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Austenitic TRIP/TWIP Steels and Steel-Zirconia Composites [electronic resource] : Design of Tough, Transformation-Strengthened Composites and Structures / edited by Horst Biermann, Christos G. Aneziris.

Contributor(s): Material type: TextTextSeries: Springer Series in Materials Science ; 298Publisher: Cham : Springer International Publishing : Imprint: Springer, 2020Edition: 1st ed. 2020Description: XXVI, 829 p. 569 illus., 284 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783030426033
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 620.11 23
LOC classification:
  • TA401-492
  • TA418.9.C57
Online resources:
Contents:
From the contents: Powder Metallurgy -- Steel Infiltration -- Steel Technology -- Electron Beam Welding -- Materials Testing -- Fracture Mechanics -- Microanalysis -- Thermodynamic Modelling -- Fluid Dynamics -- Continuum Mechanics -- Micromechanical Materials Modelling.
In: Springer eBooksSummary: This open access book presents a collection of the most up-to-date research results in the field of steel development with a focus on pioneering alloy concepts that result in previously unattainable materials properties. Specifically, it gives a detailed overview of the marriage of high-performance steels of the highest strength and form-ability with damage-tolerant zirconia ceramics by innovative manufacturing technologies, thereby yielding a new class of high-performance composite materials. This book describes how new high-alloy stainless TRIP/TWIP steels (TRIP: TRansformation-Induced Plasticity, TWIP: TWinning-induced Plasticity) are combined with zirconium dioxide ceramics in powder metallurgical routes and via melt infiltration to form novel TRIP-matrix composites. This work also provides a timely perspective on new compact and damage-tolerant composite materials, filigree light-weight structures as well as gradient materials, and a close understanding of the mechanisms of the phase transformations. With a detailed application analysis of state-of-the-art methods in spatial and temporal high-resolution structural analysis, in combination with advanced simulation and modelling, this edited volume is ideal for researchers and engineers working in modern steel development, as well as for graduate students of metallurgy and materials science and engineering.
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From the contents: Powder Metallurgy -- Steel Infiltration -- Steel Technology -- Electron Beam Welding -- Materials Testing -- Fracture Mechanics -- Microanalysis -- Thermodynamic Modelling -- Fluid Dynamics -- Continuum Mechanics -- Micromechanical Materials Modelling.

Open Access

This open access book presents a collection of the most up-to-date research results in the field of steel development with a focus on pioneering alloy concepts that result in previously unattainable materials properties. Specifically, it gives a detailed overview of the marriage of high-performance steels of the highest strength and form-ability with damage-tolerant zirconia ceramics by innovative manufacturing technologies, thereby yielding a new class of high-performance composite materials. This book describes how new high-alloy stainless TRIP/TWIP steels (TRIP: TRansformation-Induced Plasticity, TWIP: TWinning-induced Plasticity) are combined with zirconium dioxide ceramics in powder metallurgical routes and via melt infiltration to form novel TRIP-matrix composites. This work also provides a timely perspective on new compact and damage-tolerant composite materials, filigree light-weight structures as well as gradient materials, and a close understanding of the mechanisms of the phase transformations. With a detailed application analysis of state-of-the-art methods in spatial and temporal high-resolution structural analysis, in combination with advanced simulation and modelling, this edited volume is ideal for researchers and engineers working in modern steel development, as well as for graduate students of metallurgy and materials science and engineering.

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