Sun visor assembly and vehicle

CN224602657UActive Publication Date: 2026-08-07JIANGNAN MOLD & PLASTIC TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGNAN MOLD & PLASTIC TECH
Filing Date
2025-09-17
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0015]本实用新型的目的是针对现有技术中的不足,提供一种遮阳板总成及汽车,以解决相关技术中存在的化妆镜尺寸小、遮阳面积受限等问题

Benefits of technology

[0059]1)第一遮阳板结构与第二遮阳板结构的联动设计,可覆盖前挡风玻璃至侧窗的更大范围,有效解决早晚低角度阳光直射问题,避免驾驶员因强光眩目导致视线模糊;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to sun shield assembly and car, sun shield assembly includes first sun shield structure, second sun shield structure, damping rotation structure, cosmetic mirror structure and rotation structure. Its advantage lies in, the linkage design of first sun shield structure and second sun shield structure, can cover the greater range of front windshield glass to side window, effectively solve the problem of low angle sunlight direct -solar radiation in early morning and evening, avoid the driver's sight blurred because of strong light glare, second sun shield structure supports 180 degrees rotation, accurate shielding of oblique sunlight of different time period, first sun shield structure adopts the design of combination before and after, hides rotation structure in the back side of first sun shield structure to place big size cosmetic mirror structure, big size cosmetic mirror structure can complete present user's face and hairstyle, avoid frequent angle adjustment, especially suitable for the scene that needs fine makeup adjustment.
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Description

Technical Field

[0001] This utility model relates to the technical field of automotive sun visors, and in particular to a sun visor with a full-size vanity mirror, specifically to a sun visor assembly and an automobile. Background Technology

[0002] In automotive interior design, sun visors are a core component ensuring the safety and comfort of drivers and passengers. Their primary function is to block strong sunlight from entering through the windshield and driver and passenger side windows while the vehicle is moving or parked, preventing direct sunlight from hitting the eyes of passengers and reducing glare that interferes with vision, thereby mitigating driving safety hazards. Simultaneously, they effectively alleviate physical discomfort caused by prolonged sun exposure, enhancing the driving experience. As the automotive market increasingly demands practicality and comfort in interior design, sun visor design must not only fulfill basic sun-shading functions but also consider the practicality of additional functions and user experience.

[0003] Currently, the mainstream automotive sun visors on the market have formed a relatively fixed paradigm in terms of structural design, typically consisting of four parts: the sun visor body, the pivot assembly, the vanity mirror, and the vanity mirror cover. The layout and function of each component have significant industry commonalities:

[0004] 1) Sun visor body: As the core shading component, its shape is mostly "irregular", that is, one side of the top is designed with an inwardly concave arc area, and the other side has a rectangular or arc-shaped groove. This irregular design is mainly to adapt to the vehicle interior space (such as avoiding the interior panel above the windshield, rearview mirror and other components) and to realize the installation of functional components;

[0005] 2) Rotating shaft assembly: Fixedly installed in the recessed area on the top of the sun visor body, one end of which is connected to the fixed bracket inside the A-pillar or roof of the vehicle body. By rotating and flipping the rotating shaft, the angle of the sun visor body can be adjusted in two directions: up and down (to block strong light from the windshield) and left and right (to block strong light from the side windows) to meet the blocking needs of different light angles.

[0006] 3) Groove structure: Located on the other side of the top of the sun visor body, it is mainly used to cooperate with the "hook" on the vehicle roof or interior panel. When the sun visor is not in use, it can be fixed by the engagement of the groove and the hook, preventing it from shaking and making abnormal noises due to bumps during vehicle operation.

[0007] 4) Makeup mirror and cover: The makeup mirror is usually installed in the middle of the side of the sun visor facing the driver and passengers in an embedded manner. The size is mostly rectangular, about 15cm×8cm. The makeup mirror cover adopts a snap-on, hinge, or magnetic structure to cover the outside of the makeup mirror. It serves to protect the mirror surface from glare and prevent the mirror surface from interfering with driving. The cover can be opened to reveal the makeup mirror when in use.

[0008] However, this traditional sun visor design has gradually revealed many shortcomings in actual use that do not meet user needs, making it difficult to satisfy modern drivers' high-quality pursuit of comfort and practicality. These shortcomings are specifically reflected in the following four aspects:

[0009] First, the limited size and poor image quality of makeup mirrors fail to meet users' grooming needs. Due to the irregular structure of the sun visor (the top recess and groove occupy a significant amount of vertical space) and the installation position of the hinge assembly, the size of the makeup mirror is severely compressed—to avoid interference with the hinge, groove, and other structures, the vertical length of the makeup mirror is typically less than 10cm, and the horizontal width is less than 15cm, resulting in a small overall area. This small mirror can only display a partial area of ​​the face (such as the area from the eyes to the nose), failing to fully reflect the entire face, causing significant inconvenience for drivers and passengers (especially female users) when touching up makeup or styling their hair. Furthermore, existing makeup mirrors mostly use ordinary flat glass without anti-glare or high-definition coating optimizations. In dimly lit environments inside the car (such as in tunnels or at night), the mirror image is blurry, making it difficult to clearly display facial details (such as makeup blemishes and hair texture), further reducing the user experience.

