Display support

By designing a sliding groove and a rotating and sliding fixing part on the monitor stand, the problem of the inability to quickly adjust the monitor height in the prior art is solved, realizing flexible adjustment of the monitor height and viewing angle to meet diverse usage needs.

CN223992075UActive Publication Date: 2026-03-13ZHUOLI (GUANGZHOU) E COMMERCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing monitor stands cannot quickly adjust the height between the monitor and the ground, resulting in the need to replace the monitor for different display heights in various application scenarios.

Method used

A monitor stand was designed, which uses a groove and a fixing part on the rod to quickly adjust the height of the monitor by rotating and sliding the fixing part, and uses a flip part and an adjustment part to change the viewing angle of the monitor.

Benefits of technology

It enables rapid adjustment of monitor height and viewing angle to meet the needs of different application scenarios, improving flexibility and convenience of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

There is provided a display stand including: a rod portion; the main body part comprises a first end and a second end which are oppositely arranged, the first end penetrates through the rod part, the second end is used for being connected with a displayer, the fixing part is arranged on the side, away from the main body part, of the rod part, a sliding groove is formed in the rod part, one end of the fixing part penetrates through the main body part and the sliding groove, and the other end of the fixing part is connected with the displayer. The main body part is arranged in the sliding groove, is positioned in the rod part and can be separated from or clamped with the side wall of the sliding groove, so that the main body part is driven to slide in the sliding groove and is fixed on the rod part.
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Description

Technical Field

[0001] This application relates to the field of bracket technology, and more particularly to a monitor bracket. Background Technology

[0002] Once a monitor is fixed to a monitor stand, it can only be fixed at a certain height, and the height distance between the monitor and the ground cannot be quickly adjusted. If an application scenario requires adjustment to a different display height, the monitor must be replaced with one of a different height. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the existing technology and design a monitor stand that can quickly adjust the height of the monitor.

[0004] This utility model provides a monitor stand, comprising:

[0005] pole section;

[0006] The main body includes a first end and a second end disposed opposite to each other, the first end through which the rod portion passes, and the second end for connecting to a display.

[0007] A fixing part is provided on the side of the rod portion away from the main body portion.

[0008] A sliding groove is provided on the rod. One end of the fixing part passes through the main body and the sliding groove and is located inside the rod. It can separate from or clamp the side wall of the sliding groove, thereby driving the main body to slide in the sliding groove and be fixed to the rod.

[0009] In one embodiment, the fixing part includes a rotating member and a locking block. One end of the rotating member passes through the main body and the sliding groove and is located inside the rod, while the other end is located outside the rod.

[0010] The locking block is installed at one end of the rotating member and is located inside the rod.

[0011] By rotating the rotating component, the locking block can move close to the rod and engage with the side wall of the slide groove, or the locking block can move away from the slide groove and form a gap with the slide groove.

[0012] In one embodiment, a retaining ring is installed on the side of the locking block away from the slide groove, and the retaining ring is fixed to one end of the rotating member.

[0013] In one embodiment, the main body includes a flipping part, an adjusting part, and a mounting part.

[0014] The adjustment unit is installed between the flip-up part and the mounting part, and can rotate up and down relative to the mounting part to change the viewing angle of the display.

[0015] The mounting part is hollow inside, allowing the rod to pass through and slide along the groove.

[0016] One end of the flip-up part is used to mount the display, and the other end is rotatably connected to the adjustment part so as to switch the display state of the display by rotating the flip-up part. The display state includes landscape display or portrait display of the display.

[0017] In one embodiment, a first sliding member and a second sliding member are installed on one end of the adjusting part near the flipping part, and the flipping part is provided with a first sliding groove and a second sliding groove.

[0018] The first sliding member is slidably connected within the first sliding groove, and the second sliding member is slidably connected within the second sliding groove. The first and second sliding grooves are symmetrically arranged and both are arc-shaped.

[0019] When the first slider is at the top of the first sliding groove, the second slider is at the bottom of the second sliding groove, and the display is in landscape mode; when the first slider slides to the right to the bottom of the first sliding groove, the second slider is driven to slide to the top of the second sliding groove, and the display is in portrait mode.

