Steel platform thin wash rice stone surface layer structure and its construction method

By setting fasteners and steel mesh on the steel platform, the problem of poor connection between the washed stone and the steel was solved, a stable surface structure was achieved, the risk of cracking and falling off was reduced, and the durability and appearance quality of the building were improved.

CN116733193BActive Publication Date: 2026-03-20SOUTHERN CONSTR CO LTD OF CHINA CONSTR EIGHTH ENG DIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing technologies often result in poor bonding between washed stone and steel, leading to problems such as cracking and complete detachment.

Method used

The structure consists of a steel platform body, fasteners, and a steel mesh. The steel platform body serves as the template for the washed rice stone. The fasteners are welded to the steel base plate and connected to the steel mesh. The steel mesh is located in the middle of the thickness direction of the washed rice stone, forming a stable surface structure.

Benefits of technology

It improves the reliability of the connection between the washed stone and the steel structure, reduces the risk of cracking, and enhances the durability of the surface layer and the overall appearance quality.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a kind of steel platform thin rice stone surface layer structure and its construction method, the structure includes steel platform body (1), fixed part (2), steel bar mesh (3) and rice stone body (4);Steel platform body (1) is the hollow structure of top opening, several fixed parts (2) are arranged in matrix in steel platform body (1), steel bar mesh (3) is arranged in steel platform body (1) and is tied and fixed on several fixed parts (2);Rice stone body (4) is poured in steel platform body (1), so that fixed part (2) and steel bar mesh (3) are located in rice stone body (4), form rice stone surface layer, and several rice stone surface layers are spliced to constitute rice stone surface layer structure by steel platform body (1).The application can solve the problem that the connection effect of rice stone and steel is not good, the rice stone is easy to crack and the whole problem of falling off in the prior art.
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Description

TECHNICAL FIELD

[0001] The present application relates to a decorative surface layer structure and a construction method thereof, in particular to a steel platform thin washed rice stone surface layer structure and a construction method thereof. BACKGROUND

[0002] In order to enrich the overall appearance effect of the building, a certain project designs a green thin washed rice stone building method on the steel platform. The washed rice stone is used as the surface layer of the building effect, and the construction quality is particularly important for the overall appearance effect and the building use durability. Since the washed rice stone and the steel are two different materials, the connection effect is not good, and the washed rice stone is easy to crack and fall off as a whole. Therefore, a steel platform thin washed rice stone surface layer structure and a construction method thereof are needed to solve the problems of poor connection effect of the washed rice stone and the steel, easy cracking and overall falling off of the washed rice stone in the prior art. SUMMARY

[0003] The purpose of the present application is to provide a steel platform thin washed rice stone surface layer structure and a construction method thereof, which can solve the problems of poor connection effect of the washed rice stone and the steel, easy cracking and overall falling off of the washed rice stone in the prior art.

[0004] The present application is realized as follows:

[0005] A steel platform thin washed rice stone surface layer structure, comprising a steel platform body, a fixing piece, a steel mesh and a washed rice stone body; the steel platform body is a hollow structure with an open top, a plurality of fixing pieces are arranged in a matrix in the steel platform body, and the steel mesh is arranged in the steel platform body and fixed on the plurality of fixing pieces by binding; the washed rice stone body is poured into the steel platform body, so that the fixing pieces and the steel mesh are located in the washed rice stone body, forming a washed rice stone surface layer, and a plurality of washed rice stone surface layers are spliced by the steel platform body to form a washed rice stone surface layer structure.

[0006] The steel platform body comprises a steel bottom plate and a thin side steel plate; the thin side steel plate is arranged around the circumference of the steel bottom plate, and the thin side steel plate is connected perpendicularly to the steel bottom plate; the fixing piece is welded and fixed on the steel bottom plate, and adjacent two washed rice stone surface layers are connected by the steel bottom plate and the thin side steel plate.

[0007] The steel platform body is provided with a middle steel plate, which divides the steel platform body into a plurality of steel platform units, and the steel mesh is installed in each steel platform unit by a plurality of matrix arranged fixing pieces and the washed rice stone body is poured.

[0008] The cross section of the fixing piece is in a cross shape structure, the lower end of the fixing piece is welded perpendicularly on the steel bottom plate, and the upper end of the fixing piece is connected with the steel mesh.

[0009] The upper end of the fixing part is formed with a L-shaped clamping part, and the clamping part and the fixing part form a U-shaped clamping groove, so that the mesh of the reinforcing mesh is clamped in the U-shaped clamping groove and is fixed by binding.

[0010] The reinforcing mesh is located in the middle of the thickness direction of the washing rice stone body.

