Magnetic flip cover assembly and aerosol forming device

The magnetic flip-top assembly utilizes the properties of magnets to automatically flip and close the flip-top, solving the problem of adding aerosol matrix when it is insufficient, preventing children from accidentally ingesting it, and protecting children's health.

CN115736360BActive Publication Date: 2026-07-31SHENZHEN JIYOU TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN JIYOU TECH CO LTD
Filing Date
2022-12-09
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

When using the aerosol forming device, if the aerosol matrix is ​​insufficient and needs to be added, the matrix may be easily removed, which could lead to children disassembling and accidentally ingesting it, posing a health risk.

Method used

It adopts a magnetic flip cover assembly, which utilizes the properties of like poles repelling and unlike poles attracting. The flip cover automatically flips and closes by rotation, preventing children from opening the oil filling interface.

Benefits of technology

It effectively prevents children from accidentally ingesting the aerosol matrix and ensures that the flip cover is difficult to open due to the attraction between opposite poles, thus protecting children's health.

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Abstract

This invention discloses a magnetic flip-top assembly and an aerosol forming device, including a flip-top assembly, an oil-filling base assembly, a first magnetic component, a second magnetic component, and a pin. The flip-top assembly is movably connected to the oil-filling base assembly via the pin. The flip-top assembly has a rotatable flip cover. The first magnetic component is disposed on the rotatable flip cover. The second magnetic component is disposed on the oil-filling base assembly. Rotation of the rotatable flip cover causes the first and second magnetic components to attract or repel each other. This utilizes the properties of magnets: like poles repel and unlike poles attract, to enable the flip-top to flip and close. Rotating the flip cover causes the like poles of the upper and lower magnets to repel each other, automatically flipping the cover. After oil is filled, rotating the flip cover causes the opposite poles of the magnets to automatically attract and seal the cover. At this point, if the cover is pried open by hand, the opposite poles attract, making it difficult to open. This effectively prevents children from opening the oil-filling interface and avoids accidental ingestion that could affect their health.
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Description

Technical Field

[0001] This invention relates to the field of aerosol forming apparatus technology, and more particularly to an aerosol forming apparatus with a magnetic flip-top assembly. Background Technology

[0002] Currently, aerosol forming devices are widely used as a substitute for traditional open flame combustion in aerosol formation. However, users sometimes encounter the problem of insufficient aerosol matrix, requiring the addition of more. This makes it easy for the aerosol matrix to be removed from the device, allowing children to disassemble it and ingest the matrix. This not only leads to the loss of aerosol matrix but also poses a health risk to children who may accidentally ingest it. Summary of the Invention

[0003] This invention provides a magnetic flip-top assembly and an aerosol forming device, aiming to solve the problem in existing technologies where users encounter insufficient aerosol in the aerosol forming device and need to add more. This leads to the aerosol matrix in the aerosol forming device being easily removed, making it easy for children to disassemble the device and ingest the aerosol matrix. This not only causes the aerosol matrix to be easily lost, but also poses a health risk to children who may accidentally ingest it.

[0004] In a first aspect, the present invention discloses a magnetic flip cover assembly, including a flip cover assembly, an oil filling base assembly, a first magnetic component, a second magnetic component, and a pin; the flip cover assembly is movably connected to the oil filling base assembly via the pin; the flip cover assembly has a rotatable flip cover; the first magnetic component is disposed on the rotatable flip cover; the second magnetic component is disposed on the oil filling base assembly, and the rotatable flip cover, when rotated, can cause the first magnetic component and the second magnetic component to attract or repel each other.

[0005] Secondly, embodiments of the present invention also provide an aerosol forming apparatus, which includes the magnetic flip cover assembly as described in the first aspect.