[0020] In one embodiment, the flipping part further includes a insert plate, a panel, and a knob, wherein the first sliding groove and the second sliding groove are formed on the insert plate.

[0021] A panel is mounted on the side of the insert plate opposite to the first sliding groove. The panel is used to mount the display. The insert plate and the panel are connected by the knob.

[0022] In one embodiment, the adjusting part includes a U-shaped member and a locking member, the two sides of the U-shaped member being connected to the mounting part via the locking member; the U-shaped member being connected to the flipping part via a connecting member.

[0023] In one embodiment, the U-shaped member includes a base plate, two side plates, and a protruding plate, wherein the two side plates extend from both sides of the base plate toward the mounting portion.

[0024] The protruding plate is formed by bending and extending from the top of the base plate toward the two side plates.

[0025] The base plate is connected to the flipping part through the connector, and a first sliding member and a second sliding member protrude from the side of the base plate near the flipping part;

[0026] One end of one of the side plates has a nut protruding outwards, and the locking member passes through the two side plates and the mounting part, and is threadedly connected to the nut.

[0027] In one embodiment, the mounting portion further includes a fixing member and two winglets, the two winglets extending from both sides of the fixing member toward the U-shaped member.

[0028] The fixing member is hollow inside for passing through the rod portion, and the end of the fixing member away from the wing is used to insert into the fixing part, so that the fixing part abuts against the rod portion;

[0029] The two flaps are inserted into the locking member and located between the two side plates, thereby being rotatably connected to the U-shaped member through the locking member.

[0030] In one embodiment, the two winglets are provided with limiting members protruding towards the protruding plate. When the U-shaped member rotates upward, it can abut against the protruding plate to restrict the upward rotation of the U-shaped member. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the overall structure of a monitor bracket according to an embodiment of the present invention.

[0032] Figure 2 This is a partial structural schematic diagram of a monitor bracket according to an embodiment of the present invention.

[0033] Figure 3 yes Figure 2 The diagram shows a partial view of the monitor stand after the cover structure has been removed.

[0034] Figure 4 yes Figure 2 A bottom view of a partial structure of the monitor stand shown.

[0035] Figure 5 yes Figure 2 A cross-sectional view of a portion of the structure of the monitor stand shown.

[0036] Figure 6 yes Figure 2 An exploded view of a portion of the monitor stand's structure is shown.

[0037] Figure 7 yes Figure 1 The diagram shows the connection structure between the insert plate and the base plate of the monitor stand.

[0038] Explanation of main component symbols

[0039] 10. Rod; 101. Slide groove; 11. Receiving part; 13. Chassis; 20. Flipping part; 21. Insert plate; 211. First sliding groove; 213. Second sliding groove; 215. Insertion hole; 23. Panel; 25. Knob; 30. Adjustment part; 31. U-shaped part; 311. Base plate; 3111. First sliding member; 3113. Second sliding member; 3115. Fixing hole; 313. Side plate; 315. Protruding plate; 3 17. Nut; 33. Locking component; 35. Bushing; 40. Mounting part; 401. Through hole; 41. Buffer sleeve; 43. Fixing component; 431. Connecting hole; 45. Wing; 451. Reinforcing plate; 453. Limiting component; 50. Fixing part; 51. Rotating component; 53. Connecting part; 55. Snap ring; 57. Locking block; 60. Connecting component; 61. Elastic pad; 70. Elastic component; 80. Cover; 100. Monitor bracket. Detailed Implementation

[0040] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0041] The following is a reference to the appendix. Figures 1 to 7 The specific embodiments of this application will be described in further detail below.

[0042] Reference Figure 1 This utility model provides a monitor stand 100 for supporting a monitor (not shown), and the height of the monitor can be adjusted on the monitor stand 100 by simple rotation and sliding.

