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High-strength microcrystalline foaming fireproof heat insulation plate produced by attapulgites and white clay and production process of high-strength microcrystalline foaming fireproof heat insulation plate
The invention relates to a high-strength inorganic foaming fireproof heat insulation wall body material produced by attapulgites and white clay and a production process of the high-strength inorganic foaming fireproof heat insulation wall body material. The production process has the technical scheme that the attapulgites, the white clay, red clay and limestone are prepared into tiny fine powder and are proportionally and uniformly mixed; then, the fine powder mixture is uniformly spread in a firing mold; a high-strength fire-proof steel net is fixedly arranged in the mold and is arranged in the middle of the fine powder mixture; and the mixture and the fire-proof steel net are integrally fired, cooled and formed through a high-temperature firing kiln. The high-strength inorganic foaming fireproof heat insulation wall body material and the production process have the beneficial effects that the integral support structure strength of a plate can be regulated and enhanced through the strength of the steel net arranged in the middle of the plate, so that the plate realizes a greater application space in the engineering; meanwhile, the safety of the building plate in the use process is enhanced; and the service life of the building plate in the use process is prolonged.
High-strength microcrystalline foaming fireproof heat insulation plate produced by attapulgites and white clay and production process of high-strength microcrystalline foaming fireproof heat insulation plate
The invention relates to a high-strength inorganic foaming fireproof heat insulation wall body material produced by attapulgites and white clay and a production process of the high-strength inorganic foaming fireproof heat insulation wall body material. The production process has the technical scheme that the attapulgites, the white clay, red clay and limestone are prepared into tiny fine powder and are proportionally and uniformly mixed; then, the fine powder mixture is uniformly spread in a firing mold; a high-strength fire-proof steel net is fixedly arranged in the mold and is arranged in the middle of the fine powder mixture; and the mixture and the fire-proof steel net are integrally fired, cooled and formed through a high-temperature firing kiln. The high-strength inorganic foaming fireproof heat insulation wall body material and the production process have the beneficial effects that the integral support structure strength of a plate can be regulated and enhanced through the strength of the steel net arranged in the middle of the plate, so that the plate realizes a greater application space in the engineering; meanwhile, the safety of the building plate in the use process is enhanced; and the service life of the building plate in the use process is prolonged.
High-strength microcrystalline foaming fireproof heat insulation plate produced by attapulgites and white clay and production process of high-strength microcrystalline foaming fireproof heat insulation plate
HEI JIANZHONG (author) / HEI XIAOJUN (author)
2015-08-19
Patent
Electronic Resource
English
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
B28B
Formgeben von Ton oder anderen keramischen Stoffzusammensetzungen, Schlacke oder von Mischungen, die zementartiges Material enthalten, z.B. Putzmörtel
,
SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS, SLAG OR MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
/
B32B
LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
,
Schichtkörper, d.h. aus Ebenen oder gewölbten Schichten, z.B. mit zell- oder wabenförmiger Form, aufgebaute Erzeugnisse
/
C03C
Chemische Zusammensetzungen für Gläser, Glasuren oder Emails
,
CHEMICAL COMPOSITION OF GLASSES, GLAZES, OR VITREOUS ENAMELS
/
C04B
Kalk
,
LIME
European Patent Office | 2015
|European Patent Office | 2015
|European Patent Office | 2015
|European Patent Office | 2015
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