Atomizing device

CN224710499UActive Publication Date: 2026-09-04GUANGDONG QISITECH CO LTD
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Patent Information

Application Number
CN202521984476.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2026-09-04
Estimated Expiration
2035-09-15

AI Technical Summary

Technical Problem

在回收电芯的步骤前,不可避免地,也需要对底壳进行拆开或分离,导致电芯的更换效率、维护效率、回收效率较低

Benefits of technology

[0041] In this application, the top of the receiving cavity of the bottom shell has an opening, and the gripping member protrudes from the side of the battery cell near the opening of the receiving cavity. When the user needs to remove the battery cell from the bottom shell, the user can directly grip the part of the gripping member protruding from the battery cell near the opening of the receiving cavity by hand or by mechanical parts, thereby removing the battery cell from the receiving cavity through the opening. Compared with the bottom shell of related technologies, this application eliminates the need to disassemble or separate the bottom shell before removing the battery cell, improving the efficiency of battery cell replacement, maintenance, and recycling.

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Abstract

The application discloses an atomizing device, and belongs to the technical field of atomization. The atomizing device comprises a bottom shell, an electric core and a grabbing piece. An accommodating cavity with an open top is formed in the bottom shell. The electric core is arranged in the bottom shell and detachably connected with the bottom shell. The grabbing piece is arranged on the surface of the electric core. The grabbing piece is arranged on the side of the electric core close to the opening of the accommodating cavity. The application can improve the replacement efficiency, maintenance efficiency and recycling efficiency of the electric core.
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Description

Technical Field

[0001] This application relates to the field of atomization technology, and more particularly to an atomization device. Background Technology

[0002] In atomizing devices using related technologies, the battery cell is fixed inside a bottom housing. Typically, the bottom housing containing the battery cell needs to be disassembled or separated to remove the battery cell.

[0003] Therefore, the bottom casing needs to be disassembled or separated before replacing or maintaining the battery cells. After replacing the battery cells, the disassembled or separated bottom casing needs to be reassembled. Before recycling the battery cells, it is inevitable that the bottom casing also needs to be disassembled or separated, resulting in low efficiency in battery cell replacement, maintenance, and recycling.

[0004] Therefore, it is necessary to propose a new technical solution to solve the above-mentioned technical problems. Utility Model Content

[0005] The purpose of this application is to provide an atomizing device that can improve the efficiency of battery cell replacement, maintenance, and recycling.

[0006] To solve the above problems, the technical solution of this application is as follows:

[0007] This application discloses an atomizing device, comprising:

[0008] A bottom shell, wherein a receiving cavity with a top opening is formed inside the bottom shell;

[0009] The battery cell, wherein the battery cell is disposed within the bottom housing and is detachably connected to the bottom housing; and

[0010] A gripper, wherein the gripper is disposed on the surface of the battery cell;

[0011] The gripping member protrudes from the side of the battery cell near the opening of the accommodating cavity.

[0012] In one embodiment of this application, at least a portion of the gripper is disposed on the side of the battery cell.

[0013] In one embodiment of this application, the gripper includes:

[0014] A first gripping part, a portion of which is disposed on the side of the battery cell, and another portion of which protrudes from the side of the battery cell near the opening of the receiving cavity; and

[0015] The second gripping part is located on the side of the battery cell away from the first gripping part, and another part of the second gripping part protrudes from the side of the battery cell near the opening of the receiving cavity.

[0016] In one embodiment of this application, the end of the battery cell closest to the opening of the accommodating cavity is the first end, and the end of the battery cell furthest from the opening of the accommodating cavity is the second end, and the direction from the first end to the second end is the first direction;

[0017] The first gripping part extends along the first direction toward the opening of the receiving cavity;

[0018] The second gripping part extends along the first direction toward the opening of the receiving cavity.

[0019] In one embodiment of this application, the gripper further includes a connecting portion;

[0020] The side of the first gripping part away from the opening of the accommodating cavity is connected to the connecting part;

[0021] The second gripping part is connected to the connecting part on the side away from the opening of the receiving cavity.

[0022] In one embodiment of this application, the first gripping part, the connecting part, and the second gripping part are integrally formed.

