Materials Science and Engineering: A 2018-03-21

Observations on {332}<113> Twinning-induced Softening in Ti-Nb Gum Metal

Sumin Shin, Chaoyi Zhu, Kenneth S. Vecchio

Index: 10.1016/j.msea.2018.03.062

Full Text: HTML

Abstract

Thermomechanical-cycling processes were applied to a metastable Ti-23Nb-0.7Ta-2Zr-1.0 O (at%) alloy to control a volume fraction of mechanical twins, resulting from activation of twinning-induced plasticity effects. Analysis of the microstructure features designed using electron backscattering and X-ray diffraction revealed the deformation bands induced by the cycling process were characterized as only {332}<113>β twinning. It was also observed that the fraction of twins was significantly increased with increasing the number of the cycles in the process, resulting in a pronounced softening effect. To shed a light on the relevant micro-scale features (e.g., geometric orientation and stress concentrations) responsible for the microstructure evolution and mechanical response, the local Schmid factor of grains and geometrically-necessary dislocation densities were evaluated from experimentally observed results, and correlated with deformation twinning. A good correlation between the local geometric Schmid factor and softening behavior, due to texture evolution within twins was established, as well as the effect of local stress concentrations on microstructure evolution of this Ti-Nb Gum metal. Significant decrease in micro-hardness (approximately 18% from untwinned structure) was achieved by highly twinned structure, and a possible deformation mechanism was established to enhance ductility without evident elastic properties variation in metastable β Ti alloys.

Latest Articles:

Microstructural evolution and improvement in mechanical properties of extruded AZ31 alloy by combined addition of Ca and Y

2018-04-10

[10.1016/j.msea.2018.04.031]

Effect of layered microstructure on the superplasticity of friction stir processed AZ91 magnesium alloy

2018-04-07

[10.1016/j.msea.2018.04.028]

Metallic glass hardening after thermoplastic forming

2018-04-07

[10.1016/j.msea.2018.04.021]

Strain rate sensitivity assessment of metallic materials by mechanical indentation tests

2018-04-07

[10.1016/j.msea.2018.04.023]

Detection of Intergranular Embrittlement of Reactor Pressure Vessel Steel by Electrochemical Method

2018-04-04

[10.1016/j.msea.2018.04.008]

More Articles...