Anti-deformation eyesight protection posture correcting table

By setting a cross-arranged reinforcing rib structure at the bottom of the reference platform of the learning aid, the problem of insufficient external support at the support point is solved, thereby achieving stable support and anti-deformation capability of the equipment and improving the user experience.

CN224069979UActive Publication Date: 2026-04-03WUHAN CAMBRIDGE TREE TRADING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing learning aids lack sufficient support in areas outside the support points, causing significant deformation and shaking during use, which negatively impacts the user experience.

Method used

A first reinforcing section and a second reinforcing section are provided at the bottom of the reference platform. The reinforcing ribs of the first and second reinforcing sections are arranged in intersecting directions to specifically strengthen the structural strength of the first and second zones, thereby increasing the support capacity and resistance to deformation.

Benefits of technology

This improved the stability of the learning aids, reduced deformation and shaking, and ensured effective writing support and reliable operation for users.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224069979U_ABST
    Figure CN224069979U_ABST
Patent Text Reader

Abstract

The utility model discloses an anti-deformation eyesight protection posture correcting table, and relates to the technical field of eye protection tables, the anti-deformation eyesight protection posture correcting table comprises a reference table and a reinforcing structure, the reference table is provided with a first area and a second area, and the reference table is used for providing support for user writing; the reinforcing structure comprises a first reinforcing part and a second reinforcing part which are both arranged at the bottom of the standard table, the first reinforcing part is arranged corresponding to the first area, the second reinforcing part is arranged corresponding to the second area, and the first reinforcing part and the second reinforcing part each comprise a plurality of reinforcing ribs arranged at intervals. And the arrangement directions of the reinforcing ribs of the first reinforcing part and the reinforcing ribs of the second reinforcing part are intersected. Through the arrangement, the structural strength of the first area and the second area is specifically improved and enhanced, so that the use stability of the anti-deformation eyesight protection posture correcting table in the writing process of a user is integrally improved, the deformation and shaking amplitude of the anti-deformation eyesight protection posture correcting table is reduced, and the use experience of the user is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of learning aids technology, and in particular to a deformation-resistant vision protection posture correction table. Background Technology

[0002] Students often bend over, hunch their necks, or hunch over their desks while studying. If they maintain these incorrect postures for a long time, they can develop bad reading and writing habits. On the one hand, this can easily lead to spinal deformities, and on the other hand, it can greatly increase the probability of children developing myopia or worsening their myopia. Adolescents are in a critical period of growth and development, and this will inevitably have irreversible negative effects on their vision and normal physical development. Therefore, it is especially important to ensure that students maintain correct posture in various learning scenarios.

[0003] Existing products are assistive devices designed to guide users' posture during various activities such as reading, writing, and handicrafts, in scenarios including learning, writing, and office work. While most existing products focus on posture correction and writing assistance, their core support capabilities and structural strength remain insufficient. For example, some existing products rely on only four support points for stability. To ensure stability, these four support points are spaced far apart and positioned close to the product's edges, resulting in insufficient support for other parts of the product. This leads to noticeable deformation and wobbling during use, negatively impacting the user experience. Utility Model Content

[0004] The main purpose of this invention is to propose a deformation-resistant vision protection posture correction platform, which aims to improve the insufficient support capacity of existing products in other parts besides the support points, which causes the product to deform and shake significantly during use, affecting the user's experience.

[0005] To achieve the above objectives, the present invention proposes a deformation-resistant vision protection posture correction table, comprising:

[0006] A reference platform, having a first area and a second area, is used to provide support for user writing; and...

[0007] The reinforcing structure includes a first reinforcing part and a second reinforcing part, both disposed at the bottom of the reference stage. The first reinforcing part is disposed corresponding to the first area, and the second reinforcing part is disposed corresponding to the second area. Both the first reinforcing part and the second reinforcing part include a plurality of reinforcing ribs arranged at intervals. The arrangement directions of the reinforcing ribs of the first reinforcing part and the reinforcing ribs of the second reinforcing part intersect.

[0008] In one embodiment, the reinforcing ribs of the first reinforcing part are all strip-shaped and are arranged in a cross pattern to form a first mesh structure;

[0009] And / or, the reinforcing ribs of the second reinforcing part are all arranged in strip shape, and the reinforcing ribs of the second reinforcing part are arranged in a cross pattern to form a second mesh structure.

[0010] In one embodiment, the shape of the mesh in the first mesh structure includes one of rhombuses, triangles, or rectangles; and / or,

[0011] The shape of the mesh in the second mesh structure includes one of rhombus, triangle, or rectangle.