[0010] Secondly, the uneven distribution of makeup light distribution affects the convenience of makeup application. To address the inconvenience of using makeup mirrors in low-light conditions inside the car, some sun visors are equipped with makeup lights along the edge of the mirror. However, traditional lighting layout designs have significant flaws: most products use a "single light on one side" or "dual lights on both sides" arrangement. A single light on one side causes the light to concentrate on one side of the face, creating a significant contrast between light and shadow, while the other side suffers from shadows due to insufficient light. While a dual-light design on both sides can improve the issue of shadows on one side, the direct light on the face easily creates glare spots on the mirror, interfering with vision. Furthermore, the light is difficult to evenly cover the central area of ​​the face (such as the forehead and chin), leading to "missed spots" during makeup application, severely impacting the user's makeup application experience.

[0011] Third, the size of the sun visor is limited by the driver's field of vision, resulting in insufficient sun protection area. Traditional sun visors are typically limited to a lateral width of 50-60cm and a vertical height of approximately 30-40cm. The core consideration in this design is to "avoid obstructing the driver's forward view." If the sun visor is too wide laterally, while blocking strong light from the left side of the windshield, it may obstruct the driver's view of the road conditions to the left front; if it is too high vertically, it will affect the observation of road signs ahead. However, this size design, which "compromises on field of vision," significantly reduces the effective sun protection area of ​​the sun visor: at midday when the sun is directly overhead, the sun visor can only block the light directly in front of the face, leaving the forehead and sides of the face still exposed to strong light; and when the vehicle is turning or the sun is shining from an angle, the strong light from the side windows often exceeds the sun visor's blocking range, failing to achieve a comprehensive sun protection effect and reducing driving comfort.

[0012] Fourth, the sun visors are functionally limited and lack practical additional features such as storage. With the increasing popularity of the concept of maximizing space utilization in automotive interiors, drivers and passengers have a growing demand for multifunctional interior components. However, traditional sun visors only offer two basic functions: sunshade and a vanity mirror, failing to consider users' temporary storage needs. In daily driving scenarios, drivers and passengers often face the problem of "nowhere to put small items." Small items such as driver's licenses, vehicle registration certificates, and parking cards, if left haphazardly on the center console or seats, are easily lost when the vehicle is bumpy or damaged by sunlight. The sun visor, located in front of the driver's head, is an unused space that is not utilized as a storage area, resulting in a waste of interior space resources.

[0013] In summary, existing automotive sun visors suffer from structural design flaws such as small vanity mirror size, poor image quality, uneven vanity light illumination, insufficient sunshade area, and limited functionality, making it difficult to meet the diverse comfort and practicality needs of modern drivers and passengers. Therefore, there is an urgent need for a new automotive sun visor structure that optimizes vanity mirror design, expands sunshade area, and enriches functionality to enhance the product's usability and market competitiveness.

[0014] In conclusion, no effective solutions have yet been proposed to address the issues of small size and limited sun-shading area in existing makeup mirrors. Utility Model Content

[0015] The purpose of this utility model is to address the shortcomings of the existing technology by providing a sun visor assembly and automobile, thereby solving problems such as small size of the cosmetic mirror and limited sun shading area in the related technology.

[0016] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0017] In a first aspect, a sun visor assembly is provided, comprising:

[0018] First sunshade structure;

[0019] The second sunshade structure is movably disposed on the rear side of the first sunshade structure.

[0020] A damping rotation structure is disposed between the first sunshade structure and the second sunshade structure, for causing the second sunshade structure to rotate relative to the first sunshade structure and for limiting the relative position of the second sunshade structure and the first sunshade structure.

[0021] A makeup mirror structure is disposed on the front side of the first sun visor structure and covers the first sun visor structure.

[0022] A rotating structure is disposed on the upper part of the rear side of the first sunshade structure, and is used to make the first sunshade structure rotate around the rotating structure.

[0023] When viewed from the front side of the first sunshade structure to the rear side of the first sunshade structure, the rotating structure is blocked by the first sunshade structure.

[0024] In some embodiments, the first sunshade structure includes:

[0025] The first sun visor element has the makeup mirror structure provided on its front side.

[0026] The second sun visor element is disposed on the rear side of the first sun visor element and connected to the first sun visor element. The second sun visor element is rotatably provided with the second sun visor structure on the rear side. The damping rotation structure is provided at the bottom of the second sun visor element and the rotation structure is provided at the top of the second sun visor element.

[0027] The mounting slot element is disposed on the front side of the first sun visor element and is used to mount the cosmetic mirror structure.

[0028] The first rotating groove element is disposed at the bottom of the second sunshade element and is connected to the damping rotating structure;

[0029] The second rotating groove element is disposed on the top of the second sunshade element and is connected to the rotating structure;

[0030] When viewed from the front side of the first sun visor element towards the rear side of the first sun visor element, the second sun visor element is blocked by the first sun visor element.

[0031] In some embodiments, the first sunshade structure further includes:

[0032] The first magnetic element is disposed on the front side of the first sunshade element and is magnetically connected to the makeup mirror structure.

[0033] In some embodiments, the second sunshade structure includes:

[0034] The third sunshade element is rotatably disposed on the rear side of the first sunshade structure and connected to the damping rotation structure, and is used to move relative to the first sunshade structure under the action of the damping rotation structure.

[0035] The light transmittance of the third sunshade element is >70%.

[0036] In some embodiments, the damping rotation structure includes:

[0037] Two first damping rotation elements are symmetrically arranged at the bottom of the rear side of the first sunshade structure and are respectively connected to the first sunshade structure.

[0038] Two second damping rotation elements are symmetrically arranged on both sides of the second sunshade structure and are respectively connected to the second sunshade and respectively connected to the corresponding first damping rotation elements for damping rotation. They are used to cooperate with the first damping rotation elements to make the second sunshade structure rotate relative to the first sunshade structure and to limit the relative position of the second sunshade structure and the first sunshade structure.

