Vacuum suction base and mirror device

CN122604195APending Publication Date: 2026-08-21SHENZHEN DELALON IMPORT & EXPORT CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202611007491.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-08
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

[0004]本发明的目的是提供一种真空吸附底座及镜装置,以解决现有技术中真空吸盘在非平整墙面上因边缘漏气导致吸附可靠性差、易脱落的问题

Benefits of technology

[0024]与现有技术相比,本发明提供的一种真空吸附底座及镜装置,通过在安装座底面设置至少两条同心的圆环形筋骨,当旋杆拉起吸盘体的盘面部中心时,各圆环形筋骨从中心向外侧依次与吸盘体背面接触,将吸盘体与安装基面之间形成的真空区分割为多个独立的同心环状真空带。即使最外侧的真空带因安装基面的局部不平整而发生微量泄漏,内侧的真空带由于被圆环形筋骨有效阻隔,其真空度仍能维持,从而形成多道密封保障。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122604195A_ABST
    Figure CN122604195A_ABST
Patent Text Reader

Abstract

The application discloses a kind of vacuum adsorption pedestal and mirror device, it is related to household supplies and bathroom equipment technical field, including mounting seat;Sucker component, including suction disc body, the disc surface part for fitting installation base surface is formed in the middle of one side of suction disc body, and the other side edge extends with annular apron;Rotary rod, one end is fixedly installed in the center of disc surface part, and the other end penetrates mounting seat;Operating member, with the end of rotary rod that penetrates mounting seat is mutually cooperated, for controlling the suction power of suction disc body;Mounting seat is close to the side of suction disc body and is provided with at least two concentric and gradually increasing radius circular ring muscle and bone, and circular ring muscle and bone are the continuous annular structure of protruding;The application is by being provided with circular ring muscle and bone in mounting seat bottom surface, and vacuum area is divided into multiple sealed bands and limits protruding apron shrinkage deformation, prevent suction disc edge displacement air leakage, effectively solve the problem that suction disc edge air leakage is easy to fall off on uneven wall surface.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of household goods and bathroom equipment technology, specifically to a vacuum adsorption base and mirror device. Background Technology

[0002] Currently, there are two main methods for installing bathroom mirrors (commonly known as "shaving mirrors" or "makeup mirrors"): one is by drilling holes in the wall and using expansion screws or other fasteners for fixing. This method provides a secure installation but can damage the wall surface, and once the position is fixed, it is difficult to adjust. The other method uses suction cups for attachment, which is increasingly favored by users due to its no-drilling and flexible installation. Existing technology already includes products that use suction cups to fix mirrors to smooth surfaces such as tiles and glass.

[0003] However, in actual installation and use, when the suction cup of the mirror needs to adhere to a non-smooth surface such as mosaic, textured tile, or antique tile, the existing suction cup structure faces a very real and thorny problem: the edge of the suction cup cannot form an effective seal with such uneven wall surfaces. Even if the worker or user presses the suction cup firmly onto the wall, due to the presence of tiny bumps or pits on the wall, the edge of the suction cup will locally shrink and deform or gap due to the tension, causing air to continuously seep into the vacuum zone from the edge, making it impossible to maintain a vacuum. Within a short time, the seemingly firmly attached mirror will suddenly fall due to the gradual decrease in vacuum, posing a safety hazard of damage to property or injury to people. This problem is particularly prominent in humid bathroom environments, as moisture further exacerbates the leakage at the edge. Summary of the Invention

[0004] The purpose of this invention is to provide a vacuum adsorption base and mirror device to solve the problem in the prior art that vacuum suction cups have poor adsorption reliability and are easy to fall off on uneven wall surfaces due to edge air leakage.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a vacuum adsorption base, including a mounting base;

[0006] A suction cup assembly includes a suction cup body, wherein the suction cup body has a disc-shaped surface for adhering to a mounting base at the center of one side, and an annular skirt extending from the edge of the other side.

[0007] The rotating rod has one end fixedly installed at the center of the disc surface, and the other end passes through the mounting base;

[0008] The operating component cooperates with one end of the rotary rod that extends out of the mounting base to control the suction force of the suction cup body;

[0009] The mounting base is provided with at least two concentric annular ribs with gradually increasing radii on the side near the suction cup body. The annular ribs are protruding continuous ring structures.

[0010] The rotating rod pulls up the center of the disk surface, and the annular ribs contact the back of the suction cup body from the center outwards in sequence, dividing the vacuum area formed inside the suction cup body into multiple concentric annular vacuum bands, while preventing the skirt from shrinking and deforming to prevent air leakage at the edge.

