Skip to main content
Top
Published in: Arabian Journal for Science and Engineering 2/2020

23-11-2019 | Research Article - Mechanical Engineering

Development of AA2024/TiB2 + Y2O3 Hybrid Composites with Improved Mechanical Properties Through Stir Rheocasting

Authors: Semegn Cheneke, D. Benny Karunakar

Published in: Arabian Journal for Science and Engineering | Issue 2/2020

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Semisolid cast AA2024 matrix composites reinforced with 2.0 wt% titanium boride (TiB2) and varying amounts of yttria (Y2O3) (0.5 wt%, 1.0 wt%, 1.5 wt%) were developed using stir rheocasting. The metallurgical characterisation was done by X-ray diffraction, optical microscopy, and scanning electron microscope, and mechanical characterisation by Vickers’s hardness testing machine and universal testing machine. The microstructure evolution and mechanical properties such as hardness, tensile strength, and fracture toughness (KQ) of the developed composites were correlated. Pure AA2024 and AA2024 reinforced with TiB2 samples were also fabricated as a benchmark to compare the effect of yttria. The highest hardness, ultimate tensile strength, and yield strength achieved were 122 HV, 310 MPa, and 230 MPa, respectively, for the AA2024/2 wt% TiB2 + 1.5 wt% Y2O3 composite. They are 25%, 45%, and 57% higher compared to the unreinforced sample. The maximum conditional fracture toughness (KQ) achieved was 25.56 MPa m1/2 for the unreinforced specimen and 19.77 MPa m1/2 for AA2024/2 wt% TiB2 + 1.5 wt% Y2O3 composite. With the addition of Y2O3 particles in the matrix, the porosity in the samples increased, resulting in lower elongation. The processing route enhanced the mechanical properties of the composite in comparison with the liquid cast matrix due to a uniform distribution of particles and grain refinement.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Hoziefa, W.; Toschi, S.; Ahmed, M.M.Z.; Morri, A.; Mahdy, A.A.; Seleman, M.E.S.; Atlam, A.: Influence of friction stir processing on the microstructure and mechanical properties of a compocast AA2024-Al2O3 nanocomposite. Mater. Des. 106, 273–284 (2016) Hoziefa, W.; Toschi, S.; Ahmed, M.M.Z.; Morri, A.; Mahdy, A.A.; Seleman, M.E.S.; Atlam, A.: Influence of friction stir processing on the microstructure and mechanical properties of a compocast AA2024-Al2O3 nanocomposite. Mater. Des. 106, 273–284 (2016)
2.
go back to reference Kumar, S.; Suman, K.N.S.; Ravindra, K.; Poddar, P.; Venkata Siva, S.B.: Microstructure, mechanical response, and fractography of AZ91E/Al2O3 nanocomposite fabricated by semi-solid stir casting method. J. Magnes. Alloys 5, 48–55 (2017) Kumar, S.; Suman, K.N.S.; Ravindra, K.; Poddar, P.; Venkata Siva, S.B.: Microstructure, mechanical response, and fractography of AZ91E/Al2O3 nanocomposite fabricated by semi-solid stir casting method. J. Magnes. Alloys 5, 48–55 (2017)
3.
go back to reference Kanth, U.R.; Rao, P.S.; Krishna, M.G.: Mechanical behavior of fly ash/SiC particles reinforced Al–Zn alloy-based metal matrix composites fabricated by stir casting method. J. Mater. Res. Technol. 8, 737–744 (2019) Kanth, U.R.; Rao, P.S.; Krishna, M.G.: Mechanical behavior of fly ash/SiC particles reinforced Al–Zn alloy-based metal matrix composites fabricated by stir casting method. J. Mater. Res. Technol. 8, 737–744 (2019)
4.
go back to reference Ghandvar, H.; Farahany, S.; Idris, M.H.: Effect of wettability enhancement of SiC particles on impact toughness and dry sliding wear behavior of compocast A356/20 SiCp composites. Tribol. Trans. 61, 88–99 (2018) Ghandvar, H.; Farahany, S.; Idris, M.H.: Effect of wettability enhancement of SiC particles on impact toughness and dry sliding wear behavior of compocast A356/20 SiCp composites. Tribol. Trans. 61, 88–99 (2018)
5.
