that the first limiting component 15 prevents the battery cover 11 from moving between the first position and the second position does not mean that the first limiting component 15 completely restricts the movement of the battery cover 11 between the first position and the second position. It means that the battery cover 11 can move back and forth between the first position and the second position when subjected to an external force of a certain magnitude in a specified direction (i.e., the first direction X).
[0045] Through the above-mentioned setting, the first limit component 15 limits the free movement of the battery cover 11 between the first position and the second position. When the user applies a force that meets specific conditions to the battery cover 11, the battery cover 11 can switch between the first position and the second position to achieve unlocking (the battery cover 11 is in the first position) and locking (the battery cover 11 is in the second position) of the battery cover 11.
[0046] Please also see Figure 4 、 Figure 5 and Figure 6 ,in, Figure 4 1 is a schematic structural diagram of the electronic atomization device 200 in some embodiments of the present application when the battery cover 11 is flipped open; Figure 5 is a schematic diagram of the positional relationship between the battery cover 11 and other structures in some embodiments of the present application in the second position; Figure 6 Schematic diagram of the positional relationship between the battery cover 11 and other structures in some embodiments of the present application in the first position. In some embodiments, the first limit assembly 15 includes a first clamping member 151 and a second clamping member 152. The first clamping member 151 is provided on the housing 10, and the second clamping member 152 is provided on the battery cover 11. The first clamping member 151 and the second clamping member 152 are arranged opposite to each other. When the battery cover 11 is in the second position, the first clamping member 151 and the second clamping member 152 are arranged along the first direction X (see FIG. 1 ). Figure 5 ), the second clamping member 152 abuts against the side of the first clamping member 151 near the rotation axis 13 to restrict the movement of the battery cover 11 along the first direction X. It should be noted that one of the first clamping member 151 and the second clamping member 152 is an elastic clamping member capable of elastic deformation. When the external force in the first direction X applied to the battery cover 11 in the second position is less than a specified value, the battery cover 11 cannot move in the first direction X away from the rotation axis 13 to the first position. When the external force in the first direction X applied to the battery cover 11 in the second position is not less than a specified value, the battery cover 11 can overcome the resistance between the first clamping member 151 and the second clamping member 152 and move in the first direction X away from the rotation axis 13 to the first position.
[0047] By the above arrangement, when the battery cover 11 is in the second position (see Figure 5 ) and the external force suffered by the battery cover 11 does not meet specific conditions, the battery cover 11 can be locked by the first clamping member 151 and the second clamping member 152; when the battery cover 11 is in the second position and the external force suffered by the battery cover 11 meets specific conditions, the battery cover 11 can overcome the resistance between the first clamping member 151 and the second clamping member 152 and move along the first direction X to the first position to achieve unlocking.
[0048] Please also see Figure 2 and Figure 4 ,in, Figure 2 This is an exploded view of the structure of the electronic atomization device 200 in some embodiments of the present application; Figure 4 : This is a schematic diagram of the structure of the electronic atomization device 200 when the battery cover 11 is flipped open in some embodiments of the present application. In some embodiments, one of the first clamping member 151 and the second clamping member 152 is a spring, and the other is a clamping protrusion. The spring extends along the first direction X, and the spring has an elastic protrusion to form a clamping portion 153, and the clamping portion 153 is used to abut against the clamping protrusion. As a specific example, in this embodiment, the spring is arranged on the surface of the side wall 103 facing the mounting port 102, and the middle part of the spring elastically protrudes in the direction close to the mounting port 102 to form a triangular-shaped clamping portion 153. The clamping protrusion is arranged on the surface of the battery cover 11 facing the side wall 103, and the clamping protrusion protrudes relative to the surface of the battery cover 11 for clamping with the clamping portion 153 in the first direction X. The spring can be an elastic structure such as a plastic spring point or a plastic spring ball structure; the retaining protrusion can be any structure such as a bump structure (specifically, cylindrical, cubic, etc.), a bump structure, or a ridge structure. When the battery cover 11 is in the second position, the retaining protrusion and the retaining portion 153 of the spring are aligned and retaining along the first direction X. As a specific example, in this embodiment, the first retaining member 151 is a spring, and the second retaining member 152 is a retaining protrusion. In other embodiments, the first retaining member 151 can be a retaining protrusion, and the second retaining member 152 can be a spring.
