Storable support structure of intelligent fitness mirror

By designing a retractable bracket structure, the problems of large space occupation and inconvenient installation of smart fitness mirror brackets are solved, achieving a lightweight and convenient bracket user experience and reducing costs.

CN223653602UActive Publication Date: 2025-12-12GUANGZHOU VERCON TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520877579.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-12-12
Estimated Expiration
2035-05-06

AI Technical Summary

Technical Problem

The standing smart fitness mirrors on the market require large support bases, which take up a lot of space, are costly, and are inconvenient to install and use.

Method used

A retractable support structure was designed, comprising a curved support, a support tube, a knob, and a support base. The support can be detachably connected to achieve storage and upright mode switching. The support base is connected to the support tube via the knob. The support tube is installed on the smart mirror main unit frame, and the curved support is connected to the support base.

Benefits of technology

The bracket structure is lightweight and compact when stored, reducing packaging and transportation costs. It is easy for users to install and its height is adjustable.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223653602U_ABST
    Figure CN223653602U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of intelligent body-building mirrors, and discloses a storable support structure of an intelligent body-building mirror, which comprises an intelligent mirror host frame and a storable support, and the storable support comprises a bent support, a support cylinder, a knob and a support base, the support cylinder is installed on the intelligent mirror main machine frame through a flat head screw, one end of the bent support is in clearance connection with one end of the support cylinder, the other end of the bent support is connected with the top of the support base, and when the support is in the storage state, the bent support can rotate around the support cylinder. The support base is detachably connected with the support cylinder through the rotary knob. When the support is in the vertical state, the bent support is detachably connected with the support cylinder through the rotary knob. The folding table is light and handy in shape, small in space size after being stored, capable of reducing packaging and transportation cost, simple in structure, small in installation difficulty when a user uses the folding table, and adjustable in height.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of intelligent fitness mirror, especially to a storable support structure of intelligent fitness mirror. BACKGROUND

[0002] The intelligent fitness mirror is a product with a mirror surface on the front, and a part of the middle area of the mirror surface displays fitness video information. The stand base is usually required for the vertical intelligent fitness mirror product on the market to stand up and place on the ground. The stand base generally has a large volume and occupies a large packaging space, resulting in cost waste and user installation and use being more troublesome. UTILITY MODEL CONTENT

[0003] The utility model aims at overcoming the defects of the prior art, and provides a storable support structure of intelligent fitness mirror.

[0004] The utility model discloses a storable support structure of intelligent fitness mirror, which comprises an intelligent mirror host frame and a storable support.

[0005] More preferably, the intelligent mirror host frame comprises a glass cover plate, a frame, a metal back cover and an anti-toppling safety belt, the glass cover plate is installed on the front of the metal back cover through the frame, the support barrel is symmetrically installed on the lower part of the back of the metal back cover, and the anti-toppling safety belt is installed on the upper part of the back of the metal back cover.

[0006] More preferably, the metal back cover is provided with a junction box.

[0007] More preferably, the glass cover plate is provided with a window area and a camera area, and the window area is located above the camera area.

[0008] More preferably, the support barrel comprises a sleeve part and a support adjusting part, the sleeve part and the support adjusting part are both installed on the back of the intelligent mirror host frame through flat head screws, the sleeve part and the support adjusting part are connected, the sleeve part is matched with one end of the curved support in a gap, and the support adjusting part is adjustably connected with the knob.

[0009] A better option is that the sleeve portion has an inner hole, a countersunk hole inside the sleeve, and a second through hole. The direction of the inner hole is the same as the axial direction of the sleeve portion. The countersunk hole inside the sleeve and the second through hole are both connected to the inner hole. The second through hole corresponds to the countersunk hole inside the sleeve. The inner hole is gap-connected to the bending bracket. The flat-head screw is installed in the countersunk hole inside the sleeve.

[0010] A better option is that the bracket adjustment part is provided with a first through hole and an exposed countersunk hole, the flat head screw is installed in the exposed countersunk hole, the first through hole is located on both sides of the exposed countersunk hole, and the knob is installed in the first through hole.

[0011] As a better alternative, the bracket adjustment part is further provided with a second groove, the axis of the second groove being perpendicular to the extension direction of the bracket adjustment part, and the first through hole being located in the middle of the second groove.

[0012] A better option is that the bending bracket has a bend with a bending angle of 80°.

[0013] A better option is that the bottom of the bracket base is provided with a base silicone piece.

[0014] This utility model has the following advantages and beneficial effects compared to the prior art:

[0015] This utility model features a curved bracket, bracket cylinder, knob, and bracket base, resulting in a lightweight design and small storage space, which reduces packaging and transportation costs. Its simple structure makes it easy for users to install, and its height is adjustable. Attached Figure Description

[0016] Figure 1 This is a front view of the retractable support structure (in the retracted state) of a smart fitness mirror according to this utility model.

