• Insulating Fire Brick - B-Series Lightweight Thermal Fireclay Insulation Brick System 1
  • Insulating Fire Brick - B-Series Lightweight Thermal Fireclay Insulation Brick System 2
  • Insulating Fire Brick - B-Series Lightweight Thermal Fireclay Insulation Brick System 3
  • Insulating Fire Brick - B-Series Lightweight Thermal Fireclay Insulation Brick System 4
  • Insulating Fire Brick - B-Series Lightweight Thermal Fireclay Insulation Brick System 5
Insulating Fire Brick - B-Series Lightweight Thermal Fireclay Insulation Brick

Insulating Fire Brick - B-Series Lightweight Thermal Fireclay Insulation Brick

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 m.t.
Supply Capability:
1000 m.t./month

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Thermal Insulation Fire Clay Brick

Refractory brick is a block of refractory ceramic material used in lining furnaces, kilns, fireboxes, and fireplaces.

We provide high quality Refractory Fire Bricks that are used on wide range in the various industries like Cement, Glass and Steel. Refractory Fire Bricks are provided as per the quantity and specifications required by the customers. We provide an extensive range of Refractory Fire Bricks at reasonable prices that depend upon the quantity ordered.

Application

Insulating Fire Brick are used for the lining of converter, alternating current arc furnace, direct Current arc furnace and the ladle slag line, etc.

Company Advantage

(1)Long Insulating Fire Brick manufacture history: 25 years manufacturer 

(2)Advanced equipment

(3)Diversification of production standards: ISO ANSI FEPA JIS ASTM

(4)Flexible payment: T/T L/C D/P D/A

(5)Professional marketing team and after-sale service


Insulating Fire Brick main feature:

 

B - SERIES Insulation Brick /Light Weight Thermal Fireclay Insulation Brick

B - SERIES Insulation Brick /Light Weight Thermal Fireclay Insulation Brick


Equipment 

1 unit of Ceramic Abrasive (SG Abrasive) pilot production line

2 units of Compact grain Abrasive pilot production lines

1 unit of high-end coated abrasives (abrasive cloth) production line

2 units of Boron Carbide production lines

3 large flexible crushing and sieving lines for grit production lines

6 units of 5000KVA-10000KVA dumping type electric arc furnaces for Brown Fused Alumina fusion

FAQs

Q1  What’s the transport method?

A1  FCL delivery goods with wooden pallet or wooden case by sea; If LCL delivery, must with wooden case; Sometimes need open top, flat rack or bulk cargo.

Q2  What’s the required payment term?

A2  Generally 30% TT as the prepayment, 70% TT before delivery. If need, 100% Irrevocable Letter of Credit or negotiation.

Q3  Which country are our products exported to?

A3  Apart from entire Chinese market, the US, Russia, Japan, Korea, Australia and some Southeast Asian Nations.

 

B - SERIES Insulation Brick /Light Weight Thermal Fireclay Insulation Brick

B - SERIES Insulation Brick /Light Weight Thermal Fireclay Insulation Brick


 

 

 