[0011] A construction method of a steel platform thin washing rice stone surface layer structure comprises the following steps:

[0012] Step 1: steel platform body construction;

[0013] Step 2: fixing part positioning and installation;

[0014] Step 3: reinforcing mesh laying;

[0015] Step 4: washing rice stone body construction;

[0016] Step 5: washing rice stone body maintenance, forming a washing rice stone surface layer.

[0017] In step 2, a plurality of fixing parts are arranged in a matrix structure on the inner side of the thin side steel plate of the steel platform body, and the lower end of each fixing part is welded and fixed to the steel bottom plate of the steel platform body.

[0018] In step 3, the reinforcing mesh is arranged on the plurality of fixing parts, so that the mesh of the reinforcing mesh is correspondingly clamped with the U-shaped clamping grooves on the plurality of fixing parts, and the reinforcing mesh is fixed by binding with the L-shaped clamping part.

[0019] In step 4, the washing rice stone is integrally poured into the steel platform body to form a washing rice stone body, and the plurality of fixing parts and the reinforcing mesh are located in the washing rice stone body, and the reinforcing mesh is located in the middle of the thickness direction of the washing rice stone body.

[0020] Compared with the prior art, the present application has the following beneficial effects:

[0021] 1. The steel platform body is provided, the steel bottom plate can be used as a pouring bottom mold of the washing rice stone, the thin side steel plate can be used as a pouring side mold of the washing rice stone and provide lateral restraint for the washing rice stone body, effectively reducing the cracking risk of the washing rice stone, and the area of the washing rice stone surface layer can be reduced through the middle steel plate to play the role of a separation joint; at the same time, the steel platform body is convenient to connect with the building steel structure, solving the problem of poor connection effect of the washing rice stone and the steel structure, avoiding the overall falling of the washing rice stone, and increasing the use durability of the washing rice stone surface layer.

[0022] 2. The fixing part is provided, the lower end of the fixing part is welded on the steel bottom plate and poured into the washing rice stone, which can improve the connection reliability of the washing rice stone and the steel platform body, further avoid the overall falling of the washing rice stone, and the upper end of the fixing part is convenient for the arrangement of the reinforcing mesh through the clamping part.

[0023] 3. Because the present invention has a steel mesh, which is tied to the fixing member, the steel mesh is located in the middle of the washed rice stone after it is poured, which achieves the effect of crack resistance. This helps to prevent the risk of cracking caused by the overall thinness of the washed rice stone and improves the overall appearance quality of the washed rice stone surface. Attached Figure Description

[0024] Figure 1 This is a cross-sectional view of the thin washed rice stone surface layer structure of the steel platform of the present invention;

[0025] Figure 2 This is a vertical cross-sectional view of the steel platform thin washed stone surface layer structure of the present invention;

[0026] Figure 3 This is a front view of the fixing component in the thin washed rice stone surface layer structure of the steel platform of the present invention;

[0027] Figure 4 This is a top view of the fixing component in the thin washed rice stone surface layer structure of the steel platform of the present invention;

[0028] Figure 5 This is a construction flowchart of the thin washed stone surface layer structure of the steel platform of the present invention.

[0029] In the diagram, 1 is the steel platform body, 101 is the steel base plate, 102 is the thin side steel plate, 103 is the middle steel plate, 2 is the fastener, 201 is the clamp, 3 is the steel mesh, and 4 is the washing stone body. Detailed Implementation

[0030] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0031] Please see the appendix Figure 1 and attached Figure 2 A steel platform thin-layer washed rice stone surface structure includes a steel platform body 1, fasteners 2, steel mesh 3, and washed rice stone body 4. The steel platform body 1 is a hollow structure with an open top. Several fasteners 2 are arranged in a matrix inside the steel platform body 1. The steel mesh 3 is placed inside the steel platform body 1 and tied to the several fasteners 2. The washed rice stone body 4 is cast inside the steel platform body 1, so that the fasteners 2 and steel mesh 3 are located inside the washed rice stone body 4, forming a washed rice stone surface layer. Several washed rice stone surface layers are spliced ​​together through the steel platform body 1 to form a washed rice stone surface structure.

[0032] The steel platform body 1 is used as a formwork for pouring the onyx body 4, which can avoid the process of erecting the formwork for pouring the onyx, simplify the construction process, improve the construction efficiency, provide lateral constraint for the onyx body 4, and reduce the cracking risk of the onyx body 4.

[0033] Please refer to the accompanying drawings Figure 1 and the accompanying drawings Figure 2 , the steel platform body 1 comprises a steel bottom plate 101 and a thin side steel plate 102; the thin side steel plate 102 is arranged around the steel bottom plate 101 in the circumferential direction, and the thin side steel plate 102 is connected perpendicularly to the steel bottom plate 101; the fixing member 2 is welded and fixed on the steel bottom plate 101, and two adjacent onyx surface layers are connected through the steel bottom plate 101 and the thin side steel plate 102.

