Tungsten Fasteners

Tungsten Pan Head Screws

Tungsten Pan Head Screws are known for their extreme high density; because of this unique attribute, they are often used for balancing rotating parts. Tungsten’s high mass also makes these fasteners radiopaque. This allows Tungsten Pan Head Screws to block radiation and show up well on x-rays – even better than lead. Another unique attribute of tungsten is its extrmely high melting point of 3420°C. The high temperature stability of Tungsten Pan Head Screws make them ideal for some of the hottest vacuum furnace environments. Beyond their high mass and temperature stability, tungsten fasteners are also very corrosion resistant.
Tungsten Pan Head Screws are usually made from tungsten alloys per ASTM B777, and range from 90% to 97% pure tungsten, alloyed with nickel and copper or nickel and iron. Fasteners can also be made from Commercially Pure (CP) Tungsten.
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws
  • Tungsten Pan Head Screws

RAYCHIN SPECIALTY METALS FASTENERS: BOLTS, NUTS, SCREWS, WASHERS, STUDS, THREADED RODS, U-BOLT, J-BOLTS

STANDARD AND CUSTOMIZED, SMALL BATCH AND LARGE BATCH, IMPERIAL AND METRIC


  • Ultra-high density & high temperature / strength stability

  • Very high density of 19.3 gm/cc

  • Radiopaque to x-rays and other radiation

  • High strength at extreme high temperatures (vacuum)

  • Excellent corrosion resistance

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Tungsten Pan Head Screws: Ultra‑High Density, Versatile Fasteners for Extreme Environments

Pure Tungsten (99.95% W) · WNiFe (90-97% W) · WNiCu (90-97% W) | ASTM B777 · AMS-T-21014 · ISO 7045 · DIN 85 · ASME B18.6.3

RAYCHIN LIMITED is a world‑leading manufacturer of Tungsten pan head screws – precision fasteners produced from pure tungsten and tungsten heavy alloys (WHA). Tungsten offers an extraordinary combination of properties: density up to 19.3 g/cm³ (2.5× that of steel), the highest melting point of all metals (3410°C), exceptional radiation shielding capability (radiopaque), and outstanding corrosion resistance. The pan head design provides a low rounded profile with a large bearing surface, ideal for general assembly applications requiring high mass or radiation attenuation. Our product line encompasses all major drive types including slotted pan head screws, Phillips pan head screws, and hex socket pan head screws – all manufactured to the highest precision standards. Our portfolio includes all standard and custom configurations manufactured to NAS, AN, MS, ANSI, ASTM, ASME, SAE, API, NACE, ISO, DIN and KS standards. Whether you require Tungsten pan head screws for aerospace counterweights, radiation shielding mounts, or high‑temperature furnace fixtures, RAYCHIN delivers precision, quality, and full traceability. All mechanical properties are presented in MPa and ksi.

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Tungsten Pan Head Screws – Complete Product Range

Slotted Pan Head Screws (ASME B18.6.3 / DIN 85)

Tungsten slotted pan head screws manufactured to ASME B18.6.3 (inch series) and DIN 85 (metric series). Features a single slot drive and a low, rounded head with large bearing surface. Available in diameters from #0 to 3/8" (inch) and M1.6 to M10 (metric). Standard lengths from 3mm to 100mm. Slotted drives offer superior resistance to stripping in harsh environments and are easier to clean in dirty applications. Ideal for aerospace balancing components, radiation shielding panels, and vacuum furnace fixtures.

Phillips Pan Head Screws (ISO 7045 / DIN 7985)

Tungsten Phillips pan head screws conforming to ISO 7045 and DIN 7985 (metric) and ASME B18.6.3 (inch with Type I cross recess). Phillips drives tolerate higher torque, providing stronger joints for demanding applications. Available with Phillips drive sizes #0 to #4. Widely used in medical devices, aerospace instrumentation, and defense systems where positive drive engagement and flush mounting are critical. Class 3 and Class 4 tungsten alloys provide maximum density for radiation shielding applications.

Hex Socket Pan Head Screws (ASME B18.3 / ISO 7380)

Tungsten hex socket pan head screws feature an internal hex drive for high torque transmission and reduced cam-out. Manufactured to ASME B18.3 (inch) and ISO 7380 (metric). Available in diameters from #0 to 1½" (inch) and M2 to M48 (metric). Ideal for precision assemblies in aerospace, defense, and high‑temperature equipment where tool access is limited and a low profile head is required.

