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    Home > Coatings News > Paints and Coatings Market > Comprehensive analysis of refracing high temperature materials and refracing high temperature coating properties

    Comprehensive analysis of refracing high temperature materials and refracing high temperature coating properties

    • Last Update: 2021-01-17
    • Source: Internet
    • Author: User
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    Refrater-resistant material is a non-uniform body composed of solid phase and pores, high temperature resistance, temperature resistance is mainly above 1500 degrees C, flame-resistant high temperature creep wait until the functional material. Refracessive high-temperature materials by shape include refratric-resistant high-temperature solid materials, refrascent high-temperature powder materials and refrastril-resistant high-temperature liquid materials, refrascent materials by chemical properties are divided into three categories, acid refracing materials, alkaline refracing materials and neutral refraced materials, refracing materials by production process or process manufacturing process classification, can be divided into burned products, cast products and non-burning products. Fire-resistant high-temperature coating laboratory personnel also mentioned that refractic materials according to the molding process is divided into natural rock sawing, mud pouring, plastic molding, semi-dry molding, vibration molding, melting molding and mash molding.
    is not less than 1580 degrees C of a class of inororated non-metallic materials, or materialized properties suitable for use at high temperatures of non-metallic materials, but does not exclude that some products may contain a certain amount of metal materials. The refractable material resists high temperature without melting when it is load-free and is called refractability. ZS-1023 high temperature antioxidant coating, temperature resistance has exceeded 3000 degrees Celsius high temperature, is the highest synthetic material in refractic materials.
    refracing material is a technical index of the high temperature properties of refracable material, for refra- and refracable materials, refracity represents a different meaning than the melting point. The melting point is the temperature at which the crystallization phase of pure matter is in equilibrium with its liquid phase, such as alumina Al2O3 melting point of 2050 degrees C, silicon oxide SiO2 melting point of 1713 degrees C, and magnesium MgO melting point of 2800 degrees C. However, the general refracing material is composed of a variety of substances multi-phase solid mixture, is not a single-phase pure matter, so there is no fixed melting point, its melting is carried out in a certain temperature range, that is, only a fixed starting melting temperature and a fixed melting end temperature, in this temperature range of the liquid phase and solid phase is present at the same time. Refraction-resistant high-temperature coatings are refraction-resistant high-temperature materials, belongs to liquid high-temperature refraction materials, as a large-scale domestic refraction-resistant high-temperature coating manufacturers, after years of research and development and production, developed more than 80 varieties of ZS series of refraction-resistant high-temperature coatings, inorient water-friendly, high temperature resistance, most ZS refraction high-temperature coatings can reach more than 1200 degrees C, refraction-resistant high-temperature energy-saving coatings have been widely used in industry and civil, energy-saving effects.
    the general properties of refractable high temperature materials
    , including chemical mineral composition, organizational structure, electrolytic properties, thermostat properties and the properties of high temperature use. Some of these are properties measured at room temperature, such as pore rate, volume density, true density and pressure resistance. High functionality, ZS-811 high temperature anti-corrosion coating, high temperature resistance can reach 2300 degrees C, anti-corrosion antioxidant effect is good, according to these properties, can predict the use of refractable materials at high temperatures; The properties measured at high temperatures, such as refract resistance, load softening point, thermal shock stability, slag resistance, high temperature volume stability, etc., are reflected in the state of refractable material at a certain temperature, or in the relationship between its role and the outside world at that temperature.
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