[0039] In some embodiments, the makeup mirror structure includes:

[0040] A makeup mirror element is disposed on the front side of the first sun visor structure and covers the first sun visor structure.

[0041] A makeup light element is disposed on the front side of the first sun visor structure and surrounds the makeup mirror element;

[0042] A cover element is movably disposed on the front side of the first sunshade structure to cover or expose the makeup mirror element.

[0043] In some embodiments, the makeup mirror structure further includes:

[0044] The second magnetic element is disposed on the cover plate element and is magnetically connected to the first sunshade structure.

[0045] In some embodiments, the makeup mirror structure further includes:

[0046] A high-magnification lens element is disposed on the front side of the first sun visor structure and located on the side of the makeup mirror element.

[0047] In some embodiments, the rotating structure includes:

[0048] A pivot element, at least a portion of which is disposed inside the rear side of the first sunshade structure.

[0049] An elastic element is sleeved on the rotating shaft element and connected to the first sunshade structure.

[0050] In some of these embodiments, it also includes:

[0051] The mounting base structure is rotatably connected to the end of the rotating structure, which is used to allow the first sunshade structure to rotate around the mounting base structure.

[0052] In some of these embodiments, it also includes:

[0053] A suspension structure is provided on the upper rear side of the first sunshade structure and is detachably connected to the first sunshade structure for suspending and fixing the first sunshade structure.

[0054] In some of these embodiments, it also includes:

[0055] A placement structure is provided on the first sunshade structure and is used to place frequently used items.

[0056] Secondly, a car is provided, comprising:

[0057] At least as described in the first aspect, the sun visor assembly.

[0058] The present invention adopts the above technical solution and has the following technical effects compared with the prior art:

[0059] 1) The linkage design of the first sun visor structure and the second sun visor structure can cover a larger area from the windshield to the side windows, effectively solving the problem of direct sunlight at low angles in the morning and evening, and preventing the driver from having blurred vision due to strong glare.

[0060] 2) The second sunshade structure supports 180° rotation, accurately blocking oblique sunlight at different times;

[0061] 3) The first sun visor structure adopts a front-to-back combined design, hiding the rotating structure on the rear side of the first sun visor structure, thereby placing a large-sized makeup mirror structure.

[0062] 4) The large-sized makeup mirror structure can fully display the user's face and hairstyle, avoiding frequent angle adjustments, which is especially suitable for scenarios that require fine makeup adjustments;

[0063] 5) High-magnification lens elements can be used to magnify the eyeliner, lash line and lip texture, making the eye makeup lines smoother and avoiding smudging and unevenness;

[0064] 6) Surround makeup light elements can eliminate facial shadows and avoid uneven brightness caused by unilateral lighting, making them especially suitable for handling eye makeup details;

[0065] 7) Use storage structures to store frequently used items such as ETC cards, driver's licenses, and tickets to avoid frantically searching for them while driving. Attached Figure Description

[0066] Figure 1 This is a front view of the sun visor assembly according to an embodiment of the present utility model;

[0067] Figure 2 This is a rear view of the sunshade assembly according to an embodiment of the present utility model;

[0068] Figure 3 This is a cross-sectional view of the sunshade assembly according to an embodiment of the present utility model;

[0069] Figure 4 This is a front view of the first sunshade structure according to an embodiment of the present utility model;

[0070] Figure 5 This is a rear view of the first sunshade structure according to an embodiment of the present utility model;

[0071] Figure 6 This is a schematic diagram of the second sunshade structure according to an embodiment of the present utility model;

[0072] Figure 7 This is a schematic diagram of the damped rotation structure according to an embodiment of the present utility model;

[0073] Figure 8 This is a front view schematic diagram of the cosmetic mirror structure according to an embodiment of the present utility model;

[0074] Figure 9 This is a rear view of the cosmetic mirror structure according to an embodiment of the present utility model;

[0075] Figure 10 This is a partial schematic diagram of the structure of a cosmetic mirror according to an embodiment of the present invention (with the cover plate element removed);

[0076] Figure 11 This is a schematic diagram of the rotating structure according to an embodiment of the present utility model.

[0077] The reference numerals in the attached drawings are as follows: 100, first sunshade structure; 110, first sunshade element; 120, second sunshade element; 130, mounting groove element; 140, first rotating groove element; 150, second rotating groove element; 160, snap-fit ​​element;

[0078] 200. Second sunshade structure; 210. Third sunshade element;

[0079] 300. Damped rotation structure; 310. First damped rotation element; 311. First damped rotation component; 312. First extension component; 313. First connecting component; 320. Second damped rotation element; 321. Second damped rotation component; 322. Second extension component; 323. Second connecting component;

[0080] 400. Makeup mirror structure; 410. Makeup mirror components; 420. Makeup lamp components; 430. Cover plate components; 440. High-magnification lens components;

[0081] 500. Rotating structure; 510. Rotating shaft element; 511. Lateral rotating shaft component; 512. Longitudinal rotating shaft component; 520. Elastic element;

[0082] 600. Installation base structure;

[0083] 700. Suspension structure. Detailed Implementation

[0084] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0085] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0086] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.

[0087] An illustrative embodiment of this utility model, such as Figures 1-3As shown, a sun visor assembly includes a first sun visor structure 100, a second sun visor structure 200, a damping rotation structure 300, a makeup mirror structure 400, and a rotation structure 500. The second sun visor structure 200 is movably disposed behind the first sun visor structure 100; the damping rotation structure 300 is disposed between the first sun visor structure 100 and the second sun visor structure 200, used to allow the second sun visor structure 200 to rotate relative to the first sun visor structure 100 and to limit the relative position of the second sun visor structure 200 and the first sun visor structure 100; the makeup mirror structure 400 is disposed in front of the first sun visor structure 100 and covers the first sun visor structure 100; the rotation structure 500 is disposed on the upper part of the rear side of the first sun visor structure 100, used to allow the first sun visor structure 100 to rotate around the rotation structure 500.

