Damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation

Diamond wires are high-speed, efficient and cost-effective stone cutting tools used both in quarries, to obtain large stone blocks, and in block-processing plants, to shape ornamental stones. Diamond wires are generally composed by a wire rope with evenly spaced diamond beads fixed by a polymer or r...

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Autores principales: Gomes Daniel, Araujo Andreia, Marques Rui, Patricio José, Lopez Vítor, Santos Raquel M.
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FR
Publicado: EDP Sciences 2021
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Acceso en línea:https://doaj.org/article/65fe35cc7bc544eea00bac4ba5b5313f
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spelling oai:doaj.org-article:65fe35cc7bc544eea00bac4ba5b5313f2021-12-02T17:13:46ZDamage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation2261-236X10.1051/matecconf/202134904001https://doaj.org/article/65fe35cc7bc544eea00bac4ba5b5313f2021-01-01T00:00:00Zhttps://www.matec-conferences.org/articles/matecconf/pdf/2021/18/matecconf_iceaf2021_04001.pdfhttps://doaj.org/toc/2261-236XDiamond wires are high-speed, efficient and cost-effective stone cutting tools used both in quarries, to obtain large stone blocks, and in block-processing plants, to shape ornamental stones. Diamond wires are generally composed by a wire rope with evenly spaced diamond beads fixed by a polymer or rubber coating. A numerical model of the diamond wire was developed in Abaqus™ software aiming to study the damage and failure of the steel wire during the cutting process. The model is intended to support the development of this component with enhanced durability and damage resistance. Previously in this work, a detailed three-dimensional (3D) and numerical model of a 7x7 wire rope was created, followed by experimental validation. The diamond wire model was then based on the wire rope model, with the addition of the polymer coating and the diamond beads. The developed diamond wire model presents an error smaller than 6% relative to the experimental tensile test, corresponding to a valid representation of the component. This model has practical significance for the mechanical evaluation of the diamond wire, supporting further developments, with special focus on its design and manufacturing, to achieve longer service life.Gomes DanielAraujo AndreiaMarques RuiPatricio JoséLopez VítorSantos Raquel M.EDP SciencesarticleEngineering (General). Civil engineering (General)TA1-2040ENFRMATEC Web of Conferences, Vol 349, p 04001 (2021)
institution DOAJ
collection DOAJ
language EN
FR
topic Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle Engineering (General). Civil engineering (General)
TA1-2040
Gomes Daniel
Araujo Andreia
Marques Rui
Patricio José
Lopez Vítor
Santos Raquel M.
Damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation
description Diamond wires are high-speed, efficient and cost-effective stone cutting tools used both in quarries, to obtain large stone blocks, and in block-processing plants, to shape ornamental stones. Diamond wires are generally composed by a wire rope with evenly spaced diamond beads fixed by a polymer or rubber coating. A numerical model of the diamond wire was developed in Abaqus™ software aiming to study the damage and failure of the steel wire during the cutting process. The model is intended to support the development of this component with enhanced durability and damage resistance. Previously in this work, a detailed three-dimensional (3D) and numerical model of a 7x7 wire rope was created, followed by experimental validation. The diamond wire model was then based on the wire rope model, with the addition of the polymer coating and the diamond beads. The developed diamond wire model presents an error smaller than 6% relative to the experimental tensile test, corresponding to a valid representation of the component. This model has practical significance for the mechanical evaluation of the diamond wire, supporting further developments, with special focus on its design and manufacturing, to achieve longer service life.
format article
author Gomes Daniel
Araujo Andreia
Marques Rui
Patricio José
Lopez Vítor
Santos Raquel M.
author_facet Gomes Daniel
Araujo Andreia
Marques Rui
Patricio José
Lopez Vítor
Santos Raquel M.
author_sort Gomes Daniel
title Damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation
title_short Damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation
title_full Damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation
title_fullStr Damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation
title_full_unstemmed Damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation
title_sort damage and failure evaluation of diamond wire for multi-wire sawing of hard stone blocks through modelling and numerical simulation
publisher EDP Sciences
publishDate 2021
url https://doaj.org/article/65fe35cc7bc544eea00bac4ba5b5313f
work_keys_str_mv AT gomesdaniel damageandfailureevaluationofdiamondwireformultiwiresawingofhardstoneblocksthroughmodellingandnumericalsimulation
AT araujoandreia damageandfailureevaluationofdiamondwireformultiwiresawingofhardstoneblocksthroughmodellingandnumericalsimulation
AT marquesrui damageandfailureevaluationofdiamondwireformultiwiresawingofhardstoneblocksthroughmodellingandnumericalsimulation
AT patriciojose damageandfailureevaluationofdiamondwireformultiwiresawingofhardstoneblocksthroughmodellingandnumericalsimulation
AT lopezvitor damageandfailureevaluationofdiamondwireformultiwiresawingofhardstoneblocksthroughmodellingandnumericalsimulation
AT santosraquelm damageandfailureevaluationofdiamondwireformultiwiresawingofhardstoneblocksthroughmodellingandnumericalsimulation
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