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Dynamic shear localization in Ti6Al4 V

✍ Scribed by J. Peirs; P. Verleysen; W. Tirry; L. Rabet; D. Schryvers; J. Degrieck


Book ID
104089933
Publisher
Elsevier
Year
2011
Tongue
English
Weight
806 KB
Volume
10
Category
Article
ISSN
1877-7058

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✦ Synopsis


The alloy Ti6Al4V is known to be prone to the formation of adiabatic shear bands when dynamically loaded in shear. This causes a catastrophic decrease of the load carrying capacity and is usually followed by fracture. Although, the main mechanism is recognized to be the competition between strain hardening and thermal softening, a detailed understanding of the role of microstructural plasticity mechanisms and macroscopic loading conditions does not exist yet. To study strain localization and shear fracture, different high strain rate shear tests have been carried out: compression of hat-shaped specimens, torsion of thin walled tubular specimens and in-plane shear tests. The value of the three techniques in studying shear localization is evaluated. Post-mortem analysis of the fracture surface and the materials' microstructure is performed with optical and electron microscopy. In all cases a ductile fracture is observed. SEM and TEM techniques are used to study the local microstructure and composition in the shear band and as such the driving mechanism for the ASB formation.


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