A display stand for reducing the dead space of a low utility
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU URBAN PLANNING & DESIGN SURVEY RES INST
- Filing Date
- 2025-08-01
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]因此传统展示台搭建灵活性低,难以适应地面的凹陷或凸起情况,展示效果不佳,甚至可能引发安全问题
[0017] This utility model provides a foldable and adjustable display stand. It can be assembled and adjusted according to the size of the site and the degree of depression. Two adjustable display stand bases can be combined to form a simple display stand according to the size of the site. The display stand can also be enlarged according to the area of the site. In addition, according to the degree of depression of the ground, the length of multiple adjustable feet can be adjusted to keep them flush with the ground. Finally, the display stand can be surrounded by a side panel structure and auxiliary installation structure, so that the sides and rear of the display stand are enclosed, which can create a relatively closed space, thereby allowing more focus on the display content and avoiding external interference.
Smart Images

Figure CN224597878U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of urban planning and construction technology, and in particular to a display stand for reducing inefficient land use. Background Technology
[0002] Inefficient land use refers to existing construction land in urban areas that is scattered, extensively utilized, and irrationally used. In current exhibition activities, the construction of exhibition stands often faces multiple challenges, and inefficient land use also occurs. Regarding land use, the irregularity in size and unevenness of the ground bring significant difficulties to the construction of exhibition stands. Therefore, traditional exhibition stands require the selection of suitable, flat ground for construction.
[0003] Traditional booth construction begins with preparing the necessary materials for the booth structure, such as aluminum alloy trusses, diagonal braces, bases, anchor bolts, square sleeves, and crossbeams. The selection of these materials should be determined based on the booth's size, load-bearing requirements, and design style. Next, the main frame is constructed according to the design drawings. This typically involves placing the base on the ground and ensuring its balance, inserting and tightening the diagonal braces, fixing the anchor bolts to the base and fitting the square sleeves, and then connecting the crossbeams and connecting them to the square sleeves on both sides. Afterward, the upright trusses are laid flat, one end screwed onto the anchor bolt, the other end screwed onto the crossbeam, and a hoist is connected. Multiple people work together to slowly erect the uprights, securing the anchor bolts, and using slings to hook the crossbeams, evenly pulling them to the predetermined height. Finally, the construction is complete.
[0004] Therefore, traditional display stands have low flexibility in construction, are difficult to adapt to uneven ground, have poor display effects, and may even cause safety problems.
[0005] Therefore, there is an urgent need for a new type of foldable and adjustable display stand design. This design should be flexible enough to adapt to different site sizes and ground contours, while also facilitating the construction of fencing structures to create a relatively enclosed space, allowing for greater focus on the displayed content and minimizing external interference. Furthermore, the design should be easy to disassemble and transport to meet the needs of different venues and display activities. Utility Model Content
[0006] This invention provides a display stand that reduces inefficient land use, thus solving the aforementioned technical problems.
[0007] To solve the above-mentioned technical problems, this utility model provides a display stand that reduces inefficient land use, including two adjustable display stand bases and a rear baffle. The two adjustable display stand bases are respectively fixed with two sets of I-shaped sliders and two sets of I-shaped moving slots at opposite ends. The two adjustable display stand bases are slidably connected by the two sets of I-shaped sliders and the two sets of I-shaped moving slots. Two auxiliary installation structures are symmetrically fixed on the back of the two adjustable display stand bases, and a rear baffle is inserted between the two auxiliary installation structures. Two sets of side baffle structures are symmetrically rotatably connected on opposite sides of the two adjustable display stand bases. Multiple adjustable feet are fixed at the bottom of the two adjustable display stand bases.
[0008] The adjustable booth base includes a base one and a base two. A telescopic plate one is movably inserted into the end face of the base two facing the base one. The telescopic plate one is fixedly connected to the outer end of the base one. Two sliding grooves are opened at the bottom of the base two.
[0009] Preferably, the plurality of adjustable feet are fixed at the four corners of base one and base two, and the telescopic plate one is also fixedly connected to the adjustable feet at the two sliding groove positions.