[0012] In one embodiment, the corners of the first mesh structure are rounded; and / or,

[0013] The corners of the second mesh structure are rounded.

[0014] In one embodiment, the extension line of the reinforcing rib of the first reinforcing part intersects the extension line of the reference platform in its width and length directions.

[0015] In one embodiment, the reference platform includes a plane and a side enclosure disposed around the periphery of the main body;

[0016] The first reinforcing part is disposed on the surface of the main body, and at least one end of the reinforcing rib of the first reinforcing part extends to connect to the side enclosure.

[0017] In one embodiment, the area of ​​the first region is A, the number of reinforcing ribs of the first reinforcing part is a, the area of ​​the second region is B, the number of reinforcing ribs of the second reinforcing part is b, and a / A≤b / B.

[0018] In one embodiment, the second region includes a multifunctional mounting area, wherein the lower end face of the reference stage is partially raised within the multifunctional mounting area to form a protrusion in a direction away from the upper end face of the reference stage, and partially recessed to form a groove in a direction toward the upper end face of the reference stage.

[0019] The second reinforcing part includes a multi-functional safety reinforcing part corresponding to the multi-functional mounting area. The multi-functional safety reinforcing part includes a plurality of reinforcing ribs arranged at intervals. The extension lines of the reinforcing ribs of the multi-functional safety reinforcing part intersect at most one of the extension lines of the reference platform in its width direction and length direction. The reinforcing ribs of the multi-functional safety reinforcing part are connected to the protrusion and the groove.

[0020] In one embodiment, the second region further includes a support region;

[0021] The bottom of the reference platform is also provided with a support structure for adjusting the tilt angle. The support structure is located in the support area and is rotatably arranged along the extension line of the length direction of the reference platform or the extension line of the width direction of the reference platform.

[0022] The second reinforcing part further includes a supporting reinforcing part corresponding to the supporting area. The supporting reinforcing part is located on one side of the radial direction of the rotation axis of the supporting structure. The supporting reinforcing part includes a plurality of spaced reinforcing ribs. The reinforcing ribs of the supporting reinforcing part extend axially along the rotation axis of the supporting structure and extend radially along the rotation axis of the supporting structure.

[0023] In one embodiment, the reinforcing structure further includes a third reinforcing part disposed on the support structure. The third reinforcing part includes a plurality of spaced reinforcing ribs. The reinforcing ribs of the third reinforcing part extend axially along the axis of rotation of the support structure and extend radially along the axis of rotation of the support structure.

[0024] In one embodiment, the second area further includes an anti-slip area;

[0025] The second reinforcing part also includes an anti-slip reinforcing part corresponding to the anti-slip area. The anti-slip reinforcing part includes a plurality of reinforcing ribs arranged at intervals. The extension lines of the reinforcing ribs of the anti-slip reinforcing part intersect at most one of the extension lines of the reference platform in its width direction and length direction.

[0026] The anti-deformation vision protection posture correction platform also includes an anti-slip pad, which is located at the end of the anti-slip reinforcement away from the reference platform.

[0027] In one embodiment, the reference platform and the reinforcing structure are integrally formed.

[0028] In the technical solution of this utility model, when a user uses the anti-deformation vision protection posture correction table, the user writes in the first area, with both the user's hands and elbows placed on the reference table, which provides support for the user's writing. At this time, the portion of the reference table in the second area mainly bears the downward pressure generated during the user's writing process, providing primary support for the user's writing. The portion of the reference table in the first area mainly bears the stress deformation forced upon the reference table during the user's writing process, providing auxiliary support for the user's writing. Since the first reinforcing part is set corresponding to the first area and the second reinforcing part is set corresponding to the second area, and the arrangement directions of the reinforcing ribs of the first and second reinforcing parts intersect, the first and second reinforcing parts can respectively provide targeted structural strength reinforcement to the first and second areas. The second reinforcing part can significantly increase the support capacity of the reference table in the second area to ensure the support effect for the user's writing. The first reinforcing part can significantly increase the deformation resistance of the reference table in the first area, thereby preventing excessive stress deformation of the reference table during the user's writing process, and thus ensuring stable support. By setting up the platform in this way, and according to the different stress characteristics of the first and second zones, first and second reinforcing parts with different arrangements are set at the bottom of the reference platform corresponding to the first and second zones, so as to specifically improve and strengthen the structural strength of the first and second zones, thereby improving the overall stability of the anti-deformation vision protection posture correction platform during the user's writing process, and reducing or even avoiding the deformation and shaking amplitude of the anti-deformation vision protection posture correction platform. Attached Figure Description

[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0030] Figure 1 A schematic diagram of the structure of an embodiment of the anti-deformation vision protection posture correction table provided by this utility model;

[0031] Figure 2 for Figure 1 A diagram showing the upward view of a vision-protecting posture-correcting platform designed to prevent deformation.

