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Pure iron product

OURPRODUCTS

Slab, Square Bar, Round Bar

Our products are primarily used in various types of alloys, soft magnetic materials, amorphous alloys, and permanent magnetic alloys. We can customize pure iron products according to customers' specific requirements.

GradeWDT0(1)

Technical StandardBXZA2024-W14-001

Melting Composition (wt.%):

CSiMnP
≤ 0.0020≤ 0.006≤ 0.020≤ 0.006
SAltCuN
≤ 0.005≤ 0.020≤ 0.012≤ 0.0040
NiCrTiO
≤ 0.015≤ 0.015≤ 0.005≤ 0.0050

WDT0(1) Φ28–Φ80 pure iron round bars and 50–70 mm square billets are mainly used for high-performance NdFeB magnets. With ultra-high purity—ultra-low carbon, silicon, manganese, sulfur, and phosphorus—WDT0(1) 70–230 mm square billets are also suited to powder metallurgy, soft magnetic alloys, high-temperature alloys, and precision alloys. As a premium soft magnetic material, it offers high saturation induction, low magnetocrystalline anisotropy, and a low magnetostriction constant.

WDT0(1)

GradeWDTNB

Technical StandardBXZA2024-W14-001

Melting Composition (wt.%):

CSiMnP
≤ 0.0020≥ 0.50≤ 0.020≤ 0.008
SAlsCuN
≤ 0.0050≤ 0.005≤ 0.012≤ 0.0040
NiCrTiO
≤ 0.015≤ 0.015≤ 0.005≤ 0.0050

WDTNB 70–230 mm pure iron square billets are mainly used for amorphous and nanocrystalline alloys. Iron-based amorphous alloys deliver better stability than soft ferrites in power-frequency and medium-frequency applications, with high permeability, low coercivity, and low loss.

WDTNB

GradeWDYC01

Technical StandardBKYA2023-005

Melting Composition (wt.%):

CSiMnS
≤ 0.05≤ 0.01≤ 0.02≤ 0.01
AlNiCrCu
≤ 0.008≤ 0.005≤ 0.007≤ 0.007
TiNaZnPb
≤ 0.005≤ 0.005≤ 0.002≤ 0.003
CdCaMgCo
≤ 0.001≤ 0.008≤ 0.002≤ 0.003
KSn
≤ 0.003≤ 0.005

Primarily used for lithium iron phosphate (LFP) cathode materials.

As an ultra-high-purity iron source, pure iron provides a solid foundation for high-quality ferric phosphate. High purity avoids strong acid residues and by-product handling, eliminating purification and pH-adjustment steps and lowering production costs. It also avoids harmful by-products such as sulfur dioxide, supporting cleaner and more economical manufacturing.

WDYC01

GradeWGW1B

Technical StandardBXZA2024-W15-001

Melting Composition (wt.%):

CSiMnP
≤ 0.0030≤ 0.010≤ 0.025≤ 0.001
SAlsCuN
≤ 0.0010≤ 0.020≤ 0.012≤ 0.0040
NiCrTiO
≤ 0.015≤ 0.015≤ 0.005≤ 0.0080

WGW1B is primarily used as the iron base feedstock for high-temperature, heat-resistant, and precision alloys in aerospace and industrial applications. Ultra-low phosphorus and sulfur deliver excellent electromagnetic performance, soft texture, toughness, and thermal conductivity. Iron–nickel high-temperature alloys—composed of iron, nickel, chromium, and related elements and strengthened by solid solution—offer outstanding heat, corrosion, and oxidation resistance for aero-engine and gas-turbine components.

WGW1B