Combined computer support
By designing a detachable, modular computer stand, the problem of low adaptability of existing stands has been solved, achieving flexibility, adaptability, and stability, and improving the user experience.
Patent Information
- Application Number
- CN202422532245.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-10-18
AI Technical Summary
Existing computer stands cannot be effectively disassembled, resulting in low adaptability and failing to meet different user needs, thus affecting the user experience.
A modular computer stand was designed. Through the detachable structure of the upper and lower support frames, the stand can be disassembled and assembled by using a combination of sliders, limiting plates, elastic elements and threaded knobs, which enhances adaptability and ensures the stability of the assembly by the elastic force of the elastic elements.
The computer stand has improved compatibility and usability, allowing users to easily disassemble or combine it according to their needs. It also enhances the stability and aesthetics of the stand and facilitates cable management.
Smart Images

Figure CN223499228U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of computer stand technology, specifically a modular computer stand. Background Technology
[0002] Currently, with the rapid development of computer technology and the diversification of people's lifestyles, laptops have become an indispensable tool for many people's work and life. When using laptops, in order to obtain a more comfortable visual and user experience, people need to use a stand to support the laptop for better use.
[0003] In existing technologies, traditional computer stands generally employ a relatively fixed structural design to ensure the stability of the laptop placed on the stand. However, this fixed structure results in a limited range of functions, thus restricting the effectiveness of the computer stand. While existing computer stands have added more diverse functions, they often cannot be effectively disassembled when two laptops or other electronic devices need to be used simultaneously. This leads to low adaptability of the computer stand, failing to meet the different needs of users and thus affecting its overall effectiveness.
[0004] Therefore, a modular computer stand is needed to solve the problem that existing computer stands cannot be effectively disassembled, resulting in low adaptability and affecting the performance of the computer stand. Utility Model Content
[0005] The purpose of this invention is to provide a modular computer stand to solve the problems mentioned in the background section.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a combined computer stand, comprising an upper support frame, a lower support frame, and a push block, wherein the lower left and right sides of the upper support frame are provided with mounting grooves, and a slider is inserted into the inner wall of the mounting groove; and the upper left and right sides of the lower support frame are provided with moving grooves.
[0007] Preferably, the upper inner side of the slider has a sliding groove, and the inner walls of the sliding groove are fitted with limit plates on both the left and right sides. An elastic element is installed between every two limit plates. A locking block is installed on the side of the limit plate away from the elastic element. A threaded knob is threadedly connected to the lower rear side of the slider. Auxiliary grooves are provided on both the left and right sides of the mounting groove, and locking grooves are provided on both the upper and lower inner walls of the auxiliary grooves.
[0008] Preferably, the side of the card block away from the limiting plate passes through the slider and is inserted into the inner wall of the upper card slot, and the elastic element is disposed on the inner wall of the sliding groove.
[0009] Preferably, the front part of the threaded knob passes through the moving groove and is slidably connected to the rear side of the lower support frame.
[0010] Preferably, the slider has a storage groove on its rear side, the inner wall of the storage groove is hinged with an elastic clamp, the bottom of the elastic clamp is fitted with a rubber ball, and the bottom wall of the storage groove has an arc-shaped groove.
[0011] Preferably, the rubber ball is engaged with the inner wall of the arc-shaped groove, and the rubber ball is in a state of compression deformation.
[0012] Preferably, the lower part of the slider is inserted into the inner wall of the moving groove, and the bottom of the upper support frame is fitted with the top of the lower support frame.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] The modular computer stand proposed in this utility model can be separated from the lower support frame by pulling the upper support frame upward, thus dividing the computer stand into two parts to meet different user needs and improve the adaptability of the computer stand. At the same time, during assembly, the elastic force of the elastic element pushes the locking block into the inner wall of the locking slot, thereby assembling the upper support frame and the lower support frame, thereby improving the stability of the installation between the two and improving the use effect of the modular computer stand. Attached Figure Description
[0015] Figure 1 This is a perspective view of the present utility model;
[0016] Figure 2 This is a rear view of the present invention;
[0017] Figure 3 This is a front view of the present utility model;
[0018] Figure 4 for Figure 3 Internal structure diagram of section AA;
[0019] Figure 5 This is a schematic diagram of the mounting groove structure of this utility model;
[0020] Figure 6 This is a schematic diagram of the slider structure of this utility model;
[0021] Figure 7 for Figure 6 Cross-sectional view of the structure at point CC;
[0022] Figure 8 for Figure 6 Cross-sectional view of the structure at point BB.
