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Showing 1 to 3 of 3 for “"Effective Temperature Model"”.

  1. Severe plastic deformation in highly immiscible copper alloys: self-organization

    … bulk nanostructured materials. Existing models like the “Driven System Model” and “Effective Temperature Model” can explain existing experimental results for alloys systems with low to moderate heat of mixing, such as Cu-Ag, under SPD. For systems with high heats of mixing, however, e.g. …

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  2. Atomistic simulations of driven alloys: a study of effective temperature models for low and high temperature applications

    … that evolves in driven alloys has been the effective temperature model (ETM) which posits that the non-equilibrium phases formed during processing will correspond to the equilibrium phase at a different, typically higher, effective temperature different from the ambient one. The underlying …

    uiuc Repository record for Atomistic simulations of driven alloys: a study of effective temperature models for low and high temperature applications (opens in a new tab)

  3. Self-organization in immiscible alloy systems under irradiation and severe plastic deformation

    … In addition, nuclear reactors are kept at high temperatures in order to generate power, which can cause other deleterious effects on a material such as creep and grain coarsening. For severe plastic deformation processing of alloys, such as high energy milling, a large amount of energy is …

    uiuc Repository record for Self-organization in immiscible alloy systems under irradiation and severe plastic deformation (opens in a new tab)