[0032] Explanation of icon numbers:

[0033] 100. Anti-deformation vision protection posture correction platform; 1. Reference platform; 11. Main body; 12. Side panel; 13. Protrusion; 14. Groove; 2. Reinforcing structure; 21. First reinforcing part; 22. Second reinforcing part; 221. Multifunctional safety reinforcing part; 222. Support reinforcing part; 223. Anti-slip reinforcing part; 23. Third reinforcing part; 3. Supporting structure; 4. Anti-slip pad; 5. Corrector.

[0034] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0035] 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.

[0036] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0037] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0038] This invention proposes a deformation-resistant vision protection posture corrector. It aims to improve upon existing products where insufficient support in areas other than the support points leads to significant deformation and wobbling during use, thus affecting the user experience.

[0039] Please see Figure 1-2In one embodiment of this utility model, the anti-deformation vision protection posture correction table 100 includes a reference table 1 and a reinforcing structure 2. The reference table 1 has a first area and a second area. The reference table 1 is used to provide support for the user's writing. The reinforcing structure 2 includes a first reinforcing part 21 and a second reinforcing part 22, both disposed at the bottom of the reference table 1. The first reinforcing part 21 is disposed corresponding to the first area, and the second reinforcing part 22 is disposed corresponding to the second area. Both the first reinforcing part 21 and the second reinforcing part 22 include a plurality of reinforcing ribs arranged at intervals. The arrangement direction of the reinforcing ribs of the first reinforcing part 21 and the reinforcing ribs of the second reinforcing part 22 intersects.

[0040] It should be noted that, in this utility model, the width direction of the reference platform 1 is the direction in which the anti-deformation vision protection posture correction platform 100 approaches or moves away from the user, that is, the front-to-back direction when the user is facing the anti-deformation vision protection posture correction platform 100. The length direction of the reference platform 1 is the direction in which the user's left and right hands are facing each other when the user is facing the anti-deformation vision protection posture correction platform 100.

[0041] In the technical solution of this utility model, when a user uses the anti-deformation vision protection posture correction table 100, the user writes in the first area, with both the user's hands and elbows resting on the reference table 1. The reference table 1 provides support for the user's writing. At this time, the portion of the reference table 1 located in the second area mainly bears the downward pressure generated during the user's writing process, providing primary support for the user's writing. The portion of the reference table 1 located in the first area mainly bears the stress deformation forced upon the reference table 1 during the user's writing process, providing auxiliary support for the user's writing. Since the first reinforcing part 21 is provided corresponding to the first area, the second reinforcing part... Part 22 is positioned corresponding to the second area, and the reinforcing ribs of the first reinforcing part 21 and the reinforcing ribs of the second reinforcing part 22 intersect in their respective directions. In this configuration, the first reinforcing part 21 and the second reinforcing part 22 can respectively provide targeted structural strength reinforcement to the first and second areas. The second reinforcing part 22 can significantly increase the support capacity of the reference platform 1 in the second area, ensuring effective support for the user's writing. The first reinforcing part 21 can significantly increase the deformation resistance of the reference platform 1 in the first area, preventing excessive stress deformation during the user's writing process and thus ensuring a better user experience. This configuration, by setting the first reinforcing part 21 and the second reinforcing part 22 with different arrangements at the bottom of the reference platform 1 corresponding to the first and second areas according to their different stress characteristics, specifically enhances the structural strength of the first and second areas. This improves the overall stability of the anti-deformation vision protection posture correction platform 100 during the user's writing process, reduces the deformation and swaying amplitude of the anti-deformation vision protection posture correction platform 100, and improves user reliability.

[0042] In this invention, the reference platform 1 has a certain size, constructing a certain learning area. The reading stand, located at the end furthest from the user, can maintain a suitable viewing distance from the user. The raised reading distance can maintain the eye distance and viewing angle. The hunched reading posture and the under-nose gaze can affect the blood supply to the eyes, easily causing eye fatigue. The correct viewing distance can prevent the image from being too close, which would cause the eye axis to lengthen. The correct viewing distance further helps to maintain the correct sitting posture, which in turn can further enhance the blood supply to the eyes and prevent eye fatigue.

