Atomization assembly, manufacturing device of atomization assembly, using method of manufacturing device and atomization device
By setting up installation holes on the atomizing bracket and welding the pins of the heating element to the connection end, combining the limit grooves and limit surface structure, the problem of high resistance value at the connection between the pins and the atomizing bracket is solved, and electrical conduction of low resistance value is achieved.
Patent Information
- Application Number
- CN202510538507.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2025-07-11
AI Technical Summary
In the prior art, the resistance value at the connection between the pins of the atomization assembly and the atomization bracket is high, resulting in poor electrical conduction.
The atomizing bracket is provided with a mounting hole, and the second conductive part of the pin of the heating element is extended to the outside in a specific direction through the mounting hole, and welded to the connection end, combining the limit groove and the limit surface structure to ensure a tight conductive connection.
The low resistance value connection between the pin and the atomizing bracket is realized, ensuring the electrical conduction effect and improving the tightness and stability of the connection.
Smart Images

Figure CN120284007A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of atomization devices, and particularly relates to an atomization component, a manufacturing device thereof and a using method thereof, and an atomization device. Background Art
[0002] An atomization device is a device for atomizing an aerosol matrix into an aerosol by means of heating or the like. Generally, an atomization component is provided inside the atomization device, and the atomization component generally includes an atomization bracket and a heating element arranged inside the atomization bracket. The heating element needs to be electrically connected to the atomization bracket.
[0003] In related technologies, the pins of the heating element are often made to fit the atomization bracket by means of silicone extrusion, so as to conduct the heating element and make the heating element work. Among them, the pins generally include a positive pin and a negative pin, and an insulating pad is arranged between the positive pin and the negative pin.
[0004] Since the volume of silicone is small and the interference amount is limited, it is impossible to ensure 100% that the pins are fully fitted to the atomization bracket, which will result in a relatively high resistance value at the connection between the pins and the atomization bracket. Summary of the Invention
[0005] The present application provides an atomization component, a manufacturing device thereof and a using method thereof, and an atomization device, which are used to improve the problem of relatively high resistance value at the connection between the pins and the atomization bracket in related technologies.
[0006] In a first aspect, an embodiment of the present application provides an atomization component, including:
[0007] An atomization bracket, the atomization bracket is provided with a mounting hole, the atomization bracket has a connection end, the mounting hole has an opening, and the opening is formed at the connection end and faces a first direction;
[0008] A heating element, the heating element includes a heating part and pins, the heating part is installed inside the mounting hole, the pins include a first conductive part and a second conductive part connected to each other, one end of the first conductive part is connected to the heating part and is electrically connected, the other end of the first conductive part is connected to the second conductive part, the second conductive part extends to the outside of the mounting hole along a second direction through the opening, and the second conductive part is welded to the connection end and is electrically connected, and the second direction is arranged at an angle with the first direction.
[0009] The atomization component provided by the embodiment of the present application has at least the following beneficial effects:
[0010] Since the atomizing bracket is provided with mounting holes, the atomizing bracket has a connecting end, the mounting holes have openings, and the heating part of the heating element is installed inside the mounting holes. The pins of the heating element include a first conductive part and a second conductive part connected to each other. One end of the first conductive part is connected to the heating part and is electrically conductive, and the other end of the first conductive part is connected to the second conductive part. Therefore, the second conductive part can be extended along the second direction through the opening to the outside of the mounting hole, and the second conductive part is welded to the connecting end and is electrically conductive, so that the connecting end is electrically conductive to the heating part through the second conductive part and the first conductive part. After the second conductive part is welded to the connecting end, the connection is tight, and the resistance value at the connection between the two is low.
[0011] In some embodiments, the connecting end is provided with a limiting groove, the limiting groove penetrates through the inner hole wall of the mounting hole and the outer surface of the connecting end opposite to the inner hole wall, the second conductive part extends to the outside of the mounting hole through the opening and the limiting groove, and the bottom wall of the limiting groove is welded to the second conductive part.
[0012] In some embodiments, the side wall of the limiting groove is welded to the second conductive part.
[0013] In some embodiments, the connecting end is provided with a limiting surface, the limiting surface is located outside the mounting hole, and the limiting surface faces the first direction, and part of the second conductive part is placed on the limiting surface.
[0014] In some embodiments, the inner hole wall of the mounting hole is welded to part of the first conductive part.
[0015] In some embodiments, the first direction is parallel to the axis direction of the mounting hole, and the second direction is perpendicular to the first direction.