[0023] In the diagram: 1. Upper support frame; 2. Lower support frame; 3. Moving groove; 4. Push block; 5. Slider; 6. Mounting groove; 7. Auxiliary groove; 8. Slot; 9. Locking block; 10. Limiting plate; 11. Sliding groove; 12. Elastic element; 13. Threaded knob; 14. Storage groove; 15. Elastic clamping plate; 16. Arc groove; 17. Rubber ball. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of this utility model clear and complete, the embodiments of this utility model will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of this utility model, and are merely used to explain the embodiments of this utility model. They are not intended to limit the embodiments of this utility model. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0025] Example 1: Please refer to Figures 1-8 This utility model provides a technical solution: a modular computer stand, including an upper support frame 1, a lower support frame 2, and a push block 4. The lower left and right sides of the upper support frame 1 are provided with mounting grooves 6, and sliders 5 are inserted into the inner walls of the mounting grooves 6. The upper left and right sides of the lower support frame 2 are provided with moving grooves 3; the lower part of the sliders 5 is inserted into the inner walls of the moving grooves 3. The bottom of the upper support frame 1 and the top of the lower support frame 2 are fitted together. By pulling the upper support frame 1 upwards, its bottom is disengaged from the outside of the sliders 5, thus splitting the entire support frame in two, allowing the user to disassemble and use it. This enables the computer stand to be disassembled and used, allowing for combination and assembly to improve its usability. Furthermore, the modular design not only facilitates the placement of other electronic devices but also allows the keyboard to be stored on the top of the lower support frame 2, reducing the space occupied by the laptop and other devices.
[0026] First, pull the upper support frame 1 upwards to separate it from the outside of the slider 5. At this point, the upper support frame 1 and the lower support frame 2 can be separated. Then, fold the two push blocks 4 on the front side of the lower support frame 2 forward to open them, thus dividing the entire computer stand into two parts to suit different user needs. When it is necessary to combine them, insert the upper support frame 1 downwards to the outside of the slider 5 to assemble the upper support frame 1 and the lower support frame 2 together, thereby improving the use effect of the computer stand.
[0027] Example 2: Based on Example 1, in order to achieve the snap-fit connection between the upper support frame 1 and the lower support frame 2 and facilitate user assembly and disassembly to improve the usability of the computers, a slide groove 11 is provided on the upper side of the inner side of the slider 5. Limiting plates 10 are installed on both the left and right sides of the inner wall of the slide groove 11. An elastic element 12 is installed between every two limiting plates 10. A locking block 9 is installed on the side of the limiting plate 10 away from the elastic element 12. A threaded knob 13 is threadedly connected to the lower rear side of the slider 5. The threaded knob 13 is initially in a tightened state, and the slider 5 is tightly fitted with the moving groove 3 and fixed by the threaded knob 13. Auxiliary grooves 7 are provided on both the left and right sides of the mounting groove 6. The inner walls of the auxiliary grooves 7 are connected to the upper and lower sides of the sliding groove 6. Both sides are provided with slots 8; the side of the locking block 9 away from the limiting plate 10 passes through the slider 5 and is inserted into the inner wall of the upper slot 8. The elastic element 12 is provided in the inner wall of the slide groove 11, so that the elastic force of the elastic element 12 pushes the limiting plate 10 to slide along the inner wall of the slide groove 11, thereby driving one end of the locking block 9 to slide along the auxiliary groove 7 and insert into the inner wall of the upper slot 8, so as to combine the upper support frame 1 and the lower support frame 2 together; the front part of the threaded knob 13 passes through the moving groove 3 and is slidably connected to the rear side of the lower support frame 2, so that the threaded knob 13 is loosened and pulled down, driving the slider 5 down and pushing the two locking blocks 9 to retract to the inner wall of the slide groove 11, thereby facilitating the storage of the slider 5 in the inner wall of the moving groove 3.
