A bathroom cabinet mirror structure
Patent Information
- Application Number
- CN202522590824.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-05
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-12-05
AI Technical Summary
[0005]针对背景技术提出的问题,本实用新型的目的在于提出一种浴室柜镜结构,解决了现有浴室柜功能集成度低、空间利用不充分的问题
通过将电控模块、美妆镜模块、挂钩模块和收纳盒模块集成于框架的模块安装腔中,结合安装背板的固定连接,实现了美妆辅助、物品悬挂、灵活收纳及电控功能的精细化分区,有效提升了空间利用率和使用便捷性,具有多功能集成与空间高效利用的优点。
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Figure CN224806250U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bathroom storage technology, and in particular to a bathroom cabinet mirror structure. Background Technology
[0002] With the continuous increase in urban residential density, the intensive use of living space has become one of the core issues in modern home design. Especially in small functional areas such as bathrooms, how to unify storage and practical functions within a limited area has become an important direction for product development. Currently, bathroom mirror cabinets with storage functions are gradually becoming more common, achieving the dual purpose of visual expansion and item storage by setting up storage space behind the mirror. However, in existing technological solutions, the internal structural design of such mirror cabinets still has significant shortcomings.
[0003] Existing bathroom mirror cabinets generally have a rather simple internal storage structure, lacking refined partitioning for different types of items. Most products only offer simple shelf divisions, failing to systematically plan the storage space. This makes it difficult for users to effectively categorize and arrange items of different sizes and shapes, such as toiletries, cosmetics, and small jewelry. This haphazard storage method not only results in low space utilization but also easily leads to cluttered and inconvenient items, affecting daily convenience and overall aesthetics.
[0004] In conclusion, existing bathroom mirror cabinets still need improvement in terms of the rational planning of internal space and the detailed design of storage modules. Utility Model Content
[0005] In response to the problems raised in the background art, the purpose of this utility model is to propose a bathroom cabinet mirror structure that solves the problems of low functional integration and insufficient space utilization in existing bathroom cabinets.
[0006] To achieve this objective, the present invention adopts the following technical solution: A bathroom cabinet mirror structure includes a frame, a flat mirror, an electronic control module, a makeup mirror module, a hook module, a storage box module, and a mounting back panel; The front of the frame is provided with a mirror mounting cavity, in which the plane mirror is mounted; the rear of the frame is provided with a module mounting cavity, in which the electronic control module, the makeup mirror module, the hook module, and the storage box module are respectively mounted. The hook module, the storage box module, and the electronic control module are installed sequentially from top to bottom in the module mounting cavity; The mounting backplate is located on the back of the plane mirror, and the electronic control module, the makeup mirror module, the hook module, and the storage box module are installed and connected to the mounting backplate.
[0007] Preferably, the frame includes four profiles and four L-shaped corner brackets. The four profiles are connected end to end to form a rectangular frame, and the L-shaped corner brackets are used to connect two adjacent profiles. The profile includes a profile body and an extension; the profile body has a through groove running along its length, and the two ends of the profile body are respectively provided with 45° splicing angles; the extension is vertically disposed at the front end of the profile body; The two ends of the L-shaped corner bracket are respectively installed in the through grooves of two adjacent profiles, and the splicing corners of the two profiles are spliced to form a right angle of the rectangular frame; The extensions of the four profiles together form the mirror mounting cavity, and the profile bodies of the four profiles together form the module mounting cavity.
[0008] Preferably, the makeup mirror module includes a sliding groove, a slider, and a makeup magnifying mirror; The sliding groove extends vertically along the frame, the slider is slidably connected to the sliding groove, and the beauty magnifying mirror is mounted and connected to the slider.
[0009] Preferably, the sliding groove includes a groove body, the rear of which has a rearward-opening groove that extends vertically; the groove body is used for mounting connection with the mounting back plate and / or the frame. The slider includes a sliding part and a mirror mounting part, the mirror mounting part being located at the rear of the sliding part; the sliding part is slidably connected to the slide groove, the mirror mounting part protrudes rearward from the opening of the slide groove, and the beauty magnifying mirror is hinged to the mirror mounting part via a pivot.
[0010] Preferably, the hook module includes a hook mounting plate and a plurality of hooks; A plurality of hooks are arranged in an array at intervals at the rear of the hook mounting plate, which is used for mounting connection with the mounting back plate and / or the frame.