go back to reference Mohamadigangaraj, J.; Nourouzi, S.; Aval, H.J.: Microstructure, mechanical, and tribological properties of A390/SiC composite produced by compocasting. T. Nonferr. Met. Soc. China 29, 710–721 (2019). (English edition) Mohamadigangaraj, J.; Nourouzi, S.; Aval, H.J.: Microstructure, mechanical, and tribological properties of A390/SiC composite produced by compocasting. T. Nonferr. Met. Soc. China 29, 710–721 (2019). (English edition)
6.
go back to reference Hadian, M.; Shahrajabian, H.; Rafiei, M.: Mechanical properties and microstructure of Al/(TiC + TiB2) composite fabricated by spark plasma sintering. Ceram. Int. 45, 12088–12092 (2019) Hadian, M.; Shahrajabian, H.; Rafiei, M.: Mechanical properties and microstructure of Al/(TiC + TiB2) composite fabricated by spark plasma sintering. Ceram. Int. 45, 12088–12092 (2019)
7.
go back to reference Sahoo, B.N.; Panigrahi, S.K.: Deformation behavior and processing map development of AZ91 Mg alloy with and without the addition of hybrid in situ TiC + TiB2 reinforcement. J. Alloys Compd. 776, 865–882 (2019) Sahoo, B.N.; Panigrahi, S.K.: Deformation behavior and processing map development of AZ91 Mg alloy with and without the addition of hybrid in situ TiC + TiB2 reinforcement. J. Alloys Compd. 776, 865–882 (2019)
8.
go back to reference Liang, S.; Li, W.; Jiang, Y.; Cao, F.; Dong, G.; Xiao, P.: Microstructures and properties of hybrid copper matrix composites reinforced by TiB whiskers and TiB2 particles. J. Alloys Compd. 797, 589–594 (2019) Liang, S.; Li, W.; Jiang, Y.; Cao, F.; Dong, G.; Xiao, P.: Microstructures and properties of hybrid copper matrix composites reinforced by TiB whiskers and TiB2 particles. J. Alloys Compd. 797, 589–594 (2019)
9.
go back to reference Durowoju, M.O.; Sadiku, E.R.; Diouf, S.; Shongwe, M.B.; Makena, I.M.; Ramakokovhu, M.M.; Eze, A.A.: Wear and corrosion studies of graphite-aluminium composite reinforced with micro/nano-TiB2 via spark plasma sintering. Materialwiss. Werkst. 50(2), 126–139 (2019) Durowoju, M.O.; Sadiku, E.R.; Diouf, S.; Shongwe, M.B.; Makena, I.M.; Ramakokovhu, M.M.; Eze, A.A.: Wear and corrosion studies of graphite-aluminium composite reinforced with micro/nano-TiB2 via spark plasma sintering. Materialwiss. Werkst. 50(2), 126–139 (2019)
10.
go back to reference Nagaral, M.; Kalgudi, S.; Auradi, V.; Kori, S.A.: Mechanical characterisation of ceramic nano B4C Al2618 alloy composites synthesised by semi-solid state processing. Trans. Indian Ceram. Soc. 77, 146–149 (2018) Nagaral, M.; Kalgudi, S.; Auradi, V.; Kori, S.A.: Mechanical characterisation of ceramic nano B4C Al2618 alloy composites synthesised by semi-solid state processing. Trans. Indian Ceram. Soc. 77, 146–149 (2018)
11.
go back to reference Singh, J.; Chauhan, A.: Overview of wear performance of aluminium matrix composites reinforced with ceramic materials under the influence of controllable variables. Ceram. Int. 42, 56–81 (2016) Singh, J.; Chauhan, A.: Overview of wear performance of aluminium matrix composites reinforced with ceramic materials under the influence of controllable variables. Ceram. Int. 42, 56–81 (2016)
12.
go back to reference Shayan, M.; Eghbali, B.; Niroumand, B.: Synthesis of AA2024-(SiO2np + TiO2np) hybrid nanocomposite via stir casting process. Mater. Sci. Eng., A 756, 484–491 (2019) Shayan, M.; Eghbali, B.; Niroumand, B.: Synthesis of AA2024-(SiO2np + TiO2np) hybrid nanocomposite via stir casting process. Mater. Sci. Eng., A 756, 484–491 (2019)
13.