[0088] When viewed from the front to the rear of the first sunshade structure 100, the rotating structure 500 is blocked by the first sunshade structure 100.

[0089] In this invention, the makeup mirror structure 400 is a full-size makeup mirror. Specifically, the front side of the first sun visor structure 100 is essentially the makeup mirror structure 400. That is, the length of the makeup mirror structure 400 is equal to the length of the first sun visor structure 100, and the height of the makeup mirror structure 400 is equal to the height of the first sun visor structure 100.

[0090] In this invention, the sun visor assembly is installed on the windshield of a car. Generally, two sun visor assemblies are installed on the windshield of a car, one located on the driver's side and the other on the passenger side.

[0091] In this utility model, the sun visor assembly is used as follows:

[0092] (a) First shade state

[0093] Flip the sun visor assembly over and use the first sun visor structure 100 for sun shading;

[0094] (ii) Second shade state

[0095] If the sunshade assembly in the first sunshade state does not meet the sunshade requirements, the second sunshade structure 200 is flipped, and the relative angle between the second sunshade structure 200 and the first sunshade structure 100 is adjusted according to the angle of sunlight incidence, and the first sunshade structure 100 and the second sunshade structure 200 are used for sunshade.

[0096] (III) Makeup Status

[0097] When the makeup mirror structure 400 is needed, the sun visor assembly is flipped so that the first sun visor structure 100 faces the user, and the user can use the full-size makeup mirror structure 400.

[0098] like Figures 4-5 As shown, the first sunshade structure 100 includes a first sunshade element 110, a second sunshade element 120, a mounting groove element 130, a first rotating groove element 140, and a second rotating groove element 150. The first sun visor element 110 has a makeup mirror structure 400 on its front side; the second sun visor element 120 is located on the rear side of the first sun visor element 110 and connected to it; the rear side of the second sun visor element 120 has a second sun visor structure 200 rotatably mounted thereon; the bottom of the second sun visor element 120 has a damping rotation structure 300; and the top of the second sun visor element 120 has a rotation structure 500. A mounting groove element 130 is located on the front side of the first sun visor element 110 for mounting the makeup mirror structure 400; a first rotation groove element 140 is located at the bottom of the second sun visor element 120 and connected to the damping rotation structure 300; and a second rotation groove element 150 is located at the top of the second sun visor element 120 and connected to the rotation structure 500.

[0099] When viewed from the front side of the first sunshade element 110 to the rear side of the first sunshade element 110, the second sunshade element 120 is blocked by the first sunshade element 110.

[0100] In this utility model, the first sunshade element 110 is generally rectangular in shape, with rounded corners.

[0101] In this invention, the edge of the first sunshade element 110 does not have any notches, depressions or other shapes.

[0102] In this invention, the first sunshade element 110 is generally frame-shaped. The purpose of this structure is to reduce weight while ensuring strength, and to create a certain space to accommodate the cables of the makeup mirror structure 400.

[0103] In some of these embodiments, the first sunshade element 110 includes, but is not limited to, a sunshade mainboard.

[0104] In this invention, the second sunshade element 120 and the first sunshade element 110 are connected by snap-fitting, adhesive bonding or other means.

[0105] In this utility model, the second sunshade element 120 is generally rectangular in shape, with rounded corners.

[0106] In this invention, the second sun visor element 120 has shapes such as notches and recesses. Generally, the notch is located at the top of the second sun visor element 120 to expose the rotating structure 500. Generally, the recess is located on the rear side of the second sun visor element 120 to accommodate the second sun visor structure 200.

[0107] In this invention, the length of the second sunshade element 120 is not greater than the length of the first sunshade element 110, and the height of the second sunshade element 120 is not greater than the height of the first sunshade element 110.

[0108] In some of these embodiments, the second sunshade element 120 includes, but is not limited to, a sunshade back panel.

[0109] The mounting groove element 130 is formed on the front side of the first sun visor element 110. Generally, the mounting groove element 130 is formed by machining methods (such as injection molding, stamping, etc.). The above-mentioned machining methods are conventional technical means in this field and will not be described in detail here.

[0110] In this utility model, the length of the mounting groove element 130 is less than the length of the first sunshade element 110, the width of the mounting groove element 130 is less than the width of the first sunshade element 110, and the depth of the mounting groove element 130 is less than the thickness of the first sunshade element 110.

[0111] In this invention, the wall thickness of the front side of the first sunshade element 110 is relatively small (generally ≤5mm). That is, the difference between the length of the first sunshade element 110 and the length of the mounting groove element 130 is ≤10mm, and the difference between the width of the first sunshade element 110 and the width of the mounting groove element 130 is ≤10mm.

[0112] In some of these embodiments, the mounting slot element 130 includes, but is not limited to, a mounting slot.

[0113] The first rotating groove element 140 is formed at the bottom rear side of the second sunshade element 120. Generally, the first rotating groove element 140 is formed by machining methods (such as injection molding, punching, etc.). The above-mentioned machining methods are conventional techniques in the art and will not be described in detail here.

[0114] In this invention, the first rotating groove element 140 can be a through groove structure for accommodating the damping rotating structure 300; the first rotating groove element 140 can also be two separate groove structures, which are symmetrically arranged and each accommodates a part of the damping rotating structure 300.

