Lifting and pitching combined mechanism of beauty mirror

By combining lifting and tilting mechanisms, the problem of the inability to adjust the height of the makeup mirror has been solved. This allows for adjustment of the mirror's tilt angle and height, catering to users of different heights and providing a better user experience.

CN224069931UActive Publication Date: 2026-04-03GUANGZHOU VERCON TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Most beauty mirrors on the market cannot be height adjusted, making it difficult to cater to the needs of users of different heights.

Method used

A lifting and tilting combination mechanism for a beauty mirror was designed, including an upper shell, a glass cover, a rotating shaft, a lifting assembly, and a lower shell. The tilt angle and height of the mirror can be adjusted by combining a lifting shaft, a sleeve, a damping shaft, and gears.

Benefits of technology

The mirror's tilt angle and height can be adjusted to suit users of different heights, providing a better user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of beauty makeup mirrors, and discloses a lifting and pitching combined mechanism of a beauty makeup mirror, which comprises an upper shell, a glass cover plate, a rotating shaft pressing piece, a lifting assembly and a lower shell, the lifting assembly comprises a lifting rotating shaft, a sleeve, a damping rotating shaft, a gear and a sleeve pressing piece, the glass cover plate is arranged on the upper shell, and the rotating shaft end of the lifting rotating shaft is rotatably connected with the upper shell. The sliding end of the lifting rotating shaft extends into the lower shell, the sleeves are installed at the sliding end through sleeve pressing pieces respectively, one end of the gear is rotationally connected with the sleeve pressing pieces, the other end of the gear is rotationally connected with the sliding end through the damping rotating shaft, the sliding end is in sliding connection with the rotating shaft pressing pieces and the lower shell respectively, and the gear is meshed with a gear groove of the lower shell. And the sleeve is rotationally connected with the rotating shaft pressing piece. According to the utility model, the inclination angle of the mirror surface can be adjusted, and the height of the beauty mirror can be adjusted, so that the height can be adjusted according to users with different heights.
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Description

Technical Field

[0001] This utility model relates to the technical field of makeup mirrors, and in particular to a lifting and tilting combination mechanism for a makeup mirror. Background Technology

[0002] A makeup mirror is a product with a mirrored front and a light-emitting area on the front, providing both reflection and illumination. Most makeup mirrors on the market have some angle adjustment function, but the adjustment range is generally limited, and the height of the mirror cannot be adjusted, making it difficult to cater to users of different heights. Utility Model Content

[0003] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a lifting and tilting combination mechanism for a makeup mirror.

[0004] The objective of this utility model is achieved through the following technical solution: A lifting and tilting combination mechanism for a makeup mirror includes an upper shell, a glass cover, a rotating shaft pressure member, a lifting assembly, and a lower shell. The lifting assembly includes a lifting rotating shaft, a sleeve, a damping rotating shaft, a gear, and a sleeve pressure member. The glass cover is installed on the upper shell. The rotating shaft end of the lifting rotating shaft is rotatably connected to the upper shell. The sliding end of the lifting rotating shaft extends into the lower shell. The sleeve is installed on the sliding end through the sleeve pressure member. One end of the gear is rotatably connected to the sleeve pressure member, and the other end of the gear is rotatably connected to the sliding end through the damping rotating shaft. The sliding end is slidably connected to the rotating shaft pressure member and the lower shell. The gear meshes with the gear groove of the lower shell, and the sleeve is rotatably connected to the rotating shaft pressure member.

[0005] A better option also includes an elastic pressure block and a pressure block holder, wherein the elastic pressure block is installed on the inner wall of the upper shell through the pressure block holder, the elastic pressure block and the pressure block holder form a rotating shaft mounting hole, and the rotating shaft end of the lifting shaft is rotatably connected to the rotating shaft mounting hole.

[0006] A better option is that the lifting shaft includes a spindle, a guide rod, and a slider. The shaft is connected to the slider through the guide rod. The spindle is installed in the shaft mounting hole. The guide rod passes through the upper shell and the lower shell. The two sides of the slider are respectively connected to the lower shell and the sleeve pressure piece. The damping shaft is connected to the slider.

