Foldable cosmetic mirror

By designing a foldable makeup mirror, the problems of large size and inconvenience of use of makeup mirrors are solved, and portability and flexible adjustment of angle and magnification are achieved to meet diverse usage needs.

CN224165893UActive Publication Date: 2026-04-28DONGGUAN YONGLI PLASTIC ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN YONGLI PLASTIC ELECTRONICS CO LTD
Filing Date
2025-05-28
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing makeup mirrors are bulky and inconvenient to carry, and users need to adjust the distance and angle between their body and the mirror, making them inconvenient to use.

Method used

Design a foldable makeup mirror by folding and assembling the base, first shell, and second shell into a shell shape, and setting a foldable support and an adjustable magnifying lens to adjust the mirror angle and magnification.

Benefits of technology

The size of the makeup mirror has been reduced, improving portability, and the mirror angle and magnification can be adjusted as needed to meet different usage requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a foldable mirror. The foldable cosmetic mirror comprises a shell-shaped base, a first shell and a shell-shaped second shell, the shell-shaped base is provided with an installation groove and a support, a first connecting boss is arranged in the installation groove, and the support is connected with the edge of the connecting boss in a turnover mode. The first shell is connected with the support in a turnover mode, a first installation cavity is formed in the first shell, a main lens and a lamp strip are installed in the first installation cavity, and the lamp strip is distributed along the edge of the main lens. The shell-shaped second shell is hinged to the first shell, a second installation cavity is formed in the first shell, and a magnifying lens is installed in the second installation cavity. According to the foldable cosmetic mirror, the base, the first shell and the second shell are assembled in a foldable mode, when the cosmetic mirror is folded into a shell shape, the occupied space of the foldable cosmetic mirror is greatly reduced, and the portability of the cosmetic mirror is improved.
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Description

Technical Field

[0001] This utility model relates to the field of mirrors, and more particularly to a foldable makeup mirror. Background Technology

[0002] Makeup mirrors are common household items. Apart from portable types, most makeup mirrors are fixedly installed on vertical surfaces such as walls or furniture surfaces. Because the mirror's position is fixed, it requires a large flat surface for installation, and users need to manually adjust the distance and angle between their body and the mirror, which is quite inconvenient.

[0003] The above-mentioned makeup mirrors have several disadvantages: 1. Makeup mirrors are large and inconvenient to carry; 2. You need to adjust the distance and angle between your body and the mirror to see the place you want to see. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the prior art. This utility model provides a foldable makeup mirror, which folds and assembles the base, the first shell and the second shell. When the makeup mirror is folded into a shell shape, the volume occupied by the foldable makeup mirror is greatly reduced, and the portability of the makeup mirror is improved.

[0005] Accordingly, this utility model proposes a foldable makeup mirror, which includes: a shell-shaped base, a first outer shell, and a shell-shaped second outer shell;

[0006] The shell-shaped base is provided with a mounting groove and a bracket. The mounting groove has a first connecting boss, and the bracket can be folded and connected to the edge of the connecting boss.

[0007] The first housing is foldably connected to the bracket, and the first housing has a first mounting cavity, in which a main lens and a light strip are installed, and the light strip is distributed along the edge of the main lens;

[0008] The shell-shaped second outer shell is hinged to the first outer shell, and the first outer shell has a second mounting cavity in which a magnifying lens is installed.

[0009] Preferably, a touch switch circuit board is provided in the first mounting cavity, and the touch switch circuit board is electrically connected to the lamp.

[0010] The touch switch circuit board is provided with two sensing springs. One end of each sensing spring is connected to the touch switch, and the other end of the sensing spring is connected to the main lens.

[0011] Preferably, the first mounting cavity is further provided with a power supply and a plurality of L-shaped fixing bosses, the plurality of fixing bosses being distributed around the power supply and the power supply abutting against the plurality of L-shaped fixing bosses.

[0012] Preferably, a second connecting boss is provided on the surface of the first housing, and the first housing is rotatably connected to the bracket based on the second connecting boss.

[0013] Preferably, a charging port is provided on the side wall of the first housing. The charging port is a TYPE-C charging port and is electrically connected to the power source.

[0014] Preferably, the first outer shell extends outward to form two hollow mounting portions, and an installation space is reserved between the two hollow mounting portions.