[0043] The monitor stand 100 includes a rod portion 10, a flip portion 20, an adjustment portion 30, a mounting portion 40, and a fixing portion 50. The mounting portion 40 has a through hole 401 for the rod portion 10 to pass through, with both ends protruding beyond the mounting portion 40. The adjustment portion 30 is mounted on one side of the mounting portion 40 and rotatably connected to it, allowing the adjustment portion 30 to rotate relative to the mounting portion 40 in both pitch directions. The flip portion 20 is used to mount the monitor and is rotatably mounted on the side of the adjustment portion 30 away from the mounting portion 40, allowing the flip portion 20 to flip relative to the adjustment portion 30, thereby allowing the monitor to flip relative to the adjustment portion 30. A groove 101 is provided on the outer side wall of the rod 10 along its length. One end of the fixing part 50 passes through the groove 101 and passes through the mounting part 40 and the rod 10. It can be separated from or locked to the side wall of the groove 101. When the fixing part 50 is rotated in one direction, the fixing part 50 can be separated from the groove 101 of the rod 10 to form a gap. The mounting part 40 can then slide along the length of the groove 101, which can change the height of the display. When the fixing part 50 is rotated in the opposite direction, the mounting part 40 can be fixed at a certain height position on the rod 10, thereby fixing the display on the rod 10.

[0044] Understandably, in other embodiments, the adjustment part 30, the mounting part 40, and the flipping part 20 may be integrally connected to form a main body, which is interconnected with the rod part 10 and the fixing part 50. Furthermore, the main body includes a first end and a second end disposed opposite to each other, wherein the first end is connected to the rod part 10, and the other end is connected to the fixing part 50. The main body includes a first side and a second side disposed opposite to each other; the first side is used to mount the display, and the second side passes through the rod part 10. By rotating the fixing part 50, the main body can slide in the groove 101 and be fixed to the rod part 10, thereby adjusting the height of the display.

[0045] In this embodiment, the rod 10 is elongated and can be formed by splicing multiple small columns together through connecting seats. The rod 10 is hollow inside, forming a lightweight product that is easy to handle. Of course, the rod 10 can also be a one-piece structure, which is not limited here.

[0046] Please refer to the following: Figure 2 A groove 101 is formed by recessing the outer wall of the rod 10 in the direction of the fixing part 50. The groove 101 extends along the length of the rod 10. One end of the fixing part 50 passes through the mounting part 40 and the groove 101, so that the fixing part 50 can drive the mounting part 40 to slide along the length of the groove 101. When the mounting part 40 reaches a specific position, i.e., the display reaches a preset height, the mounting part 40 stops sliding and is rotated so that the mounting part 40 is fixed on the rod 10.

[0047] Reference Figure 1A receiving portion 11 is also connected to the rod 10. One side of the receiving portion 11 is clamped to the rod 10 and can slide on the rod 10 under the action of external force, overcoming the friction between it and the rod 10. The other side of the receiving portion 11 extends away from the mounting portion 40 and is recessed to form a storage space for accommodating the remote control device of the display or storing other simple objects.

[0048] A base 13 is also installed at the end of the lever 10 away from the mounting part 40. Silent casters are installed on the base 13, so that the distance between the display screen and the object can be changed by pushing the lever 10 during use. Especially when the display is used for live streaming, no noise is made when pushing the lever 10, and it can be moved quickly.

[0049] Reference Figure 3 To reduce friction between the mounting part 40 and the rod part 10 when the mounting part 40 slides in the groove 101, a buffer sleeve 41 is fixedly installed on the inner side wall of the mounting part 40. The buffer sleeve 41 has an opening corresponding to the groove 101, so that the fixing part 50 can pass through the opening and fix the rod part 10. In this embodiment, the buffer sleeve 41 is a plastic pad.

[0050] Reference Figure 5 The fixing part 50 includes a rotating member 51, a connecting part 53, a retaining ring 55, and a locking block 57. The rotating member 51 is located on the side of the rod 10 away from the adjusting part 30. The connecting part 53 extends from the middle of the rotating member 51 toward the rod 10 and can pass through the mounting part 40, the opening of the buffer pad, and the slide groove 101 of the rod 10 to enter the interior of the rod 10. The connecting part 53 is cylindrical and has threads around its outer circumference. The locking block 57 passes through the connecting part 53 and is located inside the rod 10. One end of the locking block 57 has an internal thread corresponding to the external thread, so that the locking block 57 is threadedly connected to the connecting part 53. In this embodiment, the locking block 57 is a square piece with both sides bent toward the rod 10 and adapted to the shape of the rod 10. When the rotating member 51 rotates, the connecting part 53 is driven away from or toward the rod 10, and the locking block 57 and the mounting part 40 are synchronously driven to press or release the rod 10.

