Light effect display structure and atomization device comprising same
By using a combination of light guide grooves and light-transmitting holes in the atomizing device, light is reflected to the surface of the panel components, solving the discomfort caused by the direct emission of traditional lighting effects and achieving a more comfortable lighting effect.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- HG INNOVATION LTD
- Filing Date
- 2025-11-03
- Publication Date
- 2026-05-21
AI Technical Summary
The lighting display method of traditional atomizing devices results in direct light emission, affecting user comfort.
The combination of light guide groove and light transmission hole structure allows light to be reflected to the surface of the panel assembly through the reflective area of the light guide groove, avoiding direct emission.
It achieves hidden lighting effects, reducing discomfort to users and improving user comfort.
Smart Images

Figure CN2025132155_21052026_PF_FP_ABST
Abstract
Description
Lighting effect display structure and its atomizing device
[0001] Cross-references to related applications
[0002] This application claims priority to Chinese Utility Model Patent Application No. 2024227699409, filed on November 13, 2024, entitled "Lighting Effect Display Structure and Atomizing Device Thereof", the entire contents of which are incorporated herein by reference. Technical Field
[0003] This application relates to the field of atomization technology, and in particular to a lighting effect display structure and its atomization device. Background Technology
[0004] In the field of electronic atomizer technology, as users' demands for experience increase, their requirements for functional prompts during use are also rising. Traditional atomizers typically use indicator lights to display the atomizer's operating status, such as remaining e-liquid level and battery level. Existing atomizers generally use light-emitting holes on the surface of the housing to project light effects directly.
[0005] However, the aforementioned light emission method can cause discomfort to the user's eyes during use, thus affecting the user's comfort. Summary of the Invention
[0006] The embodiments of this application provide a lighting effect display structure and its atomizing device, which can optimize the structure of the lighting effect display to optimize the light emission method and avoid light being directly emitted from the surface of the atomizing device.
[0007] In a first aspect, this application provides a lighting effect display structure for use in an atomizing device, comprising:
[0008] A panel assembly is provided with a light guide groove and a light transmission hole. The light guide groove is disposed on the surface of the panel assembly and has a reflective area. The light transmission hole is positioned so that the light emission position faces the reflective area.
[0009] A light-emitting component is disposed on the side of the panel assembly opposite to its surface and is positioned opposite to the light-transmitting hole;
[0010] The light-emitting component is configured such that the emitted light is projected onto the reflective area through the light-transmitting hole, and the reflective area is capable of reflecting the light emitted by the light-emitting component onto the surface of the panel assembly.
[0011] In some embodiments, the light-transmitting hole is disposed within the light guide groove and hidden inside the light guide groove. The light emitted from the light-transmitting hole is set at an angle to the reflected light from the reflective area. The reflected light from the reflective area is transmitted from the opening of the light guide groove to the surface of the panel assembly.
[0012] In some embodiments, the light guide groove includes a first surface and a second surface; the first surface is disposed in a direction facing the second surface, and the second surface is disposed in a direction facing the surface of the panel assembly; the light-transmitting hole is disposed on the first surface, and the reflective area is disposed on the second surface.
[0013] In some embodiments, the first surface is a plane and the second surface is a curved surface;
[0014] One side of the first surface is perpendicularly connected to the surface of the panel assembly, the other side of the first surface is connected to one side of the second surface, and the other side of the second surface is connected to the surface of the panel assembly.
[0015] In some embodiments, the light-emitting component includes a light guide bracket and a light-emitting element;
[0016] The light guide bracket is snapped onto the panel assembly, and the light guide bracket covers the light-transmitting hole; the light guide bracket is provided with a first mounting groove, which is located on the side of the light guide bracket adjacent to the light-transmitting hole; the light-emitting element is embedded in the first mounting groove; the light emitted by the light-emitting element is conducted to the light-transmitting hole through the light guide bracket.
[0017] In some embodiments, the panel assembly includes a first panel and a second panel, wherein the first panel has a first groove and the second panel is embedded in the first groove;
[0018] The light guide groove is formed between one side of the second panel and the first groove, and the light-transmitting hole is formed between one side of the second panel and the first panel within the light guide groove.
