Combined structure of display support

By designing a monitor stand combination structure with detachable sliders and rotating clamps, the problem of existing stands being unable to be freely combined is solved, enabling flexible adjustment of the number of monitors and improving the office and gaming experience.

CN224079877UActive Publication Date: 2026-04-03SHANGHAI TENGFEI COMM EQUIP IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing multi-monitor stands cannot be freely combined, making it inconvenient to reduce or add monitors, which affects work efficiency and gaming experience.

Method used

Design a combined structure for a monitor stand, employing a detachable slider and a rotating clamping component. The monitor stand can be easily adjusted via mounting slots, clamping pins, and elastic drive components, allowing the number of monitors to be increased or decreased as needed.

Benefits of technology

It enables flexible combinations of monitor stands to meet different needs and improves efficiency and experience in office work and gaming.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224079877U_ABST
    Figure CN224079877U_ABST
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Abstract

The utility model relates to the technical field of display supports, in particular to a combined structure of a display support. Comprising a stand column, one or more installation grooves are formed in the side face of the stand column, openings are formed in one end or two ends of each installation groove, clamping pins are arranged in the installation grooves, sliding blocks are arranged on the outer sides of the installation grooves, rotating clamping pieces are arranged in the sliding blocks, rotating shafts are sleeved with one sides of the rotating clamping pieces, and clamping screws are installed on one sides of the clamping pins. The clamping screw penetrates through the sliding block to be connected with a threaded hole in the outer circle of the rotating shaft, a protruding part is arranged on the side, close to the stand column, of the rotating clamping piece, and the other side of the rotating clamping piece is connected with the elastic driving component. Compared with the prior art, the display support has the advantages that the number of the display supports can be increased and decreased according to requirements by arranging the sliding blocks which can be conveniently detached, and the sliding blocks can be adjusted to the required height.
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Description

Technical Field

[0001] This utility model relates to the field of monitor bracket technology, specifically a combined structure of a monitor bracket. Background Technology

[0002] For better work efficiency and gaming experience, multiple monitors are often used simultaneously. Existing multi-monitor stands typically support a fixed number of monitors, preventing flexible combinations. Reducing the number of monitors results in an unsightly empty stand; adding monitors is not feasible. Therefore, a more flexible and adjustable monitor stand design is needed. Summary of the Invention

[0003] To overcome the shortcomings of the prior art, this utility model provides a combined structure for a monitor bracket.

[0004] To achieve the above objectives, a combined structure for a monitor bracket is designed, including a column, characterized in that: one or more mounting grooves are provided on the side of the column, one or both ends of the mounting groove are open, a clamping pin is provided in the mounting groove, a slider is provided on the outside of the mounting groove, a rotating clamping member is provided in the slider, a rotating shaft is sleeved inside one side of the rotating clamping member, a clamping screw is installed on one side of the clamping pin, the clamping screw passes through the slider and connects to the threaded hole on the outer circle of the rotating shaft, a protrusion is provided on the side of the rotating clamping member near the column, and the other side of the rotating clamping member is connected to an elastic drive component.

[0005] The elastic drive component includes a connecting rod, a connector, and a spring. The connector is located inside the lower part of the slider. The two sides of the connecting rod are connected to the connector and the rotating clamping component, respectively. The spring is located between the slider and the connector.

[0006] The connector and the rotary clamping member are connected to the connecting rod by pins, and a pad is provided between the connector and the rotary clamping member and the connecting rod.

[0007] A stop is provided between the rotary clamping member and the slider. One side of the stop is provided with an arc groove, and the bottom of the arc groove contacts or separates from the protrusion of the rotary clamping member.

[0008] The rotating shaft is provided with rotating shaft end caps at both ends.

[0009] A clamping pin friction plate is provided between the clamping pin and the column.

[0010] A slider friction plate is provided between the slider and the column.

[0011] The slider is connected to the display arm above.

[0012] One side of the rotating clamping member has an outer arc shape, and the center of the arc is eccentric to the center of the rotating shaft to form a protrusion.

[0013] Compared with the prior art, this utility model, by setting a detachable slider, allows for the addition and reduction of the number of monitor brackets as needed, and the slider can be adjusted to the required height. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the present invention.

[0015] Figure 2 This is a cross-sectional view of the present invention.

[0016] Figure 3 This is an exploded view of the present invention.

[0017] Figure 4 This is a screenshot showing how a monitor works.

