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Experimental Investigation of Phase Transformations in Steel Using X-Ray and Neutron Diffraction
by
Xu, Pingguang
, Harjo, Stefanus
, Tomota, Yo
, Wang, Yanxu
, Morooka, Satoshi
, Gong, Wu
in
Alloying elements
/ Austenite
/ Bainite
/ Carbon
/ Crystal defects
/ Decomposition
/ Deformation effects
/ Dislocations
/ in situ measurement
/ Iron compounds
/ lattice parameter
/ Lattice parameters
/ Lattice vacancies
/ Martensite
/ Martensitic transformations
/ Microstructure
/ Neutron diffraction
/ Neutrons
/ Oxidation
/ Pearlite
/ phase transformation
/ Phase transitions
/ Plastic deformation
/ Residual stress
/ Scanning electron microscopy
/ Steel
/ steels
/ Temperature
/ X-ray diffraction
/ X-rays
2025
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Experimental Investigation of Phase Transformations in Steel Using X-Ray and Neutron Diffraction
by
Xu, Pingguang
, Harjo, Stefanus
, Tomota, Yo
, Wang, Yanxu
, Morooka, Satoshi
, Gong, Wu
in
Alloying elements
/ Austenite
/ Bainite
/ Carbon
/ Crystal defects
/ Decomposition
/ Deformation effects
/ Dislocations
/ in situ measurement
/ Iron compounds
/ lattice parameter
/ Lattice parameters
/ Lattice vacancies
/ Martensite
/ Martensitic transformations
/ Microstructure
/ Neutron diffraction
/ Neutrons
/ Oxidation
/ Pearlite
/ phase transformation
/ Phase transitions
/ Plastic deformation
/ Residual stress
/ Scanning electron microscopy
/ Steel
/ steels
/ Temperature
/ X-ray diffraction
/ X-rays
2025
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Experimental Investigation of Phase Transformations in Steel Using X-Ray and Neutron Diffraction
by
Xu, Pingguang
, Harjo, Stefanus
, Tomota, Yo
, Wang, Yanxu
, Morooka, Satoshi
, Gong, Wu
in
Alloying elements
/ Austenite
/ Bainite
/ Carbon
/ Crystal defects
/ Decomposition
/ Deformation effects
/ Dislocations
/ in situ measurement
/ Iron compounds
/ lattice parameter
/ Lattice parameters
/ Lattice vacancies
/ Martensite
/ Martensitic transformations
/ Microstructure
/ Neutron diffraction
/ Neutrons
/ Oxidation
/ Pearlite
/ phase transformation
/ Phase transitions
/ Plastic deformation
/ Residual stress
/ Scanning electron microscopy
/ Steel
/ steels
/ Temperature
/ X-ray diffraction
/ X-rays
2025
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Experimental Investigation of Phase Transformations in Steel Using X-Ray and Neutron Diffraction
Journal Article
Experimental Investigation of Phase Transformations in Steel Using X-Ray and Neutron Diffraction
2025
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Overview
The lattice parameters of both the product phase and the matrix phase have determined using in situ X-ray and neutron diffraction measurements during forward and reverse transformations in steels. The lattice parameters are well known to be influenced by various factors, including temperature, internal stresses induced by transformation strains, partitioning of alloying elements, crystal defects, and magnetic strains. Therefore, it is crucial to accurately disentangle the contributions of these factors to the observed changes in lattice parameters. This review examines the evaluation of internal strain (stress) associated with ferrite, pearlite, bainite, martensite, and reverse austenite transformations, with a particular emphasis on the distinction between diffusional and displacive transformations. Additionally, the effects of plastic deformation of austenite on the bainite or martensite transformation are discussed. In this context, the roles of dislocations and vacancies are highlighted as key areas for further investigation.
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