Atomization component assembling jig

By designing the positioning holes and guide bevels in the atomizing component assembly fixture, the alignment problem of manually assembling the oil storage cotton and plastic bracket was solved, achieving an efficient and reliable assembly process and ensuring consistent assembly quality.

CN223640175UActive Publication Date: 2025-12-09HG INNOVATION LTD
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Patent Information

Application Number
CN202423017439.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-12-09
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

In existing technologies, the assembly of the oil reservoir and plastic bracket of the atomizing component requires manual alignment, which is difficult, resulting in long operation time and inconsistent assembly quality.

Method used

The atomizing assembly fixture includes a base assembly and clamping parts. The positioning holes and guide ramps guide the alignment and installation of the liquid storage component and the bracket. The relative movement of the clamping parts and the mounting parts is used to achieve the positioning and installation of the liquid storage component, and the vertical force is used to ensure that the longitudinal installation is in place.

Benefits of technology

It reduces the difficulty of aligning the liquid reservoir and the support in the horizontal direction, improves assembly efficiency and quality consistency, simplifies the removal process, and reduces the overall time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an atomization assembly assembling jig, an atomization assembly comprises a liquid storage part and a support, the support is provided with a mounting groove used for mounting the liquid storage part, and the atomization assembly assembling jig comprises a base assembly and a clamping part; the base assembly comprises a clamping piece and a fixing piece, the clamping piece is movably arranged on one side of the fixing piece, a first positioning hole used for containing the liquid storage piece is formed in the clamping piece in a penetrating mode, and the fixing piece corresponds to the first positioning hole and abuts against one end of the liquid storage piece; the clamping piece is arranged on the side, away from the fixing piece, of the clamping piece, a second positioning hole is formed in the position, facing the first positioning hole, of the clamping piece in a penetrating mode, the support is installed on the side, away from the clamping piece, of the second positioning hole, and the installation groove faces the side, close to the clamping piece, of the second positioning hole. The clamping piece is configured to drive the clamping piece to move relative to the fixing piece under the action of external force, so that the fixing piece drives the liquid storage piece to move towards the second positioning hole along the first positioning hole, and the liquid storage piece is positioned and mounted in the mounting groove through the second positioning hole.
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Description

TECHNICAL FIELD

[0001] The utility model relates to atomization subassembly assembly technical field especially relates to a kind of atomization subassembly assembly jigs. BACKGROUND

[0002] The electronic atomization device is an electronic product that heats and atomizes liquid matrix such as tobacco tar, liquid medicine, etc. into aerosol for smoking. The electronic atomization device usually includes two parts of an atomization assembly and a power supply assembly. In the production process, the atomization assembly is usually manually assembled into a whole by multiple components. During the assembly process, the operator needs to assemble the oil storage cotton and the plastic support together, that is, to assemble one end of the oil storage cotton into the mounting groove formed by the plastic support. Due to the need for oil guiding, the part of the oil storage cotton assembled into the mounting groove needs to be in a state of being extruded. Therefore, the opening size of the plastic support is usually designed to be larger than the cross-sectional size of the oil storage cotton, so that the oil storage cotton and the mounting groove of the plastic support are in interference fit.

[0003] However, the current assembly of the oil storage cotton and the plastic support is usually manually assembled, which requires manual alignment of the mounting groove on the oil storage cotton and the support. The alignment is difficult and requires high skill of the operator. The manual extrusion of the oil storage cotton part, the force, and the assembly into the plastic support have certain requirements, which results in long time for manual assembly and cannot guarantee the consistency of the assembly quality of all assembled products. SUMMARY

[0004] The technical problem to be solved by the present application is to provide an atomization assembly assembly jig to solve at least one defect of the prior art.

[0005] In some embodiments, an atomization assembly assembly jig is provided, which includes a liquid storage member and a support, and the support is provided with a mounting groove for mounting the liquid storage member. The atomization assembly assembly jig includes a base assembly and a clamping member. The base assembly includes a clamping member and a fixing member, and the clamping member is movably arranged on one side of the fixing member. The clamping member is provided with a first positioning hole for accommodating the liquid storage member, and the fixing member is provided corresponding to the first positioning hole and abuts one end of the liquid storage member. The clamping member is provided on the side away from the fixing member, and the clamping member is provided with a second positioning hole at the position facing the first positioning hole. The second positioning hole is provided with the support on the side away from the clamping member, and the mounting groove is provided on the side of the second positioning hole close to the clamping member. The clamping member is configured to drive the clamping member to move relative to the fixing member under the action of external force, so that the fixing member drives the liquid storage member to move towards the second positioning hole along the first positioning hole, and the liquid storage member is positioned and mounted into the mounting groove through the second positioning hole.