[0018] Figure 5 This is a diagram showing the effect of using two monitors.

[0019] Figure 6 The image shows the effect of using three monitors.

[0020] See Figures 1-6 In this diagram, 1 is the monitor arm, 2 is the column, 2-1 is the mounting slot, 3 is the slider, 4 is the slider friction block, 5 is the clamping pin friction plate, 6 is the clamping pin, 7 is the clamping screw, 8 is the stop block, 9 is the rotating clamping component, 9-1 is the connector, 10 is the connecting component, 11 is the button, 12 is the rotating shaft, 13 is the rotating shaft end cover, 14 is the connecting rod, 15 is the pad, 16 is the pin, 17 is the limit screw, and 18 is the spring. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings.

[0022] like Figures 1-6 As shown, the side of the column 2 is provided with one or more mounting grooves 2-1. One or both ends of the mounting groove 2-1 have openings. A clamping pin 6 is provided inside the mounting groove 2-1. A slider 3 is provided on the outside of the mounting groove 2-1. A rotating clamping member 9 is provided inside the slider 3. A rotating shaft 12 is fitted inside one side of the rotating clamping member 9. A clamping screw 7 is installed on one side of the clamping pin 6. The clamping screw 7 passes through a threaded hole on the outer diameter of the slider and the rotating shaft 12. A protrusion 9-1 is provided on the side of the rotating clamping member 9 near the column 2. The other side of the rotating clamping member 9 is connected to an elastic drive component. When rotating, the protrusion 9-1 of the rotating clamping member 9 can press against the slider 3, simultaneously generating a reaction force that pulls the rotating shaft 12 outward. The clamping pin 6 clamps and fixes the slider 3 to the inner and outer sides of the mounting groove 2-1, keeping the slider 3 fixed. The elastic drive component applies an elastic force to the rotating clamping member 9, causing the protrusion 9-1 of the rotating clamping member 9 to maintain pressure on the slider 3 in a stationary state.

[0023] The elastic drive component includes a connecting rod 14, a connecting member 10, and a spring 18. The connecting member 10 is disposed inside the lower part of the slider 3. The two sides of the connecting rod 14 are respectively connected to the connecting member 10 and the rotating clamping member 9. The spring 18 is disposed between the slider 3 and the connecting member 10. The spring 18 applies a downward elastic force to the connecting member 10, and through the cooperation of the connecting rod 14 and the connecting member 10, applies a rotational elastic force to the rotating clamping member 9.

[0024] A button 11 is located below the connector 10, and a limiting screw 17 is located below the button 11. The limiting screw 17 passes through the button 11, the connector 10, and the spring 18 and connects to the slider 3. The limiting screw 16 can limit the downward position of the button 11 and also serves as a guide when the button 11, the connector 10, and the spring 17 move.

[0025] The connecting member 10 and the rotating clamping member 9 are connected to the connecting rod 14 via a pin 16. A pad 15 is provided between the connecting member 10 and the rotating clamping member 9 and the connecting rod 14. The pin 16 serves as the pivot of the connecting rod 14, and the protrusions on both sides of the pin 16 limit the movement of the connecting rod 14. The pad 15 can be made of plastic to prevent direct friction between the connecting rod 14 and the connecting member 10 and the rotating clamping member 9, thereby reducing frictional resistance and structural wear.

[0026] A stop 8 is provided between the rotary clamping member 9 and the slider 3. One side of the stop 8 is provided with an arc groove. The bottom of the arc groove contacts or separates from the protrusion 9-1 of the rotary clamping member 9. The stop 8 allows the rotary clamping member 9 to rotate on one side of the arc groove. When the bottom of the arc groove contacts the protrusion 9-1, it presses down on the slider 3. When separated, the slider 3 can move up and down along the column 2.

[0027] The rotating shaft 12 is provided with rotating shaft end caps 13 at both ends. The end caps 13 can be made of plastic and are used to restrict the axial lateral movement of the rotating shaft 12 within the slider 3, so that the rotating shaft 12 is in the middle position, and at the same time, the rotating shaft 12 and the slider 3 do not directly rub against each other, thereby reducing frictional resistance and structural wear.

[0028] A clamping pin friction plate 5 is provided between the clamping pin 6 and the column 2. This is used to increase the friction between the clamping pin 6 and the column 2.

[0029] A slider friction plate 4 is provided between the slider 3 and the column 2. This is used to increase the friction between the slider 3 and the column 2.