[0006] This invention discloses a magnetic flip-top assembly and an aerosol forming device, including a flip-top assembly, an oil-filling base assembly, a first magnetic component, a second magnetic component, and a pin. The flip-top assembly is movably connected to the oil-filling base assembly via the pin. The flip-top assembly has a rotatable flip cover. The first magnetic component is located on the rotatable flip cover. The second magnetic component is located on the oil-filling base assembly. Rotation of the rotatable flip cover causes the first and second magnetic components to attract or repel each other. This utilizes the properties of magnets: like poles repel and unlike poles attract, to enable the flip-top to flip and close. Rotating the flip cover causes the like poles of the upper and lower magnets to repel each other, automatically opening the flip-top. After oil is filled, rotating the flip cover causes the opposite poles of the magnets to automatically attract and seal the flip-top. At this point, attempting to pry the flip-top open by hand is difficult due to the attraction between opposite poles, effectively preventing children from opening the oil-filling interface and avoiding accidental ingestion that could harm their health. Attached Figure Description

[0007] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0008] Figure 1 This is a schematic diagram of the flip-top closing of the magnetic flip-top assembly and aerosol forming device provided in an embodiment of the present invention;

[0009] Figure 2 This is a schematic diagram of the flip-top rotation of the magnetic flip-top assembly and aerosol forming device provided in an embodiment of the present invention;

[0010] Figure 3 This is an exploded view of the magnetic flip cover assembly provided in an embodiment of the present invention;

[0011] Figure 4 This is an enlarged view of the rotatable flip cover of the magnetic flip cover assembly provided in an embodiment of the present invention;

[0012] Figure 5 This is an exploded view of the oil filling base assembly of the magnetic flip cover assembly provided in an embodiment of the present invention;

[0013] Figure 6 This is an enlarged view of the oil filling base of the magnetic flip cover assembly provided in an embodiment of the present invention.

[0014] The labels for the attached figures are as follows:

[0015] 101. Flip-top assembly; 1011. Suction nozzle; 1012. Flip-top; 10121. First magnet fixing groove assembly; 10122. Second magnet fixing groove assembly; 1013. Flip-top base; 10131. Protruding shaft hole; 1014. Flip-top fixing ring; 1015. First magnetic assembly; 10151. First magnetic fixing silicone; 10152. First magnet pressure ring; 10153. First magnet;

[0016] 102. Oil filling base assembly; 1021. Second magnetic assembly; 10211. Second magnet; 10212. Second magnet retaining ring; 10213. Second magnet fixing silicone; 1022. Oil filling silicone; 1023. Oil filling base; 10231. Concave shaft hole; 10232. First oil filling silicone fixing groove; 10233. Second oil filling silicone fixing groove; 10234. Third magnet fixing groove group; 10235. Fourth magnet fixing groove group; 10236. Nozzle connecting groove; 1024. Pin;

[0017] 103. Aerosol forming apparatus. Detailed Implementation

[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0019] It should be understood that, when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, integrals, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components and / or collections thereof.

[0020] It should also be understood that the terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the invention. As used in this specification and the appended claims, the singular forms “a,” “an,” and “the” are intended to include the plural forms unless the context clearly indicates otherwise.

[0021] It should also be further understood that the term "and / or" as used in this specification and the appended claims refers to any combination of one or more of the associated listed items and all possible combinations, and includes such combinations.

[0022] Please see Figures 1 to 6 , Figure 1This is a schematic diagram of the flip-top closing of the magnetic flip-top assembly and aerosol forming device provided in an embodiment of the present invention; Figure 2 This is a schematic diagram of the flip-top rotation of the magnetic flip-top assembly and aerosol forming device provided in an embodiment of the present invention; Figure 3 This is an exploded view of the magnetic flip cover assembly provided in an embodiment of the present invention; Figure 4 This is an enlarged view of the rotatable flip cover of the magnetic flip cover assembly provided in an embodiment of the present invention; Figure 5 This is an exploded view of the oil filling base assembly of the magnetic flip cover assembly provided in an embodiment of the present invention; Figure 6 This is an enlarged view of the oil filling base of the magnetic flip cover assembly provided in an embodiment of the present invention. Figures 1 to 6 As shown, the present invention discloses a magnetic flip cover assembly, including a flip cover assembly 101, an oil filling base assembly 102, a first magnetic component 1015, a second magnetic component 1021, and a pin 1024; the flip cover assembly 101 is movably connected to the oil filling base assembly 102 via the pin 1024; the flip cover assembly 101 is provided with a rotatable flip cover 1012; the first magnetic component 1015 is disposed on the rotatable flip cover 1012; the second magnetic component 1021 is disposed on the oil filling base assembly 102, and the rotatable flip cover 1012, when rotated, can cause the first magnetic component 1015 and the second magnetic component 1021 to attract or repel each other.