[0051] A retaining ring 55 is installed on the side of the locking block 57 away from the rotating member 51 and is located inside the rod portion 10, engaging with the end of the connecting portion 53. This serves to prevent the locking block 57 from leaving the connecting portion 53. When the rotating member 51 is rotated, and the connecting portion 53 is driven away from the rod portion 10, the retaining ring 55 abuts against the locking block 57, preventing the locking block 57 from separating from the connecting portion 53 and falling into the rod portion 10. Specifically, when the rotating member 51 is rotated in one direction, causing it to move away from the rod portion 10, the connecting portion 53 is driven to move in the direction of the rotating member 51. A gap exists between the locking block 57 and the rod portion 10, allowing the fixing portion 50 to drive the mounting portion 40 to slide up and down within the slide groove 101, adjusting the height of the display. When the rotating member 51 is rotated in another direction, the connecting portion 53 moves towards the flipping portion 20, and the locking block 57 gradually approaches the inner wall of the rod portion 10, pressing against the rod portion 10, thus fixing the rod portion 10 relative to the mounting portion 40.

[0052] Reference Figures 4 to 6 The mounting part 40 is slidably sleeved on the rod part 10 and fixedly positioned at a preset position on the rod part 10 by the fixing part 50. It is understood that this preset position can be adjusted according to customer needs. Specifically, the mounting part 40 includes a fixing member 43 and a wing 45 connected to each other. The fixing member 43 has a hollow interior forming a through hole 401 for the rod part 10 to pass through. In this embodiment, the fixing member 43 is generally cylindrical, but it can also be other shapes, which are not limited here. A connecting hole 431 is provided on the side of the fixing member 43 facing away from the wing 45, allowing the connecting part 53 to pass through the connecting hole 431 and be inserted into the rod part 10. The connecting hole 431, the through hole 401, and the sliding groove 101 are connected, so that the fixing part 50 can drive the mounting part 40 and the buffer sleeve 41 to slide together along the sliding groove 101 of the rod part 10.

[0053] Two flaps 45 are included, each extending and protruding from the side of the fixing member 43 toward the flipping part 20. The two flaps 45 are arranged opposite to each other and are interconnected by a reinforcing piece 451 to enhance the connection strength between the two flaps 45. The adjusting part 30 is inserted between the two flaps 45 and rotatably connected to the two flaps 45, thereby allowing the adjusting part 30 to rotate relative to the rod part 10 in both pitch and tilt directions.

[0054] Reference Figure 5 Furthermore, on the side of the two blades 45 away from the chassis 13, there is a limiting member 453 that can abut against one end of the adjusting part 30 to limit the maximum angle of upward rotation of the adjusting part 30.

[0055] Reference Figures 4 to 6The adjusting part 30 includes a U-shaped part 31, a locking part 33 and a bushing 35. The U-shaped part 31 includes a base plate 311, two side plates 313 extending vertically from both sides of the base plate 311, and a protruding plate 315.

[0056] Reference Figure 7 The base plate 311 is used to connect with the flipping part 20. A fixing hole 3115 is provided at the center of the base plate 311, and a first sliding member 3111 and a second sliding member 3113 protrude from the side facing the flipping part 20. The first sliding member 3111 and the second sliding member 3113 are located on both sides of the fixing hole 3115 and are symmetrically arranged with the fixing hole 3115 as the center. The first sliding member 3111 and the second sliding member 3113 slide within the flipping part 20, and are connected to each other by connecting members 60 such as rivets inserted into the fixing hole 3115 and the flipping part 20.

[0057] Furthermore, the line connecting the first sliding member 3111, the fixing hole 3115, and the second sliding member 3113 is straight and inclined relative to the horizontal direction. In this embodiment, the first sliding member 3111 is disposed on the side close to the protruding plate 315, and the second sliding member 3113 is disposed on the side away from the protruding plate 315. The fixing hole 3115 is provided at the center of the base plate 311. The two side plates 313 extend from both ends of the base plate 311 in a direction away from the flip-up part 20 and are disposed approximately perpendicular to the base plate. In the installed state, the two side plates 313 are located outside the two winglets 45, and the two side plates 313 have opposing mounting holes, with a nut 317 protruding outward from one side corresponding to the mounting hole. The protruding plate 315 is formed by bending and extending the base plate 311 toward the limiting member 453. The protruding plate 315 and the base plate 311 are vertically arranged, and the end of the protruding plate 315 away from the base plate 311 can abut against the limiting member 453. Thus, when the protruding plate 315 contacts the limiting member 453, the adjusting part 30 is restricted by the limiting member 453 and cannot continue to rotate upward. At this time, the adjusting part 30 reaches the maximum angle of upward rotation to adjust the viewing angle of the display.