[0006] In some embodiments, the second positioning hole has a cross-sectional dimension smaller than that of the first positioning hole, and the cross-sectional dimension of the second positioning hole is equal to or smaller than the cross-sectional dimension of the mounting groove.

[0007] In some embodiments, the hole wall surface of the first positioning hole is provided with a first guide inclined surface at the opening edge close to the clamping member, and the first guide inclined surface is inclined towards the periphery of the first positioning hole; and / or, the hole wall surface of the second positioning hole is provided with a second guide inclined surface at the opening edge close to the clamping member, and the second guide inclined surface is inclined towards the periphery of the second positioning hole.

[0008] In some embodiments, the surface of the clamping member facing the clamping member is provided with a first positioning portion, and the surface of the clamping member facing the clamping member is provided with a second positioning portion, and the first positioning portion and the second positioning portion are engaged with each other.

[0009] In some embodiments, the atomization assembly assembly jig further comprises a guide member, the guide member is arranged on the side of the clamping member away from the clamping member, and the clamping member and the guide member are in sliding connection.

[0010] In some embodiments, the guide member comprises a guide column, and the clamping member is provided with a mounting hole penetrating at least the surface of the clamping member away from the clamping member, and the guide column and the mounting hole are in sliding connection.

[0011] In some embodiments, the guide member further comprises a linear bearing arranged in the mounting hole, and the guide column and the linear bearing are in sliding connection.

[0012] In some embodiments, the atomization assembly assembly jig further comprises an elastic member, and the elastic member is connected to the side of the clamping member away from the clamping member.

[0013] In some embodiments, the fixing member is provided with a position avoiding hole corresponding to the first positioning hole, and the position avoiding hole penetrates at least the surface of the fixing member abutting against the liquid storage member.

[0014] In some embodiments, the surface of the clamping member away from the clamping member is concavely provided with at least two pressing grooves, and the two pressing grooves are respectively located on the opposite sides of the second positioning hole.

[0015] The atomization assembly assembly jig according to the above embodiment, since the clamping piece is provided with the first positioning hole for accommodating the liquid storage piece, the second positioning hole is provided on the side of the clamping piece away from the first positioning hole, and the mounting groove of the bracket is arranged on the side of the second positioning hole close to the clamping piece, the relative position of the liquid storage piece and the bracket in the horizontal direction is determined only by ensuring that the liquid storage piece is inserted into the second positioning hole where the bracket is arranged, and therefore the difficulty of aligning the liquid storage piece and the bracket in the horizontal direction is reduced; since the clamping piece is movably arranged on one side of the fixed piece, the clamping piece is configured to drive the clamping piece to move relative to the fixed piece under the action of an external force, so that the fixed piece drives the liquid storage piece to move along the first positioning hole and towards the second positioning hole, and during the movement, the liquid storage piece is correspondingly subjected to the downward extrusion force of the bracket and the upward supporting force of the fixed piece, so that the bracket and the liquid storage piece are longitudinally installed in place under the action of the two forces in the upward and downward directions; at the same time, after the fixed piece drives the liquid storage piece to move along the first positioning hole and towards the second positioning hole, the operator can easily take out the assembled atomization assembly. Since the difficulty of aligning the liquid storage piece and the bracket is reduced, and the assembled atomization assembly is also relatively easy to take out, the overall assembly time is reduced; the same base assembly and clamping piece can be repeatedly used for the assembly of multiple atomization assemblies, so that the assembly quality consistency of all assembled products can be ensured. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a structural schematic diagram of an atomization assembly;

[0017] Figure 2 is Figure 1 is an exploded structural schematic diagram of the atomization assembly shown in

[0018] Figure 3 is Figure 2 is a further exploded structural schematic diagram of the atomization assembly shown in

[0019] Figure 4 is a structural schematic diagram of an atomization assembly assembly jig in some embodiments;

[0020] Figure 5 is Figure 4 is a longitudinal sectional structural schematic diagram of the atomization assembly assembly jig shown in

[0021] Figure 6 is Figure 4 is a structural schematic diagram of the liquid storage piece and the bracket preassembled in the atomization assembly assembly jig in

[0022] Figure 7 is Figure 6 is a longitudinal sectional structural schematic diagram of the liquid storage piece and the bracket preassembled in the atomization assembly assembly jig shown in

[0023] Figure 8 is Figure 4 is a structural schematic view of a first state of a liquid storage member and a bracket in a press-fitting process of an atomization assembly assembly jig;

[0024] Figure 9 is Figure 8 is a longitudinal sectional structural schematic view of a press-fitting of the liquid storage member and the bracket in the atomization assembly assembly jig;

[0025] Figure 10 is a structural schematic view of the liquid storage member, the bracket and the clamping member before assembly in some embodiments;

[0026] Figure 11 is a structural schematic view of the clamping member and the bracket after assembly in some embodiments;

