This work presents the mechanical behavior modeling of commercial purity titanium subjected to severe plastic deformation (SPD) during post-SPD compression, at temperatures of 600-900 °C and at strain rates of 0.001-0.1 s−1. The flow response of the ultra-fine grained microstructure is modeled using the modified Johnson-Cook model as a predictive tool, aiding high temperature forming applications. It was seen that the model was satisfactory at all deformation conditions except for the deformation temperature of 600 °C. In order to improve the predictive capability, the model was extended with a corrective term for predictions at temperatures below 700 °C. The accuracy of the model was displayed with reasonable agreement, resulting in error ...
Commercially available titanium (Grade 2) samples were deformed at high temperatures using a Gleeble...
Abstract—The mechanical behavior of a commercially pure titanium (CP-Ti) is systematically investiga...
The aim of this thesis is to provide microstructural and mechanical characterisation of α-β titani...
This work presents the mechanical behavior modeling of commercial purity titanium subjected to sever...
In this investigation, compression tests were performed at a strain rate of 0.001-0.1 s(-1) in the r...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
In the present investigation, high-temperature compression tests were conducted at strain rates of 0...
Material characterization was addressed by solving the inverse engineering problem to mechanical pro...
The objective of the present study is to investigate the deformation behaviour of Ultrafine-grain (U...
The objectives of this work are to characterize the flow behaviour of the Ti–6Cr–5Mo–5V–4Al (Ti6554)...
60-64The hot working behavior of commercial pure titanium (CP-Ti) in alpha and beta phase fields was...
The effect of strain rate, temperature, grain size, and texture on the substructure and mechanical r...
The isothermal hot compression behavior of new Ti–Fe–B (named as TF400) alloy was investigated in th...
Isothermal compression tests of TC18 titanium alloy at the deformation temperatures ranging from ...
Commercially available titanium (Grade 2) samples were deformed at high temperatures using a Gleeble...
Abstract—The mechanical behavior of a commercially pure titanium (CP-Ti) is systematically investiga...
The aim of this thesis is to provide microstructural and mechanical characterisation of α-β titani...
This work presents the mechanical behavior modeling of commercial purity titanium subjected to sever...
In this investigation, compression tests were performed at a strain rate of 0.001-0.1 s(-1) in the r...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
In the present investigation, high-temperature compression tests were conducted at strain rates of 0...
Material characterization was addressed by solving the inverse engineering problem to mechanical pro...
The objective of the present study is to investigate the deformation behaviour of Ultrafine-grain (U...
The objectives of this work are to characterize the flow behaviour of the Ti–6Cr–5Mo–5V–4Al (Ti6554)...
60-64The hot working behavior of commercial pure titanium (CP-Ti) in alpha and beta phase fields was...
The effect of strain rate, temperature, grain size, and texture on the substructure and mechanical r...
The isothermal hot compression behavior of new Ti–Fe–B (named as TF400) alloy was investigated in th...
Isothermal compression tests of TC18 titanium alloy at the deformation temperatures ranging from ...
Commercially available titanium (Grade 2) samples were deformed at high temperatures using a Gleeble...
Abstract—The mechanical behavior of a commercially pure titanium (CP-Ti) is systematically investiga...
The aim of this thesis is to provide microstructural and mechanical characterisation of α-β titani...