[0023] In this embodiment, when any type of aerosol forming device is in use, to avoid the problem of easily removing the aerosol matrix when changing it, the magnetic flip-top assembly can be directly installed on a standard aerosol forming device. The flip-top utilizes the properties of magnets—like poles repel and unlike poles attract—to open and close the cover. This effectively prevents children from opening the oil filling port, avoiding accidental ingestion and potential health risks.

[0024] When a user uses the aerosol forming device with the magnetic flip-top assembly, if the aerosol matrix stored in the aerosol forming device is insufficient, it is necessary to add aerosol matrix to the aerosol forming device. At this time, the first magnetic component 1015 and the second magnetic component 1021 in the magnetic flip-top assembly are in a state of opposite attraction, making the flip-top assembly 101 firmly connected to the oil filling base assembly 102, and it cannot be easily pried open. At this time, the user only needs to rotate the flip-top 1012, and the first magnetic component 1015 will... It will also rotate along with the rotatable flip cover 1012. When the first magnetic component 1015 rotates with the rotatable flip cover 1012 to the point where its magnetic polarity is opposite to that of the second magnetic component 1021 on the oil filling base assembly 102, the flip cover assembly 101 will be affected by the repulsive force due to the repulsion between like poles, and will automatically flip and open the flip cover assembly 101, thereby exposing the plane of the oil filling base assembly 102. At this time, the user can inject the aerosol matrix into the oil filling silicone 1022, so that the aerosol matrix flows into the aerosol forming device.

[0025] When children obtain the aerosol forming device with the magnetic flip-top assembly, they often try to pry the flip-top assembly 101 outwards. At this time, the first and second magnetic components in the magnetic flip-top assembly are in a state of opposite attraction, firmly connecting the flip-top assembly 101 to the oil filling base assembly 102, making it difficult to pry open. Thus, the flip-top assembly cannot be easily opened without rotating the rotatable flip-top 1012. Even if a child obtains the aerosol forming device with the magnetic flip-top assembly, they cannot open the flip-top assembly 101 or expose the oil filling base assembly 102 due to incorrect usage, effectively preventing children from opening the oil filling interface and avoiding accidental ingestion that could affect their health.

[0026] In one embodiment, such as Figure 2 and Figure 3 As shown, the flip cover assembly 101 includes a first magnetic component 1015, a flip cover fixing ring 1014, a flip cover base 1013, a rotatable flip cover 1012, and a suction nozzle 1011; the flip cover fixing ring 1014 is sleeved on the rotatable flip cover 1012, the flip cover base 1013 is sleeved on the flip cover fixing ring 1014, and the suction nozzle 1011 is connected to and passes through the rotatable flip cover 1012; the first magnetic component 1015 surrounds the suction nozzle 1011; the flip cover base 1013 is provided with a convex shaft hole 10131.

[0027] In this embodiment, the first magnetic component 1015 surrounds the suction nozzle 1011, and the first magnetic component 1015 can be evenly distributed on the rotatable flip cover 1013; the flip cover fixing ring 1014 can connect the flip cover base 1013 and the rotatable flip cover 1012. The flip cover base 1013 has a convex shaft hole 10131, which is the connection point between the flip cover assembly 101 and the oil filling base assembly 102. The suction nozzle 1011 is installed on the central axis of the rotatable flip cover 1012. The length of the suction nozzle 1011 is longer than the length of the rotatable flip cover 1012, which allows one end of the suction nozzle 1011 to pass through the rotatable flip cover 1012 and extend into the oil filling base 1025, thereby connecting the gas channels of the flip cover assembly 101 and the oil filling base assembly 102.

