In this work, the hot deformation behavior of 6A02 aluminum alloy was investigated by isothermal compression tests conducted in the temperature range of 683–783 K and strain-rate range of 0.001–1 s−1. According to the obtained true stress–true strain curves, the constitutive relationship of the alloy was revealed by establishing the Arrhenius-type constitutive model and back-propagation (BP) neural network model. It is found that the flow characteristic of 6A02 aluminum alloy is closely related to deformation temperature and strain rate, and the true stress decreases with increasing temperatures and decreasing strain rates. The hot deformation activation energy is calculated to be 168.916 kJ mol−1. The BP neural network model with one hidde...
In order to predict hot deformation behavior of superalloy nimonic 80A, a back-propagational artific...
The 3Cr23Ni8Mn3N heat-resistant steel was subjected to isothermal constant strain rate compression e...
The hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...
In this work, the hot deformation behavior of 6A02 aluminum alloy was investigated by isothermal com...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
In order to predict flow behavior and find the optimum hot working processing parameters for 5754 al...
Hot compression experiments of annealed 7075 Al alloy were performed on TA DIL805D at different temp...
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 hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...
The application of accurate constitutive relationship in finite element simulation would significant...
The aim of the present study was to investigate the modeling and prediction of the high temperature ...
The stress-strain data of 20MnNiMo alloy were collected from a series of hot compressions on Gleeble...
In order to realize a better description of plastic flow behavior in the warm deformation process of...
The application of accurate constitutive relationship in finite element simulation would significant...
In order to predict hot deformation behavior of superalloy nimonic 80A, a back-propagational artific...
The 3Cr23Ni8Mn3N heat-resistant steel was subjected to isothermal constant strain rate compression e...
The hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...
In this work, the hot deformation behavior of 6A02 aluminum alloy was investigated by isothermal com...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
In order to predict flow behavior and find the optimum hot working processing parameters for 5754 al...
Hot compression experiments of annealed 7075 Al alloy were performed on TA DIL805D at different temp...
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 hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...
The application of accurate constitutive relationship in finite element simulation would significant...
The aim of the present study was to investigate the modeling and prediction of the high temperature ...
The stress-strain data of 20MnNiMo alloy were collected from a series of hot compressions on Gleeble...
In order to realize a better description of plastic flow behavior in the warm deformation process of...
The application of accurate constitutive relationship in finite element simulation would significant...
In order to predict hot deformation behavior of superalloy nimonic 80A, a back-propagational artific...
The 3Cr23Ni8Mn3N heat-resistant steel was subjected to isothermal constant strain rate compression e...
The hot deformation behavior of Al-0.12Fe-0.1Si alloys with varied amounts of Cu (0.002–0.31 wt %) w...