ASTM B777 Class 1-4 Pan Head Screws

Tungsten pan head screws manufactured to ASTM B777 specification for tungsten heavy alloys. Available in Class 1 (90% W), Class 2 (92.5% W), Class 3 (95% W), and Class 4 (97% W) with NiFe or NiCu binder systems. Density ranges from 17.0 g/cm³ to 18.85 g/cm³. Class 4 provides maximum density for radiation shielding; Class 3 offers best combination of strength and density for structural applications. Forged/swaged versions provide enhanced mechanical properties.

NAS / AN / MS Pan Head Screws

Tungsten pan head screws manufactured to aerospace standards including NAS 156 (slotted) and MS 35190 (Phillips). Available with inch threads and various drive types. Compliant with aerospace quality requirements including full traceability and material certifications. Used in defense applications, missile systems, and spacecraft where flush surfaces and high density are critical.

Custom & Non‑Standard Pan Head Screws

Need special drive configurations (Torx, square), non‑standard head dimensions, extra‑long lengths, or proprietary markings? RAYCHIN engineers design and produce custom Tungsten pan head screws to your exact specifications – any grade (Pure W, Class 1-4, WNiFe, WNiCu), any condition (sintered, forged, heat treated), with full material traceability. Prototype to production volumes supported. Cleanroom packaging available for medical and semiconductor applications.

Critical Applications of Tungsten Pan Head Screws

Aerospace & Defense

Tungsten pan head screws are extensively used in aircraft propeller counterweights, helicopter rotor balancing, inertial navigation systems, and missile guidance mechanisms. Tungsten's ultra‑high density (up to 19.3 g/cm³) allows precise mass distribution in space‑constrained components where weight balancing is critical. The pan head provides a large bearing surface for secure fastening of counterweight plates. Used in commercial aircraft, military jets, helicopters, and spacecraft where reliability and performance are paramount.

Radiation Shielding & Nuclear

Tungsten pan head screws in radiation therapy equipment, nuclear medicine devices, and industrial non‑destructive testing (NDT) equipment. Tungsten's high atomic number (74) and density provide excellent gamma radiation attenuation, replacing lead in space‑constrained applications. The radiopaque property allows tungsten screws to block radiation and show up clearly on X‑rays – even better than lead. The pan head provides a smooth, easy-to-clean surface essential for medical environments.

High‑Temperature Vacuum Furnaces

Tungsten pan head screws in vacuum furnace hot zones, heating element supports, and heat shield attachments. Tungsten maintains strength at temperatures exceeding 2000°C in vacuum or inert atmospheres. The pan head design provides secure clamping of refractory metal components. Tungsten's low vapor pressure ensures no contamination of processed materials. Used in sintering furnaces, crystal growth equipment, and heat treatment facilities.

Oil & Gas Logging

Tungsten pan head screws in downhole logging tools and measurement‑while-drilling (MWD) equipment. Tungsten's high density provides the mass required for gravity‑based tool positioning in deviated wells. The pan head offers a smooth profile that reduces snagging during tool deployment. Excellent corrosion resistance in sour gas environments (NACE compliant) ensures long‑term reliability in downhole conditions. Used in drill collar assemblies, logging tool housings, and sensor mounts.

Medical Devices & Imaging

Tungsten pan head screws in surgical robotics, radiation therapy machines, and diagnostic imaging equipment. Tungsten's radiopaque properties make it ideal for X‑ray positioning fixtures and calibration targets. Low magnetic permeability (<1.05) ensures compatibility with MRI environments. The pan head provides a smooth, crevice-free surface for sterilization and patient safety. Used in linear accelerators, CT scanners, and precision surgical instruments.

High‑Precision Industrial Equipment

Tungsten pan head screws in centrifuges, precision grinders, and inertial navigation systems. Tungsten's high density and stability reduce vibration caused by equipment operation. The pan head provides a large bearing surface for secure fastening in high‑vibration environments. Used in high‑speed machinery, gyroscopes, and balancing equipment where mass concentration and reliability are critical.

International Standards & Global Designations – Tungsten Pan Head Screw Materials

RAYCHIN LIMITED manufactures Tungsten pan head screws from material conforming to the most widely used national and international specifications. All material is traceable to the mill.

