https://researching.investigacion.ing.uc.cl/publication/2904/edit Return to referer URL

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    • publicationAuthors
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    • privateComments
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publication

"App\Form\PublicationType"

Default Data

Property Value
Model Format same as normalized format
Normalized Format
App\Entity\Publication {#839
  -id: 2904
  -title: "Microstructure effect on sliding wear of 316L stainless steel selectively laser melted"
  -UT: "WOS:001224958400001"
  -doctype: ""
  -pages: "466-478"
  -ISSUE: "6"
  -volume: "40"
  -publishedMonth: "APR"
  -publishedYear: 2024
  -doi: "10.1177/02670836231217393"
  -ISSN: null
  -ISBN: null
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  -updatedDate: DateTime @1730084400 {#841
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  -abstract: "Due to varying thermal cycles, the resulting microstructure of metal additive manufacturing differs from the conventionally processed counterpart alloys. Since the mechanical properties depend on the microstructure, the wear resistance of components manufactured by laser powder bed fusion (LPBF) is determined by the processing parameters. This work focuses on microhardness and sliding wear of 316L stainless steel, evaluated nanoindentation and pin-on-disc, respectively, analysed through optical microscopy, scanning electron microscopy (SEM), X-ray diffraction (XRD) and glow discharge emission spectrometry (GDOES). The results show that the LPBF-processed specimens have about 40% higher microhardness and ca. 30% lower wear rate than the wrought counterpart. The enhanced sliding wear resistance is associated with the higher density of dislocations at the cellular subgrain boundaries."
  -timesCited: null
  -fundingText: "The authors are grateful for financial support from SENESCYT, FONDEQUIP EQM grant number 180081, by Agencia Nacional de Investigacion y Desarrollo (ANID), and Natural Science and Engineering Research Council of Canada."
  -journal: Proxies\__CG__\App\Entity\Journal {#1026 …}
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  -sidingId: null
  -publisher: Proxies\__CG__\App\Entity\Publisher {#1041
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    -id: 1
    -title: "International Transactions in Operational Research"
    -isoAbbrev: "Int. Trans. Oper. Res."
    -ISSN: "0969-6016"
    -EISSN: "1475-3995"
    -impactFactor: 3.1
    -percentile: 63.4
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    -publications: Doctrine\ORM\PersistentCollection {#2067 …}
    -year: 2022
     …2
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View Format same as normalized format

Submitted Data

Property Value
View Format same as normalized format
Normalized Format
App\Entity\Publication {#839
  -id: 2904
  -title: "Microstructure effect on sliding wear of 316L stainless steel selectively laser melted"
  -UT: "WOS:001224958400001"
  -doctype: ""
  -pages: "466-478"
  -ISSUE: "6"
  -volume: "40"
  -publishedMonth: "APR"
  -publishedYear: 2024
  -doi: "10.1177/02670836231217393"
  -ISSN: null
  -ISBN: null
  -keywords: Doctrine\ORM\PersistentCollection {#822 …}
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    #initialized: true
  }
  -updatedDate: DateTime @1730084400 {#841
    date: 2024-10-28 00:00:00.0 America/Santiago (-03:00)
  }
  -abstract: "Due to varying thermal cycles, the resulting microstructure of metal additive manufacturing differs from the conventionally processed counterpart alloys. Since the mechanical properties depend on the microstructure, the wear resistance of components manufactured by laser powder bed fusion (LPBF) is determined by the processing parameters. This work focuses on microhardness and sliding wear of 316L stainless steel, evaluated nanoindentation and pin-on-disc, respectively, analysed through optical microscopy, scanning electron microscopy (SEM), X-ray diffraction (XRD) and glow discharge emission spectrometry (GDOES). The results show that the LPBF-processed specimens have about 40% higher microhardness and ca. 30% lower wear rate than the wrought counterpart. The enhanced sliding wear resistance is associated with the higher density of dislocations at the cellular subgrain boundaries."
  -timesCited: null
  -fundingText: "The authors are grateful for financial support from SENESCYT, FONDEQUIP EQM grant number 180081, by Agencia Nacional de Investigacion y Desarrollo (ANID), and Natural Science and Engineering Research Council of Canada."
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  -interdisciplinary: false
  -validated: false
  -sidingId: null
  -publisher: Proxies\__CG__\App\Entity\Publisher {#1041
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    -id: 1
    -title: "International Transactions in Operational Research"
    -isoAbbrev: "Int. Trans. Oper. Res."
    -ISSN: "0969-6016"
    -EISSN: "1475-3995"
    -impactFactor: 3.1
    -percentile: 63.4
    -Q: "Q2"
    -publications: Doctrine\ORM\PersistentCollection {#2067 …}
    -year: 2022
     …2
  }
  -publicComments: null
  -privateComments: "CONSULTAR PORCENTAJE DE PARTICIPACIÓN EN PUBLCACIONES"
  -publicationType: "paper"
}
Model Format same as normalized format