[0016] In a second aspect, an embodiment of the present application provides a manufacturing device for an atomizing component, and the atomizing component includes:
[0017] An atomizing bracket, the atomizing bracket is provided with mounting holes, the atomizing bracket has a connecting end, the mounting holes have openings, and the openings are formed on the connecting end and face the first direction;
[0018] A heating element, the heating element includes a heating part and pins, the heating part is installed inside the mounting hole, the pins include a first conductive part and a second conductive part connected to each other, one end of the first conductive part is connected to the heating part and is electrically conductive, the other end of the first conductive part is connected to the second conductive part, the second conductive part extends to the outside of the mounting hole along the second direction through the opening, and the second conductive part is welded to the connecting end and is electrically conductive, and the second direction is arranged at an angle with the first direction;
[0019] The manufacturing device includes:
[0020] A first fixture for fixing the atomization bracket;
[0021] A second fixture for abutting against the second conductive part so that the second conductive part contacts the connection end;
[0022] A welding assembly for welding the second conductive part and the connection end together.
[0023] The manufacturing device for the atomization assembly provided by the embodiment of the present application has at least the following beneficial effects:
[0024] Since the atomization bracket is first fixed by the first fixture, and then the second fixture abuts against the second conductive part so that the second conductive part contacts the connection end, and then the welding assembly welds the second conductive part and the connection end together, the second conductive part of the pin can be welded to the connection end of the atomization bracket and electrically conducted, so that the connection end is electrically conducted to the heating part through the second conductive part and the first conductive part. After the second conductive part is welded to the connection end, the connection is tight and the resistance value at the connection part of the two is low.
[0025] In some embodiments, a limiting groove is provided on the connection end, the limiting groove penetrates the inner hole wall of the mounting hole and the outer surface of the connection end opposite to the inner hole wall, and the second conductive part extends to the outside of the mounting hole through the opening and the limiting groove; the second fixture is used to abut against the second conductive part so that the bottom wall of the limiting groove fits with the second conductive part; the welding assembly is used to weld the bottom wall of the limiting groove and the second conductive part together.
[0026] In some embodiments, a limiting surface is provided on the connection end, the limiting surface is located outside the mounting hole, and the limiting surface faces the first direction; the second fixture is used to abut against the second conductive part so that part of the second conductive part is placed on the bottom wall of the limiting groove and part of the second conductive part is placed on the limiting surface.
[0027] In some embodiments, the second fixture is provided with an avoidance groove, the avoidance groove extends along the second direction, and the avoidance groove is used to expose the limiting groove.
[0028] In some embodiments, the second fixture is used to sleeved on the connection end and abut against the second conductive part.
[0029] In some of these embodiments, the second fixture is provided with an avoidance hole for exposing the opening; the welding assembly is further configured to weld the inner hole wall of the mounting hole to a part of the first conductive portion together.
[0030] In some of these embodiments, the atomization bracket includes a first bracket and a second bracket arranged in sequence along a first direction, the first bracket and the second bracket are connected, and the second bracket includes the connection end; the first bracket includes a first connection portion and a second connection portion arranged in sequence along the first direction; the first fixture is configured to be sleeved on the first connection portion and abut against the second connection portion along the first direction to fix the first bracket; the second fixture is configured to abut against the second conductive portion in a direction opposite to the first direction.
[0031] In some of these embodiments, the welding assembly is configured to weld the second conductive portion to the connection end together by laser.
[0032] In a third aspect, an embodiment of the present application provides a method for using a manufacturing device of an atomization assembly as described in the second aspect, including:
[0033] Using the first fixture to fix the atomization bracket;
[0034] Using the second fixture to abut against the second conductive portion so that the second conductive portion is in contact with the connection end;
[0035] Using the welding assembly to weld the second conductive portion to the connection end together.
[0036] The method for using the manufacturing device of the atomization assembly provided by the embodiment of the present application has at least the following beneficial effects:
[0037] Since the first fixture is used to fix the atomization bracket first, then the second fixture is used to abut against the second conductive portion so that the second conductive portion is in contact with the connection end, and then the welding assembly is used to weld the second conductive portion to the connection end together, the second conductive portion of the pin can be welded to the connection end of the atomization bracket and electrically conduct, so that the connection end is electrically conduct with the heating portion through the second conductive portion and the first conductive portion. After the second conductive portion is welded to the connection end, the connection is tight and the resistance value at the connection between the two is low.