[0010] Preferably, the side baffle structure includes two sets of locking structures, each set of locking structures is rotatably connected to a side plate, and an iron sheet and a telescopic plate are respectively fixed between the two side plates. A magnetic sheet is fixed to the telescopic plate facing the iron sheet.
[0011] Preferably, each locking structure comprises two locking structures, each including a fixing block fixed to the adjustable display stand base and a connecting hole opened on the lower side of the side plate. The fixing block is threaded with a mounting bolt, which is adapted to the connecting hole.
[0012] Preferably, the adjustable foot includes a telescopic rod fixedly connected to the adjustable display stand base, a telescopic cylinder movably fitted into the lower part of the telescopic rod, a foot fixed to the bottom of the telescopic cylinder, and a fixing bolt threadedly connected to the upper part of the telescopic cylinder, the fixing bolt threaded through the telescopic cylinder to the inside and abutting against the telescopic rod for limitation.
[0013] Preferably, the auxiliary installation structure includes a right-angle seat fixed to the back of the base. The right-angle seat is rotatably connected to a support plate by adjusting bolts. The support plate has a slot on the end face facing the other auxiliary installation structure. Multiple positioning bolts are threadedly connected to the back of the support plate near the slot. The multiple positioning bolts are threaded through the slot. Multiple limiting bolts are also threaded through the back of the support plate.
[0014] Preferably, the base has multiple screw holes at the top and bottom of one rear end that are adapted to multiple limiting bolts.
[0015] Preferably, the rear baffle is inserted into the slots of the two auxiliary mounting structures, and the rear baffle is abutted and limited by multiple positioning bolts.
[0016] Compared with related technologies, the display stand that reduces inefficient land use provided by this utility model has the following beneficial effects:
[0017] This utility model provides a foldable and adjustable display stand. It can be assembled and adjusted according to the size of the site and the degree of depression. Two adjustable display stand bases can be combined to form a simple display stand according to the size of the site. The display stand can also be enlarged according to the area of the site. In addition, according to the degree of depression of the ground, the length of multiple adjustable feet can be adjusted to keep them flush with the ground. Finally, the display stand can be surrounded by a side panel structure and auxiliary installation structure, so that the sides and rear of the display stand are enclosed, which can create a relatively closed space, thereby allowing more focus on the display content and avoiding external interference. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of a folding display stand that reduces inefficient land use according to this utility model.
[0019] Figure 2 This is a schematic diagram of the display stand for reducing inefficient land use according to this utility model;
[0020] Figure 3 This is an enlarged schematic diagram of point A of this utility model;
[0021] Figure 4 This is a bottom-view diagram illustrating the present invention's method for reducing inefficient land use.
[0022] Figure 5 This is a schematic diagram of the display stand for reducing inefficient land use according to this utility model;
[0023] Figure 6 This is an enlarged schematic diagram of section B of this utility model.
[0024] The diagram is labeled as follows: 1. Adjustable display stand base; 11. Base 1; 12. Telescopic plate 1; 13. Base 2; 131. Slide groove; 2. Side baffle structure; 21. Telescopic plate 2; 22. Magnetic sheet; 23. Side plate; 3. Locking structure; 31. Fixing block; 32. Mounting bolt; 33. Connecting hole; 4. Auxiliary installation structure; 41. Right angle seat; 42. Positioning bolt; 43. Support plate; 431. Slot; 44. Limit bolt; 45. Adjusting bolt; 5. Adjustable feet; 6. Rear baffle. Detailed Implementation
[0025] Example 1, by Figure 1-6A display stand for reducing inefficient land use is provided, comprising two adjustable display stand bases 1 and a rear baffle 6. Two sets of I-beam sliders and two sets of I-beam moving slots are respectively fixed at opposite ends of the two adjustable display stand bases 1. The two adjustable display stand bases 1 are slidably connected by the two sets of I-beam sliders and the two sets of I-beam moving slots. Two auxiliary mounting structures 4 are symmetrically fixed on the back of the two adjustable display stand bases 1, and the rear baffle 6 is inserted between the two auxiliary mounting structures 4. Two sets of side baffle structures 2 are symmetrically rotatably connected on opposite sides of the two adjustable display stand bases 1. Multiple adjustable feet 5 are fixed at the bottom of the two adjustable display stand bases 1.