[0028] In one embodiment, such as Figure 2 , Figure 4 and Figure 6 As shown, the oil filling base assembly 102 includes the second magnetic component 1021, oil filling silicone 1022, and oil filling base 1023; the oil filling base 1023 is provided with a suction nozzle connecting groove 10236 adapted to the suction nozzle 1011; the second magnetic component 1021 is disposed on the oil filling base 1023 surrounding the suction nozzle connecting groove 10236; the oil filling base 1023 is provided with a concave shaft hole 10231.

[0029] In this embodiment, the silicone injection silicone 1022 has a hollow structure and is disposed on the injection base 1023, enabling the injection base 1023 to have a hollow injection channel. This connects the injection channels in the aerosol forming device 103 located below the injection base 1023. When the user wants to inject an aerosol matrix into the aerosol forming device 103, the aerosol matrix can be injected into the silicone injection silicone 1022. The aerosol matrix flows through the silicone injection silicone 1022 to the aerosol forming device 103. 03; The concave shaft hole 10231 of the oil filling base 1023 is the connection point between the oil filling base assembly 102 and the flip cover assembly 101; The oil filling base 1023 is provided with a suction nozzle connecting groove 10236 adapted to the suction nozzle 1011, which can connect the suction nozzle 1011 and the aerosol channel of the oil filling base 1023; The second magnetic component 1021 is arranged around the suction nozzle connecting groove on the oil filling base 1023, and the second magnetic component 1021 can be evenly distributed on the oil filling base 1023.

[0030] In one embodiment, such as Figure 1 , Figure 2 , Figure 3 , Figure 5 and Figure 6 As shown, the pin 1024 passes through the concave shaft hole 10231 and the convex shaft hole 10131.

[0031] In this embodiment, the pin 1024 passes through the concave shaft hole 10231 and the convex shaft hole 10131. Since the concave shaft hole 10231 is provided on the oil filling base assembly and the convex shaft hole 10131 is provided on the flip cover assembly, the flip cover assembly 101 and the oil filling base assembly 102 can be movably connected.

[0032] In one embodiment, such as Figure 2 and Figure 3 As shown, the first magnetic component 1015 includes a first magnet 10153, a first magnet retaining ring 10152, and a first magnet fixing silicone 10151; the first magnet retaining ring 10152 is sleeved on the bottom end of the first magnet 10153, and the bottom end of the first magnet fixing silicone 10151 is attached to the top end of the first magnet 10153. The first magnet retaining ring 10152 and the first magnet fixing silicone 10151 together fix the first magnet 10153 inside the rotatable flip cover 1012.

[0033] In this embodiment, the length of the first magnet retaining ring 10152 is shorter than the length of the first magnet 10153. The first magnet retaining ring 10152 is sleeved on the bottom end of the first magnet 10153. The bottom end of the first magnet fixing silicone 10151 is attached to the top end of the first magnet 10153, which can fix the first magnet 10153 and provide a buffer pad for the first magnet 10153 and the rotatable flip cover 1012, thereby fixing the first magnet 10153 to the rotatable flip cover 1012. The first magnet 10153 is fixedly embedded in the rotatable flip cover 1012, so that when the rotatable flip cover 1012 rotates or flips, the first magnet 10153 can be fixedly driven to move together. It can also make the plane of the top of the first magnet 10153 and the plane of the rotatable flip cover 1012 on the same plane. This prevents the rotatable flip cover 1012 from becoming uneven and difficult to rotate due to the first magnet 10153 protruding from the plane of the rotatable flip cover 1012.

[0034] In one embodiment, such as Figure 2 , Figure 3 and Figure 4As shown, the rotatable flip cover 1012 is provided with a first magnet fixing groove group 10121 and a second magnet fixing groove group 10122. The first magnet fixing groove group 10121 and the second magnet fixing groove group 10122 are symmetrically distributed. The first magnet 10153 is evenly fixed in the first magnet fixing groove group 10121 and the second magnet fixing groove group 10122.