[0049] In this embodiment, two groups of first position-limiting components 15 are provided, and each group of first position-limiting components 15 includes a corresponding spring piece and a retaining protrusion. In other embodiments, the first position-limiting components 15 can also be provided in any number of groups, such as one, three, or four, and each group of first position-limiting components 15 can also include a spring piece and at least one retaining protrusion.
[0050] In some embodiments, the battery cover 11 is provided with anti-slip grooves 111 on the side facing away from the housing 10. The anti-slip grooves 111 can increase the friction between the user's fingers and the battery cover 11, thereby facilitating the user to adjust the position of the battery cover 11 along the first direction X.
[0051] Please also see Figure 4 、 Figure 7 and Figure 8 ,in, Figure 4 1 is a schematic structural diagram of the electronic atomization device 200 in some embodiments of the present application when the battery cover 11 is flipped open; Figure 7 is a structural cross-sectional view of the electronic atomization device 200 in some embodiments of the present application when the battery cover 11 is in the second position; Figure 8This is a cross-sectional view of the structure of the electronic atomization device 200 in some embodiments of the present application when the battery cover 11 is in the first position. In some embodiments, the locking mechanism 12 also includes a second limiting assembly 16, which is disposed between the battery cover 11 and the storage body 10. The second limiting assembly 16 is used to prevent the battery cover 11 from flipping relative to the storage body 10 when the battery cover 11 is in the second position. It should be noted that the second limiting assembly 16 preventing the battery cover 11 from flipping relative to the storage body 10 in the second position means that the second limiting assembly 16 can substantially completely prevent the battery cover 11 from flipping relative to the storage body 10 without damaging the structure of the battery cover 11.
[0052] Through the above-mentioned arrangement, when the battery cover 11 is in the second position, the second limiting assembly 16 can prevent the battery cover 11 from flipping over, and the first limiting assembly 15 can prevent the battery cover 11 from moving to the first position along the first direction X. Therefore, the second limiting assembly 16 cooperates with the first limiting assembly 15 to achieve stable locking of the battery cover 11, so that the battery cover 11 and the compartment body 10 remain relatively fixed to ensure the stability of the battery in the battery cavity 101.
[0053] In some embodiments, the second limiting assembly 16 includes a third clamping member 161 and a fourth clamping member 162. The third clamping member 161 is disposed on the housing 10, and the fourth clamping member 162 is disposed on the battery cover 11. As a specific example, in this embodiment, the third clamping member 161 can be disposed on the surface of the side wall 103 facing the mounting opening 102 and protrude relative to the surface of the side wall 103. The third clamping member 161 is spaced apart from the end surface of the housing 10 provided with the mounting opening 102 to form a snap-fit groove 104. Specifically, for example, the third clamping member 161 can be a strip-shaped structure extending along the first direction X. The fourth clamping member 162 is disposed on the surface of the battery cover 11 facing the third clamping member 161, and when the battery cover 11 is located in the first direction X, the fourth clamping member 162 corresponds to the position of the snap-fit groove 104 (the two can be spaced apart or nested relative to each other). Specifically, for example, the fourth clamping member 162 is a block-shaped structure protruding relative to the surface of the battery cover 11. In other embodiments, the third clamping member 161 can also be a block structure, a convex structure, a plate structure or any other structure, and the fourth clamping member 162 can also be a strip structure, a convex structure, a plate structure or any other structure, and the morphological structures of the third clamping member 161 and the fourth clamping member 162 can be the same or different.
[0054] When the battery cover 11 is in the second position, the third latch 161 and the fourth latch 162 are arranged along the extension direction Y of the battery cavity 101. The fourth latch 162 is accommodated in the latching groove 104 and abuts against the side of the third latch 161 closer to the battery cavity 101 to prevent the battery cover 11 from flipping relative to the housing 10 about the rotating shaft 13. When the battery cover 11 is in the first position, the fourth latch 162 is completely removed from the latching groove 104, and the third latch 161 and the fourth latch 162 do not contact each other.