[0058] Reference Figure 4 Furthermore, at the connection between the connector 60 and the fixing hole 3115, an elastic pad 61 is inserted. The elastic pad 61 is located inside the U-shaped part 31 and can press the flipping part 20, the connector 60 and the U-shaped part 31 together to prevent the flipping part 20 and the U-shaped part 31 from separating.

[0059] The locking component 33 is a T-shaped component, including a first locking part and a second locking part that are perpendicular to each other. The first locking part is located outside the mounting hole of the U-shaped component 31; the second locking part is cylindrical with threads wrapped around its outer circumference, allowing it to pass through the wing 45 and the mounting hole and be threadedly connected to the nut 317. This allows for adjustment of damping by loosening or tightening the second locking part when replacing displays with different load capacities. Furthermore, rotating the U-shaped component 31 vertically causes the display connected to the flip part 20 to rotate vertically, adjusting the display viewing angle. In this embodiment, the locking component 33 is a bolt.

[0060] A bushing 35 is fitted onto the surface of the locking member 33 between the two mounting holes to protect the locking member 33. In this embodiment, an elastic member 70 is fitted onto the bushing 35. One end of the elastic member 70 abuts against the protruding plate 315, and the other end abuts against the reinforcing piece 451 between the two winglets 45. This enhances the connection strength between the U-shaped member 31 and the mounting part 40, preventing the display angle from shifting downwards due to the inability to support the display. At the same time, it also strengthens the protruding plate 315, ensuring that the protruding plate 315 and the side of the limiting member 453 remain on the same horizontal plane, limiting the maximum rotation angle of the display.

[0061] Reference Figure 5 A cover 80 is fitted onto the outer surface of the U-shaped part 31 and the locking part 33. The cover 80 is U-shaped, with its two sides snapped onto the two side plates 313 of the U-shaped part 31, and its top fitted onto the top of the protruding plate 315, and fixedly connected to the protruding plate 315 by screws. In this embodiment, the cover 80 is made of a rigid material to protect the adjustment part 30 from dust contamination.

[0062] Reference Figure 6 The flip-up part 20 includes a plug plate 21, a panel 23 and a knob 25. The plug plate 21 is connected to the U-shaped piece 31. The panel 23 is located on the side of the plug plate 21 away from the U-shaped piece 31 and is used to install the display. The panel 23 is fixedly connected to the plug plate 21 by the knob 25.

[0063] Reference Figure 7Specifically, the insert plate 21 is a square plate with two adjacent corners rounded. A first sliding groove 211 and a second sliding groove 213 are formed on the side of the insert plate 21 closest to the base plate 311. An insertion hole 215 is formed at the center of the insert plate 21. The first sliding groove 211 and the second sliding groove 213 are symmetrically arranged with respect to the insertion hole 215, and both are rounded with their centers pointing towards the insertion hole 215. The first sliding groove 211 corresponds to the first sliding member 3111, and the second sliding groove 213 corresponds to the second sliding member 3113. When the first sliding member 3111 is at the top of the first sliding groove 211 (i.e., the end closest to the protruding plate 315), the second sliding member 3113 is at the bottom of the second sliding groove 213 (i.e., the end closest to the chassis 13). When the first sliding member 3111 slides to the right to the bottom of the first sliding groove 211, the second sliding member 3113 is driven to slide to the top of the second sliding groove 213. Therefore, when the insert plate 21 is rotated clockwise or counterclockwise along the sliding groove, the display screen rotates accordingly, thus switching the display state from landscape to portrait mode, or vice versa. After the rotation is complete, it can be rotated in the opposite direction to reset the display orientation.