[0027] Figure 12 is Figure 4 is a structural schematic view of a second state of a liquid storage member and a bracket in a press-fitting process of an atomization assembly assembly jig;

[0028] Figure 13 is Figure 4 is a structural schematic view of a third state of a liquid storage member and a bracket in a press-fitting process of an atomization assembly assembly jig;

[0029] Figure 14 is a structural schematic view of an atomization assembly after being separated from an atomization assembly assembly jig;

[0030] Figure 15 is Figure 4 is another longitudinal sectional structural schematic view of an atomization assembly assembly jig;

[0031] In the drawings, the reference signs are as follows:

[0032] 1-atomization assembly, 11-liquid storage member, 12-bracket, 120-mounting groove, 13-housing, 14-heating member, 15-cotton swab;

[0033] 2-base assembly, 20-first positioning hole, 211-clamping member, 212-elastic part, 213-guiding column, 22-fixing member, 23-linear bearing, 231-sleeve, 232-rolling ball, 24-base, 25-avoiding hole, 26-first positioning part, 27-mounting hole;

[0034] 3-clamping member, 30-second positioning hole, 301-first region, 302-second region, 31-first end face, 32-second end face, 33-second positioning part, 34-pressing groove;

[0035] 41-first guiding inclined surface, 42-second guiding inclined surface. DETAILED DESCRIPTION

[0036] The utility model will be further described in detail below through specific implementation and the attached drawings. Similar elements in different embodiments adopt relevant similar element labels. In the following embodiments, many details are described in order to make the present application better understood. However, those skilled in the art can easily recognize that part of the features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification in order to avoid the core part of the present application being overwhelmed by too much description, and for those skilled in the art, detailed description of the related operation is not necessary, and they can fully understand the related operation according to the description in the specification and the general technical knowledge in the art.

[0037] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various embodiments. Meanwhile, the steps or actions in the method description can also be sequentially replaced or adjusted in a manner that those skilled in the art can easily see. Therefore, the various sequences in the specification and the drawings are only for the purpose of clearly describing a certain embodiment, and do not mean that the sequence is necessary, unless otherwise stated that a certain sequence must be followed.

[0038] The serial numbers of the components in this paper, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any sequence or technical meaning. Unless otherwise specified, the "connection" and "coupling" in the present application include direct and indirect connection (coupling).

[0039] As Figures 1 to 3As shown, an atomization assembly 1 mainly includes a liquid storage member 11, a support 12, a housing 13, an atomization core, etc. The liquid storage member 11 is used to store liquid atomization substrate. The liquid storage member 11 can be liquid storage cotton, which can be formed by winding layers of cotton material on a cotton swab 15. Thus, the liquid storage member 11 has a longitudinal through hole after forming, and the cotton swab 15 and the atomization core are both arranged in the through hole. The atomization core includes a heating body and a heating element 14 connected with each other. The heating element 14 is connected with a power assembly and is powered on to make the heating body generate heat. The atomization substrate stored in the liquid storage member 11 is heated and atomized to generate aerosol for a user to smoke after being in contact with the heating body in the powered-on state. A part of the cotton swab 15 extends upward out of the through hole, and a part of the heating element 14 of the atomization core extends downward out of the through hole. The support 12 is formed with a mounting groove 120 for mounting the liquid storage member 11. One end of the liquid storage member 11 extends into the mounting groove 120 and is in interference fit with the mounting groove 120. Thus, the part of the liquid storage member 11 extending into the mounting groove 120 is in a squeezed state, and the reserved squeezing force provides power for the atomization substrate to output to the heating body. The housing 13 surrounds the liquid storage member 11 and the support 12 and is connected with the support 12, thereby forming a cavity for accommodating the liquid storage member 11 and the support 12. The housing 13 is provided with a through hole 130 for the cotton swab 15 to extend out of the cavity. The housing 13 is provided with a through hole 131 for the heating element 14 of the atomization core to extend out of the cavity. The support 12 is provided with a through hole 120 for the cotton swab 15 to extend out of the cavity. The support 12 is provided with a through hole 121 for the heating element 14 of the atomization core to extend out of the cavity. Figure 1 The atomization assembly 1 shown.

[0040] Please refer to Figures 4 to 9 , Figure 4 and Figure 5 The structure of the atomization assembly assembly jig of an embodiment is shown, Figure 6 and Figure 7 The overall structure of the liquid storage member 11 and the support 12 when they are not assembled together on the atomization assembly assembly jig is shown, Figure 8 and Figure 9 The overall structure of the liquid storage member 11 and the support 12 after they are butted together on the atomization assembly assembly jig is shown. As Figure 4 and Figure 5 In some embodiments, an atomization assembly assembly jig mainly includes a base assembly 2 and a clamping piece 3. The base assembly 2 and the clamping piece 3 are detachably connected. The base assembly 2 and the clamping piece 3 are respectively used to preliminarily position the liquid storage member 11 and the support 12, and the operator only needs to butt the base assembly 2 and the clamping piece 3 to assemble the liquid storage member 11 and the support 12 together.