[0017] Figure 2 This is a side view of a retractable support structure (in the retracted state) of an intelligent fitness mirror according to this utility model.

[0018] Figure 3 This is a rear view of the retractable support structure (in the retracted state) of a smart fitness mirror according to this utility model.

[0019] Figure 4 This is a front view of the retractable support structure (vertical position) of a smart fitness mirror according to this utility model.

[0020] Figure 5 This is a side view of a retractable support structure (vertical position) for an intelligent fitness mirror according to this utility model.

[0021] Figure 6Is the rear view of the storable support structure (vertical state) of the intelligent fitness mirror of the utility model;

[0022] Figure 7 Is the explosion schematic view of the storable support of the storable support structure of the intelligent fitness mirror of the utility model;

[0023] Figure 8 Is the schematic view of the support cylinder of the storable support structure of the intelligent fitness mirror of the utility model;

[0024] Figure 9 Is the front view of the support cylinder of the storable support structure of the intelligent fitness mirror of the utility model;

[0025] Figure 10 Is Figure 9 The sectional view at C;

[0026] Figure 11 Is the schematic view of the support base of the storable support structure of the intelligent fitness mirror of the utility model;

[0027] Figure 12 Is the schematic view of the knob of the storable support structure of the intelligent fitness mirror of the utility model;

[0028] Markings of components in the drawings: 1-intelligent mirror mainframe;101-glass cover plate;1011-window area;1012-camera area;102-frame;103-metal back cover;1031-loudspeaker hole;104-anti-toppling safety belt;105-wiring box;2-storable support;201-bent support;2011-bent portion;2012-blind hole threaded hole;2013-first through-hole cylindrical counterbore hole;202-support cylinder;2021-first through-hole;2022-second recess;2023-exposed counterbore hole;2024-second through-hole;2025-inner hole;2026-cylinder inner counterbore hole;2027-sleeve portion;2028-support adjusting portion;203-knob;2031-knob head portion;2032-cylindrical step;2033-knob stem portion;204-support base;2041-third recess;2042-second through-hole cylindrical counterbore hole;2043-third through-hole;205-base silica gel piece;2051-single-sided back adhesive;206-first pan head screw;3-second pan head screw;4-flat head screw;O-center of gravity point. DETAILED DESCRIPTION

[0029] The utility model purposes are further described in detail below in combination with the drawings and specific embodiments, and the embodiments cannot be described one by one here, but the implementation mode of the utility model is not limited to the following embodiments.

[0030] As Figures 1-7As shown, a storable support structure of an intelligent fitness mirror includes an intelligent mirror host frame 1 and a pair of storable supports 2. Each storable support 2 includes a curved support 201, a support cylinder 202, a knob 203, a support base 204, and two base silica gel pieces 205. The intelligent mirror host frame 1 includes a glass cover plate 101, a frame 102, a metal back cover 103, an anti-toppling safety belt 104, and a wiring box 105. The glass cover plate 101 is installed in the frame 102, the frame 102 is installed on the front surface of the metal back cover 103 through a plurality of first pan head screws 3, and the first pan head screws 3 are M3 pan head screws. The anti-toppling safety belt 104 is installed on the upper middle part of the back of the metal back cover 103, and the wiring box 105 is installed immediately below the anti-toppling safety belt 104 and between the two support cylinders 202.

[0031] The two support cylinders 202 are installed on the lower part of the intelligent mirror host frame 1 through flat head screws 4, the flat head screws 4 are M5 flat head screws, and the two support cylinders 202 are symmetrically arranged. The upper end of the curved support 201 is connected to one end of the support cylinder 202 with a gap, that is, the curved support 201 can rotate and move up and down in the support cylinder 202. A bending part 2011 is arranged between the upper end and the lower end of the curved support 201, and the bending angle of the bending part 2011 is 80°. Two second pan head screws 206 are respectively connected to blind hole threaded holes 2012 of the lower end of the curved support 201 through two second through-hole cylindrical countersunk holes of the support base 204, the blind hole threaded holes 2012 are blind hole M5 threaded holes, and the second pan head screws 206 are M5 pan head screws. The base silica gel piece 205 is installed at the bottom of the support base 204.

[0032] When the structure is in a storable state, the support base 204 is detachably connected to the support cylinder 202 through the knob 203, and the lower end of the curved support 201 is placed in a staggered manner to avoid interference between the two curved supports 201; when the structure is in a vertical state, the knob 203 adjusts the connection between the curved support 201 and the support cylinder 202 through a first through-hole cylindrical countersunk hole 2013 of the curved support 201, and the knob 203 can lock the curved support 201 at two different positions on the support cylinder 202, thereby achieving height adjustment of the intelligent mirror host frame 1.

