Designing a Heat Treatment to Achieve Ductile Advanced High Strength Steels

Heat treatment is a way to significantly change materials properties. When presented with materials that lack certain mechanical properties, it is possible to change its chemical properties and microstructures by applying heat. This can help achieve better yield strength, ductility and toughness. Th...

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Main Author: Laarich, Abdellatif
Format: Others
Language:English
Published: Luleå tekniska universitet, Institutionen för teknikvetenskap och matematik 2020
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-79754
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spelling ndltd-UPSALLA1-oai-DiVA.org-ltu-797542020-06-30T04:21:18ZDesigning a Heat Treatment to Achieve Ductile Advanced High Strength SteelsengLaarich, AbdellatifLuleå tekniska universitet, Institutionen för teknikvetenskap och matematik2020Heat treatmentQuenching and PartitioningAustemperingQuenching and TemperingHigh Aluminum SteelStrenx 700MCDuctilityStrengthMetallurgy and Metallic MaterialsMetallurgi och metalliska materialHeat treatment is a way to significantly change materials properties. When presented with materials that lack certain mechanical properties, it is possible to change its chemical properties and microstructures by applying heat. This can help achieve better yield strength, ductility and toughness. This project discusses the effects of multiple distinct heat treatment methods for several materials in order to improve ductility and elongation without diminishing strength. The materials in question are High Aluminum Steel and Strenx 700MC steel, the first being under development and the second being a commercially available steel. These steels show promise to be used as high ductility, high strength, and 3rd generation steels. The heat treatments can change the mechanical proprieties of the base materials in order to optimize these steels for applications in vertical access solutions. The heat treatments in this project were Quenching and Partitioning (QP), Quenching and Tempering (QT), Austempering (AUST), Intercritical Heat Treatment (IHT) and other usual heat treatments such as Double normalizing (D-Norm). First, the most beneficial type of the above mentioned heat treatments was selected for each steel and series of heat treatments were performed in order to identify and optimize the best method for each steel. Then, heat treated samples underwent a series of tests to numerically quantify their properties and compare them to the existing steels in Alimak’s applications. The results show that Quenching and Partitioning is the most promising heat treatment for optimizing strength and ductility in High Aluminum Steel, with elongation values up to 19% together with yield strengths of 700 MPa. For Strenx 700MC a combination of temperature and time was found that gave an elongation of above 25% with a yield strength of 450 MPa. The explanation for the good properties was partly grain refinement and phase transformations during heat treatments. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-79754application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Heat treatment
Quenching and Partitioning
Austempering
Quenching and Tempering
High Aluminum Steel
Strenx 700MC
Ductility
Strength
Metallurgy and Metallic Materials
Metallurgi och metalliska material
spellingShingle Heat treatment
Quenching and Partitioning
Austempering
Quenching and Tempering
High Aluminum Steel
Strenx 700MC
Ductility
Strength
Metallurgy and Metallic Materials
Metallurgi och metalliska material
Laarich, Abdellatif
Designing a Heat Treatment to Achieve Ductile Advanced High Strength Steels
description Heat treatment is a way to significantly change materials properties. When presented with materials that lack certain mechanical properties, it is possible to change its chemical properties and microstructures by applying heat. This can help achieve better yield strength, ductility and toughness. This project discusses the effects of multiple distinct heat treatment methods for several materials in order to improve ductility and elongation without diminishing strength. The materials in question are High Aluminum Steel and Strenx 700MC steel, the first being under development and the second being a commercially available steel. These steels show promise to be used as high ductility, high strength, and 3rd generation steels. The heat treatments can change the mechanical proprieties of the base materials in order to optimize these steels for applications in vertical access solutions. The heat treatments in this project were Quenching and Partitioning (QP), Quenching and Tempering (QT), Austempering (AUST), Intercritical Heat Treatment (IHT) and other usual heat treatments such as Double normalizing (D-Norm). First, the most beneficial type of the above mentioned heat treatments was selected for each steel and series of heat treatments were performed in order to identify and optimize the best method for each steel. Then, heat treated samples underwent a series of tests to numerically quantify their properties and compare them to the existing steels in Alimak’s applications. The results show that Quenching and Partitioning is the most promising heat treatment for optimizing strength and ductility in High Aluminum Steel, with elongation values up to 19% together with yield strengths of 700 MPa. For Strenx 700MC a combination of temperature and time was found that gave an elongation of above 25% with a yield strength of 450 MPa. The explanation for the good properties was partly grain refinement and phase transformations during heat treatments.
author Laarich, Abdellatif
author_facet Laarich, Abdellatif
author_sort Laarich, Abdellatif
title Designing a Heat Treatment to Achieve Ductile Advanced High Strength Steels
title_short Designing a Heat Treatment to Achieve Ductile Advanced High Strength Steels
title_full Designing a Heat Treatment to Achieve Ductile Advanced High Strength Steels
title_fullStr Designing a Heat Treatment to Achieve Ductile Advanced High Strength Steels
title_full_unstemmed Designing a Heat Treatment to Achieve Ductile Advanced High Strength Steels
title_sort designing a heat treatment to achieve ductile advanced high strength steels
publisher Luleå tekniska universitet, Institutionen för teknikvetenskap och matematik
publishDate 2020
url http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-79754
work_keys_str_mv AT laarichabdellatif designingaheattreatmenttoachieveductileadvancedhighstrengthsteels
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