[0034] The steel bottom plate 101 can be used as a bottom formwork for pouring the onyx, and the thin side steel plate 102 can be used as a side formwork for pouring the onyx and provide lateral constraint for the onyx body 4, thereby reducing the cracking risk of the onyx body 4. The steel platform body 1 facilitates the connection between adjacent onyx surface layers and the connection between the onyx surface layers and the building steel structure, thereby ensuring the installation reliability and the decorative effect of the onyx surface layers on the steel structure.

[0035] Preferably, the steel bottom plate 101 can be made of thick steel plate, and the thickness of the steel bottom plate 101 can be selected according to the weight of the onyx; the thin side steel plate 102 can be made of thin steel plate, and the thickness of the thin side steel plate 102 can be selected according to actual needs, so as to provide effective lateral constraint for the onyx body 4.

[0036] Please refer to the accompanying drawings Figure 1 , the steel platform body 1 is provided with a middle steel plate 103, which divides the steel platform body 1 into a plurality of steel platform units; the steel reinforcement mesh 3 is installed in each steel platform unit through a plurality of matrix arranged fixing members 2, and the onyx body 4 is poured.

[0037] The middle steel plate 103 can reduce the area of each onyx surface layer, and the middle steel plate 103 can play the role of a separation joint, thereby further reducing the cracking risk of the onyx body 4.

[0038] Please refer to the accompanying drawings Figure 1 to Figure 4 , the fixing member 2 has a cross-shaped structure in cross section, the lower end of the fixing member 2 is welded perpendicularly to the steel bottom plate 101, and the upper end of the fixing member 2 is connected to the steel reinforcement mesh 3.

[0039] Preferably, the fixing member 2 is made of steel plate of the same material as the steel platform body 1, and is processed in the factory to ensure that the dimensional deviation meets the specification requirements.

[0040] The lower end of the fixing member 2 is welded to the steel bottom plate 101, and the fixing member 2 is cast inside the soapstone body 4, thereby increasing the connection strength of the soapstone body 4 and the steel bottom plate 101, avoiding the whole soapstone body 4 from falling off, and solving the problem of poor connection effect of soapstone and steel structure. At the same time, the setting of the fixing member 2 also facilitates the binding setting of the steel mesh 3.

[0041] Please refer to the accompanying drawings Figure 3 and the accompanying drawings Figure 4 , the upper end of the fixing member 2 is formed with a clamping member 201 of inverted L-shaped structure, the clamping member 201 forms a U-shaped clamping groove with the fixing member 2, so that the mesh holes of the steel mesh 3 are clamped in the U-shaped clamping groove and are bound and fixed.

[0042] Through the setting of the clamping member 201, the U-shaped clamping groove and the mesh holes of the steel mesh 3 are clamped and arranged, which can prevent the steel mesh 3 from floating or deviating during the pouring of the soapstone, and improve the installation convenience and firmness of the steel mesh 3.

[0043] Please refer to the accompanying drawings Figure 2 , the steel mesh 3 is located in the middle of the thickness direction of the soapstone body 4.

[0044] Since the soapstone body 4 has a thin thickness as a decorative surface layer, the steel mesh 3 is arranged in the middle of the thickness direction of the soapstone body 4, achieving good crack resistance, effectively avoiding the risk of cracking of the soapstone body 4, and improving the appearance quality of the soapstone body 4.

[0045] Please refer to the accompanying drawings Figure 1 to the accompanying drawings Figure 5 , a construction method of a steel platform thin soapstone surface layer structure, comprising the following steps:

[0046] Step 1: construction of the steel platform body 1.

[0047] Specifically, the thin side steel plate 102 is circumferentially welded at the edge of the steel bottom plate 101 to form a hollow steel platform body 1 with an open top, and the steel bottom plate 101 serves as the pouring bottom mold of the soapstone body 4, and the thin side steel plate 102 serves as the pouring side mold of the soapstone body 4.

[0048] If necessary, a middle steel plate 103 can be arranged between the steel bottom plate 101 and the thin side steel plate 102 to separate larger soapstone bodies 4.

[0049] The thin side steel plate 102 and the steel bottom plate 101 are connected by full weld to ensure the structural strength of the thin side steel plate 102, which can provide effective lateral restraint for the soapstone body 4.

[0050] Step 2: positioning and installing the fixing member 2.

[0051] Specifically, the fixing members 2 are arranged in a matrix structure on the inner side of the thin side steel plate 102 of the steel platform body 1, and the lower end of each fixing member 2 is welded and fixed to the steel bottom plate 101 of the steel platform body 1 by a welding machine.

