a) Field of the Invention
The present invention relates to a method for manufacturing sheets, and more particularly to a manufacturing method wherein a mold is set up first, followed by proceeding with steps for manufacturing the sheets, with materials and the steps for manufacturing the sheets including stone) adhesive agents, sho fiber concretes) fiber webs, short fiber concretes, thermal insulating materials, sho fiber concretes, fiber webs and sho fiber concretes, so as to form the sheets into products when the concretes are dr and set, thereby accomplishing the manufacturing of sheets.
b) Description of the Prior Art
As conventional ordinary stone is too thick and heavy, if a dry implementation method, which is one of the implementation methods of the stone) including the dry and wet methods, is employed, then a large amount of iron pieces should be used to fix the stone on a wall. In addition, a water seepage phenomenon will easily appear many years after the dry implementation. On the other hand, if the wet implementation method is to be applied, then the stone will not be easily adhered on an outer wall, and the method cannot be used in a tall building or a large and heavy surface material due to that the stone is too thick and heavy. Accordingly, it will be inconvenient to implement, cost and labor hours will be wasted, and restrictions to implementation will be too many that also troubles users. Furthermore, after accomplishing the implementation to the stone, some stone will be left over which cannot be recycled, thereby wasting the stone and cost without having a spirit of environmental protection.
The primary object of the present invention is to provide a method for manufacturing sheets, wherein a mold is set up first, followed by proceeding with steps for manufacturing the sheets, with materials and the steps for manufacturing the sheets including stone, adhesive agents, short fiber concretes, fiber webs, short fiber concretes, thermal insulating materials, short fiber concretes, fiber webs and short fiber concretes, so as to form the sheets into products when the concretes are dry and set, thereby accomplishing the manufacturing of sheets. As the stone used is thin plate of stone, the sheets will be light-weighted, allowing a user to install the sheets to desired locations easily and achieving an object of saving installation time and cost of labor hours. Moreover as an inner layer of the sheet is provided with the thermal insulating material, the sheet can be insulated from heat to save electricity. On the other hand, as the stone can be assembled by putting together waste stone, an object of recycling for environmental protection is achieved.
To enable a further understanding of the said objectives and the technological methods of the invention herein, the brief description of the drawings below is followed by the detailed description of the preferred embodiments.
Referring to
Materials and the steps for making the sheets C of the manufacturing flow of sheets A are that placing stone C1 in a mold B1; filling the stone C1 with an adhesive agent C2; adding a short fiber concrete C3 on the stone C1 which is filled with the adhesive agent C2; placing a fiber web C4; filling the mold B8 with the short fiber concrete C3; placing a thermal insulating material C5; filling with the sho fiber concrete C3; placing the fiber web C4; and filling with the short fiber concrete C3, sequentially. After the short fiber concretes C3 are dry and set, a product of the sheet C6 is formed, thereby accomplishing the steps for making the sheets C.
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The stone C1 is a thin-plate stone C1 to be light-weighted, and the stone C1 can be further a glass or tile that can be decorated. In addition, the adhesive agent C2 can be cement or other adhesive agent C2 that can be adhered, the short fiber concrete C3 can be a zirconium oxide anti-base short fiber concrete or cement that can be fixed, and the fiber web C4 can be a zirconium oxide anti-base fiber web. Moreover, the thermal insulating material C5 can be ploylone or rock wool that is provided with a thermal insulating effect.
Accordingly, as the sheet D is light-weighted, the user can easily install the sheet D on a desired location and an object of saving installation time and cost of labor hours can be achieved. In addition, as an inner layer of the sheet D is provided with the thermal insulating material C5, an object of thermal insulation and saving electricity can be achieved. On the other hand, as the stone C1 can be assembled by putting together the waste stone C1, an object of recycling for environmental protection can be achieved. Moreover, as the material used for assembling the sheet D is cement and does not contain resin, a material quality of the sheet D will not be changed indoors or outdoors; therefore, no toxic gas will be formed when the sheet D is burning in fire.
To further manifest the advancement and practicability of the present invention, advantages of the present invention are listed below:
It is of course to be understood that the embodiments described herein is merely illustrative of the principles of the invention and that a wide variety of modifications thereto may be effected by persons skilled in the art without departing from the spirit and scope of the invention as set forth in the following claims.