[0023] In one embodiment of this application, the atomizing device further includes:

[0024] A circuit board assembly is disposed within the receiving cavity, the circuit board assembly being at least partially located between the bottom wall of the receiving cavity and the battery cell; and

[0025] A clamping element is disposed on the circuit board assembly and electrically connected to the circuit board assembly;

[0026] The bottom of the battery cell has pins that are engaged with and electrically connected to the clamping component.

[0027] In one embodiment of this application, the first gripping portion and the second gripping portion extend to the second end, and the connecting portion is located on the side of the battery cell away from the opening of the accommodating cavity;

[0028] The edge of the connecting part is provided with a clearance opening, and the pin passes through the clearance opening.

[0029] In one embodiment of this application, the gripper is a sticker, which is affixed to the surface of the battery cell.

[0030] In one embodiment of this application, the atomizing device further includes:

[0031] A top shell, wherein a mounting cavity with a bottom opening is formed inside the top shell; and

[0032] The atomizing component is disposed within the mounting cavity;

[0033] The top shell has a plug-in part at one end near the bottom shell, which is inserted into the bottom shell, and the top shell and the bottom shell are detachably connected.

[0034] In one embodiment of this application, the bottom shell includes:

[0035] An outer casing, wherein a fixed cavity with a top opening is formed within the outer casing; and

[0036] An inner housing, wherein the inner housing is disposed within the fixed cavity, and the receiving cavity having a top opening is formed within the inner housing;

[0037] A fixing groove is formed between the inner wall of the fixing cavity and the outer side of the inner shell. The plug-in part extends into the fixing groove and is snapped into the outer shell.

[0038] In one embodiment of this application, the plug-in portion is provided with at least one slot on the side near the outer shell, and the outer shell is provided with a buckle on the side near the plug-in portion, the buckle engaging with the slot;

[0039] The outer casing has a through hole on its side, and the through hole communicates with the fixing groove.

[0040] The outer shell also includes ribs connected to the inner wall of the through hole. The ribs are used to push the insertion part toward one side of the inner shell, so that the slot is separated from the slot, thereby separating the outer shell and the top shell.

[0041] In this application, the top of the receiving cavity of the bottom shell has an opening, and the gripping member protrudes from the side of the battery cell near the opening of the receiving cavity. When the user needs to remove the battery cell from the bottom shell, the user can directly grip the part of the gripping member protruding from the battery cell near the opening of the receiving cavity by hand or by mechanical parts, thereby removing the battery cell from the receiving cavity through the opening. Compared with the bottom shell of related technologies, this application eliminates the need to disassemble or separate the bottom shell before removing the battery cell, improving the efficiency of battery cell replacement, maintenance, and recycling. Attached Figure Description

[0042] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0043] To gain a more complete understanding of this application and its beneficial effects, the following description will be provided in conjunction with the accompanying drawings, wherein the same reference numerals in the following description denote the same parts.

[0044] Figure 1 This is a schematic diagram of an embodiment of the atomizing device of this application;

[0045] Figure 2 This is a schematic diagram of another embodiment of the atomizing device of this application;

[0046] Figure 3 yes Figure 2 An exploded view of the atomizing device shown.

[0047] Figure 4 yes Figure 2 Another exploded view of the atomizing device shown;

[0048] Figure 5 This is a schematic diagram of the battery cell, circuit board assembly, and clamping component of this application;

[0049] Figure 6 yes Figure 2 An exploded view of the atomizing device shown;

[0050] Figure 7 This is a cross-sectional view of the atomizing device of this application;

[0051] Figure 8 This is another cross-sectional view of the atomizing device of this application;

[0052] Figure 9 This is another cross-sectional view of the atomizing device of this application;

[0053] Figure 10 This is another cross-sectional view of the atomizing device of this application;

[0054] Figure 11 This is a schematic diagram of the battery cell and gripper of this application;

[0055] Figure 12 yes Figure 11 Another perspective view;

[0056] Figure 13 This is a schematic diagram of the capture of an item in this application.

