Dislocation-density-related equations were proved to be promising tools to correlate tensile plastic behaviour and microstructure in ductile irons (DIs), revealing distinct relationships between equation parameters and microstructure features in austempered ductile irons (ADI) and isothermed ductile irons (IDI). These equations resulted to be successful also in the characterization of the austempering process through the plastic behaviour analysis of tensile tests of an ADI 1050 that was quenched at different times during austempering. The equation parameters could indeed be correlated to the time window for the best ausferrite, and could predict the precipitation of the deleterious epsilon' carbides for long austempering times. In the present work the results of the tensile plastic behaviour analysis of different DIs through dislocation-density-related equations are reported. The aim of the analysis was to test the capability of these equations to assess the microstructure quality of DIs and support their industrial production.

Evaluation of Microstructure Quality in Ductile Irons Based on Tensile Behaviour Analysis

Donnini R;Angella G
2018

Abstract

Dislocation-density-related equations were proved to be promising tools to correlate tensile plastic behaviour and microstructure in ductile irons (DIs), revealing distinct relationships between equation parameters and microstructure features in austempered ductile irons (ADI) and isothermed ductile irons (IDI). These equations resulted to be successful also in the characterization of the austempering process through the plastic behaviour analysis of tensile tests of an ADI 1050 that was quenched at different times during austempering. The equation parameters could indeed be correlated to the time window for the best ausferrite, and could predict the precipitation of the deleterious epsilon' carbides for long austempering times. In the present work the results of the tensile plastic behaviour analysis of different DIs through dislocation-density-related equations are reported. The aim of the analysis was to test the capability of these equations to assess the microstructure quality of DIs and support their industrial production.
2018
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
Inglese
Attila Diószegi, Vasile Lucian Diaconu, Anders E W Jarfors
Materials Science Forum (Science and Processing of Cast Iron XI)
342
349
8
978-3-0357-1055-7
https://www.scientific.net/MSF.925/book
Trans Tech Publications
Zurich
SVIZZERA
Sì, ma tipo non specificato
Austempered ductile irons
isothermed ductile irons
tensile tests
constitutive equations
strain hardening
11th International Symposium on the Science and Processing of Cast Iron, SPCI-XI 2017; Jonkoping; Sweden; 4 September 2017 through 7 September 2017; Code 215719
4
02 Contributo in Volume::02.01 Contributo in volume (Capitolo o Saggio)
268
open
Donnini, R; Zanardi, F; Vettore, F; Angella, G
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/350118
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