Stress-induced phase transformations studied by in-situ transmission electron microscopy
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
http://stacks.iop.org/1742-6596/240/i=1/a=012002/pdf
Reference22 articles.
1. Strain Field Observation and Lattice Stability at the Tip of Thermoelastic CuZnAl Martensite Plates
2. In situ transmission electron microscopy-investigations on the strain-induced B19′-phase in NiTi shape memory alloys structured by focused ion beam
3. “In situ” and “Post-mortem” TEM study of the super-elastic effect in Cu–Al–Ni shape memory alloys
4. Martensite nucleation on dislocations in Cu–Al–Ni shape memory alloys
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1. An overview of interface-dominated deformation mechanisms in metallic nanocomposites elucidated using in situ straining in a TEM;Journal of Materials Research;2019-03-07
2. Size effect and scaling power-law for superelasticity in shape-memory alloys at the nanoscale;Nature Nanotechnology;2017-05-29
3. Superelasticity and shape memory at nano-scale: Size effects on the martensitic transformation;Journal of Alloys and Compounds;2013-11
4. Thermomechanical behavior at the nanoscale and size effects in shape memory alloys;Journal of Materials Research;2011-10-10
5. Quantitative analysis of stress-induced martensites by in situ transmission electron microscopy superelastic tests in Cu–Al–Ni shape memory alloys;Acta Materialia;2010-10
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