[0115] In some of these embodiments, the first rotating groove element 140 includes, but is not limited to, a damping shaft groove.

[0116] The second rotating groove element 150 is formed on the side of the top of the rear side of the second sunshade element 120. Generally, the second rotating groove element 150 is formed by machining methods (such as injection molding, punching, etc.). The above-mentioned machining methods are conventional technical means in this field and will not be described in detail here.

[0117] In some of these embodiments, the second rotating groove element 150 includes, but is not limited to, a rotating shaft groove.

[0118] Furthermore, the first sun visor structure 100 also includes a first magnetic element. The first magnetic element is disposed on the front side of the first sun visor element 110 and is magnetically connected to the makeup mirror structure 400.

[0119] In this utility model, the first magnetic element is installed on the first sunshade element 110 by means of embedding, bonding or other methods.

[0120] In this invention, the first magnetic element can be a ring structure that roughly matches the shape of the mounting groove element 130.

[0121] In this invention, there may be several first magnetic elements. Several first magnetic elements are arranged around the mounting groove element 130.

[0122] In some of these embodiments, the first magnetic element includes, but is not limited to, a magnetic sheet.

[0123] like Figure 6 As shown, the second sunshade structure 200 includes a third sunshade element 210. The third sunshade element 210 is rotatably disposed on the rear side of the first sunshade structure 100 and connected to a damping rotation structure 300, for relative movement with the first sunshade structure 100 under the action of the damping rotation structure 300. The light transmittance of the third sunshade element 210 is >70%.

[0124] Specifically, the third sunshade element 210 is rotatably disposed on the rear side of the second sunshade element 120.

[0125] In this invention, in the default state (or the first sunshade state), the third sunshade element 210 is housed within the second sunshade element 120 and does not protrude from the second sunshade element 120. That is, the rear side of the sunshade assembly is approximately a planar structure (there may be some minor protrusions, but these minor protrusions do not affect the overall visual effect or the installation of the sunshade assembly on the windshield).

[0126] In this invention, the third sunshade element 210 is generally concave in shape. This shape is adopted to facilitate connection with the damping rotation structure 300 and to facilitate rotation.

[0127] In this invention, the third sunshade element 210 is made of polycarbonate (PC), which not only allows light to pass through but also effectively prevents glare.

[0128] In some of these embodiments, the third sunshade element 210 includes, but is not limited to, a sunshade sub-plate.

[0129] like Figure 7 As shown, the damping rotation structure 300 includes two first damping rotation elements 310 and two second damping rotation elements 320. The two first damping rotation elements 310 are symmetrically arranged at the bottom rear side of the first sun visor structure 100 and connected to it respectively. The two second damping rotation elements 320 are symmetrically arranged on both sides of the second sun visor structure 200 and connected to the second sun visor respectively. They are also damped rotationally connected to their respective first damping rotation elements 310, cooperating with the first damping rotation elements 310 to allow the second sun visor structure 200 to rotate relative to the first sun visor structure 100 and to define the relative position of the second sun visor structure 200 and the first sun visor structure 100.

[0130] Specifically, two first damping rotation elements 310 are symmetrically arranged at the bottom of the rear side of the second sunshade element 120 and located inside the first rotation groove element 140; two second damping rotation elements 320 are symmetrically arranged on both sides of the third sunshade element 210.

[0131] In some embodiments, the first damping rotation element 310 includes a first damping rotation member 311, a first extension member 312, and at least one first connecting member 313. The first damping rotation member 311 is disposed within the first rotation groove element 140 and is damped and rotatedly connected to the second damping rotation element 320; the first extension member 312 is disposed on one side of the first damping rotation member 311 and within the first rotation groove element 140; the first connecting member 313 is disposed on the first extension member 312 and is used to mount the first extension member 312 onto the first rotation groove element 140.

[0132] In this invention, the first damping rotating component 311 can be either a damping rotating shaft or a damping rotating groove.

[0133] In this utility model, the first extension 312 and the first damping rotating member 311 are integrally formed.

[0134] In this utility model, the first extension member 312 is generally plate-shaped, and the edge of the first extension member 312 does not protrude beyond the edge of the first damping rotating member 311.

[0135] In some of these embodiments, the first extension 312 includes, but is not limited to, an extension plate, an extension strip, a mounting plate, etc.

[0136] The first connecting member 313 is disposed through the first extension member 312. Generally, the first connecting member 313 is formed by machining methods (such as punching). The above-mentioned machining methods are conventional technical means in this field and will not be described in detail here.

[0137] In some embodiments, there are multiple first connectors 313. The multiple first connectors 313 are spaced apart along the length direction and / or width direction of the first extension 312.

[0138] Generally, there are two first connectors 313. The two first connectors 313 are spaced apart along the length direction of the first extension 312.

[0139] In some of these embodiments, the first connector 313 includes, but is not limited to, a connecting hole, a screw hole, etc.

[0140] In this invention, the first damping rotation element 310 is mounted in the first rotation groove element 140 by screws. Specifically, the screws are connected to the second sunshade element 120 via the first connector 313.

[0141] In some embodiments, the second damping rotation element 320 includes a second damping rotation member 321, a second extension member 322, and at least one second connecting member 323. The second damping rotation member 321 is disposed on the third sun visor element 210 and is damped and rotatedly connected to the first damping rotation member 311 of the first damping rotation element 310; the second extension member 322 is disposed on one side of the second damping rotation member 321; and the second connecting member 323 is disposed on the second extension member 322 for mounting the second extension member 322 to the third sun visor element 210.

[0142] In this invention, the second damping rotating component 321 can be either a damping shaft or a damping groove. It should be noted that one of the first damping rotating component 311 and the second damping rotating component 321 is a damping shaft, and the other is a damping groove.

