Introduction Liquidmetalfoamsare generallyverymuch usefultoprovidelight weightstructureswhich can absorb energy from the thermal properties. Thecharacteristic featureofmetalfoam areitshigherthermal conductivity,higher stabilization,higher
Formation of these metals •Depositionofvapor phase •Bubbling of gas through metal. •Formationofwax molding. •Coolingofthefoam agentsbyexternal pressure. •Sinteringofhollow sphere •Pressurization of metal powerusingthe leaching powder.
Different forms of metal foam •Generation of metal foamfromsolid state. •Generation of metal foamafterliquid state processing. •Generation of metal foaminaqueous solutionusing electrochemical
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Research Rationale This presentation shall beverymuchuseful tounderstandthe impactofdeploying metalfoamonour society. It can be said that the energyconsumptions oftheconstruction
Aims and objectives The prime objective of thisresearchisto focus on properties of aluminumand silicon carbide.Theentire modellingofthis researchhasbeen conducted using ANSY software.
Research objectives •Torecognizethe significanceofthe metalfoams employedinthe engineering materials. •Identification of the issues in the metal foams. •Identification of the problemswhich
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Research questions •Whatarethe impactsof introducingmetal foamsinthe engineering materials? •Whatarethe challenges confronted in using the metal foams?
Literature Review According to Xuet al. (2015),mostofthe metalfoamsare generally light weight and have higher heat transfer capability. The materialswhichare generally deployed in themetalfoamsare usuallyelasticand eachofthose AsdiscussedbyTao, YouandHe(2016), most of the composite materialswhichare used in thecreation ofthemetalfoams havehigherthermal conductivity.The paper highlighted that theconductionof copperaswellas
Literature Review As mentioned by Shen etal.(2017),micro electricmethodsand photoelectric mechanismare increasinglyinthe creation of the metal foams.The investigators highlightedthat reinforcementofthe
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Literature Review As discussed by Mahdi and Nsofor (2017),the usabilityoftheNH3- H2OandH2O-LiBrin theVaporabsorption refrigeration(Var) systemsisverymuch significantinorderto reduce the wastage of energy.Thepaper highlightedthat enlargingthesurface
Literature Review AsarguedbyHuetal. (2016),reductioninthe thermal resistance occurs due tothe introduction of themetalheatfoams. The usability of the cross water heat exchanger was also not highlighted in this data source. Ontheotherhandthis paper also analyzed after anexperimentalsetup
Literature Gap Onlystatisticalresultswere considered duringthatanalysesoftheheat exchange capability of the foams. Lack of standards is the other constraints of the discussions,atthesametimethe incorporation of the discussion of a co- relationbetweenthechemicaland physical properties of foams could have providedabetterviewofitsheat
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Analysis Based on the collected data, it can be analyzed that sandwiching the plates of thin surface area of 0.35m with an outer diameterof5.mmcanbeverymuch usefulregardingthe formation ofthe metal foams. IT can also be analyzed that metal foams canwithstandhighpressureand temperature.
Results This presentation was very much useful tounderstandthattheheattransfer performance of the metal foams can be enhancedifthesurfaceareaofits constituents like metals and wires are enlarged.Thehypothesisofthemetal foamscan be tested using the 20ppi of aluminum,20ppicopperand40ppi copper.Metal heat foams can be useful for the heat exchangers to reduce more
References Hu, H., Weng, X., Zhuang, D., Ding, G., Lai, Z. and Xu, X., 2016. Heat transfer and pressure drop characteristics of wet air flow in metal foam under dehumidifying conditions.Applied Thermal Engineering,93, pp.1124-1134. Mahdi, J.M. and Nsofor, E.C., 2017. Melting enhancement in triplex- tube latent heat energy storage system using nanoparticles-metal foam combination.Applied energy,191, pp.22-34. Shen, B., Yan, H., Sunden, B., Xue, H. and Xie, G., 2017. Forced convection and heat transfer of water-cooled microchannel heat sinks with various structured metal foams.International Journal of Heat and Mass Transfer,113, pp.1043-1053. Tao, Y.B., You, Y. and He, Y.L., 2016. Lattice Boltzmann simulation on phase change heat transfer in metal foams/paraffin composite phase change material.Applied Thermal Engineering,93, pp.476-485. Xu, H., Gong, L., Huang, S. and Xu, M., 2015. Flow and heat transfer
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