Mounting bracket and glass assembly

The rotatable serrated unit and detachable connection design solve the problem of the inability to adjust the angle or height of the light shield, achieving high applicability of the mounting bracket and simplified operation, and improving the optical effect.

CN120972331APending Publication Date: 2025-11-18FUYAO GLASS IND GROUP CO LTD
View PDF 8 Cites 0 Cited by

Patent Information

Application Number
CN202511283958.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-09
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

The light shields of the mounting brackets in the related technologies cannot be adjusted in angle or height, making them unsuitable for different design requirements and having poor applicability.

Method used

Design a mounting bracket whose serrated unit can rotate around its length. The angle of the serrated unit can be adjusted to adapt to the optical path requirements of different incident light rays. The serrated unit is detachably connected to facilitate painting and mold adjustment.

Benefits of technology

It improves the applicability of the mounting bracket, reduces development costs, avoids paint defects, enhances optical effects, and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120972331A_ABST
    Figure CN120972331A_ABST
Patent Text Reader

Abstract

The invention relates to a mounting bracket and a glass assembly, which can solve the problems that the angle or height of sawteeth of a light shield of a mounting bracket in the related technology cannot be adjusted generally, so that the mounting bracket cannot adapt to and adjust the light path of incident light according to design requirements, and the applicability is poorer, the mounting bracket comprises a bracket body and a sawtooth assembly, the support body comprises a mounting part, the sawtooth assembly comprises a plurality of sawtooth single bodies, the sawtooth single bodies are arranged side by side in the thickness direction of the sawtooth single bodies and connected to the mounting part, and the sawtooth single bodies can rotate relative to the mounting part in the length extension direction of the sawtooth single bodies. The rotation angle of the sawtooth single body relative to the mounting part can be adjusted according to the design requirement, then the incident angle of the incident light can be adjusted, the light path requirement of a user for the incident light is met, the mounting support can be suitable for different scenes, and the applicability of the mounting support is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of glass technology, and in particular to a mounting bracket and glass assembly. Background Technology

[0002] With the increasing application of optical components in vehicles, the need for fixed mounting of these components on glass has also attracted attention. Optical components cannot be directly fixed to glass; they generally require mounting brackets to adhere to the glass. These mounting brackets are equipped with light shields to block stray light and improve the imaging quality of the optical components.

[0003] In related technologies, light shields are generally provided with a sawtooth surface to adjust the optical path of incident light in order to optimize imaging.

[0004] However, the serrations of the light shields on the mounting brackets in related technologies generally cannot be adjusted in angle or height, making it impossible to adapt to the light path of incident light according to design requirements, resulting in poor applicability. Summary of the Invention

[0005] Therefore, it is necessary to provide a mounting bracket and glass assembly to address the problem that the serrations of the light shield of the mounting bracket in the related technology generally cannot be adjusted in angle or height, resulting in its inability to adapt to the optical path of incident light according to design requirements and its poor applicability.

[0006] According to one aspect of this application, a mounting bracket is provided, the mounting bracket comprising:

[0007] The bracket body includes a mounting section;

[0008] A sawtooth assembly comprising a plurality of sawtooth units arranged side-by-side along each other in their thickness direction and connected to the mounting portion, wherein each sawtooth unit is rotatable relative to the mounting portion about its length extension direction.

[0009] The aforementioned mounting bracket, by allowing the sawtooth unit to rotate relative to the mounting part about its length extension direction L, enables the sawtooth unit to adjust its rotation angle relative to the mounting part according to design requirements, thereby adjusting the incident angle of the incident light to meet the user's optical path requirements for the incident light. Thus, the aforementioned mounting bracket can be applied to scenarios with different incident light optical path requirements, improving the applicability of the mounting bracket.

[0010] In one embodiment, the serrated unit is detachably connected to the mounting portion.

