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In this thesis Christian Sohar describes his investigation into the gigacycle fatigue behavior of tool steels. In an interdisciplinary approach he uses knowledge and methods from a wide variety of disciplines including materials science, metallurgy, chemistry, physics and mechanical engineering. Christian gives a general introduction into steel tools and fatigue in materials. Later he extensively discusses the experimental techniques and results. Indeed it is the detail of the content in this thesis which makes it an invaluable resource for students entering the field and scientists working in related disciplines. Overall, the thesis helps us understand more about the mechanical behavior of metallic materials with complex microstructure and high hardness.
This interdisciplinary approach to analyzing manufactured tool steels in the gigacycle range provides invaluable detail on fatigue behavior. The book deploys techniques from materials science, metallurgy, chemistry, physics and mechanical engineering.
Introduction.- Experimental.- Results and Discussion.- Summary and Outlook.- List of Figures.- List of Tables.- References.Dipl.-Ing. Dr.techn. Christian Rudolf SoharNominated by the Vienna University of Technology for a Springer Theses Prize
Presents an interdisciplinary approach to the investigation of manufactured tool steels in the gigacycle range
Provides an understanding of the mechanical behaviours of metallic materials with complex microstructure and high hardness
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