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Published byBelinda Webb Modified over 6 years ago
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Investigation of the microstructure in the Yttrium-Tantalate-Zirconia system
Thursday, August 27, 2015
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Yttrium-Tantalate-Zirconia system
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Thermal conductivities of the system
Very low thermal conductivities (< 2 Wm-1K-1)
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Quasi-binary phase diagram
3 phases in the 30 to 60 mol % ZrO2 region?
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Transition takes place at 1475 °C for pure YTaO4
Phases of YTaO4 Transition takes place at 1475 °C for pure YTaO4
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Imaging techniques used
Transmission Electron Microscopy Scanning Electron Microscopy
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Transmission Electron Microscopy at the Center for Nanoscale Systems (CNS)
JEOL 2100 TEM
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Inside a TEM
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Requirements for TEM Sample has to be very thin (<100 nm)
Hence specific technique to prepare samples Hand polishing and ion milling Focused Ion beam
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Sample Preparation Chosen method was hand polishing and ion milling
Started from discs and cut cross section Polish down to about 100 m
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Fischione Model 200 Dimpling Grinder
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Gatan Model 691 Precision Ion Polishing System
Ion milling Trickiest part in sample preparation Sputtering of molybdenum on the sample Gatan Model 691 Precision Ion Polishing System
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Finding a recipe that works
Fischione Model 1010 Ion mill
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New equipement CNS bought Fischione Model 1050 TEM mill
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Contacting an expert Contact Rocco Cerchiara, TEM sample preparation expert from Fischione, to ask for a possible recipe for ion milling Suggested using high angles and low energy to remove molybdenum being sputtered
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Double tilt Beryllium sample holder
Ready for Imaging!!! Double tilt Beryllium sample holder
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TEM Image of 50 mol % ZrO2
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HRTEM Image of 50 mol % ZrO2
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Selected area electron diffraction of 50 mol % ZrO2
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SEM Image of 50 mol % ZrO2
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SEM Image of 50 mol % ZrO2 cross section
Probably bands seen on previous SEM image?
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Concluding remarks Finally find a good recipe for sample preparation but not enough time to complete observations!!! Bands structure in 50 mol % ZrO2 possibly due to the fact that this composition is very close to the eutectoid composition
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Any Questions?
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