[0019] And / or, the second panel is provided with a snap-fit structure on the side facing the light guide bracket, the light guide bracket is provided with a slot, the snap-fit structure passes through the slot, the second panel is fixed to the light guide bracket by the snap-fit structure cooperating with the slot, and the side of the light guide bracket facing the light-transmitting hole abuts against the inner wall of the first groove.
[0020] In some embodiments, the first mounting groove includes a first groove surface, a second groove surface, and a third groove surface. The first groove surface is disposed on a side close to the second panel. The second groove surface and the third groove surface are respectively connected to the first groove surface. The light guide bracket is configured to cover at least a portion of the light-transmitting hole corresponding to the first groove surface and / or the third groove surface.
[0021] The light-emitting element includes a light strip with multiple LED beads. The light strip is mounted on the second groove surface, and the side of the light strip that emits light faces the first groove surface and / or the second groove surface.
[0022] In some embodiments, the lighting effect display structure further includes a digital display component, which is disposed on the same side of the panel assembly as the light-emitting component, and is disposed adjacent to the light-emitting component on one side. The panel assembly forms a digital display area corresponding to the position of the digital display component.
[0023] In some embodiments, the digital display component includes a digital display element, a first circuit board, a second circuit board, and control buttons;
[0024] The digital display and the control buttons are disposed on the first circuit board and are electrically connected to the first circuit board; the digital display is disposed on the side close to the panel assembly, and the control buttons are exposed on the surface of the panel assembly; the second circuit board is vertically connected to the side of the first circuit board away from the panel assembly, and the second circuit board is electrically connected to the first circuit board and the light-emitting component respectively.
[0025] Secondly, this application provides an atomizing device, including the lighting effect display structure described in any one of the above; the atomizing device further includes a housing and an atomizer host, the panel assembly is disposed on the housing and together with the housing forms an accommodating space, the light-emitting component and the atomizer host are disposed in the accommodating space, wherein the side of the panel assembly facing away from the accommodating space is the surface of the panel assembly.
[0026] The beneficial effects of this application are: by setting a light guide groove on the panel assembly, the light emitted from the light-transmitting hole is reflected by the reflection area formed by the light guide groove, thereby avoiding the direct light emission method, reducing the discomfort caused to the user by the light emitted from the light-transmitting hole, and improving the comfort of use. Attached Figure Description
[0027] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0028] Figure 1 is a cross-sectional schematic diagram of the lighting effect display structure according to an embodiment of this application;
[0029] Figure 2 is an enlarged schematic diagram of part A of Figure 1 in this application;
[0030] Figure 3 is a schematic diagram of the appearance of the lighting effect display structure according to an embodiment of this application;
[0031] Figure 4 is a side view of the lighting effect display structure of an embodiment of this application;
[0032] Figure 5 is a schematic diagram of the structure of a light-emitting component according to an embodiment of this application;
[0033] Figure 6 is an enlarged schematic diagram of part B of Figure 1 in this application;
[0034] Figure 7 is a cross-sectional schematic diagram of the lighting effect display structure and the digital display component installation structure of an embodiment of this application;
[0035] Figure 8 is a schematic diagram of the structure of a digital display component according to an embodiment of this application;
[0036] Figure 9 is a schematic diagram of the appearance of a digital display component according to an embodiment of this application;
[0037] Figure 10 is a schematic cross-sectional view of an atomizing device according to an embodiment of this application;
[0038] Figure 11 is a cross-sectional schematic diagram of the atomizing device structure according to another embodiment of this application.
