Guide table structure for indoor hall

By using spring-damped shock absorber and frame design in the guide structure, the problem that the guide keel member does not have a stable structure under the influence of the weight of the table stone is solved, and the stable installation and long-life use of the guide is achieved.

CN222840769UActive Publication Date: 2025-05-09SHANGHAI LANTIAN BUILDING DECORATION ENG CO LTD
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Patent Information

Application Number
CN202421828272.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-05-09
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The existing guide keel members do not have a stable structure under the influence of the weight of the platform stone, resulting in the bending of the contacts and the falling off of the platform stone, affecting the service life of the guide table.

Method used

The guide structure is adopted that includes columns, upper support frames, upper tabletops, support members and side tabletops. Through the design of spring-dampened shock absorbers and frames, the stability and load-bearing capacity of the guide are improved.

Benefits of technology

Through the extrusion deformation of the spring-dampened vibration damper and the stable installation of the clamp frame, the stability and load-bearing capacity of the guide structure are improved, the table stone falls off and the service life of the guide table is extended.

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Abstract

The utility model relates to a guide table structure for an indoor hall, and relates to the field of guide table structures. The device comprises stand columns, an upper supporting frame, an upper table top, supporting pieces and side table tops, the number of the stand columns is four, every two of the four stand columns are symmetrically arranged into two sets, lower supporting plates are horizontally fixed between the two sets of stand columns, through holes are vertically formed in the lower supporting plates in a penetrating mode, the upper supporting frame is horizontally assembled above the four stand columns, and the upper table top is horizontally installed in the upper supporting frame in an embedded mode; the supporting piece comprises two side plates and a clamping frame, the two side plates are horizontally fixed between the stand columns on the two sides respectively, vertical rods are vertically fixed to the bottom faces of the side plates, the vertical rods on the side plates are vertically connected into the through holes of the lower supporting plate in a sliding mode, and the clamping frame is vertically fixed to the front ends of the two side plates. The clamping frame comprises the bearing side table top, good bearing performance and supporting stability are achieved, the side table top is extruded by the pressing plate to be kept stable in the clamping frame, and the mounting stability of the side table top is further improved.
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Description

Technical Field

[0001] The present application relates to the technical field of guide platform structures, and in particular to a guide platform structure for indoor halls. Background Art

[0002] Guide desks are widely used in public buildings, usually to provide consulting and guidance services for pedestrians to handle affairs. Guide desks are usually built in airport buildings to handle and guide passenger affairs. When existing airport guide desks are built, the base is usually cast first, and then the guide desk keel components are assembled and installed on the base. In order to improve the aesthetics and grade of the airport or other commercial interiors, the guide desk keel components need to be decorated and paved with table stones.

[0003] The existing announcement number is CN219451169U, and the name is an assembled partition wall keel structure, including vertical keels and transverse keels for forming a partition wall system. A number of special-shaped holes that are snap-fitted with the transverse keels are evenly arranged on both sides of the vertical keels from top to bottom, and a guide step is arranged inwardly from top to bottom in the middle of the special-shaped hole. The special-shaped hole is located at the lower part of the guide step and is formed with a keel slot that is snap-fitted with the transverse keel. Hooks that are snap-fitted with the special-shaped holes are arranged on the left and right ends of the transverse keel, and the two ends of the transverse keel adopt a downward hook design, as well as special-shaped holes on the vertical keel that match the transverse keel. During assembly, the hooks on both sides of the transverse keel are aligned with the special-shaped holes of the vertical keel. After alignment, the transverse keel is knocked from top to bottom to squeeze the hooks through the guide steps. The hooks are elastically snapped into the keel slots to complete the snap connection.

[0004] With respect to the above-mentioned related technologies, the inventors found that when constructing the guide platform keel components, the keel plates are provided with clamping holes and clamping grooves, and the adjacent keel plates are clamped together during construction. However, the external vertical surface of the guide platform keel components after clamping needs to be paved with table stones. The table stones themselves are heavy, and the clamped guide platform keel components themselves do not have a stable structure. Under the influence of the weight of the table stones for a long time, the clamping points of the guide platform keel components will bend, causing the table stones on the guide platform to fall off, thus affecting the service life of the guide platform. Utility Model Content

[0005] In order to overcome the problem that the existing guide platform keel components that are completed by clipping need to be paved with table stones on the external vertical surface, the table stones themselves are heavy, and the guide platform keel components themselves do not have a stable structure. Under the influence of the weight of the table stones for a long time, the guide platform keel components will bend, causing the table stones on the guide platform to fall off, thus affecting the service life of the guide platform. The present application provides a guide platform structure for an indoor hall.

