Fracture toughness of AISI D6 tool steel as received and with heat treatment

Bibliographic Details
Main Author: Bressan J.D.*
Publication Date: 2005
Other Authors: Kohls D.*, Tramontin A.*
Format: Conference object
Language: eng
Source: Repositório Institucional da Udesc
dARK ID: ark:/33523/001300000r9n5
Download full: https://repositorio.udesc.br/handle/UDESC/11235
Summary: AISI D6 is an alternative tool steel used as die and punch in blanking, piercing and cold forming processes. Tooling service life is limited by plastic deformations, wear and rupture due to the presence of high stresses and cracks. Present work evaluates the critical stress intensity factor K1C of AISI D6 tool steel with and without heat treatment, using the three point bending test of a notched beam or SENB specimen. Initially, a pre-crack was performed by fatigue in the notched specimen assembled in a pre-cracking mechanical equipment developed in laboratory. The fracture toughness tests were carried out in SENB specimen according to the ASTM E 399 standard. The Linear Elastic Fracture Mechanics approach was used to calculate fracture toughness of D6 tool steel heat treated and the Compliance Method of Non-linear Fracture Mechanics was utilised for calculating fracture toughness of D6 tool steel as received. The material microstructures were characterised by micrographs in an optical microscope and the ruptured surface was examined by SEM photographs. The obtained fracture toughness medium values KIC were 25.9 MPam1/2 and 44 MPam1/2 respectively for AISI D6 heat treated and as received, indicating a decrease in ductility due the heat treatment. Although, yield stress has increased 40%. The different fracture mechanisms are also shown.
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spelling Fracture toughness of AISI D6 tool steel as received and with heat treatmentAISI D6 is an alternative tool steel used as die and punch in blanking, piercing and cold forming processes. Tooling service life is limited by plastic deformations, wear and rupture due to the presence of high stresses and cracks. Present work evaluates the critical stress intensity factor K1C of AISI D6 tool steel with and without heat treatment, using the three point bending test of a notched beam or SENB specimen. Initially, a pre-crack was performed by fatigue in the notched specimen assembled in a pre-cracking mechanical equipment developed in laboratory. The fracture toughness tests were carried out in SENB specimen according to the ASTM E 399 standard. The Linear Elastic Fracture Mechanics approach was used to calculate fracture toughness of D6 tool steel heat treated and the Compliance Method of Non-linear Fracture Mechanics was utilised for calculating fracture toughness of D6 tool steel as received. The material microstructures were characterised by micrographs in an optical microscope and the ruptured surface was examined by SEM photographs. The obtained fracture toughness medium values KIC were 25.9 MPam1/2 and 44 MPam1/2 respectively for AISI D6 heat treated and as received, indicating a decrease in ductility due the heat treatment. Although, yield stress has increased 40%. The different fracture mechanisms are also shown.2024-12-07T21:08:22Z2005info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/conferenceObjectp. 3950 - 3955https://repositorio.udesc.br/handle/UDESC/11235ark:/33523/001300000r9n511th International Conference on Fracture 2005, ICF115Bressan J.D.*Kohls D.*Tramontin A.*engreponame:Repositório Institucional da Udescinstname:Universidade do Estado de Santa Catarina (UDESC)instacron:UDESCinfo:eu-repo/semantics/openAccess2024-12-07T21:08:22Zoai:repositorio.udesc.br:UDESC/11235Biblioteca Digital de Teses e Dissertaçõeshttps://pergamumweb.udesc.br/biblioteca/index.phpPRIhttps://repositorio-api.udesc.br/server/oai/requestri@udesc.bropendoar:63912024-12-07T21:08:22Repositório Institucional da Udesc - Universidade do Estado de Santa Catarina (UDESC)false
dc.title.none.fl_str_mv Fracture toughness of AISI D6 tool steel as received and with heat treatment
title Fracture toughness of AISI D6 tool steel as received and with heat treatment
spellingShingle Fracture toughness of AISI D6 tool steel as received and with heat treatment
Bressan J.D.*
title_short Fracture toughness of AISI D6 tool steel as received and with heat treatment
title_full Fracture toughness of AISI D6 tool steel as received and with heat treatment
title_fullStr Fracture toughness of AISI D6 tool steel as received and with heat treatment
title_full_unstemmed Fracture toughness of AISI D6 tool steel as received and with heat treatment
title_sort Fracture toughness of AISI D6 tool steel as received and with heat treatment
author Bressan J.D.*
author_facet Bressan J.D.*
Kohls D.*
Tramontin A.*
author_role author
author2 Kohls D.*
Tramontin A.*
author2_role author
author
dc.contributor.author.fl_str_mv Bressan J.D.*
Kohls D.*
Tramontin A.*
description AISI D6 is an alternative tool steel used as die and punch in blanking, piercing and cold forming processes. Tooling service life is limited by plastic deformations, wear and rupture due to the presence of high stresses and cracks. Present work evaluates the critical stress intensity factor K1C of AISI D6 tool steel with and without heat treatment, using the three point bending test of a notched beam or SENB specimen. Initially, a pre-crack was performed by fatigue in the notched specimen assembled in a pre-cracking mechanical equipment developed in laboratory. The fracture toughness tests were carried out in SENB specimen according to the ASTM E 399 standard. The Linear Elastic Fracture Mechanics approach was used to calculate fracture toughness of D6 tool steel heat treated and the Compliance Method of Non-linear Fracture Mechanics was utilised for calculating fracture toughness of D6 tool steel as received. The material microstructures were characterised by micrographs in an optical microscope and the ruptured surface was examined by SEM photographs. The obtained fracture toughness medium values KIC were 25.9 MPam1/2 and 44 MPam1/2 respectively for AISI D6 heat treated and as received, indicating a decrease in ductility due the heat treatment. Although, yield stress has increased 40%. The different fracture mechanisms are also shown.
publishDate 2005
dc.date.none.fl_str_mv 2005
2024-12-07T21:08:22Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/conferenceObject
format conferenceObject
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dc.identifier.uri.fl_str_mv https://repositorio.udesc.br/handle/UDESC/11235
dc.identifier.dark.fl_str_mv ark:/33523/001300000r9n5
url https://repositorio.udesc.br/handle/UDESC/11235
identifier_str_mv ark:/33523/001300000r9n5
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv 11th International Conference on Fracture 2005, ICF11
5
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv p. 3950 - 3955
dc.source.none.fl_str_mv reponame:Repositório Institucional da Udesc
instname:Universidade do Estado de Santa Catarina (UDESC)
instacron:UDESC
instname_str Universidade do Estado de Santa Catarina (UDESC)
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institution UDESC
reponame_str Repositório Institucional da Udesc
collection Repositório Institucional da Udesc
repository.name.fl_str_mv Repositório Institucional da Udesc - Universidade do Estado de Santa Catarina (UDESC)
repository.mail.fl_str_mv ri@udesc.br
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