go back to reference Show, B.K.; Mondal, D.K.; Biswas, K.; Maity, J.: Development of a novel 6351Al–(Al4SiC4 + SiC) hybrid composite with enhanced mechanical properties. Mater. Sci. Eng., A 579, 136–149 (2013) Show, B.K.; Mondal, D.K.; Biswas, K.; Maity, J.: Development of a novel 6351Al–(Al4SiC4 + SiC) hybrid composite with enhanced mechanical properties. Mater. Sci. Eng., A 579, 136–149 (2013)
14.
go back to reference Devaraju, A.; Kumar, A.; Kotiveerachari, B.: Influence of addition of Grp/Al2O3p with SiCp on wear properties of aluminium alloy 6061-T6 hybrid composites via friction stir processing. Trans. Nonferr. Met. Soc. China 23, 1275–1280 (2013) Devaraju, A.; Kumar, A.; Kotiveerachari, B.: Influence of addition of Grp/Al2O3p with SiCp on wear properties of aluminium alloy 6061-T6 hybrid composites via friction stir processing. Trans. Nonferr. Met. Soc. China 23, 1275–1280 (2013)
15.
go back to reference Zhang, X.; Zhang, Q.; Hu, H.: Tensile behavior and microstructure of magnesium AM60-based hybrid composite containing Al2O3 fibers and particles. Mater. Sci. Eng., A 607, 269–276 (2014) Zhang, X.; Zhang, Q.; Hu, H.: Tensile behavior and microstructure of magnesium AM60-based hybrid composite containing Al2O3 fibers and particles. Mater. Sci. Eng., A 607, 269–276 (2014)
16.
go back to reference Singh, G.; Goyal, S.: Microstructure and mechanical behavior of AA6082-T6/SiC/B4C-based aluminium hybrid composites. Part. Sci. Technol. 36, 154–161 (2018) Singh, G.; Goyal, S.: Microstructure and mechanical behavior of AA6082-T6/SiC/B4C-based aluminium hybrid composites. Part. Sci. Technol. 36, 154–161 (2018)
17.
go back to reference Vidyasagar, C.S.; Karunakar, D.B.: Improvement of mechanical properties of 2024 AA by reinforcing yttrium and processing through spark plasma sintering. Arab. J. Sci. Eng. 44, 7859–7873 (2019) Vidyasagar, C.S.; Karunakar, D.B.: Improvement of mechanical properties of 2024 AA by reinforcing yttrium and processing through spark plasma sintering. Arab. J. Sci. Eng. 44, 7859–7873 (2019)
18.
go back to reference Zhang, X.; Sun, J.; Wang, M.; Zhang, Y.; Ma, N.; Wang, H.: Improvement of yttrium on the hot tearing susceptibility of 6TiB2/Al–5Cu composite. J. Rare Earths 33, 1335–1340 (2015) Zhang, X.; Sun, J.; Wang, M.; Zhang, Y.; Ma, N.; Wang, H.: Improvement of yttrium on the hot tearing susceptibility of 6TiB2/Al–5Cu composite. J. Rare Earths 33, 1335–1340 (2015)
19.
go back to reference Huang, W.X.; Yan, H.: Preparation and theoretic study of semi-solid Al2Y/AZ91 magnesium matrix composites slurry by ultrasonic vibration. J. Rare Earths 32, 573 (2014) Huang, W.X.; Yan, H.: Preparation and theoretic study of semi-solid Al2Y/AZ91 magnesium matrix composites slurry by ultrasonic vibration. J. Rare Earths 32, 573 (2014)
20.
go back to reference Xiao, W.; Jia, S.; Wang, J.; Wu, Y.; Wang, L.: Effects of cerium on the microstructure and mechanical properties of the Mg–20Zn–8Al alloy. Mater. Sci. Eng., A 474, 317–322 (2008) Xiao, W.; Jia, S.; Wang, J.; Wu, Y.; Wang, L.: Effects of cerium on the microstructure and mechanical properties of the Mg–20Zn–8Al alloy. Mater. Sci. Eng., A 474, 317–322 (2008)
21.
go back to reference Wu, G.; Fan, Y.; Gao, H.; Zhai, C.; Zhu, Y.P.: The effect of Ca and rare earth elements on the microstructure, mechanical properties and corrosion behavior of AZ91D. Mater. Sci. Eng., A 408, 255–263 (2005) Wu, G.; Fan, Y.; Gao, H.; Zhai, C.; Zhu, Y.P.: The effect of Ca and rare earth elements on the microstructure, mechanical properties and corrosion behavior of AZ91D. Mater. Sci. Eng., A 408, 255–263 (2005)
22.
