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Fort Wayne Metals

Thin Wall SMA Composites: Where Plating Will Not Apply

You may know that Fort Wayne Metals has been in the business of providing effective DFT® composite wire solutions for more than 30 years into industries such as cardiac pacing and neurovascular stenting. DFT wires are commonly ordered with a specific area fraction (%) of another metal, like silver for conductivity (e.g. 35N LT-DFT-28%Ag), or platinum for x-ray-opacity (e.g. NiTi-DFT-10%Pt) – these DFT wires with less than 50% area core fractions are known as thick wall composites.

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      • Previous R&D Updates
        • Superelastic conductor material with enhanced fatigue durability for implantable lead service
        • Super-Elastic Alloys with Gigapascal Plateau Strengths
        • Composite wire with enhanced radiopacity, elasticity, and electrochemical behavior
        • Nickel-free beta-titanium Alloy with Large and Stable Room Temperature Superelasticity
        • Stress Corrosion Testing of Mg Wire
        • Superlative Strength Wire and Cable for Force Transmission
        • A CoNiCr-Nitinol Composite Wire for Guidewire Type Applications
        • What will you make with grooved wire?
        • Fort Wayne Metals Co-authors Article Posted for Royal Society of Chemistry
        • Aging and Shapeset Performance of a Radiopaque Super-Elastic Beta Titanium Alloy for Vascular and Orthopedic Applications
        • Progress in Nickel-free Shape Memory Alloys (SMA)
        • Absorbable Multifilament Composites for Tailored Degradation
        • Medical Experience in Nitinol Translating Towards More Effective Flight via Morphing Aerostructures
        • Ultra-fine Shape Memory Alloy Yarn for Textiles
        • Resoloy®: A Magnesium Alloy for Absorbable Devices
        • Enhanced Superelastic Temperature Range in Nitinol
        • Accelerated High Stress Testing of Low Temperature NiTi Actuator Wire
        • NiTiNb: a Stiffer and Stronger Alloy System with Many Potentials
        • It Can Groove, But Does It Jive?
        • Shape Setting of High Performance Beta Titanium SMA
        • Galvanically Active Wires for Enhanced Absorbable Device Performance
        • Thin Wall SMA Composites: Where Plating Will Not Apply
        • Drawing Magnesium's Strengths: Absorbables and Beyond
        • A New Take on Wire Geometry – Functional Grooves
        • A Fresh Take on Composite Wire Design
        • High Performance Beta Titanium Alloys
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  • Superelastic conductor material with enhanced fatigue durability for implantable lead service
  • Super-Elastic Alloys with Gigapascal Plateau Strengths
  • Composite wire with enhanced radiopacity, elasticity, and electrochemical behavior
  • Nickel-free beta-titanium Alloy with Large and Stable Room Temperature Superelasticity
  • Stress Corrosion Testing of Mg Wire
  • Superlative Strength Wire and Cable for Force Transmission
  • A CoNiCr-Nitinol Composite Wire for Guidewire Type Applications
  • What will you make with grooved wire?
  • Fort Wayne Metals Co-authors Article Posted for Royal Society of Chemistry
  • Aging and Shapeset Performance of a Radiopaque Super-Elastic Beta Titanium Alloy for Vascular and Orthopedic Applications
  • Progress in Nickel-free Shape Memory Alloys (SMA)
  • Absorbable Multifilament Composites for Tailored Degradation
  • Medical Experience in Nitinol Translating Towards More Effective Flight via Morphing Aerostructures
  • Ultra-fine Shape Memory Alloy Yarn for Textiles
  • Resoloy®: A Magnesium Alloy for Absorbable Devices
  • Enhanced Superelastic Temperature Range in Nitinol
  • Accelerated High Stress Testing of Low Temperature NiTi Actuator Wire
  • NiTiNb: a Stiffer and Stronger Alloy System with Many Potentials
  • It Can Groove, But Does It Jive?
  • Shape Setting of High Performance Beta Titanium SMA
  • Galvanically Active Wires for Enhanced Absorbable Device Performance
  • Thin Wall SMA Composites: Where Plating Will Not Apply
  • Drawing Magnesium's Strengths: Absorbables and Beyond
  • A New Take on Wire Geometry – Functional Grooves
  • A Fresh Take on Composite Wire Design
  • High Performance Beta Titanium Alloys
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  • Enhanced solutions
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Await You

You are now leaving Fort Wayne Metals website to apply within our internship portal. Thank you for your interest in becoming an intern at Fort Wayne Metals and making lives better.