[0006] The present application provides a guide platform structure for an indoor hall using the following technical solution:

[0007] The guide platform structure for an indoor hall comprises columns, an upper support frame, an upper table top, support members and side table tops. Four columns are provided, and two of the four columns are symmetrically arranged in two groups, and a lower support plate is horizontally fixed between the two groups of columns, and a through hole is vertically penetrated in the lower support plate. The upper support frame is horizontally assembled above the four columns, and the upper table top is horizontally embedded and installed in the upper support frame. The support member comprises side plates and a card frame. Two side plates are provided, and the two side plates are horizontally fixed between the columns on both sides, respectively. Vertical rods are vertically fixed on the bottom surfaces of the side plates, and the vertical rods on the side plates are vertically slidably connected to the through holes of the lower support plate. The front ends of the two side plates are vertically fixed with card frames, and the side table top is vertically carded in the card frames. Press plates are horizontally slidably installed on both sides of the card frames, and spring damping shock absorbers are horizontally fixed on both sides of the card frames, and the other ends of the spring damping shock absorbers are fixed on the pressure plates.

[0008] By adopting the above technical solution, the four columns are fixedly installed on the preset base in sequence during use, and then the pressure plate is pulled to slide horizontally on both sides of the card frame to squeeze the spring damping shock absorber to deform, and then the side table is horizontally inserted into the card frame of the support member, and then the pressure plate is released and the side table is squeezed and installed in the card frame under the deformation pressure of the spring damping shock absorber. The card frame includes a load-bearing side table, which has good load-bearing and supporting stability, and the side table is squeezed by the pressure plate to keep it stable in the card frame, thereby further improving the stability of the side table installation.

[0009] Optionally, a plurality of reinforcing plates are vertically fixed to both ends of the lower supporting plate, and the plurality of reinforcing plates are fixed on the columns, and a guide cylinder is vertically fixed on the lower supporting plate.

[0010] By adopting the above technical solution, the lower support plate is fixed to the column through multiple reinforcing plates, and multiple bearing points are set to improve the stability of the supporting side table. The guide cylinder is set to vertically guide the card frame of the bearing side table to maintain vertical movement.

[0011] Optionally, a pressure column is vertically fixed on the bottom surface of the side plate, and the pressure column is slidably connected in the guide cylinder, a second spring is vertically fixed on the bottom surface of the pressure column, and the bottom end of the second spring is fixed on the inner bottom surface of the guide cylinder.

[0012] By adopting the above technical solution, the pressure column on the bottom surface of the middle side plate is slidably inserted into the guide cylinder, squeezing the second spring to deform and absorb the weight of the supporting side table. At the same time, the deformation force of the second spring lifts the weight of the bearing part of the side table upward, reducing the squeezing force on the card frame.

[0013] Optionally, an upper support plate is horizontally fixed above the column, a guide rod is vertically fixed on the top surface of the upper support plate, and a stud is vertically fixed on the top end surface of the guide rod.

[0014] By adopting the above technical solution, the guide rod on the upper support plate is used to guide the assembly of the upper support frame above the column, which is used to support the upper table surface in the later stage.

[0015] Optionally, a perforated plate is horizontally fixed on the side end surface of the upper support frame, and the perforated plate is vertically slidably connected to the guide rod, and a nut is threadedly assembled on the stud of the guide rod.

[0016] By adopting the above technical solution, the orifice plate on the upper support frame is slidably inserted on the guide rod, and the nut threadedly assembled on the stud at the top of the guide rod limits the sliding position of the upper support frame on the guide rod.

[0017] Optionally, an insertion tube is vertically fixed on the top surface of the upper support plate, and a top plate is horizontally arranged above the top surface of the upper support plate, an insertion rod is vertically fixed on the bottom surface of the top plate, and the insertion rod of the top plate is slidably connected in the insertion tube.

[0018] By adopting the above technical solution, the top plate insertion rod on the upper support plate is slidably inserted into the insertion tube, and the vertical guide top plate moves vertically on the upper support plate to bear and support the upper support frame.