[0035] In this embodiment, each of the first magnet fixing slot group 10121 and the second magnet fixing slot group 10122 has three fixing slots. The first magnet 10153 has a total of six magnets, which are divided into two groups of three magnets each. The first magnet fixing slot group 10121 and the second magnet fixing slot group 10122 are symmetrically distributed, so that the first magnet 10153 is symmetrically and evenly distributed on the plane of the rotatable flip cover 1012, so that the magnetic force generated by the magnets in the same direction is equal. The magnets in the symmetrical positions have opposite magnetisms, and the magnetisms of adjacent magnets are also opposite. Thus, one group of magnets is arranged as (S, N, S), and the other group of magnets is arranged as (N, S, N); conversely, one group of magnets is arranged as (N, S, N), and the other group of magnets is arranged as (S, N, S). This makes the first magnet 10153 evenly distributed, and also allows the magnets in the same group to attract each other through attraction due to opposite poles, thus helping to fix them in the magnet fixing slots.

[0036] In one embodiment, such as Figure 2 , Figure 5 and Figure 6 As shown, the oil filling base 1023 is provided with a first oil filling silicone fixing groove 10232 and a second oil filling silicone fixing groove 10233. The first oil filling silicone fixing groove 10232 and the second oil filling silicone fixing groove 10233 are symmetrically distributed along an axis, and the oil filling silicone 1022 is evenly disposed in the first oil filling silicone fixing groove 10232 and the second oil filling silicone fixing groove 10233.

[0037] In this embodiment, the first oil-filling silicone fixing groove 10232 and the second oil-filling silicone fixing groove 10233 are symmetrically distributed, with one groove in each group. The oil-filling silicone 1022 is divided into two groups, one in each group. One is fixed in the first oil-filling silicone fixing groove 10232 of the oil-filling base 1025, and the other is embedded in the second oil-filling silicone fixing groove 10233 at a symmetrical position on the oil-filling base 1025. This forms two channels for adding aerosol matrix into the aerosol forming device 103. When the user adds aerosol matrix into one channel, the other channel allows the gas in the aerosol forming device 103 to be discharged outward. This ensures that the pressure inside the aerosol forming device 103 is consistent with the atmospheric pressure, making the process of adding aerosol matrix more stable and faster.

[0038] In one embodiment, such as Figure 2 and Figure 5 As shown, the second magnetic component 1021 includes a second magnet 10211, a second magnet retaining ring 10212, and a second magnet fixing silicone 10213; the second magnet retaining ring 10212 is sleeved on the top end of the second magnet 10211, the top end of the second magnet fixing silicone 10213 is attached to the bottom end of the second magnet 10211, and the second magnet retaining ring 10212 and the second magnet fixing silicone 10213 together fix the second magnet 10211 in the oil filling base 1023.

[0039] In this embodiment, the length of the second magnet retaining ring 10212 is shorter than the length of the second magnet 10211. The second magnet retaining ring 10212 is sleeved on the top end of the second magnet 10211. The top end of the second magnet fixing silicone 10213 is attached to the bottom end of the second magnet 10211, which can fix the second magnet 10211 and provide a buffer pad for the second magnet 10211 and the oil filling base 1023, thereby fixing the second magnet 10211 in the oil filling base 1023. The second magnet 10211 is fixedly embedded in the oil filling base 1023. Since the oil filling base 1023 is fixed, the second magnet 10211 is also fixed. This also makes the plane of the top end of the second magnet 10211 and the plane of the oil filling base 1023 on the same plane. This prevents the rotatable flip cover 1012 from becoming uneven due to the protrusion of the second magnet 10211, which would cause difficulty in rotation.

[0040] In one embodiment, such as Figure 2 , Figure 5 and Figure 6As shown, the oil filling base 1023 is provided with a third magnet fixing groove group 10234 and a fourth magnet fixing groove group 10235. The third magnet fixing groove group 10234 and the fourth magnet fixing groove group 10235 are symmetrically distributed along the axis of the oil filling silicone 1022. The second magnet 10211 is evenly fixed in the third magnet fixing groove group 10234 and the fourth magnet fixing groove group 10235.