Grade / AlloyCompositionDensity (g/cm³)Standards / Specifications (Material only)
Pure Tungsten99.95% W min19.3ASTM B760, AMS 7725, AMS 7890, ISO 6848
DIN 17880, JIS H 4460, GB/T 4187, MIL-T-21014
Class 1 (WNiFe/Cu)90% W + Ni/Fe or Ni/Cu16.85 – 17.30ASTM B777-19, AMS-T-21014, MIL-T-21014
AMS 7725 (for 90% WNiFe), NACE MR0175 compliant
Class 2 (WNiFe/Cu)92.5% W + Ni/Fe or Ni/Cu17.15 – 17.85ASTM B777-19, AMS-T-21014, MIL-T-21014
AMS 7726 (for 92.5% WNiFe), DIN 17865, GB/T 26013
Class 3 (WNiFe/Cu)95% W + Ni/Fe or Ni/Cu17.75 – 18.35ASTM B777-19, AMS-T-21014, MIL-T-21014
AMS 7727 (for 95% WNiFe), most common structural grade
Class 4 (WNiFe)97% W + Ni/Fe18.25 – 18.85ASTM B777-19, AMS-T-21014, MIL-T-21014
Maximum density grade, used for radiation shielding
WLa (Lanthanated)W + 1-2% La₂O₃18.8 – 19.0AMS 7891, ISO 6848, used for high‑temperature applications
ASTM B777 AMS-T-21014 AMS 7725 MIL-T-21014 ASME B18.6.3 ISO 7045 DIN 85 ISO 7380 ASME B18.3 NAS 156 MS 35190 NACE MR0175

Chemical Composition (Weight %) – Tungsten Alloys for Pan Head Screws

Our Tungsten pan head screws are produced from material conforming to the limits of applicable ASTM, AMS, and customer specifications.

Pure Tungsten – ASTM B760 / AMS 7725

ElementComposition (wt%)
Tungsten (W)≥ 99.95%
Impurities (total)≤ 0.05%

Tungsten Heavy Alloys – ASTM B777 / AMS-T-21014

ElementClass 1 (90% W)Class 2 (92.5% W)Class 3 (95% W)Class 4 (97% W)
Tungsten (W)90.0 min92.5 min95.0 min97.0 min
Nickel (Ni)3.0 – 7.02.5 – 6.01.5 – 5.01.0 – 3.0
Iron (Fe) – for NiFe grades1.0 – 4.00.8 – 3.50.5 – 3.00.5 – 2.0
Copper (Cu) – for NiCu grades2.0 – 6.01.5 – 5.01.0 – 4.0
Others (total)≤ 0.5≤ 0.5≤ 0.5≤ 0.5

Metallurgical note: Tungsten heavy alloys (WHA) are produced via powder metallurgy – cold isostatic pressing, liquid phase sintering at 1450-1550°C, and subsequent heat treatment. The microstructure consists of nearly spherical tungsten grains (90-97%) embedded in a ductile Ni-Fe or Ni-Cu matrix. This composite structure combines the high density and strength of tungsten with improved ductility and machinability. Mechanical properties can be further enhanced by thermomechanical processing (swaging, rolling) which elongates tungsten grains, increasing strength along the deformation direction. For pan head screws, the head height and diameter can be customized to match various drive standards.

Complete Mechanical & Physical Properties – Tungsten Alloys for Pan Head Screws (MPa / ksi)

Tungsten pan head screws are supplied in appropriate conditions (sintered, heat treated, or forged) per ASTM B777, AMS-T-21014, and customer specifications.

Pure Tungsten – Mechanical Properties

ConditionTensile Strength (MPa)Tensile Strength (ksi)0.2% Yield Strength (MPa)Elongation (%)Hardness (HV)
Sintered350-55051-80250-3500-5300-350
Forged / Swaged (stress relieved)550-62080-90550-6000-2360-400
Hard (drawn wire)1920278500

Tungsten Heavy Alloys (NiFe Binder) – Mechanical Properties (minimum values)

Grade / ConditionTensile Strength (MPa)Tensile Strength (ksi)0.2% Yield Strength (MPa)Elongation (%)Hardness (HRC)
Class 1 (90% W) – Sintered758110517524-32
Class 1 – Forged1100-1400160-203900-12003-832-38
Class 2 (92.5% W) – Sintered758110517524-33
Class 2 – Forged1100-1450160-210900-12503-832-38
Class 3 (95% W) – Sintered724105517324-33
Class 3 – Forged1050-1450152-210800-13502-632-38
Class 4 (97% W) – Sintered689100517224-35
Class 4 – Forged1000-1400145-203800-12501-532-40

Tungsten Heavy Alloys (NiCu Binder) – Mechanical Properties (minimum values)

Grade / ConditionTensile Strength (MPa)Tensile Strength (ksi)0.2% Yield Strength (MPa)Elongation (%)Hardness (HRC)
Class 1 (90% W) – Sintered64894517224-32
Class 2 (92.5% W) – Sintered64894517224-33
Class 3 (95% W) – Sintered64894517124-33
Class 4 (97% W) – Not applicable for NiCu binder

High‑Temperature Mechanical Properties – Pure Tungsten (representative)

Test TemperatureTensile Strength (MPa)Tensile Strength (ksi)0.2% Yield Strength (MPa)
20°C (70°F)55080550
500°C (932°F)45065400
1000°C (1832°F)35051250
1500°C (2732°F)20029120
2000°C (3632°F)1001550

Note: Tungsten maintains useful strength at temperatures exceeding 2000°C in vacuum or inert atmospheres. Above 500°C in air, tungsten oxidizes rapidly (WO₃ formation). Protective coatings required for air service above 500°C.

