First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys
Nickel based superalloys have superior high temperature mechanical strength, corrosion and creep resistance in harsh environments and found applications in the hot sections as turbine blades and turbine discs in jet engines and gas generator turbines in the aerospace and energy industries. The effic...
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ndltd-unt.edu-info-ark-67531-metadc1495712020-07-15T07:09:31Z First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys Chaudhari, Mrunalkumar Gamma prime phase ab initio site substitution behavior interaction energy Nickel based superalloys have superior high temperature mechanical strength, corrosion and creep resistance in harsh environments and found applications in the hot sections as turbine blades and turbine discs in jet engines and gas generator turbines in the aerospace and energy industries. The efficiency of these turbine engines depends on the turbine inlet temperature, which is determined by the high temperature strength and behavior of these superalloys. The microstructure of nickel based superalloys usually contains coherently precipitated gamma prime (?) Ni3Al phase within the random solid solution of the gamma () matrix, with the ? phase being the strengthening phase of the superalloys. How the alloying elements partition into the and ? phases and especially in the site occupancy behaviors in the strengthening ? phases play a critical role in their high temperature mechanical behaviors. The goal of this dissertation is to study the site substitution behavior of the major alloying elements including Cr, Co and Ti through first principles based calculations. Site substitution energies have been calculated using the anti-site formation, the standard defect formation formalism, and the vacancy formation based formalism. Elements such as Cr and Ti were found to show strong preference for Al sublattice, whereas Co was found to have a compositionally dependent site preference. In addition, the interaction energies between Cr-Cr, Co-Co, Ti-Ti and Cr-Co atoms have also been determined. Along with the charge transfer, chemical bonding and alloy chemistry associated with the substitutions has been investigated by examining the charge density distributions and electronic density of states to explain the chemical nature of the site substitution. Results show that Cr and Co atoms prefer to be close by on either Al sublattice or on a Ni-Al mixed lattice, suggesting a potential tendency of Cr and Co segregation in the ? phase. University of North Texas Du, Jincheng Banerjee, Rajarshi Wang, Zhiqiang Brostow, Witold, 1934- Dahotre, Narendra 2012-08 Thesis or Dissertation Text https://digital.library.unt.edu/ark:/67531/metadc149571/ ark: ark:/67531/metadc149571 English Public Chaudhari, Mrunalkumar Copyright Copyright is held by the author, unless otherwise noted. All rights Reserved. |
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Gamma prime phase ab initio site substitution behavior interaction energy |
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Gamma prime phase ab initio site substitution behavior interaction energy Chaudhari, Mrunalkumar First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys |
description |
Nickel based superalloys have superior high temperature mechanical strength, corrosion and creep resistance in harsh environments and found applications in the hot sections as turbine blades and turbine discs in jet engines and gas generator turbines in the aerospace and energy industries. The efficiency of these turbine engines depends on the turbine inlet temperature, which is determined by the high temperature strength and behavior of these superalloys. The microstructure of nickel based superalloys usually contains coherently precipitated gamma prime (?) Ni3Al phase within the random solid solution of the gamma () matrix, with the ? phase being the strengthening phase of the superalloys. How the alloying elements partition into the and ? phases and especially in the site occupancy behaviors in the strengthening ? phases play a critical role in their high temperature mechanical behaviors. The goal of this dissertation is to study the site substitution behavior of the major alloying elements including Cr, Co and Ti through first principles based calculations. Site substitution energies have been calculated using the anti-site formation, the standard defect formation formalism, and the vacancy formation based formalism. Elements such as Cr and Ti were found to show strong preference for Al sublattice, whereas Co was found to have a compositionally dependent site preference. In addition, the interaction energies between Cr-Cr, Co-Co, Ti-Ti and Cr-Co atoms have also been determined. Along with the charge transfer, chemical bonding and alloy chemistry associated with the substitutions has been investigated by examining the charge density distributions and electronic density of states to explain the chemical nature of the site substitution. Results show that Cr and Co atoms prefer to be close by on either Al sublattice or on a Ni-Al mixed lattice, suggesting a potential tendency of Cr and Co segregation in the ? phase. |
author2 |
Du, Jincheng |
author_facet |
Du, Jincheng Chaudhari, Mrunalkumar |
author |
Chaudhari, Mrunalkumar |
author_sort |
Chaudhari, Mrunalkumar |
title |
First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys |
title_short |
First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys |
title_full |
First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys |
title_fullStr |
First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys |
title_full_unstemmed |
First Principles Calculations of the Site Substitution Behavior in Gamma Prime Phase in Nickel Based Superalloys |
title_sort |
first principles calculations of the site substitution behavior in gamma prime phase in nickel based superalloys |
publisher |
University of North Texas |
publishDate |
2012 |
url |
https://digital.library.unt.edu/ark:/67531/metadc149571/ |
work_keys_str_mv |
AT chaudharimrunalkumar firstprinciplescalculationsofthesitesubstitutionbehavioringammaprimephaseinnickelbasedsuperalloys |
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1719328050338856960 |