[0015] Preferably, the shell-shaped second outer shell has a connecting portion in the area corresponding to the installation space, and the two ends of the connecting portion extend outward to form connecting posts. The connecting posts are rotatably inserted into the corresponding hollow installation portion, and the connecting portion is rotatably installed in the installation space.

[0016] Preferably, the middle region of the bracket is recessed to form an elliptical groove, and the elliptical groove forms a rounded corner with the end face of the bracket.

[0017] Preferably, the side recesses of the first outer shell form multiple curved grooves, and the multiple curved grooves are distributed in a circumferential array with the center of the first outer shell as the reference.

[0018] Preferably, the magnifying lens is a concave mirror.

[0019] The beneficial effects of this utility model are:

[0020] This invention folds and assembles the base, first outer shell, and second outer shell in a foldable manner. When the makeup mirror is folded into a shell shape, it greatly reduces the volume occupied by the foldable makeup mirror and improves its portability. This invention also includes a support bracket, which is foldable and connected to the first connecting protrusion. The support bracket can be folded around the connection point between the support bracket and the first connecting protrusion to change the position of the support bracket, thereby changing the position of the first outer shell, so that the main lens meets the user's viewing angle requirements. This invention also includes a magnifying lens inside the second outer shell. The curvature of the magnifying lens can be adjusted according to different models to adjust the magnification, allowing for clearer observation of the areas to be observed. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0022] Figure 1 This is a schematic diagram of the first unfolded structure of the foldable makeup mirror in this utility model;

[0023] Figure 2 This is a schematic diagram of the second unfolded structure of the foldable makeup mirror in this utility model;

[0024] Figure 3 This is a schematic diagram of the closed structure of the foldable makeup mirror in this utility model;

[0025] Figure 4 This is a schematic diagram of the base structure in this utility model;

[0026] Figure 5 This is a schematic diagram of the structure of the bracket in this utility model;

[0027] Figure 6 This is an exploded view of the first outer shell of this utility model;

[0028] Figure 7 This is a schematic diagram of the structure of the second outer shell in this utility model.

[0029] In the attached diagram: 1. Base; 11. Mounting groove; 12. First connecting boss; 13. Bracket; 131. Elliptical groove; 2. First outer shell; 20. First mounting cavity; 201. Touch switch circuit board; 202. First sensing spring; 203. Second sensing spring; 204. Power supply; 205. L-shaped fixing boss; 21. Main lens; 211. First control area; 212. Second control area; 22. Light strip; 23. Second connecting boss; 24. Charging port; 25. Hollow mounting part; 26. Curved groove; 3. Second outer shell; 30. Second mounting cavity; 31. Magnifying lens; 32. Connecting part; 321. Connecting post. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0031] Figure 1 This diagram shows the first unfolded structure of the foldable makeup mirror of this invention. Figure 2 This diagram shows the second unfolded structure of the foldable makeup mirror of this invention. Figure 3 This diagram shows the closed structure of the foldable makeup mirror of this invention. Figure 4 A schematic diagram of the base structure in this utility model is shown. Figure 5 A schematic diagram of the support structure in this utility model is shown. Figure 6 An exploded view of the first outer shell of this invention is shown. Figure 7The diagram shows the structure of the second outer shell of this invention. The foldable cosmetic mirror includes: a shell-shaped base 1, a first outer shell 2, and a shell-shaped second outer shell 3. The shell-shaped base 1 is provided with a mounting groove 11 and a bracket 13. The mounting groove 11 has a first connecting boss 12, and the bracket 13 is foldably connected to the edge of the connecting boss. The first outer shell 2 is foldably connected to the bracket 13, and the first outer shell 2 has a first mounting cavity 20. A main lens 21 and a light strip 22 are installed in the first mounting cavity 20, and the light strip 22 is distributed along the edge of the main lens 21. The shell-shaped second outer shell 3 is hinged to the first outer shell 2, and the first outer shell 2 has a second mounting cavity 30, in which a magnifying lens 31 is installed. In this embodiment, the shell-shaped base 1, the first outer shell 2, and the shell-shaped second outer shell 3 are folded together to form a shell-shaped foldable makeup mirror. The mounting groove 11 is used to accommodate the bracket 13. When the three are folded into a shell shape, the bracket 13 is placed in the mounting groove 11, and the folding shape greatly reduces the volume occupied by the foldable makeup mirror, improving its portability. The first connecting protrusion 12 is provided with a corresponding first connecting hole. Connecting rods are provided on both ends of the bracket 13, and either end of the connecting rod connects the two sides of the bracket 13. The connecting rod at one end of the bracket 13 is in the first connecting hole and passes through the first connecting hole, so that one end of the bracket 13 can be folded and embedded in the first connecting protrusion 12. This facilitates the bracket 13 to fold around the connection point between the bracket 13 and the first connecting protrusion 12, thereby changing the position of the bracket 13 and thus changing the position of the first outer shell 2, so that the main lens 21 meets the user's mirror viewing angle requirements. The light strip 22 is distributed along the edge of the main lens 21, reflecting light from multiple angles to the face, achieving uniform and soft illumination. This avoids shadows cast by direct light sources on the face or object surfaces, facilitating a clear view of the image reflected through the main lens 21. The main lens 21 is a plane mirror, directly reflecting the user's position. The magnifying lens 31 can be adjusted in curvature according to different models to adjust its magnification, allowing for clearer observation of the desired area.