[0041] In this embodiment, each of the third magnet fixing slot group 10234 and the fourth magnet fixing slot group 10235 has three magnet fixing slots. The second magnet 10211 has a total of six magnets, divided into two groups of three magnets each. The third magnet fixing slot group 10234 and the fourth magnet fixing slot group 10235 are symmetrically distributed along the axis of the silicone injection 1022. The second magnets 10211 are evenly fixed within the third magnet fixing slot group 10234 and the fourth magnet fixing slot group 10235. This allows the second magnets 10211 to be symmetrically and evenly distributed on the plane of the injection base 1023, ensuring that the magnets are in the same direction. The magnetic forces generated are equal; the magnets in the symmetrical positions have opposite magnetisms, and the magnetisms of adjacent magnets are also opposite. The two sets of second magnets 10211 are distributed on both sides of the silicone 1022. The magnets on one side are arranged as (N, S, N), and the magnets separated by the silicone 1022 on the other side are arranged as (S, N, S); conversely, the magnets on one side are arranged as (S, N, S), and the magnets separated by the silicone 1022 on the other side are arranged as (N, S, N). This makes the second magnets 1021 evenly distributed, and also allows the magnets in the same group to attract each other through attraction due to opposite poles, thus helping to fix them in the magnet fixing groove.

[0042] It should be noted that in the text, each of the first magnet fixing slot group, the second magnet fixing slot group, the third magnet fixing slot group, and the fourth magnet fixing slot group has three fixing slots as a specific embodiment. In fact, the number of fixing slots in each of the first magnet fixing slot group, the second magnet fixing slot group, the third magnet fixing slot group, and the fourth magnet fixing slot group is the same and ranges from 1 to N. As long as the poles of the magnets in the different groups are assembled in opposite directions, the function expressed in the text can be achieved. The number of fixing slots determines the number of magnets to be assembled. The number of fixing slots can be determined according to the requirements to limit the number of magnets assembled, thereby meeting the required magnetic force.

[0043] In one embodiment, such as Figures 1 to 6 As shown, it includes the magnetic flip cover assembly and aerosol forming device 103 as described in any one of claims 1-9.

[0044] In this embodiment, the function of the magnetic flip cover assembly can be utilized only if the aerosol forming device 103 is equipped with the magnetic flip cover assembly as described in any one of claims 1-9.

[0045] This invention provides an aerosol forming apparatus, which includes the magnetic flip-top assembly described above. The aerosol forming apparatus is equipped with a magnetic flip-top assembly. This assembly is connected to the oil injection base assembly via a pin; the flip-top assembly has a rotatable cover; a first magnetic component is located on the cover; a second magnetic component is located on the oil injection base assembly. Rotation of the cover allows the magnets on the two components to face each other with either like or unlike poles. This utilizes the properties of magnets—like poles repel and unlike poles attract—to enable the flip-top to open and close, ensuring that the injection port for adding the aerosol matrix is ​​not exposed, as the cover secures it.

[0046] This invention discloses a magnetic flip-top assembly and an aerosol forming device, including a flip-top assembly, an oil filling base assembly, a first magnetic component, a second magnetic component, and a pin. The flip-top assembly is connected to the oil filling base assembly via the pin. The flip-top assembly has a rotatable flip cover. The first magnetic component is located on the flip cover. The second magnetic component is located on the oil filling base assembly. Rotating the flip cover allows the magnets on the two components to face each other with either like or unlike poles. This utilizes the properties of magnets: like poles repel and unlike poles attract, to enable the flip-top to flip and close. Rotating the flip cover causes the like poles of the upper and lower magnets to repel each other, automatically flipping the cover. After oil is filled, rotating the flip cover directly causes the opposite poles of the magnets to automatically attract and seal the cover. At this point, attempting to pry the cover open by hand is difficult due to the opposite poles attracting, effectively preventing children from opening the oil filling interface and avoiding accidental ingestion that could harm their health.