[0011] Furthermore, the number of the circular ribs is three, and the radius of the three circular ribs gradually increases outwards.

[0012] Furthermore, the cross-section of the annular rib is semi-circular, and its protrusion height is not less than 0.5mm. The protrusion height of the annular rib gradually decreases, increases, or is all the same from the inside to the outside.

[0013] Furthermore, the rotating rod is a rod with external threads, the operating element is an operating knob, and the operating element has an annular column with threads on the inner wall on the side near the rotating rod, and the operating element is threadedly engaged with the rotating rod.

[0014] Furthermore, the outer ring of the suction cup body near the surface of the suction cup is also provided with an annular adhesive layer.

[0015] A mirror device using the above-mentioned vacuum adsorption base includes:

[0016] mirror body;

[0017] A connecting assembly is provided, through which the mirror body is detachably mounted to the front end face of the mounting base.

[0018] Furthermore, the connecting assembly consists of a mounting groove, a guide ridge, a plug plate, a ball-shaped connecting rod, and a ball-and-socket joint. The mounting groove is formed on the top of the mounting base, and its sidewalls penetrate the front end face of the mounting base. The guide ridge is vertically and symmetrically installed on the two side walls of the mounting groove. The plug plate is inserted into the mounting groove from the top of the mounting base, and its two sides respectively fit against the back wall of the mounting groove and the side wall of the guide ridge.

[0019] The ball-shaped connecting rod is fixedly connected to the front end face of the plug plate, and the ball-and-socket joint is located on the back of the lens body. The ball head of the ball-shaped connecting rod cooperates with the ball-and-socket joint. The lens body can achieve multi-angle rotation adjustment relative to the mounting base through the ball-shaped connecting rod, and can be separated from and installed from the mounting base by plugging and unplugging.

[0020] Furthermore, a heating element is embedded in the inner side of the mirror surface of the mirror body to heat the mirror surface and eliminate fogging. A ring-shaped lighting strip is installed on the inner side of the mirror surface of the mirror body. A touch button electrically connected to the heating element and the lighting strip is provided on the front of the mirror body. There are two touch buttons, one for lighting and one for heating.

[0021] The mounting base has a through-hole near the bottom, into which a hook is inserted, and the hook is located below the mirror body.

[0022] Furthermore, it also includes an auxiliary patch, which includes a substrate. One surface of the substrate is a smooth plane for adsorbing and fixing with the suction cup body. The other surface of the substrate is provided with an adhesive layer for pasting the auxiliary patch onto a non-flat mounting base surface.

[0023] The substrate of the auxiliary patch is made of stainless steel sheet or acrylic material, and the adhesive layer is 3M waterproof double-sided adhesive.

[0024] Compared with existing technologies, the vacuum adsorption base and mirror device provided by this invention, by setting at least two concentric annular ribs on the bottom surface of the mounting base, when the rotating rod pulls up the center of the suction cup body, each annular rib contacts the back of the suction cup body sequentially from the center outwards, dividing the vacuum area formed between the suction cup body and the mounting base surface into multiple independent concentric annular vacuum zones. Even if the outermost vacuum zone experiences a slight leakage due to local unevenness of the mounting base surface, the vacuum level of the inner vacuum zone can still be maintained because it is effectively blocked by the annular ribs, thus forming multiple layers of sealing protection.

[0025] Meanwhile, the radial clamping force of the annular ribs on the back of the suction cup body can counteract the outward pulling stress on the skirt when the center is pulled up, preventing shrinkage deformation of the skirt edge and eliminating air leakage paths between the mounting base and the skirt edge. Therefore, when this vacuum adsorption base is used on uneven surfaces (such as smooth textured ceramic tiles with an undulation difference of no more than 1 mm) or when used with a substrate, it can significantly reduce the risk of adsorption failure caused by edge air leakage, improve the reliability and stability of adsorption, and effectively prevent the mirror device from accidentally falling off during use. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this invention. For those skilled in the art, other drawings can be obtained based on these drawings.