[0032] It should be noted that two control circle areas are provided on the bottom area of ​​the main lens 21. These two control circle areas are divided into a first control area and a second control area, which are symmetrically distributed with respect to the center of the main lens 21. The first control area controls the on / off state of the light strip 22, while the second control area controls the brightness output of the light strip 22. The brightness output of the light strip 22 has three levels, which can be adjusted according to different usage scenarios.

[0033] Furthermore, a touch switch circuit board 201 is disposed in the first mounting cavity 20, and the touch switch circuit board 201 is electrically connected to the light strip 22. Two sensing springs are disposed on the touch switch circuit board 201, one end of each sensing spring being connected to the touch switch, and the other end being connected to the main lens 21. In this embodiment, the two sensing springs are a first sensing spring 202 and a second sensing spring 203. The ends of both sensing springs near the touch switch circuit board 201 are connected to the circuit board. The other end of the first sensing spring 202 is connected to the area corresponding to the first control area in the main lens 21, and the other end of the second sensing spring 203 is connected to the area corresponding to the second control area in the main lens 21. When the user touches and applies pressure to the corresponding first control area, the first sensing spring 202 deforms, thereby triggering the sensor on the touch switch circuit board 201 to generate a corresponding first signal. The touch switch circuit board 201 then performs the next operation based on this signal, supplying current to the light strip 22 to make the light strip 22 emit light. When the first control area is pressed again, the sensor on the touch switch circuit board 201 generates a corresponding second signal. The touch switch circuit board 201 then performs the next operation based on this signal, stopping the current supply to the light strip 22 so that the light strip 22 stops emitting light.

[0034] Similarly, when a user touches and applies pressure to the corresponding second control area, the second sensing spring 203 deforms, triggering the sensor on the touch switch circuit board 201 to generate a corresponding third signal. The touch switch circuit board 201 then performs the next operation based on this signal, supplying different magnitudes of current to the light strip 22, causing the light strip 22 to adjust its brightness according to the current magnitude. When the user touches and applies pressure to the corresponding second control area again, the second sensing spring 203 deforms, triggering the sensor on the touch switch circuit board 201 to generate a corresponding third signal. The touch switch circuit board 201 then performs the next operation based on this signal, supplying a different magnitude of current to the light strip 22, causing the light strip 22 to adjust its brightness according to the current magnitude.

[0035] It should be noted that when the first control area is pressed to switch the light strip 22 from the off state to the on state, the light strip 22 is at the first brightness level, meaning the current flowing through the light strip 22 is at its minimum. Then, pressing the second control area adjusts the brightness of the light strip 22, placing it at the second brightness level, where the current flowing through the light strip 22 is greater than that at the first brightness level. Pressing the second control area again adjusts the brightness of the light strip 22, placing it at the third brightness level, where the current flowing through the light strip 22 is at its maximum. When the light strip 22 is at the third brightness level, pressing the second control area again returns the light strip 22 to the first brightness level, and this cycle repeats.

