Embedding of Y3Al5O12:Ce within 316L stainless steel parts by laser powder bed fusion as an efficient luminescent sensor

Transition to circular economy requires the production of sustainable and eco-designed materials that help to reduce environmental impacts of metallic components. The development of sensing layers providing luminescent tracking functionalities is a potential method for extending the service life of...

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Published inAdditive manufacturing letters Vol. 8; p. 100186
Main Authors Baslari, Christina, Maskrot, Hicham, Pacquentin, Wilfried, Nobre, Sonia Sousa, Delacroix, Timothée, Zambon, Daniel, Mahiou, Rachid
Format Journal Article
LanguageEnglish
Published Elsevier 01.02.2024
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Abstract Transition to circular economy requires the production of sustainable and eco-designed materials that help to reduce environmental impacts of metallic components. The development of sensing layers providing luminescent tracking functionalities is a potential method for extending the service life of metallic parts. In this study, incorporation of luminescent Ce3+ doped yttrium aluminum garnet (YAG:Ce) within a stainless steel 316L (SS316L) matrix has been achieved for the first time by laser powder bed fusion (L-PBF). Embedding of phosphor particles was successfully carried out on a selected area of the 3D printed sample. Despite harsh processing conditions of L-PBF, luminescent emission was detected by optical spectroscopy. Microstructure and chemical composition of the incorporation zone were investigated in order to better understand optical properties. The precipitated particles exhibit new optical features, arising from the modification of the luminescent host lattice and the intricate interactions with the metal matrix.
AbstractList Transition to circular economy requires the production of sustainable and eco-designed materials that help to reduce environmental impacts of metallic components. The development of sensing layers providing luminescent tracking functionalities is a potential method for extending the service life of metallic parts. In this study, incorporation of luminescent Ce3+ doped yttrium aluminum garnet (YAG:Ce) within a stainless steel 316L (SS316L) matrix has been achieved for the first time by laser powder bed fusion (L-PBF). Embedding of phosphor particles was successfully carried out on a selected area of the 3D printed sample. Despite harsh processing conditions of L-PBF, luminescent emission was detected by optical spectroscopy. Microstructure and chemical composition of the incorporation zone were investigated in order to better understand optical properties. The precipitated particles exhibit new optical features, arising from the modification of the luminescent host lattice and the intricate interactions with the metal matrix.
ArticleNumber 100186
Author Pacquentin, Wilfried
Zambon, Daniel
Baslari, Christina
Maskrot, Hicham
Nobre, Sonia Sousa
Delacroix, Timothée
Mahiou, Rachid
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Snippet Transition to circular economy requires the production of sustainable and eco-designed materials that help to reduce environmental impacts of metallic...
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SubjectTerms 316L stainless steel
Laser powder bed fusion
Luminescent materials
Metal additive manufacturing
Physics
Sensor materials
YAG:Ce
Title Embedding of Y3Al5O12:Ce within 316L stainless steel parts by laser powder bed fusion as an efficient luminescent sensor
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