Multi-edge rabbet cast stone plate and paving method thereof

文档序号:445978 发布日期:2021-12-28 浏览:32次 中文

阅读说明:本技术 一种多边企口的铸石板及其铺贴方法 (Multi-edge rabbet cast stone plate and paving method thereof ) 是由 管聪聪 杨国强 吴爱成 沈汉兵 李大伟 于 2021-09-30 设计创作,主要内容包括:本发明涉及冶金设备领域,具体是一种多边企口的铸石板及其铺贴方法,其特征是,在铸石板本体的边缘具有企口结构,铸石板本体的水平投影为正方形结构的,所述铸石板本体的类别包括三侧边具有企口结构的铸石板本体(1)、或者四侧边具有企口结构的铸石板本体(2)、或者双边具有企口结构的铸石板本体(3)。本发明所提出的铸石板及其施工方法,可以快捷高效的完成铸石板的铺贴工作,且铺贴的铸石板整体性好,不会因铸石板之间连接问题在使用过程产生脱落,一次施工寿命期内永久使用,极大的节约返修成本,保证了生产的顺利进行。(The invention relates to the field of metallurgical equipment, in particular to a multi-edge rabbet cast stone plate and a paving method thereof, which are characterized in that rabbet structures are arranged at the edges of cast stone plate bodies, the horizontal projection of the cast stone plate bodies is of a square structure, and the cast stone plate bodies comprise cast stone plate bodies (1) with rabbet structures at three sides, cast stone plate bodies (2) with rabbet structures at four sides or cast stone plate bodies (3) with rabbet structures at two sides. The cast stone plate and the construction method thereof can quickly and efficiently finish the paving and pasting work of the cast stone plate, the paved and pasted cast stone plate has good integrity, can not fall off in the using process due to the connection problem among the cast stone plates, can be permanently used within one construction life, greatly saves the repair cost, and ensures the smooth production.)

1. A multi-edge rabbet cast stone plate comprises a cast stone plate body and is characterized in that a rabbet structure is arranged on the edge of the cast stone plate body.

2. The multi-sided matchboard as claimed in claim 1, wherein: the horizontal projection of the cast stone plate body is of a square structure, and the cast stone plate body comprises a cast stone plate body (1) with a tongue-and-groove structure on three sides, or a cast stone plate body (2) with a tongue-and-groove structure on four sides, or a cast stone plate body (3) with a tongue-and-groove structure on two sides.

3. The multi-sided matchboard as claimed in claim 2, wherein: the cast stone plate body (1) with the tongue-and-groove structure on the three side edges is used for paving the edge sealing of the side line of the veneer; the cast stone plate body (2) with the tongue-and-groove structure on the four sides is used for paving the middle part of the sticking surface; the cast stone plate body (3) with grooves and tongues on the two sides is used for paving the edge sealing of the corners of the veneering.

4. The method for laying a polygonal rabbet cast stone slab as claimed in claim 1, which is characterized in that:

step 1, typesetting and paying off:

carrying out typesetting work of the cast stone plate by applying a BIM technology, conveying the cast stone plate to a rough paving position according to the typesetting work, and placing a paving position line in the slag sluiceway;

step 2, paving and pasting a cast stone plate:

paving the cast stone plate according to the mapping and typesetting structure in the step 1, paving the cast stone plate from the ground to a high place, and paving the cast stone plate from one side to the other side;

step 2.1, when the first row is laid, firstly laying and pasting a cast stone plate body (3) with grooves and tongues on two sides at the position of a starting edge, enabling the groove and tongue sides to face the extending direction to be laid and pasted, then laying a cast stone plate body (1) with grooves and tongues on three sides, enabling the groove and tongue sides to face the extending direction to be laid and pasted until the position of a corner is reached, laying a cast stone plate body (3) with grooves and tongues on two sides, clamping the grooves and the cast stone plate body (1) with grooves and tongues on three sides to form edge sealing, and enabling the groove and tongue sides to face the extending direction to be laid and pasted on the other side;