[0036] Furthermore, the first mounting cavity 20 is also provided with a power supply 204 and a plurality of L-shaped fixing bosses 205. The plurality of fixing bosses are distributed around the power supply 204, and the power supply 204 abuts against the plurality of L-shaped fixing bosses 205. In this embodiment, the first mounting cavity 20 is provided with a square power supply 204 and two L-shaped fixing bosses 205. The two L-shaped fixing bosses 205 correspond to two opposite corners of the four corners of the power supply 204. The two diagonally distributed L-shaped fixing bosses 205 can more effectively disperse the stress generated by the power supply 204 during operation, avoid structural damage or deformation caused by stress concentration due to the gravity of the power supply 204, and help the L-shaped fixing platform maintain its shape under long-term stress, thereby fixing the corresponding power supply 204 in the designated position.

[0037] Furthermore, a second connecting boss 23 is provided on the surface of the first outer shell 2, and the first outer shell 2 is rotatably connected to the bracket 13 based on the second connecting boss 23. A second connecting hole is provided on the second connecting boss 23, and the connecting rod at the other end of the bracket 13 is in the second connecting hole and passes through the second connecting hole, so that one end of the bracket 13 can be folded and embedded in the second connecting boss 23. This facilitates the first outer shell 2 to fold around the connection point between the bracket 13 and the second connecting boss 23 as the center, thereby changing the relative position of the first outer shell 2 and the bracket 13. This is beneficial for adjusting the position and orientation of the first outer shell 2, so that the main lens 21 meets the user's mirror angle requirements.

[0038] Furthermore, a charging port 24 is provided on the side wall of the first housing 2. The charging port 24 is a TYPE-C charging port 24, which is electrically connected to the power supply 204. The TYPE-C charging port 24 features reversible insertion, high-speed data transmission, and efficient charging, meeting the diverse charging interface requirements of modern electronic devices. The charging port 24 is electrically connected to the charging circuit in the power supply 204 through soldering or plugging, ensuring stable current transmission during charging and guaranteeing that the charging port 24 can charge the power supply 204 with sufficient power.

[0039] Furthermore, the first outer shell 2 extends outward to form two hollow mounting portions 25, with a reserved installation space between the two hollow mounting portions 25. Each hollow mounting portion 25 is a hollow cylinder, with one side integrally formed with the first outer shell 2. The hollow cylinder is used to connect the second outer shell 3, allowing the corresponding position of the second outer shell 3 to be inserted into the hollow cylinder, achieving adjustable rotation and reliable connection between the second outer shell 3 and the first outer shell 2. The integral forming of the hollow mounting portion 25 with the first outer shell ensures the connection strength between the hollow mounting portion 25 and the first outer shell 2, preventing the hollow mounting portion 25 from disconnecting from the first outer shell 2 during use, thereby strengthening the connection strength between the first outer shell 2 and the second outer shell 3.

[0040] Furthermore, the shell-shaped second outer shell 3 has a connecting portion 32 in the area corresponding to the installation space. Both ends of the connecting portion 32 extend outward to form connecting posts 321. The connecting posts 321 are rotatably inserted into the corresponding hollow installation portions 25, and the connecting portion 32 is rotatably installed in the installation space. The connecting portion 32 is installed into the installation space, with a pre-set gap between its two sides and the end faces of the two hollow installation portions 25. This prevents excessive friction between the connecting portion 32 and the hollow installation portions 25 during rotation, reducing the difficulty of folding the first outer shell 2 and the second outer shell 3. The connecting posts 321 at both ends are inserted into the hollow parts of the hollow installation portions 25, and the surface of any connecting post 321 abuts against the inner wall of the hollow installation portion 25. The connecting posts 321 and the hollow installation portions 25 mutually constrain each other, preventing the first outer shell 2 and the second outer shell 3 from detaching during use, thus maintaining the shape of the cosmetic mirror.

[0041] Furthermore, the middle region of the bracket 13 is recessed to form an elliptical groove 131, which forms a rounded corner with the end face of the bracket 13. In this embodiment, the elliptical groove 131 provides a point of leverage to help the user fold the bracket 13 out of the mounting groove 11, making it convenient. The elliptical groove 131 also improves the load-bearing capacity of the bracket 13. The design of the elliptical groove 131 can increase the moment of inertia of the structure's cross-section to a certain extent, thereby improving the structure's bending resistance. When the structure is subjected to bending forces, the groove area can provide additional support, reducing structural deformation and strengthening the structural strength of the bracket 13. The rounded corner between the elliptical groove 131 and the end face of the bracket 13 avoids stress concentration caused by sharp angles, allowing stress to be distributed more evenly in the structure, further enhancing the structural strength of the bracket 13.

