Coupled Thermomechanical Modeling of Small Volume FCC Metals

  • Faghihi, Danial
  • Voyiadjis, George Z.
  • Park, Taehyo
Citations

WEB OF SCIENCE

10
Citations

SCOPUS

10

초록

The mechanical and thermal behavior of small volume metallic compounds on the fast transient time are addressed in this work through developing a thermodynamically consistent nonlocal framework. In this regard, an enhanced gradient plasticity theory is coupled with the application of the micromorphic approach to the temperature variable. The yield function of the VA-FCC (Voyiadjis Abed Face Centered Cubic) model based on the concept of thermal activation energy and the dislocations interaction mechanisms including nonlinear hardening is taken into consideration in the derivation. The effect of the material microstructural interface between two materials is also incorporated in the formulation with both temperature and rate effects. In order to accurately address the strengthening and hardening mechanisms, the theory is developed based on the decomposition of the mechanical state variables into energetic and dissipative counterparts which provided the constitutive equations to have both energetic and dissipative gradient length scales for the bulk material and the interface. Moreover, the nonlocal evolution of temperature is addressed by incorporating the microstructural interaction effect in the fast transient process using two time scales in the microscopic heat equation.

키워드

size and rate effectsinterfacial energygradient plasticitygeneralized heat equationSTRAIN-GRADIENT PLASTICITYMULTIPLE NATURAL CONFIGURATIONSHEAT-TRANSFER MECHANISMSCRYSTAL PLASTICITYGRAIN-BOUNDARIESFREE-ENERGYCONSTITUTIVE RELATIONSNONUNIFORM SYSTEMSMALL-DEFORMATIONLENGTH SCALE
제목
Coupled Thermomechanical Modeling of Small Volume FCC Metals
저자
Faghihi, DanialVoyiadjis, George Z.Park, Taehyo
DOI
10.1115/1.4023771
발행일
2013-04
유형
Article
저널명
Journal of Engineering Materials and Technology, Transactions of the ASME
135
2
페이지
1 ~ 17