[0007] A better option is that the wire guide bar has a through internal wire guide hole.

[0008] A preferred embodiment includes a lower front shell, a lower left shell, a lower rear shell, a lower right shell, a knob, and a top cover. The lower front shell is connected to the lower rear shell, the lower left shell is connected to both the lower front shell and the lower rear shell, the lower right shell is connected to both the lower front shell and the lower rear shell, the top cover is connected to the top of both the lower front shell and the lower right shell, the lifting shaft passes through the lower front shell and is slidably connected to it, the sleeve is rotatably connected to the lower front shell, the shaft pressure member is connected to the lower front shell, and the knob is rotatably connected to the lower front shell.

[0009] A better option also includes a top anti-collision silicone block, wherein the lower front shell and the top cover form a top anti-collision silicone mounting hole, the top anti-collision silicone block is installed in the top anti-collision silicone mounting hole, and the top anti-collision silicone block corresponds to the upper shell.

[0010] A better option also includes a bottom silicone pad, which is connected to the bottom of the lower front shell and the bottom of the lower right shell, respectively.

[0011] A better option also includes a counterweight, which is mounted on the lower shell.

[0012] A better option is that the upper shell includes an upper middle shell and an upper rear shell, the glass cover is connected to the upper rear shell through the upper middle shell, the pressure block is connected to the upper rear shell, and the lifting shaft passes through the upper rear shell.

[0013] This utility model has the following advantages and beneficial effects compared to the prior art:

[0014] This invention, through its upper shell, glass cover, rotating shaft, lifting assembly, and lower shell, allows for adjustment of the mirror's tilt angle and height, and can be adjusted according to users of different heights. Attached Figure Description

[0015] Figure 1 This is an exploded view of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0016] Figure 2 This is an exploded view of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0017] Figure 3 This is an exploded view of the lifting component of a lifting and tilting combination mechanism for a beauty mirror according to this utility model.

[0018] Figure 4 This is a schematic diagram of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0019] Figure 5This is a schematic diagram of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0020] Figure 6 This is a schematic diagram of the gears in the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0021] Figure 7 This is a schematic diagram of the gears in the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0022] Figure 8 This is a schematic diagram of the sleeve pressure component of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0023] Figure 9 This is a schematic diagram of the silicone block of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0024] Figure 10 This is a schematic diagram of the pressure block of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0025] Figure 11 This is a schematic diagram of the pressure block of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0026] Figure 12 This is a schematic diagram of the rotating shaft pressure component of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0027] Figure 13 This is a schematic diagram of the rotating shaft pressure component of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0028] Figure 14 This is a schematic diagram of the lower front shell of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0029] Figure 15 This is a schematic diagram of the lower front shell of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0030] Figure 16 This is a schematic diagram of the lower rear shell of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0031] Figure 17 This is a schematic diagram of the lower rear shell of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0032] Figure 18 This is a schematic diagram of the lower left shell of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0033] Figure 19 This is a schematic diagram of the lower left shell of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0034] Figure 20 This is a schematic diagram of the top cover of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0035] Figure 21 This is a schematic diagram of the top cover of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0036] Figure 22 This is a schematic diagram of the upper rear shell of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0037] Figure 23 This is a schematic diagram of the upper rear shell of a lifting and tilting combination mechanism for a beauty mirror according to this utility model;

[0038] Figure 24 This is a schematic diagram of the upper middle shell of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0039] Figure 25 This is a front view of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0040] Figure 26 This is a schematic diagram of the transformation process of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0041] Figure 27 This is a rear view of the lifting and tilting combination mechanism of a beauty mirror according to this utility model;

