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Produktdetails:
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| Herkunftsort: | China |
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| Markenname: | Sanxin |
| Zertifizierung: | ISO |
| Modellnummer: | SX1310 |
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Zahlung und Versand AGB:
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| Min Bestellmenge: | 1 |
| Lieferzeit: | 5-25 Tage |
| Zahlungsbedingungen: | T/T, Western Union, L/C |
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Detailinformationen |
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| Wärmeleitfähigkeit: | 70 - 100 w/m · k | Material: | Wolframkarbid |
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| Ordnerinhalt: | Kobalt 6-12 % | Kategorien: | Wolframkarbidverarbeitung |
| Duktilität: | Gute Duktilität und Verarbeitbarkeit | Biegefestigkeit: | 1400 - 2100 MPa |
| Präzision: | 0,001 - 0,01 mm | Hohe Härte: | HRA92 |
| Oberfläche: | Freie Räume oder Polierreiben | Schmelzpunkt: | Ungefähr 2870°C |
| Toleranz: | ±0,01 mm | Vorteil: | Hohe Verschleißfestigkeit, Hersteller, CNC-Bearbeitung, hohe Verschleißfestigkeit und lange Lebensda |
| Dichte: | 12,75–15,3 g/cm3, 14,6–14,8 g/cm, 14,6–14,8, 14,7 g/m3, 16,4 | ||
Produkt-Beschreibung
The Ø2.8mm tungsten alloy ball represents a benchmark in precision spherical components—small enough to fit into compact assemblies yet dense enough to provide meaningful mass where space is constrained. Tungsten heavy alloys offer densities of 16.5-18.5 g/cm³, approximately 1.5-1.6 times that of lead, making them the material of choice for applications that demand maximum weight in minimal volume, without the toxicity and mechanical limitations of lead alternatives.
Available in two primary alloy systems—WNiFe (tungsten-nickel-iron) and WNiCu (tungsten-nickel-copper)—our 2.8mm tungsten heavy alloy balls are precision-engineered to meet the most exacting requirements across aerospace, medical imaging, defense, precision instrumentation, and high-performance automotive sectors.
The 2.8mm tungsten alloy ball is available with precision-ground surfaces and tight geometric tolerances to ensure consistent fit and function in critical assemblies.
| Parameter | Value / Range |
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| Diameter | 2.8 mm (exact, custom tolerances available) |
| Diameter Tolerance (Standard) | ±0.005 mm (precision-grinded) |
| Diameter Tolerance (High-Precision) | Down to ±0.001 mm upon request |
| Density Range | 16.85 - 18.75 g/cm³ (depending on W content) |
| Tungsten Content | 90% - 97% by weight |
| Alloy Systems | WNiFe (magnetic), WNiCu (non-magnetic µ < 1.002) |
| Melting Point | ~1,500°C |
| Tensile Strength | Up to 1,200 MPa (grade-dependent) |
| Sphericity / Roundness | ≤ ±0.5 µm achievable upon request |
| Surface Finish | As-sintered, ground, polished, or electroplated |
Tungsten heavy alloys are produced by blending tungsten powder (90-97% by weight) with matrix-forming metals (nickel, iron, or copper) followed by liquid-phase sintering. This process yields a two-phase microstructure: nearly pure tungsten grains embedded in a ductile binder matrix, achieving near-theoretical density.
| Property | WNiFe (Tungsten-Nickel-Iron) | WNiCu (Tungsten-Nickel-Copper) |
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| Magnetic Behavior | Ferromagnetic (magnetic) | Non-magnetic (µ < 1.002) |
| Corrosion Resistance | Good in neutral / clean environments | Excellent in marine / humid / acidic media |
| Mechanical Strength | Higher (up to 1,400 MPa) | Moderate (up to 1,200 MPa) |
| Density Range | 16.85-18.85 g/cm³ | 16.85-18.35 g/cm³ |
| Typical Applications | Structural counterweights, aerospace ballasting, inertial systems | MRI collimators, medical shielding, field-sensitive instruments |
| Cost | Moderate (standard grade) | Slightly higher due to copper content |
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