Passed Options

Option Passed Value Resolved Value
data
App\Entity\Publication {#839
  -id: 2904
  -title: "Microstructure effect on sliding wear of 316L stainless steel selectively laser melted"
  -UT: "WOS:001224958400001"
  -doctype: ""
  -pages: "466-478"
  -ISSUE: "6"
  -volume: "40"
  -publishedMonth: "APR"
  -publishedYear: 2024
  -doi: "10.1177/02670836231217393"
  -ISSN: null
  -ISBN: null
  -keywords: Doctrine\ORM\PersistentCollection {#822 …}
  -keywordsPlus: Doctrine\ORM\PersistentCollection {#868 …}
  -wosRecords: Doctrine\ORM\PersistentCollection {#890 …}
  -grants: Doctrine\ORM\PersistentCollection {#926 …}
  -publicationAuthors: Doctrine\ORM\PersistentCollection {#1006
    -snapshot: [ …5]
    -owner: App\Entity\Publication {#839}
    -association: [ …15]
    -em: Doctrine\ORM\EntityManager {#315 …}
    -backRefFieldName: "publication"
    -typeClass: Symfony\Component\VarDumper\Caster\CutStub {#3593 …}
    -isDirty: false
    #collection: Doctrine\Common\Collections\ArrayCollection {#1005 …}
    #initialized: true
  }
  -updatedDate: DateTime @1730084400 {#841
    date: 2024-10-28 00:00:00.0 America/Santiago (-03:00)
  }
  -abstract: "Due to varying thermal cycles, the resulting microstructure of metal additive manufacturing differs from the conventionally processed counterpart alloys. Since the mechanical properties depend on the microstructure, the wear resistance of components manufactured by laser powder bed fusion (LPBF) is determined by the processing parameters. This work focuses on microhardness and sliding wear of 316L stainless steel, evaluated nanoindentation and pin-on-disc, respectively, analysed through optical microscopy, scanning electron microscopy (SEM), X-ray diffraction (XRD) and glow discharge emission spectrometry (GDOES). The results show that the LPBF-processed specimens have about 40% higher microhardness and ca. 30% lower wear rate than the wrought counterpart. The enhanced sliding wear resistance is associated with the higher density of dislocations at the cellular subgrain boundaries."
  -timesCited: null
  -fundingText: "The authors are grateful for financial support from SENESCYT, FONDEQUIP EQM grant number 180081, by Agencia Nacional de Investigacion y Desarrollo (ANID), and Natural Science and Engineering Research Council of Canada."
  -journal: Proxies\__CG__\App\Entity\Journal {#1026 …}
  -interdisciplinary: false
  -validated: false
  -sidingId: null
  -publisher: Proxies\__CG__\App\Entity\Publisher {#1041
    +__isInitialized__: true
    -id: 1
    -title: "International Transactions in Operational Research"
    -isoAbbrev: "Int. Trans. Oper. Res."
    -ISSN: "0969-6016"
    -EISSN: "1475-3995"
    -impactFactor: 3.1
    -percentile: 63.4
    -Q: "Q2"
    -publications: Doctrine\ORM\PersistentCollection {#2067 …}
    -year: 2022
     …2
  }
  -publicComments: null
  -privateComments: "CONSULTAR PORCENTAJE DE PARTICIPACIÓN EN PUBLCACIONES"
  -publicationType: "paper"
}
same as passed value

Resolved Options