[0026] Specifically, this device is a foldable and adjustable display stand. It can be assembled and adjusted according to the size of the site and the degree of depression. According to the size of the site, two adjustable display stand bases are combined together. The base 11 and base 23 of one adjustable display stand base are fixedly connected to the I-shaped slider. The base 11 and base 23 of the other adjustable display stand base have I-shaped moving slots. The two adjustable display stand bases are connected and combined by inserting the two I-shaped sliders into the I-shaped moving slots, thus forming a simple display stand. According to the degree of depression of the ground, the length of multiple adjustable feet 5 can be adjusted to keep them flush with the ground. The display stand composed of two adjustable display stand bases 1 can be surrounded by a side baffle structure 2 and an auxiliary installation structure 4, so that the sides and rear of the display stand are enclosed, creating a relatively closed space, so as to focus more on the display content and avoid external interference.
[0027] In this embodiment, the adjustable display stand base 1 includes a base 11 and a base 2 13. A telescopic plate 12 is movably inserted into the end face of the base 2 13 facing the base 11. The telescopic plate 12 is fixedly connected to the outer end of the base 11. Two sliding grooves 131 are provided at the bottom of the base 2 13.
[0028] Specifically, the display stand can be enlarged according to the land area. That is, by grasping the two bases 11 and applying force, the telescopic plates 12 of each base 13 can be pulled out from the two bases 2, thereby increasing the area of the display stand and making use of the land. The extended part of the telescopic plate 12 can fill the pad and be flush with the base 11 and base 2 13.
[0029] In this embodiment, multiple adjustable feet 5 are fixed at the four corners of base 11 and base 2 13 respectively, and adjustable feet 5 are also fixedly connected to the front and rear of telescopic plate 12 at the positions of the two sliding grooves 131. The adjustable feet 5 include a telescopic rod fixedly connected to the adjustable display stand base 1, a telescopic cylinder movably inserted into the lower part of the telescopic rod, a foot fixed at the bottom of the telescopic cylinder, and a fixing bolt threadedly connected to the upper part of the telescopic cylinder. The fixing bolt thread passes through the telescopic cylinder to the inside and abuts against the telescopic rod for limitation.
[0030] Specifically, depending on the ground depression, the length of the multiple adjustable feet 5 can be adjusted. For the depressed ground position, loosen the fixing bolts, move the telescopic cylinder downward to extend the telescopic rod until it contacts the ground, and tighten the fixing bolts to hold it in place. For the protruding ground position, loosen the fixing bolts, move the telescopic cylinder upward to retract the telescopic rod until it contacts the ground, and tighten the fixing bolts to hold it in place. In this way, the display stand will remain stable on the ground, eliminating the need to choose a flat ground to build the display stand.
[0031] In Example 2, based on Example 1, the side baffle structure 2 includes two sets of locking structures 3. Each set of locking structures 3 is rotatably connected to a side plate 23. An iron sheet is fixed between the two side plates 23 and a telescopic plate 21 is movably inserted between them. A magnetic sheet 22 is fixed to the telescopic plate 21 facing the iron sheet.
[0032] Specifically, the two side plates 23 on the base 11 and the base 2 13 are flipped upwards and perpendicular to the adjustable display stand base 1, and fixed by the locking structure 3. The gap of the telescopic plate 12 can be used to grab the magnetic piece 22 and pull out the telescopic plate 21. The magnetic piece 22 is magnetically fixed close to the iron piece, so that the two side plates 23 are connected to the telescopic plate 21 as one unit. The other side baffle structure 2 is operated in the same way.
