STABILITY OF METASTABLE AUSTEN

STABILITY OF METASTABLE AUSTEN
Author: Binbin He
Publisher: Open Dissertation Press
Total Pages: 142
Release: 2017-01-26
Genre: Technology & Engineering
ISBN: 9781361039465

This dissertation, "The Stability of Metastable Austenite Grains in Advanced High Strength Steels" by Binbin, He, 何斌斌, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: The transformation of the austenite to the martensite provides the transformation-induced plasticity (TRIP) effect which can contribute to the high work hardening rate and the good mechanical properties of 3rd advanced high strength steels (AHSS). The high strength offered by AHSS can result in thinner components while providing the same or higher safety standard, leading to a lighter vehicle. The present thesis is aimed to study the stability of the individual metastable austenite grains in AHSSs. Firstly, it is studied by the nanoindentation technique. Several pop-ins are found in the corresponding load-displacement curves. The first pop-in is induced by the nucleation of dislocations. The second pop-in is due to the martensitic transformation. Therefore, the load at the second pop-in is the critical load to trigger the transformation of metastable austenite to martensite. The critical load increases with the increase of Mn content of the individual austenite grains. Different to the well-known factors affecting the stability of retained austenite grains, such as the austenite chemical concentration, grain size and morphology, the present thesis investigates the effect of free surface by using the focused ion beam (FIB) milling. It is found that the retained austenite grains transform to martensite automatically once a free surface is introduced in the retained austenite grains. This is ascribed to the reduction of the martensite nucleation energy barrier by introducing a new free surface. The present thesis demonstrates the importance of mechanical stability of austenite grains on the tensile properties of a medium Mn steel. It is found that the tailored mechanical stability of austenite grains is optimal for the tensile properties. The austenite grains with different grain size and C content are produced in a single steel. The large austenite grains with low C content have a lower mechanical stability, which transform to martensite and provide TRIP effect at small strain. The austenite grains with high C content have higher mechanical stability so that they do not transform to martensite but provide twinning-induced plasticity (TWIP) effect in the medium strain regime till fracture. Some of the twinned austenite grains provide the martensite nucleation site and offer TRIP effect in the large strain regime up to fracture. Since fine ferritic phases are the intrinsic components in the 3rd AHSS, the present thesis investigates their mechanical behavior by the nanoindentation technique. The lath martensite has the higher nanohardness than bainite and ferrite due to its high pre-existing dislocation density, high carbon content and carbide precipitation. The investigation on the as quenched lath martensite reveals that the small martensite block has a higher nanohardness than the large martensite block. Therefore, the as-quenched martensite may be considered as a composite material with the small but strong martensite blocks embedded in the large but soft martensite blocks, which provides an important information for the micromechanical modelling of martensitic steel. DOI: 10.5353/th_b5610933 Subjects: Austenite Steel, High strength

Nano-Engineering of High Strength Steels

Nano-Engineering of High Strength Steels
Author: Wenwen Song
Publisher: Springer Nature
Total Pages: 194
Release: 2024-01-03
Genre: Technology & Engineering
ISBN: 3031429672

This book offers new insights into the process of adjusting nanostructures in high-strength steels to achieve enhanced mechanical properties. It summarizes the state-of-the-art nanoengineering approaches, such as precipitation engineering, interface engineering, and short-range ordering engineering. The book explores the nanostructure-process-property relationships in various high-strength steels, including TRIP/TWIP/MBIP in high-Mn steels (HMnS), medium-Mn steels (MMnS), bearing steels, tool steels, and more. The author investigates a novel approach to control the phase transformation process during deformation and/or thermal treatment in steels, employing both experimental and theoretical tools.

Creation of High-Strength Structures and Joints

Creation of High-Strength Structures and Joints
Author: Heinz Palkowski
Publisher: Trans Tech Publications Ltd
Total Pages: 470
Release: 2010-10-19
Genre: Technology & Engineering
ISBN: 3038133957

Volume is indexed by Thomson Reuters BCI (WoS). This work presents the results of the initial stage of research of some sub-projects of the Collaborative Research Centre SFB 675, “Creation of High-Strength Structures and Joints by Setting up Local Material Properties”, set up in 2006 by the German Research Foundation (DFG). This Collaborative Research Centre is the result of cooperation between the research institutes of Clausthal University of Technology and Leibniz Universität, Hanover. The purpose of SFB 675 is to develop materials and manufacturing processes for high-strength structures, having graduated and locally engineered properties, by exploiting material, physical and/or geometrical effects. The incorporation of locally altered material properties, tailored to handle the strains expected to be encountered during use, lead to increases in the efficiency of the whole structure. This book offers an interesting overview of this intriguing topic.