[0042] The components in the attached diagram are labeled as follows: 1-Lower front shell; 101-Knob mounting hole; 102-Indicator light-transmitting hole; 103-Front slot of top cover; 104-Sliding groove of sleeve; 105-Gear groove; 106-Top anti-collision silicone clearance position; 107-Spindle protrusion groove of lower front shell; 108-Front mounting slot of lower left and right shells; 109-Sliding groove of shaft; 2-Lower left shell; 201-Mounting buckle of lower front and rear shells; 3-Lower rear shell; 301-Speaker hole; 302-Charging port; 303-Lower left and right shell rear mounting slots; 304-Top cover rear slot; 4-Lower right shell; 5-Bottom silicone pad; 6-Counterweight; 7-Spindle clamping component; 71-Spindle alignment groove; 72-Spindle sliding groove; 73-Wire tie bridge; 8-Lifting assembly; 81-Lifting spindle; 811-Spindle; 812-Wire guide rod; 8121-Internal wire guide hole; 813-Slider; 813 1-Alignment block; 8132-Sleeve mounting position; 8133-Sleeve clamping fitting alignment pit; 8134-Damping shaft mounting position; 82-Sleeve; 83-Damping shaft; 84-Gear; 841-Damping shaft slot; 842-Gear rotating shaft; 85-Sleeve clamping fitting; 851-Sleeve clamping fitting alignment post; 852-Gear mounting hole; 86-Round head screw; 9-Top cover; 901-Top anti-collision silicone mounting position; 902-Front of top cover 903-Top cover rear hook; 10-Knob; 11-Upper rear shell; 1101-Spindle through hole; 12-Silicone block; 1201-Spindle elastic groove; 1202-Spindle protruding silicone block groove; 13-Pressing block; 1301-Spindle pressing groove; 1302-Spindle cable outlet; 14-Upper middle shell; 1401-Front adhesive surface; 15-Glass cover; 1501-Viewing window area; 16-Top anti-collision silicone block. Detailed Implementation

[0043] The utility model objective of this utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. The embodiments cannot be described one by one here, but the implementation of this utility model is not limited to the following embodiments.

[0044] like Figures 1-27As shown, a lifting and tilting combination mechanism for a makeup mirror includes an upper shell, a glass cover plate 15, a pivot clamping component 7, a counterweight block 6, a lifting assembly 8, a lower shell, a bottom silicone pad 5, and a top anti-collision silicone block 16. The lower shell includes a lower front shell 1, a lower left shell 2, a lower rear shell 3, a lower right shell 4, a knob 10, and a top cover 9. The upper shell includes an upper middle shell 14 and an upper rear shell 11. The lifting assembly 8 includes an elastic pivot block 12, a pivot block clamping component 13, a lifting pivot 81, eight sleeves 82, a damping pivot 83, a gear 84, and two sleeve clamping components 85. The glass cover plate 15 is mounted on the adhesive surface 1401 of the upper middle shell 14 using double-sided adhesive. The upper middle shell 14 is connected to the upper rear shell 11 by bolts. The pressure block 13 is bolted to the inner wall of the upper rear shell 11, and the elastic pressure block 12 is located between the pressure block 13 and the inner wall of the upper rear shell 11. The rotating shaft elastic groove 1201 of the elastic pressure block 12 and the rotating shaft pressure groove 1301 of the pressure block 13 form a rotating shaft mounting hole. The spindle 811 end of the lifting shaft 81 is rotatably installed in the rotating shaft mounting hole and extends outward from the rotating shaft through hole 1101 of the upper rear shell 11. The sliding end of the lifting shaft 81 passes through the rotating shaft, extends out of the lower front shell groove 107, and then extends into the lower shell. Eight sleeves 82 are respectively installed on the eight sleeve mounting positions 8132 on both sides of the sliding end of the lifting shaft 81. The left end of the damping shaft 83 is inserted into the damping shaft slot 841 of the gear 84, and the right end of the damping shaft 83 is installed in the damping shaft mounting position 8134 of the lifting shaft 81. The first sleeve clamping component 85 is bolted to the left side of the sliding end of the lifting shaft 81, and the gear rotating shaft 842 of the gear 84 is installed in the gear mounting hole 852 of the sleeve clamping component 85. The second sleeve clamping component 85 is bolted to the right side of the sliding end of the lifting shaft 81. The front side of the sliding end of the lifting shaft 81 is slidably connected to the rotating shaft sliding groove 109 of the lower front shell 1, the gear 84 meshes with the gear groove 105 of the lower front shell 1, and the rear side of the sliding end of the lifting shaft 81 is slidably connected to the shaft clamping component 7. The shaft clamping component 7 is bolted to the inner wall of the lower front shell 1. The rear side of the lower front shell 1 and the front side of the lower rear shell 3 are aligned and bolted together to form the lower shell inner cavity, and the counterweight 6 is installed at the bottom of the lower shell inner cavity. The bottom silicone pads 5 are respectively attached to the bottom end of the lower front shell 1 and the bottom end of the lower rear shell 3. The front end of the top cover 9 is snapped to the lower front shell 1, and the rear end of the top cover 9 is snapped to the lower rear shell 3. The top anti-collision silicone clearance 106 of the lower front shell 1 and the top anti-collision silicone mounting position 901 of the top cover 9 form a top anti-collision silicone mounting hole. The top anti-collision silicone block 16 is installed on the top anti-collision silicone mounting hole 106 and protrudes from the surface of the lower front shell 1, corresponding to the rear side of the upper rear shell 11. The front and rear ends of the lower left shell 2 are connected to the left side of the lower front shell 1 and the left side of the lower rear shell 3 respectively by snaps and bolts. The front and rear ends of the lower right shell 4 are connected to the right side of the lower front shell 1 and the right side of the lower rear shell 3 respectively by snaps and bolts.The knob 10 is rotatably mounted on the lower middle part of the lower front housing 1.