[0043] Furthermore, the anti-deformation vision protection posture correction platform 100, designed ergonomically, provides effective support for the elbow and wrist supports of the reference platform 1, assisting the human body in maintaining a correct posture for a longer period. The eye protection platform also includes a posture corrector design, helping users achieve a proper eye protection distance of one fist, one foot, and one inch between the platform and the desktop.

[0044] It is understood that the present invention does not limit the shape of the reinforcing ribs of the first reinforcing part 21. In one embodiment of the present invention, the reinforcing ribs of the first reinforcing part 21 are arranged in a columnar shape and are arranged in a cross pattern.

[0045] In another embodiment of this utility model, the reinforcing ribs of the first reinforcing part 21 are all arranged in strip shape, and the reinforcing ribs of the first reinforcing part 21 are arranged in a cross pattern to form a first mesh structure. With this arrangement, the reinforcing ribs of the first reinforcing part 21, in conjunction with the assembly of the first mesh structure, allow each reinforcing rib in the first mesh structure to act as a force transmission path when the reference platform 1 provides support to the user, participating in the decomposition of the supporting force. At this time, the first reinforcing part 21 can not only decompose the pressure on the portion of the reference platform 1 located in the first area, but also, since the reinforcing ribs of the first reinforcing part 21 have formed the first mesh structure, if the reference platform 1 deforms, it needs to cause the first mesh structure to deform as well. This increases the deformation resistance of the reference platform 1, ensuring the stability of the anti-deformation vision protection posture correction platform 100 in use.

[0046] In other embodiments of this utility model, the reinforcing ribs of the first reinforcing part 21 may also be configured in other shapes, and this utility model does not limit them.

[0047] Furthermore, this utility model does not limit the specific value of the thickness of the reinforcing rib of the first reinforcing part 21. In this utility model, the thickness of the reinforcing rib is C, where 1mm≤C≤3mm.

[0048] Specifically, in one embodiment of this utility model, the thickness of the reinforcing rib of the first reinforcing part 21 can be set to 1 mm; in another embodiment of this utility model, the thickness of the reinforcing rib of the first reinforcing part 21 can be set to 2 mm; and in yet another embodiment of this utility model, the thickness of the reinforcing rib of the first reinforcing part 21 can also be set to 3 mm. In actual implementation, the thickness can be selected according to requirements, as long as it is ensured that the thickness of the reinforcing rib of the first reinforcing part 21 is within the specified range.

[0049] Similarly, the present invention does not limit the shape of the reinforcing ribs of the second reinforcing part 22. In one embodiment of the present invention, the reinforcing ribs of the first reinforcing part 21 are arranged in a columnar shape and are arranged in a cross pattern.

[0050] In another embodiment of this utility model, the reinforcing ribs of the second reinforcing part 22 are all arranged in strip shape, and the reinforcing ribs of the second reinforcing part 22 are arranged in a cross pattern to form a second mesh structure. With this arrangement, the reinforcing ribs of the second reinforcing part 22, in conjunction with the assembly of the second mesh structure, allow each reinforcing rib in the second mesh structure to act as a force transmission path when the reference platform 1 provides support to the user, thus participating in the decomposition of the supporting force. At this time, the second reinforcing part 22 located in the second zone can decompose the pressure at the support point of the reference platform 1, thereby improving the support capacity of the reference platform 1, further ensuring the structural strength of the reference platform 1 in the second zone, and thus improving the support capacity of the reference platform 1 and ensuring its support stability.

[0051] In other embodiments of this utility model, the reinforcing ribs of the second reinforcing part 22 may also be configured in other shapes, and this utility model does not limit them.

[0052] Furthermore, this utility model does not limit the specific value of the thickness of the reinforcing rib of the second reinforcing part 22. In this utility model, the thickness of the reinforcing rib is D, where 1mm≤D≤3mm.

[0053] Specifically, in one embodiment of this utility model, the thickness of the reinforcing rib of the second reinforcing part 22 can be set to 1 mm; in another embodiment of this utility model, the thickness of the reinforcing rib of the second reinforcing part 22 can be set to 2 mm; and in yet another embodiment of this utility model, the thickness of the reinforcing rib of the second reinforcing part 22 can also be set to 3 mm. In actual implementation, the thickness can be selected according to requirements, as long as it is ensured that the thickness of the reinforcing rib of the second reinforcing part 22 is within the specified range.

[0054] It should be noted that this invention does not limit the shape of the meshes in the first and second mesh structures. In one embodiment, the meshes of the first and second mesh structures can be rhomboid; in another embodiment, they can be rectangular; in yet another embodiment, they can be triangular; and in other embodiments, they can be two or three of the following shapes: rhomboid, rectangular, and triangular. The appropriate shape can be selected based on the specific requirements.