[0038] In a fourth aspect, an embodiment of the present application provides an atomization device, and the atomization device includes the atomization assembly as described in the first aspect.
[0039] The atomization device provided by the embodiment of the present application has at least the following beneficial effects:
[0040] Since the atomization bracket is provided with mounting holes, the atomization bracket has a connection end, the mounting holes have openings, and the heating part of the heating element is installed inside the mounting holes. The pins of the heating element include a first conductive part and a second conductive part connected to each other. One end of the first conductive part is connected to and electrically conductive with the heating part, and the other end of the first conductive part is connected to the second conductive part. Therefore, the second conductive part can be extended along the second direction through the opening to the outside of the mounting hole, and the second conductive part is welded to the connection end and electrically conductive, so that the connection end is electrically conductive with the heating part through the second conductive part and the first conductive part. After the second conductive part is welded to the connection end, the connection is tight, and the resistance value at the connection between the two is low. Description of the Drawings
[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0042] Figure 1 is a schematic structural diagram of an atomization component in one of the embodiments of the present application;
[0043] Figure 2 is Figure 1 a three-dimensional structural diagram of the atomization component shown;
[0044] Figure 3 is Figure 2 a partial enlarged view of part A in
[0045] Figure 4 is Figure 1 a front view of the atomization component shown;
[0046] Figure 5 is Figure 1 a schematic structural diagram of the atomization component and the manufacturing device of the atomization component;
[0047] Figure 6 is Figure 5 a partial enlarged view of part B in
[0048] Figure 7 is Figure 5 a front view of the atomization component and the manufacturing device of the atomization component shown;
[0049] Figure 8 is Figure 7 a cross-sectional view of the atomization component and the manufacturing device of the atomization component along the M-M direction;
[0050] Figure 9 is Figure 7Partial enlarged view at C in the [diagram];
[0051] Figure 10 is Figure 5 The flowchart of the usage method of the manufacturing device of the atomization component shown in the [diagram].
[0052] The meanings of the markings in the [diagram] are as follows:
[0053] 100, atomization component;
[0054] 10, atomization bracket; 101, first bracket; 1011, first connection part; 1012, second connection part; 102, second bracket; 11, mounting hole; 111, opening; 12, connection end; 121, limiting groove; 122, limiting surface; 20, heating element; 21, heating part; 22, pin; 221, first conductive part; 222, second conductive part;
[0055] 200, first fixture;
[0056] 300, second fixture;
[0057] 310, avoidance groove; 320, avoidance hole. Detailed implementation method
[0058] In order to make the purpose, technical solution and advantages of this application clearer, the following further elaborates on this application in combination with the attached drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain this application and are not used to limit this application.
[0059] It should be noted that when an element is referred to as "fixed to" or "set on" another element, it can be directly on the other element or indirectly on that other element. When an element is referred to as "connected to" another element, it can be directly connected to the other element or indirectly connected to that other element.
[0060] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of this application, "a plurality" means two or more, unless otherwise specifically defined.
[0061] References to "one embodiment", "some embodiments", or "an embodiment" in the description of the present application mean that a particular feature, structure, or characteristic described in connection with that embodiment is included in one or more embodiments of the present application. Thus, statements such as "in one embodiment", "in some embodiments", "in other some embodiments", "in still other embodiments", etc., which appear in different places in this specification, do not necessarily all refer to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized. In addition, in one or more embodiments, specific features, structures, or characteristics may be combined in any suitable manner.
[0062] To illustrate the technical solution of the present application, the following will be described in conjunction with specific drawings and embodiments.
[0063] An atomizing device is a device for atomizing an aerosol matrix into an aerosol by means such as heating. Generally, an atomizing component is provided inside it, and the atomizing component generally includes an atomizing bracket and a heating element disposed inside the atomizing bracket. The heating element needs to be electrically connected to the atomizing bracket.
[0064] In the related art, the pins of the heating element are often made to fit the atomizing bracket by means of silicone extrusion, so as to conduct the heating element and make the heating element work. Among them, the pins generally include a positive pin and a negative pin, and an insulating pad is provided between the positive pin and the negative pin.
[0065] Since the volume of the silicone is small and the interference amount is limited, it is impossible to ensure 100% that the pins fit the atomizing bracket sufficiently, resulting in a relatively high resistance at the connection between the pins and the atomizing bracket.