[0045] The upper shell is used to mount and fix the glass cover 15 and can rotate relative to the lifting assembly 8. The glass cover 15 is used as a mirror and has a viewing window area 1501, which functions like a mirror. The pivot clamp 7 is used to install the lifting assembly 8 in the lower shell, and has a wire tie bridge 73 on its back for fixing the wires. The counterweight 6 is used to increase the weight of the lower shell and enhance stability. The lifting assembly 8 is used to rotate relative to the upper shell to adjust the rotation angle of the glass cover 15, and to slide relative to the lower shell to adjust the height of the glass cover 15. The elastic pivot block 12 is made of silicone and is used to tightly press the upper end of the lifting pivot 81. Its friction is slightly greater than the weight of the upper shell of the makeup mirror, and a certain force is required to make it rotate and adjust the hovering angle. The pivot block clamp 13 is used to press the lifting pivot 81 tightly onto the elastic pivot block 12. The lifting pivot 81 is used to connect the upper shell and the lower shell, realizing relative rotation with the upper shell and relative height adjustment with the lower shell. The surface of the sleeve 82 is smooth, resulting in low resistance. The lifting shaft 81 can slide freely up and down, and can also rotate relative to the sleeve sliding groove 104 of the lower front shell 1 and the shaft sliding groove 72 of the shaft pressure piece 7. The sum of the resistance of the damping shaft 83 and the frictional force of the meshing gear 84 is greater than the weight borne by the lifting shaft 81. Only when a certain vertical thrust is applied can the gear 84 drive the lifting shaft 81 to move up and down; when the thrust is stopped, it can be suspended. The sleeve pressure piece 85 is used to install the gear 84 and the sleeve 82 onto the lifting shaft 81. The lower shell provides support. The bottom silicone pad 5 increases the friction between the lower shell and the contact surface. The top anti-collision silicone block 16 buffers the collision between the upper and lower shells when the upper shell rotates. The lower front shell 1 is provided with a knob 10 mounting hole 101, an indicator light transmission hole 102, a top cover front locking slot 103, a sleeve sliding front groove 104, a gear groove 105, a top anti-collision silicone clearance seat 106, a shaft protrusion groove 107, a lower front shell mounting slot 108, and a shaft sliding front groove 109. The knob 10 mounting hole 101 is used to install the knob 10 for adjusting the light brightness. The indicator light transmission hole 102 is used to install the indicator light. The top anti-collision silicone clearance seat 106 is used to install the top anti-collision silicone block 16. The shaft protrusion groove 107 is used to pass through the lifting shaft 81. The lower left and right shell front mounting slots 108 are used to snap and fix with the lower left shell 2 and lower right shell 4. The shaft sliding front groove 109 guides the slider 813. The lower left shell 2 and lower right shell 4 have the same structure and are used to enhance the connection between the lower front shell 1 and the lower rear shell 3. The lower rear shell 3 is provided with a speaker hole 301 and a charging port 302. The speaker hole 301 facilitates the sound transmission of the speaker, and the charging port 302 is used to install a power interface. The top cover 9 is used to enhance the connection strength between the lower front shell 1 and the lower rear shell 3, and to cover the top of both. The upper middle shell 14 is used to install the glass cover plate 15. The upper rear shell 11 is used to install the pressure block 13, enabling relative rotation with the lifting shaft 81.

