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Thermodynamic Assessment of the Y2o3-Yb2o3-Zro2 System (Paperback): Nathan S Jacobson Thermodynamic Assessment of the Y2o3-Yb2o3-Zro2 System (Paperback)
Nathan S Jacobson; Created by Nasa Technical Reports Server (Ntrs), et al
R362 R291 Discovery Miles 2 910 Save R71 (20%) Ships in 10 - 15 working days

Yttria-zirconia (Y2O3-ZrO2) is the most widely used of the rare earth oxide-zirconia systems. There are numerous experimental studies of the phase boundaries in this system. In this paper, we assess these data and derive parameters for the solution models in this system. There is current interest in other rare earth oxide-zirconia systems as well as systems with several rare earth oxides and zirconia, which may offer improved properties over the Y2O3-ZrO2 system. For this reason, we also assess the ytterbia-zirconia (Yb2O3-ZrO2) and Y2O3-Yb2O3-ZrO2 system.

Oxidation and Corrosion of Ceramics and Ceramic Matrix Composites (Paperback): Nasa Technical Reports Server (Ntrs), et al Oxidation and Corrosion of Ceramics and Ceramic Matrix Composites (Paperback)
Nasa Technical Reports Server (Ntrs), et al; Nathan S Jacobson
R413 Discovery Miles 4 130 Ships in 10 - 15 working days

Ceramics and ceramic matrix composites are candidates for numerous applications in high temperature environments with aggressive gases and possible corrosive deposits. There is a growing realization that high temperature oxidation and corrosion issues must be considered. There are many facets to these studies, which have been extensively covered in some recent reviews. The focus of this paper is on current research, over the past two years. In the authors' view, the most important oxidation and corrosion studies have focused on four major areas during this time frame. These are; (I) Oxidation of precursor-based ceramics; (II) Studies of the interphase material in ceramic matrix composites; (III) Water vapor interactions with ceramics, particularly in combustion environments; and (IV) Development of refractory oxide coatings for silicon-based ceramics. In this paper, we shall explore the most current work in each of these areas.

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