[0052] The arrangement spacing of the fixing member 2 is determined according to the mesh size of the steel mesh 3.

[0053] Step 3: laying the steel mesh 3.

[0054] Specifically, the steel mesh 3 is arranged on the fixing members 2, so that the mesh holes of the steel mesh 3 are correspondingly clamped with the U-shaped clamping grooves on the fixing members 2, and the steel mesh 3 is fixed with the L-shaped clamping member 201.

[0055] Step 4: construction of the onyx body 4.

[0056] Specifically, the onyx is poured into the steel platform body 1 as a whole to form the onyx body 4, and the fixing members 2 and the steel mesh 3 are located in the onyx body 4, and the steel mesh 3 is located in the middle of the thickness direction of the onyx body 4.

[0057] Step 5: curing the onyx body 4 to form the onyx surface layer.

[0058] The onyx body 4 is cured in a conventional manner, which will not be described here.

[0059] During installation, the onyx surface layer can be connected with the steel structure through the steel bottom plate 101 or the thin side steel plate 102, which solves the problems of poor connection effect between the onyx and the steel structure and easy overall falling of the onyx body 4, and greatly reduces the cracking risk of the onyx body 4 due to the thin thickness, and improves the overall appearance quality of the onyx surface layer.

[0060] The above is only a preferred embodiment of the present application, and is not used to limit the protection scope of the application, therefore, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A steel platform with a thin washed stone surface layer structure, characterized in that: It includes a steel platform body (1), fasteners (2), steel mesh (3) and a rice-washing stone body (4); the steel platform body (1) is a hollow structure with an open top, and several fasteners (2) are arranged in a matrix inside the steel platform body (1), and the steel mesh (3) is set inside the steel platform body (1) and tied to several fasteners (2); the rice-washing stone body (4) is poured inside the steel platform body (1), so that the fasteners (2) and steel mesh (3) are located inside the rice-washing stone body (4) to form a rice-washing stone surface layer, and several rice-washing stone surface layers are spliced ​​together through the steel platform body (1) to form a rice-washing stone surface layer structure; The steel platform body (1) includes a steel base plate (101) and a thin side steel plate (102); the thin side steel plate (102) is arranged around the steel base plate (101) in the circumference and is perpendicularly connected to the steel base plate (101); the fastener (2) is welded and fixed to the steel base plate (101), and two adjacent rice-washed stone surface layers are connected through the steel base plate (101) and the thin side steel plate (102); The cross-section of the fastener (2) is cross-shaped. The lower end of the fastener (2) is vertically welded to the steel base plate (101), and the upper end of the fastener (2) is connected to the steel mesh (3). The upper end of the fastener (2) has an inverted L-shaped clamp (201), and the clamp (201) and the fastener (2) form a U-shaped groove, so that the mesh of the steel mesh (3) is clamped in the U-shaped groove and tied and fixed.

2. The steel platform thin-washed cobblestone surface layer structure according to claim 1, characterized in that: The steel platform body (1) is provided with a middle steel plate (103). The middle steel plate (103) divides the interior of the steel platform body (1) into several steel platform units. In each steel platform unit, steel mesh (3) is installed through multiple matrix-arranged fasteners (2) and the rice washing stone body (4) is poured.

3. The steel platform thin-washed cobblestone surface layer structure according to claim 1, characterized in that: The steel mesh (3) is located in the middle of the thickness direction of the rice stone body (4).

4. A construction method for the steel platform thin-layer washed cobblestone surface structure as described in claim 1, characterized in that: Includes the following steps: Step 1: Construction of the steel platform body (1); Step 2: Positioning and installing the fasteners (2); Step 3: Laying the steel mesh (3); Step 4: Construction of the main body of the washed stone (4); Step 5: Cultivate the rice stone body (4) to form the rice stone surface layer.

5. The construction method according to claim 4, characterized in that: In step 2, several fasteners (2) are arranged in a matrix structure on the inner side of the thin side steel plate (102) of the steel platform body (1), and the lower end of each fastener (2) is welded and fixed to the steel base plate (101) of the steel platform body (1).

6. The construction method according to claim 4, characterized in that: In step 3, the steel mesh (3) is placed on several fasteners (2), so that the mesh holes of the steel mesh (3) are connected to the U-shaped slots on the fasteners (2), and the steel mesh (3) is tied and fixed to the L-shaped fastener (201).

7. The construction method according to claim 4, characterized in that: In step 4, the rice stone is cast as a whole into the steel platform body (1) to form the rice stone body (4). Several fasteners (2) and steel mesh (3) are located in the rice stone body (4), and the steel mesh (3) is located in the middle of the thickness direction of the rice stone body (4).

Citation Information

Patent Citations

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    CN107938511A

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    CN218597520U