Phase transformation strengthening of high-temperature superalloys

نویسندگان

  • T. M. Smith
  • B. D. Esser
  • N. Antolin
  • A. Carlsson
  • R. E. A. Williams
  • A. Wessman
  • T. Hanlon
  • H. L. Fraser
  • W. Windl
  • D. W. McComb
  • M. J. Mills
چکیده

Decades of research has been focused on improving the high-temperature properties of nickel-based superalloys, an essential class of materials used in the hot section of jet turbine engines, allowing increased engine efficiency and reduced CO2 emissions. Here we introduce a new 'phase-transformation strengthening' mechanism that resists high-temperature creep deformation in nickel-based superalloys, where specific alloying elements inhibit the deleterious deformation mode of nanotwinning at temperatures above 700 °C. Ultra-high-resolution structure and composition analysis via scanning transmission electron microscopy, combined with density functional theory calculations, reveals that a superalloy with higher concentrations of the elements titanium, tantalum and niobium encourage a shear-induced solid-state transformation from the γ' to η phase along stacking faults in γ' precipitates, which would normally be the precursors of deformation twins. This nanoscale η phase creates a low-energy structure that inhibits thickening of stacking faults into twins, leading to significant improvement in creep properties.

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عنوان ژورنال:

دوره 7  شماره 

صفحات  -

تاریخ انتشار 2016