[0055] Specifically, in this utility model, the mesh shape of the first mesh structure includes a rhombus shape; the mesh shape of the second mesh structure includes a rectangle shape.

[0056] To further enhance the structural strength of the first and second mesh structures and ensure their support for the reference platform 1, the corners of the meshes in both structures are rounded. It is understood that the corners of the meshes in the first mesh structure are the intersections of the reinforcing ribs of the first reinforcing part 21. Rounding these corners further strengthens the connection stability of the intersecting reinforcing ribs of the first mesh structure, preventing the reinforcing ribs of the first reinforcing part 21 from breaking off at the intersections, thereby increasing the structural strength of the first mesh structure and ensuring its stability.

[0057] Similarly, the corners of the mesh of the second mesh structure are the intersections of the reinforcing ribs of the second reinforcing part 22. Setting these corners as rounded corners can further enhance the connection stability of the intersecting reinforcing ribs of the second mesh structure, prevent the reinforcing ribs of the second reinforcing part 22 from breaking off at the intersections, thereby increasing the structural strength of the second mesh structure and ensuring its stability.

[0058] Of course, in other embodiments of this utility model, cylindrical processed parts can also be provided at the intersection. Such a setting can also ensure the structural strength and structural stability of the first mesh structure and the second mesh structure.

[0059] Furthermore, it is understood that during the user's writing process, the portion of the reference platform 1 in the first area is severely deformed. In order to further enhance the deformation resistance of the reference platform 1 in this area, in one embodiment of the present invention, the extension line of the reinforcing rib of the first reinforcing part 21 intersects the extension line of the reference platform 1 in its width and length directions. Since the reinforcing ribs of the first reinforcing part 21 are all inclined in the length direction and the width direction of the reference platform 1, when the user uses the anti-deformation vision protection posture correction table 100 to write, regardless of whether the reference platform 1 deforms along its length direction or along its width direction in the part within the first area, the reinforcing beams of the first reinforcing part 21 can support the reference platform 1 to jointly resist the deformation of the reference platform 1, thereby improving the deformation resistance of the reference platform 1. Furthermore, when the reference platform 1 is subjected to an external force along its width direction or along its length direction, the multiple first reinforcing parts 21 and the multiple second reinforcing parts 22 can all participate in the decomposition of the external force to distribute the external force received by the reference platform 1 to each part of the reference platform 1 within the first area, thereby improving the support capacity of the anti-deformation vision protection posture correction table 100.

[0060] Furthermore, in another embodiment of this utility model, the reference platform 1 includes a plane 11 and a side enclosure 12 disposed around the main body 11. The first reinforcing part 21 is disposed on the surface of the main body 11, and at least one end of the reinforcing rib of the first reinforcing part 21 extends to connect to the side enclosure 12. Connecting the reinforcing rib of the first reinforcing part 21 to the side enclosure 12 not only improves the aesthetics of the anti-deformation vision protection posture correction platform 100 and prevents the first reinforcing part 21 from being exposed on the main body 11, thus affecting the aesthetics of the anti-deformation vision protection posture correction platform 100, but also, the connection between the reinforcing rib of the first reinforcing part 21 and the side enclosure 12 can also form multiple side enclosure reinforcing frames inside the side enclosure 12. Thus, the formation of multiple side enclosure reinforcing frames can improve the structural strength of the reference platform 1 at its edges, thereby improving the structural stability of the reference platform 1 at its edges.

[0061] It is also understandable that, since the deformation of the portion of the reference platform 1 located in the second area is small during the user's writing process, the reinforcing ribs of the second reinforcing part 22 do not need to be inclined in the length and width directions of the reference platform 1.

[0062] Furthermore, since the reference platform 1 plays a major supporting role in the second area, in one embodiment of this invention, the area of ​​the first area is A, the number of reinforcing ribs of the first reinforcing part 21 is a, the area of ​​the second area is B, and the number of reinforcing ribs of the second reinforcing part 22 is b, where a / A ≤ b / B. With this configuration, the density of the reinforcing ribs in the second reinforcing part 22 is higher than the density of the reinforcing ribs in the first reinforcing part 21. The second reinforcing part 22, located in the second area, can further increase the support capacity of the reference platform 1 at that location, ensuring effective support for the user's writing.

