AbstractAn artificial neural network (ANN) constitutive model is developed for high strength armor steel tempered at 500 °C, 600 °C and 650 °C based on high strain rate data generated from split Hopkinson pressure bar (SHPB) experiments. A new neural network configuration consisting of both training and validation is effectively employed to predict flow stress. Tempering temperature, strain rate and strain are considered as inputs, whereas flow stress is taken as output of the neural network. A comparative study on Johnson–Cook (J–C) model and neural network model is performed. It was observed that the developed neural network model could predict flow stress under various strain rates and tempering temperatures. The experimental stress–stra...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
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...
AbstractAn artificial neural network (ANN) constitutive model is developed for high strength armor s...
An artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were developed fo...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
A number of semi-empirical models are available in literature to predict flow stress of steel during...
A number of semi-empirical models are available in literature to predict flow stress of steel during...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
The flow behavior of CMn (Nb-Ti-V) micro alloyed steel was studied by hot compression tests in a wid...
The flow behavior of CMn (Nb-Ti-V) micro alloyed steel was studied by hot compression tests in a wid...
In this paper, neural network based constitutive models relating stress to deformation conditions of...
In the present study, artificial neural networks (ANNs) were used to model flow stress in Ti-6Al-4V ...
In this paper, neural network based constitutive models relating stress to deformation conditions of...
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 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...
AbstractAn artificial neural network (ANN) constitutive model is developed for high strength armor s...
An artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were developed fo...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
A number of semi-empirical models are available in literature to predict flow stress of steel during...
A number of semi-empirical models are available in literature to predict flow stress of steel during...
AbstractAn artificial neural network (ANN) constitutive model and Johnson–Cook (J–C) model were deve...
The flow behavior of CMn (Nb-Ti-V) micro alloyed steel was studied by hot compression tests in a wid...
The flow behavior of CMn (Nb-Ti-V) micro alloyed steel was studied by hot compression tests in a wid...
In this paper, neural network based constitutive models relating stress to deformation conditions of...
In the present study, artificial neural networks (ANNs) were used to model flow stress in Ti-6Al-4V ...
In this paper, neural network based constitutive models relating stress to deformation conditions of...
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 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...