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During cold drawing the microdomains are strongly extended.
A Cu 6 wt.% Ag filamentary nanocomposite was prepared by melting, aging and cold drawing.
The ultrafine-grained structure was prepared by means of equal channel angular pressing technique followed by cold drawing.
This paper deals with the role of microstructure on the fatigue behaviour of pearlitic steels with different degrees of cold drawing.
Cold drawing to an extension of 500% resulted in further increases in fibre strength (up to 50 MPa) and stiffness (0.3 GPa).
From the results obtained, it is concluded that heavy cold drawing technique is an effective method for lamellar composite to get high strength wires.
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However, an application of quenching treatment followed by cold drawing, improves the fatigue limit more significantly than in case where the 3CR12 steel was annealed and cold drawn.
The as-cast ingot was hot forged and extruded, followed by cold-drawing and intermediate annealing to produce wires of 1.0 mm in diameter, with a final cold-drawing of 30% reduction in cross-section.
The application of electroplastic processing technology to the cold-drawing of steel wires was investigated.
Smaller diameter tubes, both welded and seamless, can be produced by reduction mills or cold-drawing benches.
Strain-hardening by cold-drawing increased the healing efficiency considerably.
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