[0041] The base assembly 2 comprises a clamping member 211 and a fixing member 22. The clamping member 211 is movably arranged on one side of the fixing member 22. The clamping member 211 is provided with a first positioning hole 20 for receiving the liquid storage member 11. The fixing member 22 is arranged corresponding to the first positioning hole 20 and abuts one end of the liquid storage member 11. The clamping member 3 is arranged on the side of the clamping member 211 away from the fixing member 22 in the longitudinal direction. The clamping member 3 is provided with a second positioning hole 30 at the position facing the first positioning hole 20, so that the second positioning hole 30 is opposite to the first positioning hole 20. The second positioning hole 30 is away from the side of the clamping member 211 and is used for mounting the bracket 12. The mounting groove 120 of the bracket 12 is close to the side of the clamping member 211 facing the second positioning hole 30. The clamping member 3 is configured to drive the clamping member 211 to move relative to the fixing member 22 under the action of an external force, so that the fixing member 22 drives the liquid storage member 11 to move along the first positioning hole 20 towards the second positioning hole 30, and the liquid storage member 11 is positioned and mounted into the mounting groove 120 through the second positioning hole 30. That is, the second positioning hole 30 comprises a first part and a second part. The first part is closer to the first positioning hole 20 than the second part. The second part is used for mounting the bracket 12, and the first part is used for the liquid storage member 11 to extend into it, so that the liquid storage member 11 can be positioned and mounted into the mounting groove 120. As shown in Figure 5 , the second positioning hole 30 on the clamping member 3 is a through hole, and the first positioning hole 20 on the clamping member 211 is also a through hole. Specifically, the clamping member 3 comprises a first end surface 31 (referring to the lower end surface of the clamping member 3 in the figure) and a second end surface 32 (referring to the upper end surface of the clamping member 3 in the figure). The first end surface 31 and the second end surface 32 are oppositely arranged on the upper and lower sides, and the first end surface 31 is arranged towards the base assembly 2. The second positioning hole 30 penetrates the first end surface 31 and the second end surface 32.

[0042] Please refer to Figures 4 to 9 in order Figure 4 and Figure 5 , the clamping member 3 and the base assembly 2 are prepared to be separated from each other; wherein the position of the base assembly 2 is fixed, and the operator only needs to move the clamping member 3. As shown in Figure 6 and Figure 7As shown, the mounting groove 120 of the bracket 12 is fixed by being inserted into the second positioning hole 30 of the clamping member 3 on the side (downward) of the base assembly 2. The bracket 12 occupies the space of the second part of the second positioning hole 30. The second positioning hole 30 also reserves an assembly space (the first part of the second positioning hole 30) for the liquid storage member 11 to extend into on the side close to the base assembly 2. Similarly, the liquid storage member 11 is fixed by being inserted into the first positioning hole 20 of the clamping member 211 of the base assembly 2, and a part of the liquid storage member 11 is fixed in the first positioning hole 20 and another part extends out of the first positioning hole 20 upward. Then the clamping member 3 is placed directly above the base assembly 2, so that the second positioning hole 30 is directly opposite to the first positioning hole 20, that is, the bracket 12 is directly opposite to the liquid storage member 11; as shown, Figure 8 and Figure 9 As shown, the clamping member 3 is moved in the direction close to the base assembly 2 (downward), so that the liquid storage member 11 extends into the assembly space (the first part of the second positioning hole 30) reserved by the second positioning hole 30. The clamping member 3 is pressed and the pressing is continued until the first end surface 31 (the lower end surface) of the clamping member 3 is in contact with the upper end surface of the clamping member 211. In this way, the operator only needs to ensure that the liquid storage member 11 extends into the second positioning hole 30 where the bracket 12 is located (which can be easily confirmed by the naked eye), and the relative position of the liquid storage member 11 and the bracket 12 in the horizontal direction is determined. It should be noted that the horizontal direction and the vertical direction are two directions perpendicular to each other, and the horizontal direction is parallel to the placement surface of the base assembly 2 in the natural placement state. Compared with the prior art, in which the operator needs to press the liquid storage member 11 from different directions in the circumferential direction, so that the liquid storage member 11 is squeezed in the circumferential direction for one turn and then inserted into the mounting groove 120, the assembly jig of the atomization assembly of the present application only needs to ensure that the liquid storage member 11 extends into the second positioning hole 30 of the clamping member 3, so it is easier to align and install the liquid storage member 11 and the bracket 12.