[0019] Optionally, a first spring is vertically sleeved on the insertion rod of the top plate, and the two ends of the first spring are respectively fixed on the top surface of the insertion tube and the bottom surface of the top plate, a damping rod is vertically fixed on the top surface of the upper support plate, and the top end of the damping rod is fixed on the bottom surface of the top plate.

[0020] By adopting the above technical solution, when the upper support frame is squeezed, the top plate slides vertically in the insert tube of the upper support plate, squeezing the first spring to deform and absorb the downward pressure of the upper support frame. At the same time, the deformation force of the first spring is absorbed by the damping rod to maintain the stability of the upper support frame.

[0021] Optionally, the bottom ends of the four columns are vertically fixed with plug posts, and the plug posts are inserted and fixed on the base.

[0022] By adopting the above technical solution, the plug post at the bottom end of the column is inserted into the preset installation groove of the base, and after being fixed, the assembly connection between the guide platform component and the foundation is completed.

[0023] To summarize, the present application includes at least one of the following beneficial technical effects: during use, the four columns are fixedly installed on a preset base in sequence, and then the pressure plate is pulled to slide horizontally on both sides of the card frame to squeeze the spring damping shock absorber to deform, and then the side table is laterally inserted into the card frame of the support member, and then the pressure plate is released. Under the deformation pressure of the spring damping shock absorber, the side table is squeezed and installed in the card frame. The card frame includes a load-bearing side table, which has good load-bearing and supporting stability, and the side table is squeezed by the pressure plate to remain stable in the card frame, further improving the stability of the side table installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.

[0025] Figure 2It is a schematic diagram of the structure of the embodiment of the present application in an exploded state;

[0026] Figure 3 It is a schematic diagram of the structure of the upper support frame in the embodiment of the present application in a disassembled state;

[0027] Figure 4 It is a schematic diagram of the structure of the column in the embodiment of the present application in a disassembled state;

[0028] Figure 5 It is a schematic diagram of the structure of the support member of the embodiment of the present application in a disassembled state.

[0029] Explanation of the reference numerals in the accompanying drawings: 1. upright column; 11. inserted column; 12. upper support plate; 121. inserted cylinder; 122. damping rod; 13. top plate; 131. first spring; 14. guide rod; 15. lower support plate; 151. reinforcing plate; 152. through hole; 153. guide cylinder; 2. upper support frame; 21. orifice plate; 22. nut; 3. upper table; 4. support member; 41. side plate; 411. vertical rod; 412. pressure column; 413. second spring; 42. card frame; 43. pressure plate; 44. spring damping shock absorber; 5. side table. DETAILED DESCRIPTION

[0030] The present application is further described in detail below in conjunction with the accompanying drawings.

[0031] The present application embodiment discloses a guide platform structure for an indoor hall. Figure 1 A guide platform structure for an indoor hall includes a column 1, an upper support frame 2, an upper table top 3, a support member 4 and a side table top 5. Four columns 1 are provided, and the four columns 1 are symmetrically arranged in two groups. The bottom ends of the four columns 1 are vertically fixed with plug-in columns 11, and the plug-in columns 11 are inserted and fixed on the base. The plug-in columns 11 at the bottom ends of the columns 1 are inserted into the preset installation grooves of the base, and after being fixed, the assembly connection between the guide platform component and the foundation is completed, and a lower support plate 15 is horizontally fixed between the two groups of columns 1, and a through hole 152 is vertically penetrated on the lower support plate 15. The upper support frame 2 is horizontally assembled above the four columns 1, and the upper table top 3 is horizontally embedded and installed in the upper support frame 2. The support member 4 includes a side panel 41 and a card frame 42. Two side panels 41 are provided, and the two side panels 41 are horizontally fixed on the two sides, respectively. Between the side columns 1, a vertical rod 411 is vertically fixed on the bottom surface of the side plate 41, and the vertical rod 411 on the side plate 41 is vertically slidably connected to the through hole 152 of the lower support plate 15, a card frame 42 is vertically fixed to the front end of the two side plates 41, and a side table 5 is vertically carded in the card frame 42, and pressure plates 43 are horizontally slidably installed on both sides of the card frame 42, and spring damping shock absorbers 44 are horizontally fixed on both sides of the card frame 42, and the other end of the spring damping shock absorber 44 is fixed on the pressure plate 43.