Physical Properties – Tungsten

PropertyPure TungstenWNiFe (Class 3)
Density (g/cm³)19.317.75-18.35
Density (lb/in³)0.6970.641-0.663
Melting Point (°C)34101450 (matrix) / 3410 (W)
Melting Point (°F)61702642 (matrix) / 6170 (W)
Elastic Modulus (GPa)411320-360
Elastic Modulus (ksi)59,60046,000-52,000
Poisson's Ratio0.280.28-0.30
Thermal Expansion (20-100°C) μm/m·°C4.55.0-6.0
Thermal Conductivity (W/m·K)173120-150
Electrical Resistivity (μΩ·m)0.0540.12-0.15
Magnetic Permeability<1.05Ferromagnetic (NiFe) / Non-magnetic (NiCu)

High‑Temperature Performance of Tungsten Pan Head Screws

Tungsten is the most refractory metal with the highest melting point of all elements (3410°C). This exceptional high‑temperature capability makes tungsten pan head screws ideal for extreme thermal environments. Tungsten maintains useful mechanical properties at temperatures exceeding 2000°C in vacuum or inert atmospheres. It exhibits excellent creep resistance and thermal stability at high temperatures. Tungsten heavy alloys (WHA) retain significant strength up to 900°C, with the nickel-iron matrix providing good ductility up to moderate temperatures. For applications above 1000°C, pure tungsten or tungsten alloys with solid solution strengthening (W-Re, W-Mo) are recommended. Tungsten's low vapor pressure ensures no contamination of vacuum environments, making it essential for vacuum furnace hot zones and semiconductor processing equipment. The coefficient of thermal expansion (4.5 × 10⁻⁶/K) is low and matches well with many ceramic and refractory materials, reducing thermal stress in high‑temperature assemblies.

Elevated Temperature Capabilities

PropertyPure TungstenWNiFe Alloys
Maximum Service Temperature (vacuum/inert)2400°C (4350°F)900°C (1650°F)*
Recrystallization Temperature1200-1400°C900-1100°C
Oxidation Limit (air)300-400°C (572-752°F)**400-500°C (752-932°F)**
Creep ResistanceExcellent above 1500°CGood up to 800°C

*WHAs are limited by the melting point of the NiFe matrix (~1450°C). **Tungsten oxidizes rapidly in air above 400°C forming volatile WO₃. Protective coatings required for air service above 500°C.

Corrosion Resistance of Tungsten Pan Head Screws

Tungsten exhibits good corrosion resistance in many environments, though its behavior differs significantly from common metals. The protective WO₃ oxide film is stable in oxidizing media but volatilizes at high temperatures. Tungsten heavy alloys (WNiFe) offer enhanced corrosion resistance in many industrial environments.

  • Atmospheric Corrosion: Tungsten is highly resistant to atmospheric corrosion at room temperature, forming a stable oxide layer. Suitable for outdoor applications in clean environments.
  • Acid Resistance: Tungsten is resistant to hydrochloric acid, sulfuric acid, nitric acid, and hydrofluoric acid at room temperature. Attack occurs in oxidizing acids at elevated temperatures. WNiFe alloys show good resistance in most non-oxidizing acids.
  • Alkali Resistance: Good resistance to most alkalis at room temperature. Attacked by molten alkalis and oxidizing alkaline solutions.
  • Molten Metals: Excellent resistance to molten metals including Li, Na, K, Mg, Zn, and Bi up to high temperatures. Used in liquid metal handling systems.
  • Liquid Metals: Good compatibility with liquid metals (Li, Na, K, Bi, Pb) at elevated temperatures, used in nuclear reactor coolant systems.
  • Halogens: Resistant to dry halogens at room temperature; attacked by moist halogens and at elevated temperatures.
  • High‑Temperature Oxidation: Tungsten oxidizes rapidly above 400°C in air forming volatile WO₃. For high‑temperature air service, protective coatings (MoSi₂, ZrO₂) or inert atmospheres are required.
  • Galvanic Corrosion: Tungsten is noble relative to most structural metals; can accelerate corrosion of active metals (steel, aluminum) in contact. Isolation or coating recommended.
  • Radiation Resistance: Tungsten maintains excellent corrosion resistance under radiation, making it ideal for nuclear applications.
  • Radiopacity: Tungsten's high density provides exceptional X‑ray and gamma radiation attenuation, making pan head screws ideal for imaging fixtures and shielding components.

