We present a micromechanics-based thermomechanical constitutive model to simulate the ultrasonic consolidation process. Model parameters are calibrated using an inverse modeling approach. A comparison of the simulated response and experimental results for uniaxial tests validate and verify the appropriateness of the proposed model. Moreover, simulation results of polycrystalline aluminum using the identified crystal plasticity based material parameters are compared qualitatively with the electron back scattering diffraction (EBSD) results reported in the literature. The validated constitutive model is then used to simulate the ultrasonic consolidation process at sub-micron scale where an effort is exerted to quantify the underlying micromec...
A dislocation density-based constitutive model has been developed and implemented into a crystal pla...
A dislocation density-based constitutive model has been developed and implemented into a crystal pla...
Ultrasonic additive manufacturing (UAM) is a solid-state fabrication process that utilizes ultrason...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
Ultrasonic consolidation process is a rapid manufacturing process used to join thin layers of metal ...
Ultrasonic consolidation process is a rapid manufacturing process used to join thin layers of metal ...
Advani, Suresh G.Gillespie Jr., John W.Ultrasonic consolidation (UC) is a solid state bonding proces...
Papaer describes a microscale thermomechanical constitutive model for ultrasonic consolidation proce...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
A new finite element based constitutive model has been developed for quantification of energy dissi...
A new finite element based constitutive model has been developed for quantification of energy dissi...
In this paper, a phenomenological crystal plasticity model is modified to account for acoustic (ultr...
In this paper, a phenomenological crystal plasticity model is modified to account for acoustic (ultr...
A dislocation density-based constitutive model has been developed and implemented into a crystal pla...
A dislocation density-based constitutive model has been developed and implemented into a crystal pla...
Ultrasonic additive manufacturing (UAM) is a solid-state fabrication process that utilizes ultrason...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
Ultrasonic consolidation process is a rapid manufacturing process used to join thin layers of metal ...
Ultrasonic consolidation process is a rapid manufacturing process used to join thin layers of metal ...
Advani, Suresh G.Gillespie Jr., John W.Ultrasonic consolidation (UC) is a solid state bonding proces...
Papaer describes a microscale thermomechanical constitutive model for ultrasonic consolidation proce...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
A dislocation density based constitutive model has been developed and implemented into a crystal pl...
A new finite element based constitutive model has been developed for quantification of energy dissi...
A new finite element based constitutive model has been developed for quantification of energy dissi...
In this paper, a phenomenological crystal plasticity model is modified to account for acoustic (ultr...
In this paper, a phenomenological crystal plasticity model is modified to account for acoustic (ultr...
A dislocation density-based constitutive model has been developed and implemented into a crystal pla...
A dislocation density-based constitutive model has been developed and implemented into a crystal pla...
Ultrasonic additive manufacturing (UAM) is a solid-state fabrication process that utilizes ultrason...