[0011] In one embodiment, the mounting bracket includes an adjustment member, and each of the sawtooth units is connected to the adjustment member, which is used to drive each of the sawtooth units to rotate together.

[0012] In one embodiment, the adjusting member includes a connecting rod, and the serrated unit includes a connecting portion, the connecting rod being rotatably connected to the connecting portion of each of the serrated units.

[0013] In one embodiment, the connecting part is detachably connected to the connecting rod.

[0014] In one embodiment, the adjusting member includes a connecting seat and a rocker arm. The connecting seat is connected to the bracket body, one end of the rocker arm is rotatably connected to the connecting seat, and the other end of the rocker arm is rotatably connected to one end of the connecting rod.

[0015] In one embodiment, the rocker arm has a rotation angle range relative to the connecting seat, the rotation angle range being configured from -30° to +30°.

[0016] In one embodiment, the connecting seat is connected to a damping element, which is connected to one end of the rocker arm.

[0017] In one embodiment, the mounting bracket is provided with a limiting part for limiting the rotation angle of the rocker arm relative to the connecting seat.

[0018] In one embodiment, the sawtooth unit has an outer peripheral wall surface extending about its length, the outer peripheral wall surface being configured to have a teardrop-shaped cross-section in the thickness direction of the sawtooth unit, such that the outer peripheral wall surface includes interconnected circular outer peripheral surfaces and conical outer peripheral surfaces extending about the length of the sawtooth unit.

[0019] In one embodiment, two adjacent sawtooth units are arranged tangentially through their respective circular outer peripheral surfaces.

[0020] In one embodiment, the mounting portion is provided with openings spaced apart along the arrangement direction of each of the sawtooth units, and both ends of each sawtooth unit can be rotatably snapped into the openings.

[0021] In one embodiment, both ends of the serrated unit are provided with columnar snap-fit ​​structures, which are rotatably snap-fitted into the opening.

[0022] In one embodiment, the columnar snap-fit ​​structure is provided with a chamfered structure, which is used to avoid the mounting part when the columnar snap-fit ​​structure is snapped into the opening.

[0023] According to another aspect of this application, this application provides a glass assembly including the aforementioned mounting bracket, and the glass assembly further includes a glass component, the mounting bracket being connected to the glass component. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the mounting bracket in one embodiment of this application;

[0025] Figure 2 for Figure 1 Top view of the mounting bracket shown;

[0026] Figure 3 for Figure 1 The front view of the mounting bracket shown;

[0027] Figure 4 for Figure 2 The mounting bracket shown is a cross-sectional view at BB.

[0028] Figure 5 for Figure 4 A schematic diagram of the serrated assembly of the mounting bracket at different rotation angles;

[0029] Figure 6 for Figure 1 The image shows an enlarged view of the mounting bracket at point A.

[0030] Figure 7 for Figure 6 The diagram shows the structural schematics of the mounting bracket from different perspectives.

[0031] Figure 8 for Figure 2 The mounting bracket shown is in cross-section at CC.

[0032] Explanation of icon numbers

[0033] 100. Mounting bracket; 200. Optical component; 110. Bracket body; 110a. Adhesive surface; 110b. Operating surface; 111. Mounting part; 1111. Mounting hole; 1112. Opening; 120. Sawtooth assembly; 121. Sawtooth unit; 1211. Connecting part; 1212. Outer peripheral wall; 1212a. Circular outer peripheral surface; 1212b. Conical outer peripheral surface; 1213. Columnar snap-fit ​​structure; 1213a. Chamfered structure; L. Length extension direction of sawtooth unit; M1. Extension line; M2. Horizontal direction; α. Included angle; 130. Adjustment component; 131. Connecting rod; 1311. Snap-fit ​​hole; 132. Connecting seat; 133. Rocker arm; 1331. Connecting rod; 1332. Handle; 134. Damping component. Detailed Implementation

[0034] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0035] In the description of this application, it should be understood that if terms such as "length", "thickness", "upper", "lower", "front", "rear", "horizontal", "inner", "outer" appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0036] Furthermore, where the terms "first" and "second" appear, these terms are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, where the term "multiple" appears, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0037] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0038] Considering that the serrations of the light shields on mounting brackets in related technologies generally cannot be adjusted in angle or height, they cannot adapt to the optical path of incident light according to design requirements, resulting in poor applicability. This application provides a mounting bracket and glass assembly that can adapt to the optical path of incident light according to design requirements, thereby improving the applicability of the mounting bracket and glass assembly.

