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Titlebook: Deformation Processes in TRIP/TWIP Steels; In-Situ Characteriza Anja Weidner Book 2020 Springer Nature Switzerland AG 2020 In-Situ Characte

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https://doi.org/10.1007/978-94-011-2294-8steels for improving knowledge on deformation processes and related complex microstructures. The chapter provides a motivation for the application of complementary in situ characterization techniques such as in situ deformation in scanning electron microscope, digital image correlation, acoustic emi
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https://doi.org/10.1007/978-94-011-2294-8and the temporal evolution of deformation processes. The chapter is divided into four parts regarding (i) general remarks, (ii) in situ imaging techniques, (iii) in situ acoustic emission measurements and (iv) in situ full-field measurement techniques. The part of in situ imaging techniques is divid
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A. S. Markov,V. A. Romanov,N. B. Shaykhongroup of low-carbon, high-alloy austenitic CrMnNi TRIP/TWIP steels. This chapter focuses on a comprehensive description of both the mechanical behaviour and the microstructural evolution of these steels. The results on mechanical behaviour are divided into (i) uniaxial monotonic loading, (ii) uniaxi
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A. S. Markov,V. A. Romanov,N. B. Shaykhonterization techniques introduced in Chap. . in terms of three case studies: (i) the microscopic strain localizations during plastic deformation, (ii) the temporal evolution of deformation processes and (iii) the macroscopic strain localization during plastic deformation. The part on microscopic stra
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https://doi.org/10.1007/978-94-017-1255-2itu SEM testing in combination with digital image correlation, (ii) in situ acoustic emission measurements, and (iii) fully-coupled full-field measurements using thermography and digital image correlation. It is shown that the application of these techniques facilitates the investigation of both the
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