Light-transmitting curved-surface stone and production process thereof

A production process and stone technology, applied in decorative arts, special patterns, patterns characterized by light projection effects, etc., can solve the problems of difficulty in controlling the thickness of stone, high production cost of curved stone, and large waste of stone. Effects of weight reduction, low cost, and enhanced light transmission

Inactive Publication Date: 2012-11-21
FUJIAN XISHI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The invention provides a manufacturing process of light-transmitting curved stones to overcome the high production reject rate, inconvenient processing of curved surfaces, difficulty in control

Method used

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Examples

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Comparison scheme
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Example Embodiment

[0021] A manufacturing process of light-transmitting curved surface stone, the manufacturing process includes the following steps in sequence:

[0022] A. Preparation of an ultra-thin stone slab. The ultra-thin stone slab includes a front surface and a back surface. Since the ultra-thin stone slab is easily broken during cutting, the front side is connected with a reinforcing layer for reinforcement, which can be coated The chemical fiber mesh layer with reinforcing glue or other materials are used. The ultra-thin stone slab includes a reinforcing layer with a thickness of less than 2mm; the back side is a cut surface, and the cut surface is polished so that the ultra-thin stone slab has a thickness of 0.5-2mm Uniform sheet

[0023] B. The back of the ultra-thin stone slab is pasted on the surface of the substrate along the curved surface of the supporting transparent substrate, and the ultra-thin stone slab is pasted on the surface of the substrate through shadowless glue or other...

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Abstract

The invention provides a light-transmitting curved-surface stone and a production process thereof. The production process includes: cutting and polishing a stone to an ultrathin stone slab uniform in thickness and smaller than 2mm in thickness; adhering the ultrathin stone slab on a base material along the curved surface of the base material, so that the ultrathin stone slab forms a bent shape; and polishing to remove a reinforcing layer. Therefore, a shadow of a net layer is eliminated, light transmission of the stone is enhanced greatly, natural textures of the stone can be better displayed in the lamplight, the thickness of a stone layer is further decreased, and the weight of the stone is further reduced. Additionally, utilization rate of the light-transmitting curved-surface stone is higher, the ultrathin stone slab is produced only by conventional means, and subsequent processing of the ultrathin stone slab is achieved only by polishing. The production process of the light-transmitting curved-surface stone is simple and easy to implement, high in production efficiency, low in cost and wider in product application range.

Description

technical field [0001] The invention relates to a stone material and a manufacturing process thereof, in particular to a manufacturing process of a light-transmitting curved surface stone material. Background technique [0002] Ultra-thin stone is a new type of building material, which has better impact resistance than ordinary natural stone. It is only 8-11 kg per square meter, which is 1 / 7 of the weight of ordinary natural stone, but its compressive strength is 3 times that of ordinary natural stone. ~5 times, it completely overcomes the defects of natural stone such as heavy weight and fragility, because a piece of block can be made into ultra-thin stone of hundreds of square meters, which is in line with the advantages of large-area pavement without color difference, and its geometric dimension flatness ratio Natural stone is more standard, providing a new generation of building materials with better performance and wider application fields. According to the stone proce...

Claims

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Application Information

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IPC IPC(8): B44C3/02B44F1/06B44F9/04
Inventor 林水龙
Owner FUJIAN XISHI
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