[0039] For details, please refer to Figure 1One embodiment of this application provides a mounting bracket 100, which includes a bracket body 110 and a serrated assembly 120. The bracket body 110 includes a mounting portion 111. (The last sentence appears to be incomplete and possibly refers to a different application.) Figure 4 As shown, the sawtooth assembly 120 includes a plurality of sawtooth units 121, which are arranged side by side along each other in their thickness direction and connected to the mounting portion 111. The sawtooth units 121 can rotate relative to the mounting portion 111 about their length extension direction L.

[0040] The aforementioned mounting bracket 100, by means of the serrated unit 121 being rotatable relative to the mounting portion 111 about its length extension direction L, allows the serrated unit 121 to adjust its rotation angle relative to the mounting portion 111 according to design requirements, thereby adjusting the incident angle of the incident light to meet the user's optical path requirements for the incident light. Thus, the aforementioned mounting bracket 100 can be applied to scenarios with different incident light optical path requirements, improving the applicability of the mounting bracket 100.

[0041] It is worth noting that, compared with traditional one-piece injection molded sunshades, the aforementioned mounting bracket 100 can be used on different vehicles. Users only need to adjust the rotation angle of the sawtooth unit 121 relative to the mounting part 111 under different vehicles or different design requirements. Therefore, the aforementioned mounting bracket 100 can meet the user's needs without redeveloping the mold, which helps to greatly reduce development costs.

[0042] In addition, the sawtooth assembly 120 generally needs to be painted in order to improve the optical effect.

[0043] In some embodiments, the serrated unit 121 may be detachably connected to the mounting portion 111.

[0044] Specifically, compared to traditional one-piece injection-molded sunshades, the aforementioned mounting bracket 100 features a detachable connection between the serrated unit 121 and the mounting portion 111. This allows each serrated unit 121 to be individually painted, thus avoiding defects such as missed areas or paint buildup, and improving optical performance. Understandably, users can paint the serrated unit 121 before assembling it with the bracket body 110, thereby avoiding painting defects caused by structural arrangement issues after multiple serrated units 121 are assembled together.

[0045] On the other hand, compared with the traditional one-piece injection molded sunshade, the sawtooth assembly 120 of this application adopts the form of multiple sawtooth units 121 combined together. This avoids the trouble of considering the mold release angle as required by the traditional one-piece injection molded sunshade. Users only need to assemble the sawtooth units 121 on the mounting part 111, which is simple and convenient to operate.

[0046] Optionally, the aforementioned sawtooth monomer 121 may, but is not limited to, be made of POM (Polyoxymethylene) material. POM is a linear crystalline polymer with excellent mechanical properties (such as high strength and high rigidity), good wear resistance, fatigue resistance, and self-lubricating properties. It is widely used in machinery manufacturing, automotive industry, electronics and electrical appliances, and is often used to manufacture precision parts such as gears, bearings, and fasteners. Thus, by using POM material for the sawtooth monomer 121, its structural strength is improved, ensuring the assembly stability of its relative mounting part 111. In addition, POM material also has self-lubricating properties, which can be used to ensure smooth rotation of the sawtooth monomer 121 relative to the mounting part 111, reducing problems such as jamming, obstruction, or abnormal noise during rotation.

[0047] According to another aspect of this application, this application also provides a glass assembly including the aforementioned mounting bracket 100, and the glass assembly further includes a glass component (not shown), to which the mounting bracket 100 is connected.

