Developing bathroom mirror
By using a development component with a combination of semi-transparent reflector and a development layer in the bathroom mirror, combined with the lighting component, the imaging function is realized, solving the problem of large thickness and low reliability of the existing development bathroom mirror, and achieving a thinner and more reliable imaging effect.
Patent Information
- Application Number
- CN202421799342.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The existing imaging bathroom mirrors are large in thickness and have low system reliability, making it difficult to provide efficient and reliable imaging functions in bathroom environments.
The imaging component that combines a semi-transparent reflective member and a development layer is used to combine the lighting component to illuminate the development layer through the development light source to realize the image development function without the need for image insertion and electronic display screen.
The imaging function is realized, while reducing product thickness and improving system reliability and user experience.
Smart Images

Figure CN222853545U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bathrooms, in particular to an imaging bathroom mirror. Background Art
[0002] In the existing high-end bathroom mirror market, some bathroom mirrors have a display function. For the realization of the display function, there are usually the following two structural schemes and methods: one is to set a fixed groove behind the semi-transparent and semi-reflective glass mirror, insert the picture to be displayed into the fixed groove, and use the light to make the image in the picture appear from the glass mirror. This kind of bathroom mirror not only needs to insert the picture when using it, but also has high requirements for the insertion of the picture. Damage to the picture or installation errors will affect the display effect, and it is necessary to add a separate picture installation fixing structure, thereby increasing the overall thickness and occupied space of the bathroom mirror; the other is to set an electronic display screen behind the glass mirror, use the electronic display screen to display the relevant image and display it in part of the glass mirror. This kind of bathroom mirror needs to use the electronic display screen, which is costly and increases the overall thickness of the bathroom mirror. In addition, there is a lot of interference between the electronic display screen and the circuit board. It is also easy to be damaged when used in a humid bathroom, and the reliability is not high. Utility Model Content
[0003] In order to solve the technical problems of the existing imaging bathroom mirrors with large thickness and low system reliability, the embodiment of the utility model provides an imaging bathroom mirror which can realize the imaging function, has small thickness and high system reliability.
[0004] In order to solve the above technical problems, an embodiment of the utility model provides an imaging bathroom mirror, including an imaging component and a lighting component, wherein the imaging component includes a semi-transparent reflective member and an imaging layer arranged on the semi-transparent reflective member, and the lighting component includes an imaging light source member.
[0005] The imaging layer is arranged on a side of the semi-transparent reflective element close to the imaging light source element. When the imaging light source element is turned on, the light emitted by the imaging light source element can pass through the imaging layer and the semi-transparent reflective element in sequence, and the semi-transparent reflective element can display the image of the imaging layer.
[0006] As an improvement to the above scheme, the display assembly further comprises a light guide plate, which is arranged in parallel with the semi-transparent reflective element, and the light emitted by the display light source element can first enter the light guide plate and then pass through the display layer and the semi-transparent reflective element in sequence.
[0007] As an improvement to the above solution, the display assembly further comprises a diffusion plate, wherein the diffusion plate is located between the light guide plate and the display layer, and the diffusion plate is arranged parallel to the semi-transparent reflective element.
[0008] For the improvement of the above scheme, the display assembly also includes a reflector, which is arranged on the side of the light guide plate away from the diffuser plate, and the reflector is arranged parallel to the semi-transparent reflective element. The reflector can reflect the light emitted by the display light source to the display layer and the semi-transparent reflective element.
[0009] For the improvement of the above-mentioned scheme, the lighting assembly also includes a light strip fixing ring, which surrounds the circumferential edge of the light guide plate. The number of the imaging light source components is multiple, and the multiple imaging light source components are evenly distributed in the light strip fixing ring. The light emitting surface of the imaging light source component is from the circumferential edge of the light guide plate toward the center of the light guide plate.
[0010] As an improvement to the above solution, a luminous coating is provided on the reflective plate.
[0011] As an improvement to the above scheme, the imaging bathroom mirror further comprises a mirror frame, which is arranged at the periphery of the imaging light source component, and the lighting assembly further comprises an ambient light source component, which is arranged at the periphery of the imaging light source component and fixed to the mirror frame.
[0012] For the improvement of the above scheme, the mirror frame includes a supporting portion, which is located at the periphery of the imaging light source component, the atmosphere light source component is arranged on the supporting portion, and the imaging bathroom mirror also includes a lampshade, which is arranged on the outside of the mirror frame and can cover the supporting portion.