[0030] The slider 3 is connected to the display arm 1 at the top. It is used to connect the display.

[0031] One side of the rotary clamping member 9 has an outer arc shape, and the center of the arc is eccentric to the center of the rotating shaft 12 to form a protrusion 9-1. When the rotary clamping member 9 rotates around the rotating shaft 12 due to the eccentricity, the distance from the center of the rotating shaft 12 to the contact point between the rotary clamping member 9 and the bottom of the arc groove changes. At the same time, the clamping screw 7 pulls the rotating shaft 12, thereby pressing down the slider 3.

[0032] In use, the spring 18 presses down on the connecting member 10, and the connecting rod 14 drives the rotating clamping member 9 to rotate downward. When the protrusion 9-1 of the rotating clamping member 9 presses against the stop block 8, the protrusion 9-1 exerts pressure on the stop block 8, and at the same time generates a reaction force that pulls the rotating shaft 12 outward. The rotating shaft 12 drives the clamping screw 7 to press the clamping pin 6 into the column 2 through the clamping pin friction plate 5. At the same time, the stop block 8 presses the slider 3 against the outside of the column 2 through the slider friction plate 4, thus locking the slider 3. Lifting the button 11 pushes the connecting member 10 upward, and the connecting rod 14 drives the rotating clamping member 9 to rotate upward. The protrusion 9-1 no longer presses against the stop block 8. As the pressure disappears, the friction also disappears, allowing the slider 3 to move or be removed freely.

[0033] Slider 3 can be freely installed in different positions in different mounting slots to meet the needs of different numbers of computer monitors, so that users can have better office efficiency and gaming experience.

Claims

1. A combined structure for a monitor stand, comprising a column (2), characterized in that: The side of the column (2) is provided with one or more mounting grooves (2-1). One or both ends of the mounting groove (2-1) are provided with openings. The mounting groove (2-1) is provided with a clamping pin (6). The outside of the mounting groove (2-1) is provided with a slider (3). The slider (3) is provided with a rotating clamping member (9). A rotating shaft (12) is fitted inside one side of the rotating clamping member (9). A clamping screw (7) is installed on one side of the clamping pin (6). The clamping screw (7) passes through the threaded hole on the outer circle of the slider and the rotating shaft (12). The rotating clamping member (9) is provided with a protrusion (9-1) on the side near the column (2). The other side of the rotating clamping member (9) is connected to the elastic drive component.

2. The combined structure of a monitor bracket according to claim 1, characterized in that: The elastic drive component includes a connecting rod (14), a connector (10), and a spring (18). The connector (10) is located inside the lower part of the slider (3). The two sides of the connecting rod (14) are connected to the connector (10) and the rotating clamping member (9) respectively. The spring (18) is located between the slider (3) and the connector (10).

3. The combined structure of a monitor bracket according to claim 2, characterized in that: A button (11) is provided below the connector (10), and a limiting screw (17) is provided below the button (11). The limiting screw (17) passes through the button (11), the connector (10), and the spring (18) and connects to the slider (3).

4. The combined structure of a monitor bracket according to claim 2, characterized in that: The connector (10) and the rotating clamp (9) are connected to the connecting rod (14) by a pin (16), and a pad (15) is provided between the connector (10) and the rotating clamp (9) and the connecting rod (14).

5. The combined structure of a monitor bracket according to claim 1, characterized in that: A stop (8) is provided between the rotary clamping member (9) and the slider (3). A circular arc groove is provided on one side of the stop (8). The bottom of the circular arc groove contacts or separates from the protrusion (9-1) of the rotary clamping member (9).

6. The combined structure of a monitor bracket according to claim 1, characterized in that: The rotating shaft (12) is provided with rotating shaft end caps (13) at both ends.

7. The combined structure of a monitor bracket according to claim 1, characterized in that: A clamping pin friction plate (5) is provided between the clamping pin (6) and the column (2).

8. The combined structure of a monitor bracket according to claim 1, characterized in that: A slider friction plate (4) is provided between the slider (3) and the column (2).

9. The combined structure of a monitor bracket according to claim 1, characterized in that: The slider (3) is connected to the display arm (1) above.

10. The combined structure of a monitor stand according to claim 1, characterized in that: One side of the rotating clamp (9) has an outer arc shape, and the center of the arc is eccentric to the center of the rotating shaft (12) to form a protrusion (9-1).