[0039] Explanation of reference numerals in the attached figures:
[0040] 10. Panel assembly; 11. Light guide groove; 111. First surface; 112. Second surface; 12. Light transmission hole; 110. Reflective area; 13. First panel; 131. First groove; 14. Second panel; 141. Snap-fit structure; 20. Light-emitting component; 201. Light guide bracket; 202. Light-emitting element; First mounting groove; 20111. Slot; 2013. First groove surface; 2014. Second groove surface; 2015. Third groove surface; 2021. Light strip; 2012. Second mounting groove; 2022. Lamp board; 2023. Lampshade; 30. Digital display assembly; 31. Digital display element; 32. First circuit board; 33. Second circuit board; 3 4. Control buttons; 40. Atomizing device; 50. Housing; 60. Atomizer main unit; 70. Light effect display structure; 80. Battery; 401. Separator pad; 90. Atomizing component; 100. Oil cup assembly; 1010. Oil reservoir cotton; 1020. Mounting component; 200. Airway assembly; 2010. Airway; 2020. Airway component; 2030. Airway adjustment component; 2040. Airway adjustment lever; 300. Atomizer coil assembly; 1021. Oil cup; 1022. Oil cup base; 1023. Silicone component; 1024. First absorbent cotton; 801. Second absorbent cotton; 2025. Microphone; 2026. Third absorbent cotton; 2024. Airway silicone component. Embodiments of the present invention
[0041] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0042] Please refer to Figures 1, 3, and 4. One embodiment of this application provides a lighting effect display structure applied to a fogging device, including:
[0043] The panel assembly 10 is provided with a light guide groove 11 and a light transmission hole 12. The light guide groove 11 is disposed on the surface of the panel assembly 10 and has a reflective area 110. The light emission position of the light transmission hole 12 is set towards the reflective area 110.
[0044] The light-emitting component 20 is disposed on the side of the panel component 10 opposite to its surface and is positioned opposite to the light-transmitting hole 12;
[0045] The light-emitting component 20 is configured such that the light emitted is projected onto the reflective area 110 through the light-transmitting hole 12, and the reflective area 110 is able to reflect the light emitted by the light-emitting component 20 onto the surface of the panel component 10.
[0046] Furthermore, the panel assembly 10, through the light guide groove 11 and light transmission hole 12 provided thereon, can achieve the desired concealed light emission effect. The panel assembly 10 in this application can serve as part of the housing of the atomizing device in any embodiment of this application. Specifically, the light generated by the light-emitting component 20 passes through the light transmission hole 12 into the light guide groove 11, and is reflected onto the surface of the panel assembly 10 by the reflective area 110 of the light guide groove 11, thereby achieving the desired concealed light emission effect. The structure in this embodiment avoids the light in the light transmission hole 12 from directly escaping from the surface of the panel assembly 10, achieving a concealed light emission effect through light reflection, which reduces visual discomfort for the user and improves user comfort.
[0047] Please refer to Figure 1. In one embodiment, the light-transmitting hole 12 is disposed in the light guide groove 11 and hidden inside the light guide groove 11. The light emitted from the light-transmitting hole 12 is set at an angle to the reflected light from the reflective area. The reflected light from the reflective area is transmitted from the opening of the light guide groove 11 to the surface of the panel assembly 10.
[0048] In this embodiment, the positional relationship between the light guide groove 11 and the light-transmitting hole 12 is further optimized. It should be noted that the shape of the light-transmitting hole 12 in this embodiment can be circular, elliptical, square, rectangular, arc-shaped, or polygonal, etc.
[0049] Please refer to Figure 2. In one embodiment, the light guide groove 11 includes a first surface 111 and a second surface 112. The first surface 111 is disposed in a direction facing the second surface 112, and the second surface 112 is disposed in a direction facing the surface of the panel assembly 10. The light-transmitting hole 12 is disposed on the first surface 111, and the reflective area 110 is disposed on the second surface 112.
[0050] In this embodiment, the light transmitted through the light-transmitting hole 12 is reflected by the reflection area 110 on the second surface 112 and reaches the surface of the panel assembly 10, thereby achieving the effect of hidden lighting display.
[0051] Please refer to Figure 2. In one embodiment, the first surface 111 is a plane and the second surface 112 is a curved surface.
[0052] One side of the first surface 111 is perpendicularly connected to the surface of the panel assembly 10, the other side of the first surface 111 is connected to one side of the second surface 112, and the other side of the second surface 112 is connected to the surface of the panel assembly 10.
[0053] In this embodiment, the light transmitted through the light-transmitting hole 12 is emitted from the first surface 111, which is perpendicularly connected to the surface of the panel assembly 10, and reaches the curved second surface 112. The light is reflected by the curved surface and reaches the surface of the panel assembly 10, thus achieving a soft, hidden light display effect.