[0057] Explanation of reference numerals in the attached figures:

[0058] 100. Atomizing device; T1. Receiving cavity; T2. Fixing cavity; T3. Mounting cavity; T4. Fixing groove;

[0059] 10. Bottom shell; 11. Inner shell; 12. Outer shell; 121. Buckle; 122. Rib; 123. Through hole;

[0060] 20. Battery cell; 21. First terminal; 22. Second terminal; 23. Pin; Z, First direction;

[0061] 30. Gripping component; 31. First gripping part; 32. Second gripping part; 33. Connecting part; 34. Clearance opening;

[0062] 41. Circuit board assembly; 42. Clamping component; 421. Spring;

[0063] 50. Top shell; 51. Insertion part; 511. Slot;

[0064] 60. Atomizing component;

[0065] 71. Mist outlet; 72. First seal; 73. Second seal; 74. First bracket; 75. Third seal; 76. Liquid absorbent cotton; 77. Electrode; 78. Vent; 79. Gas regulating plate;

[0066] 81. Second support; 82. Buffer pad. Detailed Implementation

[0067] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the protection scope of this application.

[0068] This application discloses an atomizing device 100. The atomizing device 100 is used to heat and atomize an atomizable aerosol matrix to generate an aerosol.

[0069] Please see Figure 1 The atomizing device 100 includes a bottom shell 10, a battery cell 20, and a gripping component 30.

[0070] The bottom shell 10 has a receiving cavity T1 with a top opening.

[0071] The battery cell 20 is located inside the bottom shell 10 and is detachably connected to the bottom shell 10.

[0072] The gripper 30 is disposed on the surface of the battery cell 20. The gripper 30 protrudes from the side of the battery cell 20 near the opening of the receiving cavity T1.

[0073] In this embodiment, the top of the accommodating cavity T1 of the bottom shell 10 has an opening, and the gripping member 30 protrudes from the side of the battery cell 20 near the opening of the accommodating cavity T1. When the user needs to remove the battery cell 20 from the bottom shell 10, the user can directly grip the part of the gripping member 30 protruding from the side of the battery cell 20 near the opening of the accommodating cavity T1 by hand or by mechanical parts, thereby removing the battery cell 20 from the accommodating cavity T1 through the opening. Compared with the bottom shell 10 of related technologies, this application does not require disassembling or separating the bottom shell 10 before removing the battery cell 20, thus improving the replacement efficiency, maintenance efficiency, and recycling efficiency of the battery cell 20.

[0074] Please see Figure 2 Optionally, the atomizing device 100 also includes a top shell 50 and an atomizing component 60.

[0075] The top shell 50 has an internal mounting cavity T3 with a bottom opening.

[0076] The atomizing component 60 is located inside the mounting cavity T3.

[0077] Please see Figure 3 The top shell 50 has a connector 51 at one end near the bottom shell 10. The connector 51 is inserted into the bottom shell 10. The top shell 50 and the bottom shell 10 are detachably connected.

[0078] In this embodiment, please refer to Figure 2 During use, the top shell 50 is connected to the bottom shell 10. The atomizing component 60 inside the top shell 50 is electrically connected to the battery cell 20 inside the bottom shell 10. Before disassembling the battery cell 20, the top shell 50 must be separated from the bottom shell 10 to remove the battery cell 20 from the bottom shell 10. Please refer to [link / reference]. Figure 3 After replacing the battery cell 20, the plug part 51 of the top shell 50 is inserted into the bottom shell 10, thereby completing the connection between the top shell 50 and the bottom shell 10, so that the atomizing device 100 can be reused.

[0079] Please see Figure 4 Optionally, a mist outlet 71 is provided on the side of the top shell 50 away from the bottom shell 10, and the mist outlet 71 communicates with the mounting cavity T3 of the top shell 50. The mist outlet 71 is used to release the mist generated by the atomizing component 60 in the mounting cavity T3.

[0080] Please see Figure 4 Optionally, the atomizing device 100 further includes a first sealing element 72. The first sealing element 72 is disposed within the mounting cavity T3 of the top shell 50 and located between the mist outlet 71 and the atomizing assembly 60. The first sealing element 72 reduces the flow of liquid from the mounting cavity T3 to the mist outlet 71, improving the sealing effect inside the atomizing device 100. The first sealing element 72 may be a sealing silicone sealant. The mist outlet 71 passes through the first sealing element 72 and communicates with the air outlet of the atomizing assembly 60.

[0081] Please see Figure 4 Optionally, the atomizing device 100 also includes a first bracket 74 and a second seal 73.