step 2.2, when the second row is laid, firstly laying a cast stone plate body (1) with three edges provided with grooves and tongues, clamping the grooves and tongues on one side with the cast stone plate body (3) with two edges provided with grooves and tongues laid on the first row, facing the extension direction to be laid and pasted on the other side, then sequentially laying cast stone plate bodies (2) with four edges provided with grooves and tongues, enabling the groove and tongue sides to face the extension direction to be laid and pasted until the corner positions are reached, laying the cast stone plate body (1) with three edges provided with grooves and tongues, enabling the grooves and tongues of the cast stone plate body (2) with four edges provided with grooves and tongues to be clamped together to form a sealing edge, and enabling the groove and tongue sides to face the extension direction to be laid and pasted on the other side;

step 2.3, when the layer N-1 is laid, repeating the second layer of laying method;

and 2.4, paving and sticking a cast stone plate body (3) with grooves and tongues on two sides at the corner positions when the last row of cast stone plates are paved, enabling the grooves and tongues to be clamped with the cast stone plate bodies (1) with grooves and tongues on three sides, paving the cast stone plate bodies (1) with grooves and tongues on three sides, enabling the grooves and tongues to be clamped with the cast stone plate bodies (2) with grooves and tongues on four sides and the cast stone plate grooves and tongues on two sides to be clamped together, paving the cast stone plate bodies (3) with grooves and tongues on two sides until the corners are reached, enabling the grooves and tongues to be clamped with the grooves and tongues of the cast stone plate bodies (1) with grooves and tongues on three sides, paving the cast stone plate bodies (1) with grooves and tongues on three sides, enabling the grooves and the cast stone plate bodies (2) with grooves and tongues on four sides and the tongue and tongues to be clamped with grooves and tongues of the cast stone plate bodies (3) on two sides to form a sealed edge structure.

Technical Field

The invention relates to the field of metallurgical equipment, in particular to a multi-edge rabbet cast stone plate and a paving method thereof.

Background

In the metallurgical engineering construction process, because the technological requirement inevitably all sets up the sluiceway in the roll table lower part that transports the steel billet, in order to guarantee that sluiceway concrete structure is not knocked for a long time rivers erode and slag charge collision in-process and damaged, lay one deck cast stone plate in the sluiceway usually, only leave a small amount of clearances in the middle of two cast stone plates and adopt cement mortar or furan resin bonding connection when traditional cast stone plate is spread and is pasted, it is very easy to drop at the rivers erode and slag charge collision process cast stone plate for a long time, can't in time repair again in the production process, cast stone plate often spreads from the dropout point by a large scale and drops, the performance of sluiceway is seriously influenced.

Disclosure of Invention

The invention aims to overcome the defects and provides a novel cast stone plate and a paving method, which can quickly and efficiently finish the paving work of the cast stone plate, the paved cast stone plate has good integrity, cannot fall off in the using process due to the connection problem among the cast stone plates, can be permanently used within one construction life, greatly saves the repair cost and ensures the smooth production.

In order to achieve the above object, the present invention is realized by:

a multi-edge rabbet cast stone plate comprises a cast stone plate body, wherein the edge of the cast stone plate body is provided with a rabbet structure.

The horizontal projection of the cast stone plate body is of a square structure, and the cast stone plate body comprises a cast stone plate body (1) with a tongue-and-groove structure on three sides, a cast stone plate body (2) with a tongue-and-groove structure on four sides, or a cast stone plate body (3) with a tongue-and-groove structure on two sides.

The cast stone plate body (1) with the tongue-and-groove structure on three side edges is used for paving the edge sealing of the side lines of the veneering surface; the cast stone plate body (2) with the tongue-and-groove structure on the four sides is used for paving the middle part of the sticking surface; the cast stone plate body (3) with grooves and tongues on the two sides is used for paving the edge sealing of the corners of the veneering.

