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Pseudoelasticity
Thermomechanical Model for Niti-Based Shape Memory Alloys Including R-Phase and Material Anisotropy Under Multi-Axial Loadings
Arxiv:1903.02187V1 [Cond-Mat.Mtrl-Sci] 6 Mar 2019 Phase-field Theory Based Models, Crystal-Plasticity Theory Based Models, and Classical J2-flow Theory Based Models
UC San Diego UC San Diego Electronic Theses and Dissertations
Elastocaloric Effect and Superelastic Stability in Ni–Mn–In–Co
Advancing Caloric Materials for Efficient Cooling: Key Scientific and Device-Related Materials Challenges for Impact
Design, Simulation and Experimental Study of Shape Memory Alloy and Micro-Motor Activated High Pressure Optical Cell for Bio-Physical Studies Oliver Hongchun Xie Prof
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