[0066] In view of this, the present application provides an atomizing component, a manufacturing device and a using method thereof for an atomizing component, and an atomizing device. Since the atomizing bracket is provided with an installation hole, the atomizing bracket has a connection end, the installation hole has an opening, and the heating part of the heating element is installed inside the installation hole. The pins of the heating element include a first conductive part and a second conductive part connected to each other. One end of the first conductive part is connected to and electrically connected to the heating part, and the other end of the first conductive part is connected to the second conductive part. Therefore, the second conductive part can be extended along a second direction through the opening to the outside of the installation hole, and the second conductive part is welded to the connection end and electrically connected, so that the connection end is electrically connected to the heating part through the second conductive part and the first conductive part. After the second conductive part is welded to the connection end, the connection is tight, and the resistance value at the connection between the two is low.
[0067] Please refer to Figures 1 to 4 , Figure 1 which is a schematic structural diagram of the atomizing component 100 in one embodiment of the present application, Figure 2 is Figure 1 a three-dimensional structural diagram of the atomizing component 100 shown inFigure 3 is Figure 2 a partial enlarged view of area A in Figure 4 is Figure 1 the front view of the atomization component 100 shown in
[0068] On the one hand, an embodiment of the present application provides an atomization component 100, which includes an atomization bracket 10 and a heating element 20.
[0069] The atomization bracket 10 is provided with a mounting hole 11. The atomization bracket 10 has a connection end 12. The mounting hole 11 has an opening 111. The opening 111 is formed at the connection end 12 and faces the first direction. The first direction can be the direction indicated by arrow J in the figure. The connection end 12 has conductivity.
[0070] The heating element 20 includes a heating part 21 and pins 22. The heating part 21 is installed inside the mounting hole 11. The pins 22 include a connected first conductive part 221 and a second conductive part 222. One end of the first conductive part 221 is connected to the heating part 21 and is electrically connected. The other end of the first conductive part 221 is connected to the second conductive part 222. The second conductive part 222 extends outside the mounting hole 11 along the second direction through the opening 111, and the second conductive part 222 is welded to the connection end 12 and is electrically connected. The second direction is set at an angle to the first direction. The second direction can be the direction indicated by arrow K in the figure.
[0071] The heating element 20 can be a heating sheet or a heating wire, etc.
[0072] The heating part 21 is used to heat and atomize the aerosol matrix. Two pins 22 can be provided. The two pins 22 are respectively a negative pin 22 and a positive pin 22.
[0073] Wherein, at least one of the negative pin 22 and the positive pin 22 can be set to include a connected first conductive part 221 and a second conductive part 222. For example, in the illustrated embodiment, the negative pin 22 includes a connected first conductive part 221 and a second conductive part 222.
[0074] The second conductive part 222 and the connection end 12 can be welded together and electrically connected by means such as laser welding. Since the second conductive part 222 is directly welded to the connection end 12, the connection is relatively tight, and the resistance value at the connection between the two is low.
[0075] As can be seen from the above, for the atomization component 100 provided in the embodiment of the present application, since the atomization bracket 10 is provided with an installation hole 11, the atomization bracket 10 has a connection end 12, the installation hole 11 has an opening 111, and the heating part 21 of the heating element 20 is installed inside the installation hole 11. The pin 22 of the heating element 20 includes a first conductive part 221 and a second conductive part 222 connected to each other. One end of the first conductive part 221 is connected to the heating part 21 and is electrically conductive. The other end of the first conductive part 221 is connected to the second conductive part 222. Therefore, the second conductive part 222 can be extended to the outside of the installation hole 11 along the second direction through the opening 111, and the second conductive part 222 can be welded to the connection end 12 and be electrically conductive, so that the connection end 12 is electrically conductive to the heating part 21 through the second conductive part 222 and the first conductive part 221. After the second conductive part 222 is welded to the connection end 12, the connection is tight, and the resistance value at the connection between the two is low.
[0076] Wherein, the connection end 12 is provided with a limiting groove 121. The limiting groove 121 penetrates the inner hole wall of the installation hole 11 and the outer surface of the connection end 12 opposite to the inner hole wall. The second conductive part 222 extends to the outside of the installation hole 11 through the opening 111 and the limiting groove 121, and the bottom wall of the limiting groove 121 is welded to the second conductive part 222.
[0077] By adopting the above scheme, not only can the position of the second conductive part 222 be restricted by the limiting groove 121, which is convenient for welding the second conductive part 222 to the connection end 12, but also after the second conductive part 222 is welded to the connection end 12, it can prevent the second conductive part 222 from moving a large range under external force, resulting in the separation of the second conductive part 222 from the connection end 12.