The paving method of the multi-edge rabbet cast stone plate is characterized by comprising the following steps:

step 1, typesetting and paying off:

carrying out typesetting work of the cast stone plate by applying a BIM technology, conveying the cast stone plate to a rough paving position according to the typesetting work, and placing a paving position line in the slag sluiceway;

step 2, paving and pasting a cast stone plate:

paving the cast stone plate according to the mapping and typesetting structure in the step 1, paving the cast stone plate from the ground to a high place, and paving the cast stone plate from one side to the other side;

step 2.1, when the first row is laid, firstly laying and pasting a cast stone plate body (3) with grooves and tongues on two sides at the position of a starting edge, enabling the groove and tongue sides to face the extending direction to be laid and pasted, then laying a cast stone plate body (1) with grooves and tongues on three sides, enabling the groove and tongue sides to face the extending direction to be laid and pasted until the position of a corner is reached, laying a cast stone plate body (3) with grooves and tongues on two sides, clamping the grooves and the cast stone plate body (1) with grooves and tongues on three sides to form edge sealing, and enabling the groove and tongue sides to face the extending direction to be laid and pasted on the other side;

step 2.2, when the second row is laid, firstly laying a cast stone plate body (1) with three edges provided with grooves and tongues, clamping the grooves and tongues on one side with the cast stone plate body (3) with two edges provided with grooves and tongues laid on the first row, facing the extension direction to be laid and pasted on the other side, then sequentially laying cast stone plate bodies (2) with four edges provided with grooves and tongues, enabling the groove and tongue sides to face the extension direction to be laid and pasted until the corner positions are reached, laying the cast stone plate body (1) with three edges provided with grooves and tongues, enabling the grooves and tongues of the cast stone plate body (2) with four edges provided with grooves and tongues to be clamped together to form a sealing edge, and enabling the groove and tongue sides to face the extension direction to be laid and pasted on the other side;

step 2.3, when the layer N-1 is laid, repeating the second layer of laying method;

and 2.4, paving and sticking a cast stone plate body (3) with grooves and tongues on two sides at the corner positions when the last row of cast stone plates are paved, enabling the grooves and tongues to be clamped with the cast stone plate bodies (1) with grooves and tongues on three sides, paving the cast stone plate bodies (1) with grooves and tongues on three sides, enabling the grooves and tongues to be clamped with the cast stone plate bodies (2) with grooves and tongues on four sides and the cast stone plate grooves and tongues on two sides to be clamped together, paving the cast stone plate bodies (3) with grooves and tongues on two sides until the corners are reached, enabling the grooves and tongues to be clamped with the grooves and tongues of the cast stone plate bodies (1) with grooves and tongues on three sides, paving the cast stone plate bodies (1) with grooves and tongues on three sides, enabling the grooves and the cast stone plate bodies (2) with grooves and tongues on four sides and the tongue and tongues to be clamped with grooves and tongues of the cast stone plate bodies (3) on two sides to form a sealed edge structure.

The cast stone plate and the construction method thereof can quickly and efficiently finish the paving and pasting work of the cast stone plate, the paved and pasted cast stone plate has good integrity, can not fall off in the using process due to the connection problem among the cast stone plates, can be permanently used within one construction life, greatly saves the repair cost, and ensures the smooth production.

Drawings

Fig. 1 is a schematic diagram of a three-edge tongue-and-groove cast stone plate.

Fig. 2 is a schematic diagram of a four-sided tongue-and-groove cast stone plate.

Fig. 3 is a schematic view of a double-sided tongue-and-groove cast stone plate.

FIG. 4 is a schematic cross-sectional view of a cast stone slab.

FIG. 5 is a schematic cross-sectional view of a cast stone slab.

FIG. 6 is a schematic view of a cast stone slab connection joint.

Detailed Description

The invention is further illustrated by the following specific examples.

As shown in fig. 1 to 5, a multi-edge tongue-and-groove cast stone plate includes a cast stone plate body, and the edge of the cast stone plate body has a tongue-and-groove structure.

