Sun shield and vehicle

By introducing a mounting base, a first adjusting component, and a second adjusting component for rotational connection on the sun visor, combined with a rotating assembly and toothed mesh, the problem of the sun visor's inability to be precisely adjusted is solved. This achieves multi-dimensional flexible adjustment and stable connection of the sun visor, improving the sunshade effect and user experience.

CN223821433UActive Publication Date: 2026-01-23DEEPAL AUTOMOBILE TECH CO LTD
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Patent Information

Application Number
CN202520240659.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2026-01-23
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

Existing car sun visors cannot be precisely moved to the desired shading position during adjustment, affecting the shading effect and failing to meet the diverse shading needs of users.

Method used

The design includes a mounting base, a sun visor body, a first adjusting component, and a second adjusting component. The initial angle adjustment of the sun visor in the plane is achieved through the rotational connection of the first adjusting component and the second adjusting component. The precise fine-tuning and stable connection of the sun visor are achieved through the rotational component and the toothed engagement, thereby enhancing the stability and safety of the sun visor.

Benefits of technology

It enables multi-dimensional flexible adjustment of the sunshade, allowing for precise adjustment of the shading position according to the direction of sunlight and user needs, improving the shading effect, and ensuring the stability and safety of the sunshade during frequent use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a sun shield and a vehicle, belongs to the technical field of vehicles, and aims to solve the technical problem that the sun shielding effect of the sun shield cannot meet the requirements of users in the prior art. The sun shield comprises a mounting base, a sun shield body, a first adjusting part and a second adjusting part, one end of the first adjusting part is rotationally connected to the mounting base, one end of the second adjusting part is rotationally connected with the end, away from the mounting base, of the first adjusting part, and the other end of the second adjusting part is rotationally connected with the sun shield body.
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Description

Technical Field

[0001] This utility model relates to the field of vehicle technology, specifically to a sun visor and a vehicle. Background Technology

[0002] When the sun is at a low angle while driving, such as in the morning or evening, the sunlight shines directly into the driver's eyes, which can seriously affect the driver's vision and increase the risk of traffic accidents. Sun visors effectively block direct sunlight, preventing drivers from being blinded by glare and unable to see the road. In related technologies, to facilitate sun visor adjustment and better block light, a self-adjusting photosensitive sun visor is provided, comprising a sun visor body, a light-sensing unit, and a detection unit. The sun visor body is rotatably mounted on the vehicle's roof, with a rotating structure installed on the roof. The light-sensing unit includes a light sensor cover and a light-sensing element. The light sensor cover is a hollow structure and is fixedly mounted on the upper part of the vehicle's windshield. The light-sensing element is located inside the light sensor cover and near its rear end. A light inlet is provided at the front end of the light sensor cover. The detection unit includes a camera bracket, on which a camera is fixedly mounted. A mounting ring is installed on the sun visor body. The two sides of the camera bracket are rotatably mounted in the mounting ring via pins. A through-hole is provided in the sun visor body directly opposite the camera. An angle adjustment structure for adjusting the camera angle is installed on the sun visor body.

[0003] However, when using sun visors, users generally find that current car sun visors only support a single rotation adjustment method. Simply rotating the sun visor cannot accurately move it to the user's desired shading position, affecting the shading effect and failing to meet the diverse shading needs of users. Utility Model Content

[0004] The purpose of this utility model is to provide a sun visor and a vehicle to overcome the technical problem that the sun visor's sun-shading effect cannot meet the user's needs in related technologies.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] According to a first aspect of this application, this application provides a sun visor, which includes a mounting base, a sun visor body, a first adjusting member and a second adjusting member. One end of the first adjusting member is rotatably connected to the mounting base, one end of the second adjusting member is rotatably connected to the end of the first adjusting member away from the mounting base, and the other end of the second adjusting member is rotatably connected to the sun visor body.

[0007] According to the above-mentioned technical means, the first adjusting component can rotate around the mounting base at a certain angle, realizing the initial angle adjustment of the sun visor in a plane. After the first adjusting component completes the initial adjustment, the second adjusting component can further fine-tune the angle of the sun visor body for more complex light angles. Furthermore, the rotational connection between the first adjusting component and the second adjusting component can also allow the distance between the sun visor and the vehicle body to be further adjusted.

