3D printable low density B2+BCC refractory element based complex concentrated alloy with excellent balance of mechanical properties
hal.structure.identifier | Department of Materials Science and Engineering | |
hal.structure.identifier | Center for Agile and Adaptive Manufacturing [CAAAM] | |
dc.contributor.author | CHESETTI, Advika | |
hal.structure.identifier | Center for Agile and Adaptive Manufacturing [CAAAM] | |
hal.structure.identifier | University of Texas at Austin [Austin] | |
dc.contributor.author | BANERJEE, Sucharita | |
hal.structure.identifier | Department of Materials Science and Engineering | |
dc.contributor.author | DASARI, Sriswaroop | |
hal.structure.identifier | Department of Materials Science and Engineering | |
hal.structure.identifier | Center for Agile and Adaptive Manufacturing [CAAAM] | |
dc.contributor.author | NARTU, Mohan Sai Kiran | |
hal.structure.identifier | Department of Materials Science and Engineering | |
hal.structure.identifier | Center for Agile and Adaptive Manufacturing [CAAAM] | |
dc.contributor.author | VARAHABHATLA, S.M. | |
hal.structure.identifier | Department of Materials Science and Engineering | |
dc.contributor.author | SHARMA, Abhishek | |
hal.structure.identifier | MRL Materials Resources | |
dc.contributor.author | RAMAKRISHNAN, Abhishek | |
hal.structure.identifier | MRL Materials Resources | |
dc.contributor.author | SATKO, Daniel | |
hal.structure.identifier | Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB] | |
dc.contributor.author | GORSSE, Stephane | |
hal.structure.identifier | MRL Materials Resources | |
dc.contributor.author | SALEM, Ayman | |
hal.structure.identifier | Department of Materials Science and Engineering | |
hal.structure.identifier | Center for Agile and Adaptive Manufacturing [CAAAM] | |
dc.contributor.author | BANERJEE, Rajarshi | |
dc.date.issued | 2023-03-01 | |
dc.identifier.issn | 1359-6462 | |
dc.description.abstractEn | While complex concentrated alloys (CCAs), involving a large fraction of refractory elements, are promising candidates for structural applications, their relatively high densities, processing challenges, and low plasticity, has retarded their development. Here, we report a 3D printable lowdensity precipitation strengthened CCA of composition, Al10Nb15Ta5Ti30Zr40. The chemical homogeneity in the alloy deposited using laser bed powder fusion process is substantially better as compared to the as-cast ingot. This homogeneity is attributed to the enhanced solubility at the high temperatures experienced during laser melting, small melt pool dimensions, and the high cooling rates. The as-built CCA exhibited an excellent balance of room temperature mechanical properties, a compressive yield stress ~1400 MPa, peak stress ~1700 MPa, and plastic strain exceeding 45%. These properties can be attributed to its unique as-processed microstructure consisting of refined grains incorporating a high density of sub-grain boundaries, containing a nanoscale two-phase mixture of an ordered B2 and disordered BCC solid solution phases. | |
dc.language.iso | en | |
dc.publisher | Elsevier | |
dc.subject.en | Refractory high entropy alloys laser additive manufacturing laser powder bed fusion microstructure mechanical properties | |
dc.subject.en | Refractory high entropy alloys | |
dc.subject.en | laser additive manufacturing | |
dc.subject.en | laser powder bed fusion | |
dc.subject.en | microstructure | |
dc.subject.en | mechanical properties | |
dc.title.en | 3D printable low density B2+BCC refractory element based complex concentrated alloy with excellent balance of mechanical properties | |
dc.type | Article de revue | |
dc.identifier.doi | 10.1016/j.scriptamat.2022.115160 | |
dc.subject.hal | Chimie/Matériaux | |
bordeaux.journal | Scripta Materialia | |
bordeaux.page | 115160 (8 p.) | |
bordeaux.volume | 225 | |
bordeaux.peerReviewed | oui | |
hal.identifier | hal-04050245 | |
hal.version | 1 | |
hal.popular | non | |
hal.audience | Internationale | |
hal.origin.link | https://hal.archives-ouvertes.fr//hal-04050245v1 | |
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