[0033] In this embodiment, each locking structure 3 consists of two locking structures 3. The locking structure 3 includes a fixing block 31 fixed on the adjustable display stand base 1 and a connecting hole 33 opened on the lower side of the side plate 23. The fixing block 31 is threaded with a mounting bolt 32, which is adapted to the connecting hole 33. In use, the side plate 23 is flipped upward and perpendicular to the adjustable display stand base 1. The mounting bolt 32 is rotated to insert into the connecting hole 33 for limiting and fixing.
[0034] In Example 3, based on Example 1, the auxiliary installation structure 4 includes a right-angle seat 41 fixed to the back of the base 11. The right-angle seat 41 is rotatably connected to a support plate 43 by adjusting bolts 45. The support plate 43 has a slot 431 on its end face facing the other auxiliary installation structure 4. Multiple positioning bolts 42 are threadedly connected to the back of the support plate 43 near the slot 431. The multiple positioning bolts 42 are threaded through the slot 431. Multiple limiting bolts 44 are also threaded through the back of the support plate 43. The rear baffle 6 is inserted into the slots 431 of the two auxiliary installation structures 4, and the rear baffle 6 abuts against and limits the multiple positioning bolts 42. Multiple screw holes are opened at the rear end of the base 11 to match the multiple limiting bolts 44.
[0035] Specifically, the support plate 43 is flipped upwards and perpendicular to the right-angle seat 41. The adjusting bolt 45 is tightened to fix the support plate 43. At this time, the multiple positioning bolts 42 on the support plate 43 correspond one-to-one with the multiple threaded holes on the side plate 23. The multiple positioning bolts 42 are threaded into the multiple threaded holes to reinforce the side plate 23 and improve stability. After the support plates 43 of the two auxiliary installation structures 4 are opened, the rear baffle 6 is inserted into the slots 431 of the two support plates 43 and tightened to abut against the limit by the limit bolts 44.
[0036] Working principle:
[0037] This device is a foldable and adjustable display stand, which can be adapted and assembled according to the size of the site and the shape of the recess;
[0038] First, combine two adjustable display stands together according to the size of the land. One adjustable display stand has its base 11 and base 23 fixedly connected to I-shaped sliders, while the other adjustable display stand has I-shaped moving slots on its base 11 and base 23. The two adjustable display stands are connected by inserting two I-shaped sliders into the I-shaped moving slots to form a simple display stand. The display stand can also be enlarged according to the land area. By grasping the two bases 11 and applying force, the telescopic plates 12 of each base 23 can be pulled out from the two bases 23, thereby increasing the display stand area and utilizing the land. The extended part of the telescopic plate 12 can fill the pad and be flush with the bases 11 and base 23.
[0039] Depending on the ground's unevenness, the length of the multiple adjustable feet 5 can be adjusted. For uneven ground, loosen the fixing bolts, move the telescopic cylinder downwards to extend the telescopic rod until it contacts the ground, and then tighten the fixing bolts to hold it in place. For protruding ground, loosen the fixing bolts, move the telescopic cylinder upwards to retract the telescopic rod until it contacts the ground, and then tighten the fixing bolts to hold it in place. This ensures that the display stand remains stable on the ground, eliminating the need to choose a flat surface to build the display stand.
[0040] The display stand, composed of two adjustable display stand bases 1, can be enclosed by side baffle structure 2 and auxiliary installation structure 4. The two side plates 23 on base one 11 and base two 13 are flipped upwards and perpendicular to the adjustable display stand base 1, and fixed by locking structure 3. The rotating mounting bolt 32 is inserted into the connecting hole 33 for limit. The gap of the extension plate one 12 can be used to grab the magnetic piece 22 and pull out the extension plate two 21. The magnetic piece 22 is magnetically fixed close to the iron piece, so that the two side plates 23 are connected to the extension plate two 21 as one unit. The other side baffle structure 2 is operated in the same way.