go back to reference Yang, W.G.; Koo, C.H.: Tensile properties of Mg–8Al–xRE alloys from 300 K to 673 K. Mater. Trans. 44, 1029–1035 (2003) Yang, W.G.; Koo, C.H.: Tensile properties of Mg–8Al–xRE alloys from 300 K to 673 K. Mater. Trans. 44, 1029–1035 (2003)
23.
go back to reference Zhang, T.; Li, D.Y.: Improvement in the resistance of aluminium with yttria particles to sliding wear in the air and in a corrosive medium. Wear 251, 1250–1256 (2001) Zhang, T.; Li, D.Y.: Improvement in the resistance of aluminium with yttria particles to sliding wear in the air and in a corrosive medium. Wear 251, 1250–1256 (2001)
24.
go back to reference Bouaeshi, W.B.; Li, D.Y.: Effects of Y2O3 addition on microstructure, mechanical properties, electrochemical behavior, and resistance to corrosive wear of aluminium. Tribol. Int. 40, 188–199 (2007) Bouaeshi, W.B.; Li, D.Y.: Effects of Y2O3 addition on microstructure, mechanical properties, electrochemical behavior, and resistance to corrosive wear of aluminium. Tribol. Int. 40, 188–199 (2007)
25.
go back to reference Hassan, S.F.: Effect of primary processing techniques on the microstructure and mechanical properties of nano-Y2O3 reinforced magnesium nanocomposites. Mater. Sci. Eng., A 528, 5484–5490 (2011) Hassan, S.F.: Effect of primary processing techniques on the microstructure and mechanical properties of nano-Y2O3 reinforced magnesium nanocomposites. Mater. Sci. Eng., A 528, 5484–5490 (2011)
26.
go back to reference Vembu, V.; Ganesan, G.: Heat treatment optimisation for tensile properties of 8011 Al/15% SiCp metal matrix composite using response surface methodology. Def. Technol. 11, 390–395 (2015) Vembu, V.; Ganesan, G.: Heat treatment optimisation for tensile properties of 8011 Al/15% SiCp metal matrix composite using response surface methodology. Def. Technol. 11, 390–395 (2015)
27.
go back to reference Nagaraj, N.; Mahendra, K.V.; Nagaral, M.: Investigations on the mechanical behavior of micro graphite particulates reinforced Al–7Si alloy composites. IOP Conf. Ser. Mater. Sci. Eng. 310, 12131 (2018) Nagaraj, N.; Mahendra, K.V.; Nagaral, M.: Investigations on the mechanical behavior of micro graphite particulates reinforced Al–7Si alloy composites. IOP Conf. Ser. Mater. Sci. Eng. 310, 12131 (2018)
28.
go back to reference Sajjadi, S.A.; Torabi Parizi, M.; Ezatpour, H.R.; Sedghi, A.: Fabrication of A356 composite reinforced with micro and nano Al2O3 particles by a developed compocasting method and study of its properties. J. Alloys Compd. 511, 226–231 (2012) Sajjadi, S.A.; Torabi Parizi, M.; Ezatpour, H.R.; Sedghi, A.: Fabrication of A356 composite reinforced with micro and nano Al2O3 particles by a developed compocasting method and study of its properties. J. Alloys Compd. 511, 226–231 (2012)
29.
go back to reference Akhlaghi, F.; Lajevardi, A.; Maghanaki, H.M.: Effects of casting temperature on the microstructure and wear resistance of compocast A356/SiCp composites: a comparison between SS and SL routes. J. Matter. Process. Technol. 155, 1874–1880 (2004) Akhlaghi, F.; Lajevardi, A.; Maghanaki, H.M.: Effects of casting temperature on the microstructure and wear resistance of compocast A356/SiCp composites: a comparison between SS and SL routes. J. Matter. Process. Technol. 155, 1874–1880 (2004)
30.
go back to reference Kumar, B.A.; Murugan, N.: Metallurgical and mechanical characterisation of stir cast AA6061-T6–AlNp composite. Mater. Des. 40, 52–58 (2012) Kumar, B.A.; Murugan, N.: Metallurgical and mechanical characterisation of stir cast AA6061-T6–AlNp composite. Mater. Des. 40, 52–58 (2012)
31.