[0046] like Figure 4 and 5 As shown, the lifting shaft 81 includes a spindle 811, a wire guide rod 812, and a slider 813. The spindle 811 is divided into a long shaft and a short shaft by the wire guide rod 812. The wire guide rod 812 has a through internal wire guide hole 8121 aligned with its axial direction. The internal wire guide hole 8121 corresponds to the shaft outlet 1302 of the pressure block 13, allowing communication between the upper and lower shells. A damping shaft mounting position 8134 is provided at the center of the left side of the slider 813. A sleeve pressure member alignment pit 8133 is provided on the upper and lower sides of the damping shaft mounting position 8134, and two sleeve mounting positions 8132 are provided on the outer side of each sleeve pressure member alignment pit 8133. Four sleeve mounting positions 8132 are also provided on the right side of the slider 813, corresponding to the four sleeve mounting positions 8132 on the left side. Two sleeve clamping alignment pits 8133 are also provided on the right side of the slider 813, corresponding to the two sleeve clamping alignment pits 8133 on the left side. Two alignment blocks 8131 are provided on both the front and rear sides of the slider 813, distributed at the four corners of the slider 813. The upper end of the wire guide rod 812 is vertically connected to the spindle 811, and the lower end of the wire guide rod 812 is inclinedly connected to the end of the slider 813. The wire guide rod 812 passes through the elastic pressure shaft block 12, and the spindle 811 is rotatably installed in the rotating shaft mounting hole formed by the elastic pressure shaft block 12 and the pressure shaft block clamping member 13. Eight sleeves 82 are respectively fitted onto eight sleeve mounting positions 8132, and the sleeve clamping post 851 of the sleeve clamping member 85 is inserted into the sleeve clamping member alignment pit 8133. The two alignment blocks 8131 at the front end of the slider 813 are slidably connected to the rotating shaft sliding groove 109 of the lower front shell 1. The two alignment blocks 8131 at the rear end of the slider 813 are slidably connected to the rotating shaft alignment groove 71 of the rotating shaft clamping member 7.

[0047] Installation instructions for lifting assembly 8: First, install the damping shaft 83 onto the damping shaft mounting position 8134 of the lifting shaft 81. Second, engage the gear 84 onto the damping shaft 83 through the damping shaft slot 841. The damping shaft 83 is a shaft with a certain damping, requiring a certain amount of force to rotate. Since the gear 84 and the damping shaft 83 are fixed together, a certain amount of force is needed to rotate the gear 84; otherwise, it will remain stationary. Third, rotate the eight sleeves 82 into the eight sleeve mounting positions 8132 on the lifting shaft 81. The fourth step is to align the sleeve clamping post 851 of the sleeve clamping component 85 with the sleeve clamping positioning pit 8133 on the lifting shaft 81, and install it on the lifting shaft 81 through the sleeve 82. Finally, use the round head screw 86 to install the sleeve clamping component 85 and the sleeve 82 on the lifting shaft 81. Due to the reserved gap during installation, the sleeve 82 can rotate smoothly.