[0041] Next, open the auxiliary installation structure 4, that is, grasp the support plate 43 and flip it upward to be perpendicular to the right angle seat 41. Tighten the adjusting bolt 45 to fix the support plate 43. At this time, the multiple positioning bolts 42 on the support plate 43 correspond one-to-one with the multiple threaded holes on the side plate 23. Rotate the multiple positioning bolts 42 into the multiple threaded holes to reinforce the side plate 23 and improve stability. After the support plates 43 of the two auxiliary installation structures 4 are opened, insert the rear baffle 6 into the slots 431 of the two support plates 43. Tighten the limiting bolts 44 to abut against the limit, so that the sides and rear of the display stand are surrounded, which can create a relatively closed space, so as to focus more on the display content and avoid external interference.
[0042] When not in use, the device can be disassembled and folded for easy transportation.
Claims
1. A display stand that reduces inefficient land use, comprising two adjustable stand bases (1) and a rear baffle (6), characterized in that: The two adjustable display bases (1) are respectively fixed with two sets of I-shaped sliders and two sets of I-shaped moving slots at opposite ends. The two adjustable display bases (1) are slidably connected by the two sets of I-shaped sliders and the two sets of I-shaped moving slots. The back of the two adjustable display bases (1) is symmetrically fixed with two auxiliary installation structures (4), and a rear baffle (6) is inserted between the two auxiliary installation structures (4). The two adjustable display bases (1) are symmetrically rotated and connected with two sets of side baffle structures (2) on opposite sides. The bottom of the two adjustable display bases (1) is fixed with multiple adjustable feet (5). The adjustable display stand base (1) includes a base one (11) and a base two (13). A telescopic plate one (12) is movably inserted into the end face of the base two (13) facing the base one (11). The telescopic plate one (12) is fixedly connected to the base one (11) at its outer end. Two sliding grooves (131) are opened at the bottom of the base two (13).
2. The display stand for reducing inefficient land use according to claim 1, characterized in that, The multiple adjustable feet (5) are fixed at the four corners of the base one (11) and the base two (13), and the telescopic plate one (12) is also fixedly connected to the adjustable feet (5) at the two slide grooves (131) in front and behind.
3. The display stand for reducing inefficient land use according to claim 1, characterized in that, The side baffle structure (2) includes two sets of locking structures (3), each set of locking structures (3) is rotatably connected with a side plate (23), and an iron sheet and a telescopic plate (21) are respectively fixed between the two side plates (23). A magnetic sheet (22) is fixed on the telescopic plate (21) facing the iron sheet.
4. A display stand for reducing inefficient land use according to claim 3, characterized in that, Each locking structure (3) consists of two locking structures (3). The locking structure (3) includes a fixing block (31) fixed on the adjustable display stand base (1) and a connecting hole (33) opened on the lower side of the side plate (23). The fixing block (31) is threaded with a mounting bolt (32), which is adapted to the connecting hole (33).
5. A display stand for reducing inefficient land use according to claim 1, characterized in that, The adjustable foot (5) includes a telescopic rod fixedly connected to the adjustable display stand base (1). A telescopic cylinder is movably fitted into the lower part of the telescopic rod. A foot is fixed at the bottom of the telescopic cylinder. A fixing bolt is threadedly connected to the upper part of the telescopic cylinder. The fixing bolt thread passes through the telescopic cylinder to the inside and abuts against the telescopic rod for limitation.
6. A display stand for reducing inefficient land use according to claim 1, characterized in that, The auxiliary installation structure (4) includes a right-angle seat (41) fixed to the back of the base (11). The right-angle seat (41) is connected to a support plate (43) by adjusting bolts (45). The support plate (43) has a slot (431) facing the end face of the other auxiliary installation structure (4). Multiple positioning bolts (42) are threadedly connected to the back of the support plate (43) near the slot (431). The multiple positioning bolts (42) are threaded through the slot (431). Multiple limiting bolts (44) are also threaded through the back of the support plate (43).
7. A display stand for reducing inefficient land use according to claim 6, characterized in that, The base (11) has multiple screw holes at the rear end that are compatible with multiple limit bolts (44).
8. A display stand for reducing inefficient land use according to claim 6, characterized in that, The rear baffle (6) is inserted into the slots (431) of the two auxiliary mounting structures (4), and the rear baffle (6) abuts against and is limited by a plurality of positioning bolts (42).