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Four-step energy-saving cold-bridge-free heat insulation plate for dwelling house
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A technology for insulation boards and houses, applied in covering/lining, construction, climate sustainability, etc., can solve the problems of multiple processes, asynchronous life expectancy of insulation materials, and high costs, achieve dehumidification operations, improve the overall modernization level, and improve normalized effect
Active Publication Date: 2013-07-03
程松林
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[0002] The exterior walls of existing residential buildings have the following deficiencies: traditional building materials are self-heavy, high energy consumption, single function, materials and processes are repeatedly superimposed, on-site manual wet work is large, many processes, high cost, long construction period, and low product quality
Especially after the insulation layer is superimposed, the life of the insulation material and the main body of the building is not synchronized, and it needs to be replaced repeatedly, which is costly, flammable and unsafe, and the construction technology is backward
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[0020] In order to further understand the characteristics and effects of the invention of the present invention, the following embodiments are given, and detailed descriptions are as follows in conjunction with the accompanying drawings, please refer to Figure 1-Figure 3 .
[0021] Such as figure 1 Shown: Four-step energy-saving residential thermal insulation board without cold bridge includes outer high-strength gypsum board layer 1, light insulation material layer 2, inner high-strength gypsum board layer 3, fiber reinforcement 4, A connection reinforcement 5, B connection reinforcement 6 and waterproofing agent; from the outside to the inside are the outer high-strength gypsum board layer 1, the light insulation material layer 2, and the inner high-strength gypsum board layer 3; each layer is composed of uniformly distributed and staggered A connecting ribs 5 and B connecting ribs 6 connection; the lightweight thermal insulation material in the lightweight thermal insulat...
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Abstract
The invention relates to a four-step energy-saving cold-bridge-free heat insulation plate for a dwelling house, which comprises high-strength gypsum, cement, flyash, waterproof agents, fiber ribs, connecting ribs A, connecting ribs B and light heat insulation materials, wherein an outer side high-strength gypsum plate layer, a light heat insulation material layer and an inner side high-intensity gypsum layer are sequentially arranged from outside to inside, all layers are connected with the connecting ribs A and the connecting ribs B in uniform distribution and staggered arrangement, the fiber ribs are arranged in the high-strength gypsum plate layer, umbrella ends at both ends of the connecting ribs A extend into the high-strength gypsum plate layer, umbrella ends at one end of the connecting ribs B extend into the outer side high-strength gypsum plate layer, and umbrella ends at the other end of the connecting ribs B pass through the inner side high-strength gypsum plate layer to beconnected with a concrete wall. The four-step energy-saving cold-bridge-free heat insulation plate for the dwelling house is used for the outer eave wall concrete exposed position of the building, the wall plate integrates multifunctions of decoration, sound isolation, heat insulation, fireproof effect, waste utilization, environment protection, energy saving, consumption reduction, light weight and high intensity into a whole, is also used as an outer side template of the external eave concrete wall or column limb of the building and is suitable for the industrialization of the dwelling production mode.
Description
technical field [0001] The invention relates to a gypsum composite thermal insulation board, in particular to a four-step energy-saving residential non-cold bridge thermal insulation board integrating energy saving, low consumption, environmental protection and multiple functions. Background technique [0002] The exterior walls of existing residential buildings have the following deficiencies: traditional building materials are self-heavy, high energy consumption, single function, materials and processes are repeatedly superimposed, on-site manual wet work is heavy, many processes, high cost, long construction period, and low product quality. Especially after adding the insulation layer, the life of the insulation material and the main body of the building is not synchronized, and it needs to be replaced repeatedly, which is costly, flammable and unsafe, and the construction technology is backward. Contents of the invention [0003] The main purpose of the present inventi...
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