[0063] It should be noted that the second region includes multiple different areas depending on the function. For example, in one embodiment of this utility model, the second region includes a multi-functional mounting area. The lower end face of the reference platform 1 is partially raised in the multi-functional mounting area to form a protrusion 13 in the direction away from the upper end face of the reference platform 1, and partially recessed to form a groove 14 in the direction towards the upper end face of the reference platform 1. The second reinforcing part 22 includes a multi-functional safety reinforcing part 221 corresponding to the multi-functional mounting area. The multi-functional safety reinforcing part 221 includes multiple spaced reinforcing ribs. The extension lines of the reinforcing ribs of the multi-functional safety reinforcing part 221 intersect at most one of the extension lines of the reference platform 1 in its width direction and length direction. The reinforcing ribs of the multi-functional safety reinforcing part 221 connect the protrusion 13 and the groove 14.

[0064] In this embodiment, the height of the protrusion 13 is relatively high. Correspondingly, the width of the reinforcing rib of the multifunctional reinforcing part corresponding to the protrusion 13 is reduced. The reinforcing rib of the multifunctional reinforcing part reduces the improvement of the structural strength of the protrusion 13. Therefore, by connecting the reinforcing rib of the multifunctional safety reinforcing part 221 to the protrusion 13 and the bottom of the groove, the height of the groove 14 is relatively low. Correspondingly, the width of the reinforcing rib of the multifunctional reinforcing part corresponding to the groove 14 is increased to ensure the improvement of the structural strength of the protrusion 13, thereby improving the structural strength of the multifunctional safety area.

[0065] Furthermore, in this invention, the anti-deformation vision protection posture correction table 100 also includes functional components. These functional components are mounted on the upper surface of the reference table 1 and are positioned corresponding to the multi-functional mounting area. The functional components include at least one of a lamp, a reading rack, a shelf, and an electronic device. This configuration allows the reference table 1 to integrate multiple functions, enabling users to customize the system according to their needs, thus improving flexibility, convenience, and user experience.

[0066] It is understandable that different functional components serve different purposes. When the functional component is a lamp, its main function is to provide illumination for the user. The lamp can be rechargeable or plugged in, as long as it meets the user's lighting needs. When the functional component is a reading stand, it is used to place books for easy reading. When the functional component is a time manager, it meets the user's need for time management. It should be understood that the reading stand should be directly facing the user's face during use to achieve a correct posture for reading and writing. When the functional component is a shelf, the type and size of the shelf are not limited; it can be a pen holder or other shelf with storage functions. When the functional component is an electronic device, it can be a tablet computer, a reading pen, etc., and this utility model does not impose any restrictions on this.

[0067] With this configuration, the anti-deformation vision protection posture correction table 100 can assist in integrating important elements that meet the needs of spine protection and eye protection. In the learning scenario, it integrates eye-protection light, a non-glare eye-protection table surface, a time manager, and a reading stand that helps maintain viewing distance. Furthermore, by adjusting the angle of the panel that integrates the above-mentioned devices, the overall viewing distance of the learning environment can be adjusted synchronously. The eye-protection light with eye-protection effect can illuminate the eye-protection table area at an eye-protection illuminance, achieving the effect of synchronous posture correction, light source management, and time management in reading and writing learning scenarios.

[0068] In another embodiment of the present invention, the second region further includes a support region, and the bottom of the reference platform 1 is provided with a support structure 3 for adjusting the tilt angle. The support structure 3 is located in the support region and is rotatably arranged along the extension line of the length direction or the extension line of the width direction of the reference platform 1. The second reinforcing part 22 further includes a supporting reinforcing part 222 corresponding to the support region. The supporting reinforcing part 22 is located on one side of the radial direction of the rotation axis of the support structure 3. The supporting reinforcing part 222 includes a plurality of spaced reinforcing ribs. The reinforcing ribs of the supporting reinforcing part 222 extend axially along the rotation axis of the support structure 3 and extend radially along the rotation axis of the support structure 3.

[0069] It should be noted that, in order to ensure the support stability of the support structure 3, in this field, the flip-type support structure 3 is usually set at an obtuse angle with the bottom surface of the reference platform 1 when it is in the support state, so as to prevent the support structure 3 from automatically detaching from the support state during the support process.

[0070] It is understood that when the support structure 3 is in the supported state, it not only applies an upward force to the reference platform 1, but also a radial force on the axis of rotation of the support structure 3. At this time, some of the reinforcing ribs of the support reinforcement 222 extend radially along the axis of rotation of the support structure 3. This increases the resistance of the reference platform 1 to external forces in this direction and also resists the tendency of the support structure 3 to move relative to the reference platform 1 in the radial direction of its axis of rotation, thereby preventing damage to the anti-deformation vision protection posture correction platform 100. Furthermore, some of the reinforcing ribs of the support reinforcement 222 extend axially along the axis of rotation of the support structure 3, so that the reinforcing ribs of the support reinforcement 222 are arranged crosswise, adding multiple intersections in the radial direction of rotation of the support structure 3, thereby forming multiple grids. This further reduces the probability of deformation of the reinforcement extending radially along the axis of rotation of the support structure 3, ensuring support for the reference platform 1.

