Heat insulation wall integral pouring material and construction method
A technology of thermal insulation wall and integral pouring, which is applied in the direction of solid waste management, sustainable waste treatment, climate sustainability, etc. It can solve the problems of decreased thermal insulation performance, high difficulty in engineering quality control, low compressive strength, etc., and achieves the goal of building The effect of reducing common quality problems, easy control of project quality, and increasing wall thickness
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Embodiment 1
[0018] Raw materials: 1000kg of binder cement, 5kg of expanded polystyrene particles for thermal insulation aggregate, 27kg of water reducing agent and 140kg of expansion agent as additives.
[0019] Preparation: Weigh the raw materials of each component respectively, put them into a dry powder mixer, stir evenly, and pack quantitatively, and it is ready (the preparation methods of the following examples are the same as this).
[0020] Construction: (1) Support the formwork on the construction surface of the building according to the requirements of the design documents, and apply a release agent to ensure that the mold cavity wall is tight; (2) Put the materials into the mixer, add 240kg of water, and stir evenly; ( 3) Pour the mixed material into the mold cavity, tamp it layer by layer, cure, remove the mold, and then maintain it to form an integral thermal insulation wall.
[0021] The thermal conductivity of the thermal insulation wall in this embodiment is 0.490W / (m·K), a...
Embodiment 2
[0023] Raw materials: 900kg of binder cement, 100kg of silica fume, 40kg of expanded polystyrene particles for thermal insulation aggregate, 120kg of expanded vitrified microbeads, 100kg of sepiolite fiber, 7kg of high-efficiency water reducing agent as the additive, and 1kg of short polyvinyl alcohol fiber .
[0024] Construction: (2) step adds 480 kilograms of water, all the same with embodiment 1.
[0025] The thermal conductivity of the thermal insulation wall in this embodiment is 0.110W / (m·K), and the compressive strength is 3.08MPa.
Embodiment 3
[0027] Raw materials: 720kg of binder cement, 280kg of zeolite powder, 300kg of thermal insulation aggregate expanded perlite, 6kg of early strength agent, 12kg of high-efficiency water reducing agent, 2kg of cellulose ether (thickening and water-retaining agent), and 70kg of high-efficiency expansion agent.
[0028] Construction: (2) step adds 400 kilograms of water, all the same with embodiment 1.
[0029] The thermal conductivity of the thermal insulation wall in this embodiment is 0.182W / (m·K), and the compressive strength is 3.10MPa.
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