Skip to content
Licensed Unlicensed Requires Authentication Published by De Gruyter December 9, 2013

Recent Applications of Scanning Electron Microscopy

Neueste Anwendungen der Rasterelektronenmikroskopie
  • S. Johansson , J. Moverare and R. Peng
From the journal Practical Metallography

References / Literatur

[1] GoldsteinJ.; NewburyD.E.; JoyD.; LymanC.; EchlinP.; LifshinE.; SawyerL.; MichaelJ.: Scanning Electron Microscopy and X-ray Microanalysis. Third ed2007: Springer.Search in Google Scholar

[2] Gutierrez-UrrutiaI.; ZaeffererS.; RaabeD.: Coupling of Electron Channeling with EBSD: Toward the Quantitative Characterization of Deformation Structures in the SEM. JOM, 2013. 65(9): pp. 12291236. 10.1007/s11837-013-0678-0Search in Google Scholar

[3] DavidsonD.L.: Uses of electron chanelling in studying material deformation. International metals reviews, 1984. 29(2): pp. 7595.10.1179/imtr.1984.29.1.75Search in Google Scholar

[4] WilkinsonA.J.; AhmedJ.; RobertsS.G.: SEM based studies of crack initiation and early growth, in: TMS Annual Meeting D.L. Davidson, Editor 2002.Search in Google Scholar

[5] KanekoY.; IshikawaM.; HashimotoS.: Dislocation structures around crack tips of fatigued polycrystalline copper. Materials Science and Engineering: A, 2005. 400–401(0): pp. 418421.Search in Google Scholar

[6] KanekoY.; HashimotoS.: Electron channeling contrast imaging of dislocation structures in fatigued austenitic stainless steels. Materials Science and Engineering: A, 2005. 400–401: pp. 413417.Search in Google Scholar

[7] MoverareJ.J.; JohanssonS.; ReedR.C.: Deformation and damage mechanisms during thermal-mechanical fatigue of a single-crystal superalloy. Acta Materialia, 2009. 57(7): pp. 22662276. 10.1016/j.actamat.2009.01.027Search in Google Scholar

[8] Gutierrez-UrrutiaI.; ZaeffererS.; RaabeD.: Electron channeling contrast imaging of twins and dislocations in twinning-induced plasticity steels under controlled diffraction conditions in a scanning electron microscope. Scripta Materialia, 2009. 61: pp. 737740. 10.1016/j.scriptamat.2009.06.018Search in Google Scholar

[9] MoverareJ.J.; JohanssonS.: Damage mechanisms of a high-Cr single crystal superalloy during thermomechanical fatigue. Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 2010. 527(3): pp. 553558.10.1016/j.msea.2009.08.023Search in Google Scholar

[10] JohanssonS.; MoverareJ.; LeidermarkD.; SimonssonK.; KanesundJ.: Investigation of localized damage in single crystals subjected to thermalmechanical fatigue (TMF). Procedia Engineering, Fatigue 2010, 2010. 2(1): pp. 657666.10.1016/j.proeng.2010.03.071Search in Google Scholar

[11] DmitrievaO.; DondlP.; MüllerS.; RaabeD.; Lamination microstructure in shear deformed copper single crystals. Acta Materialia, 2009. 57(12): pp. 34393449. 10.1016/j.actamat.2009.03.035Search in Google Scholar

Received: 2013-9-29
Accepted: 2013-9-29
Published Online: 2013-12-09
Published in Print: 2013-12-16

© 2013, Carl Hanser Verlag, München

Downloaded on 18.5.2024 from https://www.degruyter.com/document/doi/10.3139/147.110272/html
Scroll to top button