[0011] Preferably, the hook mounting plate includes a first vertical plate, a horizontal support plate, a second vertical plate, and a horizontal extension plate; The top end of the first vertical plate is connected to the front end of the horizontal support plate, the bottom end of the second vertical plate is connected to the rear end of the horizontal support plate, the first vertical plate and the second vertical plate are respectively perpendicular to the horizontal support plate, and the horizontal extension plate is disposed at the rear of the second vertical plate and is perpendicular to the second vertical plate. Several of the hooks are installed on the first vertical plate; The horizontal extension plate has a plurality of through holes, which penetrate the horizontal extension plate vertically, and the plurality of through holes are spaced apart along the length of the horizontal extension plate.
[0012] Preferably, the front end of the first vertical plate is recessed to the rear and has a hook installation clearance groove; The front end of the first vertical plate is connected to the mounting back plate by double-sided foam adhesive.
[0013] Preferably, the storage box module includes a box buckle and several compartment boxes; The box buckle includes a first plate, a second plate, and a third plate. The second plate is horizontally arranged, and the first plate and the third plate are vertically arranged at the front and rear ends of the second plate, respectively. The first plate, the second plate, and the third plate form a snap-fit groove with an open top and extending through the left and right sides. The first plate or the third plate is connected to the mounting back plate by double-sided foam adhesive. Several of the grid boxes are slidably mounted in the mounting slots.
[0014] Preferably, the electronic control module includes an electronic control cover and a defogging assembly; The electronic control cover is installed and connected to the mounting back plate and / or the frame. The electronic control cover and the module mounting cavity enclose an electronic control mounting cavity. The defogging component is located inside the electronic control mounting cavity and is electrically connected to an external power source.
[0015] Preferably, the profile body is provided with a wiring hole and a wiring outlet hole, and both the wiring hole and the wiring outlet hole are connected to the through groove; The wiring hole corresponds to the position of the electrical control mounting cavity, and the wiring outlet is located at the rear of the profile body.
[0016] Compared with the prior art, one of the above technical solutions has the following beneficial effects: By integrating the electronic control module, makeup mirror module, hook module, and storage box module into the modular installation cavity of the frame, and combining them with the fixed connection of the mounting back panel, the system achieves refined zoning of makeup assistance, item hanging, flexible storage, and electronic control functions, effectively improving space utilization and ease of use. It has the advantages of multi-functional integration and efficient space utilization. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of one embodiment of the present invention; Figure 2 This is a schematic diagram from another angle of one embodiment of the present invention; Figure 3 This is an exploded view of one embodiment of the present invention; Figure 4 This is an exploded view of another embodiment of the present invention; Figure 5 yes Figure 4Enlarged view of point A in the middle; Figure 6 This is a structural schematic diagram of the profile of this utility model; Figure 7 This is a schematic diagram of the slide groove strip of this utility model; Figure 8 This is a schematic diagram of the hook mounting plate of this utility model; Figure 9 This is a structural schematic diagram of the box buckle of this utility model.
[0018] The components include: frame 1, profile 11, through groove 110, profile body 111, wiring hole 1111, wiring hole 1112, extension 112, splicing corner 113, L-shaped corner bracket 12, mirror mounting cavity 101, module mounting cavity 102, plane mirror 2, electrical control module 3, electrical control cover 31, makeup mirror module 4, sliding groove strip 41, strip body 411, sliding groove 412, slider 42, sliding part 421, mirror mounting part 422, makeup magnifying mirror 43, hook module 5, hook mounting plate 51, first vertical plate 511, hook mounting clearance groove 5110, horizontal support plate 512, second vertical plate 513, horizontal extension plate 514, hook 52, storage box module 6, box buckle 61, clip groove 610, first plate 611, second plate 612, third plate 613, grid box 62, and mounting back plate 7. Detailed Implementation
[0019] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0020] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0021] Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first," "second," and "third" may explicitly or implicitly include one or more of that feature.
[0022] It should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0023] The following is in conjunction with the appendix Figures 1 to 9 The technical solution of this utility model will be further illustrated through specific implementation methods.