[0082] The first bracket 74 is located within the mounting cavity T3 of the top shell 50. The atomizing assembly 60 is located between the first seal 72 and the first bracket 74.

[0083] The second seal 73 is disposed on the side of the first bracket 74 near the atomizing assembly 60. The atomizing assembly 60 is located between the first seal 72 and the second seal 73.

[0084] The first bracket 74 is used to separate the top shell 50 from the bottom shell 10. After separating the top shell 50 from the bottom shell 10, the first bracket 74 can fix the atomizing component 60, the first seal 72, the second seal 73 and other components in the mounting cavity T3 of the top shell 50, thereby improving the efficiency of reassembling the atomizing component 60 after replacing the battery cell 20.

[0085] The second seal 73 is used to reduce the flow of liquid from the mounting cavity T3 into the receiving cavity T1 of the base shell 10. The second seal 73 may be a sealing silicone sealant.

[0086] The atomizing component 60 has an air inlet and a wire on the side away from the mist outlet 71. The first bracket 74 has a through hole. The air inlet of the atomizing component 60 is connected to the through hole of the first bracket 74. The wire of the atomizing component 60 passes through the through hole of the first bracket 74 and is electrically connected to the battery cell 20.

[0087] Please see Figure 4 Optionally, the bottom shell 10 has multiple air holes 78 on the side away from the top shell 50, and the air holes 78 communicate with the receiving cavity T1 of the bottom shell 10. The air holes 78 of the bottom shell 10, the receiving cavity T1 of the bottom shell 10, the through holes of the first support 74, the air inlet and outlet of the atomizing component 60, and the mist outlet 71 of the top shell 50 form a connected air passage. Air can reach the atomizing component 60 along the air passage, and the mist generated by the atomizing component 60 can reach the mist outlet 71 along the air passage.

[0088] Please see Figure 4 Optionally, the atomizing device 100 also includes an air regulating plate 79. The air regulating plate 79 is disposed inside the bottom shell 10. The multiple air holes 78 have different diameters to accommodate different air intake volumes. The air regulating plate 79 is rotatably mounted on the multiple air holes 78, and the air regulating plate 79 has an air regulating port. Rotating the air regulating plate 79 allows the air regulating port to connect with one of the multiple air holes 78, thereby adjusting the air intake volume of the atomizing device 100.

[0089] Please see Figure 4 Optionally, the atomizing device 100 further includes a second bracket 81. The second bracket 81 is disposed within the receiving cavity T1 of the bottom shell 10. The battery cell 20 is disposed on the second bracket 81.

[0090] Optionally, the atomizing device 100 also includes absorbent cotton 76. The absorbent cotton 76 is disposed on the second support 81. The absorbent cotton 76 is used to absorb leakage and prevent airway blockage.

[0091] Please see Figure 4 Optionally, the atomizing device 100 also includes a circuit board assembly 41, an electrode 77, and a clamping member 42.

[0092] The circuit board assembly 41 and the electrode 77 are fixed to the second bracket 81. The circuit board assembly 41 is electrically connected to the electrode 77. The electrode 77 is electrically connected to the wire passing through the through hole of the atomizing assembly 60.

[0093] Please see Figure 4 Optionally, the atomizing device 100 further includes a third seal 75, which seals the opening of the accommodating cavity T1 to reduce leakage from the top shell 50 into the accommodating cavity T1. The first seal 72, the second seal 73, and the third seal 75 are all provided with air ports to ensure air passage communication and for wires to pass through them.

[0094] Please see Figure 5 The circuit board assembly 41 is disposed within the accommodating cavity T1. The circuit board assembly 41 is at least partially located between the bottom wall of the accommodating cavity T1 and the battery cell 20.

[0095] The clamping member 42 is disposed on the circuit board assembly 41 and is electrically connected to the circuit board assembly 41.

[0096] The bottom of the battery cell 20 is provided with pin 23. Pin 23 is engaged with and electrically connected to the clamping member 42.

[0097] In this embodiment, the clamping member 42 includes two spring tabs 421. When the pin 23 is inserted into the clamping member 42, the two spring tabs 421 of the clamping member 42 will deform outward and clamp the pin 23 inward, ensuring that the clamping member 42 and the pin 23 are reliably connected. At the same time, when disassembling the battery cell 20, it is convenient to separate the pin 23 and the clamping member 42, thereby improving the disassembly efficiency of the battery cell 20.