[0048] Optionally, the mounting bracket 100 of this application may be, but is not limited to, bonded to the glass assembly.

[0049] Combination Figure 1 and Figure 3 As shown, the bracket body 110 includes an adhesive surface 110a and an operating surface 110b disposed opposite to each other. The adhesive surface 110a can be used to bond to the glass assembly of a vehicle. After the mounting bracket 100 is bonded to the glass assembly, the operating surface 110b faces inwards, and the user can adjust the angle of the serrated unit 121 on the operating surface 110b.

[0050] Optionally, the glass components described above in this application may be configured as sunroof glass, side window glass, or windshield glass of a vehicle, etc.

[0051] It is worth noting that, please continue to combine Figure 1 , Figure 2 and Figure 3 As shown, the mounting bracket 100 provided in this application can be used to mount optical devices 200.

[0052] Optionally, please refer to Figure 2 and Figure 4 The mounting part 111 may be provided with mounting holes 1111, which are used to attach the lens of the optical device 200.

[0053] For example, the adhesive surface 110a of the bracket body 110 can be bonded to the windshield of a vehicle, wherein the lens of the optical device 200 is snapped into the mounting hole 1111 and faces the direction of vehicle travel to receive incident light from the front of the vehicle. The incident light from the front of the vehicle can pass directly through the windshield and enter the lens after being adjusted and optimized by the serrated assembly 120, thus achieving the effect of optimizing the imaging effect.

[0054] like Figure 4 and Figure 5 As shown, taking the rightmost sawtooth unit 121 as an example, the user can adjust the angle α between the extension line M1 of the sawtooth unit 121 and the horizontal direction M2 to adjust the interference angle between the incident light and the sawtooth assembly 120, thus satisfying the optical path requirements of the incident light and improving the imaging effect of the optical device 200.

[0055] Understandably, when the user adjusts the angle α between the extension line M1 of the sawtooth unit 121 and the horizontal direction M2, the tooth tip of the sawtooth unit 121 and its height in the height direction can also be adjusted. Thus, the sawtooth unit 121 can meet the optical path requirements of the incident light under the joint adjustment of angle and height.

[0056] Optionally, such as Figure 1 , Figure 3 and Figure 4 As shown, the mounting part 111 is provided on the operating surface 110b of the bracket body 110, and the mounting part 111 protrudes towards the side opposite to the adhesive surface 110a, so that the lens of the optical device 200 can face the tip of the tooth of the serrated assembly 120 after being snapped into the mounting hole 1111.

[0057] Optionally, the aforementioned optical device 200 may be implemented as a camera or sensor, etc.

[0058] Optionally, the user can individually adjust the rotation angle of each of the aforementioned sawtooth units 121.

[0059] Alternatively, in some other embodiments, the user can adjust the rotation angle of each of the aforementioned sawtooth units 121 together.

[0060] Alternatively, please refer to the following: Figure 1 The mounting bracket 100 may include an adjustment component 130, and each sawtooth unit 121 may be connected to the adjustment component 130. The adjustment component 130 is used to drive each sawtooth unit 121 to rotate together, which helps to improve the ease of adjustment of the sawtooth assembly 120.

[0061] Optionally, please combine Figure 3 and Figure 6As shown, the adjusting component 130 may include a connecting rod 131, and the sawtooth unit 121 may include a connecting part 1211. The connecting rod 131 is rotatably connected to the connecting parts 1211 of each sawtooth unit 121. Thus, when the connecting rod 131 is pushed forward or backward, the connecting rod 131 can drive each connecting part 1211 to move together, thereby realizing that each sawtooth unit 121 rotates together relative to the mounting part 111, which improves the convenience of adjusting the angle of the sawtooth assembly 120 relative to the mounting part 111.

[0062] Optionally, the connecting part 1211 is detachably connected to the connecting rod 131, which helps to improve the ease of disassembly, assembly and maintenance of the mounting bracket 100 of this application.