[0024] A bathroom cabinet mirror structure includes a frame 1, a plane mirror 2, an electronic control module 3, a makeup mirror module 4, a hook module 5, a storage box module 6, and a mounting back panel 7. The front of the frame 1 is provided with a mirror mounting cavity 101, and the plane mirror 2 is mounted in the mirror mounting cavity 101; the rear of the frame 1 is provided with a module mounting cavity 102, and the electronic control module 3, the makeup mirror module 4, the hook module 5 and the storage box module 6 are respectively mounted in the module mounting cavity 102. The hook module 5, the storage box module 6, and the electronic control module 3 are installed sequentially from top to bottom in the module mounting cavity 102; The mounting back plate 7 is located on the back of the plane mirror 2, and the electronic control module 3, the makeup mirror module 4, the hook module 5 and the storage box module 6 are installed and connected to the mounting back plate 7.
[0025] Specifically, frame 1 serves as the foundation of the overall structure. Its front mirror mounting cavity 101 is used to fix the plane mirror 2, ensuring that the mirror's function is independent and does not affect the utilization of the rear space. The rear of frame 1 has a module mounting cavity 102, which provides dedicated mounting areas for the electronic control module 3, makeup mirror module 4, hook module 5, and storage box module 6, thereby enabling the independent operation and coordinated cooperation of each functional module. The mounting backplate 7 is located on the back of the plane mirror 2, serving as the mounting base for all functional modules, stably fixing each module to the space behind the mirror and avoiding additional space occupation.
[0026] To further explain, frame 1 is the basic structure used to support and accommodate other functional modules. The combined design of mirror mounting cavity 101 and plane mirror 2 is mainly used to provide basic mirror reflection function; while module mounting cavity 102 provides independent installation space for various functional modules. Mounting back plate 7 integrates each functional module behind the mirror, making full use of limited space while maintaining a compact and aesthetically pleasing structure. Electronic control module 3 mainly provides users with an intelligent operating experience. Makeup mirror module 4 is designed to meet users' needs for detailed observation when applying makeup, and its magnification can be achieved by changing lenses or adjusting lens positions. Hook module 5 can be implemented in the form of single hooks or multiple hook combinations, and its installation position can be adjusted according to user needs. For example, hook module 5 can be quickly installed and removed using magnetic devices or snap-on structures. Storage box module 6 is designed mainly for classifying and storing small items, and its internal structure can be flexibly partitioned by setting movable partitions or drawer-style layers. Module mounting cavity 102 centrally accommodates makeup mirror module 4, hook module 5, and storage box module 6, respectively corresponding to the refined partitioning needs of cosmetics, hanging items, and small items. This modular integrated design not only enables systematic planning for different item types but also effectively improves space utilization. The "top-to-bottom" modular layout (hooks → storage boxes → electrical controls) conforms to ergonomics and human-machine operation logic. Frequently used small items (hooks) are located at eye level for easy access, heavier or larger items (storage boxes) are located in the central stable area, and electrical modules are located in the lower safe area, achieving optimal access paths.
[0027] This utility model, through modular integrated design, sets up an independent module mounting cavity 102 at the rear of the frame 1, integrating multiple functional modules into a limited space, and realizing refined partitioned storage for different types of items. This effectively solves the problems of low space utilization, cluttered items, and inconvenient access caused by the simple internal structure of existing bathroom cabinet mirrors, while avoiding additional bathroom space occupation and improving the functionality and practicality of the overall structure.
[0028] Furthermore, the frame 1 includes four profiles 11 and four L-shaped corner brackets 12. The four profiles 11 are connected end to end to form a rectangular frame, and the L-shaped corner brackets 12 are used to connect two adjacent profiles 11. The profile 11 includes a profile body 111 and an extension 112; the profile body 111 has a through groove 110 extending along its length, and the two ends of the profile body 111 are respectively provided with splicing angles 113 at 45°; the extension 112 is vertically disposed at the front end of the profile body 111. The two ends of the L-shaped corner bracket 12 are respectively installed in the through grooves 110 of two adjacent profiles 11, and the splicing angles 113 of the two profiles 11 are spliced to form a right angle of the rectangular frame. The extensions 112 of the four profiles 11 enclose the mirror mounting cavity 101, and the profile bodies 111 of the four profiles 11 enclose the module mounting cavity 102.
