Pressing jig for manufacturing atomization device
By designing a pressing fixture for manufacturing atomization device, mechanical pressing is achieved by moving the drive assembly in a perpendicular direction, solving the problems of inaccurate alignment and inconsistent pressing force caused by manual operation, and improving the reliability and operating efficiency of bonding.
Patent Information
- Application Number
- CN202421768497.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-24
AI Technical Summary
In the prior art, the packaging box bonding operation of the electronic atomization device relies on manual labor, resulting in fatigue operation, inaccurate alignment and inconsistent pressing force, affecting the reliability of bonding.
A pressing fixture for manufacturing an atomization device is designed, including a base and a driving unit, and mechanical pressing of the article to be pressed is achieved instead of manual operation by moving the first and second driving components in a vertical horizontal direction.
Through mechanized pressing operation, the consistency of pressing force and alignment accuracy are ensured, the reliability of bonding is improved, and the operating cost is reduced.
Smart Images

Figure CN222857245U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of atomizing devices, in particular to a pressing jig used for manufacturing atomizing devices. Background Art
[0002] When the electronic atomization device leaves the factory, the packaging box containing the device body and the packaging box containing the additional atomizer need to be glued together. Although there are some large-scale processing equipment on the market that have the function of aligning and crimping the products, these large-scale processing equipment have complex structures, high costs, and large volumes that are not conducive to transportation on the production line, and are usually not used. Therefore, out of comprehensive consideration of economic benefits, the prior art still uses manual packaging to complete the operation of pressing and bonding two packaging boxes. The use of manual packaging is prone to fatigue operations, resulting in defects such as inaccurate alignment of the packaging boxes and inconsistent pressing force, which makes the reliability of multiple packaging boxes after bonding poor. Utility Model Content
[0003] The technical problem to be solved by the present application is to provide a pressing jig for manufacturing an atomization device in view of at least one defect of the above-mentioned prior art.
[0004] The technical solution adopted by the present application to solve its technical problem is: providing a pressing jig for manufacturing an atomizing device, which comprises a base and a driving unit;
[0005] The base has an article placement area, and the driving unit is arranged on the base and located at one side of the article placement area;
[0006] The driving unit includes a first driving component and a second driving component arranged on one side of the first driving component, and the first driving component and the second driving component can move relative to the base respectively; the first driving component can reciprocate along a first horizontal direction to approach or move away from the item placement area, and the second driving component can reciprocate along a second horizontal direction to approach or move away from the item placement area, wherein the first horizontal direction is perpendicular to the second horizontal direction.
[0007] In some embodiments, the pressing jig further includes a limiting unit, which is disposed on the base and defines the item placement area; along the first horizontal direction, the item placement area is located between the limiting unit and the first drive assembly; along the second horizontal direction, the item placement area is located between the limiting unit and the second drive assembly.
[0008] In some embodiments, the limiting unit has a first surface and a second surface, the first surface faces the first driving component and is perpendicular to the first horizontal direction, and the second surface faces the second driving component and is perpendicular to the second horizontal direction.
[0009] In some embodiments, the first drive assembly includes a first drive member and a first crimping member for contacting the article to be pressed in the article placement area, and the first drive member can drive the first crimping member to move back and forth along a first horizontal direction; the second drive assembly includes a second drive member and a second crimping member for contacting the article to be pressed in the article placement area, and the second drive member can drive the second crimping member to move back and forth along a second horizontal direction.
[0010] In some embodiments, the first crimping member and the first driving member are detachably connected; and / or, the second crimping member and the second driving member are detachably connected.
[0011] In some embodiments, the first crimping member has a third surface for contacting the item to be pressed in the item placement area, and the second crimping member has a fourth surface for contacting the item to be pressed in the item placement area; a protective layer is provided on the third surface and / or the fourth surface.