[0008] In addition, sun visors in vehicles are usually equipped with mirrors for user convenience. When the user needs to use the mirror on the sun visor, they can first rotate the first adjustment component to initially move the sun visor towards themselves, preparing for a closer approach. Then, rotating the second adjustment component, through its linkage with the first, allows the sun visor to move more precisely towards the user, bringing the mirror closer to them to meet their needs for grooming, checking their face, etc.

[0009] In one possible implementation, the sun visor further includes a rotating assembly, with the first and second adjusting members connected to the rotating assembly via the rotating assembly.

[0010] Based on the aforementioned technical means, compared to a simple direct connection, the rotating assembly, as an intermediate connecting component, enables a more stable connection between the first and second adjusting parts. It provides a tighter and more reliable connection, ensuring that the two adjusting parts will not loosen or fall off during frequent adjustments and use of the sun visor, thus guaranteeing the stability and safety of the overall sun visor structure.

[0011] In one possible implementation, the rotating assembly includes a first mating member and a second mating member, the first mating member being fixedly connected to a first adjusting member, the second mating member being fixedly connected to a second adjusting member, and the second mating member being connected to the first mating member through a toothed engagement.

[0012] Based on the aforementioned technical means, the toothed connection provides precise angle adjustment. Each tooth meshing corresponds to a specific angle, allowing users to precisely adjust the sun visor to the desired angle according to their actual needs, achieving accurate sun protection and improving the sunshade effect. Furthermore, the meshing between the teeth ensures the sun visor remains stable after being adjusted to the appropriate angle, preventing angle shift due to vibrations or other external forces during vehicle operation.

[0013] In one possible implementation, the first mating member includes a base, at least one mating cavity, and at least one elastic conical tooth. The base is provided with a receiving groove. At least a portion of the second mating member is received in the receiving groove. The mating cavity is located on the wall of the receiving groove and communicates with the receiving groove. The elastic conical tooth includes an elastic portion and a tooth portion. The elastic portion is connected between the cavity wall of the mating cavity and the tooth portion. The elastic portion is used to apply an elastic force to the tooth portion so that the tooth portion at least partially extends into the receiving groove and engages with the toothed connection of the second mating member.

[0014] Based on the aforementioned technical means, the elastic part of the flexible conical tooth allows the tooth to move flexibly within a certain range. When it is necessary to adjust the sun visor to different angles, the tooth can automatically adjust its meshing position with the teeth of the second mating part under the action of elastic force, according to the position and angle changes of the second mating part. This ensures that good tooth engagement is maintained regardless of the angle of the sun visor, achieving precise fine-tuning of the sun visor angle and better meeting the user's needs for sun shading and mirror use in different scenarios.

[0015] In one possible implementation, the second mating member includes a gear portion and a column that are rotatably connected, the gear portion being used to engage with the elastic bevel gear teeth, and the column being connected between the gear portion and the second adjusting member.

[0016] Based on the aforementioned technical means, the tooth meshing between the gear and the elastic bevel teeth ensures stable and reliable force transmission during adjustment. When adjusting the sun visor, force is evenly transmitted through each tooth of the gear to the elastic bevel teeth, and then to the first mating component, avoiding sudden force changes or slippage. This ensures smooth and stable sun visor adjustment without sudden jerking or jamming, providing users with a superior adjustment experience. The column provides reliable connection support for the gear and the second adjustment component. Compared to directly connecting the gear to the second adjustment component, adding the column increases the connection area and contact points, making the connection between the gear and the second adjustment component more robust.

[0017] In one possible implementation, the circumferential surface of the column is provided with a limiting groove, and the rotating assembly also includes a limiting member for engaging with the limiting groove, wherein the radial dimension of the limiting member is larger than the radial dimension of the receiving groove.

[0018] According to the above technical means, since the radial dimension of the limiting member is larger than the radial dimension of the receiving groove, it can effectively prevent the second mating member from coming out of the receiving groove or the second mating member from extending excessively into the receiving groove, ensuring that the second mating member always remains in the receiving groove and maintains a good mating relationship with the first mating member, thereby ensuring the overall structural stability of the sunshade.

[0019] In one possible implementation, the first adjusting member includes a plurality of adjusting rods, and the sun visor includes a plurality of rotating assemblies, the ends of the plurality of adjusting rods being rotatably connected via the rotating assemblies.

[0020] Based on the aforementioned technical means, each adjustment rod can independently change its angle through the corresponding rotating component. Users can make targeted angle adjustments to different parts of the sunshade according to the different directions and intensities of sunlight, achieving a more precise sunshade effect.