[0029] Profile 11 is a long strip-shaped structural component with a specific cross-sectional shape, which can be made of materials such as aluminum alloy, stainless steel, or engineering plastics. Its internal through-slot 110 design provides flexible connection methods and installation space. The vertical arrangement of the extension 112 and the profile body 111 ensures clear division of the chamber boundaries, providing clear physical isolation for different functional areas. L-shaped corner bracket 12 is a connector with a right-angle structure; its specific material can be metal or high-strength plastic, and it achieves a stable connection between profiles by embedding it into the through-slot 110.
[0030] Specifically, a rectangular frame is formed by connecting four profiles 11 end to end. This modular design allows for flexible adjustment of the frame size according to actual needs. The L-shaped corner brackets 12, used in conjunction with the through slots 110, not only simplify the assembly process but also distribute the connection stress evenly throughout the entire length of the profile, effectively preventing structural damage caused by localized stress concentration. The 45° splicing angles 113 at both ends of the profile body 111, combined with the positioning function of the L-shaped corner brackets 12, ensure the accuracy of the frame's right angles, thus providing stable boundary support for the mirror mounting cavity 101 and the module mounting cavity 102. The mirror mounting cavity 101, formed by the extension 112, has a uniform depth, ensuring balanced force distribution during the installation of the plane mirror 2. The module mounting cavity 102, formed by the profile body 111, provides regular installation space for functional components such as the electronic control module 3 and the makeup mirror module 4, achieving refined zoning of storage functions.
[0031] Furthermore, the makeup mirror module 4 includes a sliding groove strip 41, a slider 42, and a makeup magnifying mirror 43; The sliding groove strip 41 extends vertically along the frame 1, the slider 42 is slidably connected to the sliding groove strip 41, and the beauty magnifying mirror 43 is installed and connected to the slider 42.
[0032] The slide rail 41 is a long, strip-shaped structure with a guiding function. It has a straight slide rail inside to allow for the smooth movement of the slider 42, providing a stable vertical adjustment track for the makeup magnifying mirror 43. The slider 42 can move along the slide rail 41, ensuring that the makeup magnifying mirror 43 can be flexibly adjusted in height according to user needs. The makeup magnifying mirror 43 is a mirror component with magnification function, designed to meet the user's observation needs during precise operations such as makeup application.
[0033] Specifically, by extending the sliding groove 41 vertically along the frame 1, the vertical space of the frame 1 is fully utilized, providing a continuous and precise movement path for the slider 42. The sliding connection design between the slider 42 and the sliding groove 41 allows users to easily adjust the makeup magnifying mirror 43 to a suitable height, avoiding the viewing angle limitation caused by fixed installation. At the same time, the installation connection method between the makeup magnifying mirror 43 and the slider 42 ensures that the makeup magnifying mirror 43 remains stable during sliding, without wobbling or shifting. The above design not only improves user comfort but also significantly enhances the functional adaptability of the makeup mirror module 4, especially excelling in meeting the needs of users of different heights.
[0034] Furthermore, the sliding groove 41 includes a groove body 411, the rear of which is provided with a sliding groove 412 that opens to the rear and extends vertically; the groove body 411 is used for mounting and connecting with the mounting back plate 7 and / or the frame 1. The slider 42 includes a sliding part 421 and a mirror mounting part 422. The mirror mounting part 422 is located at the rear of the sliding part 421. The sliding part 421 is slidably connected to the slide groove 412. The mirror mounting part 422 protrudes rearward from the opening of the slide groove 412. The beauty magnifying mirror 43 is hinged to the mirror mounting part 422 via a pivot.
[0035] By optimizing the structural design of the sliding groove 41 and the slider 42, the problem of the non-adjustable angle of the makeup magnifying mirror 43 is effectively solved. A rearward-opening sliding groove 412 is provided at the rear of the main body 411 of the sliding groove, allowing the mirror mounting part 422 of the slider 42 to protrude rearward from the opening of the sliding groove 412. This positions the makeup magnifying mirror 43 behind the mirror without interfering with the sliding function, preventing the main mirror from being obstructed. The slider 42 is divided into a sliding part 421 and a mirror mounting part 422. This functional separation design allows the sliding part 421 to focus on smooth movement within the sliding groove, while the mirror mounting part 422 is dedicated to supporting the mirror, simplifying structural complexity and improving reliability. The mirror mounting part 422 is located behind the sliding part 421, allowing the makeup magnifying mirror 43 to be mounted behind the mirror based on a rear-mounted layout, maintaining a neat and aesthetically pleasing overall appearance. The sliding connection between the sliding part 421 and the sliding groove 412 utilizes the guiding effect of the vertically penetrating sliding groove to achieve free height adjustment of the makeup magnifying mirror 43. The core innovation is the design of the beauty magnifying mirror 43 and the mirror mounting part 422 being connected by a pivot. Because the pivot hinge mechanism allows the beauty magnifying mirror 43 to rotate relative to the mirror mounting part 422, users can flexibly adjust the tilt angle of the mirror according to their viewing needs. This allows them to adapt to different usage scenarios without moving their body, significantly improving the convenience and comfort of the user experience.