[0098] Optionally, a buffer pad 82 is also provided between the battery cell 20 and the circuit board assembly 41. The material of the buffer pad 82 may be ethylene-vinyl acetate copolymer, which serves as insulation and cushioning. The buffer pad 82 has through holes, through which the pin 23 can pass and engage with the clamping member 42.

[0099] Please see Figure 6 Optionally, the bottom shell 10 includes an outer shell 12 and an inner shell 11.

[0100] A fixed cavity T2 with a top opening is formed inside the outer shell 12.

[0101] The inner shell 11 is disposed within the fixed cavity T2. The inner shell 11 has a receiving cavity T1 with a top opening.

[0102] A fixing groove T4 is formed between the inner wall of the fixing cavity T2 and the outer side of the inner shell 11. The insertion part 51 extends into the fixing groove T4. The insertion part 51 is connected to the outer shell 12 by a snap-fit ​​121.

[0103] In this embodiment, when it is necessary to remove the battery cell 20, the slot 511 of the insertion part 51 is separated from the latch 121 of the outer shell 12, thus separating the bottom shell 10 from the top shell 50. After inserting the battery cell 20, the insertion part 51 is inserted into the fixing slot T4, and the latch 121 is connected to the slot 511, thus connecting the insertion part 51 to the latch 121 of the outer shell 12.

[0104] Optionally, the plug-in portion 51 is provided with at least one slot 511 on the side near the outer casing 12, and the outer casing 12 is provided with a buckle 121 on the side near the plug-in portion 51, and the buckle 121 engages with the slot 511.

[0105] The outer casing 12 has a through hole 123 on its side. The through hole 123 communicates with the fixing groove T4.

[0106] The outer shell 12 also includes a rib 122. The rib 122 is connected to the inner wall of the through hole 123. The rib 122 is used to push the insertion part 51 toward one side of the inner shell 11, so as to separate the slot 511 from the slot 511, thereby separating the outer shell 12 and the top shell 50.

[0107] Before separating the top shell 50 and the bottom shell 10, please refer to Figure 7 The buckle 121 connects with the slot 511, at which point the bottom shell 10 and the top shell 50 are fixedly connected. Please refer to [link / reference]. Figure 8 The reinforcing rib 122 is located on one side of the insertion part 51. The reinforcing rib 122 and the insertion part 51 can be in contact or have a certain gap, which is not limited here.

[0108] During the separation of the top shell 50 and the bottom shell 10, please refer to Figure 9 The user pushes the rib 122 towards one side of the inner shell 11 from the outside of the outer shell 12. See also... Figure 10 At this time, the slot 511 provided on the insertion part 51 will also separate from the buckle 121 on the outer shell 12. After the buckle 121 separates from the slot 511, the insertion part 51 can be pulled out from the bottom shell 10, thereby completing the separation of the bottom shell 10 and the top shell 50.

[0109] Optionally, in one embodiment, the gripper 30 is a sticker, which is affixed to the surface of the battery cell 20.

[0110] The sticker can be made of polyvinyl chloride (PVC) or other plastics; no specific material is specified here. The sticker can be applied to the surface of the battery cell 20 using adhesive or by electrostatic adsorption.

[0111] Alternatively, in another embodiment, the gripper 30 can be made of metal. The gripper 30 can be copper foil, aluminum foil, etc. Compared to stickers, the metal gripper 30 has higher structural strength and also possesses certain thermal conductivity, allowing it to quickly conduct heat away from the surface of the battery cell 20, thus reducing the operating temperature of the battery cell 20. The metal gripper 30 can be fixed to the battery cell 20 through nesting, welding, or adhesive bonding; no limitation is made here.

[0112] Alternatively, in one embodiment, the gripper is disposed on the side of the cell near the opening of the receiving cavity.

[0113] Please see Figure 11 Optionally, at least a portion of the gripper 30 is disposed on the side of the battery cell 20.

[0114] In this embodiment, the gripper 30 can be disposed only on the side of the battery cell 20. When it is necessary to remove the battery cell 20, the part of the gripper 30 protruding from the battery cell 20 near the opening of the accommodating cavity T1 can be clamped, so that the battery cell 20 can be removed from the accommodating cavity T1 through the opening of the accommodating cavity T1.