[0012] In some embodiments, the items to be pressed include at least two sub-items; at least two of the sub-items have different sizes along the first horizontal direction, the first crimping piece is used to contact at least two of the sub-items simultaneously along the first horizontal direction, the second crimping piece is used to contact one of the sub-items along the second horizontal direction, and the first crimping piece is L-shaped; or, at least two of the sub-items have different sizes along the second horizontal direction, the second crimping piece is used to contact at least two of the sub-items simultaneously along the second horizontal direction, the first crimping piece is used to contact one of the sub-items along the first horizontal direction, and the second crimping piece is L-shaped.
[0013] In some embodiments, the first driving member and the second driving member are cylinders respectively.
[0014] In some embodiments, the driving unit also includes an air source component, which is arranged on the base and located on one side of the item placement area and one side of the driving unit; the first driving member has a first air inlet and a first air outlet, and the second driving member has a second air inlet and a second air outlet, and the air source component is respectively connected to the first air inlet, the first air outlet, the second air inlet and the second air outlet through pipes.
[0015] In some embodiments, a first regulating valve is disposed on the first air inlet, and a second regulating valve is disposed on the second air inlet, and preset openings of the first regulating valve and the second regulating valve are different.
[0016] The present application has at least the following beneficial effects: the first drive assembly and the second drive assembly can approach or move away from the item placement area along two perpendicular horizontal directions on one side of the item placement area, and press the items to be pressed together on the item placement area. By controlling the mechanical actions of the first drive assembly and the second drive assembly, the pressing work of the items to be pressed can be replaced by manual work, and the mechanical actions can easily ensure the consistency of the pressing force and the accuracy of the alignment. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic diagram of the structure of a pressing jig in some embodiments;
[0018] Figure 2 yes Figure 1 A schematic diagram of the structure of the pressing fixture shown in another perspective;
[0019] Figure 3 is a schematic structural diagram of a pressing jig in other embodiments;
[0020] The reference numerals are as follows:
[0021] 1- base, 10- item placement area,
[0022] 21-first drive assembly, 211-first drive member, 212-first crimping member, 213-third surface, 214-first air inlet, 215-first air outlet, 22-second drive assembly, 221-second drive member, 222-second crimping member, 224-fourth surface, 223-second air inlet, 225-second air outlet, 23-pipe fitting,
[0023] 241 - first regulating valve, 242 - second regulating valve, 243 - third regulating valve, 244 - fourth regulating valve,
[0024] 3-items to be pressed, 31-sub-items,
[0025] 4-limiting unit, 41-first limiting portion, 42-second limiting portion, 411-first surface, 412-second surface,
[0026] 5-air source assembly, 51-pneumatic switch, 52-control handle, 53-third air inlet. DETAILED DESCRIPTION
[0027] The present invention is further described in detail below by specific embodiments in conjunction with the accompanying drawings. Wherein similar elements in different embodiments adopt associated similar element numbers. In the following embodiments, many detailed descriptions are intended to enable the present application to be better understood. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can be replaced by other elements, materials, and 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, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.
[0028] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various implementations. At the same time, the steps or actions in the method description can also be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for the purpose of clearly describing a certain embodiment and are not meant to be a required sequence, unless otherwise specified that a certain sequence must be followed.
[0029] The serial numbers of the components in this document, such as "first", "second", etc., are only used to distinguish the objects described and do not have any order or technical meaning. The "connection" and "coupling" mentioned in this application, unless otherwise specified, include direct and indirect connections (couplings).
[0030] See also Figure 1 In some embodiments, a pressing jig for manufacturing an atomization device is provided, the pressing jig comprising a base 1 and a driving unit. The base 1 has a placement surface facing upward, and the placement surface has an item placement area 10. The driving unit is arranged on the base 1 and is located on one side of the item placement area 10. The item placement area 10 is used to place the item 3 to be pressed. The item 3 to be pressed includes a plurality of (two or more) sub-items 31, and the plurality of sub-items 31 may need to be connected together by bonding or by other means. The item 3 to be pressed may include devices and accessories in the field of atomization technology. The devices and accessories in the field of atomization technology generally include an atomization device, a host of an atomization device, an atomizer (smoke cartridge) used in conjunction with the host, and the like. That is, the item 3 to be pressed may include at least one of an atomization device, a host of an atomization device, and an atomizer (smoke cartridge). For example, in some embodiments, the item 3 to be pressed may include two sub-items 31, and the two sub-items 31 are two atomization devices respectively. Alternatively, in some other embodiments, the object 3 to be pressed may include two sub-objects 31, and the two sub-objects 31 are respectively a main unit and an atomizer of the atomization device.