[0078] It can be understood that the limiting groove 121 can have a notch facing the first direction and communicating with the opening 111. The second conductive part 222 can be directly put into the limiting groove 121 through the notch of the limiting groove 121, and the second conductive part 222 extends to the outside of the installation hole 11 through the opening 111 and the limiting groove 121.
[0079] Optionally, the side wall of the limiting groove 121 is welded to the second conductive part 222.
[0080] With such a setting, the connection area between the connection end 12 and the second conductive part 222 can be increased, thereby improving the connection strength between the connection end 12 and the second conductive part 222.
[0081] It should be noted that only one side wall of the limiting groove 121 can be welded to the second conductive part 222, or the opposite two side walls of the limiting groove 121 can be welded to the second conductive part 222.
[0082] Optionally, the connecting end 12 is provided with a limiting surface 122. The limiting surface 122 is located outside the mounting hole 11, and the limiting surface 122 faces the first direction. A part of the second conductive portion 222 is attached to the limiting surface 122.
[0083] With such a setting, the second conductive portion 222 can be first attached to the limiting surface 122 to support the second conductive portion 222, facilitating the subsequent welding of the bottom wall of the limiting groove 121 and the second conductive portion 222 together.
[0084] Optionally, the inner hole wall of the mounting hole 11 is welded to a part of the first conductive portion 221.
[0085] With such a setting, the connection area between the atomizing bracket 10 and the pin 22 can be increased, thereby improving the connection strength between the atomizing bracket 10 and the pin 22.
[0086] Optionally, the first direction is parallel to the axis direction of the mounting hole 11, and the second direction is perpendicular to the first direction.
[0087] With such a setting, it is convenient to control the relative position between the atomizing bracket 10 and the second conductive portion 222.
[0088] Please refer to Figures 1 to 10 , Figure 5 is Figure 1 the schematic structural diagram of the atomizing assembly 100 and the manufacturing device of the atomizing assembly 100 shown in Figure 6 is Figure 5 the partial enlarged view at B in Figure 7 is Figure 5 the front view of the atomizing assembly 100 and the manufacturing device of the atomizing assembly 100 shown in Figure 8 is Figure 7 the sectional view of the atomizing assembly 100 and the manufacturing device of the atomizing assembly 100 along the M-M direction shown in Figure 9 is Figure 7 the partial enlarged view at C in Figure 10 is Figure 5 the flowchart of the usage method of the manufacturing device of the atomizing assembly 100 shown in
[0089] On the other hand, the embodiment of the present application provides a manufacturing device for an atomizing assembly 100. The atomizing assembly 100 can be the atomizing assembly 100 provided in the above embodiment. The manufacturing device includes a first fixture 200, a second fixture 300, and a welding assembly (not shown in the figure).
[0090] The first fixture 200 is used to fix the atomizing bracket 10. The first fixture 200 can include a jaw or a three-jaw chuck, etc.
[0091] The second jig 300 is used to hold the second conductive part 222 so that the second conductive part 222 is in contact with the connection end 12. The second jig 300 can be a pressing block or the like.
[0092] The welding assembly is used to weld the second conductive part 222 and the connection end 12 together. The welding assembly can be a laser welding machine or the like.
[0093] The usage method of the manufacturing device for the above-mentioned atomization assembly 100 includes:
[0094] S100: Fix the atomization bracket 10 using the first jig 200.
[0095] S200: Use the second jig 300 to hold the second conductive part 222 so that the second conductive part 222 is in contact with the connection end 12.
[0096] S300: Use the welding assembly to weld the second conductive part 222 and the connection end 12 together.
[0097] In the manufacturing device for the atomization assembly 100 and its usage method provided by the embodiments of the present application, since the atomization bracket 10 is fixed using the first jig 200 first, and then the second jig 300 is used to hold the second conductive part 222 so that the second conductive part 222 is in contact with the connection end 12, and then the welding assembly is used to weld the second conductive part 222 and the connection end 12 together, the second conductive part 222 of the pin 22 can be welded to the connection end 12 of the atomization bracket 10 and electrically connected. So that the connection end 12 is electrically connected to the heating part 21 through the second conductive part 222 and the first conductive part 221. After the second conductive part 222 and the connection end 12 are welded together, they are tightly connected, and the resistance value at the connection part between the two is relatively low.
