Solid State Porous Metal Production: A Review of the Capabilities, Characteristics, and Challenges

被引:89
作者
Atwater, Mark A. [1 ]
Guevara, Laura N. [1 ]
Darling, Kris A. [2 ]
Tschopp, Mark A. [2 ]
机构
[1] Millersville Univ Pennsylvania, Dept Appl Engn Safety & Technol, Millersville, PA 17551 USA
[2] US Army, Res Lab, Aberdeen Proving Ground, MD USA
基金
美国国家科学基金会;
关键词
cellular structures; lightweight metals; low-density metals; metallic foam; porous metal; solid state foaming; SINTERING-DISSOLUTION PROCESS; PORE MORPHOLOGY FOAM; MONOLITHIC NANOPOROUS COPPER; THERMAL MANAGEMENT-SYSTEM; ALUMINUM SYNTACTIC FOAM; HIGH-POROSITY TITANIUM; STAINLESS-STEEL FOAMS; PHASE-CHANGE MATERIAL; PHONONIC BAND-GAPS; ARGON-FILLED PORES;
D O I
10.1002/adem.201700766
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Porous metals have been under development for nearly a century, but commercial adoption remains limited. This development has followed two primary routes: liquid state or solid state processing. Liquid state foaming introduces porosity to a liquid or semi-solid metal, and solid state foaming introduces porosity to a metal, which is fully solid. Either method may create pores by internal gas pressure or introducing metal around a template directly control porosity. Process optimization and commercial output has been primarily related to liquid state methods, as solid state processing is often more complex, diverse, and with lower throughput. Solid state methods, however, are often more versatile and offer greater control of pore characteristics. Ongoing advancements in solid state foaming have allowed for a wide array of metals and alloys to be made porous and the three-dimensional structure to be precisely tailored. In general, solid state processing remains limited to niche applications, often with modest dimensions (cm scale). Traditional solid state processes are being further refined and extended, and continuing developments to reduce cost, increase output, and control pore characteristics are likely to produce important advancements in coming years. The extensive variability of pore quantity and morphology makes solid state processes suitable, and often preferable, for an assortment of functional and structural applications, with electrodes and biomedical devices being among the most popular in current research. Various techniques for introducing porosity, the way these methods are applied, important considerations, typical outcomes, and current applications are reviewed.
引用
收藏
页数:33
相关论文
共 439 条
[91]  
Gauthier M, 2004, MATER MANUF PROCESS, V19, P793, DOI [10.1081/LMMP-200030539, 10.1081/LMMP-20030539]
[92]   Topology-generating interfacial pattern formation during liquid metal dealloying [J].
Geslin, Pierre-Antoine ;
Mccue, Ian ;
Gaskey, Bernard ;
Erlebacher, Jonah ;
Karma, Alain .
NATURE COMMUNICATIONS, 2015, 6
[93]   Mechanical behavior of metallic foams [J].
Gibson, LJ .
ANNUAL REVIEW OF MATERIALS SCIENCE, 2000, 30 :191-227
[94]   Effect of strain rate and relative density on compressive deformation behavior of aluminum cenosphere syntactic foam [J].
Goel, M. D. ;
Mondal, D. P. ;
Yadav, M. S. ;
Gupta, S. K. .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2014, 590 :406-415
[95]   Dynamic compression behavior of cenosphere aluminum alloy syntactic foam [J].
Goel, Manmohan Dass ;
Peroni, Marco ;
Solomos, George ;
Mondal, Dehi Pada ;
Matsagar, Vasant A. ;
Gupta, Anil K. ;
Larcher, Martin ;
Marburg, Steffen .
MATERIALS & DESIGN, 2012, 42 :418-423
[96]   Fabrication and evaluation of oxidation resistance performance of open-celled Fe(Al) foam by space-holder technique [J].
Golabgir, Mohammad Hossein ;
Ebrahimi-Kahrizsangi, Reza ;
Torabi, Omid ;
Tajizadegan, Hamid ;
Jamshidi, Amin .
ADVANCED POWDER TECHNOLOGY, 2014, 25 (03) :960-967
[97]   Procedures for damping properties determination in metal foams to improve FEM modeling [J].
Goletti, Massimo ;
Mussi, Valerio ;
Rossi, Andrea ;
Monno, Michele .
8TH INTERNATIONAL CONFERENCE ON POROUS METALS AND METALLIC FOAMS, 2014, 4 :233-238
[98]   Effect of surface finish on the osseointegration of laser-treated titanium alloy implants [J].
Götz, HE ;
Müller, M ;
Emmel, A ;
Holzwarth, U ;
Erben, RG ;
Stangl, R .
BIOMATERIALS, 2004, 25 (18) :4057-4064
[99]   Low-density open-cell foams in the NiTi system [J].
Grummon, DS ;
Shaw, JA ;
Gremillet, A .
APPLIED PHYSICS LETTERS, 2003, 82 (16) :2727-2729
[100]   Ultra-strong architected Cu meso-lattices [J].
Gu, X. Wendy ;
Greer, Julia. R. .
EXTREME MECHANICS LETTERS, 2015, 2 (01) :7-14