[0036] Furthermore, the hook module 5 includes a hook mounting plate 51 and a plurality of hooks 52; A plurality of hooks 52 are arranged in an array at intervals on the rear of the hook mounting plate 51, the hook mounting plate 51 being used for mounting connection with the mounting back plate 7 and / or the frame 1.
[0037] The hook mounting plate 51, connected to the mounting back plate 7 or frame 1, forms an integrated hook module 5. This connection can be achieved through bolt fixing, snap-fit connection, or adhesive bonding, depending on the requirements of the actual installation environment. Several hooks 52 are arranged in an array-like spacing, effectively preventing interference when hanging items and allowing users to easily select appropriate locations for categorized hanging based on item size. Furthermore, the design of the hook module 5 fully utilizes the rear space of the module mounting cavity 102, avoiding encroachment on the visible area in front of the mirror, thus optimizing the functional layout of a small bathroom. Through the above technical solutions, the hook module 5 achieves a systematic planning of the hook layout, significantly improving space utilization and ease of access, meeting the needs of refined storage.
[0038] To further explain, the hook mounting plate 51 serves as a basic support structure. It can be made of metal sheet, plastic sheet, or other materials with sufficient strength. Its purpose is to provide a uniform mounting reference surface for the hooks 52, ensuring that the hooks 52 can be arranged in an orderly manner at fixed intervals. The design of installing several hooks 52 in an array at intervals can be achieved by setting equidistant mounting holes or slots on the hook mounting plate 51. The purpose is to ensure that each hook 52 maintains a reasonable distance from each other, preventing items from colliding or tangling when hung, thereby improving storage organization and space utilization efficiency.
[0039] Furthermore, the hook mounting plate 51 includes a first vertical plate 511, a horizontal support plate 512, a second vertical plate 513, and a horizontal extension plate 514; The top end of the first vertical plate 511 is connected to the front end of the horizontal support plate 512, the bottom end of the second vertical plate 513 is connected to the rear end of the horizontal support plate 512, the first vertical plate 511 and the second vertical plate 513 are respectively perpendicular to the horizontal support plate 512, and the horizontal extension plate 514 is disposed at the rear of the second vertical plate 513, and the horizontal extension plate 514 is perpendicular to the second vertical plate 513; Several hooks 52 are installed on the first vertical plate 511; The horizontal extension plate 514 is provided with a plurality of through holes, which penetrate the horizontal extension plate 514 in a vertical direction, and the plurality of through holes are spaced apart along the length direction of the horizontal extension plate 514.
[0040] The first vertical plate 511 serves as the mounting surface for the hook 52. Its vertical arrangement, combined with the lateral connection of the horizontal support plate 512, effectively disperses stress under load and prevents localized deformation. The horizontal support plate 512, as the core connecting component, forms a stable support system by vertically fixing the first vertical plate 511 to the second vertical plate 513, significantly enhancing the overall structure's bending resistance. The second vertical plate 513 provides a reliable support base for the horizontal extension plate 514, allowing it to maintain the stability of the front hook function while extending backward. The through-hole design of the horizontal extension plate 514 allows items to be inserted and placed within the through-hole, further expanding the functionality of the hook module 5.
[0041] Furthermore, the front end of the first vertical plate 511 is recessed to the rear and is provided with a hook mounting clearance groove 5110. The front end face of the first vertical plate 511 is connected to the mounting back plate 7 by double-sided foam adhesive.