[0043] Further, as shown, Figure 12As shown, after the first end surface 31 of the clamping piece 3 is attached to the upper end surface of the clamping piece 211, the operator continues to press the clamping piece 3 downward, drives the clamping piece 211 to move downward relative to the fixed piece 22, that is, the clamping piece 211 moves downward relative to the assembled atomization assembly 1. In this process, the liquid storage piece 11 is correspondingly subjected to the downward extrusion force of the bracket 12 and the upward supporting force of the fixed piece 22, and under the action of the two forces in the up-down direction, it is ensured that the bracket 12 and the liquid storage piece 11 are longitudinally installed in place. At the same time, in this process, since the whole formed by the clamping piece 3 and the clamping piece 211 can be displaced downward relative to the fixed piece 211, and there is no relative displacement between the assembled atomization assembly 1 and the fixed piece 211, the whole formed by the clamping piece 3 and the clamping piece 211 can also be displaced downward relative to the atomization assembly 1, so that more area of the upper part of the atomization assembly 1 is exposed (in other words, it is equivalent to that the atomization assembly 1 can be displaced upward relative to the whole formed by the clamping piece 3 and the clamping piece 211), so that the operator can easily take out the assembled atomization assembly 1.

[0044] In summary, since the clamping piece 211 is provided with the first positioning hole 20 for accommodating the liquid storage piece 11, the clamping piece 3 is provided with the second positioning hole 30 at a position facing the first positioning hole 20, and the side of the second positioning hole 30 away from the clamping piece 211 is used to install the bracket 12, the installation groove 120 of the bracket 12 is close to the side of the second positioning hole 30 close to the clamping piece 211, the liquid storage piece 11 is positioned and installed into the installation groove 120 through the second positioning hole 30, and the operator only needs to ensure that the liquid storage piece 11 is inserted into the second positioning hole 30 where the bracket 12 is located, and the relative position of the liquid storage piece 11 and the bracket 12 in the horizontal direction is determined, so as to reduce the difficulty of aligning the liquid storage piece 11 and the bracket 12 in the horizontal direction; since the clamping piece 211 is movably arranged on one side of the fixed piece 22, the clamping piece 3 is configured to drive the clamping piece 211 to move relative to the fixed piece 22 under the action of an external force, so that the fixed piece 22 drives the liquid storage piece 11 to move along the first positioning hole 20 towards the second positioning hole 30, and in the moving process, the liquid storage piece 11 is correspondingly subjected to the downward extrusion force of the bracket 12 and the upward supporting force of the fixed piece 22, and under the action of the two forces in the up-down direction, it is ensured that the bracket 12 and the liquid storage piece 11 are longitudinally installed in place; at the same time, after the fixed piece 22 drives the liquid storage piece 11 to move along the first positioning hole 20 towards the second positioning hole 30, it is convenient for the operator to take out the assembled atomization assembly 1. Since the difficulty of aligning the liquid storage piece 11 and the bracket 12 is reduced, and the assembled atomization assembly 1 is also easy to take out, the overall assembly time is reduced; the same base assembly 2 and clamping piece 3 can be repeatedly used for the assembly of multiple atomization assemblies 1, so as to ensure the consistency of the assembly quality of all assembled products.

[0045] As Figure 10As shown, in some embodiments, the cross-sectional dimension R2 of the second positioning hole 30 is smaller than the cross-sectional dimension R1 of the first positioning hole 20. The cross-sectional dimension of the second positioning hole 30 is equal to or smaller than the cross-sectional dimension R3 of the mounting groove 120. The cross-sectional dimension R1 of the first positioning hole 20 can be substantially equal to the cross-sectional dimension of the liquid storage member 11. Thus, there is a dimensional difference between the liquid storage member 11 and the second positioning hole 30, and when the liquid storage member 11 is inserted into the second positioning hole 30, the circumferential side wall of the liquid storage member 11 is uniformly pressed by the hole wall surface of the second positioning hole 30, and the cross-sectional dimension of the portion of the liquid storage member 11 inserted into the second positioning hole 30 is equal to or smaller than the cross-sectional dimension R3 of the mounting groove 120, so that the liquid storage member 11 can be inserted into and positioned in the mounting groove 120.

[0046] Further, in some embodiments, the opening edge profile of the second positioning hole 30 near the second end surface 32 is smaller than the end surface profile of the lower end of the bracket 12 (the end surface near the opening side of the mounting groove 120), and the opening edge profile of the second positioning hole 30 near the second end surface 32 is larger than the end surface profile of the upper end of the bracket 12 (the end surface away from the opening side of the mounting groove 120); in this way, after the bracket 12 is inserted into the second positioning hole 30, the end with the larger end surface profile can be clamped at the opening edge of the second positioning hole 30 near the second end surface 32. Specifically, as shown in Figure 10 and Figure 11 As shown, the other end of the mounting groove 120 of the bracket 12 is a closed end. The opening edge profile of the second positioning hole 30 near the second end surface 32 is smaller than the end surface profile of the closed end of the bracket 12. Thus, after the bracket 12 is inserted into the second positioning hole 30, the closed end can be clamped at the opening edge of the second positioning hole 30 near the second end surface 32.