[0021] In one possible implementation, the sun visor includes a plurality of rotating components, with a first adjusting member rotatably connected to a mounting base via the rotating components; and / or, a second adjusting member rotatably connected to the sun visor body via the rotating components.

[0022] Based on the above technical means, users can flexibly choose to operate from the connection point between the first adjusting component and the mounting base, or the connection point between the second adjusting component and the sun visor body, according to actual needs, so as to more conveniently adjust the sun visor.

[0023] In one possible implementation, the sunshade body is detachably connected to the mounting base.

[0024] Based on the aforementioned technical means, users can separate and connect the sun visor body from the mounting base to meet their usage or storage needs.

[0025] According to a second aspect of this application, a vehicle is provided that includes the aforementioned sun visor.

[0026] Based on the above-mentioned technical means, this application effectively solves the technical problem that the sunshade effect of the sun visor in the vehicle cannot meet the user's needs.

[0027] The beneficial effects of this utility model are:

[0028] (1) This application can achieve flexible and precise adjustment in multiple dimensions. It can make detailed adjustments to the sunshade by cooperating with the first adjustment component and the second adjustment component according to different directions and intensities of sunlight and the user's personalized needs, so as to ensure the best sunshade effect and make the mirror of the sunshade accurately aligned with the user.

[0029] (2) The components consisting of the first adjusting member, the second adjusting member, and the rotating assembly in this application have a high degree of integration, which simultaneously meets the user's needs for pulling and rotating the sun visor.

[0030] It should be noted that the technical effects of the second implementation method can be found in the technical effects of the corresponding implementation method in the first aspect, and will not be repeated here.

[0031] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit this application. Attached Figure Description

[0032] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application, and do not constitute an undue limitation of this application.

[0033] Figure 1 This is a schematic diagram of the structure of a sunshade provided in an embodiment of this application;

[0034] Figure 2 This is one of the structural schematic diagrams of the rotating assembly provided in the embodiments of this application;

[0035] Figure 3 This is a second schematic diagram of the structure of the rotating assembly provided in the embodiments of this application;

[0036] Figure 4 One of the schematic diagrams of the limiting groove provided in the embodiments of this application;

[0037] Figure 5 A second schematic diagram of the limiting groove provided in an embodiment of this application;

[0038] Figure 6 This is a schematic diagram showing the connection between the elastic bevel teeth and the fixed head provided in an embodiment of this application.

[0039] Figure label:

[0040] 100, Mounting base; 200, Sun visor body; 300, First adjusting component; 301, Adjusting rod; 400, Second adjusting component; 500, Rotating assembly; 501, First mating component; 5011, Base; 5011a, Receiving groove; 5012, Mating cavity; 5013, Elastic bevel tooth; 5013a, Elastic part; 5013b, Tooth part; 5014, Fixing head; 502, Second mating component; 5021, Column; 5021a, Limiting groove; 5022, Gear part; 503, Limiting component. Detailed Implementation

[0041] To enable those skilled in the art to better understand the technical solutions of this application, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings.

[0042] It should be noted that the terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in orders other than those illustrated or described herein. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0043] In some embodiments, this application provides a vehicle. The specific type of vehicle is not specifically limited in this application; for example, the vehicle provided in this application may be an electric vehicle, a hybrid vehicle, or a solar-powered vehicle. Furthermore, the vehicle provided in this application may be of different forms. For example, the vehicle provided in this application may be a sedan, a sport utility vehicle (SUV), or a multi-purpose vehicle (MPV).

[0044] In some embodiments, the vehicle includes a sun visor, which plays an important protective role in actual vehicle use. Its main function is to block sunlight and prevent strong light from shining directly into the eyes of the driver or passengers, thereby reducing glare interference and improving driving safety and comfort.

[0045] Sun visors are typically mounted above the windshield of a vehicle and can be adjusted at a flexible angle to handle sunlight at different times of day. In addition, some sun visors are equipped with vanity mirrors and lighting functions, further enhancing their practicality. When driving at night, sun visors can also effectively block the glare from oncoming vehicle headlights, ensuring clear visibility for the driver.

[0046] Existing sun visors suffer from significant limitations in adjustability, failing to meet diverse user needs. Traditional sun visors typically only allow for vertical adjustment within a limited angle range, making them unsuitable for complex lighting conditions, especially under low-angle sunlight where their shading effect is greatly reduced. Furthermore, the rotation and extension functions of sun visors are relatively limited, unable to be precisely adjusted according to the driver's or passenger's height, posture, and the sun's position, resulting in a poor user experience. Users often find this inconvenient in actual use.