Q: Can insulating fire bricks be used in high-temperature insulation for aerospace applications?
Insulating fire bricks are capable of being utilized for high-temperature insulation in aerospace applications. Constructed from lightweight refractory materials possessing exceptional insulating properties, these bricks can endure extreme temperatures. The bricks possess a low thermal conductivity, effectively decreasing heat transfer and maintaining the desired temperature within aerospace components. Within the realm of aerospace applications, environments of elevated temperatures are commonly encountered, such as within rocket engines, exhaust systems, and thermal protection systems. Insulating fire bricks can be employed in these applications to furnish thermal insulation, shielding delicate components from excessive heat and averting heat loss to the surroundings. Furthermore, insulating fire bricks are renowned for their exceptional resistance to thermal shock, thereby enabling them to endure sudden temperature changes without cracking or deteriorating. This attribute is of utmost importance in aerospace applications, where components undergo substantial temperature variations during launch, re-entry, or other operational phases. Moreover, insulating fire bricks possess lightweight characteristics, which can prove advantageous in aerospace applications where weight reduction is crucial for fuel efficiency and overall performance. By implementing insulating fire bricks, aerospace engineers can achieve efficient thermal insulation while minimizing the added weight to the system. All in all, insulating fire bricks constitute a viable solution for high-temperature insulation in aerospace applications. Their exceptional insulating properties, resistance to thermal shock, and lightweight nature render them suitable for safeguarding critical aerospace components within environments of extreme temperatures.
Q: What are the main properties of insulating fire bricks?
Insulating fire bricks have several key properties that make them highly effective for insulating purposes. These bricks are lightweight, which enables easy handling and installation. They also possess excellent thermal insulation properties, allowing them to provide high levels of heat resistance and energy efficiency. Insulating fire bricks are highly refractory, meaning they can withstand extreme temperatures without significantly altering their structure. They have low thermal conductivity, which helps minimize heat transfer and maintain a stable and controlled environment. Additionally, these bricks have good mechanical strength, ensuring durability and longevity in various applications.
Q: Can insulating fire bricks be used in high-temperature filters?
Yes, insulating fire bricks can be used in high-temperature filters. These bricks are designed to withstand extreme temperatures and provide excellent insulation. They can effectively trap and filter out impurities in high-temperature environments, making them suitable for use in high-temperature filters.
Q: Can insulating fire bricks be used for insulation in ovens and kilns?
Insulating fire bricks are indeed suitable for insulation in ovens and kilns. These bricks are specially designed to withstand high temperatures and offer exceptional thermal insulation. They are composed of lightweight materials such as clay and other refractory substances with low thermal conductivity. Consequently, they possess the ability to effectively retain heat and prevent its escape, making them an ideal choice for ovens and kilns where heat retention is of utmost importance. Furthermore, insulating fire bricks possess resistance against thermal shock, enabling them to endure rapid temperature changes without cracking or breaking. Ultimately, insulating fire bricks guarantee efficient heat distribution and energy conservation, making them a reliable option for insulating ovens and kilns.
Q: Can insulating fire bricks be used in steam boilers?
Indeed, steam boilers can utilize insulating fire bricks. The purpose of insulating fire bricks is to possess minimal thermal conductivity, enabling them to efficiently retain and impede the transmission of heat from one side to the other. This renders them suitable for implementation in steam boilers, as they aid in enhancing energy efficiency by diminishing heat loss. Moreover, insulating fire bricks exhibit resistance to elevated temperatures, rendering them fitting for deployment in the steam boiler's high-temperature surroundings.
Q: Can insulating fire bricks be used in the construction of lime production linings?
Yes, insulating fire bricks can be used in the construction of lime production linings. These bricks are designed to withstand high temperatures and provide insulation, making them suitable for lining furnaces and kilns used in lime production. They can help maintain the desired temperature, conserve energy, and improve the efficiency of the lime production process.
Q: Can insulating fire bricks be used in fireplaces?
Yes, insulating fire bricks can be used in fireplaces. Insulating fire bricks are specifically designed to withstand high temperatures and provide excellent insulation, making them suitable for use in fireplaces. They are capable of withstanding temperatures up to 3000°F (1650°C), which is well within the operating range of most fireplaces. These bricks are made from special materials that have low thermal conductivity, allowing them to retain heat and prevent it from escaping the fireplace. This insulation property helps to improve the efficiency of the fireplace by keeping the heat inside the firebox and preventing it from dissipating into the surrounding area. Additionally, insulating fire bricks are lightweight, durable, and easy to install, making them a popular choice for fireplace construction or renovation projects.
Q: Can insulating fire bricks be used in chimney construction?
Yes, insulating fire bricks can be used in chimney construction. These bricks have high heat resistance and low thermal conductivity, making them suitable for lining chimneys and other high-temperature applications. They help to insulate the chimney and prevent excessive heat transfer, reducing the risk of structural damage and improving energy efficiency.
Q: Can insulating fire bricks be used in the construction of thermal insulation roofs?
Yes, insulating fire bricks can be used in the construction of thermal insulation roofs. These bricks are designed to have high thermal resistance and low thermal conductivity, making them suitable for insulating applications. They can help reduce heat transfer and improve energy efficiency in roofs by providing effective insulation.
Q: Can insulating fire bricks be used in aluminum furnaces?
Yes, insulating fire bricks can be used in aluminum furnaces. Insulating fire bricks are designed to have excellent thermal insulation properties, which makes them suitable for use in high-temperature environments such as aluminum furnaces. These bricks can withstand the extreme heat of aluminum melting and help to retain heat within the furnace, resulting in improved energy efficiency. Additionally, insulating fire bricks can also provide protection against heat loss, reduce the risk of overheating, and contribute to a more stable and controlled heating process.

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