[0031] The driving unit includes a first driving component 21 and a second driving component 22, and the second driving component 22 is arranged on one side of the first driving component 21. The first driving component 21 and the second driving component 22 can move relative to the base 1 respectively. Among them, the first driving component 21 can reciprocate along the first horizontal direction A, so as to approach or move away from the item placement area 10. That is, when the first driving component 21 reciprocates along the first horizontal direction A, it moves in a direction close to the item placement area 10 or away from the item placement area 10. Similarly, the second driving component 22 can reciprocate along the second horizontal direction B, so as to approach or move away from the item placement area 10. That is, when the second driving component 22 reciprocates along the second horizontal direction B, it moves in a direction close to the item placement area 10 or away from the item placement area 10.
[0032] Among them, the first horizontal direction A is perpendicular to the second horizontal direction B. Therefore, the first drive component 21 and the second drive component 22 can approach or move away from the item placement area 10 along two perpendicular horizontal directions on one side of the item placement area 10, and press the items 3 to be pressed together on the item placement area 10. By controlling the mechanical action of the first drive component 21 and the second drive component 22, the pressing work of the items to be pressed 3 can be replaced by manual work, and the mechanical action can easily ensure the consistency of the pressing force and the accuracy of the positioning. In addition, the pressing fixture has a simple and reliable structure, is easy to carry on the production line, has a low cost, and is suitable for popularization and use.
[0033] like Figure 1 In the illustrated embodiment, the sizes of the two sub-items 31 along the first horizontal direction A are equal, and the sizes along the second horizontal direction B are unequal. In other embodiments, the sizes of the multiple sub-items 31 along the first horizontal direction A may be equal or unequal; the sizes of the multiple sub-items 31 along the second horizontal direction B may be equal or unequal. This application does not limit this.
[0034] like Figure 1 As shown, in some embodiments, the laminating jig further includes a limiting unit 4, which is disposed on the base 1 and defines an article placement area 10. Along the first horizontal direction A, the article placement area 10 is located between a portion of the limiting unit 4 and the first drive assembly 21; along the second horizontal direction B, the article placement area 10 is located between another portion of the limiting unit 4 and the second drive assembly 22. The limiting unit 4 can provide a limit for the article 3 to be pressed in the article placement area 10, thereby helping to ensure the alignment accuracy of the article 3 to be pressed.
[0035] Specifically, the first horizontal direction A includes an A1 direction close to the article placement area 10 and an A2 direction away from the article placement area 10; the second horizontal direction B includes a B1 direction close to the article placement area 10 and a B2 direction away from the article placement area 10. When the first driving assembly 21 moves along the A1 direction, it can abut against the article to be pressed 3 in the article placement area 10, and the side of the article to be pressed 3 away from the first driving assembly 21 will abut against the limiting unit 4, thereby ensuring the alignment accuracy of the article to be pressed 3 in the first horizontal direction A. When the first driving assembly 21 moves along the A2 direction, it is separated from the article to be pressed 3. Similarly, when the second driving assembly 22 moves along the B1 direction, it can abut against the article to be pressed 3 in the article placement area 10, and the side of the article to be pressed 3 away from the second driving assembly 22 will also abut against the limiting unit 4, thereby ensuring the alignment accuracy of the article to be pressed 3 in the second horizontal direction B. When the second driving assembly 22 moves along the B2 direction, it is separated from the article to be pressed 3.
[0036] like Figure 1 As shown, further, in some embodiments, the limiting unit 4 has a first surface 411 and a second surface 412, the first surface 411 faces the first driving assembly 21 and is perpendicular to the first horizontal direction A, and the second surface 412 faces the second driving assembly 22 and is perpendicular to the second horizontal direction B. That is, when the first driving assembly 21 moves along the A1 direction, the two opposite sides of the to-be-pressed article 3 in the article placement area 10 along the first horizontal direction A will respectively abut against the first surface 411 of the limiting unit 4 and the first driving assembly 21. Similarly, when the first driving assembly 21 moves along the B1 direction, the two opposite sides of the to-be-pressed article 3 in the article placement area 10 along the second horizontal direction B will respectively abut against the second surface 412 of the limiting unit 4 and the first driving assembly 21.