[0013] For the improvement of the above scheme, the mirror frame also includes a fixed inner ring and an outer retaining ring respectively arranged on both sides of the supporting part, the outer retaining ring is arranged on the side of the supporting part opposite to the fixed inner ring, and the outer retaining ring and the fixed inner ring on the side away from the imaging light source device are both provided with fixing hooks, and the fixing hooks are bent inwardly to form a hook groove, and snap-fit hooks are provided on both sides of the lampshade, and the snap-fit hooks extend toward the side close to the imaging light source device and are bent outwardly to form a hook shape, and the snap-fit hooks can be snapped into the hook groove.
[0014] For the improvement of the above scheme, the imaging bathroom mirror also includes a power supply component and a control component, the power supply component is electrically connected to the control component, the control component includes a protective box and a control sensing module arranged in the protective box, the control sensing module passes through the protective box and is electrically connected to the imaging light source component and the atmosphere light source component respectively, and the control sensing module is used to control the switching of the imaging light source component and the atmosphere light source component.
[0015] Implementing the embodiments of the utility model has the following beneficial effects:
[0016] The imaging bathroom mirror of the utility model embodiment is provided with an imaging component and a lighting component, wherein the imaging component includes a semi-transparent reflective member and an imaging layer arranged on the semi-transparent reflective member, wherein the semi-transparent reflective member is a semi-reflective and semi-transparent coated glass, which can realize the functions of light transmission and light reflection, and the imaging layer is a picture layer made on the back side of the semi-transparent reflective member, which is a pattern to be displayed, and the lighting component includes an imaging light source member. When the user does not need to use the mirror reflection function, the imaging light source member is turned on, and the light emitted by the imaging light source member can pass through the imaging layer and the semi-transparent reflective member in turn, and the semi-transparent reflective member can display the image of the imaging layer, thereby realizing the imaging function. Moreover, the imaging bathroom mirror of the utility model embodiment does not require an image insertion and installation structure, nor does it require an electronic display screen, and can realize the imaging function, which can effectively reduce the thickness of the product, and the system is simple, not easy to be damaged, and has high system reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the disassembled structure of the imaging bathroom mirror according to an embodiment of the utility model;
[0018] Figure 2 It is a schematic diagram of the cross-sectional structure of the imaging bathroom mirror according to an embodiment of the utility model;
[0019] Figure 3 yes Figure 2 A partial enlarged view of middle A;
[0020] Figure 4 yes Figure 2 A partial enlarged view of B. DETAILED DESCRIPTION
[0021] In order to make the purpose, technical solution and advantages of the utility model clearer, the utility model will be further described in detail with reference to the accompanying drawings. It is hereby stated that the directional words such as up, down, left, right, front, back, inside, outside, etc. that appear or will appear in the text of the utility model are only based on the accompanying drawings of the utility model, and are not specific limitations of the utility model.
[0022] See also Figure 1 and Figure 2In one embodiment of the utility model, there is provided an imaging bathroom mirror, comprising an imaging component 1 and a lighting component 2, wherein the imaging component 1 comprises a semi-transparent reflective member 11 and an imaging layer 12 disposed on the semi-transparent reflective member 11, and the lighting component 2 comprises an imaging light source member 21. The semi-transparent reflective member 11 is a coated glass member, which can realize the functions of reflection and light transmission. When strong light shines on one side of the semi-transparent reflective member 11, the brightness of the side is greater than the brightness of the other side of the semi-transparent reflective member 11, and the other side of the semi-transparent reflective member 11 can present the characteristics of light transmission, and when no specific light shines on one side of the semi-transparent reflective member 11, the other side of the semi-transparent reflective member 11 can present the characteristics of mirror reflection. The user's side is the front side of the semi-transparent reflective member 11, the back side of the semi-transparent reflective member 11 is the side away from the user's side, and the image display layer 12 is arranged on the back side of the semi-transparent reflective member 11. The image display layer 12 is a customized image display pattern, which can be formed on the back side of the semi-transparent reflective member 11 by UV printing, laser spraying, inkjet, etc. The image display light source 21 can be a common LED light, or other components with light-emitting lighting functions.
