a lightweight wall
A light-weight wall and integrated technology, which is applied in the direction of building components, structural elements, buildings, etc., can solve the problem of increasing the workload of three-dimensional steel mesh skeleton, increasing the manufacturing cost of light-weight walls, poor wall insulation and heat insulation performance, etc. Problems, to save time and effort, high efficiency, good heat insulation effect, and low cost
Inactive Publication Date: 2019-02-01
吉林市新瀚能源科技有限公司 +1
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Problems solved by technology
However, the lightweight wall obtained by using three-dimensional steel wire mesh as the skeleton and plastic cement, ceramsite, and expanded perlite as the base material has achieved the purpose of reducing the weight of the lightweight wall and strengthening the strength of the lightweight wall, but due to In the manufacture of the three-dimensional steel mesh skeleton, steel wire welding or winding and fastening are used. Due to the rapid heat conduction of the metal, cold bridges are generated, which makes the wall thermal insulation and heat insulation performance poor, and welding or winding and fastening increases the three-dimensional steel mesh skeleton. The workload of manufacturing prolongs the manufacturing time and objectively increases the manufacturing cost of lightweight walls
Method used
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Embodiment 2
[0017] Embodiment 2, this embodiment is basically the same as Embodiment 1, the difference lies in: the angle α=30° between the slots 8 provided by the two connectors 2 .
Embodiment 3
[0018] Embodiment 3, this embodiment is basically the same as Embodiment 1, the difference lies in: the angle α=60° between the slots 8 provided by the two connectors 2 .
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The invention provides a light-weight wall. The light-weight wall comprises a base material, an upper-layer framework and a lower-layer framework, and is characterized by further comprising equal-height supporting rods with a poor heat-conducting property, wherein each equal-height supporting rod is formed by fixedly connecting two connectors to form a whole body through a connecting rod; each connector is provided with a clamping groove; openings of the clamping grooves formed in the two connectors are opposite, and an included angle alpha is formed between the clamping grooves; force application handles which are fixedly connected to form a whole body and are opposite to the clamping grooves are arranged on the other sides of the connectors; the plurality of equal-height supporting rods are arranged between the upper-layer framework and the lower-layer framework; the connectors at the two ends of the equal-height supporting rods are fixedly connected with a steel wire of the upper-layer framework or the lower-layer framework through the clamping grooves respectively in an inserting manner; the base material is filled to the insides and outsides of the upper-layer framework, the lower-layer framework and the equal-height supporting rods, which are fixedly connected in the inserting manner, and then is condensed to form the light-weight wall. The light-weight wall has the advantages of light weight, high strength, rapidness in connection, low cost, good heat insulation and heat preservation effects, time saving and labor saving, and high efficiency.
Description
technical field [0001] The invention relates to a building structure, which is a lightweight wall body. Background technique [0002] The development of new wall materials is an industry encouraged by the state. The general requirements are from clay to non-clay, from heavy to light, from low strength to high strength, from high energy consumption to low energy consumption, and to environmental protection and low carbon development. The single function is developing towards the direction of the multifunctional wallboard. [0003] The light-weight wall in the prior art uses three-dimensional steel wire mesh as the skeleton, and is composed of plastic cement, ceramsite, and expanded perlite as base materials, in order to increase the strength of the light-weight wall while reducing the weight of the wall. However, the lightweight wall obtained by using three-dimensional steel wire mesh as the skeleton and plastic cement, ceramsite, and expanded perlite as the base material ha...
Claims
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IPC IPC(8): E04C2/06E04C5/07
CPCE04C2/06E04C5/07
Inventor 柏永德柏林成
Owner 吉林市新瀚能源科技有限公司