[0054] Please refer to Figures 1, 2, 5 and 6. In one embodiment, the light-emitting component 20 includes a light guide bracket 201 and a light-emitting element 202.
[0055] The light guide bracket 201 is snapped onto the panel assembly 10, and the light guide bracket 201 covers the light-transmitting hole 12; the light guide bracket 201 is provided with a first mounting groove 2011, which is located on the side of the light guide bracket 201 adjacent to the light-transmitting hole 12; the light-emitting element 202 is embedded in the first mounting groove 2011; the light emitted by the light-emitting element 202 is conducted to the light-transmitting hole 12 through the light guide bracket 201.
[0056] In this embodiment, the light-emitting element 202 is a light source, and the light guide bracket 201 is used to guide the light emitted by the light-emitting element 202 into the light-transmitting hole 12, and to mount and fix the light-emitting element 202. Specifically, the light guide bracket 201 mounts the light-emitting element 202 through the first mounting groove 2011. The light guide bracket 201 further prevents light from directly escaping from the light-transmitting hole 12, making the light softer and less intense, thus avoiding glare.
[0057] Please refer to Figures 1, 3 and 4. In one embodiment, the panel assembly 10 includes a first panel 13 and a second panel 14. The first panel 13 is provided with a first groove 131, and the second panel 14 is embedded in the first groove 131.
[0058] A light guide groove 11 is formed between one side of the second panel 14 and the first groove 131, and a light-transmitting hole 12 is formed between one side of the second panel 14 and the first panel 13 in the light guide groove 11.
[0059] And / or, the second panel 14 is provided with a snap-fit structure 141 on the side facing the light guide bracket 201, the light guide bracket 201 is provided with a slot 20111, the snap-fit structure 141 is provided through the slot 20111, the second panel 14 is fixed to the light guide bracket 201 by the snap-fit structure 141 cooperating with the slot 20111, and the side of the light guide bracket 201 facing the light transmission hole 12 abuts against the inner wall of the first groove 131.
[0060] In this embodiment, the structure of the panel assembly 10 is optimized, and the required light guide groove 11 and light transmission hole 12 are formed by the two panels of the panel assembly 10.
[0061] In this embodiment, the mounting structure of the panel assembly 10 and the light guide bracket 201 is further optimized. By providing a snap-fit structure 141 on the second panel located on the inner side of the panel assembly 10, the snap-fit structure 141 is engaged with the slot 20111 on the light guide bracket 201 to achieve the fixation of the two.
[0062] In this embodiment, further referring to FIG1, the light guide bracket 201 is also provided with a second mounting groove 2012, which is disposed on one side of the first mounting groove 2011, wherein the card slot 20111 is disposed in the second mounting groove 2012.
[0063] Please refer to Figure 6. In one embodiment, the first mounting groove 2011 includes a first groove surface 2013, a second groove surface 2014, and a third groove surface 2015. The first groove surface 2013 is disposed on the side close to the second panel 14. The second groove surface 2014 and the third groove surface 2015 are respectively connected to the first groove surface 2013. The light guide bracket 201 is configured to cover at least part of the light-transmitting hole 12 corresponding to the first groove surface 2013 and / or the third groove surface 2015.
[0064] The light-emitting element 202 includes a light strip 2021, which is provided with a plurality of light beads. The light strip 2021 is mounted on the second groove surface 2014, and the side of the light strip 2021 that emits light faces the first groove surface 2013 and / or the second groove surface 2014.
[0065] In this embodiment, the light emitted by the light-emitting element 202 enters the light guide bracket 201 through the first groove surface 2013 and / or the third groove surface 2015 that at least partially covers the light-transmitting hole 12, and then enters the light-transmitting hole 12.
[0066] In this embodiment, the light emitted by multiple LEDs can all be of the same color, or it can be a combination of multiple colors. This combination can be regular or irregular. The light emission effects of the multiple LEDs include the following emission patterns: only a single LED emits light, some LEDs emit light, multiple LEDs emit light sequentially in a certain order, multiple LEDs emit light simultaneously or sequentially at certain time intervals, and multiple LEDs emit light simultaneously, etc. Furthermore, the above light emission effects can be combined, and the intensity of the light emission effects can be further controlled. In one example, the multiple LEDs emit light displayed as red, yellow, and green. In another example, the LEDs are LEDs.