[0032] By adopting the above technical solution, the four columns 1 are fixedly installed on the preset base in sequence during use, and then the pressure plate 43 is pulled to slide horizontally on both sides of the card frame 42 to squeeze the spring damping shock absorber 44 to deform, and then the side table 5 is horizontally inserted into the card frame 42 of the support member 4, and then the pressure plate 43 is released. Under the deformation pressure of the spring damping shock absorber 44, the side table 5 is squeezed and installed in the card frame 42. The card frame 42 includes a load-bearing side table 5, which has good load-bearing and supporting stability, and the side table 5 is squeezed by the pressure plate 43 to remain stable in the card frame 42, thereby further improving the stability of the installation of the side table 5.

[0033] Reference Figure 3 , Figure 4 and Figure 5 , multiple reinforcing plates 151 are vertically fixed at both ends of the lower support plate 15, and the multiple reinforcing plates 151 are fixed on the column 1, and a guide cylinder 153 is vertically fixed on the lower support plate 15. The lower support plate 15 is fixed on the column 1 through multiple reinforcing plates 151, and multiple bearing points are set to improve the stability of the supporting side table 5. The guide cylinder 153 is set to vertically guide the clamping frame 42 that supports the side table 5 to maintain vertical movement. A pressure column 412 is vertically fixed on the bottom surface of the side plate 41, and the pressure column 412 is slidably connected in the guide cylinder 153. A second spring 413 is vertically fixed on the bottom surface of the pressure column 412, and the bottom end of the second spring 413 is fixed on the inner bottom surface of the guide cylinder 153. During use, the pressure column 412 on the bottom surface of the middle side plate 41 is slidably inserted into the guide cylinder 153, squeezing the second spring 413 to deform and absorb the weight of the supporting side table 41. At the same time, the deformation force of the second spring 413 lifts the weight of the bearing part of the side table 5 upward, reducing the squeezing force on the card frame 42.

[0034] Reference Figure 3 and Figure 4 An upper support plate 12 is fixed horizontally above the column 1, and a guide rod 14 is fixed vertically on the top surface of the upper support plate 12, and a stud is fixed vertically on the top surface of the guide rod 14. The guide rod 14 on the upper support plate 12 is used to guide the assembly of the upper support frame 2 above the column 1, and is used to support the upper table 3 in the later stage. A perforated plate 21 is fixed horizontally on the side end surface of the upper support frame 2, and the perforated plate 21 is vertically slidably connected to the guide rod 14, and a nut 22 is threadedly assembled on the stud of the guide rod 14. The perforated plate 21 on the upper support frame 2 is slidably inserted into the guide rod 14, and the nut threadedly assembled on the stud 14 at the top of the guide rod 14 limits the position of the upper support frame 2 sliding on the guide rod 14.

[0035] Reference Figure 4, an insert cylinder 121 is vertically fixed on the top surface of the upper support plate 12, and a top plate 13 is horizontally arranged above the top surface of the upper support plate 12, a plug rod is vertically fixed on the bottom surface of the top plate 13, and the plug rod of the top plate 13 is slidably connected in the insert cylinder 121. The plug rod of the top plate 13 on the upper support plate 12 is slidably inserted into the plug cylinder 121, and the vertical guide top plate 13 moves vertically on the upper support plate 12, which is used to carry and support the upper support frame 2. A first spring 131 is vertically sleeved on the plug rod of the top plate 13, and the two ends of the first spring 131 are respectively fixed on the top surface of the plug cylinder 121 and the bottom surface of the top plate 13. A damping rod 122 is vertically fixed on the top surface of the upper support plate 12, and the top end of the damping rod 122 is fixed on the bottom surface of the top plate 13. When the upper support frame 2 is squeezed, the top plate 13 slides vertically in the insert tube 121 of the upper support plate 12, squeezing the first spring 131 to deform and absorb the downward pressure of the upper support frame 2. At the same time, the deformation force of the first spring 131 is absorbed by the damping rod 122 to maintain the stability of supporting the upper support frame 2.