[0143] In this utility model, the second extension 322 and the second damping rotation member 321 are integrally formed.

[0144] In this invention, the second extension 322 is generally plate-shaped, and the edge of the second extension 322 does not protrude beyond the edge of the second damping rotating member 321.

[0145] In some of these embodiments, the second extension 322 includes, but is not limited to, an extension plate, an extension strip, a mounting plate, etc.

[0146] The second connector 323 extends through the second extension 322. Generally, the second connector 323 is formed by machining methods (such as punching). These machining methods are conventional techniques in the art and will not be described in detail here.

[0147] In some embodiments, there are multiple second connectors 323. The multiple second connectors 323 are spaced apart along the length direction and / or width direction of the second extension 322.

[0148] Generally, there are two second connectors 323. The two second connectors 323 are spaced apart along the length of the second extension 322.

[0149] In some of these embodiments, the second connector 323 includes, but is not limited to, a connecting hole, a screw hole, etc.

[0150] In this invention, the second damping rotation element 320 is mounted to the third sun visor element 210 by screws. Specifically, the screws are connected to the third sun visor element 210 via the second connector 323.

[0151] like Figures 8-10 As shown, the makeup mirror structure 400 includes a makeup mirror element 410, a makeup light element 420, and a cover element 430. The makeup mirror element 410 is disposed on the front side of the first sun visor structure 100 and covers the first sun visor structure 100; the makeup light element 420 is disposed on the front side of the first sun visor structure 100 and surrounds the makeup mirror element 410; the cover element 430 is movably disposed on the front side of the first sun visor structure 100 and is used to cover or expose the makeup mirror element 410.

[0152] Specifically, the makeup mirror element 410 is disposed in the mounting groove element 130 and covers the mounting groove element 130; the makeup light element 420 is disposed in the mounting groove element 130; and the cover element 430 is movably disposed in front of the first sunshade element 110.

[0153] In this invention, the cosmetic mirror element 410 can be installed in the mounting slot element 130 by means of snap-fit, adhesive or other methods.

[0154] In this invention, the length of the makeup mirror element 410 is approximately equal to the length of the mounting groove element 130, the width of the makeup mirror element 410 is approximately equal to the width of the mounting groove element 130, and the thickness of the makeup mirror element 410 is less than the thickness of the mounting groove element 130.

[0155] That is, in this invention, the size of the makeup mirror element 410 is approximately the same as the size of the first sun visor element 110, so that the makeup mirror element 410 presents a full-size effect. Compared with the makeup mirror of the traditional sun visor assembly, the makeup mirror element 410 of this invention is larger in size and can display more content (such as simultaneously showing the user's eyes, nose and mouth).

[0156] In some of these embodiments, the makeup mirror element 410 includes, but is not limited to, a makeup mirror.

[0157] In this utility model, the cosmetic light element 420 can be installed in the mounting slot element 130 by means of snap-fit, adhesive or other methods.

[0158] In some embodiments, the makeup light element 420 includes, but is not limited to, a makeup light. This is a conventional technique in the art and will not be described in detail here.

[0159] The cover element 430 and the first sun visor element 110 can be rotatably connected without separation, or they can be detached. Detachable connection means that the cover element 430 can be removed from the first sun visor element 110. For example, the cover element 430 and the first sun visor element 110 can be connected by snap-fit ​​or magnetic attraction.

[0160] In this utility model, the length of the cover plate element 430 is approximately the same as the length of the first sunshade element 110, and the width of the cover plate element 430 is approximately the same as the width of the first sunshade element 110.

[0161] In this invention, the cover element 430 can be generally flat or it can be an open-end and closed-end structure. Taking the open-end and closed-end structure as an example, this structure can prevent the cover element 430 from directly contacting the cosmetic mirror element 410.

[0162] In some embodiments, the cover element 430 includes, but is not limited to, a cosmetic mirror cover.

[0163] Furthermore, the makeup mirror structure 400 also includes a second magnetic element, which is disposed on the cover element 430 and magnetically connected to the first sunshade structure 100.

[0164] Specifically, the second magnetic element is magnetically connected to the first magnetic element.

[0165] In this utility model, the second magnetic element is installed on the cover plate element 430 by means of embedding, bonding or other methods.

[0166] In this invention, the second magnetic element can be a ring structure that roughly matches the shape of the cover element 430.

[0167] In this invention, there may be several second magnetic elements. Several second magnetic elements are arranged around the cover plate element 430.

[0168] In some embodiments, the second magnetic element includes, but is not limited to, a magnetic sheet.

[0169] Furthermore, the makeup mirror structure 400 also includes a high-magnification lens element 440, which is disposed on the front side of the first sun visor structure 100 and located on the side of the makeup mirror element 410.

[0170] Specifically, the high-magnification lens element 440 is disposed in the mounting slot element 130.

[0171] In this invention, the high-magnification lens element 440 can be installed in the mounting slot element 130 by means of snap-fit, adhesive or other methods.

[0172] In this embodiment, the makeup mirror element 410 and the high-magnification mirror element 440 form a mirror structure. The length of the mirror structure is approximately equal to the length of the mounting groove element 130, the width of the mirror structure is approximately equal to the width of the mounting groove element 130, and the thickness of the mirror structure is less than the thickness of the mounting groove element 130.

[0173] In some of these embodiments, the high-magnification lens element 440 includes, but is not limited to, a 2x lens.

