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Cement-based ultra-high performance artificial stone slab

An ultra-high-performance artificial stone slab technology, applied in the field of architectural decoration, can solve problems such as low strength, poor safety, and plate falling off, and achieve the effect of overcoming low strength and reducing weight

Inactive Publication Date: 2018-10-19
钟兵
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

1. Wet paste: Wet paste is to use sticky mortar to paste the board on the wall to be decorated. It is a rigid connection. Due to the thermal expansion and contraction caused by outdoor wind pressure, rain, and temperature difference, the viscosity of the mortar will be accelerated. In addition, the weight of the board is relatively large, so it is easy to cause the board to fall off, and the rigid connection is extremely poor in shock resistance. The current wet paste method is only used for decoration at the low-rise of the building, and the use of high-rise buildings is basically prohibited.
2. Dry hanging: The dry hanging of the board first needs to be installed on the wall to be decorated, and the metal dragon skeleton used to carry the board is installed. Since the naturally formed stone itself is in a solid state, the embedded parts for the external connection cannot be placed inside. Ceramics are also unable to place embedded parts because of high-temperature firing. When installing the two types of plates, only grooves or holes can be made on the side of the plates or holes can be drilled on the back of the plates, so that metal connectors can be used to connect and install the load-bearing frame. Stone and ceramics are relatively brittle. The connectors stuck in the side grooves or holes during installation need to bear the weight of the board. If the board is thin, the thin wall is easy to cause chipping and falling off; the back is punched, and the thinner board Punching holes are easy to break, and shallow holes are low in strength and poor in safety. Therefore, the thickness of dry-hanging stones is now stipulated to be no less than 25mm, and the time for ceramics to be dry-hanged is relatively short. To ensure its safety, the weight of the dry-hanging stone per square meter exceeds 65 kilograms, so that the dragon frame used to carry the plate also needs to maintain a certain strength to carry its weight, so the production and installation of the metal dragon frame is costly and heavy The cost of panel installation is also very high, and due to the heavy weight of the panel, the structure of the house needs to be enlarged to carry it, which also increases the cost of housing construction, stone mining damages the environment, and high-temperature firing of ceramics wastes energy and easily causes pollution
[0003] After searching, it was found that in order to solve the above problems, in the patent (patent number: 2014100884568) a kind of artificial slab stone production and its installation method, and in the patent (patent number: 201410694568X) a cement-based artificial slab that combines dry hanging and wet pasting In the stone installation method, the inventor made use of the characteristics of cement-based materials from liquid to solid, and pre-buried nuts and hooks that can be connected externally. After the board is solidified, the nut or hook is integrated with the board, which solves the problem of natural stone and ceramic boards. The gaps of the external connectors are pre-buried, and the plates are laid with mesh and fibers, so that the plates are not easy to break even when they are thinner, thus greatly reducing the weight of the plates and solving the problems caused by the heavy weight of natural stone and ceramic plates. Various gaps, waste stone chips of various colors and low-cost cement are used as the main materials for the board, and the advantages of concrete molding are used to overcome the gaps of stone mining and high-temperature firing of ceramics that damage the environment and waste energy. The above-mentioned gaps, but the board preparation is produced by a low-strength formula process, which has disadvantages such as low strength, low density, poor weather resistance, high water absorption, and poor freeze-thaw resistance. The strength is low, and the pre-embedded hook protrudes from the back of the board, which can easily affect the assembly line processing of the board, and the protruding hook is not easy to stack during transportation, and it is easy to cause the board to break

Method used

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  • Cement-based ultra-high performance artificial stone slab

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Embodiment 1

[0022] Panel color: yellow; high-gloss surface; specification: 600*900mm; thickness 10mm.