[0023] In an embodiment of the utility model, the imaging layer 12 is arranged on a side of the semi-transparent reflective element 11 close to the imaging light source element 21, and the imaging light source element 21 is located on the back side of the semi-transparent reflective element 11 and can illuminate the imaging layer 12. When the imaging light source element 21 is turned on, the light emitted by the imaging light source element 21 can pass through the imaging layer 12 and the semi-transparent reflective element 11 in sequence, and the semi-transparent reflective element 11 can display the image of the imaging layer 12. During this process, the light emitted by the imaging light source element 21 can be directly emitted into the imaging layer 12, or it can be emitted into the imaging layer 12 by refraction, reflection, etc., and pass through the semi-transparent reflective element 11, so that the semi-transparent reflective element 11 displays the pattern of the imaging layer 12. When the imaging light source element 21 is turned off, since no light passes through the imaging layer 12 and the semi-transparent reflective element 11, the semi-transparent reflective element 11 displays a mirror reflection effect. Therefore, when the user needs to use the mirror functions such as dressing or looking in the mirror, the imaging light source 21 is turned off, and the semi-transparent reflective element 11 displays the mirror function. When the user does not need to use the mirror function, the imaging light source 21 is turned on, and the semi-transparent reflective element 11 can display the image. In this way, in the bathroom space, the user can avoid direct reflection of the mirror during specific time periods (such as non-bathing time) to reduce possible energy interference or discomfort, and create a quiet and comfortable atmosphere to enhance the user's experience.
[0024] Therefore, the beneficial effects of the embodiments of the present utility model are at least:
[0025] The imaging bathroom mirror of the embodiment of the utility model is provided with an imaging component 1 and a lighting component 2, wherein the imaging component 1 includes a semi-transparent reflective member 11 and an imaging layer 12 arranged on the semi-transparent reflective member 11, the semi-transparent reflective member 11 is a semi-reflective and semi-transparent coated glass, which can realize the functions of light transmission and reflection, and the imaging layer 12 is a picture layer made on the back side of the semi-transparent reflective member 11, which is a pattern to be displayed, and the lighting component 2 includes an imaging light source member 21. When the user does not need to use the mirror reflection function, the imaging light source member 21 is turned on, and the light emitted by the imaging light source member 21 can pass through the imaging layer 12 and the semi-transparent reflective member 11 in turn, and the semi-transparent reflective member 11 can display the image of the imaging layer 12, thereby realizing the imaging function. Moreover, the imaging bathroom mirror of the embodiment of the utility model does not require an image insertion and installation structure, nor does it require an electronic display screen, and can realize the imaging function, which can effectively reduce the thickness of the product, and the system is simple, not easy to be damaged, and has high system reliability.
[0026] Specifically, the imaging assembly 1 further includes a light guide plate 13, and the light guide plate 13 is arranged in parallel with the semi-transparent reflective element 11. The light emitted by the imaging light source element 21 can first enter the light guide plate 13 and then sequentially pass through the imaging layer 12 and the semi-transparent reflective element 11. The light entering the light guide plate 13 can maintain high brightness and uniformity, which ensures that the pattern in the imaging layer 12 can be presented to the user in a uniform and bright manner, which not only enhances the clarity of the image, but also improves the visual effect of the entire imaging mirror.
[0027] Furthermore, the display assembly 1 also includes a diffuser plate 14, which is located between the light guide plate 13 and the display layer 12. The diffuser plate 14 is arranged parallel to the semi-transparent reflective element 11. The light emitted from the light guide plate 13 will enter the diffuser plate 14. The diffuser plate 14 refracts, reflects and scatters the light multiple times through its internal microparticle structure, which can further achieve uniform distribution of light and make the displayed image softer.
[0028] In addition, in order to further collect light so that all the light emitted by the imaging light source device 21 can be irradiated into the imaging layer 12, and at the same time the brightness of the back side of the semi-transparent reflective element 11 can be increased, ensuring that the brightness of the back side of the semi-transparent reflective element 11 is greater than the brightness of the front side, so as to achieve a better imaging effect, the imaging component 1 also includes a reflective plate 15, and the reflective plate 15 is arranged on the side of the light guide plate 13 away from the diffuser plate 14, and the reflective plate 15 is arranged parallel to the semi-transparent reflective element 11, and the reflective plate 15 can reflect the light emitted by the imaging light source device 21 to the imaging layer 12 and the semi-transparent reflective element 11, thereby not only improving the light output utilization rate of the imaging light source device 21, but also ensuring that the brightness of the back side of the semi-transparent reflective element 11 is greater than the brightness of the front side, so as to achieve a better imaging effect.