[0027] Figure 1Schematic diagram of the overall structure of the vacuum adsorption base and mirror body provided in the embodiments of the present invention. Figure 1 ;

[0028] Figure 2 Schematic diagram of the overall structure of the vacuum adsorption base and mirror body provided in the embodiments of the present invention. Figure 2 ;

[0029] Figure 3 This is a schematic diagram of the structure of the mounting base and annular ribs provided in an embodiment of the present invention;

[0030] Figure 4 This is a schematic diagram of the structure of components such as the mounting base and operating parts provided in an embodiment of the present invention;

[0031] Figure 5 This is a schematic diagram of the structure of components such as the skirt on the suction cup body provided in an embodiment of the present invention;

[0032] Figure 6 This is a schematic diagram of the suction cup body's upper surface and adhesive layer structure provided in an embodiment of the present invention;

[0033] Figure 7 This is a schematic diagram of the structure of components such as the mounting base and connecting assembly provided in an embodiment of the present invention;

[0034] Figure 8 This is a schematic diagram showing the disassembled structure of components such as the mirror body and the connector plate provided in an embodiment of the present invention;

[0035] Figure 9 This is a schematic diagram of the internal structure of components such as the lamp strip inside the mirror body provided in an embodiment of the present invention;

[0036] Figure 10 This is a schematic diagram showing the disassembled structure of components such as the mounting base, mirror body, and substrate provided in an embodiment of the present invention.

[0037] Explanation of reference numerals in the attached figures:

[0038] 1. Mounting base; 2. Suction cup body; 201. Skirt; 202. Disc surface; 3. Rotary rod; 4. Operating component; 5. Circular rib; 6. Adhesive layer; 7. Mirror body; 8. Mounting groove; 9. Guide protrusion; 10. Insertion plate; 11. Ball joint; 12. Ball joint; 13. Heating element; 14. Lighting strip; 15. Touch button; 16. Insertion hole; 17. Hook; 18. Base plate. Detailed Implementation

[0039] To enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.

[0040] Example 1:

[0041] The specific structure and working principle of the vacuum adsorption base:

[0042] Please see Figures 1 to 5 This embodiment provides a vacuum adsorption base, which can be used to install mirrors, makeup mirrors, beauty mirrors, shaving mirrors or other items that need to be hung on the mounting base such as walls or glass surfaces. It is especially suitable for non-flat and smooth surfaces such as mosaics, textured tiles, and antique tiles (with base plate 18).

[0043] The vacuum adsorption base includes: a mounting base 1, a suction cup assembly, a rotating rod 3, and an operating component 4.

[0044] The mounting base 1 is a disc-shaped or square plastic component with a certain thickness. The side facing the mounting base is the bottom surface, and the side facing away from the mounting base is the front surface. A through hole is provided in the center of the mounting base 1 for inserting the rotating rod 3.

[0045] The suction cup assembly includes a suction cup body 2 made of elastic rubber or thermoplastic elastomer material. The suction cup body 2 has a disc-shaped surface 202, which is a thicker central area used to withstand tension and transmit vacuum force. An adhesive layer 6 is also provided on the disc-shaped surface 202. The adhesive layer 6 is a reusable adhesive. The disc-shaped surface 202 and the adhesive layer 6 are on the same plane for adhering to the mounting base surface.

[0046] The skirt 201 is a thin and soft annular lip, which is used to fit together with the largest outer ring rib on the annular rib 5, thereby limiting the deformation and displacement of the skirt 201 and ensuring that the edge of the suction cup body 2 does not leak air.

[0047] The rotating rod 3 is a metal or high-strength plastic rod with external threads. One end of the rotating rod 3 is fixedly connected to the center of the disc surface 202, and the other end of the rotating rod 3 extends out of the front end face of the mounting base 1 after passing through the through hole at the center of the mounting base 1.

[0048] The operating component 4 cooperates with the end of the rotating rod 3 that protrudes from the mounting base 1 to control the suction force of the suction cup body 2. In this embodiment, the operating component 4 is an operating knob, and the side of the operating component 4 near the rotating rod 3 has an annular column with internal threads on its inner wall. The operating component 4 forms a threaded engagement with the external threads of the rotating rod 3 through this internal thread. When the user rotates the operating component 4, the rotating rod 3 moves axially relative to the mounting base 1, thereby pulling up or releasing the center of the disc surface 202. It should be noted that the operating component 4 can also be a handle, a dial, or other forms of operating component, as long as it can drive the rotating rod 3 to move axially.

