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Modulus Of Rupture 70 to 80 Clay Furnace Bricks Featuring SiO2 Content 50 to 65 Percent Ideal for High Temperature Usage

Modulus Of Rupture 70 to 80 Clay Furnace Bricks Featuring SiO2 Content 50 to 65 Percent Ideal for High Temperature Usage

high temperature clay refractory bricks

modulus of rupture 70-80 furnace bricks

SiO2 50-65 percent refractory bricks

Place of Origin:

CHINA

Brand Name:

ANNEC

Certification:

ISO

Model Number:

Customized

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Product Details
Plc:
≥1280℃
Standard Size:
230*114*73mm
Thermal Shock Resistance:
Good
Shape:
Brick
Application:
Reheating Furance
Creep Rate:
≥1350℃
Size:
Standard Or Customized
Ccs:
≥40MPa
Highlight:

high temperature clay refractory bricks

,

modulus of rupture 70-80 furnace bricks

,

SiO2 50-65 percent refractory bricks

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Product Description

Product Description:

Refractory Clay Bricks, also known as Clay Firebrick or Clay Furnace Bricks, are essential components in high-temperature industrial applications, particularly in reheating furnaces. These bricks are specially designed to withstand extreme thermal conditions while maintaining structural integrity and performance, making them ideal for furnace liners in various metallurgical processes.

One of the primary applications of these Clay Refractory Bricks is in reheating furnaces, where they provide a durable and reliable lining that can endure continuous exposure to high temperatures. The unique chemical composition of these bricks plays a critical role in their performance. Typically, the bricks contain 30-45% alumina (Al2O3), 50-65% silica (SiO2), and less than 2% iron oxide (Fe2O3). This balanced chemical makeup ensures excellent resistance to thermal stress and chemical attack, which are common challenges in furnace environments.

The modulus of rupture of these Clay Furnace Bricks ranges between 70 to 80, signifying their impressive mechanical strength. This property is crucial as it allows the bricks to resist deformation and cracking under mechanical load and thermal cycling, thereby extending the lifespan of the furnace lining. The high modulus of rupture also contributes to the overall safety and efficiency of the furnace operation.

Thermal shock resistance is another vital attribute of these Clay Firebrick products. Due to their ability to withstand rapid temperature changes without cracking or spalling, they are highly suitable for applications involving frequent heating and cooling cycles. This characteristic reduces maintenance downtime and ensures continuous operation, which is economically beneficial for industrial users.

In terms of usage, these Clay Refractory Bricks are predominantly employed as furnace liners. Their robust construction and thermal properties help maintain stable internal temperatures, protect the furnace shell from heat damage, and improve energy efficiency. By providing a reliable barrier against heat loss and chemical degradation, these bricks contribute significantly to the operational effectiveness and longevity of reheating furnaces.

Furthermore, the manufacturing process of these Clay Refractory Bricks ensures consistent quality and dimensional accuracy, which is essential for constructing tightly fitted furnace linings. This precision minimizes gaps and weak points, enhancing the overall thermal insulation and structural stability of the furnace.

In summary, Refractory Clay Bricks, Clay Firebrick, and Clay Furnace Bricks offer a combination of chemical resilience, mechanical strength, and excellent thermal shock resistance. Their application in reheating furnace liners makes them indispensable in industries that require reliable high-temperature materials. With their optimal chemical composition, high modulus of rupture, and superior thermal shock resistance, these bricks ensure efficient furnace operation, reduced maintenance, and prolonged service life.


Features:

  • Product Name: Clay Refractory Brick
  • Chemical Composition: Al2O3 30-45%, SiO2 50-65%, Fe2O3 less than 2%
  • Creep Rate: ≥1350℃
  • Cold Crushing Strength: 20-40 MPa
  • Shape: Brick
  • Application: Suitable for use in Reheating Furnace
  • High Alumina Clay Brick offering excellent heat resistance
  • Durable Refractory Clay Bricks designed for high-temperature environments
  • Clay Firebrick with superior mechanical strength and thermal stability

Technical Parameters:

Thermal Shock Resistance Good
Usage Furnace Liner
Cold Crushing Strength 20-40 MPa
Acid Resistance Excellent
Bulk Density 2.1-2.2
Ccs ≥40 MPa
Application Reheating Furnace
Shape Brick
Origin China
Standard Size 230*114*73 mm

Applications:

The ANNEC Clay Refractory Brick, crafted with precision and backed by ISO certification, is a high-quality product originating from China. Designed with a bulk density of 2.1-2.2 and a creep rate of ≥1350℃, these bricks are engineered to withstand extreme temperatures and mechanical stress. The standard size of 230*114*73mm and a modulus of rupture ranging from 70 to 80 make them ideal for various industrial applications that demand durability and reliability.

These Clay Furnace Bricks are widely used in the construction and maintenance of high-temperature furnaces, kilns, and fireplaces. Their excellent thermal resistance and mechanical strength ensure that they can endure the harsh conditions inside industrial furnaces, making them a preferred choice for steel, glass, cement, and ceramic industries. The high alumina content in the Clay Furnace Bricks enhances their refractoriness and resistance to slag corrosion, which is crucial for maintaining furnace integrity over long operational periods.

In metallurgy, the ANNEC High Alumina Clay Brick is essential for lining blast furnaces, reheating furnaces, and other heat-intensive environments. Their customized model options allow for tailored solutions to fit specific furnace designs, improving energy efficiency and operational safety. These refractory bricks also find significant use in power plants and incinerators, where consistent performance at elevated temperatures is critical.

Moreover, the ANNEC Clay Refractory Brick is ideal for scenarios where thermal shock resistance and mechanical stability are required. Their robust structure allows them to perform well in cyclic heating and cooling conditions, reducing maintenance costs and downtime. This makes them suitable for applications in petrochemical plants and cement rotary kilns, where operational reliability is paramount.

Overall, ANNEC’s Clay Furnace Bricks and High Alumina Clay Brick products are versatile and indispensable materials in industries that require high-performance refractory solutions. Their origin from China, combined with ISO certification and customizable specifications, ensures that customers receive durable, efficient, and cost-effective refractory bricks tailored to their specific industrial needs.


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