[0047] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in the present invention, and these modifications or substitutions should all be covered within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. An aerosol-forming device with a magnetic flip cover assembly, characterized in that, The magnetic flip cover assembly includes a flip cover assembly, an oil filling base assembly, a first magnetic assembly, a second magnetic assembly, and a pin; The flip-top assembly is movably connected to the oil filling base assembly via the pin; The flip-top assembly is equipped with a rotatable flip-top; The first magnetic component is disposed on the rotatable flip cover; The second magnetic component is disposed on the oil filling base assembly. The rotatable flip cover can be rotated to make the first magnetic component and the second magnetic component attract or repel each other. When a user uses the aerosol forming device with the magnetic flip-top assembly, the first and second magnetic components in the magnetic flip-top assembly are in a state of opposite attraction, causing the flip-top assembly to connect with the oil filling base assembly and preventing it from opening. When the aerosol matrix stored in the aerosol forming device is insufficient, the rotatable flip-top is rotated, and the first magnetic component rotates with the rotatable flip-top, forming a situation where the first magnetic component rotates with the rotatable flip-top until it is in a state of magnetic opposition with the second magnetic component on the oil filling base assembly. This causes the flip-top assembly to be affected by a repulsive force, automatically flipping and opening the flip-top assembly, exposing the plane of the oil filling base assembly, and injecting the aerosol matrix into the oil filling base assembly, thereby completing the addition of aerosol matrix into the aerosol forming device.

2. An aerosol-forming device with a magnetic flip cover assembly according to claim 1, characterized in that, The flip-top assembly includes the first magnetic component, a flip-top retaining ring, a flip-top base, the rotatable flip-top, and a suction nozzle; The flip cover fixing ring is sleeved on the rotatable flip cover, the flip cover base is sleeved on the flip cover fixing ring, and the suction nozzle is connected to and passes through the rotatable flip cover; The first magnetic component surrounds the nozzle; The flip cover base is provided with a convex shaft hole.

3. The aerosol forming apparatus with a magnetic flip-top assembly according to claim 2, characterized in that, The oil filling base assembly includes the second magnetic component, oil filling silicone, and an oil filling base; The oil filling base is provided with a nozzle connection groove that is compatible with the nozzle; The second magnetic component is disposed on the oil filling base, surrounding the suction nozzle connecting groove; The oil injection base is provided with a concave shaft hole.

4. An aerosol-forming device with a magnetic flip cover assembly according to claim 3, characterized in that, The pin passes through both the concave shaft hole and the convex shaft hole.

5. The aerosol forming device with a magnetic flip cover assembly of claim 1, wherein, The first magnetic component includes a first magnet, a first magnet retaining ring, and a first magnet fixing silicone; the first magnet retaining ring is sleeved on the bottom end of the first magnet, the bottom end of the first magnet fixing silicone is attached to the top end of the first magnet, and the first magnet retaining ring and the first magnet fixing silicone together fix the first magnet inside the rotatable flip cover.

6. An aerosol-forming device with a magnetic flip cover assembly according to claim 5, characterized in that, The rotatable flip cover is provided with a first magnet fixing slot group and a second magnet fixing slot group. The first magnet fixing slot group and the second magnet fixing slot group are symmetrically distributed, and the first magnet is evenly fixed in the first magnet fixing slot group and the second magnet fixing slot group.

7. The aerosol-forming device with a magnetic flip cover assembly of claim 3, wherein, The oil injection base is provided with a first oil injection silicone fixing groove and a second oil injection silicone fixing groove. The first oil injection silicone fixing groove and the second oil injection silicone fixing groove are symmetrically distributed, and the oil injection silicone is evenly disposed in the first oil injection silicone fixing groove and the second oil injection silicone fixing groove.

8. The aerosol-forming device with a magnetic flip cover assembly of claim 3, wherein, The second magnetic component includes a second magnet, a second magnet retaining ring, and a second magnet fixing silicone; the second magnet retaining ring is sleeved on the top of the second magnet, the top of the second magnet fixing silicone is attached to the bottom of the second magnet, and the second magnet retaining ring and the second magnet fixing silicone together fix the second magnet in the oil filling base.

9. An aerosol-forming device with a magnetic flip cover assembly according to claim 8, characterized in that, The oil filling base is provided with a third magnet fixing groove group and a fourth magnet fixing groove group. The third magnet fixing groove group and the fourth magnet fixing groove group are symmetrically distributed along the oil filling silicone axis. The second magnet is evenly fixed in the third magnet fixing groove group and the fourth magnet fixing groove group.