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Ultralight Metallic Microlattices

  作者 Schaedler, TA; Jacobsen, AJ; Torrents, A; Sorensen, AE; Lian, J; Greer, JR; Valdevit, L; Carter, WB  
  选自 期刊  Science;  卷期  2011年334-6058;  页码  962-965  
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[摘要]Ultralight (<10 milligrams per cubic centimeter) cellular materials are desirable for thermal insulation; battery electrodes; catalyst supports; and acoustic, vibration, or shock energy damping. We present ultralight materials based on periodic hollow-tube microlattices. These materials are fabricated by starting with a template formed by self-propagating photopolymer waveguide prototyping, coating the template by electroless nickel plating, and subsequently etching away the template. The resulting metallic microlattices exhibit densities rho >= 0.9 milligram per cubic centimeter, complete recovery after compression exceeding 50% strain, and energy absorption similar to elastomers. Young's modulus E scales with density as E similar to rho(2), in contrast to the E similar to rho(3) scaling observed for ultralight aerogels and carbon nanotube foams with stochastic architecture. We attribute these properties to structural hierarchy at the nanometer, micrometer, and millimeter scales.

 
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