[0042] By setting a hook installation clearance groove 5110 on the front surface of the first vertical plate 511, the spatial interference problem between the hook 52 and the mounting back plate 7 during or after installation is effectively solved, ensuring that the hook can be smoothly positioned and securely installed. Simultaneously, the front surface of the first vertical plate 511 and the mounting back plate 7 are connected using double-sided foam adhesive. The elastic properties of the foam material absorb external impact, preventing cracking or loosening caused by rigid fixing. This design not only improves the long-term stability of the hook module in humid environments but also significantly enhances user convenience and overall aesthetics. Furthermore, the combination of the hook installation clearance groove 5110 and the double-sided foam adhesive further optimizes the overall structural performance of the hook module, reflecting an innovative approach to refined storage design.
[0043] Furthermore, the storage box module 6 includes a box buckle 61 and several compartment boxes 62; The box buckle 61 includes a first plate 611, a second plate 612, and a third plate 613. The second plate 612 is horizontally arranged, and the first plate 611 and the third plate 613 are vertically arranged at the front and rear ends of the second plate 612, respectively. The first plate 611, the second plate 612, and the third plate 613 form a snap-fit groove 610 with an open top and extending through the left and right sides. The first plate 611 or the third plate 613 is connected to the mounting back plate 7 by double-sided foam adhesive. Several of the grid boxes 62 are slidably mounted in the mounting slots 610.
[0044] The box buckle 61 is a basic structural component used to create adjustable storage space, which can be formed by bending metal sheet or injection molding plastic. The first plate 611 and the third plate 613 serve as vertical supports, providing stable lateral restraint; the second plate 612 serves as a horizontal support, providing a stable load-bearing surface for the grid box 62. The mounting slot 610 is designed to form a continuous sliding track, allowing the grid box 62 to be freely adjusted along its length to accommodate different storage needs.
[0045] The grid box 62 is an independent unit for storing small items. It can be made of transparent plastic, allowing users to easily see the items inside. The sliding connection between the grid box 62 and the mounting slot 610 is achieved by setting a raised sliding strip on the bottom of the grid box, which ensures smoothness and stability during the sliding process. In addition, the first plate 611 or the third plate 613 is connected to the mounting back plate 7 by double-sided foam tape, which simplifies the installation process and avoids damage to the mounting back plate 7.
[0046] Specifically, the combination of the box buckle 61 and the grid box 62 enables dynamic adjustment of the storage space. The U-shaped structure of the box buckle 61 not only provides a stable sliding track, but also allows the grid box 62 to be moved and rearranged flexibly through the top opening and the left and right through design.
[0047] Building upon this, the connection method between the box clip 61 and the mounting back panel 7 further enhances the flexibility of the overall structure. The cushioning properties of the double-sided foam adhesive not only ensure a secure fit between the box clip 61 and the mounting back panel 7 but also facilitate future maintenance or rearrangement. Through the above technical solutions, the problems of limited internal storage structure and low space utilization in existing bathroom mirror cabinets are solved, enabling refined partitioning storage for different item types, significantly improving user convenience and overall aesthetics.
[0048] Preferably, either the first plate 611 or the third plate 613 is perpendicular to the second plate 612, and the other plate is inclined toward the mounting groove 610. When the grid box 62 is mounted in the mounting groove 610, the inclined plate plays a role in clamping the grid box.
[0049] Furthermore, the electronic control module 3 includes an electronic control cover 31 and a defogging assembly; The electronic control cover 31 is installed and connected to the mounting back plate 7 and / or the frame 1. The electronic control cover 31 and the module mounting cavity 102 enclose an electronic control mounting cavity. The defogging component is located in the electronic control mounting cavity and is electrically connected to an external power source.
[0050] The electrical control cover 31 is a protective component used to cover and protect the internal electrical components. It can be made of waterproof and moisture-proof materials such as plastic or metal, aiming to provide a sealed environment that isolates moisture for the defogging assembly. In practical applications, the electrical control cover 31 can be connected to the mounting backplate 7 or frame 1 by snap-fit, screw fixing, or adhesive bonding to ensure secure installation and airtightness. The defogging assembly refers to a functional module that eliminates water vapor on the mirror surface through heating or other methods. It can achieve a stable electrical connection with an external power source through wires, thereby ensuring the normal operation of the function.
