Low Cement Silicon Carbide Castable – High Spalling Resistance

Low cement castables are prone to bursting, peeling, lining peeling, and cracking during baking after demoulding and intermittent frequent furnace shutdown and opening, which affects the service life of low cement castables. Therefore, improving and enhancing the explosion-proof performance and thermal shock stability of low cement castables is of great help to the application of low cement castables. Low cement silicon carbide castables – high anti-stripping performance. Adding silicon carbide to low cement castables can improve the anti-stripping performance.

How to Improve the Explosion-Proof Performance of Low-Cement Castables?

In order to improve the explosion-proof performance of low-cement castables, we can add explosion-proof fibers to low-cement castables. When heated and baked after demoulding, the explosion-proof fibers in the explosion-proof low-cement castable shrink, melt, and form elongated pores in the castable. The number of open exhaust holes inside the castable is increased, and the air permeability of the castable is improved. This accelerates the discharge of water vapor, thereby improving the anti-burst performance of the castable and improving the explosion-proof performance of the castable.

Rongsheng Low Cement Castable for Sale
Rongsheng Low Cement Castable for Sale

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    How to Improve the Spalling Resistance of Low Cement Castables?

    In order to improve the spalling resistance of low cement castables, we can add a certain amount of silicon carbide to low cement castables. This can significantly improve the thermal shock stability of low cement castables in the face of rapid cooling and heating. Due to the high thermal conductivity of silicon carbide, the amount of silicon carbide added must be strictly controlled. When too much silicon carbide is added, the overall thermal expansion coefficient of the low cement castable will increase, which is not conducive to the thermal shock stability of the low cement castable. LOW CEMENT SILICON CARBIDE CASTABLE AL2O3 48%.SIC 30%. During construction, the amount of silicon carbide added needs to be strictly controlled. Reduce the thermal stress caused by the high thermal conductivity of silicon carbide on the low cement castable, so that the low cement castable has good thermal shock stability when subjected to thermal shock. Low cement silicon carbide castable-high spalling resistance.

    Characteristics and Application of Low Cement Castables

    Low cement castables, as the name implies, are castables with low cement content. Low cement dosage means low calcium content. Low calcium content means low pores and stronger corrosion resistance.

    Low cement castables are divided into aluminum silicate, mullite, corundum, magnesium aluminum, quartz, carbon-containing and silicon carbide low cement castables. Low cement castables of different materials have different uses. Silicon carbide low cement castables are divided into furnace iron ditch castables and steelmaking ladle castables.

    The most common low cement castable is aluminum silicate, that is, high aluminum low cement castable. The cement content of high aluminum low cement castable is between 3% and 6%. If the cement addition is 1%, it is an ultra-low cement castable. There is also cement-free castable.

    Clay and high-alumina low-cement castables are mostly used in heating furnaces and soaking furnaces, and are also used in some parts of the lining of heat treatment furnaces and rotary kilns for building materials. Low-cement castables can also be used in high-temperature burner linings, heating furnace water cooling pipe wrapping linings, blast furnace tapping channels, cupola tapping troughs, integral powder spray guns for molten iron pretreatment, and other linings.

    Corundum Spinel Low Cement Castable
    Corundum Spinel Low Cement Castable

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      Corundum and chromium-containing corundum low-cement castables are used for linings of certain parts of steel refining devices outside the furnace. They are also used for the lining of power frequency induction furnaces, high-temperature wear-resistant linings of petrochemical catalytic cracking reactors, etc.

      Low-cement castables are also constantly updated by manufacturers to meet the actual needs of different furnace conditions. At present, many manufacturers use micro-powder and ultra-micro-powder technology. The result of cement combination and micro-powder technology is high strength. During use, as the heating temperature increases, the strength gradually increases.

      It should be noted that the air permeability of low-cement castables is poor, and it is easy to cause peeling or cracking during baking. A reasonable baking system should be formulated according to its material, construction thickness and construction location. At the same time, metal aluminum powder, organic fiber, etc. can also be added to the castable. Make it easier to discharge moisture. Increase the service life of low-cement refractory castables.

