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Thermal insulation liquid for metal structures – VTS-Servis, OOO | all.biz
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Thermal insulation liquid for metal structures
teploizolyaciya_zhidkaya_dlya_metallicheskih
teploizolyaciya_zhidkaya_dlya_metallicheskih

Thermal insulation liquid for metal structures

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Description

A real innovation among heat - insulating materials is a Russian development - ceramic heat - insulating paint TEPLOKRAS. It differs significantly from the already familiar thermal insulation materials both in appearance and in the method of application. This liquid thermal insulation is perfect for application to any surface and is actively used as thermal protection for walls of residential buildings and buildings, and as an excellent heat insulator in piped heating systems. Freezing of walls is a very unpleasant factor, accompanied by the formation of mold, mildew and blackening of the surface. External walls



Unique development of liquid heat insulation Liquid ceramic heat insulator TEPLOKRAS made of high quality materials perfectly reduces heat losses. This is a truly unique technology: due to its liquid consistency, the product is easily applied to surfaces of any shape and even an ultra - thin layer 1 mm thick is enough for reliable heat retention. Such effective results are due to the constituent components of the liquid heat insulator. The acrylic polymers included in the TEPLOKRAS liquid thermal insulation are responsible for the waterproofing properties. Inhibitory additives guarantee protection against bacteria, while flame retardants reduce flammability and prevent the spread of fire. Ceramic thermal insulation TEPLOKRAS is the use of only domestic components, so consumers completely trust this product. The absence of poisonous and harmful substances in the liquid thermal insulation makes it possible to work in a room without ventilation and airing. Also, everyone appreciates this ceramic heat insulator for its amazing thermal insulation ability: special fillers are capable of both heating and cooling. Undoubtedly, now TEPLOKRAS liquid thermal insulation is the leader in the market of thermal insulation coatings due to a number of advantages: ease and simplicity of application on any surface even at high temperatures; high thermal insulation performance - complete elimination of wall freezing and heat protection in heat communication systems; choice of color, as well as the possibility of applying acrylic paint, putty, tile on top of liquid thermal insulation; excellent adhesion ability; protection against fungi and mold;

Liquid thermal insulation of communications Usually, all piping systems in the area of heat supply are in an open state, and a significant part of the heat goes outside without getting inside the building. For thermal protection of pipelines, mineral wool, polyurethane foam, styrene foam and other materials are usually used. But, as practice shows, such materials, in comparison with liquid thermal insulation, have a short period of validity. They are susceptible to atmospheric precipitation, so their protective properties are quickly lost. TEPLOKRAS perfectly copes with its work despite weather conditions, as well as at the highest temperatures. Efficiency at high temperatures makes it possible to use liquid thermal insulation in heat power engineering - it will act just as effectively. Depending on the complexity of the product design, you can apply TEPLOKRAS paint either with a spray gun or with a brush. Due to its excellent adhesive properties, liquid thermal insulation adheres perfectly to the surface and covers it tightly. Scope of TEPLOKRAS 1. Walls of residential and industrial buildings, both from the inside and from the outside. Protection of internal and external slopes from freezing and frost formation. 2. Protection of building structure elements with the elimination of "cold bridges" and freezing. 3. The use of additional thermal insulation during the reconstruction of the existing housing stock with bringing thermal protection up to modern standards. 4. Thermal insulation for "warm floor" systems. 5. Roofs of residential and industrial buildings, both from the inside and from the outside. 6. Metal structures. 7. Hangars and garages. 8. The lower part of the bridges (reduces freezing). 9. Gas pipelines. 10. Air conditioning systems. 11. Cold water pipes (to prevent condensation). 12. Hot water pipelines. 13. Hydrants, water heaters and boilers. 14. Heat exchangers, steam boilers. 15. Oil pipelines. 16. Tanks and tanks for storing water, chemicals, etc. 17. Refrigerating chambers (reducing the cost of cooling). 18. Refrigerators. TEPLOKRAS liquid insulation is applied to the surface using an airless spray or brush. The thickness of one layer of the coating is no more than 0.5 mm, the time of complete polymerization of the layer is 8 hours. The consumption rate of the material is 1 liter per 2 - 3 m2 with a coating thickness of 0.5 mm. After polymerization, the coating is resistant to aggressive environments, not washed off with water and alkaline solutions. TEPLOKRAS - white coating. From above, the material can be coated with any acrylic paint, wallpapering, application of plaster, putty, tile, any facade decorative systems is allowed. The operating temperature of the TEPLOKRAS material is from - 60 ° C to + 200 ° C (maximum peak load is + 260 ° C). Surface temperature during material application 0С from + 7 to + 150. Table of calculation of coating thickness depending on the temperature of the carrier. Surface temperature (average), 0С Number of primer layers Coating thickness, mm 0 - 40 1 0.5 40 - 80 2 1.5 80 - 100 4 2.0 100 - 160 4 2.5 160 - 200 6 3.0 200 - 260 6 3.5 Thermal conductivity at 200С, not more W / m0С 0.001 Density in dry form kg / m3 380 - 410 Density in liquid form kg / m3 470 - 590 Vapor permeability coefficient mg / m h Pa 0.0014 Specific heat kJ / kg0С 1,
Cost saving 1. Reducing operating costs during the heating season, by reducing heat losses. 2. Reduced operating costs for indoor air conditioning. 3. Possibility of replacing bulky insulation systems for facades, walls of buildings and structures. 4. Decrease in direct costs in the construction of buildings and structures due to the possibility of reducing the thickness of the walls, dimensions of the foundations. 5. Reduction of labor costs and time, environmental friendliness with thermal insulation of pipelines. Ease of repair work and leak detection.

 

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