[0036] The implementation principle of the guide platform structure for an indoor hall in the embodiment of the present application is as follows: in use, the four columns 1 are fixedly installed on the preset base in sequence, and then the pressure plate 43 is pulled to slide horizontally on both sides of the card frame 42 to squeeze the spring damping shock absorber 44 to deform, and then the side table 5 is horizontally inserted into the card frame 42 of the support member 4, and then the pressure plate 43 is released. Under the deformation pressure of the spring damping shock absorber 44, the side table 5 is squeezed and installed in the card frame 42, and the card frame 42 includes the bearing side table 5, and then the upper The orifice plate 21 on the support frame 2 is slidably inserted on the guide rod 14, and the nut threadedly assembled on the stud 14 at the top of the guide rod 14 limits the position of the upper support frame 2 sliding on the guide rod 14, and the upper table 3 is placed in the upper support frame 2. When the upper support frame 2 is squeezed, the top plate 13 slides vertically in the insert tube 121 of the upper support plate 12, squeezing the first spring 131 to deform and absorb the downward pressure of the upper support frame 2. At the same time, the deformation force of the first spring 131 is absorbed by the damping rod 122 to maintain the stability of the support upper frame 2.

[0037] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A guide platform structure for an indoor hall, characterized in that: The utility model comprises a column (1), an upper support frame (2), an upper table (3), a support member (4) and a side table (5), wherein the column (1) is provided with four, and the four columns (1) are symmetrically arranged in two groups, and a lower support plate (15) is horizontally fixed between the two groups of columns (1), and a through hole (152) is vertically opened on the lower support plate (15), the upper support frame (2) is horizontally assembled above the four columns (1), and the upper table (3) is horizontally embedded and installed in the upper support frame (2), and the support member (4) comprises a side plate (41) and a clamping frame (42), and the side plate (41) is provided with two pieces, and the two side plates (41) are They are respectively fixed horizontally between the two side columns (1); a vertical rod (411) is vertically fixed on the bottom surface of the side plate (41); and the vertical rod (411) on the side plate (41) is vertically slidably connected to the through hole (152) of the lower support plate (15); a clamping frame (42) is vertically fixed at the front end of the two side plates (41); and the side table (5) is vertically clamped in the clamping frame (42); pressing plates (43) are horizontally slidably installed on both sides of the clamping frame (42); and spring damping shock absorbers (44) are horizontally fixed on both sides of the clamping frame (42); and the other end of the spring damping shock absorber (44) is fixed on the pressing plate (43).

2. The guide platform structure for an indoor hall according to claim 1, characterized in that: A plurality of reinforcing plates (151) are vertically fixed to both ends of the lower support plate (15), and the plurality of reinforcing plates (151) are fixed on the upright column (1), and a guide cylinder (153) is vertically fixed on the lower support plate (15).

3. The guide platform structure for an indoor hall according to claim 2, characterized in that: A pressure column (412) is vertically fixed on the bottom surface of the side plate (41), and the pressure column (412) is slidably connected in the guide cylinder (153). A second spring (413) is vertically fixed on the bottom surface of the pressure column (412), and the bottom end of the second spring (413) is fixed on the inner bottom surface of the guide cylinder (153).

4. The guide platform structure for an indoor hall according to claim 1, characterized in that: An upper support plate (12) is horizontally fixed above the upright column (1), a guide rod (14) is vertically fixed on the top surface of the upper support plate (12), and a stud is vertically fixed on the top end surface of the guide rod (14).

5. The guide platform structure for an indoor hall according to claim 4, characterized in that: A perforated plate (21) is horizontally fixed on the side end surface of the upper support frame (2), and the perforated plate (21) is vertically slidably connected to the guide rod (14), and a nut (22) is threadedly assembled on the stud of the guide rod (14).

6. The guide platform structure for indoor hall according to claim 5, characterized in that: An insertion tube (121) is vertically fixed on the top surface of the upper support plate (12), and a top plate (13) is horizontally arranged above the top surface of the upper support plate (12). An insertion rod is vertically fixed on the bottom surface of the top plate (13), and the insertion rod of the top plate (13) is slidably connected in the insertion tube (121).

7. The guide platform structure for indoor hall according to claim 6, characterized in that: A first spring (131) is vertically sleeved on the insertion rod of the top plate (13), and two ends of the first spring (131) are respectively fixed to the top surface of the insertion tube (121) and the bottom surface of the top plate (13); a damping rod (122) is vertically fixed on the top surface of the upper support plate (12), and the top end of the damping rod (122) is fixed to the bottom surface of the top plate (13).

8. The guide platform structure for an indoor hall according to claim 1, characterized in that: Insertion columns (11) are vertically fixed at the bottom ends of the four upright columns (1), and the insertion columns (11) are inserted and fixed on the base.

Citation Information

Patent Citations

  • Fabricated partition keel structure

    CN219451169U