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Adolf Martens and the Research on Martensite
Transmission Electron Microscopy and Mobility of Interfaces
On the Mechanism of Martensite Nucleation
56 other sections not shown
Acta ageing amount amplitude annealing applications austempering austenite bainite behaviour composition cooling Cu-Zn-Al alloy curves decrease Delaey diffraction dislocations elastic electrical resistance electron energy experimental fatigue Figure formation fracture heating high temperature Hornbogen hot rolled Humbeeck hysteresis increase induced martensite interfaces internal friction lattice load low temperature martensite plates martensitic transformation material matrix maximum measured mechanical Metals microscopy microstructure NiTi NiTi alloys nitrogen nucleation observed obtained orientation partial Phys plane plastic deformation precipitation Proc pseudoelastic quenching retained austenite reverse transformation ribbons room temperature sample shape change shape memory actuators shape memory alloys shape memory effect shape recovery shear shows single crystal sintering specimens stabilization stacking fault energy stacking faults steels strain stress induced structure superelastic temperature range tensile stress texture thermal cycling thermobimetals thermomechanical Trans transformation temperatures transmission electron microscopy treatment TWME values variants welding wire X-ray X-ray diffraction