Fluorspar Briquette
Fluorspar Briquette

Fluorspar Briquette

Fluorspar Briquette Specification

  • Mesh Size
  • Custom mesh available
  • Dimensions
  • 50mm x 50mm x 30mm (approx.)
  • Impurity Content (%)
  • 1.5%
  • Product Type
  • Mineral Briquette
  • Alloy
  • Not an alloy
  • Shape
  • Briquette/Block
  • Size
  • 50 mm
  • Weight
  • Approx. 100-200g per briquette
  • Application
  • Metallurgical Industry, Steelmaking, Deoxidizer, Flux in Foundry
  • Color
  • Grayish-white
  • Melting Point
  • Approximately 1360C
  • HS Code
  • 25292100
  • Packaging
  • 25kg woven bags or customized
  • Moisture Content
  • 0.5%
  • Purity (CaF2)
  • 75%-90%
  • Bulk Density
  • 1.8-2.0 g/cm
 

Fluorspar Briquette Trade Information

  • Minimum Order Quantity
  • 25 Metric Tons, Metric Tons
  • Payment Terms
  • Cash Against Delivery (CAD), Cheque
  • Packaging Details
  • 1.25Mt Bags
  • Main Domestic Market
  • All India
  • Certifications
  • Product FLUORSPAR BRIQUETTES CaF2 90%Min SiO2 4-5%Max Sulpher 0.05%Max Phos 0.05%Max Size 10-50 mm 90% Min We can also give 85% Briquette
 

About Fluorspar Briquette

We can supply Fluorspar Briquette on regular basis form China as well as from Thailand .

We can also supply the same form our stock in Vizag

Minimum order quantity for locally is 10Mt and import basis 27Mt or 1 Container



Key Applications in Metallurgy

Fluorspar Briquettes play a vital role as a flux in steelmaking and foundry processes, as well as aiding in deoxidation. By integrating these calcium fluoride-rich blocks, manufacturers achieve cleaner melts, lower slag viscosity, and better mechanical properties in finished metals. They are especially effective in optimizing steel production and refining processes, making them a preferred choice across Indian metallurgical industries.


High Purity, Consistent Quality

With a CaF2 content ranging between 75% and 90%, and impurity levels below 1.5%, these briquettes meet stringent industry standards. Their consistent composition and low moisture ensure predictable melting behavior, essential for critical steelmaking operations. The carefully designed dimensions and bulk density make them easy to store, transport, and dose, streamlining manufacturing workflow.

FAQs of Fluorspar Briquette :


Q: How are fluorspar briquettes used in steelmaking and the foundry sector?

A: Fluorspar briquettes are introduced into the molten metal or slag during steelmaking or foundry operations, where they act as a flux and deoxidizer. This helps to remove impurities, reduce slag viscosity, and enhance the metals overall quality.

Q: What advantages do fluorspar briquettes provide over conventional fluxes?

A: Fluorspar briquettes offer high purity and consistent composition, resulting in efficient deoxidation and improved slag fluidity. Their uniform size and bulk density streamline dosing, reduce wastage, and promote a cleaner melt compared to granular or irregular flux materials.

Q: When should fluorspar briquettes be added during the steel production process?

A: Typically, fluorspar briquettes are introduced during the initial or intermediary stages of the steelmaking process, especially when slag formation and deoxidation are required. The exact timing depends on the specific operational practices of the manufacturer.

Q: Where can these fluorspar briquettes be sourced in India?

A: Fluorspar briquettes are available through reputable exporters and importers across India, specializing in metallurgical raw materials. Customized packaging and mesh sizes can be arranged according to buyer requirements.

Q: What is the process of manufacturing these high-purity briquettes?

A: The production process involves selecting and crushing high-grade fluorite ore, followed by blending, pressing into uniform briquettes, and ensuring moisture content remains under 0.5%. Stringent quality checks ensure each batch meets purity and bulk density standards.

Q: How does the low moisture content benefit industrial users?

A: Low moisture content (0.5%) reduces undesirable reactions in high-temperature metallurgical environments, ensuring stable melting characteristics and minimizing potential for steam-induced defects in the final product.

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