Self-insulation composite concrete self-supporting building block
A concrete and self-insulation technology, applied in the direction of building materials, etc., can solve the problems of weak masonry mechanical strength and seismic resistance, unsatisfactory, unable to meet the thermal insulation and energy saving, etc., to retain material properties and masonry seismic ability, improve Self-insulation performance and the effect of improving the heat transfer resistance of the block
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example 1
[0038] Located in a severe cold area, the limit value of the heat transfer coefficient of a project's exterior wall is K≤0.4 , The block is selected according to one of the local common specifications 390mm*240mm*190mm, and the thermal conductivity of the filling in the block cavity is 0.02 High-efficiency foamed polyurethane insulation material. According to the above conditions, the maximum thermal conductivity of the lightweight aggregate concrete used to make the block rib 2 is calculated by the formula (2). is 0.3339 .
[0039] Therefore the lightweight aggregate concrete of block rib 2 is by cement 320Kg, gravel 820Kg, the expanded polystyrene particle 16Kg of extrusion molding, water is in right amount, air-entraining agent 0.32Kg, water reducer 0.2Kg preparation. Using a thermal conductivity meter to detect, the average value of the measured thermal conductivity of the lightweight aggregate concrete with the above ratio ' is 0.33 .
[0040] Ordinary concret...
example 2
[0043] Located in a cold area, the limit value of the heat transfer coefficient of the external wall of a project is K≤0.4 , The block is selected according to one of the local common specifications 390mm*290mm*190mm, and the thermal conductivity of the filling in the block cavity is 0.04 rock wool insulation material. According to the above conditions, the maximum thermal conductivity of the lightweight aggregate concrete used to make the block rib 2 is calculated by the formula (2). is 0.371 .
[0044] Therefore, the lightweight aggregate concrete of the block rib 2 is prepared by 320Kg of cement, 910Kg of gravel, 14Kg of foamed polyurethane particles, an appropriate amount of water, 0.32Kg of air-entraining agent, and 0.2Kg of water reducing agent. Using a thermal conductivity meter to detect, the average value of the measured thermal conductivity of the lightweight aggregate concrete with the above ratio ' is 0.36 .
[0045] Ordinary concrete is used as the mat...
example 3
[0048] Located in a cold area, the limit value of the heat transfer coefficient of an external wall of a project is K≤0.5 , The block is selected according to one of the local common specifications 390mm*240mm*190mm, and the thermal conductivity of the filling in the block cavity is 0.02 High-efficiency foamed polyurethane insulation material. According to the above conditions, the maximum thermal conductivity of the lightweight aggregate concrete used to make the block rib 2 is calculated by the formula (2). is 0.461 .
[0049] Therefore, the lightweight aggregate concrete of the block rib 2 is prepared by 320Kg of cement, 1000Kg of gravel, 13Kg of foamed polyurethane particles, an appropriate amount of water, 0.3Kg of air-entraining agent, and 0.2Kg of water reducing agent. Using a thermal conductivity meter to detect, the average value of the measured thermal conductivity of the lightweight aggregate concrete with the above ratio ' is 0.46 .
[0050] Ordinary co...
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