Artikel
Open Access
The softening factor cb of commercial titanium alloy wires
-
A.F. Jankowski
Veröffentlicht/Copyright:
23. Oktober 2019
Received: 2018-07-02
Accepted: 2019-05-24
Published Online: 2019-10-23
Published in Print: 2019-11-12
© 2019, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Editorial
- Note from the Editor-in-Chief
- Original Contributions
- The softening factor cb of commercial titanium alloy wires
- A comparative assessment of cyclic deformation behavior of SA333 Gr-6 steel at ambient and elevated temperatures
- Effects of Ni and Al on the Cu-precipitation in ferritic Fe–Cu–M (M = Ni or Al) alloy
- Effect of manganese on the microstructure and mechanical properties of magnesium alloys
- Effect of heat treatment and extrusion on wear properties of AZ91-Pr alloy
- Effect of anodization treatment on the mechanical properties and fatigue behavior of AA2017-T4 aluminum alloy Al–Cu–Mg1
- Microstructural and tribological characterization of molybdenum–molybdenum carbide structures produced by spark plasma sintering
- Investigation of indentation and dry sliding wear behaviour of Al-12.6 wt.% Si-10 wt.% TiB2 composites produced by sequential milling and pressureless sintering
- Enthalpies of mixing in ternary Ce–Cu–Sb liquid alloys
- Effect of in-situ formation of AlP on solidification of hypereutectic Al–Si alloy
- Complex-shaped high speed steel with high mechanical performance fabricated by gelcasting sintering
- Internal electromagnetic stirring method for preparing a large-sized aluminum alloy billet
- DGM News
- DGM News
Schlagwörter für diesen Artikel
Softening factor;
Work hardening;
Plastic strain;
Ti alloys
Creative Commons
BY 4.0
Artikel in diesem Heft
- Contents
- Contents
- Editorial
- Note from the Editor-in-Chief
- Original Contributions
- The softening factor cb of commercial titanium alloy wires
- A comparative assessment of cyclic deformation behavior of SA333 Gr-6 steel at ambient and elevated temperatures
- Effects of Ni and Al on the Cu-precipitation in ferritic Fe–Cu–M (M = Ni or Al) alloy
- Effect of manganese on the microstructure and mechanical properties of magnesium alloys
- Effect of heat treatment and extrusion on wear properties of AZ91-Pr alloy
- Effect of anodization treatment on the mechanical properties and fatigue behavior of AA2017-T4 aluminum alloy Al–Cu–Mg1
- Microstructural and tribological characterization of molybdenum–molybdenum carbide structures produced by spark plasma sintering
- Investigation of indentation and dry sliding wear behaviour of Al-12.6 wt.% Si-10 wt.% TiB2 composites produced by sequential milling and pressureless sintering
- Enthalpies of mixing in ternary Ce–Cu–Sb liquid alloys
- Effect of in-situ formation of AlP on solidification of hypereutectic Al–Si alloy
- Complex-shaped high speed steel with high mechanical performance fabricated by gelcasting sintering
- Internal electromagnetic stirring method for preparing a large-sized aluminum alloy billet
- DGM News
- DGM News