[0037] When the object 3 to be pressed is a square structure (for example Figure 1 As shown in the box-shaped structure, since the first surface 411 facing the first driving assembly 21 is perpendicular to the first horizontal direction A, and the second surface 412 facing the second driving assembly 22 is perpendicular to the second horizontal direction B, the objects 3 to be pressed in the object placement area 10 can be evenly stressed along the first horizontal direction A and well attached to the first surface 411, and can also be evenly stressed along the second horizontal direction B and well attached to the second surface 412. This is conducive to the alignment accuracy between the objects 3 to be pressed in the square structure.
[0038] Of course, in other embodiments, the object 3 to be pressed may not be a square structure, but a structure with a curved surface, or a structure combining a curved surface and a flat surface. The shape and structure of the limiting unit 4 can be determined according to the shape and structure of the object 3 to be pressed, so that the object 3 to be pressed can maintain stable and reliable contact with the limiting unit 4, thereby playing a suitable limiting role for the object 3 to be pressed.
[0039] In some embodiments, the limiting unit 4 is detachably connected to the base 1. Thus, by disassembling and assembling the limiting unit 4 on the base 1, it is convenient to replace the limiting unit 4 with different shapes and structures to cope with the objects 3 to be pressed with different shapes and structures. The detachable connection between the limiting unit 4 and the base 1 includes but is not limited to screw connection, snap connection, and chiseled connection. Specifically, Figure 1 As shown, in some embodiments, the limiting unit 4 includes a first limiting portion 41 and a second limiting portion 42 provided on the base 1, the first limiting portion 41 having a first surface 411, and the second limiting portion 42 having a second surface 412. The first limiting portion 41 and the second limiting portion 42 are detachably connected to the base 1, respectively.
[0040] like Figure 1 As shown, in some embodiments, the first drive assembly 21 includes a first drive member 211 and a first crimping member 212 for contacting the article 3 to be pressed in the article placement area 10. The first drive member 211 is connected to the first crimping member 212 as an active member, and can drive the first crimping member 212 to move back and forth along the first horizontal direction A. That is, the first drive member 211 can drive the first crimping member 212 to move along the A1 direction or the A2 direction. Similarly, the second drive assembly 22 includes a second drive member 221 and a second crimping member 222 for contacting the article in the article placement area 10. The second drive member 221, as an active member, can drive the second crimping member 222 to move back and forth along the first horizontal direction A. That is, the second drive member 221 can drive the second crimping member 222 to move along the B1 direction or the B2 direction.
[0041] Specifically, Figure 1 In the illustrated embodiment, the first crimping member 212 has a third surface 213 for contacting the object 3 to be pressed in the object placement area 10, and the second crimping member 222 has a fourth surface 224 for contacting the object 3 to be pressed in the object placement area 10. Figure 1 and Figure 2When the first driving assembly 21 moves along the A1 direction, the two opposite sides of the object 3 to be pressed in the object placement area 10 along the first horizontal direction A will abut between the first surface 411 of the position limiting unit 4 and the third surface 213 of the first driving assembly 21; when the second driving assembly 22 moves along the B1 direction, the two opposite sides of the object 3 to be pressed in the object placement area 10 along the second horizontal direction B will abut between the second surface 412 of the position limiting unit 4 and the fourth surface 224 of the second driving assembly 22. The third surface 213 is set to be parallel to the first surface 411, and the fourth surface 224 is set to be parallel to the second surface 412, so that the square structure of the object 3 to be pressed can be better fitted, and the two sides of the object 3 to be pressed can be evenly stressed.
