Thermal insulation and water proof integrated system of roof covering and construction method thereof

A technology of waterproof layer and thermal insulation layer, applied in the direction of roof covering layer, building roof, etc., can solve the problems of waterproof, reduced thermal insulation performance, material matching between layers, etc., to improve work efficiency, matching and good bonding performance , the effect of enhancing crack resistance

Active Publication Date: 2008-11-26
SHENZHEN JIADA HIGH TECH IND DEV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In the current roof thermal insulation and waterproof construction, there are more or less problems with t

Method used

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  • Thermal insulation and water proof integrated system of roof covering and construction method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0055] The polymer cement waterproof mortar used in the first and second waterproof layers is prepared from the following components based on 100 kg of mortar: 25 kg of styrene-acrylic acid copolymer emulsion with a solid content of 50%, 46 kg of 425# cement, 200 20 kg of quartz sand, 0.15 kg of defoamer (using 1922, purchased from Corning Cognis company), 0.15 kilograms of methyl hydroxyethyl cellulose ether (using MKX 40000PF from Wolff Cellullosics), and water 8.7 kg.

[0056] The preparation process of styrene-acrylic acid copolymer emulsion is as follows: add an appropriate amount of deionized water and emulsifier to the reactor, stir and heat up to about 80°C, add 1 / 3 of the mixture of styrene, butyl acrylate and acrylic acid, and react for about 30 minutes , add the initiator and the remaining mixed monomer dropwise, keep the temperature at about 83°C, finish the dropwise addition in about 2 hours, raise the temperature to about 88°C, keep it warm for 1 hour, stir an...

Embodiment 2

[0078] The polymer cement waterproof mortar used in the first and second waterproof layers is prepared from the following components based on 100 kg of mortar: 17.90 kg of styrene-acrylic acid copolymer emulsion with a solid content of 50%, 35.70 kg of 425# cement, 200 17.85 kg of quartz sand, 0.76 kg of defoamer (using 1922, purchased from Corning Cognis company), 1.0 kilograms of methyl hydroxyethyl cellulose ether (using MKX 40000PF from Wolff Cellullosics), and water 26.79 kg.

[0079] The rubber powder polystyrene particle cement mortar used in the insulation layer is prepared by mixing 100L of polystyrene particles with the following components: 5.00 kg of 425# cement, 4.50 kg of 200 quartz sand, and 0.50 kg of vinyl acetate-ethylene redispersible latex powder (use FX2350, purchased from Elotex), 0.1 kg of water reducer (using F10, available from Degussa Company), 0.05 kg of defoamer (using 1922, purchased from Corning Cognis company), 0.15 kilograms of methyl h...

Embodiment 3

[0084] The polymer cement waterproof mortar used in the first and second waterproof layers is prepared from the following components based on 100 kg of mortar: 33.00 kg of styrene-acrylic acid copolymer emulsion with a solid content of 50%, 44.00 kg of 425# cement, 200 22.00 kg of quartz sand, 0.4 kg of water reducer (using F10, purchased from Degussa Company), 0.6 kg of methyl hydroxyethyl cellulose ether (using MKX 40000PF, available from Wolff Cellullosics).

[0085] The rubber powder polystyrene particle cement mortar used in the insulation layer is prepared from 100L of polystyrene particles and the following components: 7.50 kg of 425# cement, 6.50 kg of 200 quartz sand, and 0.50 kg of vinyl acetate-ethylene redispersible latex powder (use FX2350, available from Elotex), 0.10 kg of defoamer (using 1922, purchased from Corning Cognis company), 0.15 kilograms of methyl hydroxyethyl cellulose ether (using MKX 40000PF, available from Wolff Cellullosics), 0.05 kg of ...

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Abstract

The invention provides an integral system integrated with roof heat preservation and water resistance and a construction method thereof. The construction method is as follows: cleaning the substrate, and having slope-making or leveling treatment for needed roof; preparing polymer cement waterproof mortar scraped on the roof substrate as a first waterproof layer with the thickness of 2 to 5 mm; preparing rubber powder poly-phenyl granule cement mortar scraped on the first waterproof layer as an insulating layer with the thickness of 20 to 50 mm; preparing polymer cement waterproof mortar scraped on the insulating layer as a second waterproof layer with the thickness of 2 to 5 mm; preparing polymer cement anti-crack mortar scraped on the second waterproof layer, paving alkali-proof glass fiber gridding cloth, and then scraping the polymer cement anti-crack mortar once as a protective layer, and the thickness of each polymer cement anti-crack mortar is 1 to 2 mm. The roof substrate, the polymer cement waterproof mortar and the polymer cement anti-crack mortar are taken as cement base materials, and materials of cement, sand, and the like are also contained in rubber powder poly-phenyl granule insulating mortar, so the base material, the waterproof layer, the insulating layer and the protective layer have fine matching and bonding performances and perfect system stability.

Description

technical field [0001] The invention relates to a roof structure and a construction method thereof, in particular to a roof thermal insulation and waterproof integrated system and a construction method thereof. Background technique [0002] Building energy conservation has gradually been paid attention to due to the increasing shortage of energy sources. Roof surface insulation is an important part of it, because roof surface insulation can prevent the temperature in the building, especially the top floor, from changing too much with the ambient temperature, so that it does not need to be highly dependent on indoor temperature. The cooling and heating system works to maintain the indoor temperature suitable for human life, so as to achieve the purpose of energy saving. For each structural part of the house, thermal insulation and energy-saving measures have been well promoted and applied. The most common method of roof insulation is generally: leveling layer + waterproof la...

Claims

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Application Information

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IPC IPC(8): E04D11/02C04B28/00C04B14/06
Inventor 熊永强谭亮
Owner SHENZHEN JIADA HIGH TECH IND DEV
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