[0047] As shown in Figure 4 , Figure 6 and Figure 8 In some embodiments, the surface of the clamping member 3 away from the clamping member 211 (i.e., the second end surface 32) is concavely provided with at least two pressing grooves 34, and the two pressing grooves 34 are respectively located on opposite sides of the second positioning hole 30. The two pressing grooves 34 extend transversely and inwardly from the opposite side edges of the second end surface 32, and do not penetrate the first end surface 31. The pressing grooves 34 can provide pressing positions for the operator to press the clamping member 3, facilitating force application.

[0048] As shown in Figure 10 and Figure 11As shown, in some embodiments, the hole wall surface of the first positioning hole 20 is provided with a first guide slope 41 at the opening edge close to the clamping member 3 side, which is inclined towards the peripheral direction of the first positioning hole 20. The first guide slope 41 can guide the liquid storage member 11 to extend into the first positioning hole 20. Correspondingly, the hole wall surface of the second positioning hole 30 is provided with a second guide slope 42 at the opening edge close to the clamping member 211 side, which is inclined towards the peripheral direction of the second positioning hole 30. The second guide slope 42 can guide the liquid storage member 11 to extend into the second positioning hole 30. Moreover, the second guide slope 42 makes the space reserved for the liquid storage member 11 to extend into the second positioning hole 30 have a change in spatial size, so that the liquid storage member 11 is gradually pressed during the process of extending into the second positioning hole 30 due to the gradually narrowing space. Specifically, the liquid storage member 11 is first contacted with the first guide slope 41 at its end portion when extending into the second positioning hole 30, and after the outer peripheral surface of the liquid storage member 11 passes through the first area 301 enclosed by the first guide slope 41, it enters the second area 302 with a smaller size, and is subjected to a pressing force. The portion of the liquid storage member 11 that is pressed can be just fitted into the mounting groove 120 on the bracket 12, so as to be smoothly extended into the mounting groove 120 and cooperated with the bracket 12. During the pressing process of the liquid storage member 11, the gradually narrowing first guide slope 41 provides a smooth transition guide in advance, which can effectively avoid uneven deformation of the liquid storage member 11 during the pressing process. In addition, when the maximum size of the second area 302 along the cross-sectional direction is smaller than the cross-sectional size R3 of the mounting groove 120 on the bracket 12, the liquid storage member 11 that is uniformly shrunk and deformed after being pressed can directly fall into the space enclosed by the mounting groove 120, so as to reduce or avoid the contact between the end portion of the liquid storage member 11 and the edge of the mounting groove 120 on the bracket 12, thereby avoiding the phenomenon of scratching the cotton after the friction between the liquid storage member 11 and the edge of the mounting groove 120 on the bracket 12. Figure 10 With reference to the orientation of the accompanying drawings of the embodiments, the second positioning hole 30 includes a first area 301 enclosed by the first guide slope 41 and a second area 302 at least partially used for clamping the bracket 12. The maximum size of the first area 301 along the cross-sectional direction is greater than the maximum size of the second area 302 along the cross-sectional direction, and the maximum size of the second area 302 along the cross-sectional direction is less than or equal to the cross-sectional size R3 of the mounting groove 120 on the bracket 12. Thus, when the liquid storage member 11 extends into the second positioning hole 30, the liquid storage member 11 is first contacted with the first guide slope 41 at its end portion, and after the outer peripheral surface of the liquid storage member 11 passes through the first area 301 enclosed by the first guide slope 41, it enters the second area 302 with a smaller size, and is subjected to a pressing force. The portion of the liquid storage member 11 that is pressed can be just fitted into the mounting groove 120 on the bracket 12, so as to be smoothly extended into the mounting groove 120 and cooperated with the bracket 12. During the pressing process of the liquid storage member 11, the gradually narrowing first guide slope 41 provides a smooth transition guide in advance, which can effectively avoid uneven deformation of the liquid storage member 11 during the pressing process. In addition, when the maximum size of the second area 302 along the cross-sectional direction is smaller than the cross-sectional size R3 of the mounting groove 120 on the bracket 12, the liquid storage member 11 that is uniformly shrunk and deformed after being pressed can directly fall into the space enclosed by the mounting groove 120, so as to reduce or avoid the contact between the end portion of the liquid storage member 11 and the edge of the mounting groove 120 on the bracket 12, thereby avoiding the phenomenon of scratching the cotton after the friction between the liquid storage member 11 and the edge of the mounting groove 120 on the bracket 12.

[0049] The first guide slope 40 and the second guide slope can exist simultaneously or only one of them can be provided.

