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Modelling of stresses in polycrystalline materials - The origin and redistribution of stresses in NiTi

English, German · Paperback / Softback

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The present work deals with stress redistributions and their subsequent influence on the precipitation in NiTi based shape memory alloys. Two mechanisms which may result into the stress redistribution are selected. The calculations based on the linear elasticity theory are performed using three simple models of microstructures with increasing complexity. The obtained results clearly show that the selected mechanisms give rise to the stress redistribution in the microstructures. The interaction energy between redistributed stress field and the precipitate-matrix misfit strain is calculated. The selection of crystallographic precipitate variants as a result of the minimum interaction energy criterion is demonstrated. A comparison of the calculated results with the experimental data suggests that it is possible to explain qualitatively the selective precipitation by means of the mechanisms of stress redistributions. The concepts described here are general, and can be easily adopted for modelling other strain/stress problems in polycrystalline materials.

About the author










David Holec received his MSc degree in Condensed Matter Physics with honours from the Masaryk University in Brno, Czech Republic, in 2005, and his PhD in Materials Science from the University of Cambridge, United Kingdom, in 2008. Currently he holds a university assistant position at the University of Leoben, Austria.

Product details

Authors David Holec
Publisher LAP Lambert Academic Publishing
 
Languages English, German
Product format Paperback / Softback
Released 01.01.2010
 
EAN 9783838334455
ISBN 978-3-8383-3445-5
No. of pages 100
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Mechanics, acoustics

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