[0063] Optionally, please continue to combine Figure 3 , Figure 6 and Figure 7 As shown, the aforementioned connecting rod 131 may be provided with locking holes 1311 at intervals along its length direction, and the connecting part 1211 may be implemented as a protruding structure connected to the surface of the sawtooth unit 121, which can be correspondingly locked into the aforementioned locking holes 1311.

[0064] Optionally, please refer to Figure 6 The adjusting component 130 may also include a connecting seat 132 and a rocker arm 133. The connecting seat 132 is connected to the bracket body 110. One end of the rocker arm 133 is rotatably connected to the connecting seat 132, and the other end of the rocker arm 133 is rotatably connected to one end of the connecting rod 131. In this way, the user only needs to shake the rocker arm 133 to push the connecting rod 131, thereby adjusting the rotation angle of each sawtooth unit 121 relative to the mounting part 111. The operation is simple and convenient.

[0065] Preferably, please continue reading. Figure 6 The aforementioned joystick 133 may include a connecting rod 1331 and a handle 1332. The two ends of the connecting rod 1331 are respectively connected to the connecting rod 131 and the connecting seat 132. The handle 1332 is connected to the end of the connecting rod 1331 near the connecting rod 131. The handle 1332 is used for the user to hold and rotate, which improves the ease of operation of the joystick 133.

[0066] Optionally, please refer to Figure 7 The joystick 133 has a rotation angle range relative to the connecting seat 132, which is configured to be from -30° to +30°. This can prevent the joystick 133 from swinging too much and improve the adjustment accuracy of the joystick 133.

[0067] Alternatively, please continue reading Figure 7When the connecting rod 1331 of the aforementioned rocker arm 133 is perpendicular to the surface of the bracket body 110, the rotation angle of the rocker arm 133 relative to the connecting seat 132 can be configured to 0°. Thus, the rocker arm 133 can rotate 30° to both sides of this angle.

[0068] Optionally, the mounting bracket 100 may be provided with a limiting part (not shown) to limit the rotation angle of the rocker arm 133 relative to the connecting seat 132, so as to ensure that the rocker arm 133 rotates within the aforementioned rotation angle range.

[0069] Understandably, the aforementioned limiting part may be configured, but is not limited to, as a limiting block that abuts against and limits the rocker arm 133 when the rocker arm 133 is respectively placed at the critical value of the rotation angle range. For example, according to the above embodiment of this application, the aforementioned limiting part may be configured to abut against and limit the rocker arm 133 when the rocker arm 133 is respectively placed at +30° or -30°.

[0070] Optionally, the aforementioned limiting part may also be configured as a protrusion (not shown) provided on the connecting seat 132, which can abut against the rocker arm 133 when the rocker arm 133 is placed at the critical value of the rotation angle range.

[0071] Of course, in some other embodiments, the limiting part may also be configured to abut against the sawtooth unit 121 for limiting, so that the rotation angle of the rocker arm 133 relative to the connecting seat 132 is indirectly limited by limiting the rotation angle of the sawtooth unit 121.

[0072] It should be noted that any embodiment of the limiting part described above in this application that can directly or indirectly limit the rotation angle of the rocker arm 133 relative to the connecting seat 132 should fall within the protection scope of this application, and will not be elaborated further here.

[0073] Alternatively, please continue reading Figure 7 The connecting seat 132 can be connected to a damping element 134, which is connected to one end of the rocker arm 133. The damping element 134 applies resistance to the rocker arm 133 after it rotates to a designated position, preventing arbitrary rotation or wobbling, thus improving the operational reliability of the sawtooth assembly 120. Optionally, the aforementioned damping element 134 can be, but is not limited to, a TPE (Thermoplastic Elastomer) material. This TPE material has good damping performance, meaning it has the characteristic of absorbing or dissipating external energy (such as mechanical energy generated by vibration or impact) through its viscoelasticity. Therefore, this TPE material is suitable for increasing the rotational damping of the rocker arm 133, thereby improving the stability of the rocker arm 133 at a designated position.