[0051] Specifically, this design forms an independent electrical control mounting cavity through the enclosure design of the electrical control cover 31 and the modular mounting cavity 102. This structure fully utilizes the open frame characteristics of the modular mounting cavity 102 while avoiding the introduction of additional support structures, simplifying the overall design. The electrical control cover 31, as a core protective component, not only effectively isolates the defogging component but also retains the versatility of the modular mounting cavity 102, allowing for flexible arrangement of other functional modules. Furthermore, the defogging component is placed within the electrical control mounting cavity, utilizing the dry environment of the enclosed cavity to avoid electrical risks caused by moisture, while also facilitating later maintenance. This integrated design significantly improves the long-term stability of the defogging function in high-humidity environments and optimizes the overall layout of the bathroom cabinet mirror structure.
[0052] Furthermore, the profile body 111 is provided with a wiring hole 1111 and a wiring hole 1112, both of which are connected to the through groove 110; The wiring hole 1111 corresponds to the position of the electrical control mounting cavity, and the wiring hole 1112 is located at the rear of the profile body 111.
[0053] By integrating wiring holes 1111 and outlet holes 1112 into the profile body 111, the wiring of the electrical control module 3 is concealed. The wiring hole 1111 connects to the through groove 110, allowing the power cables inside the electrical control mounting cavity to directly enter the through groove 110 within the profile, avoiding cross-winding of the cables in the module mounting cavity 102 and thus reducing physical interference with the sliding path of the makeup mirror module 4 and the installation position of the storage box module 6. The outlet hole 1112 connects to the through groove 110, ensuring that the cables extend from the through groove 110 to the rear of the profile body 111, concentrating the power connection points in a concealed area and preventing the front usable area from being occupied by cables. Furthermore, the precise correspondence between the wiring hole 1111 and the electrical control mounting cavity shortens the cable path and eliminates redundant bends, improving cable laying efficiency. The design of the cable outlet 1112 located at the rear of the profile body 111 facilitates connection to the wall power interface, while limiting the external connection point to the back panel side, avoiding exposed cables in the front mirror area, and ensuring the overall visual neatness of the bathroom cabinet and the safety of user operation.
[0054] The above solution not only solves the problem of the lack of dedicated power supply channels, but also significantly improves space utilization and overall aesthetics by optimizing the wiring layout. For example, the connection between the wiring hole 1111 and the through groove 110 effectively reduces the clutter of wiring within the module mounting cavity 102, providing more flexible space for the installation and positioning of the hook module 5 and the storage box module 6. Meanwhile, the rear-mounted design of the wiring hole 1112 further enhances the bathroom cabinet's moisture resistance, reducing the risk of short circuits caused by humid environments. This structural design complements the overall layout of the frame 1, forming a solution that combines functionality and practicality, fully demonstrating the ingenuity of the technical solution.
[0055] The technical principles of this utility model have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of this utility model and should not be construed as limiting the scope of protection of this utility model in any way. Based on this explanation, those skilled in the art can readily conceive of other specific embodiments of this utility model without any inventive effort, and these embodiments will all fall within the scope of protection of this utility model.
Claims
1. A bathroom cabinet mirror structure, characterized in that: Includes frame (1), plane mirror (2), electronic control module (3), beauty mirror module (4), hook module (5), storage box module (6) and mounting back plate (7); The front of the frame (1) is provided with a mirror mounting cavity (101), and the plane mirror (2) is installed in the mirror mounting cavity (101); the rear of the frame (1) is provided with a module mounting cavity (102), and the electronic control module (3), the beauty mirror module (4), the hook module (5) and the storage box module (6) are respectively installed in the module mounting cavity (102). The hook module (5), the storage box module (6) and the electronic control module (3) are installed in the module mounting cavity (102) from top to bottom. The mounting back plate (7) is located on the back of the plane mirror (2), and the electronic control module (3), the makeup mirror module (4), the hook module (5) and the storage box module (6) are installed and connected to the mounting back plate (7).
2. The bathroom cabinet mirror structure according to claim 1, characterized in that: The frame (1) includes four profiles (11) and four L-shaped corner brackets (12). The four profiles (11) are connected end to end to form a rectangular frame. The L-shaped corner brackets (12) are used to connect two adjacent profiles (11). The profile (11) includes a profile body (111) and an extension (112); the profile body (111) has a through groove (110) extending along its length, and the two ends of the profile body (111) are respectively provided with splicing angles (113) of 45°; the extension (112) is vertically disposed at the front end of the profile body (111); The two ends of the L-shaped corner bracket (12) are respectively installed in the through groove (110) of the two adjacent profiles (11), and the splicing angle (113) of the two profiles (11) are spliced to form a right angle of the rectangular frame; The extensions (112) of the four profiles (11) enclose the mirror mounting cavity (101), and the profile bodies (111) of the four profiles (11) enclose the module mounting cavity (102).