The horizontal projection of the cast stone plate body is of a square structure, and the cast stone plate body comprises a cast stone plate body (1) with a tongue-and-groove structure on three sides, a cast stone plate body (2) with a tongue-and-groove structure on four sides, or a cast stone plate body (3) with a tongue-and-groove structure on two sides.

The cast stone plate body (1) with the tongue-and-groove structure on three side edges is used for paving the edge sealing of the side lines of the veneering surface; the cast stone plate body (2) with the tongue-and-groove structure on the four sides is used for paving the middle part of the sticking surface; the cast stone plate body (3) with grooves and tongues on the two sides is used for paving the edge sealing of the corners of the veneering.

As shown in fig. 6, the method for paving the multi-edge rabbet cast stone plate is characterized in that:

step 1, typesetting and paying off:

carrying out typesetting work of the cast stone plate by applying a BIM technology, conveying the cast stone plate to a rough paving position according to the typesetting work, and placing a paving position line in the slag sluiceway;

step 2, paving and pasting a cast stone plate:

paving the cast stone plate according to the mapping and typesetting structure in the step 1, paving the cast stone plate from the ground to a high place, and paving the cast stone plate from one side to the other side;

step 2.1, when the first row is laid, firstly laying and pasting a cast stone plate body (3) with grooves and tongues on two sides at the position of a starting edge, enabling the groove and tongue sides to face the extending direction to be laid and pasted, then laying a cast stone plate body (1) with grooves and tongues on three sides, enabling the groove and tongue sides to face the extending direction to be laid and pasted until the position of a corner is reached, laying a cast stone plate body (3) with grooves and tongues on two sides, clamping the grooves and the cast stone plate body (1) with grooves and tongues on three sides to form edge sealing, and enabling the groove and tongue sides to face the extending direction to be laid and pasted on the other side;

step 2.2, when the second row is laid, firstly laying a cast stone plate body (1) with three edges provided with grooves and tongues, clamping the grooves and tongues on one side with the cast stone plate body (3) with two edges provided with grooves and tongues laid on the first row, facing the extension direction to be laid and pasted on the other side, then sequentially laying cast stone plate bodies (2) with four edges provided with grooves and tongues, enabling the groove and tongue sides to face the extension direction to be laid and pasted until the corner positions are reached, laying the cast stone plate body (1) with three edges provided with grooves and tongues, enabling the grooves and tongues of the cast stone plate body (2) with four edges provided with grooves and tongues to be clamped together to form a sealing edge, and enabling the groove and tongue sides to face the extension direction to be laid and pasted on the other side;

step 2.3, when the layer N-1 is laid, repeating the second layer of laying method;

and 2.4, paving and sticking a cast stone plate body (3) with grooves and tongues on two sides at the corner positions when the last row of cast stone plates are paved, enabling the grooves and tongues to be clamped with the cast stone plate bodies (1) with grooves and tongues on three sides, paving the cast stone plate bodies (1) with grooves and tongues on three sides, enabling the grooves and tongues to be clamped with the cast stone plate bodies (2) with grooves and tongues on four sides and the cast stone plate grooves and tongues on two sides to be clamped together, paving the cast stone plate bodies (3) with grooves and tongues on two sides until the corners are reached, enabling the grooves and tongues to be clamped with the grooves and tongues of the cast stone plate bodies (1) with grooves and tongues on three sides, paving the cast stone plate bodies (1) with grooves and tongues on three sides, enabling the grooves and the cast stone plate bodies (2) with grooves and tongues on four sides and the tongue and tongues to be clamped with grooves and tongues of the cast stone plate bodies (3) on two sides to form a sealed edge structure.

The cast stone plate and the construction method thereof can quickly and efficiently finish the paving and pasting work of the cast stone plate, the paved and pasted cast stone plate has good integrity, can not fall off in the using process due to the connection problem among the cast stone plates, can be permanently used within one construction life, greatly saves the repair cost, and ensures the smooth production.

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