作者
A Torrents, TA Schaedler, AJ Jacobsen, WB Carter, L Valdevit
发表日期
2012/5/1
期刊
Acta Materialia
卷号
60
期号
8
页码范围
3511-3523
出版商
Pergamon
简介
Novel nickel-based microlattice materials with structural hierarchy spanning three different length scales (nm, μm, mm) are characterized microstructurally and mechanically. These materials are produced by plating a sacrificial template obtained by self-propagating photopolymer waveguide prototyping. Ni–P films with a thickness of 120nm to 3μm are deposited by electroless plating, whereas thicker films (5–26μm) are obtained by subsequent electrodeposition of a pure Ni layer. This results in cellular materials spanning three orders of magnitude in relative density, from 0.01% to 8.5%. The thin electroless Ni–P films have ultra-fine grain size (7nm) and a yield strength of ∼2.5GPa, whereas the thicker electrodeposited Ni films exhibit a much broader distribution with average grain size of 116nm and strong (100) texture in the plating direction, resulting in a yield strength of ∼1GPa. Uniaxial compression experiments …
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