[0049] Please refer to this carefully. Figure 3 and Figure 4The core improvement of this invention lies in the fact that at least two concentric annular ribs 5 are provided on the side of the mounting base 1 near the suction cup body 2 (i.e., the bottom surface of the mounting base 1). In the preferred embodiment shown in the figure, there are three annular ribs 5, and the radii of the three annular ribs 5 gradually increase outwards (for example, the inner rib has a radius of 10mm, the middle rib has a radius of 20mm, and the outer rib has a radius of 30mm). The annular ribs 5 are protruding continuous ring structures with a semi-circular cross-section and a protrusion height of not less than 0.5mm. The protrusion height of the annular ribs 5 gradually decreases, increases, or remains the same from the inside to the outside. For example, by using a gradually decreasing protrusion height, the inner rib can first press against the back of the suction cup body 2 to form a first seal during the process of pulling up the rotating rod 3. Subsequently, the middle and outer ribs press against the back of the suction cup body 2 with slightly less pressure, which ensures the sealing effect and avoids excessive deformation of the suction cup body 2 due to excessive pressure.

[0050] When the user rotates the operating component 4, causing the lever 3 to pull upwards towards the center of the disk surface 202, the central area of ​​the suction cup body 2 begins to detach from the mounting base, forming an initial vacuum zone. As the center continues to be pulled up, the annular ribs 5 sequentially contact and apply pressure to the back of the suction cup body 2 from the center outwards. Specifically, the inner annular ribs 5 first press against the central area of ​​the back of the suction cup body 2, separating the vacuum zone near the center from the outside; then the middle ribs press against the center, forming a middle annular vacuum zone; finally, the outer ribs press against the center, forming the outermost annular vacuum zone. Thus, the annular ribs 5 divide the originally interconnected large vacuum zone inside the suction cup body 2 into multiple concentric annular vacuum zones.

[0051] The beneficial effects of this structure are: even if the outermost vacuum band leaks due to minor protrusions or pits on the mounting surface, the vacuum level of the inner vacuum band can still be maintained because it is effectively blocked by the annular ribs 5, thus forming multiple independent sealing barriers and improving the overall adsorption reliability. The largest outer ring rib on the annular ribs 5 fits snugly against the skirt 201, preventing shrinkage and deformation at the edge of the skirt 201, thereby ensuring that the edge of the suction cup body 2 is airtight. This avoids the problem of the suction cup body 2 accidentally detaching from the mounting base 1 and improves the stability of the connection between the two.

[0052] The back of the suction cup 2 is also provided with an adhesive layer 6, which is a reusable colloid. When the cup surface 202 is in contact with the mounting base, the adhesive layer 6 increases the adhesion and friction, preventing relative slippage due to vibration or external forces during long-term use. The beneficial effect of this structure is that it further enhances the connection stability of the suction cup 2 to the mounting base, making the base more secure and reliable after adhesion.

[0053] Example 2:

[0054] The mirror assembly including the vacuum adsorption base and its complete structure:

[0055] Please see Figure 1 , Figure 2 , Figures 7 to 10 This embodiment provides a mirror device using the aforementioned vacuum adsorption base. This mirror device can be used as a bathroom shaving mirror, makeup mirror, beauty mirror, or ordinary decorative mirror, and is especially suitable for installation in humid environments such as bathrooms and washrooms.

[0056] The mirror device includes: a mirror body 7, a connecting assembly, and the vacuum adsorption base described in Embodiment 1. The mirror body 7 is detachably mounted to the front end face of the mounting base 1 via the connecting assembly.

[0057] Specifically, please refer to the following: Figure 6 and Figure 7 The connecting assembly consists of a mounting groove 8, guide ridges 9, a plug-in plate 10, a ball-shaped connecting rod 11, and a ball-and-socket joint 12. The mounting groove 8 is formed on the top of the mounting base 1, and is rectangular or trapezoidal in shape, with its sidewalls penetrating the front end face of the mounting base 1 (i.e., the front of the mounting groove 8 is open). The guide ridges 9 are vertically symmetrically mounted on the two side walls of the mounting groove 8, each extending vertically. The plug-in plate 10 is a flat plate matching the shape of the mounting groove 8, with sliding grooves on its two side edges corresponding to the guide ridges 9. The plug-in plate 10 is vertically inserted into the mounting groove 8 from the top of the mounting base 1. After insertion, the two sides of the plug-in plate 10 respectively fit against the back wall of the mounting groove 8 and the sidewalls of the guide ridges 9, thus being firmly fixed in the mounting groove 8 without wobbling back and forth or swinging left and right.

[0058] The spherical connecting rod 11 is fixedly connected to the front end face (i.e., the side facing the lens body 7) of the plug plate 10, and the end of the spherical connecting rod 11 forms a ball head. The ball-and-socket joint 12 is disposed on the back side of the lens body 7, and the interior of the ball-and-socket joint 12 is a spherical cavity that mates with the ball head. The ball head of the spherical connecting rod 11 is embedded in the ball-and-socket joint 12 to form a spherical mating pair.

