References
1. Banhart, J., Baumeister, J., Weber, M: Powder metallurgical technology for the production of metallic foams. In: Proceedings of the European
conference on advanced PM materials, Birmingham, UK, 23–25 October 1995
2. Chandra Kandpal, B., Kumar, J., Singh, H.: Manufacturing and technological challenges in Stir casting of metal matrix composites– a review.
Mater. Today Proceed. 5(1), 5–10 (2018). https://doi.org/10.1016/J.MATPR.2017.11.046
3. Orbulov, I.N., Dobránszky, J.: Producing metal matrix syntactic foams by pressure infiltration. Period. Polytech. Mechan. Eng. 52(1), 35 (2008).
https://doi.org/10.3311/pp.me.2008-1.06
4. Vogiatzis, C.A., Tsouknidas, A., Kountouras, D.T., Skolianos, S.: Aluminum–ceramic cenospheres syntactic foams produced by powder
metallurgy route. Mater. Des. 85, 444–454 (2015). https://doi.org/10.1016/J.MATDES.2015.06.154
5. Liu, D., Atkinson, H.V., Jones, H.: Thermodynamic prediction of thixoformability in alloys based on the Al-Si-Cu and Al-Si-Cu-Mg systems.
Acta Mater. 53(14), 3807–3819 (2005). https://doi.org/10.1016/j.actamat.2005.04.028
6. Zoqui, E.J.: Alloys for semisolid processing. In: Hashmi, S. (ed.) Comprehensive Material Processing, vol. 5, 1st edn, pp. 163–190. Elsevier,
Amsterdam (2014)
7. Atkinson, H.V.: Modeling the semisolid processing of metallic alloys. Prog. Mater. Sci. 50, 341–412 (2005)
8. Gatamorta, F.: Obtenção de espumas sintáticas da liga AA2011 a partir do metal no estado semi-sólido e sua caracterização metalúrgica/Fábio
Gatamorta. - Campinas, SP: [s.n.] (2009)
9. Zoqui, E.J., Naldi, M.A.: Evaluation of the thixoformability of the A332 alloy (Al-9.5 wt%Si-2.5 wt%Cu). J. Mater. Sci. 46(23), 7558–7566
(2011). https://doi.org/10.1007/s10853-011-5730-2
10. ASM International. Handbook Committee: Astm Metals Handbook, Vol. 2. Properties and Selection: Nonferrous Alloys and Special-Purpose
Materials, 10th edn. ASM International, Materials Park, OH (1990)
Fig. 16.8 Optical micrograph of foam with Fly Ash balloons of mesh 60
16 Study of a Semisolid Processing Route for Producing an AlSiMg0.5Mn. . .
113
1. Banhart, J., Baumeister, J., Weber, M: Powder metallurgical technology for the production of metallic foams. In: Proceedings of the European
conference on advanced PM materials, Birmingham, UK, 23–25 October 1995
2. Chandra Kandpal, B., Kumar, J., Singh, H.: Manufacturing and technological challenges in Stir casting of metal matrix composites– a review.
Mater. Today Proceed. 5(1), 5–10 (2018). https://doi.org/10.1016/J.MATPR.2017.11.046
3. Orbulov, I.N., Dobránszky, J.: Producing metal matrix syntactic foams by pressure infiltration. Period. Polytech. Mechan. Eng. 52(1), 35 (2008).
https://doi.org/10.3311/pp.me.2008-1.06
4. Vogiatzis, C.A., Tsouknidas, A., Kountouras, D.T., Skolianos, S.: Aluminum–ceramic cenospheres syntactic foams produced by powder
metallurgy route. Mater. Des. 85, 444–454 (2015). https://doi.org/10.1016/J.MATDES.2015.06.154
5. Liu, D., Atkinson, H.V., Jones, H.: Thermodynamic prediction of thixoformability in alloys based on the Al-Si-Cu and Al-Si-Cu-Mg systems.
Acta Mater. 53(14), 3807–3819 (2005). https://doi.org/10.1016/j.actamat.2005.04.028
6. Zoqui, E.J.: Alloys for semisolid processing. In: Hashmi, S. (ed.) Comprehensive Material Processing, vol. 5, 1st edn, pp. 163–190. Elsevier,
Amsterdam (2014)
7. Atkinson, H.V.: Modeling the semisolid processing of metallic alloys. Prog. Mater. Sci. 50, 341–412 (2005)
8. Gatamorta, F.: Obtenção de espumas sintáticas da liga AA2011 a partir do metal no estado semi-sólido e sua caracterização metalúrgica/Fábio
Gatamorta. - Campinas, SP: [s.n.] (2009)
9. Zoqui, E.J., Naldi, M.A.: Evaluation of the thixoformability of the A332 alloy (Al-9.5 wt%Si-2.5 wt%Cu). J. Mater. Sci. 46(23), 7558–7566
(2011). https://doi.org/10.1007/s10853-011-5730-2
10. ASM International. Handbook Committee: Astm Metals Handbook, Vol. 2. Properties and Selection: Nonferrous Alloys and Special-Purpose
Materials, 10th edn. ASM International, Materials Park, OH (1990)
Fig. 16.8 Optical micrograph of foam with Fly Ash balloons of mesh 60
16 Study of a Semisolid Processing Route for Producing an AlSiMg0.5Mn. . .
113
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