[0042] Further, a protective layer (not shown) may be provided on the third surface 213 and / or the fourth surface 224, that is, the protective layer may be provided only on the third surface 213, or only on the fourth surface 224, or on both the third surface 213 and the fourth surface 224. The protective layer can prevent the object 3 to be pressed from being scratched during the pressing process. The protective layer may be a Teflon protective layer.
[0043] The structures of the first crimping member 212 and the second crimping member 222 can be determined according to the structure of the object 3 to be pressed. Figure 1 and Figure 2 In the illustrated embodiment, the object to be pressed 3 includes two sub-items 31 of the same length. In the object placement area 10, the length direction of the sub-item 31 is consistent with the first horizontal direction A, and the width direction of the sub-item 31 is consistent with the second horizontal direction B. The two sub-items 31 need to be bonded together along the width direction (i.e., the second horizontal direction B). That is, in this embodiment, the bonding direction of the object to be pressed 3 is consistent with the second horizontal direction B. Correspondingly, the first crimping member 212 and the second crimping member 222 are both rectangular block structures.
[0044] like Figure 3 As shown, in other embodiments, the object 3 to be pressed includes two sub-items 31 of different sizes in the horizontal direction. For example, considering that the size of the main unit of the atomizing device is generally larger than the size of the atomizer adapted to the main unit, the sizes of the packaging boxes for the two items are also different. At this time, the first crimping piece 212 or the second crimping piece 222 that contacts the two sub-items 31 of different sizes can be in an L-shaped structure to ensure that the first crimping piece 212 or the second crimping piece 222 can contact the two sub-items 31 of different sizes under the same displacement.
[0045] Specifically, Figure 3In the illustrated embodiment, two sub-items 31 have different sizes along the first horizontal direction A. Driven by the first driving member 211, the first crimping member 212 contacts the two sub-items 31 simultaneously along the first horizontal direction A. Driven by the second driving member 221, the second crimping member 222 contacts one of the sub-items 31 along the second horizontal direction B. That is, the two sub-items 31 need to be bonded together along the second horizontal direction B. In this case, the first crimping member 212 can be L-shaped, so that the first crimping member 212 also has two parts with different sizes along the first horizontal direction A, thereby ensuring that the first crimping member 212 can contact the two sub-items 31 at the same time under the same displacement. It can be understood that in some other embodiments, there may be more than two sub-items 31 with different sizes along the first horizontal direction A, and under the drive of the first driving member 211, the first crimping member 212 contacts more than two sub-items 31 simultaneously along the first horizontal direction A.
[0046] Or, with Figure 3 An embodiment opposite to the embodiment shown is that two sub-items 31 have different sizes along the second horizontal direction B. Under the drive of the second driving member 221, the second crimping member 222 contacts the two sub-items 31 simultaneously along the second horizontal direction B. Under the drive of the first driving member 211, the first crimping member 212 contacts one of the sub-items 31 along the first horizontal direction A. That is, the two sub-items 31 need to be bonded together along the first horizontal direction A. In this case, the second driving member 221 can be L-shaped, so that the second driving member 221 also has two parts with different sizes along the second horizontal direction B, thereby ensuring that the second driving member 221 can contact the two sub-items 31 at the same time under the same displacement. It can be understood that in some other embodiments, there may be more than two sub-items 31 with different sizes along the second horizontal direction B, and under the drive of the second driving member 221, the second crimping member 222 contacts more than two sub-items 31 simultaneously along the second horizontal direction B.
[0047] In some embodiments, the first crimping member 212 and the first driving member 211 are detachably connected. The second crimping member 222 and the second driving member 221 are detachably connected. Thus, by disassembling and assembling the first crimping member 212 on the first driving member 211, it is convenient to replace the first crimping member 212 of different shapes and structures; by disassembling and assembling the second crimping member 222 on the second driving member 221, it is convenient to replace the second crimping member 222 of different shapes and structures to cope with the objects 3 to be pressed with different shapes and structures.