[0067] In this embodiment, the light strip 2021 includes a light panel 2022 and a lampshade 2023. The light panel 2022 covers the lampshade 2023. The light panel 2022 is disposed in contact with the third groove surface 2015, and the lampshade 2023 is disposed in contact with the second groove surface 2014.
[0068] Please refer to Figures 7, 8 and 9. In one embodiment, the lighting effect display structure further includes a digital display component 30. The digital display component 30 and the light-emitting component 20 are disposed on the same side of the panel component 10, and the digital display component 30 is disposed adjacent to the light-emitting component 20 on the same side. A digital display area is formed on the panel component 10 at the position corresponding to the digital display component 30.
[0069] The digital display component 30 emits light in various numerical patterns and displays them through the digital display area, making them visually apparent on the panel component 10. This enhances the display effect of the atomizing device. The digital display component 30 can display specific values such as the atomizing device's battery level, oil level, and power setting.
[0070] Please refer to Figures 7 and 8. In one embodiment, the digital display component 30 includes a digital display element 31, a first circuit board 32, a second circuit board 33, and control buttons 34.
[0071] The digital display 31 and control button 34 are disposed on the first circuit board 32 and are electrically connected to the first circuit board 32. The digital display 31 is disposed on the side close to the panel assembly 10, and the control button 34 is exposed on the surface of the panel assembly 10. The second circuit board 33 is vertically connected to the side of the first circuit board 32 away from the panel assembly 10, and the second circuit board 33 is electrically connected to the first circuit board 32 and the light-emitting component 20 respectively.
[0072] The control button 34 allows for the control of the light-emitting component 20's activation and deactivation, as well as the lighting effects, including controlling the brightness, color, and variations in brightness and color. Operation methods include tapping, long pressing, tapping a preset number of times, and long pressing after a preset duration.
[0073] In one example, control button 34 is a touch button. The touch button portion is made of conductive foam.
[0074] The digital display 31 is composed of multiple light-emitting diodes and can display different values.
[0075] The first circuit board 32 and the second circuit board 33 are electrically connected to the battery of the atomizing device. The second circuit board 33 can control the light emission of the light-emitting component 20. In one example, the first circuit board 32 and the second circuit board 33 are PCBA assemblies, i.e., printed circuit board assemblies.
[0076] Please refer to Figures 8, 10 and 11. Another embodiment of this application provides an atomizing device 40, including the lighting effect display structure 70 of any of the above. The atomizing device 40 also includes a housing 50 and an atomizer host 60. A panel assembly 10 is disposed on the housing 50 and together with the housing 50 forms an accommodating space. The light-emitting component 20 and the atomizer host 60 are disposed in the accommodating space. The side of the panel assembly 10 facing away from the accommodating space is the surface of the panel assembly 10.
[0077] In this process, the light from the light-emitting component 20 is emitted from the light-transmitting hole 12 of the panel component 10 and reflected by the reflective area 110 of the light guide groove 11, forming a hidden light effect on the surface of the panel component 10.
[0078] The structure of the atomizing device will be further described below with some examples:
[0079] Referring to Figures 10 and 11, in one embodiment, the atomizing device 40 further includes a battery 80 disposed within a receiving space. The battery 80 is located on one side of the lighting effect display structure 70 and on one side of the first circuit board 32 and the second circuit board 33. The battery 80 is used to power the first circuit board 32 and the second circuit board 33.
[0080] Referring to Figure 1, in one embodiment, the atomizing device 40 further includes a separator 401 disposed on the side of the second circuit board 33 away from the battery 80. The separator 401 is used to separate the second circuit board 33 from the battery 80 to prevent the battery 80 from damaging the second circuit board 33. In one example, the separator 401 is an EVA pad (ethylene-vinyl acetate copolymer, a type of foam).
