
ASTM F1295 Titanium Wire
ASTM F1295 is standard of medical titanium bar and wire, covers the chemical, mechanical and metallurgical requirements for wrought annealed, cold worked, or hot rolled titanium -6 aluminum -7 niobium alloy (UNS R56700) bar / wire for surgical implants.
Product Introduction
ASTM F1295 titanium alloy (Ti-6Al-7Nb) is an advanced biomedical material designed for high-performance surgical implants. By replacing vanadium with niobium, this alloy delivers enhanced biocompatibility while maintaining the exceptional strength of traditional titanium alloys.
Why Ti-6Al-7Nb?
Superior Biocompatibility
Niobium substitution improves tissue compatibility and long-term safety
High Strength for Load-Bearing Implants
Ideal for demanding orthopedic and structural applications
Excellent Corrosion Resistance
Stable performance in complex biological environments
Optimized for Medical Standards
Fully compliant with ASTM F1295 for surgical implant materials
Performance Highlights
Tensile Strength: ≥ 1000 MPa
Yield Strength: ≥ 900 MPa
Elongation: ≥ 12%
Reduction of Area: ≥ 35%
Balanced for both strength and ductility, ensuring reliability in critical applications.
Material Composition (Typical)
Aluminum (Al): 5.5 – 6.6%
Niobium (Nb): 6.5 – 7.5%
Trace elements strictly controlled
Titanium (Ti): Balance
Precision Manufacturing
Produced through advanced processes including:
Multi-stage melting (vacuum arc & electron beam)
Forging and rolling
Precision wire drawing and finishing
Available surface conditions:
Acid washed
Polished
Precision ground
Forms: Coil or straight wire, bars
Diameter Range: From 0.2 mm with tight tolerances
Applications
Orthopedic Implants
Bone plates, screws, spinal fixation systems
Joint Replacement Systems
Hip and knee implants requiring high load capacity
Dental Implants
Long-term stable and biocompatible solutions
Advanced Medical Devices
Components for precision surgical and interventional systems
Quality You Can Trust
Manufactured under strict controls and tested for:
Chemical composition
Mechanical performance
Surface quality and dimensional accuracy
Meeting the highest standards for medical safety, reliability, and performance.
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