[0050] As Figure 4 , Figure 6 and Figure 11As shown in the drawings, in some embodiments, the clamping member 211 is provided with a first positioning portion 26 on the surface thereof facing the clamping member 3, and the clamping member 3 is provided with a second positioning portion 33 on the surface (i.e. the first end surface 31) thereof facing the clamping member 211, and the first positioning portion 26 and the second positioning portion 33 are in clamping cooperation with each other. Specifically, the first positioning portion 26 can be a protrusion, and correspondingly, the second positioning portion 33 is a groove; or, the first positioning portion 26 can also be a groove, and correspondingly, the second positioning portion 33 is a protrusion.

[0051] As shown in the drawings, Figures 4 to 9 , Figures 12 to 15 In some embodiments, the base assembly 2 further comprises a base 24, and the fixing member 22 is detachably or non-detachably arranged on the base 24. The surface of the base 24 facing the clamping member 3 can serve as the placement surface of the base assembly 2; or, the placement surface of the base assembly 2 can also be other horizontal surfaces.

[0052] As shown in the drawings, Figures 4 to 9 In some embodiments, the atomization assembly assembly jig further comprises a guide member arranged on the side of the clamping member 211 away from the clamping member 3, and the clamping member 211 and the guide member are in sliding connection. Specifically, the guide member can be connected between the side of the clamping member 211 away from the clamping member 3 and the placement surface (e.g. the surface of the base 24 facing the clamping member 3) of the base assembly 2. The guide member is used to guide the movement of the clamping member 211, so as to ensure that the longitudinal displacement of the clamping member 211 will not be skewed. Further, in some embodiments, the guide member can comprise a guide column 213, and the clamping member 211 is provided with a mounting hole 27 penetrating through at least the surface (the lower surface of the clamping member 3) of the clamping member 211 facing away from the clamping member 3, and the mounting hole 27 can optionally penetrate through the surface (the upper surface of the clamping member 3) of the clamping member 211 facing the clamping member 3. The guide column 213 and the mounting hole 27 are in sliding cooperation.

[0053] Alternatively, in some other embodiments not shown in the drawings, the guide member can also comprise a linear guide rail, and the outer circumferential side surface of the clamping member 211 is provided with a sliding groove, and one end of the linear guide rail is connected between the sliding groove and the placement surface of the base assembly 2, and the linear guide rail and the sliding groove are in sliding cooperation, so as to guide the movement of the clamping member 211, and ensure that the longitudinal displacement of the clamping member 211 will not be skewed.

[0054] Further, as shown in the drawings, Figure 15As shown, in some embodiments, the guide further comprises a linear bearing 23 arranged in the mounting hole 27, the guide post 213 and the linear bearing 23 are in sliding fit. The linear bearing 23 comprises a sleeve 231, a plurality of rows of rolling bodies 232 arranged on the inner wall surface of the sleeve 231, the plurality of rows of rolling bodies 232 are arranged along the circumference of the sleeve 231, and each row of rolling bodies 232 is arranged in a straight line along the longitudinal direction. The rolling bodies 232 can be balls or rolling columns. The rolling bodies 232 and the guide post 213 are in sliding fit. By replacing sliding with rolling of the rolling bodies 232, the friction can be greatly reduced, and the motion efficiency can be improved; at the same time, the linear bearing 23 can improve the accuracy of the relative linear motion between the guide post 213 and the clamping piece 211.

[0055] As shown in the embodiment, Figures 4 to 9 As shown, in some embodiments, the atomization assembly assembly jig further comprises elastic members 212 connected to the side of the clamping piece 211 away from the clamping member 3. Specifically, the elastic members 212 are connected between the surface of the clamping piece 211 away from the clamping member 3 and the placement surface (for example, the surface of the base 24 facing the clamping member 3) where the base assembly 2 is located. As shown in the embodiment, Figures 4 to 9 In the embodiment, there are four elastic members 212, and the clamping piece 211 is roughly rectangular block-shaped, and the four elastic members 212 are uniformly distributed at the four diagonal positions of the clamping piece 211. Of course, in other embodiments, the number of elastic members 212 can also be one, two, three, five, etc.

[0056] After the elastic members 212 are arranged, the clamping piece 211 has the function of automatic reset, without the need for manual operation to reset the clamping piece 211, further reducing the overall assembly time. Specifically, please refer to Figures 12 to 14 , first, as shown in the state, Figure 12 As shown, the elastic members 212 are compressed downward, and the atomization assembly 1 has been moved upward by a distance relative to the clamping member 3 and the clamping piece 211. Moreover, the elastic members 212 store elastic potential energy after being compressed. As shown, Figure 13 At this time, the operator only needs to release the clamping member 3, and the elastic potential energy stored in the elastic members 212 is converted into power to automatically pop up (upward relative to the fixed piece 22) a distance, and drive the atomization assembly 1 to move upward (upward relative to the fixed piece 22) a distance, and the elastic members 212 restore Figures 4 to 9 As shown, the length. Then the operator takes out the atomization assembly 1 from the second positioning hole 30, and can immediately proceed to the assembly work of the next liquid storage member 11 and the bracket 12. In this way, the same base assembly 2 and clamping member 3 are used to complete the assembly of multiple atomization assemblies 1, which can ensure the consistency of the assembly quality of all assembled products.

