Low-Velocity Impact Behavior of Porous Metal Matrix Composites Produced by Recycling of Bronze and Iron Chips
Tóm tắt
Từ khóa
Tài liệu tham khảo
Abrate S (2005) Impact on composite structures. Cambridge University Press, Cambridge
Anderson TL (2000) Fracture mechanics fundamentals and applications. CRC Press Inc., Baca Raton
Aslan A (2014) Production of metal matrix composites by recycling of waste metal chips and their mechanical properties, Ms Thesis, Selçuk University, Department of Mechanical Engineering
Aslan A, Sahin OS, Salur E et al (2015) A new method for recycling of metal chips. J Selçuk Univ Nat Appl Sci 4(1):1
Aydelotte BB, Thadhani NN (2013) Mechanistic aspects of impact initiated reactions inexplosively consolidated metal aluminum powder mixtures. Mater Sci Eng A 570:164–171
Barbosa AP, Bobrovnitchii GS, Skury ALD et al (2010) Structure, microstructure and mechanical properties of pm fe–cu–co alloys. Mater Des 31:522–526
Bourcier RJ, Koss DA, Smelser RE, Richmond O (1986) The influence of porosity on the deformation and fracture of alloys. Acta Metal 34:2443–2453
Brochu M, Zimmerly T, Ajdelsztajn L, Lavernia EJ, Kim G (2007) Dynamic consolidation of nanostructured Al–7.5%Mg alloy powders. Mater Sci Eng, A 466:84–89
Carrollt MM, Holt AC (1972) Static and Dynamic pore-collapse relations for ductile porous materials. J Appl Phys 43:1626
Chawla N, Deng X (2005) Microstructure and mechanical behavior of porous sintered steels. Mater Sci Eng, A 390A:98–112
Dieter GE, Bacon DJ (2001) Mechanical metallurgy. McGraw-Hill, New York City
Fiedler T, Taherishargh M, Krstulović-Opara L, Vesenjak M (2015) Dynamic compressive loading of expanded perlite/aluminum syntactic foam. Mater Sci Eng, A 626:296–304
Fogagnolo JB, Ruiz-Navas EM, Simón MA et al (2003) Recycling of aluminium alloy and aluminium matrix composite chips by pressing and hot extrusion. J Mater Process Technol 143–144:792–795
German RM (2001) Powder metallurgy & particulate materials processing. Prentice-Hall, Upper Saddle River
Gronostajski J, Matuszak A (1999) The recycling of metals by plastic deformation: an example of recycling of aluminum and its alloy’s chips. J Mater Process Technol 92–93:34–41
Gronostajski JZ, Kaczmar JW, Marciniak H et al (1997) Direct recycling of aluminum chips into extruded product. J Mater Process Technol 64:149–156
Gronostajski J, Marciniak H, Matuszak A (2000) New methods of aluminum and aluminum alloy chips recycling. J Mater Process Technol 106:34–39
Guluzade R, Avcı A, Demirci MT, Erkendirci ÖF (2013) Fracture toughness of recycled AISI 1040 steel chip reinforced ALMG1SICU aluminium chip composites. Mater Des 52:345–352
Kanel GI, Ivanov MF, Parshikov AN (1995) Computer simulation of the heterogeneous materials response to the impact loading. Int J Impact Eng 17:455–464
Karadağ HB (2012) Production and mechanical properties of steel/bronze chips composite, PhD Thesis, Selçuk University, Department of Mechanical Engineering
Li Y, Li JB, Zhang R (2004) Energy-absorption performance of porous materials in sandwich composites under hypervelocity impact loading. Compos Struct 64:71–78
Molinari A, Mercier S (2001) Micromechanical modelling of porous materials under dynamic loading. J Mech Phys Solids 49:1497–1516
Nair AR, Mason BA, Groven LJ, Son SF, Strachan A, Cuitiño AM (2013) Micro-RVE modeling of mechanistic response in porous intermetallics subject to weak and moderate impact loading. Int J Plast 51:1–32
Page NW, Killen PD, John DH (1990) Sintering enhancement in dynamically compacted commercial iron powders. Mater Sci Eng A 130:231–240
Partom Y (2014) Modelling dynamic compaction of porous materials with the overstress approach. J Phys: Conf Ser 500:182030
Sano T, Kato K, Takeishi H (1995) Analysis of dynamic deformation mechanisms in powder metals. J Mater Process Technol 48:391–397
Sano T, Obinata A, Negishi H, Suginami K, Takeishi H (1997) Effects of temperature rise on dynamic powder compaction. J Mater Process Technol 67(19):23
Shuyan W, Zesheng J, Tielei Z (2009) Microstructure and mechanical properties of AZ31B magnesium alloy recycled by solid-state process from different size chips. J Mater Process Technol 209:5319–5324
Spitzig WA, Semlser RE, Richmond O (1998) The evolution of damage and fracture in iron compacts with various initial porosities. Acta Metal 36:1201–1211
Tao Y, Ming-yi Z, Xiao-shi H et al (2010) Recycling of az91 mg alloy through consolidation of machined chips by extrusion and ECAP. Trans Nonferrous Met Soc China 20:604–607
Tong W, Ravichandran G (1993) Dynamic pore collapse in viscoplastic materials, 1993. J Appl Phys 74(4):2425