[0029] See also Figure 3 In order to fix the imaging light source component 21, the lighting assembly 2 also includes a light strip fixing ring 22, and the light strip fixing ring 22 surrounds the circumferential edge of the light guide plate 13. There are multiple imaging light source components 21, and the multiple imaging light source components 21 are evenly distributed in the light strip fixing ring 22. The light emitting surface of the imaging light source component 21 is from the circumferential edge of the light guide plate 13 toward the center of the light guide plate 13. The direction in which traditional light enters the light guide plate 13 is usually perpendicular to the plane of the light guide plate 13, while in the embodiment of the utility model, the light emitting surface of the imaging light source device 21 is from the circumferential edge of the light guide plate 13 toward the center of the light guide plate 13, and the light emitted by the imaging light source device 21 will enter from the radial direction of the light guide plate 13, and the light is parallel to the plane of the light guide plate 13. This arrangement can make the light propagation path inside the light guide plate 13 longer, increase the contact area between the light and the material of the light guide plate 13, and the light experiences more scattering inside the light guide plate 13. On the one hand, the utilization efficiency of the light source is improved, and on the other hand, the uniformity of the light can be further improved, and the generation of highlights or dark areas in the central area of the light guide plate 13 can be more effectively avoided, thereby improving the brightness uniformity of the entire display surface, and the visual brightness and contrast are more consistent, reducing visual fatigue caused by uneven brightness, and this arrangement can also effectively reduce the glare caused by direct light exposure, making the display effect softer and more comfortable. In addition, the imaging light source component 21 is arranged at the edge of the light guide plate 13, and the light guide plate 13 is arranged vertically, so the imaging light source component 21 does not occupy the front and rear space of the light guide plate 13, which can further reduce the product thickness and make the structure compact.
[0030] In the embodiment of the utility model, in order to realize the imaging function at night, a luminous coating is provided on the reflective plate 15. After absorbing the light energy of the imaging light source 21, the luminous coating can make the reflective plate 15 form a light source at night, and can illuminate the imaging layer 12 and the semi-transparent reflective element 11. Since the light on the front side of the semi-transparent reflective element 11 is darker at night, the semi-transparent reflective element 11 can still realize the imaging function under the illumination of the reflective plate 15, and can save energy.
[0031] The imaging bathroom mirror is also provided with a mirror frame 3, which is arranged at the periphery of the imaging light source component 21 and can fix the imaging component 1 and the lighting component 2. In order to facilitate the use of the mirror function, the lighting component 2 also includes an ambient light source component 23, which is arranged at the periphery of the imaging light source component 21 and fixed on the mirror frame 3. When the mirror function is used, the imaging light source component 21 is turned off, and the user can turn on the ambient light source component 23, which can provide lighting function for the semi-transparent reflective component 11 during mirror reflection, thereby improving the user's experience.
[0032] See also Figure 4 The mirror frame 3 includes a supporting portion 31, and the supporting portion 31 is located at the periphery of the imaging light source component 21. The supporting portion 31 can serve as the first layer of protection for the imaging light source component 21 and can be shielded to achieve a waterproof and dustproof effect. The atmosphere light source component 23 is arranged on the supporting portion 31. The imaging bathroom mirror also includes a lampshade 4, which is arranged on the outside of the mirror frame 3 and can cover the supporting portion 31. The lampshade 4 can serve as the second layer of protection for the imaging light source component 21 and also as a protection for the atmosphere light source component 23.
[0033] The mirror frame 3 also includes a fixed inner ring 32 and an outer retaining ring 33 respectively arranged on both sides of the support portion 31. The outer retaining ring 33 is arranged on the side of the support portion 31 opposite to the fixed inner ring 32, and the outer retaining ring 33 and the fixed inner ring 32 on the side away from the imaging light source device 21 are both provided with a fixing hook 34, the fixing hook 34 is bent inwardly to form a hook groove 35, and both sides of the lampshade 4 are provided with a snap hook 41, the snap hook 41 extends toward the side close to the imaging light source device 21 and is bent outwardly to form a hook shape, the snap hook 41 can be snapped into the hook groove 35 to form a fixed connection, and at the same time, the connection between the snap hook 41 and the hook groove 35 is located on the inner side of the outer retaining ring 33 and the fixed inner ring 32, so the connection is not easy to get water and dust, thereby achieving a better waterproof and dustproof effect.
