Caracterización tribológica y desgaste de materiales para la industria siderúrgica

The main aim of this PhD.Thesis is to contribute to the creation of a phenomenological model to predict high temperature wear of steel making industry components. This work is focused on wear of rotary piercing mandrels for seamless tube making industries. This tube making process is also known as M...

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Autor principal: Carr, Gustavo Eduardo
Otros Autores: Conde, Raúl H.
Formato: Tesis acceptedVersion Tesis doctoral
Lenguaje:Español
Publicado: Universidad Nacional de Mar del Plata. Facultad de Ingeniería; Argentina 2008
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Acceso en línea:http://rinfi.fi.mdp.edu.ar/xmlui/handle/123456789/669
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spelling I29-R182-123456789-6692023-06-08T14:16:57Z Caracterización tribológica y desgaste de materiales para la industria siderúrgica Carr, Gustavo Eduardo Conde, Raúl H. Industria metalmecanica Siderurgia Industria siderurgica Materiales Caracterización tribológica Desgaste de materiales The main aim of this PhD.Thesis is to contribute to the creation of a phenomenological model to predict high temperature wear of steel making industry components. This work is focused on wear of rotary piercing mandrels for seamless tube making industries. This tube making process is also known as Mannesmann rotary piercing. State-of-the-Art of Mannesmann rotary piercing was determined by literature revision. Given that mandrels do not only wear by material removal but also by shape loss, creation of a tribological model which could consider this fact became necessary. Laboratory scale process was analyzed for latter considering of application of its results at full scale. A laboratory scale rotary piercing mill was designed and constructed at INTEMA for use as a mandrel wear testing machine. Despite that equivalence between full scale and laboratory scale equipment could not be fully established, wear study could be performed by comparison between materials and surface treatments at the same reduced scale. The wear testing machine was equipped with an electronic module for technological data acquisition during high temperature billet piercing sessions. A mandrel profile acquisition technique, was created in order to evaluate shape loss during rotary piercing wear tests. This new technique was based on digital photography and feature recognition measuring software specially written for this purpose in Matlabrenvironment. Acquired data from piercing series was analyzed, at first using linear correlations and finally using Artificial Intelligence. This was performed by the implementation of Self Organizing Maps, a type of neural network, for finding which variables, or relations among them, could be used for quantifying mandrels’wear and factors that influence the process. A first approach of a wear predicting equation was introduced for the analysis of piercing mandrels behaviour. This Self Organizing Maps analysis method, feeded with data supplied by technological, geometrical and microstructural analysis, could be easily implemented for other test conditions not taken in this work, for instance: different roll mill warping angles, gorge diameter, mandrel initial profiles and axial settings, etc. Moreover, using the adequate variables for each case, the presented method could be implemented to full scale process analysis, as well as to different steel making industries components. Future activities and research lines starting from the present work are proposed. Fil: Carr, Gustavo Eduardo. Universidad Nacional de Mar del Plata. Facultad de Ingeniería; Argentina 2008-02-14 Thesis info:eu-repo/semantics/acceptedVersion info:ar-repo/semantics/tesis doctoral info:eu-repo/semantics/doctoralThesis application/pdf http://rinfi.fi.mdp.edu.ar/xmlui/handle/123456789/669 spa info:eu-repo/semantics/openAccess https://creativecommons.org/licenses/by/4.0/ Universidad Nacional de Mar del Plata. Facultad de Ingeniería; Argentina
institution Universidad Nacional de Mar del Plata (UNMdP)
institution_str I-29
repository_str R-182
collection RINFI - Facultad de Ingeniería (UNMdP)
language Español
topic Industria metalmecanica
Siderurgia
Industria siderurgica
Materiales
Caracterización tribológica
Desgaste de materiales
spellingShingle Industria metalmecanica
Siderurgia
Industria siderurgica
Materiales
Caracterización tribológica
Desgaste de materiales
Carr, Gustavo Eduardo
Caracterización tribológica y desgaste de materiales para la industria siderúrgica
topic_facet Industria metalmecanica
Siderurgia
Industria siderurgica
Materiales
Caracterización tribológica
Desgaste de materiales
description The main aim of this PhD.Thesis is to contribute to the creation of a phenomenological model to predict high temperature wear of steel making industry components. This work is focused on wear of rotary piercing mandrels for seamless tube making industries. This tube making process is also known as Mannesmann rotary piercing. State-of-the-Art of Mannesmann rotary piercing was determined by literature revision. Given that mandrels do not only wear by material removal but also by shape loss, creation of a tribological model which could consider this fact became necessary. Laboratory scale process was analyzed for latter considering of application of its results at full scale. A laboratory scale rotary piercing mill was designed and constructed at INTEMA for use as a mandrel wear testing machine. Despite that equivalence between full scale and laboratory scale equipment could not be fully established, wear study could be performed by comparison between materials and surface treatments at the same reduced scale. The wear testing machine was equipped with an electronic module for technological data acquisition during high temperature billet piercing sessions. A mandrel profile acquisition technique, was created in order to evaluate shape loss during rotary piercing wear tests. This new technique was based on digital photography and feature recognition measuring software specially written for this purpose in Matlabrenvironment. Acquired data from piercing series was analyzed, at first using linear correlations and finally using Artificial Intelligence. This was performed by the implementation of Self Organizing Maps, a type of neural network, for finding which variables, or relations among them, could be used for quantifying mandrels’wear and factors that influence the process. A first approach of a wear predicting equation was introduced for the analysis of piercing mandrels behaviour. This Self Organizing Maps analysis method, feeded with data supplied by technological, geometrical and microstructural analysis, could be easily implemented for other test conditions not taken in this work, for instance: different roll mill warping angles, gorge diameter, mandrel initial profiles and axial settings, etc. Moreover, using the adequate variables for each case, the presented method could be implemented to full scale process analysis, as well as to different steel making industries components. Future activities and research lines starting from the present work are proposed.
author2 Conde, Raúl H.
author_facet Conde, Raúl H.
Carr, Gustavo Eduardo
format Thesis
acceptedVersion
Tesis doctoral
Tesis doctoral
author Carr, Gustavo Eduardo
author_sort Carr, Gustavo Eduardo
title Caracterización tribológica y desgaste de materiales para la industria siderúrgica
title_short Caracterización tribológica y desgaste de materiales para la industria siderúrgica
title_full Caracterización tribológica y desgaste de materiales para la industria siderúrgica
title_fullStr Caracterización tribológica y desgaste de materiales para la industria siderúrgica
title_full_unstemmed Caracterización tribológica y desgaste de materiales para la industria siderúrgica
title_sort caracterización tribológica y desgaste de materiales para la industria siderúrgica
publisher Universidad Nacional de Mar del Plata. Facultad de Ingeniería; Argentina
publishDate 2008
url http://rinfi.fi.mdp.edu.ar/xmlui/handle/123456789/669
work_keys_str_mv AT carrgustavoeduardo caracterizaciontribologicaydesgastedematerialesparalaindustriasiderurgica
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