[0057] As shown in the embodiment, Figure 5As shown, in some embodiments, an avoiding hole 25 is further formed on the fixing member 22, the avoiding hole 25 is arranged corresponding to the first positioning hole 20, and the avoiding hole 25 at least penetrates the surface of the fixing member 22 abutting against the liquid storage member 11. In other words, the avoiding hole 25 is located on the side of the first positioning hole 20 away from the clamping member 3, and is in communication with the first positioning hole 20. Specifically, the avoiding hole 25 can be a through hole or a blind hole formed on the fixing member 22. The avoiding hole 25 can provide an avoiding space for the cotton swab 15 or the heating member 14 arranged on the liquid storage member 11.

[0058] The above application of specific examples to the utility model is described, just for help to understand the utility model, and not to limit the utility model. For the skilled in the art to which the utility model belongs, according to the idea of the utility model, a number of simple deductions, deformation or replacement can be made.

Claims

1. An atomizing assembly assembly jig, characterized in that, The atomization assembly comprises a liquid storage member and a bracket, the bracket is provided with a mounting groove for mounting the liquid storage member, and the atomization assembly assembly jig comprises: a base assembly, the base assembly comprises a clamping member and a fixing member, the clamping member is movably arranged on one side of the fixing member, the clamping member is provided with a first positioning hole for accommodating the liquid storage member, and the fixing member is provided correspondingly to the first positioning hole and abuts one end of the liquid storage member; a clamping member, the clamping member is arranged on the side of the clamping member away from the fixing member, the clamping member is provided with a second positioning hole at the position towards the first positioning hole, the second positioning hole is provided with the bracket on the side away from the clamping member, and the mounting groove is provided on the side of the clamping member close to the first positioning hole; the clamping member is configured to drive the clamping member to move relative to the fixing member under the action of external force, so that the fixing member drives the liquid storage member to move towards the second positioning hole along the first positioning hole, and the liquid storage member is positioned and mounted into the mounting groove through the second positioning hole.

2. The atomizing assembly assembly jig of claim 1, wherein, The cross-sectional size of the second positioning hole is smaller than the cross-sectional size of the first positioning hole, and the cross-sectional size of the second positioning hole is equal to or smaller than the cross-sectional size of the mounting groove.

3. The atomizing assembly assembly jig of claim 1, wherein, The opening edge of the hole wall surface of the first positioning hole close to the clamping member is provided with a first guide inclined surface, and the first guide inclined surface is inclined towards the peripheral direction of the first positioning hole; and / or, the opening edge of the hole wall surface of the second positioning hole close to the clamping member is provided with a second guide inclined surface, and the second guide inclined surface is inclined towards the peripheral direction of the second positioning hole.

4. The atomizing assembly assembly jig of claim 1, wherein, The surface of the clamping member towards the clamping member is provided with a first positioning part, the surface of the clamping member towards the clamping member is provided with a second positioning part, and the first positioning part and the second positioning part are matched with each other.

5. The atomizing assembly assembly jig of claim 1, wherein, The atomization assembly assembly jig further comprises a guide member, the guide member is arranged on the side of the clamping member away from the clamping member, and the clamping member and the guide member are connected in sliding mode.

6. The atomizing assembly assembly jig of claim 5, wherein, The guide member comprises a guide column, and the clamping member is provided with a mounting hole, the mounting hole at least penetrates the surface of the clamping member away from the clamping member, and the guide column and the mounting hole are connected in sliding mode.

7. The atomizing assembly assembly jig of claim 6, wherein, The guide member further comprises a linear bearing arranged in the mounting hole, and the guide column and the linear bearing are connected in sliding mode.

8. The atomizing assembly fixture of claim 1, wherein, The atomization assembly assembly jig further comprises an elastic member, and the elastic member is connected to the side of the clamping member away from the clamping member.

9. The atomizing assembly fixture of claim 1, wherein, The fixing member is provided with an avoiding hole, the avoiding hole is provided correspondingly to the first positioning hole, and the avoiding hole at least penetrates the surface of the fixing member abutting the liquid storage member.

10. The atomizing assembly assembly jig of claim 1, wherein, The surface of the clamping member away from the clamping member is recessed with at least two pressing grooves, and the two pressing grooves are respectively located on the opposite sides of the second positioning hole.