[0064] In this embodiment, due to the position settings of the two sliding grooves and the two sliding members, the display can only be flipped away from the nut 317 to change its display direction, and then flipped in the opposite direction to reset the display. When flipping the display towards the nut 317 from the initial position, the sliding members are blocked by the inner wall of the sliding groove, preventing the display from flipping. It is understandable that when the positions of the two sliding grooves are interchanged, the display can be flipped towards the nut 317.

[0065] The positions of the insertion hole 215 and the fixing hole 3115 are corresponding. A connector 60 is installed at one end of the insertion hole 215. The connector 60 is inserted into the insertion hole 215, the fixing hole 3115 and the elastic pad 61, thereby fixing the flipping part 20 and the adjusting part 30.

[0066] Panel 23 is used to mount the display. It snaps onto the side of insert 21 away from U-shaped member 31, and the ends of panel 23 and insert 21 are connected by knob 25. By turning knob 25 in a certain direction, panel 23 and insert 21 can be separated, thereby quickly removing panel 23. In this embodiment, panel 23 is a VESA panel.

[0067] In assembling the monitor bracket 100, firstly, the multiple rod sections 10 are spliced ​​together using connecting seats to form a long, straight rod section 10. Next, the base 13, silent rollers, and receiving part 11 are installed on the rod section 10. Then, the panel 23 and the insert plate 21 are fixed using the knob 25. Subsequently, two sliding members are inserted into two corresponding sliding grooves. The insert plate 21 is fixed in the U-shaped member 31 using the connector 60 and elastic pad 61. Next, the retaining spring 55 is sleeved on the bushing 35, and two wing pieces 45 are installed, so that one end of the retaining spring 55 is engaged with the reinforcing plate between the two wing pieces 45. U-shaped parts 31 and locking parts 33 are inserted around the outer periphery of the two winglets 45, so that the other end of the elastic part 70 is engaged with the protruding plate 315. The nut 317 of the U-shaped part 31 and the locking part 33 are threaded together. Next, the buffer sleeve 41 is installed into the inner wall of the fixing part 43 and inserted into the rod part 10. Finally, one end of the connecting part 53 is passed through the connecting hole 431 and the slide groove 101. The locking block 57 and the snap ring 55 are inserted into the connecting part 53 inside the rod part 10. After determining the height of the display in the rod part 10, the rotating part 51 is tightened so that the locking block 57 and the mounting part 40 press against the inner wall of the rod part 10 simultaneously.

[0068] The monitor stand designed in this embodiment combines height adjustment, landscape / portrait switching, and tilt angle adjustment. When adjusting the monitor height, rotate the rotating component 51 in one direction to create a gap between the locking block 57 and the inner wall of the rod 10. Then, slide the mounting part 40 along the length of the slide groove 101 to adjust the monitor's display height. After adjustment, rotate the rotating component 51 in the opposite direction, and the locking block 57 engages with both sides of the slide groove 101. When changing the monitor's tilt angle, simply rotate the monitor up and down. When changing the monitor's viewing angle, simply flip the monitor away from the nut 317.

[0069] The scope of this utility model is not limited to the above description, but is defined by the claims. Therefore, the embodiments described in this specification are merely illustrative and not intended to limit the scope. Thus, all modifications that do not depart from the scope and limits of the claims, as well as content equivalent to the scope and limits of the claims, are included within the scope of the claims.

Claims

1. A display support, characterized in that It comprises: a rod part (10); a main body part comprising oppositely arranged first and second ends, the first end through which the rod part (10) is arranged, and the second end for connecting a display, and a fixing part (50) arranged on a side of the rod part (10) away from the main body part, a sliding groove (101) is arranged on the rod part (10), one end of the fixing part (50) is arranged through the main body part and the sliding groove (101) and is located in the rod part (10), and the fixing part (50) can be separated from or clamped to the side wall of the sliding groove (101), so as to drive the main body part to slide in the sliding groove (101) and be fixed to the rod part (10).

2. The display support according to claim 1, wherein the fixing part (50) comprises a rotating part (51) and a locking block (57), one end of the rotating part (51) is arranged through the main body part and the sliding groove (101) and is located in the rod part (10), and the other end is located outside the rod part (10), the locking block (57) is arranged on one end of the rotating part (51) and is located in the rod part (10), by rotating the rotating part (51), the locking block (57) can be close to the rod part (10) and clamped to the side wall of the sliding groove (101), or the locking block (57) can be away from the sliding groove (101) and form a gap between the locking block (57) and the sliding groove (101).

