Hot compression experiments of annealed 7075 Al alloy were performed on TA DIL805D at different temperatures (733, 693, 653, 613 and 573 K) with different strain rates (1.0, 0.1, 0.01 and 0.001 s−1.) Based on experimental data, the strain-compensated Arrhenius model (SCAM) and the back-propagation artificial neural network model (BP-ANN) were constructed for the prediction of the flow stress. The predictive power of the two models was estimated by residual analysis, correlation coefficient (R) and average absolute relative error (AARE). The results reveal that the deformation parameters including strain, strain rate, and temperature have a significant effect on the flow stress of the alloy. Compared with the SCAM model, the flow stress pred...
The aim of the present study was to investigate the modeling and prediction of the high temperature ...
The flow behavior of CMn (Nb-Ti-V) micro alloyed steel was studied by hot compression tests in a wid...
The hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
An artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were developed fo...
The stress-strain data of 20MnNiMo alloy were collected from a series of hot compressions on Gleeble...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
In this work, the hot deformation behavior of 6A02 aluminum alloy was investigated by isothermal com...
In this work, the hot deformation behavior of 6A02 aluminum alloy was investigated by isothermal com...
In order to predict flow behavior and find the optimum hot working processing parameters for 5754 al...
In order to predict flow behavior and find the optimum hot working processing parameters for 5754 al...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
In order to predict hot deformation behavior of superalloy nimonic 80A, a back-propagational artific...
The aim of the present study was to investigate the modeling and prediction of the high temperature ...
The flow behavior of CMn (Nb-Ti-V) micro alloyed steel was studied by hot compression tests in a wid...
The hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
An artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were developed fo...
The stress-strain data of 20MnNiMo alloy were collected from a series of hot compressions on Gleeble...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
In this work, the hot deformation behavior of 6A02 aluminum alloy was investigated by isothermal com...
In this work, the hot deformation behavior of 6A02 aluminum alloy was investigated by isothermal com...
In order to predict flow behavior and find the optimum hot working processing parameters for 5754 al...
In order to predict flow behavior and find the optimum hot working processing parameters for 5754 al...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
In order to predict hot deformation behavior of superalloy nimonic 80A, a back-propagational artific...
The aim of the present study was to investigate the modeling and prediction of the high temperature ...
The flow behavior of CMn (Nb-Ti-V) micro alloyed steel was studied by hot compression tests in a wid...
The hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...