3. The bathroom cabinet mirror structure according to claim 2, characterized in that: The makeup mirror module (4) includes a sliding groove (41), a slider (42), and a makeup magnifying mirror (43). The sliding groove strip (41) extends along the vertical direction of the frame (1), the slider (42) is slidably connected to the sliding groove strip (41), and the beauty magnifying mirror (43) is installed and connected to the slider (42).
4. The bathroom cabinet mirror structure according to claim 3, characterized in that: The sliding groove (41) includes a groove body (411), and the rear part of the groove body (411) is provided with a groove (412) that opens to the rear and runs through the vertical direction; the groove body (411) is used to install and connect with the mounting back plate (7) and / or the frame (1); The slider (42) includes a sliding part (421) and a mirror mounting part (422). The mirror mounting part (422) is located at the rear of the sliding part (421). The sliding part (421) is slidably connected to the slide groove (412). The mirror mounting part (422) protrudes rearward from the opening of the slide groove (412). The beauty magnifying mirror (43) is hinged to the mirror mounting part (422) via a pivot.
5. The bathroom cabinet mirror structure according to claim 2, characterized in that: The hook module (5) includes a hook mounting plate (51) and a plurality of hooks (52); Several hooks (52) are arranged in an array at intervals on the rear of the hook mounting plate (51), which is used to mount and connect with the mounting back plate (7) and / or the frame (1).
6. The bathroom cabinet mirror structure according to claim 5, characterized in that: The hook mounting plate (51) includes a first vertical plate (511), a horizontal support plate (512), a second vertical plate (513), and a horizontal extension plate (514). The top end of the first vertical plate (511) is connected to the front end of the horizontal support plate (512), the bottom end of the second vertical plate (513) is connected to the rear end of the horizontal support plate (512), the first vertical plate (511) and the second vertical plate (513) are respectively perpendicular to the horizontal support plate (512), and the horizontal extension plate (514) is located at the rear of the second vertical plate (513), and the horizontal extension plate (514) is perpendicular to the second vertical plate (513); Several of the hooks (52) are installed on the first vertical plate (511); The horizontal extension plate (514) is provided with a plurality of through holes, which penetrate the horizontal extension plate (514) in a vertical direction, and the plurality of through holes are arranged at intervals along the length direction of the horizontal extension plate (514).
7. A bathroom cabinet mirror structure according to claim 6, characterized in that: The front end of the first vertical plate (511) is recessed to the rear and has a hook installation clearance groove (5110). The front end face of the first vertical plate (511) is connected to the mounting back plate (7) by double-sided foam adhesive.
8. The bathroom cabinet mirror structure according to claim 2, characterized in that: The storage box module (6) includes a box buckle (61) and several compartment boxes (62). The box buckle (61) includes a first plate (611), a second plate (612), and a third plate (613). The second plate (612) is horizontally arranged, and the first plate (611) and the third plate (613) are vertically arranged at the front and rear ends of the second plate (612), respectively. The first plate (611), the second plate (612), and the third plate (613) form a snap-fit groove (610) with an open top and through the left and right sides. The first plate (611) or the third plate (613) is connected to the mounting back plate (7) by double-sided foam adhesive. Several of the grid boxes (62) are slidably snapped into the snap-fit slots (610).
9. A bathroom cabinet mirror structure according to claim 2, characterized in that: The electronic control module (3) includes an electronic control cover (31) and a defogging assembly; The electrical control cover (31) is installed and connected to the mounting back plate (7) and / or the frame (1). The electrical control cover (31) and the module mounting cavity (102) enclose the electrical control mounting cavity. The defogging component is located in the electrical control mounting cavity and is electrically connected to an external power source.
10. A bathroom cabinet mirror structure according to claim 9, characterized in that: The profile body (111) is provided with a wiring hole (1111) and a wiring hole (1112), and both the wiring hole (1111) and the wiring hole (1112) are connected to the through groove (110); The wiring hole (1111) corresponds to the position of the electrical control mounting cavity, and the wiring hole (1112) is located at the rear of the profile body (111).