[0033] As shown in FIG. 1, the storable support structure of the intelligent fitness mirror is in a storable state, and the support base 204 is detachably connected to the support cylinder 202 through the knob 203. Figure 7 and 11As shown, the bottom of each support base 204 is provided with two third grooves 2041, and two base silica gel pieces 205 are respectively pasted in the two third grooves 2041 through single-sided adhesive 2051. The smart mirror host frame 1 is used as a mirror, displays fitness video information, and plays sound. The glass cover plate 101 is used as a mirror surface and is provided with a window area 1011 and a camera area 1012, the window area 1011 is used to install a display screen, and the camera area 1012 is used to install a camera. The frame 102 is used to fix the glass cover plate 101 on the metal back cover 103. The metal back cover 103 is used to install the frame 102, the anti-toppling safety belt 104, and the wiring box 105, and is provided with a loudspeaker hole 1031 for facilitating the propagation of sound emitted by the loudspeaker. The anti-toppling safety belt 104 cooperates with the storable support 2 to further enhance the stability of the smart mirror host frame 1. The wiring box 105 is used to connect external power supply or telecommunication signal. The storable support 2 is used to conveniently store the smart mirror. The curved support 201 is in "L" shape structure and is used to support the smart mirror host frame 1, so that the smart mirror host frame 1 can be set at an angle, thereby realizing the front inclination effect of the smart fitness mirror. The support cylinder 202 is used to fix the curved support 201. The knob 203 is used to lock the connection between the support cylinder 202 and the support base 204 and the curved support 201 respectively. The support base 204 is used to increase the stress area of the curved support 201 and the ground, thereby improving the stability of the smart mirror host frame 1 in the vertical state. The base silica gel piece 205 has a certain elasticity and is used to enhance the friction between the support base 204 and the ground, thereby playing a role of anti-skid, and also avoiding the contact between the support base 204 and the ground to cause the ground to be scratched.

[0034] As Figures 8-10As shown, the bracket cylinder 202 includes a sleeve part 2027 and a bracket adjusting part 2028. The sleeve part 2027 and the bracket adjusting part 2028 are connected, and the axial direction of the sleeve part 2027 is the same as that of the bracket adjusting part 2028. The sleeve part 2027 is a hollow cylinder plus a flat bottom structure, and an inner hole 2025 is arranged in the middle part. The diameter of the inner hole 2025 is slightly larger than the outer diameter of the curved bracket 201. A second through hole 2024 is arranged on the upward hole wall of the inner hole 2025, and a cylinder inner countersunk hole 2026 is arranged directly below the second through hole 2024. The second through hole 2024 can be passed through by a screwdriver to tighten the flat head screw 4. The M5 flat head screw 4 fixes the sleeve part 2027 to the back of the metal back cover 103 through the cylinder inner countersunk hole 2026. An exposed countersunk hole 2023 is arranged at the end of the bracket adjusting part 2028 away from the sleeve part 2027, and the flat head screw 4 fixes the bracket adjusting part 2028 to the back of the metal back cover 103 through the exposed countersunk hole 2023. A first through hole 2021 and a second groove 2022 are arranged on both sides of the exposed countersunk hole 2023, respectively. The extension direction of the second groove 2022 is perpendicular to the axial direction of the bracket adjusting part 2028, and the first through hole 2021 is located at the middle position of the second groove 2022. The second groove 2022 plays an auxiliary alignment role of the knob 203 and the first through hole 2021: when the curved bracket 201 is inserted into the bracket cylinder 202, the first through hole 2021 is often blocked by the curved bracket 201, and the second groove 2022 is exposed. By observing the position of the second groove 2022, the user can locate the position of the first through hole 2021, and smoothly insert the knob 203 into the first through hole 2021 of the bracket cylinder 202. The first through hole 2021 is used to lock the bracket base 204 or the curved bracket 201 through the knob 203, and to realize the relative position adjustment of the bracket base 204 and the curved bracket 201.

[0035] As shown, Figure 12 The knob 203 includes a knob head part 2031, a columnar step 2032 and a knob rod part 2033 connected in sequence. The front end of the knob rod part 2033 is an M5 screw thread, and the rear end is a light rod. The outer diameter of the columnar step 2032 is slightly smaller than the columnar countersunk inner diameter of the first through hole columnar countersunk hole 2013 in the middle part of the curved bracket 201. When the knob 203 is locked with the curved bracket 201, the step front surface of the columnar step 2032 of the knob 203 is in close contact with the columnar countersunk bottom surface of the through hole columnar countersunk hole 2012 of the curved bracket 201, so that the curved bracket 201 can be stably fixed. The side surface of the knob head part 2031 has a net pattern, which is beneficial to increase the friction and facilitate the user operation.