[0047] Based on this, this application provides a sunshade, please refer to... Figure 1The sun visor in this application includes a mounting base 100, a sun visor body 200, a first adjusting member 300, and a second adjusting member 400. One end of the first adjusting member 300 is rotatably connected to the mounting base 100, one end of the second adjusting member 400 is rotatably connected to the end of the first adjusting member 300 away from the mounting base 100, and the other end of the second adjusting member 400 is rotatably connected to the sun visor body 200.

[0048] The mounting base 100 is fixed to the top of the vehicle, providing support for the entire sun visor. Through the rotatable connection of the first adjusting member 300 and the second adjusting member 400, the sun visor body 200 can be adjusted at multiple angles in three-dimensional space. When the user needs to move the sun visor forward or backward, the rotatable connection of the first adjusting member 300 and the second adjusting member 400 allows the sun visor body 200 to be pulled towards or away from the mounting base 100. The rotation of the first adjusting member 300 can drive the second adjusting member 400 and the sun visor body 200 to move as a whole, while the rotation of the second adjusting member 400 further refines the position of the sun visor body 200, allowing it to be precisely adjusted to the user's desired position.

[0049] Based on this, the sun visor body 200 in this application can be flexibly adjusted in multiple directions, such as up and down, and front and back, to cope with light irradiation of different angles and intensities, thus improving the sunshade effect. At the same time, the rotating connection design of the first adjusting member 300 and the second adjusting member 400 expands the range of movement of the sun visor body 200 while ensuring the compactness of the overall structure of the sun visor and saving interior space.

[0050] In some embodiments, please refer to Figure 1 The sun visor also includes a rotating assembly 500, and the first adjusting member 300 and the second adjusting member 400 are connected to the rotating assembly 500 via the rotating assembly 500.

[0051] Building upon this, compared to the traditional direct connection method, the rotating component 500 makes the connection between the first adjusting member 300 and the second adjusting member 400 more stable and reliable, effectively avoiding the loosening or detachment of the sun visor during frequent adjustments and use. Furthermore, the rotating component 500 enhances the overall structural stability of the sun visor and improves its safety, ensuring users receive stable and reliable sunshade in various usage scenarios.

[0052] In some embodiments, please refer to Figure 2 and combined Figure 3 The rotating assembly 500 includes a first mating part 501 and a second mating part 502. The first mating part 501 is fixedly connected to the first adjusting part 300, and the second mating part 502 is fixedly connected to the second adjusting part 400. The second mating part 502 is connected to the first mating part 501 through a toothed engagement.

[0053] For example, the first mating part 501 is welded to the first adjusting part 300, and the second mating part 502 is welded to the second adjusting part 400.

[0054] Based on this, through the toothed engagement, a tight mechanical engagement is formed between the first mating part 501 and the second mating part 502, improving the stability of the connection and effectively preventing loosening or slippage during adjustment, ensuring the sun visor remains stable during frequent use. Furthermore, the toothed engagement ensures that each adjustment angle of the rotating component 500 has a clear positioning point, allowing users to precisely adjust the angle of the sun visor as needed, achieving a more accurate sun shading effect.

[0055] In addition, each setting of the toothed mesh provides clear feedback, allowing users to intuitively perceive the sun visor's adjustment status and avoid over- or under-adjustment.

[0056] In some embodiments, please refer to Figure 2 and combined Figure 3 The first mating member 501 includes a base 5011, at least one mating cavity 5012, and at least one elastic conical tooth 5013. The base 5011 is provided with a receiving groove 5011a. At least a portion of the second mating member 502 is received in the receiving groove 5011a. The mating cavity 5012 is provided on the wall of the receiving groove 5011a and communicates with the receiving groove 5011a. The elastic conical tooth 5013 includes an elastic part 5013a and a tooth part 5013b. The elastic part 5013a is connected between the cavity wall of the mating cavity 5012 and the tooth part 5013b. The elastic part 5013a is used to apply an elastic force to the tooth part 5013b so that the tooth part 5013b at least partially extends into the receiving groove 5011a and is engaged with the tooth of the second mating member 502.