[0098] Wherein, the connection end 12 is provided with a limiting groove 121. The limiting groove 121 penetrates through the inner hole wall of the mounting hole 11 and the outer surface of the connection end 12 opposite to the inner hole wall. The second conductive part 222 extends to the outside of the mounting hole 11 through the opening 111 and the limiting groove 121. The second jig 300 is used to hold against the second conductive part 222 so that the bottom wall of the limiting groove 121 is in contact with the second conductive part 222. The welding assembly is used to weld the bottom wall of the limiting groove 121 and the second conductive part 222 together.
[0099] By adopting the above scheme, not only can the position of the second conductive part 222 be restricted through the limiting groove 121, which is convenient for welding the second conductive part 222 and the connection end 12 together, but also after welding the bottom wall of the limiting groove 121 and the second conductive part 222 together, it can also prevent the second conductive part 222 from moving within a large range under external force, resulting in the separation of the second conductive part 222 and the connection end 12.
[0100] Optionally, a limiting surface 122 is provided at the connecting end 12, and the limiting surface 122 is located outside the mounting hole 11, and the limiting surface 122 faces the first direction; the second fixture 300 is used to support the second conductive part 222, so that part of the second conductive part 222 is attached to the bottom wall of the limiting groove 121, and part of the second conductive part 222 is attached to the limiting surface 122.
[0101] With such a configuration, the second fixture 300 can be used to support the second conductive part 222, and the second conductive part 222 can be placed on the limiting surface 122. The limiting surface 122 supports the second conductive part 222, so that the second conductive part 222 and the second fixture 300 can be limited by the limiting surface 122, thereby preventing part of the second conductive part 222 from being excessively bent by the second fixture 300, which would affect the subsequent welding of the bottom wall of the limiting groove 121 and the second conductive part 222 together.
[0102] It should be noted that after the bottom wall of the limiting groove 121 and the second conductive part 222 are welded together using a welding assembly, the excess second conductive part 222 protruding from the limiting surface 122 along the second direction can be cut off to avoid affecting the subsequent assembly of the atomizer assembly 100. The remaining subsequent assembly steps are consistent with the conventional assembly steps.
[0103] Optionally, the second fixture 300 is provided with a avoiding groove 310 , and the avoiding groove 310 extends along the second direction, and the avoiding groove 310 is used to expose the limiting groove 121 .
[0104] By adopting the above solution, the avoiding groove 310 can be used to expose the limiting groove 121, so as to prevent the second fixture 300 from affecting the welding assembly to weld the bottom wall and side wall of the limiting groove 121 with the second conductive part 222.
[0105] As an implementable manner, the second fixture 300 is used to be sleeved on the connecting end 12 and abut against the second conductive portion 222 .
[0106] Such a configuration can limit the position of the connection end 12 when the second fixture 300 is against the second conductive portion 222 , thereby preventing the connection end 12 from shaking randomly and affecting the subsequent welding process.
[0107] Optionally, the second fixture 300 is provided with an avoidance hole 320 , and the avoidance hole 320 is used to expose the opening 111 ; the welding assembly is also used to weld the inner hole wall of the mounting hole 11 and a part of the first conductive part 221 together.
[0108] With such arrangement, the inner hole wall of the mounting hole 11 and the first conductive portion 221 can be welded together by a welding assembly, which can increase the connection area between the atomizer bracket 10 and the pin 22 , thereby increasing the connection strength between the atomizer bracket 10 and the pin 22 .
[0109] It can be understood that the axial direction of the avoidance hole 320 can be parallel to the first direction.
[0110] It should be noted that part of the pin 22 can be bent first to form the second conductive part 222, and the second conductive part 222 can be placed in the limiting groove 121 to play a role in preliminary positioning. Then, the laser probe of the laser welding machine is aligned with the second conductive part 222 and the limiting groove 121, and the second fixture 300 is abutted against the second conductive part 222, so that the bottom wall of the limiting groove 121 is attached to the second conductive part 222, and the inner hole wall of the mounting hole 11 is attached to part of the first conductive part 221.
[0111] Optionally, the second fixture 300 can be connected to a telescopic member such as a hydraulic cylinder or a pneumatic cylinder. The telescopic member is used to drive the second fixture 300 to move in a direction parallel to the first direction, so that the second fixture 300 approaches and moves away from the second conductive part 222.