[0055] By the above arrangement, when the battery cover 11 is in the second position (see Figure 7 ), since the third clamping member 161 and the fourth clamping member 162 are arranged along the extension direction Y of the battery cavity 101 and the fourth clamping member 162 is held against the side of the third clamping member 161 close to the battery cavity 101, when the battery cover 11 is subjected to an external force and has a tendency to flip relative to the compartment body 10, since the third clamping member 161 follows the compartment body 10 to maintain a fixed position, the third clamping member 161 will hinder the movement of the fourth clamping member 162, thereby hindering the flipping movement of the battery cover 11 relative to the compartment body 10, thereby achieving the flip locking effect on the battery cover 11. When the battery cover 11 moves to the first position (see Figure 8 ), since the third clamping member 161 is located outside the clamping slot 104 and has no contact with the fourth clamping member 162, when the battery cover 11 is subjected to external force and has a tendency to flip relative to the warehouse body 10, the third clamping member 161 cannot form an obstacle to the fourth clamping member 162, so the battery cover 11 can automatically flip relative to the warehouse body 10 with the rotating shaft 13 as the axis, so that the user can replace the battery.
[0056] In some embodiments, at least two groups of second position-limiting components 16 are provided, with at least two groups of second position-limiting components 16 located on opposite sides of the battery cover 11. As a specific example, in this embodiment, two groups of second position-limiting components 16 are provided, with the two groups of second position-limiting components 16 located on opposite sides of the battery cover 11, to ensure that the second position-limiting components 16 can stably and reliably limit the flipping of the battery cover 11. In other embodiments, any number of groups of second position-limiting components 16, such as three, four, or five, may be provided, without limitation.
[0057] See also Figure 2 In some embodiments, the battery compartment 100 further includes a first elastic support member 17 and a second elastic support member 18 arranged on the compartment body 10. The first elastic support member 17 and the second elastic support member 18 are both arranged between the rotating shaft 13 and the compartment body 10 and are located between the rotating shaft 13 and the battery cavity 101. The first elastic support member 17 and the second elastic support member 18 are both capable of undergoing elastic deformation.
[0058] When the battery cover 11 is in the second position, the first elastic support member 17 and the second elastic support member 18 can elastically support the battery cover 11. At this time, the battery cover 11 can be roughly regarded as a lever with the rotating shaft 13 as the axis. Because the force exerted by the first elastic support member 17 and the second elastic support member 18 on the battery cover 11 is away from the storage body 10 along the extension direction Y of the battery cavity 101, the portion of the battery cover 11 corresponding to the battery cavity 101 will have a tendency to move toward the storage body 10 along the extension direction Y of the battery cavity 101, thereby ensuring stable contact and conduction between the battery cover 11 and the battery in the battery cavity 101, forming a stable power supply circuit and ensuring the stability and reliability of the battery power supply. In addition, the first elastic support member 17 and the second elastic support member 18 can also prevent the battery cover 11 from excessively turning over and colliding with the storage body 10, thereby also protecting the battery cover 11 and the storage body 10. As a specific example, the first elastic support member 17 can be a metal member used in conjunction with a spring. The first elastic support member 17 is not only used to support the charging cover, but also used to constitute the power supply circuit where the battery is located; the second elastic support member 18 can be an elastic material pad such as a rubber pad, a silicone pad, etc. The second elastic support member 18 is used to play a supporting and protective role when the first elastic support member 17 fails.
[0059] In summary, this embodiment provides a battery compartment 100 comprising a compartment body 10 and a battery cover 11. When replacing batteries, the user must move the battery cover 11 along a first direction X to a first position and then flip the battery cover 11 open relative to the compartment body 10. Because this operation requires applying force to the battery cover 11 in at least two different directions, it effectively prevents the battery cover 11 from accidentally opening due to external forces, thereby providing stability and reliability in battery installation. Furthermore, an electronic atomization device 200 employing the above-described battery compartment 100 allows the user to replace the battery when the battery is exhausted, thereby quickly resuming use of the electronic atomization device 200, effectively meeting customer needs and improving user experience.
