Processing of complex-shaped collimators made via binder jet additive manufacturing of B4C and pressureless melt infiltration of Al
Обработка колиматоров сложной формы, изготовленных методом селективной печати связующим из B4C и бездавлениемного проникновения расплава Al
2019-06-20
SCID: 54.1/ccx7qk6e
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Al alloysB4C (boron carbide)binder jet additive manufacturingbinder jettingboron carbide-aluminum metal matrix compositescollimator geometriesneutron-absorbing cross sectionpressureless melt infiltration
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Abstract (AI)
Complex collimator geometries are desired for custom neutron scattering applications. Boron carbide (B4C) is a suitable candidate collimator material because its high boron content results in a large neutron-absorbing cross section and it can be safely processed with powders and subsequent melt infiltrations. High-density collimator geometries of boron carbide-aluminum metal matrix composites were fabricated using binder jet additive manufacturing followed by pressureless melt infiltration with Al alloys. Infiltration of three different Al alloys was demonstrated and the effects of processing time on one alloy were analyzed. During processing, additional reactant phases were produced, and the resulting microstructure was analyzed. Collimator samples produced had high densities and hardness as well as favorable neutron scattering results.
Key Findings
1
High-density boron carbide–aluminum metal matrix composite collimators were fabricated using binder jet additive manufacturing followed by pressureless melt infiltration with Al alloys.
2
Pressureless melt infiltration was successfully demonstrated with three different aluminum alloys for infiltrating B4C printed parts.
3
Processing time effects for one aluminum alloy were analyzed, showing processing parameters influence microstructure via formation of additional reaction phases.
4
Resulting collimator samples exhibited high density, increased hardness, and favorable neutron scattering performance.
Research Object
Complex-shaped boron carbide (B4C) collimators fabricated by binder jet additive manufacturing and pressureless aluminum melt infiltration
Research Subject
Fabrication and resulting microstructural, densification, mechanical (hardness) and neutron-scattering performance of B4C–Al metal matrix composite collimators produced by binder jetting and pressureless Al infiltration, including effects of alloy choice and processing time and formation of reaction phases
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2019-06-20
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