Building Thermodynamic Database for Platinum-based Superalloys

Building Thermodynamic Database for Platinum-based Superalloys

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Published: 2007

Total Pages:

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Work is being done at Mintek,the University of Leeds and the University of Bayreuth to build up a platinum-aluminium-chromium-ruthenium (Pt-Al-Cr-Ru)database for the prediction ofphase diagrams for futher alloy development by obtaining good thermodynamic descriptions of all the possible phases in the system.The available databases do not cover all of the phases,and these had to be gleaned from literature,or modelled using experimental data. Similarly,not all of the experimental data known, and where there were gaps or inconsistencies,experiments had to be undertaken.


Building a Thermodynamic Database for Platinum-Based Superalloys

Building a Thermodynamic Database for Platinum-Based Superalloys

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Publisher:

Published: 2007

Total Pages:

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Work is being done at Mintek,the University of Leeds and the University of Bayreuth to buildup a platinum-aluminium-chromium-ruthenium (Pt-Al-Cr-Ru) database for the prediction of phase diagrams for further alloy development by obtaining good themodynamic descriptions of all the possible phases in the system.Binary descriptions were combined,allowing extrapolation into the ternary systems,and experimental phase equilibrium data were compared with calulated results.Very good agreement was obtained for the Pt-Al-Ru system, as described in Part 1 of this series of papers (1). This paper (Part 11) addresses the Pt-Cr-Ru system, with equally encouraging results. The final paper in the series (Part 111,to be published in a future issue of Platinum Metals Review) will deal with on the platinum-aluminiumchromium-nickel (Pt-Al-Cr-Ni)database at the University of Bayreuth.The Pt-Al-Cr-Ru-and Pt-Al-Cr-Ni database will eventually be merged.


Building a Database for the Prediction of Phases in Pt-based Superalloys

Building a Database for the Prediction of Phases in Pt-based Superalloys

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Publisher:

Published: 2006

Total Pages:

ISBN-13:

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Work is being done at Mintek and at Leeds University to build up a Pt-Al-Cr-Ru database for the prediction of phase diagrams for further alloy development by obtaining good thermodynamic descriptions of all of the possible phases in the system.The available database do not cover all of the phases,and these had to be gleaned from literature or modelled using experimental data.Similarly,not all of the experimental data were known, and where there were gaps or inconsistencies,experiments had to be undertaken. The Cr-Pt binary phase diagram has been reassessed, and the results of thermodynamic modelling are presented. Keywords:Pt-based alloys,phase diagram calculations.


Investigation of As-cast Alloys in the Pt-Al-Cr System

Investigation of As-cast Alloys in the Pt-Al-Cr System

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Published:

Total Pages: 20

ISBN-13:

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Platinum based alloys are being developed which have microstructure that are analogous to the y/y microstructure of the nickel based superalloys. these Pt based alloys have the potential to be used for high temperature applications. The trenary Pt-Al-Cr system was investigated as part of the continued development of a thermodynamic database for the Pt-Al-Cr-Ru system.


The Superalloys

The Superalloys

Author: Roger C. Reed

Publisher: Cambridge University Press

Published: 2008-07-31

Total Pages: 363

ISBN-13: 1139458639

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Superalloys are unique high-temperature materials used in gas turbine engines, which display excellent resistance to mechanical and chemical degradation. This book introduces the metallurgical principles which have guided their development. Suitable for graduate students and researchers, it includes exercises and additional resources at www.cambridge.org/9780521859042.


Atom Probe Tomography

Atom Probe Tomography

Author: Michael K. Miller

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 247

ISBN-13: 1461542812

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The microanalytical technique of atom probe tomography (APT) permits the spatial coordinates and elemental identities of the individual atoms within a small volume to be determined with near atomic resolution. Therefore, atom probe tomography provides a technique for acquiring atomic resolution three dimensional images of the solute distribution within the microstructures of materials. This monograph is designed to provide researchers and students the necessary information to plan and experimentally conduct an atom probe tomography experiment. The techniques required to visualize and to analyze the resulting three-dimensional data are also described. The monograph is organized into chapters each covering a specific aspect of the technique. The development of this powerful microanalytical technique from the origins offield ion microscopy in 1951, through the first three-dimensional atom probe prototype built in 1986 to today's commercial state-of-the-art three dimensional atom probe is documented in chapter 1. A general introduction to atom probe tomography is also presented in chapter 1. The various methods to fabricate suitable needle-shaped specimens are presented in chapter 2. The procedure to form field ion images of the needle-shaped specimen is described in chapter 3. In addition, the appearance of microstructural features and the information that may be estimated from field ion microscopy are summarized. A brief account of the theoretical basis for processes of field ionization and field evaporation is also included.


Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports

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Published: 1982

Total Pages: 1096

ISBN-13:

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Lists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.


Phase Equilibria, Phase Diagrams and Phase Transformations

Phase Equilibria, Phase Diagrams and Phase Transformations

Author: Mats Hillert

Publisher: Cambridge University Press

Published: 2007-11-22

Total Pages: 525

ISBN-13: 1139465864

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Computational tools allow material scientists to model and analyze increasingly complicated systems to appreciate material behavior. Accurate use and interpretation however, requires a strong understanding of the thermodynamic principles that underpin phase equilibrium, transformation and state. This fully revised and updated edition covers the fundamentals of thermodynamics, with a view to modern computer applications. The theoretical basis of chemical equilibria and chemical changes is covered with an emphasis on the properties of phase diagrams. Starting with the basic principles, discussion moves to systems involving multiple phases. New chapters cover irreversible thermodynamics, extremum principles, and the thermodynamics of surfaces and interfaces. Theoretical descriptions of equilibrium conditions, the state of systems at equilibrium and the changes as equilibrium is reached, are all demonstrated graphically. With illustrative examples - many computer calculated - and worked examples, this textbook is an valuable resource for advanced undergraduates and graduate students in materials science and engineering.