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Titlebook: Microstructure and Texture in Steels; and Other Materials Arunansu Haldar,Satyam Suwas,Debashish Bhattacharj Conference proceedings 2009 Sp

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Structure and Strength of IF Steel After Large Strain Deformationnding (ARB) and (iii) martensitic transformation followed by cold rolling. The microstructure refines with increasing strain without saturation to a value of about 100 nm at an equivalent strain (ε.) of 8, which is the maximum strain investigated. At all strains a microscopic analysis by transmissio
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The Coming of Grain Boundary Engineering in the 21st Centuryly 1980s. It is shown that the grain boundary microstructure which can be quantitatively described by newly introduced microstructural parameters, i.e. the grain boundary character distribution (GBCD) and the grain boundary connectivity, can bridge the gap between structure-dependent properties of i
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Texture Development in Low Carbon Sheet Steels for Automotive Applicationive application was investigated using EBSD technique. The recrystallization texture at the early stage of recrystallization was very similar to that at the final stage in all three steels. A strong α-fiber texture with {112}<110> peak and weaker γ-fiber texture with {111}<110> peak were developed d
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Effects of Microalloying in Multi Phase Steels for Car Body Manufacturegth steels (AHSS). Microalloying elements are characterised by small additions < 0.1 mass% and their ability to form carbides or nitrides. They can increase strength by grain refinement and precipitation hardening, retard or accelerate transformations and affect the diffusion kinetics. Thus, by thei
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