[0048] like Figure 1 and Figure 2As shown, in some embodiments, the first driving member 211 and the second driving member 221 are cylinders. After the cylinder is adjusted by air pressure, it can realize the stable pressing of the objects 3 to be pressed together with a preset force, which can effectively solve the problem of difficult to control the force and fatigue operation caused by manually pressing the objects 3 to be pressed. Of course, in other embodiments, the first driving member 211 and the second driving member 221 can also be linear reciprocating motion mechanisms such as hydraulic cylinders and screw modules. These reciprocating motion mechanisms can realize the pressing of the objects 3 to be pressed together with a preset force through the regulation of mechanical parameters.
[0049] Furthermore, if Figure 1 and Figure 2 In the illustrated embodiment, the drive unit further includes an air source assembly 5, which is disposed on the base 1 and is located on one side of the article placement area 10 and one side of the drive unit. The air source assembly 5 is used to provide a power source for the cylinder. Specifically, the first drive member 211 has a first air inlet 214 and a first air outlet 215, and the second drive member 221 has a second air inlet 223 and a second air outlet 225. The air source assembly 5 is connected to the first air inlet 214, the first air outlet 215, the second air inlet 223 and the second air outlet 225 through a pipe 23, respectively. By controlling the air intake of the first air inlet 214 and the air outlet of the first air outlet 215, the stroke size of the reciprocating movement of the first drive member 211 along the first horizontal direction A can be controlled. By controlling the air intake of the second air inlet 223 and the air outlet of the second air outlet 225, the stroke size of the reciprocating movement of the second drive member 221 along the second horizontal direction B can be controlled.
[0050] Furthermore, if Figure 1 and Figure 2 In the illustrated embodiment, in order to control the stroke size of the reciprocating movement of the first driving member 211 along the first horizontal direction A, a first regulating valve 241 is provided on the first air inlet 214, a second regulating valve 242 is provided on the second air inlet 223, a third regulating valve 243 is provided on the first air outlet 215, and a fourth regulating valve 244 is provided on the second air outlet 225. The first regulating valve 241 on the first air inlet 214 is used to control the air intake amount of the first air inlet 214, the second regulating valve 242 on the second air inlet 223 is used to control the air intake amount of the second air inlet 223, the third regulating valve 243 on the first air outlet 215 is used to control the air outlet amount of the first air outlet 215, and the fourth regulating valve 244 on the second air outlet 225 is used to control the air outlet amount of the second air outlet 225.
[0051] The preset openings of the first regulating valve 241 and the second regulating valve 242 are different. The preset opening refers to the preset openings of the first regulating valve 241 and the second regulating valve 242 before the first driving member 211 and the second driving member 221 are started. Thus, after the first driving member 211 and the second driving member 221 are started, because the first driving member 211 and the second driving member 221 are connected to the same set of air source components 5, the same set of air source components 5 can provide the first driving member 211 and the second driving member 221 with the same air source input amount and air source input rate. Since the first regulating valve 241 and the second regulating valve 242 have different preset openings, the timing of the displacement action of the first driving member 211 and the second driving member 221 is different. That is, an action time difference is constructed between the first driving member 211 and the second driving member 221. For example, the first driving member 211 may act first to limit the object 3 to be pressed together along the first horizontal direction A. After a period of time, the second driving member 221 acts again to press the object 3 to be pressed together along the second horizontal direction B. Thus, the air pressure difference between the first driving member 211 and the second driving member 221 can be used to realize the automatic delay function of the second driving member 221, and automatically complete the action of first aligning and then pressing the object 3 to be pressed. In addition, this implementation method has a simple structure and low cost, and does not require the addition of other complex control elements. When the first driving member 211 and the second driving member 221 are hydraulic cylinders, this method can also be used to construct an action time difference between the first driving member 211 and the second driving member 221.
[0052] Alternatively, in other embodiments, other methods may be used to implement the automatic delay function of the second driving member 221. For example, the first driving member 211 and the second driving member 221 may be connected to two different sets of air source components 5, respectively, and the air source input amount and air source input rate of the two different sets of air source components 5 may be controlled to construct an action time difference for the first driving member 211 and the second driving member 221.
