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Zhenan Metallurgy Co., Ltd

  • China,Anyang ,Henan
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China Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough
China Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough

  1. China Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough
  2. China Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough
  3. China Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough
  4. China Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough

Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough

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  2. Price: Negotiable
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Payment Terms L/C,T/T,Western Union
Supply Ability 2000MT/per Month
Delivery Time 5-10 work days after received the payment
Packaging Details 1MT big bag or as per customer request
Material FeSi Nitride
Size 10-50mm
Silicon content 70-80%
Iron content 20-30%
Nitrogen content 20-35%
Bulk density 2.5-3.2 g/cm³
Brand Name ZHENAN
Model Number FeSi Nitride
Certification ISO9001
Place of Origin China

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  1. Product Details
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Product Specification

Payment Terms L/C,T/T,Western Union Supply Ability 2000MT/per Month
Delivery Time 5-10 work days after received the payment Packaging Details 1MT big bag or as per customer request
Material FeSi Nitride Size 10-50mm
Silicon content 70-80% Iron content 20-30%
Nitrogen content 20-35% Bulk density 2.5-3.2 g/cm³
Brand Name ZHENAN Model Number FeSi Nitride
Certification ISO9001 Place of Origin China
High Light Ferrosilicon Nitride thermal shock resistantFeSiN for trough castablesFerro Silicon Alloy water-free taphole clay
Ferrosilicon Nitride Supplier | Thermal Shock Resistant FeSiN for Trough Castables & Water-free Taphole Clay
What Is Ferrosilicon Nitride and Why It Matters in High-Temperature Refractories

Ferrosilicon Nitride (FeSiN) is a functional refractory additive produced by controlled nitridation of ferrosilicon, forming a stable Fe-Si-N compound used in high-temperature metallurgical systems. It is widely applied in trough castables, blast furnace runners, and water-free taphole clay systems where thermal shock, erosion, and rapid heating-cooling cycles are severe.

In these environments, FeSiN acts as a structural and reactive phase modifier, improving the integrity of refractory linings under extreme operational stress. ZhenAn supplies industrial-grade Ferrosilicon Nitride engineered for high thermal shock resistance and stable refractory performance in steelmaking applications.

Why Thermal Shock Resistance Is Critical in Steel Plant Refractories

Steel plant refractory systems are constantly exposed to rapid temperature changes during tapping, slag flow, and furnace cycling. These sudden transitions create thermal stress inside the refractory matrix, often leading to cracking, spalling, and premature failure.

Trough castables and water-free taphole clay are particularly vulnerable because they must:

  • Withstand molten metal contact
  • Resist repeated heating and cooling cycles
  • Maintain structural integrity under mechanical erosion

FeSiN improves this performance by stabilizing internal structure and reducing stress concentration points.

How Ferrosilicon Nitride Improves Thermal Shock Resistance in Refractories

FeSiN enhances thermal shock resistance through multiple mechanisms:

Formation of Stable Nitrided Phases

At high temperatures, FeSiN contributes to the formation of Si₃N₄-based ceramic phases that provide strong thermal stability and structural rigidity.

Stress Distribution Improvement

The nitrided network helps distribute thermal stress more evenly across the refractory matrix, reducing localized cracking.

Microstructure Reinforcement

FeSiN fills gaps between refractory particles, creating a denser and more cohesive structure that resists expansion mismatch.

Crack Propagation Suppression

The composite structure reduces crack initiation and slows crack propagation during thermal cycling.

Why Do Trough Castables Require FeSiN Additives?

Trough castables operate in the slag and molten iron flow path of blast furnaces, where they face extreme thermal and chemical stress. FeSiN is used because it:

  • Enhances resistance to molten slag corrosion
  • Improves mechanical strength after curing and heating
  • Stabilizes casting structure under continuous thermal load
  • Extends service life of runner systems

Without FeSiN, trough castables are more prone to erosion and thermal cracking.

Technical Specifications of Ferrosilicon Nitride
Item Specification
Product Name Ferrosilicon Nitride
Chemical System Fe-Si-N
Nitrogen Content 25-35% (grade dependent)
Particle Size 0-3 mm / customized
Appearance Grey granular solid
Density High-density refractory additive
Application Trough castables / taphole clay / refractory systems
FeSiN vs Conventional Refractory Additives
Parameter Ferrosilicon Nitride Conventional Additives
Thermal Shock Resistance High Moderate
Crack Resistance Strong Limited
Structural Stability Improved Average
Slag Resistance Enhanced Lower
Service Life Extension Significant Limited
Industrial Suitability High-temperature systems General use
Product Delivery, Packaging, and Logistics

ZhenAn supplies Ferrosilicon Nitride in controlled granular form suitable for refractory mixing and industrial steel applications.

Standard packaging options include:

  • 25kg moisture-resistant bags
  • 1MT jumbo bags
  • Reinforced palletized export packaging

Each shipment includes:

  • COA (Chemical Composition Report)
  • Particle size distribution analysis
  • Nitrogen content verification
  • Quality consistency certification

Export logistics are optimized for steel plant supply chains requiring stable and continuous raw material delivery.

Frequently Asked Questions
How does ferrosilicon nitride improve thermal shock resistance in refractories?

It forms stable nitrided phases that strengthen the refractory matrix.

Why do trough castables require FeSiN additives?

To improve resistance to slag erosion and thermal cracking.

Can FeSiN reduce cracking under rapid temperature changes?

Yes, it improves stress distribution and structural stability.

How does FeSiN improve refractory structural stability?

By enhancing bonding strength and reducing porosity.

What role does FeSiN play in thermal stress absorption?

It distributes thermal energy and reduces localized stress.

Why is FeSiN used in high-temperature casting systems?

Because it improves durability and resistance to molten metal flow.

How does FeSiN improve refractory lifespan?

By reducing erosion, cracking, and structural degradation.

What properties make FeSiN suitable for thermal shock environments?

High stability, strong bonding, and excellent microstructural reinforcement.

Why Steel Plants Choose ZhenAn FeSiN

ZhenAn provides high-performance Ferrosilicon Nitride engineered for thermal shock resistance, refractory stability, and long service life in demanding steel plant environments. Our controlled production process ensures consistent nitrogen content and reliable industrial performance.

Company Details

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 from Quality China Factory
  • Business Type:

    Manufacturer,Seller

  • Year Established:

    2019

  • Total Annual:

    10000000-80000000

  • Employee Number:

    10~50

  • Ecer Certification:

    Verified Supplier

ZhenAn is an enterprise specializing in Metallurgical & Refractory products , integrating production, processing, sales and importing and exporting business. We are focused on building a dedicated team of professionals across the globe. At ZhenAn, we are committed to provide complete solutions ... ZhenAn is an enterprise specializing in Metallurgical & Refractory products , integrating production, processing, sales and importing and exporting business. We are focused on building a dedicated team of professionals across the globe. At ZhenAn, we are committed to provide complete solutions ...

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  • Zhenan Metallurgy Co., Ltd
  • Huafu Commercial Center, Wenfeng District, Anyang City, Henan Province, China
  • https://www.ferrosilicon-alloy.com/

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