[0059] The beneficial effects of this connecting assembly are as follows: the microscope body 7, through the cooperation of the ball joint 12 and the ball-and-socket joint 11, can achieve multi-angle rotation adjustment relative to the mounting base 1 (such as pitch, yaw, and even rotation), meeting the user's needs for observation from different angles. Simultaneously, since the plug-in plate 10 and the mounting slot 8 adopt an insert-type engagement, the user only needs to lift the microscope body 7 upwards to pull the plug-in plate 10 out of the mounting slot 8, achieving quick separation of the microscope body 7 from the mounting base 1; when installation is required, simply align the plug-in plate 10 with the top of the mounting slot 8, insert it, and push it all the way in. This plug-in and pull-out method facilitates the user's removal of the microscope body 7 for handheld use, cleaning, or repositioning.

[0060] Please see Figure 8 The mirror body 7 is a circular, elliptical, or square glass mirror, with a heating element 13, such as a graphene heating film or a PI heating element 13, embedded on the back (inner) side of the mirror surface. A ring-shaped lighting strip 14, which can be an LED strip, is also installed on the inner side of the mirror surface (i.e., the back edge of the mirror glass). Two touch buttons 15 are provided on the front side (i.e., the mirror surface): one for lighting and one for heating. These touch buttons 15 are electrically connected to the heating element 13 and the lighting strip 14 via a built-in controller. Users can control the heating element 13 to turn on / off and the brightness or color temperature of the lighting strip 14 by touching or pressing the touch button 15.

[0061] The beneficial effects of this structure are as follows: The heating element 13 generates heat during operation, which is conducted to the mirror glass, making the mirror temperature slightly higher than the dew point temperature of the bathroom environment. This effectively eliminates fogging formed by water vapor condensation on the mirror surface, keeping it clear. The lighting strip 14 provides facial illumination during use, especially suitable for scenarios requiring precise lighting, such as makeup application or shaving. The touch button 15 is easy to operate and waterproof, suitable for the humid environment of a bathroom.

[0062] Please see Figure 9 The mounting base 1 has a through-hole 16 near its bottom, into which a hook 17 is inserted. The hook 17 is located below the mirror body 7. The hook 17 can be a single hook or a double hook, used to hang small items such as razors, towels, and hair ties. The beneficial effects of this structure are: expanding the functionality of the mirror device, making it convenient for users to store frequently used items, and improving ease of use.

[0063] Please see Figure 9To further expand the applicability of the mirror device, this embodiment also includes an auxiliary patch. The auxiliary patch includes a substrate 18, one surface of which is polished to form a smooth plane (not separately labeled in the figure, but can be understood as the upper surface of the substrate 18), for adsorption and fixation with the suction cup 2; the other surface of the substrate 18 is provided with an adhesive layer (not separately labeled in the figure). The adhesive layer is used to adhere the auxiliary patch to a non-flat mounting surface, such as a mosaic surface, subway tiles, or textured tiles.

[0064] Preferably, the substrate 18 of the auxiliary patch is a stainless steel sheet (0.3-0.5mm thick) or an acrylic sheet, possessing sufficient rigidity and flatness. The adhesive layer is a waterproof double-sided adhesive, exhibiting excellent water resistance, high temperature resistance, and high bonding strength.

[0065] The beneficial effect of this structure is that when the user's wall surface is not suitable for direct suction cup application (e.g., the wall surface is too rough or uneven), the auxiliary patch can be firmly adhered to the wall surface using an adhesive layer. After the adhesive layer cures, the smooth surface of the auxiliary patch forms an ideal artificially flat suction interface. Then, the suction cup body 2 of the vacuum suction base is pressed onto this smooth surface and the operating part 4 is tightened, achieving the same firm suction effect as on smooth ceramic tiles. This greatly expands the applicable wall surface range of this mirror device, allowing it to be installed on almost any hard wall surface.

[0066] In summary, the mirror device provided in this embodiment integrates a leak-proof structure for the vacuum adsorption base, a pluggable ball joint connection assembly, heating and defogging functions, lighting functions, a storage function for the hook 17, and auxiliary patches. Users can flexibly choose the installation method according to their own wall conditions and needs.