[0028] First, pull the upper support frame 1 upwards. Since two locking blocks 9 are inserted into the upper side of the slider 5, when the upper support frame 1 is pulled upwards, the locking slots 8 on the upper side push the locking blocks 9, making them contact the auxiliary slot 7. At the same time, the two limiting plates 10 push the elastic element 12, making it compress within the inner wall of the slide groove 11. Then, continue pulling the upper support frame 1 to separate it from the outside of the slider 5. At this point, the upper support frame 1 can be separated from the lower support frame 2. Then, fold the two pushing blocks 4 on the front side of the lower support frame 2 forward and open them, thus opening the entire computer bracket. It is divided into two parts to meet different user needs. When they need to be combined, the upper support frame 1 is inserted downward to the outside of the slider 5, while the two locking blocks 9 are pushed to retract to the inner wall of the slide groove 11. The elastic force of the elastic element 12 pushes the locking blocks 9 to always keep in contact with the inner wall of the auxiliary groove 7. When the upper support frame 1 is fully inserted with the lower support frame 2, the elastic force of the elastic element 12 drives the locking blocks 9 on both sides to be inserted into the inner wall of the upper locking groove 8, so as to assemble the upper support frame 1 and the lower support frame 2 together, thereby improving the use effect of the computer stand.
[0029] When the upper support frame 1 and the lower support frame 2 are disassembled, if there is no need to assemble them, the threaded knob 13 can be loosened and pulled down to cause the slider 5 to retract downwards to the inner wall of the moving groove 3. When the two side blocks 9 contact the top of the moving groove 3, continue to pull the threaded knob 13 downwards, thereby pushing the two side blocks 9 to retract to the inner wall of the sliding groove 11 and compressing the elastic element 12. At this time, the slider 5 can be retracted to the inner wall of the moving groove 3. After completion, tighten the threaded knob 13 to make the slider 5 fit tightly with the moving groove 3, thereby improving the aesthetics of the upper support frame 1 and the lower support frame 2 during use and preventing damage to the slider 5.
[0030] Example 3: Based on Example 2, in order to facilitate cable routing and prevent cables from becoming tangled, a storage groove 14 is provided on the rear side of the slider 5. An elastic clamping plate 15 is hinged to the inner wall of the storage groove 14. A rubber ball 17 is installed at the bottom of the elastic clamping plate 15. An arc-shaped groove 16 is provided on the bottom wall of the storage groove 14. The rubber ball 17 is engaged with the inner wall of the arc-shaped groove 16 and is in a state of compression deformation. By engaging the rubber ball 17 with the arc-shaped groove 16 and allowing the rubber ball 17 to be squeezed and deformed, the stability of the elastic clamping plate 15 after folding is increased.
[0031] When wiring is required, first fold the elastic clamp 15 backward, causing it to hinge along the inner wall of the storage groove 14. Simultaneously, the rubber ball 17 follows the movement of the elastic clamp 15 and slides along the inner wall of the arc groove 16. When the elastic clamp 15 changes from a vertical state to a horizontal state, the rubber ball 17 slides along the inner wall of the arc groove 16 to its upper side and is squeezed and deformed. The cooperation between the rubber ball 17 and the arc groove 16 increases the stability of the elastic clamp 15 after folding, thus facilitating wiring. When the upper support frame 1 and the lower support frame 2 are assembled together, fold the elastic clamp 15 backward and pass through the rear side of the upper support frame 1 for normal wiring.