[0071] Furthermore, to ensure the structural strength of the support structure 3, in a further embodiment of this utility model, the reinforcing structure 2 further includes a third reinforcing part 23. The third reinforcing part 23 is disposed on the support structure 3 and includes a plurality of spaced reinforcing ribs. A portion of the reinforcing ribs of the third reinforcing part 23 extends axially along the rotation axis of the support structure 3, and a portion extends radially along the rotation axis of the support structure 3. With this configuration, when the support structure 3 is in the supported state, some of the reinforcing ribs of the third reinforcing part 23 can increase the structural strength of the support structure 3, while the other portion extends axially along the rotation axis of the support structure 3, thereby causing the reinforcing ribs of the support reinforcing part 222 to be intersecting to form a plurality of grids on the support structure 3, thereby further enhancing the structural strength of the support structure 3.

[0072] It should be noted that, in this utility model, the reference platform 1 of the anti-deformation vision protection posture correction platform 100 can be in an inclined state (relative to the user, the viewing distance is raised) (relative to the eyes looking directly at the desktop, it can maintain a level gaze and reduce the probability of eye fatigue), or it can be in a state parallel to the panel, improving the applicability of the scene.

[0073] In another embodiment of this utility model, the second region further includes an anti-slip area, and the second reinforcing part 22 further includes an anti-slip reinforcing part 223 corresponding to the anti-slip area. The anti-slip reinforcing part 223 includes a plurality of spaced reinforcing ribs, and the extension lines of the reinforcing ribs of the anti-slip reinforcing part 223 intersect at most one of the extension lines of the reference platform 1 in its width direction and length direction. The anti-deformation vision protection posture correction platform 100 also includes an anti-slip pad 4, which is disposed at the end of the anti-slip reinforcing part 223 away from the reference platform 1. With this arrangement, the high density of reinforcing ribs in the anti-slip reinforcing part 223 can improve the structural strength at that location, and at the same time, multiple intersections are formed. In this case, placing the anti-slip pad 4 at the end of the anti-slip reinforcing part 223 away from the reference platform 1 can ensure the connection stability between the anti-slip pad 4 and the anti-slip reinforcing part 223, thereby preventing the anti-slip pad 4 from detaching.

[0074] Furthermore, in order to further ensure the connection strength between the reference platform 1 and the plurality of reinforcing parts, as well as the force transmission and support effects of the plurality of reinforcing parts, in one embodiment of the present invention, the reference platform 1 and the plurality of reinforcing parts are integrally formed.

[0075] It should also be noted that, in this utility model, the anti-deformation vision protection posture correction table 100 also includes an orthosis 5. When the user uses the anti-deformation vision protection posture correction table 100 for study, he or she presses against the orthosis 5, thereby facilitating his or her reading and writing, providing him or her with a more suitable angle for reading or writing, further correcting his or her sitting posture, so that he or she can more easily maintain a comfortable and healthy sitting posture for a long time, and reduce damage to vision and cervical spine, and reduce the probability of myopia, hunchback and spinal curvature.

[0076] It is understandable that the corrector 5 is designed to help users maintain a correct sitting posture. A correct sitting posture can prevent users from maintaining an unhealthy posture and play a role in protecting the spine and eyes. The raised visual distance can help users always keep their heads up and upright. With the auxiliary support of the anti-deformation vision protection posture correction platform 100, the arms form a more stable posture correction effect.

[0077] In summary, the anti-deformation vision protection posture corrector 100, based on ergonomic design, provides effective support in the elbow and wrist rests, assisting the body in maintaining a correct posture for a longer period. The posture corrector 5 further includes a design to help users achieve a proper eye protection distance of one fist, one foot, and one inch between the posture corrector and the desktop surface.

[0078] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A distortion-proof vision-protecting posture table, characterized by, The utility model relates to a reference platform, which comprises: a reference platform having a first area and a second area, the reference platform being used to provide support for user writing; and a reinforcing structure comprising a first reinforcing part and a second reinforcing part, both of which are arranged on the bottom of the reference platform, the first reinforcing part being arranged corresponding to the first area, the second reinforcing part being arranged corresponding to the second area, the first reinforcing part and the second reinforcing part both comprising a plurality of reinforcing ribs arranged at intervals, the reinforcing ribs of the first reinforcing part intersecting the reinforcing ribs of the second reinforcing part in the arrangement direction.