[0067] This device is not only suitable for bathroom shaving mirrors, but can also be used as a makeup mirror, beauty mirror, or ordinary home decorative mirror, demonstrating good practicality in various scenarios such as hotels, rental apartments, and homes. The above description only illustrates certain exemplary embodiments of the invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of this invention.

Claims

1. A vacuum adsorption base, characterized in that, include: Mounting base (1); The suction cup assembly includes a suction cup body (2), wherein the suction cup body (2) has a disc-shaped surface (202) for adhering to the mounting base surface in the middle of one side, and an annular skirt (201) extends from the other side edge. The rotating rod (3) has one end fixedly installed at the center of the disc surface (202), and the other end passes through the mounting base (1). The operating component (4) cooperates with one end of the rotating rod (3) that protrudes from the mounting base (1) to control the suction force of the suction cup body (2); The mounting base (1) is provided with at least two concentric annular ribs (5) with gradually increasing radii on the side near the suction cup body (2). The annular ribs (5) are protruding continuous ring structures. The rotating rod (3) rotates and pulls up the center of the disc surface (202). The circular ribs (5) contact the back of the suction cup body (2) from the center outwards, and divide the vacuum area formed inside the suction cup body (2) into multiple concentric ring vacuum bands. At the same time, it prevents the skirt (201) from shrinking and deforming to prevent air leakage at the edge.

2. The vacuum adsorption base according to claim 1, characterized in that, The number of the circular ribs (5) is three, and the radius of the three circular ribs (5) gradually increases outwards.

3. A vacuum adsorption base according to claim 1 or 2, characterized in that, The cross-section of the circular rib (5) is semi-circular, and its protrusion height is not less than 0.5 mm. The protrusion height of the circular rib (5) from the inside to the outside gradually decreases, increases, or all protrusion heights are the same.

4. A vacuum adsorption base according to claim 1, characterized in that, The rotating rod (3) is a rod with external threads, the operating component (4) is an operating knob, and the operating component (4) has an annular column with threads on the inner wall on the side near the rotating rod (3). The operating component (4) is threadedly engaged with the rotating rod (3).

5. A vacuum adsorption base according to claim 1, characterized in that, The suction cup body (2) has an outer ring adhesive layer (6) on the side near the surface of the cup (202).

6. A mirror device using the vacuum adsorption base according to any one of claims 1-5, characterized in that, include: Mirror body (7); The mirror body (7) is detachably mounted on the front end face of the mounting base (1) via the connecting assembly.

7. The mirror device according to claim 6, characterized in that, The connecting assembly consists of a mounting groove (8), a guide ridge (9), a plug plate (10), a ball-shaped connecting rod (11), and a ball-and-socket joint (12). The mounting groove (8) is opened at the top of the mounting base (1), and its sidewalls penetrate the front end face of the mounting base (1). The guide ridge (9) is vertically and symmetrically installed on the two side walls of the mounting groove (8). The plug plate (10) is inserted into the mounting groove (8) from the top of the mounting base (1), and its two sides are respectively in contact with the back wall of the mounting groove (8) and the side wall of the guide ridge (9). The ball-shaped connecting rod (11) is fixedly connected to the front end face of the plug plate (10), and the ball-and-socket joint (12) is located on the back of the mirror body (7). The ball head of the ball-shaped connecting rod (11) cooperates with the ball-and-socket joint (12). The mirror body (7) can achieve multi-angle rotation adjustment relative to the mounting base (1) through the ball-shaped connecting rod (11), and can be separated from and installed from the mounting base (1) by plugging and unplugging.

8. The mirror device according to claim 6, characterized in that, A heating element (13) is embedded on the inner side of the mirror surface of the mirror body (7) to heat the mirror surface and eliminate fog. A ring-shaped lighting strip (14) is installed on the inner side of the mirror surface of the mirror body (7). A touch button (15) electrically connected to the heating element (13) and the lighting strip (14) is provided on the front of the mirror body (7). There are two touch buttons (15), one for lighting and one for heating. The mounting base (1) has a through insertion hole (16) near the bottom, and a hook (17) is inserted into the insertion hole (16). The hook (17) is located below the mirror body (7).

9. The mirror device according to claim 8, characterized in that, It also includes an auxiliary patch, which includes a substrate (18). One surface of the substrate (18) is a smooth plane for adsorbing and fixing with the suction cup body (2). The other surface of the substrate (18) is provided with an adhesive layer for pasting the auxiliary patch onto a non-flat mounting base surface. The substrate (18) of the auxiliary patch is made of stainless steel sheet or acrylic material, and the self-adhesive layer is waterproof double-sided adhesive.