[0112] With such a setting, the telescopic member can be used to drive the second fixture 300 to approach the second conductive part 222 to abut against the second conductive part 222. And after the connection end 12 is welded to the second conductive part 222, the telescopic member can be used to drive the second fixture 300 to move away from the second conductive part 222, so that the second fixture 300 is separated from the second conductive part 222, and the operation is simple and convenient.
[0113] Please refer to Figures 1 to 9 , in this embodiment, the atomizing bracket 10 includes a first bracket 101 and a second bracket 102 arranged in sequence along the first direction. The first bracket 101 and the second bracket 102 are connected, and the second bracket 102 includes a connection end 12.
[0114] The first bracket 101 includes a first connection part 1011 and a second connection part 1012 arranged in sequence along the first direction; the first fixture 200 is used to sleeved on the first connection part 1011 and abut against the second connection part 1012 along the first direction to fix the first bracket 101.
[0115] The second fixture 300 is used to abut against the second conductive part 222 in a direction opposite to the first direction.
[0116] By adopting the above scheme, the first bracket 101 can be fixed more conveniently through the first fixture 200, so that the atomizing bracket 10 can be fixed more conveniently. And when the second fixture 300 abuts against the second conductive part 222 in a direction opposite to the first direction, it can ensure that the second conductive part 222 is in close contact with the connection end 12, which is convenient for subsequent welding.
[0117] It can be understood that part of the mounting holes 11 are formed in the first bracket 101, part of the mounting holes 11 are formed in the second bracket 102, and the heating part 21 is located inside the first bracket 101. When the second fixture 300 abuts against the second conductive part 222 in the direction opposite to the first direction, the bottom wall of the avoidance groove 310 abuts against the second conductive part 222 in the direction opposite to the first direction, so that the bottom wall of the limiting groove 121 can be in close contact with the second conductive part 222 and the connection end 12.
[0118] Optionally, the welding assembly is used to weld the second conductive part 222 and the connection end 12 together by laser.
[0119] With such a setting, the second conductive part 222 and the connection end 12 can be firmly fused by the instantaneous melting of the local materials of the second conductive part 222 and the local materials of the connection end 12, thereby solving the problem of high resistance caused by poor contact at the connection between the second conductive part 222 and the connection end 12.
[0120] It should be noted that laser welding is a welding technology that uses a high-energy-density laser beam as a heat source to locally melt materials and form a connection.
[0121] On the other hand, an embodiment of the present application provides an atomization device, and the atomization device includes the atomization assembly 100 as in the first aspect.
[0122] In the atomization device provided by the embodiment of the present application, since the atomization bracket 10 is provided with mounting holes 11, the atomization bracket 10 has a connection end 12, the mounting holes 11 have openings 111, and the heating part 21 of the heating element 20 is installed inside the mounting holes 11, and the pins 22 of the heating element 20 include a connected first conductive part 221 and a second conductive part 222. One end of the first conductive part 221 is connected to the heating part 21 and is electrically conductive, and the other end of the first conductive part 221 is connected to the second conductive part 222. Therefore, the second conductive part 222 can be extended to the outside of the mounting hole 11 along the second direction through the opening 111, and the second conductive part 222 is welded to the connection end 12 and is electrically conductive, so that the connection end 12 is electrically conductive to the heating part 21 through the second conductive part 222 and the first conductive part 221. After the second conductive part 222 is welded to the connection end 12, the connection is tight, and the resistance value at the connection between the two is low.
[0123] It should be noted that the atomization device provided by the embodiment of the present application may further include a liquid storage member, a power source, a circuit board, a sealing silica gel, etc. The liquid storage member is provided with a liquid storage cavity for storing the aerosol matrix, and the power source and the heating element 20 can be electrically conductive through the pins 22, the atomization bracket 10, the circuit board, etc.
[0124] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the various embodiments of the present application, and should all be included within the protection scope of the present application.
Claims
1. An atomizing component, characterized in that, Comprising: An atomizing bracket, the atomizing bracket is provided with a mounting hole, the atomizing bracket has a connecting end, the mounting hole has an opening, the opening is formed at the connecting end and faces a first direction; A heating element, the heating element includes a heating part and pins, the heating part is installed inside the mounting hole, the pins include a first conductive part and a second conductive part connected to each other, one end of the first conductive part is connected to the heating part and is electrically conductive, the other end of the first conductive part is connected to the second conductive part, the second conductive part extends to the outside of the mounting hole along a second direction through the opening, and the second conductive part is welded to the connecting end and is electrically conductive, the second direction is arranged at an angle with the first direction.