[0057] For example, the first mating member 501 includes two mating cavities 5012 and two elastic bevel teeth 5013. One elastic bevel tooth 5013 is disposed in one mating cavity 5012. The two mating cavities 5012 are arranged radially apart along the receiving groove 5011a so that the elastic bevel tooth 5013 can be locked on the opposite sides of the tooth portion 5013b.

[0058] Based on this, when the user needs to adjust the angle of the sun visor, an external force is applied (such as manually pushing or rotating the sun visor), causing the second mating member 502 to move relative to the receiving groove 5011a. During the adjustment process, the teeth 5013b of the elastic bevel tooth 5013 are subjected to the pressure of the teeth of the second mating member 502, the elastic part 5013a is compressed, and the teeth 5013b temporarily disengage from the engagement with the second mating member 502. The elastic force of the elastic part 5013a always acts on the teeth 5013b, ensuring that the teeth 5013b can quickly return to their original position after disengaging and re-engage with the next tooth of the second mating member 502.

[0059] As the user continues to apply external force, the second mating part 502 gradually moves within the receiving groove 5011a, and the teeth 5013b of the elastic bevel tooth 5013 sequentially disengage from and re-engage with the teeth of the second mating part 502. With each movement of one tooth's distance, the angle of the sun visor is finely adjusted, allowing the user to gradually adjust it to their ideal position as needed.

[0060] When the user does not need to adjust the angle of the sun visor, the elastic part 5013a applies an elastic force to the toothed part 5013b, ensuring that the toothed part 5013b always fits tightly against the teeth of the second mating part 502, forming a stable mechanical engagement. This design effectively prevents the connection from loosening, ensuring that the sun visor remains stable during frequent adjustments and use. The elastic part 5013a can absorb the impact force generated during adjustment, reducing wear between the toothed part 5013b and the second mating part 502, and extending the service life of the rotating assembly 500.

[0061] In some embodiments, please refer to Figure 2 and combined Figure 6 The first mating component 501 in this application also includes a fixing head 5014. The mating cavity 5012 penetrates the side wall of the base 5011. The fixing head 5014 is located on the outer wall of the base 5011 and covers the opening of the mating cavity 5012 on the outer wall of the base 5011. The fixing head 5014 is fixedly connected to the elastic component.

[0062] Based on this, the fixed connection between the fixed head 5014 and the elastic element ensures that the elastic part 5013a is always in the correct position during the adjustment process, and can apply elastic force evenly to the tooth part 5013b, making the adjustment process smoother and more efficient.

[0063] For example, the elastic element can be a spring.

[0064] In some embodiments, please refer to Figure 3 and combined Figure 4The second mating member 502 includes a gear portion 5022 and a column 5021 that are rotatably connected. The gear portion 5022 is used to engage with the tooth portion 5013b of the elastic bevel tooth 5013 (not shown in the figure), and the column 5021 is connected between the gear portion 5022 and the second adjusting member 400 (not shown in the figure).

[0065] Based on this, the column 5021, as the connecting component between the gear part 5022 and the second adjusting member 400, can evenly transmit the adjusting force to the second adjusting member 400, avoid local stress concentration, and improve the fatigue resistance of the overall structure.

[0066] In some embodiments, please refer to Figure 2 and combined Figure 4 , Figure 5 The circumferential surface of the column 5021 is provided with a limiting groove 5021a. The rotating assembly 500 also includes a limiting member, which is used to cooperate with the limiting groove 5021a. The radial dimension of the limiting member is larger than the radial dimension of the receiving groove 5011a.

[0067] For example, the limiting element is an elastic ring.

[0068] Based on this, the cooperation between the limiting member and the limiting groove 5021a ensures that the second mating member 502 can stably stay in the preset position during the adjustment process, avoiding accidental displacement caused by external force or vibration. The radial dimension of the limiting member is larger than the radial dimension of the receiving groove 5011a, which can effectively prevent the second mating member 502 from accidentally dislodging from the receiving groove 5011a or excessively extending into the receiving groove 5011a during the adjustment process, thereby improving the safety of the sun visor.

[0069] In some embodiments, please refer to Figure 1 The first adjusting member 300 includes a plurality of adjusting rods 301, and the sun visor includes a plurality of rotating assemblies 500. The ends of the plurality of adjusting rods 301 are rotatably connected through the rotating assemblies 500.

[0070] Based on this, during the adjustment process, when the user needs to adjust the angle of the sun visor, the user can pull the sun visor body 200 according to the sunlight conditions, and the corresponding adjustment rod 301 will rotate. The adjustment rod 301 changes its own angle through the rotating component 500. Since each adjustment rod 301 is independently controlled, differentiated adjustment of different areas of the sun visor can be achieved, providing users with a good user experience.