go back to reference Kalaiselvan, K.; Murugan, N.; Parameswaran, S.: Production and characterisation of AA6061–B4C stir cast composite. Mater. Des. 32, 4004–4009 (2011) Kalaiselvan, K.; Murugan, N.; Parameswaran, S.: Production and characterisation of AA6061–B4C stir cast composite. Mater. Des. 32, 4004–4009 (2011)
32.
go back to reference Urena, A.; Martınez, E.E.; Rodrigo, P.; Gil, L.: Oxidation treatments for SiC particles used as reinforcement in aluminium matrix composites. Compos. Sci. Technol. 64, 1843–1854 (2004) Urena, A.; Martınez, E.E.; Rodrigo, P.; Gil, L.: Oxidation treatments for SiC particles used as reinforcement in aluminium matrix composites. Compos. Sci. Technol. 64, 1843–1854 (2004)
33.
go back to reference Sahin, Y.: Preparation and some properties of SiC particle reinforced aluminium alloy composites. Mater. Des. 24, 671–679 (2003) Sahin, Y.: Preparation and some properties of SiC particle reinforced aluminium alloy composites. Mater. Des. 24, 671–679 (2003)
34.
go back to reference Ramesh, C.S.; Keshavamurthy, R.; Channabasappa, B.H.; Ahmed, A.: Microstructure and mechanical properties of Ni–P coated Si3N4 reinforced Al6061 composites. Mater. Sci. Eng., A 502, 99–106 (2009) Ramesh, C.S.; Keshavamurthy, R.; Channabasappa, B.H.; Ahmed, A.: Microstructure and mechanical properties of Ni–P coated Si3N4 reinforced Al6061 composites. Mater. Sci. Eng., A 502, 99–106 (2009)
35.
go back to reference Gladston, J.A.K.; Sheriff, N.M.; Dinaharan, I.; Raja Selvam, J.D.: Production and characterisation of rice husk ash particulate reinforced AA6061 aluminium alloy composites by compocasting. Trans. Nonferr. Met. Soc. China 25, 683–691 (2015). (English edition) Gladston, J.A.K.; Sheriff, N.M.; Dinaharan, I.; Raja Selvam, J.D.: Production and characterisation of rice husk ash particulate reinforced AA6061 aluminium alloy composites by compocasting. Trans. Nonferr. Met. Soc. China 25, 683–691 (2015). (English edition)
36.
go back to reference Raja Selvam, J.D.; Robinson Smart, D.S.; Dinaharan, I.: Microstructure and some mechanical properties of fly ash particulate reinforced AA6061 aluminium alloy composites prepared by compocasting. Mater. Des. 49, 28–34 (2013) Raja Selvam, J.D.; Robinson Smart, D.S.; Dinaharan, I.: Microstructure and some mechanical properties of fly ash particulate reinforced AA6061 aluminium alloy composites prepared by compocasting. Mater. Des. 49, 28–34 (2013)
37.
go back to reference Gladston, J.A.K.; Dinaharan, I.; Sheriff, N.M.; Selvam, J.D.R.: Dry sliding wear behavior of AA6061 aluminium alloy composites reinforced rice husk ash particulates produced using compocasting. J. Asian Ceram. Soc. 5, 127–135 (2017) Gladston, J.A.K.; Dinaharan, I.; Sheriff, N.M.; Selvam, J.D.R.: Dry sliding wear behavior of AA6061 aluminium alloy composites reinforced rice husk ash particulates produced using compocasting. J. Asian Ceram. Soc. 5, 127–135 (2017)
38.
go back to reference Ourdjini, A.; Chew, K.C.; Khoo, B.T.: Settling of silicon carbide particles in cast metal matrix composites. J. Mater. Process. Technol. 116, 72–76 (2001) Ourdjini, A.; Chew, K.C.; Khoo, B.T.: Settling of silicon carbide particles in cast metal matrix composites. J. Mater. Process. Technol. 116, 72–76 (2001)
39.
