Fort Wayne Metals

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Resource Library

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Spec Sheets

For detailed information about a specific material or product, please refer to the appropriate spec sheet:

White Papers

Texture evolution during nitinol martensite detwinning and phase transformation

Copyright 2013, American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared in in Applied Physics Letters (Vol.103, Issue 24) and may be found at this external link.


(PDF 1.2 mb)

Cold drawn bioabsorbable ferrous and ferrous composite wires: An evaluation of in vitro vascular cytocompatibility (External Link)
Evolution of lattice strain and phase transformation of β III Ti alloy during room temperature cyclic tension (External Link)
Cyclic Potentiodynamic Survey of Medical Materials (PDF 8.1 mb)
Fatigue Performance of Nitinol Round Wire with varying cold work reductions (PDF 588 kb)
Structure-Property Relationships in conventional and nanocrystalline Niti intermetallic alloy wire (PDF 536 kb)
Characterizing Fatigue Response of Nickel-titanium (PDF 620 kb)
A Hierarchical Initiation Mechanism Approach (PDF 7.2 mb)
A probabilistic approach to modeling microstructura (PDF 836 kb)
An Investigation of Diverse Surface Finishes on Fatigue (PDF 1.7 mb)
The Significance of Melt Practice on Fatigue Properties (PDF 892 kb)
Fatigue Failure Analysis of Enhanced 35N LT® (PDF 6553 kb)
The Effects of Varying Active Af Temperatures (PDF 1126 kb)
Characterizing Fatigue and Fracture Response (PDF 3072 kb)
Engineering Characteristics of Drawn Filled Nitinol Tube (PDF 231 kb)
The Influence of Melt Practice On Final Fatigue (PDF 125 kb)
General Characteristics of DFT® Composite Wire  (PDF 310 kb)
Optimization of Melt Chemistry and Properties of 35Cobalt-35Nickel  (PDF 512 kb)
Optimization of Melt Chemistry and Properties of Drawn Filled Tube  (PDF 584 kb)
Bend Moment Analysis Comparing Strand Annealed  (PDF 826 kb)
Influence of Nitinol Wire Surface Preparation Procedures (PDF 1.89 mb)
Design of Experiment for Solder Project (PDF 4.1 mb)