2. The atomization component according to claim 1, wherein The connecting end is provided with a limiting groove, the limiting groove penetrates the inner hole wall of the mounting hole and the outer surface of the connecting end opposite to the inner hole wall, the second conductive part extends to the outside of the mounting hole through the opening and the limiting groove, and the bottom wall of the limiting groove is welded to the second conductive part.
3. The atomization component according to claim 2, wherein The side wall of the limiting groove is welded to the second conductive part.
4. The atomization component according to claim 2, wherein The connecting end is provided with a limiting surface, the limiting surface is located outside the mounting hole, and the limiting surface faces the first direction, and part of the second conductive part is placed against the limiting surface.
5. The atomization component according to claim 1, characterized in that, The inner hole wall of the mounting hole is welded to part of the first conductive part.
6. The atomization component according to any one of claims 1 to 5, characterized in that, The first direction is parallel to the axis direction of the mounting hole, and the second direction is perpendicular to the first direction.
7. A manufacturing device for an atomization component, characterized in that, The atomizing assembly includes: An atomizing bracket, the atomizing bracket is provided with a mounting hole, the atomizing bracket has a connecting end, the mounting hole has an opening, the opening is formed at the connecting end and faces a first direction; A heating element, the heating element includes a heating part and pins, the heating part is installed inside the mounting hole, the pins include a first conductive part and a second conductive part connected to each other, one end of the first conductive part is connected to the heating part and is electrically conductive, the other end of the first conductive part is connected to the second conductive part, the second conductive part extends to the outside of the mounting hole along a second direction through the opening, and the second conductive part is welded to the connecting end and is electrically conductive, the second direction is arranged at an angle with the first direction; The manufacturing device includes: A first fixture for fixing the atomizing bracket; A second fixture for abutting against the second conductive part to make the second conductive part contact the connecting end; A welding assembly for welding the second conductive part to the connecting end together.
8. The manufacturing apparatus of the atomization component according to claim 7, characterized in that, The connecting end is provided with a limiting groove, the limiting groove penetrates the inner hole wall of the mounting hole and the outer surface of the connecting end opposite to the inner hole wall, the second conductive part extends to the outside of the mounting hole through the opening and the limiting groove; the second fixture is used for abutting against the second conductive part to make the bottom wall of the limiting groove fit with the second conductive part; the welding assembly is used for welding the bottom wall of the limiting groove to the second conductive part together.
9. The manufacturing apparatus of the atomization component according to claim 8, characterized in that, The connecting end is provided with a limiting surface, the limiting surface is located outside the mounting hole, and the limiting surface faces the first direction; the second jig is used to abut against the second conductive part so that part of the second conductive part is attached to the bottom wall of the limiting groove and part of the second conductive part is attached to the limiting surface.
10. The manufacturing apparatus of the atomization component according to claim 8, characterized in that, The second jig is provided with an avoidance groove, the avoidance groove extends along the second direction, and the avoidance groove is used to expose the limiting groove.
11. The manufacturing apparatus of the atomization component according to claim 7, characterized in that, The second jig is used to be sleeved on the connecting end and abut against the second conductive part.
12. The manufacturing apparatus of the atomization component according to claim 7, characterized in that, The second jig is provided with an avoidance hole, the avoidance hole is used to expose the opening; the welding assembly is further used to weld the inner hole wall of the mounting hole and part of the first conductive part together.
13. The manufacturing apparatus of the atomization component according to any one of claims 7 to 12, characterized in that, The atomization bracket includes a first bracket and a second bracket arranged in sequence along the first direction, the first bracket and the second bracket are connected, and the second bracket includes the connecting end; the first bracket includes a first connecting part and a second connecting part arranged in sequence along the first direction; the first jig is used to be sleeved on the first connecting part and abut against the second connecting part along the first direction to fix the first bracket; the second jig is used to abut against the second conductive part in a direction opposite to the first direction.
14. The manufacturing apparatus of the atomization component according to any one of claims 7 to 12, characterized in that, The welding assembly is used to weld the second conductive part and the connecting end together by laser.
15. A method of using a manufacturing device for an atomization component according to any one of claims 7 to 14, characterized in that, Comprising: Fixing the atomization bracket with the first jig; Using the second jig to abut against the second conductive part so that the second conductive part is in contact with the connecting end; Using the welding assembly to weld the second conductive part and the connecting end together.
16. An atomizing device, characterized in that, The atomization device includes the atomization assembly according to any one of claims 1 to 6.