go back to reference Samuel, A.M.; Gotmare, A.; Samuel, F.H.: Effect of solidification rate and metal feedability on porosity and SiC/Al2O3 particle distribution in an Al–Si–Mg (359) alloy. Compos. Sci. Technol. 53, 301–315 (1995) Samuel, A.M.; Gotmare, A.; Samuel, F.H.: Effect of solidification rate and metal feedability on porosity and SiC/Al2O3 particle distribution in an Al–Si–Mg (359) alloy. Compos. Sci. Technol. 53, 301–315 (1995)
40.
go back to reference Girot, F.A.; Albingre, L.; Quenisset, J.M.; Naslain, R.: Rheocasting Al matrix composites. JOM 7(November), 18–21 (1987) Girot, F.A.; Albingre, L.; Quenisset, J.M.; Naslain, R.: Rheocasting Al matrix composites. JOM 7(November), 18–21 (1987)
41.
go back to reference Bobić, B.; Vencl, A.; Ružić, J.; Bobić, I.; Damnjanović, Z.: Microstructural and basic mechanical characteristics of ZA27 alloy-based nanocomposites synthesized by mechanical milling and compocasting. J. Compos. Mater. 53, 2033–2046 (2019) Bobić, B.; Vencl, A.; Ružić, J.; Bobić, I.; Damnjanović, Z.: Microstructural and basic mechanical characteristics of ZA27 alloy-based nanocomposites synthesized by mechanical milling and compocasting. J. Compos. Mater. 53, 2033–2046 (2019)
42.
go back to reference Kumarasamy, S.P.; Vijayananth, K.; Thankachan, T.; Pudhupalayam Muthukutti, G.: Investigations on mechanical and machinability behavior of aluminium/flyash cenosphere/Gr hybrid composites processed through compocasting. J. Appl. Res. Technol. 15, 430–441 (2017) Kumarasamy, S.P.; Vijayananth, K.; Thankachan, T.; Pudhupalayam Muthukutti, G.: Investigations on mechanical and machinability behavior of aluminium/flyash cenosphere/Gr hybrid composites processed through compocasting. J. Appl. Res. Technol. 15, 430–441 (2017)
43.
go back to reference Munro, R.G.: Material properties of titanium diboride. J. Res. Natl. Inst. Stand. Technol. 105, 709 (2000) Munro, R.G.: Material properties of titanium diboride. J. Res. Natl. Inst. Stand. Technol. 105, 709 (2000)
44.
go back to reference Xing, B.; Hao, Y.; Li, Y.D.; Ma, Y.; Chen, T.J.: Microstructure control of AZ31 alloy by self-inoculation method for semisolid rheocasting. Trans. Nonferr. Met. Soc. China 23, 567–575 (2013). (English edition) Xing, B.; Hao, Y.; Li, Y.D.; Ma, Y.; Chen, T.J.: Microstructure control of AZ31 alloy by self-inoculation method for semisolid rheocasting. Trans. Nonferr. Met. Soc. China 23, 567–575 (2013). (English edition)
45.
go back to reference Flemings, M.C.: Behavior of metal alloys in the semi-solid state. Metall. Trans. A 22, 957–981 (1991) Flemings, M.C.: Behavior of metal alloys in the semi-solid state. Metall. Trans. A 22, 957–981 (1991)
46.
go back to reference Mazahery, A.; Shabani, M.O.: Microstructural and abrasive wear properties of SiC reinforced aluminum-based composite produced by compocasting. Trans. Nonferr. Met. Soc. China 23, 1905–1914 (2013). (English edition) Mazahery, A.; Shabani, M.O.: Microstructural and abrasive wear properties of SiC reinforced aluminum-based composite produced by compocasting. Trans. Nonferr. Met. Soc. China 23, 1905–1914 (2013). (English edition)
47.
go back to reference Sahin, I.; Eker, A.A.: Analysis of microstructures and mechanical properties of particle reinforced AlSi7Mg2 matrix composite materials. J. Mater. Eng. Perform. 20, 1090–1096 (2011) Sahin, I.; Eker, A.A.: Analysis of microstructures and mechanical properties of particle reinforced AlSi7Mg2 matrix composite materials. J. Mater. Eng. Perform. 20, 1090–1096 (2011)
48.
go back to reference Yigezu, B.S.; Mahapatra, M.M.; Jha, P.K.: Influence of reinforcement type on microstructure, hardness, and tensile properties of an aluminium alloy metal matrix composite. J. Miner. Mater. Charact. Eng. 1, 124 (2013) Yigezu, B.S.; Mahapatra, M.M.; Jha, P.K.: Influence of reinforcement type on microstructure, hardness, and tensile properties of an aluminium alloy metal matrix composite. J. Miner. Mater. Charact. Eng. 1, 124 (2013)
49.
