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Zhuzhou Sanxin Cemented Carbide Manufacturing Co., Ltd

Non-Magnetic Tungsten Carbide Ring Cavity Mold WC-Ni Alloy for High Wear Resistance and Precision Ground Applications

Ürün ayrıntıları:
Menşe yeri: Çin
Marka adı: Sanxin
Sertifika: ISO
Model numarası: SX1291
Ödeme & teslimat koşulları:
Min sipariş miktarı: 2
Teslim süresi: 5-25 gün
Ödeme koşulları: L/C,T/T,Western Union
  • Detay Bilgi
  • Ürün Açıklaması

Detay Bilgi

İşleme yöntemi: Sinterleme Süneklik: İyi süneklik ve işlenebilirlik
Dış görünüş: Parlatma, sinterleme Yüksek: 8-150mm
Kimyasal Direnç: Çoğu asit ve alkaliye dayanıklı Aşınma direnci: Yüksek
Dış çap: 10~ 300 mm Uygulama: Makineler, sondaj, madencilik ve endüstriyel aletler
Anahtar kelime: Tungsten Karbür Rulman Kovanları Mevcut Boyutlar: Özelleştirilebilir
Seviye: K10, K20, K30, YG8, YG6X Söndürme Sıcaklığı: 1400 - 1600°C
Vurgulamak:

Non-Magnetic Tungsten Carbide Ring Cavity Mold

,

High Wear Resistance WC-Ni Alloy Mold

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Precision Ground Non-Magnetic Mold

Ürün Açıklaması

Non-Magnetic Tungsten Carbide Ring Cavity Mold WC-Ni Alloy For High-Precision Compression & Sintering
Our Non-Magnetic Tungsten Carbide Ring Cavities are the ultimate core components for high-precision forming processes. Engineered from specialized WC-Ni (Tungsten Carbide-Nickel) alloy, these cavities deliver the perfect combination of absolute magnetic neutrality, extreme wear resistance, and exceptional thermal stability—critical for producing consistent, high-quality parts in demanding industries like electronics, advanced ceramics, and specialized powder metallurgy.
Core Technology: The Foundation of Flawless Molding
  • Absolute Non-Magnetic Integrity (µ < 1.002): Utilizing a nickel-based binder instead of cobalt, these cavities produce zero magnetic field interference. This is essential when molding parts for MRI components, sensitive electronics, or aerospace systems where residual magnetism is unacceptable. It also prevents magnetic attraction of fine metal powders during filling.
  • Unmatched Wear & Deformation Resistance: With a hardness of 90-92 HRA, WC-Ni provides phenomenal resistance to abrasive wear from powders (e.g., metal, ceramic, ferrite) and repeated ejection cycles. Its high compressive strength (>4000 MPa) ensures the cavity profile remains dimensionally stable under high compaction pressures (often 10+ tons), far outperforming tool steel.
  • Superior Thermal & Chemical Stability: The low thermal expansion coefficient ensures dimensional accuracy is maintained across the wide temperature ranges of sintering or curing processes. It also offers excellent resistance to chemical attack from binders and lubricants used in molding.
Technical Specifications & Machining Precision
We manufacture ring cavities to exacting standards. The following are key capabilities; all features are customizable to your drawing.
Parameter Standard Specification High-Precision / Custom Capability
Material WC-Ni Alloy (Non-Magnetic Grade) Specific grades for enhanced toughness or wear resistance
Cavity Profile Round, Rectangular, Complex Ring Shapes Any 2D contour per customer CAD file
Critical Dimension Tolerance ±0.01 mm on cavity bore/profile ± 0.005 mm or tighter for micron-level parts
Surface Finish (Cavity Wall) Ra 0.4 μm (Polished) Ra 0.1 μm (Mirror) or better for optimal part release
Concentricity / Parallelism ≤ 0.01 mm ≤ 0.005 mm
Common Sizes (ID x Depth) Φ5mm to Φ200mm x (Custom Depth) Larger sizes upon request
Target Applications
Industry / Process Problem Solved Why Our Cavity is Superior
Powder Metallurgy / MIM Wear during compaction of abrasive metal/ceramic powders leads to oversized parts and scrap. WC-Ni hardness extends mold life by 10-50x vs. steel, ensuring consistent part density and dimensions over millions of cycles.
Electronic Component Molding (e.g., Ferrites, Inductors) Magnetic steel molds can magnetize sensitive ferrite materials, degrading final component performance. Guaranteed non-magnetic property prevents part magnetization, crucial for inductors, transformers, and EMI shielding parts.
Precision Ceramic / Carbide Sintering Dimensional drift in steel cavities under high sintering temperatures. Superior thermal stability maintains precise tolerances through high-temperature cycles.
High-Pressure Composite Molding Cavity deformation under extreme pressure, causing flash and poor part geometry. Extremely high compressive strength resists deformation, ensuring clean, precise parts at every press.
Our Value Proposition: Your Partner in Precision Tooling
  • End-to-End Engineering Support: We work from your part print or CAD model to design and manufacture the optimal cavity, considering draft angles, shrinkage factors, and ejection strategy.
  • Advanced Manufacturing & Finishing: Utilizing CNC grinding, Wire EDM, and precision lapping/polishing, we create complex profiles and ultra-smooth surfaces for easy part release.
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