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Original Articles

A new method for calculating the specific surface area of porous metal foams

Pages 447-453 | Received 31 Aug 2009, Accepted 03 Mar 2010, Published online: 27 May 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Feng Zhu, Xusheng Hu, Xuecai Wang, Chuan Zhang & Xiaolu Gong. (2020) Experimental and numerical investigation of the melting process of aluminum foam/paraffin composite with low porosity. Numerical Heat Transfer, Part A: Applications 77:12, pages 998-1013.
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J. M. Baloyo. (2017) Open-cell porous metals for thermal management applications: fluid flow and heat transfer. Materials Science and Technology 33:3, pages 265-276.
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Articles from other publishers (20)

Jiayu Du, Yanzhi Li, Xiong Wang & Qi Min. (2023) Inhibiting the Leidenfrost Effect by Superhydrophilic Nickel Foams with Ultrafast Droplet Permeation. ACS Applied Materials & Interfaces 15:34, pages 41121-41129.
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Mahadev Madgule, C. G. Sreenivasa & Avinash V. Borgaonkar. (2022) Effect of influencing parameters on developing aluminium metal foam by using powder metallurgy technique with a foaming agent as a wax powder. Journal of Porous Materials 30:3, pages 1021-1036.
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Mustafa Ercelik, Mohammed S. Ismail, Derek B. Ingham, Kevin J. Hughes, Lin Ma & Mohamed Pourkashanian. (2023) Efficient X-ray CT-based numerical computations of structural and mass transport properties of nickel foam-based GDLs for PEFCs. Energy 262, pages 125531.
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Peyman Maghsoudi & Mehdi Bidabadi. (2020) Evaluation of dynamic behavior of a falling porous magnesium particle over the ignition and combustion processes. Journal of Thermal Analysis and Calorimetry 141:5, pages 1605-1617.
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Dong Gyun Kang, Dong Keun Lee, Jong Min Choi, Dong Kyu Shin & Min Soo Kim. (2020) Study on the metal foam flow field with porosity gradient in the polymer electrolyte membrane fuel cell. Renewable Energy 156, pages 931-941.
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Amir Mohammadimehr, İsmail Solmus, Baris Ozyer & D. Andrew S. Rees. (2020) Determination of Physical Properties and Thermal Conductivity of Graphite Foam with Image Analysis. International Journal of Thermophysics 41:4.
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P.S. Liu & X.M. Ma. (2020) Property relations based on the octahedral structure model with body-centered cubic mode for porous metal foams. Materials & Design 188, pages 108413.
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Muhammad Usman, Lujun Pan, Amjad Farid, Abdul Sammed Khan, Zhao Yongpeng, M. Aslam Khan & Muhammad Hashim. (2020) Carbon nanocoils-nickel foam decorated with silver nanoparticles/sheets using a novel stirring assisted electrodeposition technique for non-enzymatic glucose sensor. Carbon 157, pages 761-766.
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Jian Chen, Xiao Zhang, Cong Li, Xinyuan Zhang, Yanjie Ren, Jianjun He & Jianlin Chen. (2020) Calculation Method of Specific Surface Area of Foam Metal Based on an Ideal Tetradecahedron Model for Lithium Ion Battery. International Journal of Photoenergy 2020, pages 1-7.
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B. Chen, Peisheng Liu & J.H. Chen. (2018) Influence of processing on surface morphology and specific surface area for the nickel foam made by electrodeposition. Multidiscipline Modeling in Materials and Structures 14:4, pages 735-743.
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Hangming Shen, Qian Ye & Guoxiang Meng. (2018) The Simplified Analytical Models for Evaluating the Heat Transfer Performance of High-Porosity Metal Foams. International Journal of Thermophysics 39:7.
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J. M. Baloyo. (2023) Open-cell porous metals for thermal management applications: fluid flow and heat transfer. Materials Science and Technology 33:3, pages 265-276.
Crossref
J.X. Sun, C.Y. Duan & P.S. Liu. (2016) Sound absorption characterization of aluminum foam made by press infiltration casting. Multidiscipline Modeling in Materials and Structures 12:4, pages 737-747.
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Renju Kurian, C. Balaji & S.P. Venkateshan. (2016) Experimental investigation of near compact wire mesh heat exchangers. Applied Thermal Engineering 108, pages 1158-1167.
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P.S. Liu & G. Cui. (2015) Characterization of the electromagnetic shielding and compressive behavior of a highly porous titanium foam with spherical pores. Journal of Materials Research 30:22, pages 3510-3517.
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P.S. Liu, H.B. Qing & H.L. Hou. (2015) Primary investigation on sound absorption performance of highly porous titanium foams. Materials & Design 85, pages 275-281.
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Ninad Trifale, Eric Nauman & Kazuaki Yazawa. (2014) Analysis for upper limit of air cooling by engineered porous metal heat sinks. Analysis for upper limit of air cooling by engineered porous metal heat sinks.
Russell Goodall & Andreas Mortensen. 2014. Physical Metallurgy. Physical Metallurgy 2399 2595 .
P.S. Liu & G.F. Chen. 2014. Porous Materials. Porous Materials 113 188 .
Sven De Schampheleire, Peter De Jaeger, Henk Huisseune, Bernd Ameel, Christophe T'Joen, Kathleen De Kerpel & Michel De Paepe. (2013) Thermal hydraulic performance of 10 PPI aluminium foam as alternative for louvered fins in an HVAC heat exchanger. Applied Thermal Engineering 51:1-2, pages 371-382.
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