[0034] In addition, the imaging bathroom mirror also includes a power supply component 5 and a control component 6. The power supply component 5 can supply power to the imaging light source component 21 and the atmosphere light source component 23. The power supply component 5 is electrically connected to the control component 6. The control component 6 includes a protective box 61 and a control sensing module 62 disposed in the protective box 61. The control sensing module 62 passes through the protective box 61 and is electrically connected to the imaging light source component 21 and the atmosphere light source component 23 respectively. The control sensing module 62 is used to control the switching of the imaging light source component 21 and the atmosphere light source component 23.
[0035] The above is a preferred embodiment of the present invention. It should be pointed out that a person skilled in the art can make several improvements and modifications without departing from the principle of the present invention. These improvements and modifications are also considered to be within the protection scope of the present invention.
Claims
1. A bathroom mirror, characterized in that: It comprises an imaging component and a lighting component, wherein the imaging component comprises a semi-transparent reflective member and an imaging layer arranged on the semi-transparent reflective member, and the lighting component comprises an imaging light source member; The imaging layer is arranged on a side of the semi-transparent reflective element close to the imaging light source element. When the imaging light source element is turned on, the light emitted by the imaging light source element can pass through the imaging layer and the semi-transparent reflective element in sequence, and the semi-transparent reflective element can display the image of the imaging layer.
2. The imaging bathroom mirror according to claim 1, characterized in that: The imaging component further comprises a light guide plate, which is arranged in parallel with the semi-transparent reflective element. The light emitted by the imaging light source element can first enter the light guide plate and then pass through the imaging layer and the semi-transparent reflective element in sequence.
3. The imaging bathroom mirror according to claim 2, characterized in that: The image display assembly further comprises a diffusion plate, wherein the diffusion plate is located between the light guide plate and the image display layer, and the diffusion plate is arranged parallel to the semi-transmissive reflective element.
4. The imaging bathroom mirror according to claim 3, characterized in that: The display assembly also includes a reflector, which is arranged on a side of the light guide plate away from the diffuser plate. The reflector is arranged parallel to the semi-transparent reflective element and can reflect the light emitted by the display light source to the display layer and the semi-transparent reflective element.
5. The imaging bathroom mirror according to claim 4, characterized in that: The lighting assembly also includes a light strip fixing ring, which surrounds the circumferential edge of the light guide plate. There are multiple imaging light source components, and the multiple imaging light source components are evenly distributed in the light strip fixing ring. The light emitting surface of the imaging light source component extends from the circumferential edge of the light guide plate toward the center of the light guide plate.
6. The imaging bathroom mirror according to claim 4, characterized in that: The reflective plate is provided with a luminous coating.
7. The imaging bathroom mirror according to claim 1, characterized in that: The imaging bathroom mirror further comprises a mirror frame, which is arranged at the periphery of the imaging light source component. The lighting assembly further comprises an ambient light source component, which is arranged at the periphery of the imaging light source component and fixed on the mirror frame.
8. The imaging bathroom mirror according to claim 7, characterized in that: The mirror frame includes a supporting portion, which is located at the periphery of the imaging light source component, and the atmosphere light source component is arranged on the supporting portion. The imaging bathroom mirror also includes a lampshade, which is arranged at the outer side of the mirror frame and can cover the supporting portion.
9. The imaging bathroom mirror according to claim 8, characterized in that: The mirror frame also includes a fixed inner ring and an outer retaining ring respectively arranged on both sides of the support part, the outer retaining ring is arranged on the side of the support part opposite to the fixed inner ring, and the outer retaining ring and the fixed inner ring are provided with a fixing hook on the side away from the imaging light source device, and the fixing hook is bent inwardly to form a hook groove, and buckling hooks are provided on both sides of the lampshade, and the buckling hooks extend toward the side close to the imaging light source device and are bent outwardly to form a hook shape, and the buckling hook can be buckled into the hook groove.
10. The imaging bathroom mirror according to claim 7, characterized in that: The imaging bathroom mirror also includes a power supply component and a control component, wherein the power supply component is electrically connected to the control component, and the control component includes a protective box and a control sensing module disposed in the protective box, wherein the control sensing module passes through the protective box and is electrically connected to the imaging light source component and the atmosphere light source component respectively, and the control sensing module is used to control the switches of the imaging light source component and the atmosphere light source component.