go back to reference Natori, K.; Utsunomiya, H.; Tanaka, T.: Improvement in the formability of semi-solid cast hypoeutectic Al–Si alloys by equal-channel angular pressing. J. Mater. Process. Technol. 240, 240–248 (2017) Natori, K.; Utsunomiya, H.; Tanaka, T.: Improvement in the formability of semi-solid cast hypoeutectic Al–Si alloys by equal-channel angular pressing. J. Mater. Process. Technol. 240, 240–248 (2017)
50.
go back to reference Chen, F.; Chen, Z.; Mao, F.; Wang, T.; Cao, Z.: TiB2 reinforced aluminium based in situ composites fabricated by stir casting. Mater. Sci. Eng., A 625, 357–368 (2015) Chen, F.; Chen, Z.; Mao, F.; Wang, T.; Cao, Z.: TiB2 reinforced aluminium based in situ composites fabricated by stir casting. Mater. Sci. Eng., A 625, 357–368 (2015)
51.
go back to reference Lu, L.; Lai, M.O.; Chen, F.L.: Al-4 wt% Cu composite reinforced with in situ TiB2 particles. Acta Mater. 45, 4297–4309 (1997) Lu, L.; Lai, M.O.; Chen, F.L.: Al-4 wt% Cu composite reinforced with in situ TiB2 particles. Acta Mater. 45, 4297–4309 (1997)
52.
go back to reference Tiryakioclu, M.; Campbell, J.: Ductility, structural quality, and fracture toughness of Al–Cu–Mg–Ag (A201) alloy castings. Mater. Sci. Technol. 25, 784–789 (2009) Tiryakioclu, M.; Campbell, J.: Ductility, structural quality, and fracture toughness of Al–Cu–Mg–Ag (A201) alloy castings. Mater. Sci. Technol. 25, 784–789 (2009)
53.
go back to reference Gdoutos, E.E.: Fracture Mechanics: An Introduction, vol. 123. Springer, Berlin (2006)MATH Gdoutos, E.E.: Fracture Mechanics: An Introduction, vol. 123. Springer, Berlin (2006)MATH
54.
go back to reference Hong, S.J.; Kim, H.M.; Huh, D.; Suryanarayana, C.; Chun, B.S.: Effect of clustering on the mechanical properties of SiC particulate-reinforced aluminium alloy 2024 metal matrix composites. Mater. Sci. Eng., A 347, 198–204 (2003) Hong, S.J.; Kim, H.M.; Huh, D.; Suryanarayana, C.; Chun, B.S.: Effect of clustering on the mechanical properties of SiC particulate-reinforced aluminium alloy 2024 metal matrix composites. Mater. Sci. Eng., A 347, 198–204 (2003)
55.
go back to reference Davidson, D.L.: Tensile deformation and fracture toughness of 2014 + 15 vol.% SiC particulate composite. Metall. Trans. A 22, 113–123 (1991) Davidson, D.L.: Tensile deformation and fracture toughness of 2014 + 15 vol.% SiC particulate composite. Metall. Trans. A 22, 113–123 (1991)
56.
go back to reference Poza, P.; Llorca, J.: A Study of the failure mechanisms in Al/Al2O3 and Al/SiC composites through quantitative microscopy. J. Mater. Sci. 30, 6075–6082 (1995) Poza, P.; Llorca, J.: A Study of the failure mechanisms in Al/Al2O3 and Al/SiC composites through quantitative microscopy. J. Mater. Sci. 30, 6075–6082 (1995)
Metadata
Title
Development of AA2024/TiB2 + Y2O3 Hybrid Composites with Improved Mechanical Properties Through Stir Rheocasting
Authors
Semegn Cheneke
D. Benny Karunakar
Publication date
23-11-2019
Publisher
Springer Berlin Heidelberg
Published in
Arabian Journal for Science and Engineering / Issue 2/2020
Print ISSN: 2193-567X
Electronic ISSN: 2191-4281
DOI
https://doi.org/10.1007/s13369-019-04256-0

Other articles of this Issue 2/2020

Arabian Journal for Science and Engineering 2/2020 Go to the issue

Premium Partners