[0074] Optionally, the aforementioned rocker arm 133 can be rotatably connected to the rotating hole of the connecting seat 132 via a rotating shaft. The aforementioned damping member 134 can be, but is not limited to, acting as a bearing and engaging between the rotating shaft of the rocker arm 133 and the rotating hole of the connecting seat 132. In this way, the damping member 134 can increase the rotational resistance when the rotating shaft of the rocker arm 133 rotates relative to the connecting seat 132, thereby preventing the rocker arm 133 from rotating arbitrarily, shaking, or other defects, and improving the working reliability of the sawtooth assembly 120.

[0075] Please refer to the previous document. Figure 4 and Figure 5 Optionally, the sawtooth unit 121 has an outer peripheral wall 1212 extending along its length direction L. The outer peripheral wall 1212 can be configured such that its cross-section in the thickness direction of the sawtooth unit 121 is teardrop-shaped, such that the outer peripheral wall 1212 includes interconnected circular outer peripheral surfaces 1212a and conical outer peripheral surfaces 1212b along the length direction L of the sawtooth unit 121. In this way, during the rotation of the rocker arm 133, the angle of each sawtooth unit 121 can be changed, thereby changing the height of the tip of each corresponding conical outer peripheral surface 1212b in the height direction, satisfying the optical path requirements of the incident light.

[0076] Please continue reading. Figure 4 and Figure 5 Optionally, two adjacent sawtooth units 121 are tangent to each other via their respective circular outer peripheral surfaces 1212a. This reduces light leakage and improves the imaging effect of the optical device 200. It is worth noting that since the cross-section of the circular outer peripheral surface 1212a in the thickness direction of the sawtooth unit 121 is arc-shaped, even when the circular outer peripheral surfaces 1212a of two adjacent sawtooth units 121 are in contact with each other, they can remain in contact during rotation, thus reducing light leakage.

[0077] Understandably, since the aforementioned outer peripheral wall 1212 is configured with a teardrop-shaped cross-section in the thickness direction of the sawtooth unit 121, rotational space can be provided between adjacent conical outer peripheral surfaces 1212b to prevent interference or jamming during rotation. This ensures that adjacent sawtooth units 121 remain tangent during rotation, preventing light leakage while also reducing rotational jamming between structures and improving the smoothness of rotation.

[0078] Please refer to the previous document. Figure 3 The mounting part 111 is provided with openings 1112 at intervals along the arrangement direction of each sawtooth unit 121, and both ends of the sawtooth unit 121 are rotatably snapped into the openings 1112.

[0079] Optionally, please combine Figure 8As shown, both ends of the sawtooth unit 121 can be provided with columnar snap-fit ​​structures 1213, which can be rotatably snapped into the opening 1112, thus realizing the simple installation and rotatable effect of the sawtooth unit 121 relative to the mounting part 111.

[0080] Alternatively, please continue reading Figure 8 The columnar snap-fit ​​structure 1213 may be provided with a chamfered structure 1213a. The chamfered structure 1213a is used to avoid the mounting part 111 when the columnar snap-fit ​​structure 1213 is snapped into the opening 1112, which helps to improve the installation convenience of the sawtooth unit 121.

[0081] Optionally, both ends of the sawtooth unit 121 are provided with shielding structures (not shown). The shielding structures may be configured, but are not limited to, to seal and engage with the opening 1112 of the mounting part 111 when the end of the sawtooth unit 121 passes through the opening 1112, thereby further reducing the phenomenon of incident light leakage from the opening 1112.