[0053] Furthermore, if Figure 1 and Figure 2 In the illustrated embodiment, the air source assembly 5 includes a pneumatic switch 51 and a control handle 52 connected to the pneumatic switch 51, and the control handle 52 can control the start and stop of the pneumatic switch 51. The pneumatic switch 51 has a third air inlet 53, and the third air inlet 53 is used to receive compressed air. The pneumatic switch 51 is connected to the first air inlet 214, the first air outlet 215, the second air inlet 223, and the second air outlet 225 through four pipes 23, respectively.
[0054] See also Figure 1 and Figure 2 The use process of the pressing fixture of one embodiment of the present application is as follows:
[0055] (1) Use two pipes 23 to connect the air outlet of the pneumatic switch 51 to the first air inlet 214 on the first driving member 211 and the second air inlet 223 on the second driving member 221, respectively, to form a press-fit air path. Use two pipes 23 to connect the air inlet of the pneumatic switch 51 to the first air outlet 215 on the first driving member 211 and the second air outlet 225 on the second driving member 221, respectively, to form a reset air path.
[0056] (2) Compressed air is connected to the third air inlet 53. In the initial state, the first driving member 211 and the second driving member 221 are both in the reset state.
[0057] (3) The first regulating valve 241 and the second regulating valve 242 are adjusted so that the preset opening of the second regulating valve 242 is higher than the preset opening of the first regulating valve 241, so that during subsequent ventilation, the first driving member 211 is activated before the second driving member 221. The action time difference between the first driving member 211 and the second driving member 221 can be set at about 0.5 seconds.
[0058] (4) Place two child items 31 into the item placement area 10 .
[0059] (5) Push the control handle 52, the first driving member 211 first moves in the A1 direction, the first crimping member 212 pushes the two sub-items 31, the two sub-items 31 abut against the first limiting member 41 of the limiting unit 4 in the A1 direction, so that the two sub-items 31 are limited in the first horizontal direction A. After a time interval of about 0.5 seconds, the second driving member 221 moves in the B1 direction, the second crimping member 222 pushes one of the sub-items 31, the sub-item 31 abuts against the second limiting member 42 of the limiting unit 4 in the B1 direction, so that the two sub-items 31 are aligned and bonded together in the second horizontal direction B, forming a finished product bonded together.
[0060] (6) The first driving member 211 moves along the A2 direction, and the second driving member 221 moves along the B2 direction. The first driving member 211 and the second driving member 221 are automatically reset, and the pressed and bonded finished product is taken out.
[0061] The limiting unit 4 mainly helps to limit the position of the items 3 to be pressed in the item placement area 10. In some other embodiments, the limiting unit 4 may not be provided, but the first drive assembly 21 and the second drive assembly 22 may be used to limit the position of the items 3 to be pressed in the item placement area 10. For example, in some other embodiments not shown in the figure, the first drive assembly 21 may include a first part and a second part, wherein the first part can move along the A1 direction, and the second part can move along the A2 direction, and the items 3 to be pressed in the item placement area 10 are located between the first part and the second part of the first drive assembly 21. The first part and the second part of the first drive assembly 21 clamp the items 3 to be pressed in the item placement area 10, thereby limiting the position of the items 3 to be pressed along the first horizontal direction A. Similarly, the second drive assembly 22 may include a third part and a fourth part, wherein the third part can move along the B1 direction, and the fourth part can move along the B2 direction, and the items 3 to be pressed in the item placement area 10 are located between the third part and the fourth part of the second drive assembly 22. The third part and the fourth part of the second driving assembly 22 clamp the objects 3 to be pressed in the object placement area 10 , so that the objects 3 to be pressed together along the second horizontal direction B are pressed together.
[0062] The above specific examples are used to illustrate the present invention, which are only used to help understand the present invention and are not intended to limit the present invention. For those skilled in the art of the present invention, some simple deductions, deformations or substitutions can be made based on the idea of the present invention.