      Low Cement Castable Refractory Materials Manufacturer
      Low Cement Castable Refractory Materials Manufacturer

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        Improve the Fluidity of Low-Cement Castables

        Low-cement castables are mainly divided into vibration type and self-flowing type. The ingredients of vibration type low-cement castables are 60%~70% refractory aggregate, 18%~22% refractory powder, 3%~7% calcium aluminate cement, and 3%~6% silica powder. The ingredients of self-flowing low-cement castables are similar to the former, but the difference is reflected in the particle size and micro-powder content. Generally speaking, too much micro-material will affect the physical properties of the castable, and the micro-powder content is suitable at 5%~6%.

        SiC low-cement castable is a type of refractory castable with SiC as the main raw material and calcium aluminate cement as the binder. In low-cement castables, SiC can form a silicon oxide protective film on the surface in air with high oxygen partial pressure, with excellent performance and can be used as high-temperature structural materials. However, carbon-containing refractory materials used below 1550℃ use the characteristics of silicon carbide that is continuously oxidized under low oxygen partial pressure.

        However, there are also the following problems in the production of low-cement castables containing silicon carbide.

        1. Hydrophobicity. Silicon carbide in the castable will affect the fluidity and construction performance of the castable and reduce the density.
        2. Difficult to sinter. When using silicon carbide with higher purity, it is difficult to sinter because silicon carbide is difficult to sinter. Therefore, it is not easy to obtain high strength.

        Since the hydrophobicity of silicon carbide will have an adverse effect on fluidity, in order to improve the fluidity of refractory castables, it is necessary to select raw materials with little effect on fluidity for production. For example, by changing the shape of raw material particles and adjusting the type of water reducer, the fluidity of low-cement castables can be effectively improved.

        To purchase high-quality low-cement refractory castables, please choose a powerful refractory manufacturer. Rongsheng Refractory Factory is a powerful refractory manufacturer. LOW CEMENT SILICON CARBIDE CASTABLE AL2O3 48%.SIC 30%. RS factory’s environmentally friendly, fully automatic monolithic refractory production line specializes in providing monolithic refractory services for high-temperature industrial furnaces. Customized lining materials. Contact us for free refractory lining solutions and quotes.

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          Two Different Types of Low Cement Castables

          In the refractory castable combined with calcium aluminate cement, the castable with CaO content less than 2.5%, that is, the castable with calcium aluminate cement added about 1/2 to 1/3 of the ordinary calcium aluminate cement castable, It is called low cement castable. Low cement castable materials are clay, high alumina, mullite, corundum, chromium corundum, zircon mullite, zirconium corundum, alumina-spinel, and carbon and silicon carbide, and many more. According to its operating performance, it is divided into vibrating castable and self-flowing castable. Rongsheng refractory manufacturer will introduce the above two different types of low-cement refractory castables for you.

          Rongsheng Low Cement Castable for Sale
          Rongsheng Low Cement Castable for Sale

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            Two Different Types of Low Cement Castable Composition

            The ingredients of vibrating low cement castables are generally: refractory aggregate 60% ~ 70%, refractory powder 18% ~ 22%. Calcium aluminate cement 3% to 7% (low cement type) or 1% to 2% (ultra-low cement type). Silica (soot silica) micro powder (or reactive alumina micro powder) 3% ~6%. Trace dispersant. The particle size composition can be according to Andreassen’s particle size distribution equation, and the q value is 0.26 ~ 0.35.

            The batching composition of the self-flowing low-cement castable is similar to that of the vibrating low-cement castable, but the particle size composition and fine powder content are different. Generally, the maximum critical particle size of aggregate is not more than 6 mm, and the particle size distribution is in accordance with the Andreassen or Dinger-Funk particle size distribution equation. The value of the particle size distribution coefficient q should be controlled between 0.21 and 0.26, and a larger self-flow value (greater than 180) can be obtained between this value. When the q value is greater than 0.26, the flow value becomes smaller, and it is difficult to cause self-flow. When the q value is less than 0.21, the powder content is too large, which will affect the physical properties of the castable. The content of micro powder (silica micro powder) in the particle size composition is generally 5% ~ 6%. At the same time, high-efficiency dispersants must be used.

