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Phase transformations and phase relations in Ti(sub 50)Pd(sub (50-x))TM(sub x) alloys

机译:Ti(sub 50)pd(sub(50-x))Tm(sub x)合金中的相变和相位关系

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The effect of transition metal (TM) substitution for Pd in Ti(sub 5O)Pd(sub (50-x)TM(sub x) alloys with x between 5 and 37.5 at.% and TM = V, Cr, Mn and Fe are being characterized by transmission electron microscopy and First-Principles Alloy Theory modeling. The goal is to obtain detailed structural information related to the ternary phase relations and transformations that are necessary for effective shape-memory alloy development. Thus far, the authors have found that the tend to have pseudobinary eutectoid-like configurations with a terminal TiPd and a non-close-packed long period ordered structure type crystal structure) based on the stoichiometry Ti(sub 2)PdTM. The systems exhibit a conventional martensitic transformation, as well as a new type of displacive transformation that shear-modulates B2 to produce a periodically distorted, but non-close-packed metastable product phase.

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