[0174] like Figure 11 As shown, the rotating structure 500 includes a rotating shaft element 510 and an elastic element 520. At least a portion of the rotating shaft element 510 is disposed inside the rear side of the first sunshade structure 100. The elastic element 520 is sleeved on the rotating shaft element 510 and connected to the first sunshade structure 100.

[0175] Specifically, the pivot element 510 is disposed at the top of the second sunshade element 120, a part of the pivot element 510 is located inside the second rotating groove element 150, and another part of the pivot element 510 is located outside the second rotating groove element 150; the elastic element 520 is connected to the second sunshade element 120.

[0176] In this invention, the rotating shaft element 510 includes a transverse rotating shaft 511 and a longitudinal rotating shaft 512. The transverse rotating shaft 511 is disposed inside the second rotating groove element 150 and fitted with an elastic element 520, for rotating the second sunshade element 120 about the transverse rotating shaft 511. The longitudinal rotating shaft 512 is disposed at the end of the transverse rotating shaft 511 and forms an angle with the transverse rotating shaft 511 (e.g., vertical or inclined), for rotating the second sunshade element 120 about the longitudinal rotating shaft 512.

[0177] In this utility model, the sun visor assembly flips up and down around the horizontal pivot 511, and flips left and right around the vertical pivot 512.

[0178] In this utility model, the longitudinal rotating shaft 512 and the transverse rotating shaft 511 are integrally formed.

[0179] In this invention, the elastic element 520 provides a certain rotational force, making it easy for the sun visor assembly to be suspended in any position.

[0180] In some of these embodiments, the elastic element 520 includes, but is not limited to, a reed.

[0181] In this invention, the connection between the rotating structure 500 and the second sunshade element 120 is a conventional technique in the field and will not be described in detail here.

[0182] Furthermore, the sun visor assembly also includes a mounting base structure 600. The mounting base structure 600 is rotatably connected to the end of the rotating structure 500, for causing the first sun visor structure 100 to rotate around the mounting base structure 600.

[0183] Specifically, the mounting base structure 600 is rotatably connected to the end of the rotating shaft element 510.

[0184] More specifically, the mounting base structure 600 is rotatably connected to the top end of the longitudinal rotating shaft 512.

[0185] In this invention, the mounting base structure 600 is installed on the top of the windshield to allow the sun visor assembly to be installed on the windshield.

[0186] In this invention, the mounting base structure 600 and the rotating shaft element 510 are snapped together to prevent the rotating shaft element 510 from separating from the mounting base structure 600 during use.

[0187] In some embodiments, the mounting base structure 600 includes, but is not limited to, a mounting base.

[0188] Furthermore, the sun visor assembly also includes a suspension structure 700. The suspension structure 700 is disposed on the upper rear side of the first sun visor structure 100 and is detachably connected to the first sun visor structure 100 for suspending and fixing the first sun visor structure 100.

[0189] During use, the connection between the suspension structure 700 and the first sun visor structure 100 allows the first sun visor structure 100 to be rotated vertically. When it is necessary to rotate the first sun visor structure 100 horizontally, the first sun visor structure 100 can be separated from the suspension structure 700, and then the first sun visor structure 100 can be rotated horizontally.

[0190] Furthermore, the first sunshade structure 100 also includes a snap-fit ​​element 160. The snap-fit ​​element 160 is disposed at the top of the second sunshade element 120 and is detachably snap-fitted to the suspension structure 700.

[0191] The snap-fit ​​element 160 is formed at the top of the second sun visor element 120. Generally, the snap-fit ​​element 160 is formed by a machining method (such as injection molding). The above-mentioned machining method is a conventional technique in the art and will not be described in detail here.

[0192] Generally, the snap-fit ​​element 160 and the second rotating groove element 150 are arranged symmetrically.

[0193] In some embodiments, the snap-fit ​​element 160 includes, but is not limited to, a snap-fit ​​shaft.

[0194] In this utility model, the suspension structure 700 includes, but is not limited to, the suspension hook.

[0195] Furthermore, the sun visor assembly also includes a placement structure. This placement structure, located in the first sun visor structure 100, is used to place frequently used items.

[0196] Specifically, the placement structure is located on the second sunshade element 120.

[0197] In this utility model, commonly used items include, but are not limited to, vehicle registration certificates, driver's licenses, invoices, ETC cards, etc.

[0198] In some embodiments, the placement structure includes, but is not limited to, a card holder.

[0199] The method of using this utility model is as follows:

[0200] (a) First shade state

[0201] The first sunshade element 110 and the second sunshade element 120 are flipped around the transverse pivot 511 of the pivot element 510, and the first sunshade element 110 is used for sun shading.

[0202] For sunlight shining from the driver's / passenger's side windows, the first sun visor element 110 and the second sun visor element 120 can be rotated around the longitudinal pivot 512 of the pivot element 510, and the first sun visor element 110 can be used for sun shading.

[0203] (ii) Second shade state

[0204] If the sunshade assembly in the first shading state does not meet the shading requirements, the third sunshade element 210 is flipped under the action of the two first damping rotation elements 310 and the two second damping rotation elements 320. The relative angle between the third sunshade element 210 and the second sunshade element 120 is adjusted according to the angle of sunlight incidence, and the first sunshade element 110 and the third sunshade element 210 are used for shading.

[0205] (III) Makeup Status

[0206] When the makeup mirror structure 400 is needed, the sun visor assembly is flipped (in accordance with the method of the first sun visor state) so that the first sun visor element 110 faces the user, the cover element 430 is removed, and the user can use the full-size makeup mirror element 410 and the high-magnification lens element 440.

[0207] While the cover plate element 430 is removed, the makeup light element 420 lights up (this lighting method is a conventional technique in the field, and it can be used together with a brightness sensor, which will not be described in detail here) to provide supplementary lighting.