[0082] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0083] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A mounting bracket (100) characterized by, The mounting bracket (100) comprises: a bracket body (110) comprising a mounting portion (111); a sawtooth assembly (120) comprising a plurality of sawtooth units (121) arranged side by side along the thickness direction of each other and connected to the mounting portion (111), each sawtooth unit (121) being rotatable about the length extension direction thereof relative to the mounting portion (111).

2. The mounting bracket (100) according to claim 1, characterized in that Each sawtooth unit (121) is detachably connected to the mounting portion (111).

3. The mounting bracket (100) of claim 1, wherein The mounting bracket (100) comprises an adjusting member (130), each sawtooth unit (121) being connected to the adjusting member (130), the adjusting member (130) being configured to drive each sawtooth unit (121) to rotate.

4. The mounting bracket (100) according to claim 3, characterized in that The adjusting member (130) comprises a connecting rod (131), each sawtooth unit (121) comprising a connecting portion (1211), the connecting rod (131) being rotatably connected to the connecting portion (1211) of each sawtooth unit (121).

5. The mounting bracket (100) according to claim 4, characterized in that The connecting portion (1211) is detachably connected to the connecting rod (131).

6. The mounting bracket (100) of claim 4, characterized in that The adjusting member (130) comprises a connecting seat (132) and a rocker (133), the connecting seat (132) being connected to the bracket body (110), one end of the rocker (133) being rotatably connected to the connecting seat (132), and the other end of the rocker (133) being rotatably connected to one end of the connecting rod (131).

7. The mounting bracket (100) according to claim 6, characterized in that The rocker (133) has a rotation angle range relative to the connecting seat (132), the rotation angle range being configured to be -30° to 30°.

8. The mounting bracket (100) of claim 6, characterized in that The connecting seat (132) is connected to a damping member (134), the damping member (134) being connected to one end of the rocker (133).

9. The mounting bracket (100) of claim 6, characterized in that The mounting bracket (100) is provided with a limiting portion for limiting the rotation angle of the rocker (133) relative to the connecting seat (132).

10. The mounting bracket (100) of claim 1, wherein Each sawtooth unit (121) has an outer peripheral wall surface (1212) extending along the length direction thereof, the outer peripheral wall surface (1212) being configured to have a water drop shape in the cross section in the thickness direction of the sawtooth unit (121), so that the outer peripheral wall surface (1212) comprises a circular outer peripheral surface (1212a) and a conical outer peripheral surface (1212b) connected to each other along the length extension direction of the sawtooth unit (121).

11. The mounting bracket (100) according to claim 10, characterized in that Two adjacent sawtooth units (121) are arranged tangentially by the respective circular outer peripheral surfaces.

12. The mounting bracket (100) of claim 1, wherein, The mounting portion (111) is provided with an opening (1112) spaced apart along the arrangement direction of each sawtooth unit (121), both ends of each sawtooth unit (121) being rotatably clamped to the opening (1112).

13. The mounting bracket (100) according to claim 12, characterized in that Both ends of each sawtooth unit (121) are provided with a columnar clamping structure (1213) rotatably clamped to the opening (1112).

14. The mounting bracket (100) according to claim 13, characterized in that The columnar clamping structure (1213) is provided with a cut corner structure (1213a) for avoiding the mounting portion (111) when the columnar clamping structure (1213) is clamped to the opening (1112).

15. A glass assembly, characterized by, The glass assembly comprises the mounting bracket (100) according to any one of claims 1-14, and further comprises a glass component, and the mounting bracket (100) is connected to the glass component.

Citation Information

Patent Citations

  • Spatial floating image display device and light source device

    CN116583427A

  • Metasurface lens, manufacturing method thereof, equipment and imaging device

    CN118778154A

  • Automatic bidirectional dimming shutter

    CN120139635A

  • Support assembly, vehicle window and vehicle

    CN220374428U

  • Scattered light diaphragm for reducing scattered light of e.g. sun falling into stereo cameras arranged in inner space behind motor car windscreen, has surface structure comprising structural elements whose dimensions lie in specific range

    DE102011114850A1