[0048] The installation process of the lifting assembly 8 with the upper and lower shells and the principle of lifting and tilting: First, the long shaft of the spindle 811 of the lifting shaft 81 passes through the shaft of the lower front shell 1 at a certain angle and extends out of the lower front shell groove 107. The alignment block 8131 of the sliding end of the lifting shaft 81 is engaged in the sliding groove 109 of the lower front shell 1. Second, the shaft alignment groove 71 of the shaft pressure piece 7 is aligned with the alignment block 8131 on the lifting shaft 81. The shaft pressure piece 7 is pressed against the rear side of the sliding end of the lifting shaft 81, and bolts are passed through the shaft pressure piece mounting holes on the shaft pressure piece 7 and driven into the shaft pressure piece mounting studs on the lower front shell 1 to fix the sliding end of the lifting shaft 81 in the front-rear direction and enable it to move up and down. The principle behind the vertical movement of the lifting shaft 81 is as follows: the sleeve 82 is located between the sleeve sliding groove 104 of the lower front housing 1 and the shaft sliding groove 72 of the shaft pressure piece 7. Because the surface of the sleeve 82 is smooth, the resistance is low, allowing the lifting shaft 81 to slide freely up and down. The principle for adjusting the height of the lifting shaft 81 and enabling it to hover is as follows: the gear 84, which forms a fixed relationship with the damping shaft 83, meshes with the gear groove 105 of the lower front housing 1. The resistance of the damping shaft 83 and the friction of the meshing gear 84 are greater than the weight borne by the shaft assembly 8. Only when a certain vertical thrust is applied can the gear 84 drive the lifting shaft 81 to move up and down. When the thrust is stopped, hovering is achieved. The third step is to install the elastic pressure block 12 inside the shaft through hole 1101. Fourth step: Insert the long shaft of the lifting pivot 81 into the pivot hole 1101 of the upper rear shell 11 at a certain angle, and extend the pivot out of the silicone block groove 1202 on the elastic pressure block 12. The long and short shafts of the spindle 811 are pressed together on the pivot elastic pressure groove 1201 on the elastic pressure block 12. Fifth step: Press the spindle 811 of the lifting pivot 81 through the pivot elastic pressure groove 1201 with the pressure block 13, and drive the screw through the pressure block 13 and into the upper rear shell 11. At this time, the spindle 811 of the lifting pivot 81 is tightly pressed by the elastic pressure block 12. Its friction is slightly greater than the weight of the upper part of the makeup mirror. A certain force needs to be applied to make it rotate and adjust the suspension angle. At the same time, the pivot outlet 1302 of the pressure block 13 can expose the internal wire hole 8121 of the wire guide rod 812, so that the electronic wire can be led out.

[0049] Installation instructions for the makeup mirror: First, use screws to install the counterweight 6 onto the counterweight mounting studs of the lower front shell 1 through the counterweight mounting holes. Install the top anti-collision silicone at the top anti-collision silicone mounting position 901 of the top cover 9. Then, hook the front of the top cover 902 and the rear of the top cover 903 into the rear mounting slot 304 of the lower rear shell 3 and the front mounting slot 103 of the lower front shell 1, respectively. Finally, use screws to drive through the lower front shell mounting holes of the lower rear shell 3 and into the lower rear shell mounting studs of the lower front shell 1 to secure the top cover 9, lower rear shell 3, and lower front shell 1. The lower left shell 2's lower front and rear shell mounting clips 201 are inserted into the lower front shell 1's lower left and right shell front mounting slots 108 and the lower rear shell 3's lower left and right shell rear mounting slots 303. Then, screws are driven into the lower left and right shell mounting studs of the lower left shell 2, passing through the lower front shell 1's lower left and right shell front mounting holes and the lower rear shell 3's lower left and right shell rear mounting holes. The same method is used to install the lower right shell 4, fixing the lower left shell 2 and lower right shell 4 together. Then, the bottom silicone pad 5 is attached to the bottom of the lower front shell 1 and lower rear shell 3. Finally, the knob 10 is installed in the knob mounting hole 101 of the lower front shell 1. At this point, the lower half of the makeup mirror is installed. Screws are driven into the upper rear shell 11's upper middle shell mounting studs through the upper middle shell 14's upper middle shell mounting holes. Then, the glass cover 15 is attached to the front adhesive surface 1401 of the upper middle shell 14 using double-sided tape, completing the installation of the upper half of the makeup mirror.

[0050] The above-described specific embodiments are preferred embodiments of this utility model and are not intended to limit this utility model. Any other changes or equivalent substitutions made without departing from the technical solution of this utility model are included within the protection scope of this utility model.