[0081] Referring to Figures 10 and 11, in one embodiment, the atomizing device 40 further includes an atomizing component 90, which is disposed within the receiving space and on the same side as the lighting effect display structure 70 and the battery 80; the atomizing component 90 includes:
[0082] Oil cup assembly 100, which includes oil storage cotton 1010 and mounting component 1020, wherein the oil storage cotton 1010 is disposed within the mounting component 1020;
[0083] Airway assembly 200 includes airway 2010, airway component 2020, and airway adjusting component 2030. One end of airway 2010 passes through oil storage cotton 1010 and is connected to nozzle 501 on housing 50. The other end of airway 2010 is connected to the outside of atomizing device 40. The other end of airway 2010 is provided with airway component 2020 and airway adjusting component 2030. Airway adjusting component 2030 is connected to airway 2010 and airway adjusting lever 2040. Airway adjusting lever 2040 is provided on housing 50.
[0084] The atomizing core assembly 300 is disposed within the air passage 2010 and is in contact with the oil reservoir cotton 1010.
[0085] The oil cup assembly 100 stores the atomizable aerogel matrix. Specifically, the aerogel matrix is stored in the oil reservoir 1010, while the mounting component 1020 is used to install and seal the oil reservoir 1010 to prevent leakage of the aerogel matrix. The airway assembly 200 provides gas for atomization and provides a channel for venting the atomized gas for inhalation. Specifically, the airway 2010 provides gas, and the airway component 2020 is used to install the airway adjustment component 2030. The airway adjustment component 2030 adjusts the amount of gas entering the airway 2010 by driving the airway adjustment lever 2040.
[0086] In one example, as shown in Figures 10 and 11, the housing 50 has an opening corresponding to the position of the airway adjustment lever 2040. By moving the airway adjustment lever 2040, the area of the airway adjustment component 2030 covering the opening is changed, thereby changing the air intake volume. The atomizing core assembly 300 is used to heat the aerogel matrix to form an atomized aerogel with the gas. The atomizing core assembly 300 can use existing technology, which will not be described in detail here.
[0087] In one embodiment, as shown in Figures 10 and 11, the mounting component 1020 includes:
[0088] Oil cup 1021, oil cup 1021 surrounds and is disposed on top of oil storage cotton 1010;
[0089] Oil cup base 1022 surrounds the bottom of oil storage cotton 1010; oil cup base 1022 is connected to oil cup 1021;
[0090] Silicone component 1023 is disposed on the side of oil cup 1021 away from oil storage cotton 1010;
[0091] The first oil-absorbing cotton 1024 is disposed between the silicone part 1023 and the oil cup 1021.
[0092] The oil cup 1021 and the oil cup base 1022 together form the structure for mounting the oil-absorbing cotton 1010, which can be fixed by a snap-fit connection. The silicone part 1023 is inserted into the oil cup 1021 to seal the first oil-absorbing cotton 1024. The first oil-absorbing cotton 1024 is used to absorb the e-liquid brought out during the inhalation of the atomized aerogel matrix, avoiding harm and improving safety.
[0093] In one embodiment, as shown in Figures 10 and 11, the battery 80 is further provided with a second oil-absorbing cotton 801 on the side near the oil cup base 1022.
[0094] In another embodiment, as shown in Figure 11, the air duct component 2020 is also provided with a microphone 2025 and a third oil-absorbing cotton 2026. The third oil-absorbing cotton 2026 surrounds the outside of the microphone 2025, and the microphone 2025 is connected to the first circuit board 32.
[0095] In another embodiment, as shown in Figures 10 and 11, the airway component 2020 is further provided with an airway silicone component 2024. One side of the airway silicone component 2024 is attached to one side of the airway adjusting component 2030, and the other side of the airway silicone component 2024 is attached to the housing 50 of the atomizing device, forming a clearance space for the opening where the lever of the airway adjusting component 2030 is located. Its function is to prevent the housing 50 from damaging the airway adjusting component 2030.
[0096] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.
