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Zhuzhou Sanxin Cemented Carbide Manufacturing Co., Ltd

Tungsten-Molybdenum Alloy Nozzle with High-Temperature Resistance and Precision Flow Control for Customizable Dimensions

Product Details:
Place of Origin: China
Brand Name: Sanxin
Certification: ISO
Model Number: SX1314
Payment & Shipping Terms:
Minimum Order Quantity: 2
Delivery Time: 5-30days
Payment Terms: T/T,L/C,Western Union
  • Detail Information
  • Product Description

Detail Information

Features: Excellent Wear And Corrosion Resistance Orifice Diameter: 0.1 Mm To 5 Mm
Thread Type: Standard Or Custom Threads Dimenstion: Customized
Trial Order: Accptable Feature: Multiple Application
Tolerance: 0.001mm Sample: Accepted
Length: Customizable Advantage: High Wear Resistance
Inner Hole: Customized

Product Description

Tungsten-Molybdenum Alloy Nozzle High-Temperature W-Mo Jet for Aerospace & Thermal Spraying
Precision Flow Control at Extreme Temperatures

The tungsten-molybdenum alloy nozzle represents the convergence of two refractory metals—tungsten and molybdenum—into a single, high-performance component engineered for the most demanding thermal environments. Where standard metal nozzles soften, oxidize, or erode, W-Mo alloy nozzles maintain dimensional accuracy, structural integrity, and precise flow control at temperatures exceeding 1700°C.

Tungsten provides exceptional high-temperature strength (melting point ~3422°C) and creep resistance, while molybdenum improves ductility, workability, and oxidation resistance to offer a balanced performance profile. By adjusting the tungsten-to-molybdenum ratio from 10% to 90% tungsten, we optimize nozzle performance for specific applications—higher tungsten content for maximum heat resistance (e.g., rocket thrust chambers, uncooled nozzles), higher molybdenum content for enhanced corrosion resistance and thermal cycling durability (e.g., glass fiber production, plasma spraying).

Manufactured via powder metallurgy, vacuum sintering, and precision machining, our W-Mo alloy nozzles serve critical roles across aerospace propulsion, thermal spraying, semiconductor manufacturing, glass fiber production, and powder metallurgy—wherever intense heat, corrosive atmospheres, and abrasive media demand the ultimate nozzle material.

Material Composition & Key Properties

Tungsten and molybdenum form a complete solid solution across all compositions, allowing precise tailoring of properties. The most common commercial grades range from W-10Mo (90W-10Mo) to W-50Mo (50W-50Mo), with custom compositions available upon request.

Property W-10Mo (90W-10Mo) W-30Mo (70W-30Mo) W-50Mo (50W-50Mo)
Tungsten Content 90% 70% 50%
Molybdenum Content 10% 30% 50%
Density (g/cm³) ~17.0 ~15.0 ~12.5
Melting Point (°C) ~3,300 ~2,800 ~2,600
Ultimate Tensile Strength (MPa @ RT) 700-900 600-800 550-750
Elongation (%) 5-10 10-20 15-25
Hardness (HRC) 35-40 30-38 25-35
Thermal Conductivity (W/m·K @ 20°C) 130-150 150-170 160-180
Coefficient of Linear Expansion (*10⁻⁶/K @ 20-300°C) 5.0-5.5 5.0-5.8 5.2-6.0
Key Performance Advantages
  • Exceptional High-Temperature Strength: W-Mo alloys maintain structural integrity under load where nickel-based superalloys soften. Tungsten-molybdenum alloy nozzles are utilized in thrust chambers for rocket and jet engines, withstanding extreme combustion temperatures and pressures.
  • Superior Oxidation and Corrosion Resistance: The alloy offers excellent oxidation resistance and durability against corrosive combustion gases, making it suitable for both oxidizing and reducing atmospheres. Tungsten-molybdenum alloys can maintain stable structure and performance under extreme conditions. Additionally, W-Mo nozzles for glass fiber and glass wool production provide excellent corrosion resistance and enhanced service life thanks to special precious metal inserts.
  • Low Vapor Pressure: Minimizes evaporation and contamination in high-vacuum or sensitive processes such as PVD and semiconductor manufacturing.
  • Excellent Thermal Conductivity: Efficient heat transfer prevents localized overheating and ensures stable thermal profiles across the nozzle body.
  • Fine-Tuned Thermal Expansion: The coefficient of linear expansion can be tailored to match adjacent components in high-temperature assemblies, reducing thermal stress and ensuring long-term reliability.
  • Precision Flow Control: Enables accurate, repeatable dosing of molten material—whether molten glass, plasma jets, or molten metal powder—essential for final product quality.
Why Choose Our Tungsten-Molybdenum Alloy Nozzles?
  • Balanced Performance: We precisely tune the W-to-Mo ratio for each application—higher tungsten for maximum high-temperature strength, higher molybdenum for improved workability and corrosion resistance.
  • Precision Flow Control: Custom bore geometries and tight tolerances (±0.005 mm) ensure accurate, repeatable flow of gases, liquids, molten metals, or abrasive powders.
  • Ultra-High Temperature Capability: Continuous operation up to 1,700°C in inert or vacuum atmospheres, with short-term tolerance up to 2,200°C.
  • Full Customization: Complete design flexibility from alloy composition to final surface finish—no rigid catalog limitations.
  • Comprehensive Quality Assurance: ISO 9001:2015 certified with full traceability and material certifications.
  • Expert Application Engineering: Our team assists with alloy selection, geometry optimization, and application-specific modifications.
  • Global Export Support: Professional packaging and complete export documentation for seamless international delivery.
Tungsten-Molybdenum Alloy Nozzle for high-temperature applications

To request a quote, discuss your high-temperature application, or receive a detailed material data sheet, please contact us:

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