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Francesco Bertolini

Polytechnic University of Milan

Piazza Leonardo da Vinci

Milan, 20100

Italy

SCHOLARLY PAPERS

1

DOWNLOADS

31

TOTAL CITATIONS

0

Scholarly Papers (1)

Alumina-Based Ipcs by Binder Jetting: Effects of Powder Multimodal Distributions on Porous Preforms Formation and Copper-Infiltrated Composite Performance

Number of pages: 31 Posted: 13 Jun 2025
Polytechnic University of Milan, Polytechnic University of Milan, Polytechnic University of Milan, affiliation not provided to SSRN, National Research Council (CNR) - Institute of Science, Technology and Sustainability for Ceramics (ISSMC) and Polytechnic of Milan
Downloads 15 (1,559,710)

Abstract:

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Binder Jetting, Interpenetrating Phase Composites, Alumina Porous Preforms, Powder Size Distribution, Copper Oxides, CALPHAD Modelling, Wear Resistance

Alumina-Based Ipcs by Binder Jetting: Effects of Powder Multimodal Distributions on Porous Preforms Formation and Copper-Infiltrated Composite Performance

Number of pages: 31 Posted: 20 Jun 2025
Polytechnic University of Milan, Polytechnic University of Milan, Polytechnic University of Milan, affiliation not provided to SSRN, National Research Council (CNR) - Institute of Science, Technology and Sustainability for Ceramics (ISSMC) and Polytechnic of Milan
Downloads 8 (1,621,812)

Abstract:

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Binder Jetting, Interpenetrating Phase Composites, Alumina Porous Preforms, Powder Size Distribution, Copper Oxides, wear resistance

Alumina-Based Ipcs by Binder Jetting: Effects of Powder Multimodal Distributions on Porous Preforms Formation and Copper-Infiltrated Composite Performance

Number of pages: 31 Posted: 05 Jul 2025
Polytechnic University of Milan, Polytechnic University of Milan, Polytechnic University of Milan, affiliation not provided to SSRN, National Research Council (CNR) - Institute of Science, Technology and Sustainability for Ceramics (ISSMC) and Polytechnic of Milan
Downloads 8 (1,621,812)

Abstract:

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Binder Jetting, Interpenetrating Phase Composites, Alumina Porous Preforms, Powder Size Distribution, Copper Oxides, Wear resistance, CALPHAD Modelling