Manufacturing Standards – Tungsten Pan Head Screws

All Tungsten pan head screws are manufactured and tested to meet the following standards:

ASTM B777AMS-T-21014AMS 7725MIL-T-21014ASME B18.6.3ISO 7045DIN 85ISO 7380ASME B18.3NAS 156MS 35190NACE MR0175EN 10204 3.1/3.2

We offer surface finishes: plain (as‑machined), ground, polished. Tungsten pan head screws can be supplied with certified material traceability, dimensional inspection reports, and mechanical test certificates. Our manufacturing processes include CNC machining from sintered bar stock, thread rolling, and heat treatment. We specialize in custom configurations including non‑standard head dimensions, special drive types, and proprietary thread forms. Cleanroom packaging available for medical and semiconductor applications. All screws supplied with EN 10204 Type 3.1 or 3.2 certification. ISO 9001:2015 and AS9100D certified quality management system.

Why RAYCHIN LIMITED – The Tungsten Pan Head Screw Authority

Tungsten metallurgy expertise: Decades of experience with pure tungsten and tungsten heavy alloys. We ensure precise chemistry and mechanical properties per ASTM, AMS, and customer specifications. In‑house PMI verifies chemistry of every heat. Our tungsten pan head screws achieve full traceability and certified properties. Metallurgical engineering support for high‑temperature, radiation shielding, and high‑density applications.
Global certifications: ISO 9001, AS9100D (aerospace), ISO 13485 (medical), PED, API Q1, NADCAP accredited processes. All screws supplied with EN 10204 3.1/3.2 certifications, material test reports, and NACE compliance when required. Complete in‑house manufacturing control from raw material to finished product.
Precision manufacturing: CNC machining and precision forming ensure accurate screw geometry per ASME, ISO, DIN, and NAS standards. Head dimensions held to close tolerances. Class 2A/3A/6g thread fit. 100% inspection available. Special tooling for tungsten's unique machining characteristics (brittleness, high hardness). In‑house passivation and cleaning capabilities.
Custom solutions: Special head dimensions, proprietary drives, non‑standard lengths, and tailored packaging. In‑house metallurgical laboratory and failure analysis capabilities. Application‑specific design consultation for high‑temperature, radiation shielding, and balancing challenges. Flexible capacity for prototype and production volumes. Cleanroom wash and packaging available for sensitive applications.

Contact the Tungsten pan head screw experts

Request a quotation for Tungsten pan head screws, slotted pan head screws, Phillips pan head screws, hex socket pan head screws – any standard (ASME, ISO, DIN, NAS, MS, AN) – any grade (Pure W, Class 1-4, WNiFe, WNiCu), any condition (sintered, forged, heat treated), any quantity. Global delivery. Mechanical data in MPa/ksi available for all products. Radiation shielding grades available.

sales@ray-chin.com | +86 534 2166 566

Our team provides technical support in English, German, Mandarin, Japanese. Request a quote, sample requests, and material evaluation available.


RAYCHIN LIMITED – World‑class manufacturer of Tungsten pan head screws: slotted, Phillips, hex socket – inch/metric series. Grades: Pure Tungsten (99.95% W), Class 1 (90% W), Class 2 (92.5% W), Class 3 (95% W), Class 4 (97% W) per ASTM B777. Compliant with ASTM B777, AMS-T-21014, AMS 7725, ASME B18.6.3, ISO 7045, DIN 85, NAS 156, MS 35190. Aerospace balancing, radiation shielding, high‑temperature furnaces, oil & gas logging, medical devices industries. Full traceability, AMS certifications, NADCAP processing. Ultra‑high density tungsten pan head screws with density up to 19.3 g/cm³, melting point 3410°C, radiopaque properties, and exceptional corrosion resistance. Precision pan heads for general assembly and high‑mass applications. All mechanical properties certified in MPa and ksi. Cleanroom packaging available.

Head office: Taoyuan Road, East District, Pingyuan Economic Development Zone, Shandong, China

Tungsten pan head screws USA · Tungsten slotted pan head screws Europe · Tungsten Phillips pan head screws Germany · Tungsten hex socket pan head screws UK · Tungsten alloy pan head screws Asia · ASTM B777 pan head screws · Class 3 tungsten screws · radiopaque screws · high density screws · radiation shielding screws



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