[0115] Please see Figure 11 The gripper 30 includes a first gripping part 31 and a second gripping part 32.

[0116] A portion of the first gripping part 31 is disposed on the side of the battery cell 20, and another portion of the first gripping part 31 protrudes from the side of the battery cell 20 near the opening of the accommodating cavity T1.

[0117] A portion of the second gripping part 32 is disposed on the side of the battery cell 20 away from the first gripping part 31, and another portion of the second gripping part 32 protrudes from the side of the battery cell 20 near the opening of the accommodating cavity T1.

[0118] In this embodiment, when the gripper 30 is a sticker and is attached to the side of the battery cell 20 by electrostatic or adhesive methods, using only a single gripper 30 can lead to concentrated force on the single gripper 30 during the removal of the battery cell 20. This can result in the tension on the gripper 30 exceeding the adhesive force on the surface of the battery cell 20, causing the gripper 30 to separate from the surface of the battery cell 20 and making it impossible to remove. Therefore, this embodiment divides the gripper 30 into a first gripping part 31 and a second gripping part 32, increasing the adhesive area of ​​the gripper 30 on the surface of the battery cell 20, ensuring stable adhesion of the gripper 30 to the surface of the battery cell 20, and improving the removal efficiency of the battery cell 20.

[0119] Please see Figure 12 Optionally, the end of the battery cell 20 closest to the opening of the accommodating cavity T1 is designated as the first end 21. The end of the battery cell 20 furthest from the opening of the accommodating cavity T1 is designated as the second end 22. The direction from the first end 21 to the second end 22 is the first direction Z.

[0120] The first gripping part 31 extends along the first direction Z toward the opening away from the receiving cavity T1.

[0121] The second gripping part 32 extends along the first direction Z toward the opening away from the receiving cavity T1.

[0122] In this embodiment, both the first gripping part 31 and the second gripping part 32 extend along the first direction Z, which can further increase the adsorption area of ​​the gripping member 30 on the surface of the battery cell 20, making the gripping member 30 more stably adsorbed on the surface of the battery cell 20, and further improving the extraction efficiency of the battery cell 20.

[0123] Please see Figure 12 Optionally, the gripper 30 further includes a connecting portion 33.

[0124] The first gripping part 31 is connected to the connecting part 33 on the side away from the opening of the accommodating cavity T1.

[0125] The second gripping part 32 is connected to the connecting part 33 on the side away from the opening of the accommodating cavity T1.

[0126] The connecting part 33 can be disposed on the side or the bottom surface of the battery cell 20; the placement of the connecting part 33 is not limited here. The connecting part 33 connects the first gripping part 31 and the second gripping part 32, thereby further increasing the adsorption area of ​​the gripping member 30 on the surface of the battery cell 20, making the gripping member 30 more stably adsorbed on the surface of the battery cell 20, and further improving the extraction efficiency of the battery cell 20.

[0127] Please see Figure 12The first gripping part 31 and the second gripping part 32 extend to the second end 22. The connecting part 33 is located on the side of the cell 20 away from the opening of the receiving cavity T1.

[0128] The edge of the connecting part 33 is provided with a clearance opening 34. The pin 23 passes through the clearance opening 34.

[0129] In this embodiment, the connecting portion 33 is disposed at the second end 22 of the battery cell 20. Compared with the solution where the connecting portion 33 is disposed on the side of the battery cell 20, the solution where the connecting portion 33 is disposed at the bottom of the battery cell 20 has a relatively larger adsorption area on the surface of the battery cell 20. This can further increase the adsorption area of ​​the gripper 30 on the surface of the battery cell 20, making the gripper 30 more stably adsorbed on the surface of the battery cell 20, and further improving the extraction efficiency of the battery cell 20.

[0130] In order to avoid interference between the connection part 33 located at the bottom of the battery cell 20 and the pin 23 of the battery cell 20, a clearance opening 34 is provided at the edge of the connection part 33, and the pin 23 passes through the clearance opening 34 to connect with the clamping member 42.

[0131] Please see Figure 13 The first gripping part 31, the connecting part 33 and the second gripping part 32 are integrally formed.