[0036] As shown, Figure 5As shown, the front mirror of the smart mirror main unit frame 1 has a certain tilt angle because users need to look down at the display area when using it. From an ergonomic perspective, the display area should be as perpendicular as possible to the user's line of sight. Taking this smart fitness mirror as an example, its tilt angle is 80°. Therefore, the retractable support frame 2 is designed as an 80° L-shape. The weight of the smart mirror main unit frame 1 varies depending on its size; through software simulation, the center of gravity of the main body can be calculated to be located at... Figure 5 The center of gravity O shown should be perpendicular to the ground, and this perpendicular line should fall precisely in the center of the retractable support 2. The force applied by a user clicking the touchscreen normally does not exceed 5N. The silicone base 205 of the retractable support 2 has a high coefficient of friction, which can completely absorb this impact force, preventing the smart fitness mirror from shifting significantly. When a user accidentally pushes the smart fitness mirror, the angle between the perpendicular line from the center of gravity O of the main body to the rear end of the retractable support 2 is 8°. Using the rear end of the support as a fulcrum, if the top of the smart fitness mirror is pushed backward by 8 degrees, the top needs to shift approximately 180-200mm before it tilts over.

[0037] 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 foldable stand structure for a smart fitness mirror, characterized by: The application relates to a smart mirror host frame (1) and a storable support (2), the storable support (2) comprising a curved support (201), a support cylinder (202), a knob (203) and a support base (204), the support cylinder (202) being installed on the smart mirror host frame (1) through a flat head screw (4), one end of the curved support (201) being connected to one end of the support cylinder (202) in a clearance mode, the other end of the curved support (201) being connected to the top of the support base (204), the support base (204) being detachably connected to the support cylinder (202) through the knob (203) when being in a storable state, and the curved support (201) being detachably connected to the support cylinder (202) through the knob (203) when being in a vertical state.

2. The storable stand structure for a smart fitness mirror according to claim 1, wherein: The smart mirror host frame (1) comprises a glass cover plate (101), a frame (102), a metal back cover (103) and an anti-toppling safety belt (104), the glass cover plate (101) being installed on the front surface of the metal back cover (103) through the frame (102), the support cylinder (202) being symmetrically installed on the lower part of the back surface of the metal back cover (103), and the anti-toppling safety belt (104) being installed on the upper part of the back surface of the metal back cover (103).

3. The storable stand structure for a smart fitness mirror of claim 2, wherein: The metal back cover (103) is provided with a junction box (105).

4. The portable stand structure of the smart fitness mirror according to claim 2, wherein: The glass cover plate (101) is provided with a window area (1011) and a camera area (1012), and the window area (1011) is located above the camera area (1012).

5. The portable stand for smart fitness mirror as claimed in claim 1 wherein: The support cylinder (202) comprises a sleeve part (2027) and a support adjusting part (2028), the sleeve part (2027) and the support adjusting part (2028) are both installed on the back surface of the smart mirror host frame (1) through flat head screws (4), the sleeve part (2027) and the support adjusting part (2028) are connected, the sleeve part (2027) is matched with one end of the curved support (201) in a clearance mode, and the support adjusting part (2028) is adjustably connected with the knob (203).

6. The storable stand structure for a smart fitness mirror of claim 5, wherein: The sleeve part (2027) is provided with an inner hole (2025), a cylinder inner counterbore (2026) and a second through hole (2024), the direction of the inner hole (2025) is the same as the axial direction of the sleeve part (2027), the cylinder inner counterbore (2026) and the second through hole (2024) are both communicated with the inner hole (2025), the second through hole (2024) corresponds to the cylinder inner counterbore (2026), the inner hole (2025) is connected to the curved support (201) in a clearance mode, and the flat head screw (4) is installed on the cylinder inner counterbore (2026).

7. The storable stand structure for a smart fitness mirror of claim 5, wherein: The support adjusting part (2028) is provided with a first through hole (2021) and an exposed countersunk hole (2023), the grub screw (4) is installed on the exposed countersunk hole (2023), the first through hole (2021) is located on both sides of the exposed countersunk hole (2023), and the knob (203) is installed on the first through hole (2021).

8. The storable stand structure for a smart fitness mirror of claim 7, wherein: The support adjusting part (2028) is further provided with a second groove (2022), the axial direction of the second groove (2022) is perpendicular to the extension direction of the support adjusting part (2028), and the first through hole (2021) is located in the middle of the second groove (2022).

9. The portable stand for smart fitness mirror as claimed in claim 1 wherein: The curved support (201) is provided with a bending part (2011), and the bending angle of the bending part (2011) is 80°.

10. The portable stand structure for the smart fitness mirror according to claim 1, wherein: The bottom of the support base (204) is provided with a base silica gel piece (205).