2. The anti-degeneration vision protection orthostatic table according to claim 1, wherein, The reinforcing ribs of the first reinforcing part are all arranged in the shape of a strip, and the reinforcing ribs of the first reinforcing part are arranged in a cross pattern to form a first mesh structure; and / or the reinforcing ribs of the second reinforcing part are all arranged in the shape of a strip, and the reinforcing ribs of the second reinforcing part are arranged in a cross pattern to form a second mesh structure.

3. The anti-degeneration vision protection orthostatic table according to claim 2, wherein, The shape of the mesh of the first mesh structure comprises one of a rhombus, a triangle or a rectangle; and / or the shape of the mesh of the second mesh structure comprises one of a rhombus, a triangle or a rectangle.

4. The anti-degeneration vision protection orthostatic table according to claim 2, wherein, The corners of the first mesh structure are arranged in the shape of a rounded corner; and / or the corners of the second mesh structure are arranged in the shape of a rounded corner.

5. The anti-degeneration vision protection orthostatic table according to claim 2, wherein, The extension lines of the reinforcing ribs of the first reinforcing part intersect the extension lines of the reference platform in the width direction and the length direction.

6. The anti-degeneration vision protection standing desk of claim 5, wherein, The bottom of the reference platform comprises a main body part and a side wall part arranged on the side of the main body part; the first reinforcing part is arranged on the surface of the main body part, and at least one end of the reinforcing rib of the first reinforcing part extends to connect the side wall part.

7. The anti-degeneration vision protection standing desk of claim 1, wherein, The area of the first area is A, the number of reinforcing ribs of the first reinforcing part is a, the area of the second area is B, and the number of reinforcing ribs of the second reinforcing part is b, a / A≤b / B.

8. The anti-degeneration vision protection standing desk of claim 1, wherein, The second area comprises a multifunctional mounting area, and the part of the lower end surface of the reference platform in the multifunctional mounting area is arranged in the shape of a protrusion to form a convex part in the direction away from the upper end surface of the reference platform and in the shape of a recess to form a groove in the direction towards the upper end surface of the reference platform; the second reinforcing part comprises a multifunctional safety reinforcing part arranged corresponding to the multifunctional mounting area, the multifunctional safety reinforcing part comprising a plurality of reinforcing ribs arranged at intervals, the extension lines of the reinforcing ribs of the multifunctional safety reinforcing part intersecting at most one extension line of the reference platform in the width direction and the length direction, and the reinforcing ribs of the multifunctional safety reinforcing part being arranged to connect the convex part and the groove.

9. The anti-degeneration vision protection standing desk of claim 1, wherein, The second area further comprises a support area; the bottom of the reference platform further comprises a support structure for adjusting the inclination angle, the support structure being arranged in the support area and being arranged in rotation along the extension line in the length direction of the reference platform or the extension line in the width direction of the reference platform; the second reinforcing part further comprises a support reinforcing part arranged corresponding to the support area, the support reinforcing part being arranged on one side in the radial direction of the rotation shaft of the support structure, the support reinforcing part comprising a plurality of reinforcing ribs arranged at intervals, part of the reinforcing ribs of the support reinforcing part being arranged in extension along the axial direction of the rotation shaft of the support structure, and part of the reinforcing ribs of the support reinforcing part being arranged in extension along the radial direction of the rotation shaft of the support structure.

10. The anti-degeneration vision protection standing desk of claim 9, wherein, The reinforcing structure further comprises a third reinforcing portion arranged on the support structure, the third reinforcing portion comprising a plurality of reinforcing ribs arranged at intervals, the reinforcing ribs of the third reinforcing portion being arranged in part along the axial direction of the rotation shaft of the support structure and in part along the radial direction of the rotation shaft of the support structure.

11. The anti-degeneration vision protection standing desk of claim 1, wherein, The second area further comprises a non-slip area. The second reinforcing portion further comprises a non-slip reinforcing portion arranged corresponding to the non-slip area, the non-slip reinforcing portion comprising a plurality of reinforcing ribs arranged at intervals, the extension lines of the reinforcing ribs of the non-slip reinforcing portion intersecting at most one extension line of the reference platform in the width direction and the length direction of the reference platform. The anti-deformation vision protection posture platform further comprises a non-slip pad arranged at one end of the non-slip reinforcing portion away from the reference platform.

12. The anti-degeneration vision protection standing desk of claim 1, wherein, The reference platform and the reinforcing structure are arranged in an integrated manner.