[0071] In some embodiments, please refer to Figure 1 The sun visor includes multiple rotating components, and the first adjusting member 300 is rotatably connected to the mounting base 100 via the rotating component 500.

[0072] Based on this, the present application can enhance the adjustment flexibility of the first adjustment member 300, while meeting the user's need for pulling out the sun visor body 200.

[0073] In some embodiments, please refer to Figure 1 The second adjusting component 400 is rotatably connected to the sunshade body 200 via a rotating assembly 500.

[0074] Based on this, the sun visor body 200 is usually equipped with components such as a makeup mirror and a camera. After the first adjustment component 300 completes the initial positioning, the user can further fine-tune the sun visor body 200 by rotating the component 500 to meet the user's adjustment needs.

[0075] It should be noted that the connection method between the first adjusting member 300 and the mounting base 100 and the connection method between the second adjusting member 400 and the sunshade body 200 can refer to the connection method between the first adjusting member 300 and the second adjusting member 400 described above, and will not be repeated here.

[0076] In some embodiments, the sunshade body 200 is detachably connected to the mounting base 100.

[0077] For example, the sunshade body 200 is fastened to the mounting base 100.

[0078] Based on this, when the sun visor needs to be used, the user only needs to press the fastening part lightly to release the fastening state, and the sun visor body 200 can be quickly detached from the mounting base 100 to adjust its position. When the sun visor needs to be stored, the user can also quickly fasten it to the mounting base 100 to meet the user's storage needs.

[0079] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any changes or substitutions within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A sun visor characterized by, The utility model relates to a sun visor, which comprises: a mounting base (100); a sun visor body (200); a first adjusting member (300) having one end rotatably connected to the mounting base (100); a second adjusting member (400) having one end rotatably connected to the first adjusting member (300) away from the mounting base (100) and the other end rotatably connected to the sun visor body (200).

2. The visor of claim 1, wherein Further comprising: a rotating assembly (500) connecting the first adjusting member (300) and the second adjusting member (400).

3. The visor of claim 2, wherein The rotating assembly (500) comprises: a first fitting member (501) fixedly connected to the first adjusting member (300); a second fitting member (502) fixedly connected to the second adjusting member (400) and toothingly connected to the first fitting member (501).

4. The visor of claim 3, wherein The first fitting member (501) comprises: a base (5011) provided with a receiving groove (5011a) in which at least part of the second fitting member (502) is accommodated; at least one fitting cavity (5012) provided on the wall surface of the receiving groove (5011a) and in communication with the receiving groove (5011a); at least one elastic bevel gear (5013) comprising an elastic part (5013a) and a tooth part (5013b), the elastic part (5013a) being connected between the cavity wall of the fitting cavity (5012) and the tooth part (5013b), the elastic part (5013a) being used to apply an elastic force to the tooth part (5013b) to make the tooth part (5013b) at least partially extend into the receiving groove (5011a) and toothingly connected to the second fitting member (502).

5. The visor of claim 4, wherein The second fitting member (502) comprises a gear part (5022) and a column (5021) rotatably connected, the gear part (5022) being used to toothingly connect with the elastic bevel gear (5013), and the column (5021) being connected between the gear part (5022) and the second adjusting member (400).

6. The visor of claim 5, wherein The circumferential surface of the column (5021) is provided with a limiting groove (5021a), and the rotating assembly (500) further comprises a limiting member used to be connected with the limiting groove (5021a), the radial dimension of the limiting member being greater than the radial dimension of the receiving groove (5011a).

7. The visor of claim 2, wherein The first adjusting member (300) comprises a plurality of adjusting rods (301), the sun visor comprises a plurality of the rotating assemblies (500), and the end portions of the plurality of adjusting rods (301) are rotatably connected through the rotating assemblies (500).

8. The visor of claim 2, wherein The sun visor comprises a plurality of the rotating assemblies (500), and the first adjusting member (300) and the mounting base (100) are rotationally connected through the rotating assemblies (500); and / or, The second adjusting member (400) and the sun visor body (200) are rotationally connected through the rotating assemblies (500).

9. The visor of any one of claims 1-8, wherein, The sun visor body (200) and the mounting base (100) are detachably connected.

10. A vehicle characterized by comprising: Comprise: The sun visor according to any one of claims 1-9.