            Low Cement Castable Refractory Materials Manufacturer
            Low Cement Castable Refractory Materials Manufacturer

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              Low Cement Castables Physical and Chemical Indicators

              Table 1 shows the typical vibrating low-cement clay, high-aluminum, and corundum casting performance. 

              Table 1 Vibrating Low-Cement Castables physical and chemical indicators
              ItemsClay Low Cement CastableHigh-Alumina Low Cement CastableCorundum Low Cement Castable
              w(Al2O3) / %457592
              w(SiO2) / %50125
              w(CaO) / %<1.8<1.5<1.5
              Bulk Density / g/cm3110℃, 24h2.302.603.00
              1350℃, 3h2.262.613.10
              Compressive Strength / MPa110℃, 24h727585
              1350℃, 3h90115125
              Linear change rate after burning / %1000℃, 3h-0.3-0.2-0.2
              1350℃, 3h±0.3±0.5±0.5
              Max Use Temperature / ℃145016001700
              Mixing Water Demand / %6.0 ~ 6.56.0 ~ 6.54 ~ 5

              Table 2 shows the general self-flowing low-cement alumina-spinel casting performance.

              Table 2 Self-Flowing Low-Cement Alumina-Spinel Castable
              ItemsABC
              w(Al2O3) / %908885
              w(MgO) / %666
              w(CaO) / %358
              Bulk Density after Burning / g/cm3110℃, 24h3.203.103.05
              1000℃, 3h3.103.082.92
              1600℃, 3h3.152.952.86
              Flexural Strength after Burning / MPa110℃, 24h6.59.510.0
              1000℃, 3h5.57.67.8
              1600℃, 3h30.021.520.5
              Linear Change Rate after Burning / %110℃, 24h
              1000℃, 3h0.100
              1600℃, 3h-0.1+0.8+0.9
              Amount of Water / %4.8 ~ 5.45.4 ~ 5.85.5 ~ 6.5
              Self-Flow Value / mm> 185> 185> 185

              Low Cement Castable Refractory Material Application

              Low cement castable refractory materials have a wide range of applications. In metallurgy, petrochemical, machinery manufacturing, electric power, building materials, and other industrial kilns, such castables have been widely used to replace some traditional fired refractory brick products as linings. Vibration-type low cement castable refractory materials are mainly used as thick-sized linings. Such as heating furnace, various heat treatment furnace electric furnace cover shaft kiln, rotary kiln, blast furnace tapping channel, ladle, hot metal ladle, etc. The self-flowing low cement refractory castables are mainly used as thin linings and linings for high-temperature refractory components with metal anchors. Such as the outer lining of the water-cooled pipe of the heating furnace, the lining of the integral spray gun for jet metallurgy, the lining of the immersion pipe of the RH and DH vacuum degassing device, and the air supply element of the ladle (breathable brick). And the high-temperature wear-resistant lining of the petrochemical catalytic cracking reactor.

              Rongsheng Unshaped Refractory Materials Production Line
              Rongsheng Refractory Castables Manufacturers’ Production Line

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                Refractory Castables Manufacturers

                As one of the refractory castables, the unique advantages of low cement castables play an important role in refractory lining materials. Rongsheng refractory castable manufacturers have rich experience in production and sales. Its advanced environment-friendly and fully automatic unshaped refractory castable production line have an annual output of 80,000 tons. To provide our customers in more than 60 countries with high-quality refractory lining materials. For example, Russia, South Africa, Kazakhstan, Philippines, Chile, Malaysia, Uzbekistan, Indonesia, Vietnam, Kuwait, Turkey, Zambia, Peru, Mexico, Qatar, etc. Rongsheng used to customize low cement castables for customers, ultra-low cement castable, and high customer return rate. To obtain free refractory lining material configuration solutions for high-temperature kilns and solve difficult refractory lining material problems, please contact us. We will customize the refractory lining scheme for you according to your actual production situation.

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