[0208] The technical effects of this utility model are as follows:

[0209] 1) The linkage design of the first sun visor structure and the second sun visor structure can cover a larger area from the windshield to the side windows, effectively solving the problem of direct sunlight at low angles in the morning and evening, and preventing the driver from having blurred vision due to strong glare.

[0210] 2) The second sunshade structure supports 180° rotation, accurately blocking oblique sunlight at different times;

[0211] 3) The first sun visor structure adopts a front-to-back combined design, hiding the rotating structure on the rear side of the first sun visor structure, thereby placing a large-sized makeup mirror structure.

[0212] 4) The large-sized makeup mirror structure can fully display the user's face and hairstyle, avoiding frequent angle adjustments, which is especially suitable for scenarios that require fine makeup adjustments;

[0213] 5) High-magnification lens elements can be used to magnify the eyeliner, lash line and lip texture, making the eye makeup lines smoother and avoiding smudging and unevenness;

[0214] 6) Surround makeup light elements can eliminate facial shadows and avoid uneven brightness caused by unilateral lighting, making them especially suitable for handling eye makeup details;

[0215] 7) Use storage structures to store frequently used items such as ETC cards, driver's licenses, and tickets to avoid frantically searching for them while driving.

[0216] The above description is only a preferred embodiment of the present utility model and does not limit the implementation method and protection scope of the present utility model. Those skilled in the art should realize that all solutions obtained by equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A sunshade assembly, characterized in that, include: First sunshade structure; The second sunshade structure is movably disposed on the rear side of the first sunshade structure. A damping rotation structure is disposed between the first sunshade structure and the second sunshade structure, for causing the second sunshade structure to rotate relative to the first sunshade structure and for limiting the relative position of the second sunshade structure and the first sunshade structure. A makeup mirror structure is disposed on the front side of the first sun visor structure and covers the first sun visor structure. A rotating structure is disposed on the upper part of the rear side of the first sunshade structure, and is used to make the first sunshade structure rotate around the rotating structure. When viewed from the front side of the first sunshade structure to the rear side of the first sunshade structure, the rotating structure is blocked by the first sunshade structure.

2. The sun visor assembly according to claim 1, characterized in that, The first sunshade structure includes: The first sun visor element has the makeup mirror structure provided on its front side. The second sun visor element is disposed on the rear side of the first sun visor element and connected to the first sun visor element. The second sun visor element is rotatably provided with the second sun visor structure on the rear side. The damping rotation structure is provided at the bottom of the second sun visor element and the rotation structure is provided at the top of the second sun visor element. The mounting slot element is disposed on the front side of the first sun visor element and is used to mount the cosmetic mirror structure. The first rotating groove element is disposed at the bottom of the second sunshade element and is connected to the damping rotating structure; The second rotating groove element is disposed on the top of the second sunshade element and is connected to the rotating structure; When viewed from the front side of the first sun visor element towards the rear side of the first sun visor element, the second sun visor element is blocked by the first sun visor element.

3. The sun visor assembly according to claim 2, characterized in that, The first sunshade structure also includes: The first magnetic element is disposed on the front side of the first sunshade element and is magnetically connected to the makeup mirror structure.

4. The sunshade assembly according to claim 1, characterized in that, The second sunshade structure includes: The third sunshade element is rotatably disposed on the rear side of the first sunshade structure and connected to the damping rotation structure, and is used to move relative to the first sunshade structure under the action of the damping rotation structure. The light transmittance of the third sunshade element is >70%.

5. The sunshade assembly according to claim 1, characterized in that, The damping rotation structure includes: Two first damping rotation elements are symmetrically arranged at the bottom of the rear side of the first sunshade structure and are respectively connected to the first sunshade structure. Two second damping rotation elements are symmetrically arranged on both sides of the second sunshade structure and are respectively connected to the second sunshade and respectively connected to the corresponding first damping rotation elements for damping rotation. They are used to cooperate with the first damping rotation elements to make the second sunshade structure rotate relative to the first sunshade structure and to limit the relative position of the second sunshade structure and the first sunshade structure.

6. The sun visor assembly according to claim 1, characterized in that, The cosmetic mirror structure includes: A makeup mirror element is disposed on the front side of the first sun visor structure and covers the first sun visor structure. A makeup light element is disposed on the front side of the first sun visor structure and surrounds the makeup mirror element; A cover element is movably disposed on the front side of the first sunshade structure to cover or expose the makeup mirror element.

7. The sunshade assembly according to claim 6, characterized in that, The cosmetic mirror structure also includes: A second magnetic element is disposed on the cover plate element and magnetically connected to the first sunshade structure; and / or A high-magnification lens element is disposed on the front side of the first sun visor structure and located on the side of the makeup mirror element.

8. The sun visor assembly according to claim 1, characterized in that, The rotating structure includes: A pivot element, at least a portion of which is disposed inside the rear side of the first sunshade structure. An elastic element is sleeved on the rotating shaft element and connected to the first sunshade structure.

9. The sunshade assembly according to any one of claims 1 to 8, characterized in that, Also includes: The mounting base structure is rotatably connected to the end of the rotating structure, which is used to allow the first sunshade structure to rotate around the mounting base structure. and / or A suspension structure is provided on the upper part of the rear side of the first sunshade structure and is detachably connected to the first sunshade structure for suspending and fixing the first sunshade structure. and / or A placement structure is provided on the first sunshade structure and is used to place frequently used items.

10. A car, characterized in that, include: At least one sunshade assembly as described in any one of claims 1 to 9.