[0032] In actual use, first pull the upper support frame 1 upwards. Since two locking blocks 9 are inserted into the upper side of the slider 5, when the upper support frame 1 is pulled upwards, the locking slots 8 on the upper side push the locking blocks 9, making them contact the auxiliary slots 7. At the same time, the two limiting plates 10 push the elastic members 12, making them compress within the inner wall of the slide groove 11. Then, continue pulling the upper support frame 1 to separate it from the outside of the slider 5. At this point, the upper support frame 1 can be separated from the lower support frame 2. Then, the two pushing blocks 4 on the front side of the lower support frame 2 are folded forward and opened, thus opening the entire computer. The bracket is divided into two parts to accommodate different user needs. When they need to be combined, the upper support frame 1 is inserted downwards to the outside of the slider 5, while the two locking blocks 9 are pushed to retract into the inner wall of the slide groove 11. The elastic force of the elastic element 12 pushes the locking blocks 9 to always keep in contact with the inner wall of the auxiliary groove 7. When the upper support frame 1 is fully inserted into the lower support frame 2, the elastic force of the elastic element 12 drives the locking blocks 9 on both sides to be inserted into the inner wall of the upper locking groove 8, so as to assemble the upper support frame 1 and the lower support frame 2 together, thereby improving the use effect of the computer bracket.
[0033] When the upper support frame 1 and the lower support frame 2 are disassembled, if it is not necessary to assemble them, the threaded knob 13 can be loosened and pulled down to cause the slider 5 to retract downward to the inner wall of the moving groove 3. When the two side blocks 9 contact the top of the moving groove 3, continue to pull the threaded knob 13 downward, thereby pushing the two side blocks 9 to retract to the inner wall of the sliding groove 11 and compressing the elastic element 12. At this time, the slider 5 can be retracted to the inner wall of the moving groove 3. After completion, tighten the threaded knob 13 to make the slider 5 and the moving groove 3 fit tightly together, so as to improve the aesthetics of the upper support frame 1 and the lower support frame 2 during use and prevent the slider 5 from being damaged.
[0034] When wiring is required, first fold the elastic clamp 15 backward, causing it to hinge along the inner wall of the storage groove 14. Simultaneously, the rubber ball 17 follows the movement of the elastic clamp 15 and slides along the inner wall of the arc groove 16. When the elastic clamp 15 changes from a vertical state to a horizontal state, the rubber ball 17 slides along the inner wall of the arc groove 16 to its upper side and is squeezed and deformed. The cooperation between the rubber ball 17 and the arc groove 16 increases the stability of the elastic clamp 15 after folding, thus facilitating wiring. When the upper support frame 1 and the lower support frame 2 are assembled together, fold the elastic clamp 15 backward and pass through the rear side of the upper support frame 1 for normal wiring.
[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A modular computer stand, comprising an upper support frame (1), a lower support frame (2), and a push block (4), characterized in that: The upper support frame (1) has mounting grooves (6) on both the lower left and right sides, and a slider (5) is inserted into the inner wall of the mounting groove (6). The lower support frame (2) has moving grooves (3) on both the upper left and right sides. The upper inner side of the slider (5) is provided with a sliding groove (11). Limiting plates (10) are installed on both the left and right sides of the inner wall of the sliding groove (11). An elastic element (12) is installed between every two limiting plates (10). A locking block (9) is installed on the side of the limiting plate (10) away from the elastic element (12). A threaded knob (13) is threadedly connected to the lower rear part of the slider (5). Auxiliary grooves (7) are provided on both the left and right sides of the mounting groove (6). Locking grooves (8) are provided on both the upper and lower sides of the inner wall of the auxiliary groove (7). The side of the card block (9) away from the limiting plate (10) passes through the slider (5) and is inserted into the inner wall of the upper card slot (8), and the elastic element (12) is provided on the inner wall of the slide groove (11).
2. The modular computer stand according to claim 1, characterized in that: The front of the threaded knob (13) passes through the moving groove (3) and is slidably connected to the rear side of the lower support frame (2).
3. The modular computer stand according to claim 1, characterized in that: The slider (5) has a storage groove (14) on its rear side. An elastic clamp (15) is hinged to the inner wall of the storage groove (14). A rubber ball (17) is installed at the bottom of the elastic clamp (15). An arc groove (16) is provided on the bottom wall of the storage groove (14).
4. A modular computer stand according to claim 3, characterized in that: The rubber ball (17) is engaged with the inner wall of the arc groove (16), and the rubber ball (17) is in a state of extrusion deformation.
5. A modular computer stand according to claim 1, characterized in that: The lower part of the slider (5) is inserted into the inner wall of the moving groove (3), and the bottom of the upper support frame (1) is in contact with the top of the lower support frame (2).