[0132] In this embodiment, the one-piece molded gripper 30 can improve assembly efficiency. When fixing the gripper 30 to the surface of the battery cell 20, it can be fixed in one step, eliminating the need for three separate fixing steps. In addition, the one-piece molded gripper 30 has higher structural strength.

[0133] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more features. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0134] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0135] The embodiments, implementation methods, and related technical features of this application can be combined and substituted for each other without conflict.

[0136] The above are merely preferred embodiments of this application and are not intended to limit this application in any way. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of this application without departing from the scope of the technical solution of this application shall still fall within the scope of the technical solution of this application.

Claims

1. An atomizing device, characterized in that, include: A bottom shell, wherein a receiving cavity with a top opening is formed inside the bottom shell; The battery cell, wherein the battery cell is disposed within the bottom housing and is detachably connected to the bottom housing; and A gripper, wherein the gripper is disposed on the surface of the battery cell; The gripping member protrudes from the side of the battery cell near the opening of the accommodating cavity.

2. The atomizing device as described in claim 1, characterized in that, At least a portion of the gripper is located on the side of the battery cell.

3. The atomizing device as described in claim 2, characterized in that, The grabber includes: A first gripping part, a portion of which is disposed on the side of the battery cell, and another portion of which protrudes from the side of the battery cell near the opening of the receiving cavity; and The second gripping part is located on the side of the battery cell away from the first gripping part, and another part of the second gripping part protrudes from the side of the battery cell near the opening of the receiving cavity.

4. The atomizing device as described in claim 3, characterized in that, The end of the battery cell closest to the opening of the accommodating cavity is the first end, and the end of the battery cell furthest from the opening of the accommodating cavity is the second end. The direction from the first end to the second end is the first direction. The first gripping part extends along the first direction toward the opening of the receiving cavity; The second gripping part extends along the first direction toward the opening of the receiving cavity.

5. The atomizing device as described in claim 4, characterized in that, The gripper also includes a connecting part; The side of the first gripping part away from the opening of the accommodating cavity is connected to the connecting part; The second gripping part is connected to the connecting part on the side away from the opening of the receiving cavity.

6. The atomizing device as described in claim 5, characterized in that, The first gripping part, the connecting part, and the second gripping part are integrally formed.

7. The atomizing device as described in claim 5, characterized in that, The atomizing device also includes: A circuit board assembly is disposed within the receiving cavity, the circuit board assembly being at least partially located between the bottom wall of the receiving cavity and the battery cell; and A clamping element is disposed on the circuit board assembly and electrically connected to the circuit board assembly; The bottom of the battery cell has pins that are engaged with and electrically connected to the clamping component.

8. The atomizing device as described in claim 7, characterized in that, The first gripping part and the second gripping part extend to the second end, and the connecting part is located on the side of the battery cell away from the opening of the accommodating cavity; The edge of the connecting part is provided with a clearance opening, and the pin passes through the clearance opening.

9. The atomizing device according to any one of claims 1-8, characterized in that, The gripper is a sticker, which is affixed to the surface of the battery cell.

10. The atomizing device according to any one of claims 1-8, characterized in that, The atomizing device also includes: A top shell, wherein a mounting cavity with a bottom opening is formed inside the top shell; and An atomizing component is disposed within the mounting cavity; The top shell has a plug-in part at one end near the bottom shell, which is inserted into the bottom shell, and the top shell and the bottom shell are detachably connected.

11. The atomizing device as described in claim 10, characterized in that, The bottom shell includes: An outer casing, wherein a fixed cavity with a top opening is formed within the outer casing; and An inner housing, wherein the inner housing is disposed within the fixed cavity, and the receiving cavity having a top opening is formed within the inner housing; A fixing groove is formed between the inner wall of the fixing cavity and the outer side of the inner shell. The plug-in part extends into the fixing groove and is snapped into the outer shell.

12. The atomizing device as described in claim 11, characterized in that, The plug-in portion is provided with at least one slot on the side near the outer shell, and the outer shell is provided with a buckle on the side near the plug-in portion, the buckle engaging with the slot; The outer casing has a through hole on its side, and the through hole communicates with the fixing groove. The outer shell also includes ribs connected to the inner wall of the through hole. The ribs are used to push the insertion part toward one side of the inner shell, so that the slot is separated from the slot, thereby separating the outer shell and the top shell.