3. The display support according to claim 2, wherein a clamping spring (55) is arranged on a side of the locking block (57) away from the sliding groove (101), and the clamping spring (55) is fixed to one end of the rotating part (51).

4. The display support according to claim 1, wherein the main body part comprises a turnover part (20), a mounting part (40) and an adjusting part (30), the mounting part (40) is hollow inside, is arranged through the rod part (10) and can slide along the sliding groove (101), the adjusting part (30) is arranged between the mounting part (40) and the turnover part (20), can rotate up and down relative to the mounting part (40), and can change the viewing angle direction of the display, one end of the turnover part (20) is arranged for mounting a display, and the other end is rotatably connected to the adjusting part (30), so that the display state of the display can be switched by rotating the turnover part (20), and the display state comprises landscape display or portrait display of the display.

5. The display support according to claim 4, wherein a first sliding part (3111) and a second sliding part (3113) are arranged on one end of the adjusting part (30) close to the turnover part (20), and a first sliding groove (211) and a second sliding groove (213) are correspondingly arranged on the turnover part (20), the first sliding part (3111) is slidingly connected in the first sliding groove (211), the second sliding part (3113) is slidingly connected in the second sliding groove (213), the first sliding groove (211) and the second sliding groove (213) are symmetrically arranged, and are both in the shape of a circular arc, When the first sliding member (3111) is located at the top of the first sliding groove (211), the second sliding member (3113) is located at the bottom of the second sliding groove (213), and the display is in a landscape display mode; when the first sliding member (3111) is slid to the right to the bottom of the first sliding groove (211), the second sliding member (3113) is driven to slide to the top of the second sliding groove (213), and the display is in a portrait display mode.

6. The display support of claim 5, wherein, The turnover part (20) further comprises an insertion plate (21), a panel (23) and a knob (25), the first sliding groove (211) and the second sliding groove (213) are formed on the insertion plate (21), The panel (23) is mounted on the side of the insertion plate (21) away from the first sliding groove (211), the panel (23) is used for mounting the display, and the insertion plate (21) and the panel (23) are connected through the knob (25).

7. The display support of claim 4, wherein, The adjusting part (30) comprises a U-shaped piece (31) and a locking piece (33), the two sides of the U-shaped piece (31) are connected with the mounting part (40) through the locking piece (33); the U-shaped piece (31) is connected with the turnover part (20) through the connecting piece (60).

8. The display support of claim 7, wherein, The U-shaped piece (31) comprises a bottom plate (311), two side plates (313) and a protruding plate (315), the two side plates (313) extend from the two sides of the bottom plate (311) towards the mounting part (40), The protruding plate (315) is bent and extends from the top of the bottom plate (311) towards the two side plates (313), The bottom plate (311) is connected with the turnover part (20) through the connecting piece (60), and the side of the bottom plate (311) close to the turnover part (20) protrudes a first sliding member (3111) and a second sliding member (3113); One end of one of the side plates (313) protrudes outwardly with a nut (317), the locking piece (33) penetrates through the two side plates (313) and the mounting part (40), and is threadedly connected with the nut (317).

9. The display support of claim 8, wherein, The mounting part (40) further comprises a fixing piece (43) and two flaps (45), the two flaps (45) extend from the two sides of the fixing piece (43) towards the U-shaped piece (31), The fixing piece (43) is hollow inside for penetrating the rod part (10), and the end of the fixing piece (43) away from the flaps (45) is used for inserting into the fixing part (50) and abutting the fixing part (50) against the rod part (10); The two flaps (45) are inserted into the locking piece (33) and located between the two side plates (313), so as to be rotationally connected with the U-shaped piece (31) through the locking piece (33).

10. The display support of claim 9, wherein, The two flaps (45) are provided with limiters (453) protruding towards the position of the protruding plate (315), and when the U-shaped piece (31) rotates upward, the limiters (453) can abut against the protruding plate (315) to limit the upward rotation of the U-shaped piece (31).