[0060] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification and features of different embodiments or examples without contradiction.
[0061] Finally, it should be noted that the above embodiments are intended only to illustrate the technical solutions of this application and are not intended to limit them. Although this application has been described in detail with reference to the aforementioned embodiments, those skilled in the art will appreciate that they may modify the technical solutions described in the aforementioned embodiments or substitute equivalent features for some of the technical features. However, such modifications or substitutions do not deviate from the spirit and scope of the technical solutions of the various embodiments of this application.
Claims
1. A battery compartment, characterized in that: The battery compartment is applied to an electronic atomization device; the battery compartment includes: A compartment body, provided with a battery cavity for accommodating a battery and a mounting port communicating with the battery cavity; a battery cover movably connected to the compartment body to cover or expose the installation opening; and A locking mechanism is provided between the battery cover and the storage body, and is used to lock the battery cover when the battery cover covers the installation opening, so that the relative positions of the battery cover and the storage body remain fixed.
2. The battery compartment according to claim 1, wherein: The battery compartment also includes a rotating shaft; a connecting hole is provided on the battery cover, the rotating shaft is connected to the compartment body and passes through the connecting hole, and when the locking mechanism is unlocked, the battery cover can be flipped relative to the compartment body with the rotating shaft as the axis to expose the installation port.
3. The battery compartment according to claim 2, wherein: The length of the connecting hole in the first direction is greater than the diameter of the rotating shaft, so that the battery cover can move relative to the compartment body along the first direction to switch between a first position and a second position, and the first direction is perpendicular to the axial direction of the rotating shaft and perpendicular to the extension direction of the battery cavity; When the battery cover is in the first position, the battery cover can be turned relative to the storage body about the rotation axis; When the battery cover is in the second position, the locking mechanism locks the battery cover to prevent the battery cover from moving relative to the compartment body.
4. The battery compartment according to claim 3, wherein: The locking mechanism includes a first limiting component, which is arranged between the battery cover and the compartment body, and is used to prevent the battery cover from moving between the first position and the second position.
5. The battery compartment according to claim 4, wherein: The first limiting assembly includes a first clamping member and a second clamping member, the first clamping member is arranged on the storage body, and the second clamping member is arranged on the battery cover; when the battery cover is in the second position, the first clamping member and the second clamping member are arranged along the first direction, and the second clamping member is held against the side of the first clamping member close to the rotating shaft to limit the movement of the battery cover along the first direction.
6. The battery compartment according to claim 5, wherein: One of the first clamping member and the second clamping member is a spring sheet, and the other is a clamping protrusion; the spring sheet extends along the first direction, and the spring sheet has an elastic protrusion to form a clamping portion, and the clamping portion is used to abut against the clamping protrusion.
7. The battery compartment according to claim 3, wherein: The locking mechanism further includes a second limiting assembly, which is disposed between the battery cover and the storage body. The second limiting assembly is configured to prevent the battery cover from flipping relative to the storage body when the battery cover is in the second position.
8. The battery compartment according to claim 7, wherein: The second limiting assembly includes a third clamping member and a fourth clamping member; the third clamping member is arranged on the compartment body, and the fourth clamping member is arranged on the battery cover; When the battery cover is in the second position, the third clamping member and the fourth clamping member are arranged along the extension direction of the battery cavity, and the fourth clamping member is held against the side of the third clamping member close to the battery cavity to limit the battery cover from flipping relative to the storage body about the rotating shaft; when the battery cover is in the first position, the third clamping member and the fourth clamping member do not contact each other.
9. The battery compartment according to claim 7, wherein: At least two groups of the second limiting components are provided, and at least two groups of the second limiting components are respectively located on two opposite sides of the battery cover.
10. An electronic atomization device, characterized in that: It comprises a shell and a battery compartment according to any one of claims 1 to 9, wherein the battery compartment is arranged in the shell.