Claims
1. A pressing jig for manufacturing an atomizing device, characterized in that: It comprises a base (1) and a driving unit; The base (1) has an article placement area (10), and the drive unit is arranged on the base (1) and located on one side of the article placement area (10); The driving unit comprises a first driving component (21) and a second driving component (22) arranged on one side of the first driving component (21), wherein the first driving component (21) and the second driving component (22) are respectively capable of moving relative to the base (1); The first driving component (21) can reciprocate along a first horizontal direction (A) to approach or move away from the article placement area (10), and the second driving component (22) can reciprocate along a second horizontal direction (B) to approach or move away from the article placement area (10); Wherein, the first horizontal direction (A) is perpendicular to the second horizontal direction (B).
2. The pressing jig for manufacturing an atomizing device according to claim 1, characterized in that: The pressing fixture further comprises a limiting unit (4), wherein the limiting unit (4) is arranged on the base (1) and defines the article placement area (10); Along the first horizontal direction (A), the article placement area (10) is located between the limiting unit (4) and the first driving assembly (21); along the second horizontal direction (B), the article placement area (10) is located between the limiting unit (4) and the second driving assembly (22).
3. The pressing jig for manufacturing an atomizing device according to claim 2, characterized in that: The limiting unit (4) comprises a first surface (411) and a second surface (412), wherein the first surface (411) faces the first driving component (21) and is perpendicular to the first horizontal direction (A), and the second surface (412) faces the second driving component (22) and is perpendicular to the second horizontal direction (B).
4. The pressing jig for manufacturing an atomizing device according to claim 1, characterized in that: The first driving component (21) comprises a first driving member (211) and a first crimping member (212) for contacting an object (3) to be pressed in the object placement area (10), and the first driving member (211) can drive the first crimping member (212) to move back and forth along a first horizontal direction (A); The second driving assembly (22) comprises a second driving member (221) and a second crimping member (222) for contacting the article (3) to be pressed in the article placement area (10), and the second driving member (221) can drive the second crimping member (222) to move back and forth along a second horizontal direction (B).
5. The pressing jig for manufacturing an atomizing device according to claim 4, characterized in that: The first crimping member (212) and the first driving member (211) are detachably connected; And / or, the second crimping member (222) and the second driving member (221) are detachably connected.
6. The pressing jig for manufacturing an atomizing device according to claim 4, characterized in that: The first crimping member (212) has a third surface (213) for contacting the object (3) to be pressed in the object placement area (10), and the second crimping member (222) has a fourth surface (224) for contacting the object (3) to be pressed in the object placement area (10); A protective layer is provided on the third surface (213) and / or the fourth surface (224).
7. The pressing jig for manufacturing an atomizing device according to claim 4, characterized in that: The object to be pressed (3) comprises at least two sub-objects (31); At least two of the sub-items (31) have different sizes along the first horizontal direction (A); the first crimping member (212) is used to contact at least two of the sub-items (31) simultaneously along the first horizontal direction (A); the second crimping member (222) is used to contact one of the sub-items (31) along the second horizontal direction (B); and the first crimping member (212) is in an L-shaped structure; or, At least two of the sub-items (31) have different sizes along the second horizontal direction (B); the second crimping piece (222) is used to contact at least two of the sub-items (31) simultaneously along the second horizontal direction (B); the first crimping piece (212) is used to contact one of the sub-items (31) along the first horizontal direction (A); and the second crimping piece (222) is an L-shaped structure.
8. The pressing jig for manufacturing an atomizing device according to claim 4, characterized in that: The first driving member (211) and the second driving member (221) are cylinders respectively.
9. The pressing jig for manufacturing an atomizing device according to claim 8, characterized in that: The driving unit further comprises an air source component (5), wherein the air source component (5) is arranged on the base (1) and is located on one side of the article placement area (10) and on one side of the driving unit; The first driving member (211) has a first air inlet (214) and a first air outlet (215), the second driving member (221) has a second air inlet (223) and a second air outlet (225), and the air source component (5) is respectively connected to the first air inlet (214), the first air outlet (215), the second air inlet (223) and the second air outlet (225) via a pipe (23).
10. The pressing jig for manufacturing an atomizing device according to claim 9, characterized in that: The first air inlet (214) is provided with a first regulating valve (241), and the second air inlet (223) is provided with a second regulating valve (242), and the preset openings of the first regulating valve (241) and the second regulating valve (242) are different.