[0042] Furthermore, the side recesses of the first outer shell 2 form multiple curved grooves 26, which are arranged in a circumferential array with the center of the first outer shell 2 as a reference. The first outer shell 2 has more than twenty curved grooves 26, which match the shell-shaped base 1 and the shell-shaped second outer shell 3. The multiple curved grooves 26 are arrayed on the side of the first outer shell 2, forming multiple fan-shaped arc surfaces on the side. When the user takes the foldable makeup mirror, their fingers are correspondingly positioned within the curved grooves 26 between two adjacent fan-shaped arc surfaces, increasing the contact area between the fingers and the makeup mirror, thereby increasing the friction between the fingers and the makeup mirror and reducing the risk of the makeup mirror falling from the user's hand.

[0043] In summary, this invention folds and assembles the base, first outer shell, and second outer shell together, significantly reducing the volume of the foldable makeup mirror when folded into a shell shape, thus improving its portability. The invention also includes a support bracket that folds into the first connecting protrusion, allowing the bracket to fold around the connection point with the first connecting protrusion to change its position, thereby altering the position of the first outer shell and ensuring the main lens meets the user's viewing angle requirements. Furthermore, the invention includes a magnifying lens inside the second outer shell, whose curvature can be adjusted according to different models to change the magnification, allowing for clearer observation of desired areas.

[0044] Furthermore, the above description provides a detailed overview of the foldable cosmetic mirror provided by the embodiments of this utility model. Specific examples have been used to illustrate the principles and implementation methods of this utility model. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this utility model. Therefore, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A foldable makeup mirror, characterized in that, The foldable makeup mirror includes: a shell-shaped base, a first outer shell, and a shell-shaped second outer shell; The shell-shaped base is provided with a mounting groove and a bracket. The mounting groove has a first connecting boss, and the bracket can be folded and connected to the first connecting boss. The first housing is foldably connected to the bracket, and the first housing has a first mounting cavity, in which a main lens and a light strip are installed, and the light strip is distributed along the edge of the main lens; The shell-shaped second outer shell is hinged to the first outer shell, and the first outer shell has a second mounting cavity in which a magnifying lens is installed.

2. The foldable makeup mirror according to claim 1, characterized in that, A touch switch circuit board is provided in the first mounting cavity, and the touch switch circuit board is electrically connected to the lamp. The touch switch circuit board is provided with two sensing springs. One end of each sensing spring is connected to the touch switch, and the other end of the sensing spring is connected to the main lens.

3. The foldable makeup mirror according to claim 1, characterized in that, The first mounting cavity is also provided with a power supply and multiple L-shaped fixing bosses. The multiple fixing bosses are distributed around the power supply, and the power supply abuts against the multiple L-shaped fixing bosses.

4. The foldable makeup mirror according to claim 2, characterized in that, A second connecting boss is provided on the surface of the first housing, and the first housing is rotatably connected to the bracket based on the second connecting boss.

5. The foldable makeup mirror according to claim 3, characterized in that, A charging port is provided on the side wall of the first housing. The charging port is a TYPE-C charging port and is electrically connected to the power source.

6. The foldable makeup mirror according to claim 1, characterized in that, The first outer shell extends outward to form two hollow mounting parts, and an installation space is reserved between the two hollow mounting parts.

7. The foldable makeup mirror according to claim 6, characterized in that, The shell-shaped second outer shell has a connecting portion in the area corresponding to the installation space. The two ends of the connecting portion extend outward to form connecting posts. The connecting posts are rotatably inserted into the corresponding hollow installation portion, and the connecting portion is rotatably installed in the installation space.

8. The foldable makeup mirror according to claim 1, characterized in that, The middle area of ​​the bracket is recessed to form an elliptical groove, and the elliptical groove forms a rounded corner with the end face of the bracket.

9. The foldable makeup mirror according to claim 1, characterized in that, The side recesses of the first outer shell form multiple curved grooves, which are distributed in a circular array with the center of the first outer shell as the reference.

10. The foldable makeup mirror according to claim 1, characterized in that, The magnifying lens is a concave mirror.