[0023] 1. Raw material configuration: 100 parts of 525 white Portland cement, 8 parts of silica fume, 20 parts of slag powder, 60 parts of 4-6 mesh yellow rice stone, 20 parts of 4-6 mesh black rice stone, 10-20 mesh yellow rice 50 parts of stone, 20 parts of white rice stone of 40-80 mesh, 5 parts of quartz powder of 80-120 mesh, 5 parts of quartz powder of 800-1200 mesh, 0.8 part of polycarboxylate superplasticizer, 0.6 part of hydrophobic powder, iron oxide yellow 2 parts of pigment, 10 parts of fly ash, 1 part of nano titanium dioxide, 1.5 parts of nano silicon dioxide, 2.5 parts of nano calcium carbonate.

[0024] 2. Stir the above dry powder materials evenly through dry powder equipment to make dry powder, and pack them in separate bags.

[0025] 3. Add the dry powder in proportion to the high-efficiency water reducer and water and stir for 10 minutes. Add appropriate amount of wat...

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Abstract

The invention discloses a cement-based ultra-high performance artificial stone slab. The cement-based ultra-high performance artificial stone slab comprises a slab body adopting ultra-high-performanceconcrete, a stainless steel mesh is embedded in the slab body, stainless steel nuts are fixed to the stainless steel mesh in a welded mode, ports of the stainless steel nuts are flush with the back part of the slab body, and the slab body is manufactured by carrying out strong vibration, strong compression and vacuumizing on the ultra-high performance concrete. According to the cement-based ultra-high performance artificial stone slab, the basic materials necessary for the ultra-high performance concrete (UHPC) and a formula technology are adopted as the basic requirements, the stainless steel mesh which can improve the anti-disassembly strength is additionally arranged, and strong vibration, strong compression and vacuumizing are adopted as main slab manufacturing methods. The slab manufactured through the method has the outstanding features of ultrahigh strength, high toughness and high durability of the ultra-high performance concrete and is several times or more superior to normal-strength concrete in all performance indexes, so that the defects that an existing cement-based slab of an inventor is low in strength, low in density, poor in anti-disassembly performance, poor in weather resistance, poor in freeze-thaw resistance and the like can be completely overcome.

Description

technical field [0001] The invention relates to the field of architectural decoration, in particular to a cement-based ultra-high-performance artificial stone plate. Background technique [0002] Existing building walls are decorated with stone-effect plates, which mainly include natural stone plates and ceramic imitation stone plates. Natural stone plates are decorative plates made of naturally formed stone through cutting, grinding, sandblasting, etc. The ceramic imitation stone board is a board with natural stone effect by firing clay at high temperature. There are two main installation methods: wet paste and dry hang. 1. Wet paste: Wet paste is to use sticky mortar to paste the board on the wall to be decorated. It is a rigid connection. Due to the thermal expansion and contraction caused by outdoor wind pressure, rain, and temperature difference, the viscosity of the mortar will be accelerated. In addition, due to the high weight of the board, it is easy to cause the b...

Claims

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Application Information

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IPC IPC(8): C04B28/04C04B41/61E04F13/14C04B111/82
CPCB28B1/087B28B3/006B28B3/04B28B11/048B28B11/22B28B11/245B28B13/02B28B15/00B28B23/00B28B23/02C04B18/12C04B28/04C04B41/009C04B41/4543C04B41/61C04B2111/00008C04B2111/00017C04B2111/82E04B9/00E04B9/04E04B9/06E04B9/22E04F13/0801E04F13/0803E04F13/0805E04F13/081E04F13/0819E04F13/0832E04F13/0862E04F13/0866E04F13/0875E04F13/14E04F13/141E04F19/02E04F19/0436E04F2019/0418E04F2290/04E04F2290/041C04B18/146C04B18/141C04B14/02C04B14/06C04B14/308C04B18/08C04B14/305C04B14/28C04B20/0076C04B2103/302C04B2103/65C04B24/24C04B14/062C04B2103/54C04B22/002C04B2111/00603C04B2111/542C04B2111/802C04B2201/52E04B9/045E04B9/064E04B9/16E04B9/20E04B9/225E04B2009/186Y02W30/91C04B40/0028C04B40/006C04B40/0067C04B40/024C04B40/0259C04B2103/32C04B24/2647
Inventor 钟兵
Owner 钟兵