Design of NiTi-based shape memory microcomposites with enhanced elastocaloric performance by a fully thermomechanical coupled phase-field model
Journal Article
·
· Materials & Design
Not Available
- Research Organization:
- Colorado School of Mines, Golden, CO (United States)
- Sponsoring Organization:
- USDOE Office of Science (SC), Basic Energy Sciences (BES)
- Grant/Contract Number:
- SC0019279
- OSTI ID:
- 1787697
- Journal Information:
- Materials & Design, Journal Name: Materials & Design Journal Issue: C Vol. 207; ISSN 0264-1275
- Publisher:
- ElsevierCopyright Statement
- Country of Publication:
- United Kingdom
- Language:
- English
Similar Records
An Asymmetric Elasto-Plastic Phase-Field Model for Shape Memory Effect, Pseudoelasticity and Thermomechanical Training in Polycrystalline Shape Memory Alloys
On the elastocaloric effect in CuAlBe shape memory alloys: A quantitative phase-field modeling approach
Micromechanical modelling on thermomechanical coupling of superelastic NiTi alloy
Journal Article
·
2020
· Acta Materialia
·
OSTI ID:1771193
On the elastocaloric effect in CuAlBe shape memory alloys: A quantitative phase-field modeling approach
Journal Article
·
2020
· Computational Materials Science
·
OSTI ID:1853008
Micromechanical modelling on thermomechanical coupling of superelastic NiTi alloy
Journal Article
·
2019
· International Journal of Mechanical Sciences
·
OSTI ID:1635986