Claims

1. A lifting and tilting combination mechanism for a makeup mirror, characterized in that: The device includes an upper shell, a glass cover (15), a rotating shaft clamping element (7), a lifting assembly (8), and a lower shell. The lifting assembly (8) includes a lifting rotating shaft (81), a sleeve (82), a damping rotating shaft (83), a gear (84), and a sleeve clamping element (85). The glass cover (15) is installed on the upper shell. The rotating shaft end of the lifting rotating shaft (81) is rotatably connected to the upper shell, and the sliding end of the lifting rotating shaft (81) extends into the lower shell. The sleeve (82) is open to the air intake. The sleeve pressure member (85) is installed on the sliding end. One end of the gear (84) is rotatably connected to the sleeve pressure member (85). The other end of the gear (84) is rotatably connected to the sliding end through the damping shaft (83). The sliding end is slidably connected to the shaft pressure member (7) and the lower shell respectively. The gear (84) meshes with the gear groove (105) of the lower shell. The sleeve (82) is rotatably connected to the shaft pressure member (7).

2. The lifting and tilting combination mechanism of a makeup mirror according to claim 1, characterized in that: It also includes an elastic pressure block (12) and a pressure block pressing component (13). The elastic pressure block (12) is installed on the inner wall of the upper shell through the pressure block pressing component (13). The elastic pressure block (12) and the pressure block pressing component (13) form a rotating shaft mounting hole. The rotating shaft end of the lifting rotating shaft (81) is rotatably connected to the rotating shaft mounting hole.

3. The lifting and tilting combination mechanism of a makeup mirror according to claim 2, characterized in that: The lifting shaft (81) includes a spindle (811), a wire guide rod (812), and a slider (813). The shaft is connected to the slider (813) through the wire guide rod (812). The spindle (811) is installed in the shaft mounting hole. The wire guide rod (812) passes through the upper shell and the lower shell. The two sides of the slider (813) are respectively connected to the lower shell and the sleeve pressure piece (85). The damping shaft (83) is connected to the slider (813).

4. The lifting and tilting combination mechanism of a makeup mirror according to claim 3, characterized in that: The wire guide rod (812) is provided with a through internal wire guide hole (8121).

5. The lifting and tilting combination mechanism of a makeup mirror according to claim 1, characterized in that: The lower shell includes a lower front shell (1), a lower left shell (2), a lower rear shell (3), a lower right shell (4), a knob (10), and a top cover (9). The lower front shell (1) is connected to the lower rear shell (3). The lower left shell (2) is connected to the lower front shell (1) and the lower rear shell (3) respectively. The lower right shell (4) is connected to the lower front shell (1) and the lower rear shell (3) respectively. The top cover (9) is connected to the top of the lower front shell (1) and the top of the lower right shell (4) respectively. The lifting shaft (81) passes through the lower front shell (1) and is slidably connected to the lower front shell (1). The sleeve (82) is rotatably connected to the lower front shell (1). The shaft pressure piece (7) is connected to the lower front shell (1). The knob (10) is rotatably connected to the lower front shell (1).

6. The lifting and tilting combination mechanism of a makeup mirror according to claim 5, characterized in that: It also includes a top anti-collision silicone block (16), the lower front shell (1) and the top cover (9) form a top anti-collision silicone mounting hole (901), the top anti-collision silicone block (16) is installed in the top anti-collision silicone mounting hole (901), and the top anti-collision silicone block (16) corresponds to the upper shell.

7. The lifting and tilting combination mechanism of a makeup mirror according to claim 5, characterized in that: It also includes a bottom silicone pad (5), which is connected to the bottom of the lower front shell (1) and the bottom of the lower right shell (4) respectively.

8. The lifting and tilting combination mechanism of a makeup mirror according to claim 1, characterized in that: It also includes a counterweight (6), which is installed on the lower shell.

9. The lifting and tilting combination mechanism of a makeup mirror according to claim 2, characterized in that: The upper shell includes an upper middle shell (14) and an upper rear shell (11). The glass cover plate (15) is connected to the upper rear shell (11) through the upper middle shell (14). The pressure block (13) is connected to the upper rear shell (11). The lifting shaft (81) passes through the upper rear shell (11).