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6 nov 2025 -
Mechanically Recycled PLA - MLO formulations
Desconocido - 1,8 MB -
MD5: 529a9cb84c9a65b078ab3df8cb81b53d
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6 nov 2025 -
Mechanically Recycled PLA - MLO formulations
Desconocido - 6,2 MB -
MD5: c6be70fed9ccd2f1de79275e7fd76e04
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6 nov 2025 -
Mechanically Recycled PLA - MLO formulations
Hoja de cálculo MS Excel - 10,4 KB -
MD5: 4c7863471fc9d032c6b3e75957088e93
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6 nov 2025 -
Mechanically Recycled PLA - MLO formulations
Hoja de cálculo MS Excel - 9,6 KB -
MD5: 4fea43268ce0513d6412b267c43f8409
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6 nov 2025 -
Mechanically Recycled PLA - MLO formulations
Desconocido - 2,0 MB -
MD5: 59f82f5ba5f459e34317d7ce14c561d1
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6 nov 2025 -
Mechanically Recycled PLA - MLO formulations
Desconocido - 1006,0 KB -
MD5: 4019f7b8dd6f84b59ce61db1498f661d
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6 nov 2025 -
Mechanically Recycled PLA - MLO formulations
Desconocido - 43,7 KB -
MD5: 423de102df3bcb877a0cf35556071757
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5 nov 2025 - Universidad Rey Juan Carlos
SANCHEZ DE ROJAS CANDELA, CARMEN; Riquelme Aguado, Ainhoa; Rodrigo Herrero, Pilar; Torres, B.; Rams, Joaquin, 2025, "Wear behavior of additively manufactured 316L/SiCp composites with up to 60 wt% SiCp", https://doi.org/10.21950/ERV4V7, e-cienciaDatos, V1
We studied the wear behavior of DED additively manufatured 316L/SiC composites reinforced with 20-80 wt.% of SiC ceramic particles and compared with 316L stainless Steel. The microstructure and microhardness of the samples were studied, and the friction coefficient, pin and disc... |
Datos tabulares - 3,7 KB
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MS Powerpoint - 31,4 MB -
MD5: 06a0964e4ca21d3e7975796935b5a16f
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