材料科学
分离式霍普金森压力棒
准静态过程
聚氨酯
复合材料
金属泡沫
应变率
压缩(物理)
多孔性
巴(单位)
涂层
镍
冶金
量子力学
物理
气象学
作者
Markus Felten,Michael Fries,Tomáš Fíla,Petr Zlámal,Jan Falta,Ondřej Jiroušek,Anne Jung
标识
DOI:10.1002/adem.202100872
摘要
Open‐cell metal foams are a versatile class of porous lightweight materials, which are predominantly used as kinetic energy absorbers in a wide scope of applications. Based on their bio‐inspired inhomogeneous 3D porous structure, they are capable to significantly reduce the mass of structural designs. Starting with a polyurethane (PU) template foam, the specimens in the present contribution are manufactured by an electrochemical nickel (Ni) deposition. This manufacturing process is beneficial regarding both the specimen design and the adjustment of mechanical properties correlated with the Ni‐coating thickness. Herein, the strain‐rate sensitivity of open‐cell Ni/PU hybrid metal foams is investigated by quasistatic compression tests and high‐velocity impact tests conducted with a conventional split‐Hopkinson pressure bar device.
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