The microstructure–property relationship is critical for parts made using the emerging additive manufacturing process where highly localized cooling rates bestow spatially varying microstructures in the material. Typically, large temperature gradients during the build stage are known to result in significant thermally induced residual stresses in parts made using the process. Such stresses are influenced by the underlying local microstructures. Given the extensive range of variations in microstructures, it is useful to have an efficient method that can detect and quantify cause and effect. In this work, an efficient workflow within the machine learning (ML) framework for establishing microstructure–thermal stress correlations is presented. ...
Powder bed fusion (PBF) is an additive manufacturing process in which finely focused thermal energy ...
Powder bed fusion (PBF) is an additive manufacturing process in which finely focused thermal energy ...
Additive manufacturing (AM) is a novel fabrication technique capable of producing highly complex par...
The study presents a Machine Learning (ML)-based framework designed to forecast the stress-strain re...
This work focuses on integrating crystal plasticity based deformation models and machine learning te...
Microstructures in steel can be understood as hierarchical structures holding information on various...
Microstructures in steel can be understood as hierarchical structures holding information on various...
In the present work, machine learning (ML) was employed to build a model, and through it, the micros...
A novel method to predict the mechanical responses of arbitrary microstructures from the deep learni...
A novel method to predict the mechanical responses of arbitrary microstructures from the deep learni...
A novel method to predict the mechanical responses of arbitrary microstructures from the deep learni...
The present work focuses on the prediction of the hot deformation behavior of thermo-mechanically pr...
Additive manufacturing (AM) is an emerging manufacturing technology that constructs complex parts th...
In this paper the application of machine learning techniques for the development of constitutive mat...
In this work we developed a microstructure database for a model alloy, i.e., Iron Chromium Alloy (Fe...
Powder bed fusion (PBF) is an additive manufacturing process in which finely focused thermal energy ...
Powder bed fusion (PBF) is an additive manufacturing process in which finely focused thermal energy ...
Additive manufacturing (AM) is a novel fabrication technique capable of producing highly complex par...
The study presents a Machine Learning (ML)-based framework designed to forecast the stress-strain re...
This work focuses on integrating crystal plasticity based deformation models and machine learning te...
Microstructures in steel can be understood as hierarchical structures holding information on various...
Microstructures in steel can be understood as hierarchical structures holding information on various...
In the present work, machine learning (ML) was employed to build a model, and through it, the micros...
A novel method to predict the mechanical responses of arbitrary microstructures from the deep learni...
A novel method to predict the mechanical responses of arbitrary microstructures from the deep learni...
A novel method to predict the mechanical responses of arbitrary microstructures from the deep learni...
The present work focuses on the prediction of the hot deformation behavior of thermo-mechanically pr...
Additive manufacturing (AM) is an emerging manufacturing technology that constructs complex parts th...
In this paper the application of machine learning techniques for the development of constitutive mat...
In this work we developed a microstructure database for a model alloy, i.e., Iron Chromium Alloy (Fe...
Powder bed fusion (PBF) is an additive manufacturing process in which finely focused thermal energy ...
Powder bed fusion (PBF) is an additive manufacturing process in which finely focused thermal energy ...
Additive manufacturing (AM) is a novel fabrication technique capable of producing highly complex par...