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Petrov, R. H. | Madrid |
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Horsewell, Andy
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Topics
Publications (14/14 displayed)
- 2014A TEM Study on the Ti-Alloyed Grey Iron
- 2012Mechanical properties of low-density polyethylene filled by graphite nanoplateletscitations
- 2012A TEM Study on the Microstructure of Fine Flaky Graphite
- 2011Advanced 2D and 3D Electron Microscopy Analysis of Clay/PP Nanocomposites
- 20093-D Analysis of Graphite Nodules in Ductile Cast Iron Using FIB-SEM
- 2009Development of Focused Ion Beam technique for high speed steel 3D-SEM artefact fabrication
- 2008Changes in the tribological behavior of an epoxy resin by incorporating CuO nanoparticles and PTFE microparticlescitations
- 2008Ge nanoclusters in PECVD-deposited glass caused only by heat treatmentcitations
- 2007Grey-scale conversion X-ray mapping by EDS of multielement and multiphase layered microstructurescitations
- 2007Learning about materials science and technology by deconstructing modern products
- 2007Ge nanoclusters in PECVD-deposited glass after heat treating and electron irradiationcitations
- 2005Investigation on the traceability of three dimensional scanning electron microscope measurements based on the stereo-pair technique
- 2005Investigation on the traceability of three dimensional scanning electron microscope measurements based on the stereo-pair technique
- 2001Crack Growth along Interfaces in Porous Ceramic Layerscitations
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document
A TEM Study on the Ti-Alloyed Grey Iron
Abstract
The microstructure of graphite flakes in titanium alloyed cast iron is studied using electron microscopy techniques. Dual beam SEM/FIB has been used for TEM sample preparation. A TEM study has been carried out on graphite flakes in grey cast iron using selected area electron diffraction. Based on the selected area diffraction pattern analysis, crystallographic orientations are identified and compared. The orientation relationship between iron and graphite crystals at the interface is studied and discussed. It is found that graphite in the Ti-containing iron is extremely fine grained and that there is a high proportion of twins in the fine grained graphite. It appears that twinning and stacking faults are involved in the fine grained structure of the graphite. It is discussed how Ti addition affect crystal growth and may lead to formation of superfine graphite.