Claims
1. A light effect display structure applied to an atomization device, characterized in that, include: A panel assembly is provided with a light guide groove and a light transmission hole. The light guide groove is disposed on the surface of the panel assembly and has a reflective area. The light transmission hole is positioned so that the light emission position faces the reflective area. A light-emitting component is disposed on the side of the panel assembly opposite to its surface and is positioned opposite to the light-transmitting hole; The light-emitting component is configured such that the emitted light is projected onto the reflective area through the light-transmitting hole, and the reflective area is capable of reflecting the light emitted by the light-emitting component onto the surface of the panel assembly.
2. The light effect display structure according to claim 1, characterized in that The light-transmitting hole is disposed within the light guide groove and is hidden inside the light guide groove. The light emitted from the light-transmitting hole is set at an angle to the reflected light from the reflective area. The reflected light from the reflective area is conducted from the opening of the light guide groove to the surface of the panel assembly.
3. The lamp effect display structure according to claim 2, wherein The light guide groove includes a first surface and a second surface; the first surface is arranged facing the second surface, and the second surface is arranged facing the surface of the panel assembly; the light-transmitting hole is arranged on the first surface, and the reflective area is arranged on the second surface.
4. The lamp effect display structure according to claim 3, wherein The first surface is a plane, and the second surface is a curved surface; One side of the first surface is perpendicularly connected to the surface of the panel assembly, the other side of the first surface is connected to one side of the second surface, and the other side of the second surface is connected to the surface of the panel assembly.
5. The light effect display structure according to any one of claims 1-4, characterized in that, The light-emitting component includes a light guide bracket and a light-emitting element; The light guide bracket is snapped onto the panel assembly, and the light guide bracket covers the light-transmitting hole; the light guide bracket is provided with a first mounting groove, which is located on the side of the light guide bracket adjacent to the light-transmitting hole; the light-emitting element is embedded in the first mounting groove; the light emitted by the light-emitting element is conducted to the light-transmitting hole through the light guide bracket.
6. The light effect display structure according to claim 5, characterized in that The panel assembly includes a first panel and a second panel, wherein the first panel has a first groove and the second panel is embedded in the first groove; The light guide groove is formed between one side of the second panel and the first groove, and the light-transmitting hole is formed between one side of the second panel and the first panel within the light guide groove. And / or, the second panel is provided with a snap-fit structure on the side facing the light guide bracket, the light guide bracket is provided with a slot, the snap-fit structure passes through the slot, the second panel is fixed to the light guide bracket by the snap-fit structure cooperating with the slot, and the side of the light guide bracket facing the light-transmitting hole abuts against the inner wall of the first groove.
7. The light effect display structure according to claim 6, characterized in that, The first mounting groove includes a first groove surface, a second groove surface, and a third groove surface. The first groove surface is disposed on the side close to the second panel. The second groove surface and the third groove surface are respectively connected to the first groove surface. The light guide bracket is configured to cover at least part of the light-transmitting hole corresponding to the first groove surface and / or the third groove surface. The light-emitting element includes a light strip with multiple LED beads. The light strip is mounted on the second groove surface, and the side of the light strip that emits light faces the first groove surface and / or the second groove surface.
8. The light effect display structure according to claim 1, characterized in that The lighting effect display structure also includes a digital display component. The digital display component and the light-emitting component are disposed on the same side of the panel component, and the digital display component is disposed adjacent to the light-emitting component on one side. The panel component forms a digital display area corresponding to the position of the digital display component.
9. The light effect display structure according to claim 8, characterized in that, The digital display component includes a digital display element, a first circuit board, a second circuit board, and control buttons; The digital display and the control buttons are disposed on the first circuit board and are electrically connected to the first circuit board; the digital display is disposed on the side close to the panel assembly, and the control buttons are exposed on the surface of the panel assembly; the second circuit board is vertically connected to the side of the first circuit board away from the panel assembly, and the second circuit board is electrically connected to the first circuit board and the light-emitting component respectively.
10. An atomising device characterised in that, The device includes the lighting effect display structure described in any one of claims 1-9; the atomizing device further includes a housing and an atomizer host, the panel assembly is disposed on the housing and together with the housing forms an accommodating space, the light-emitting component and the atomizer host are disposed in the accommodating space, wherein the side of the panel assembly facing away from the accommodating space is the surface of the panel assembly.