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Original Articles

Erosion Response of Thixoformed A356-5TiB2 in situ Composite Using Taguchi's Experimental Design

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Pages 39-46 | Received 06 Jul 2015, Accepted 18 Jan 2016, Published online: 02 Aug 2016

References

  • Flemings, M. C. (1991), “Behavior of Metal Alloys in the Semisolid State,” Metallurgical Transactions A, 22, pp 957–981.
  • Fan, Z. (2002), “Semisolid Metal Processing,” International Materials Reviews, 47(2), pp 1–37.
  • Haga, T. and Suzuki, S. (2001), “Casting of Aluminum Alloy Ingots for Thixoforming Using a Cooling Slope,” Journal of Materials Processing Technology, 118, pp 169–172.
  • Birol, Y. (2007), “A357 Thixoforming Feedstock Produced by Cooling Slope Casting,” Journal of Materials Processing Technology, 186, pp 94–101.
  • Deepak Kumar, S., Vundavilli, P. R., Mantry, S., Mandal, A., and Chakraborty, M. (2014), “A Taguchi Optimization of Cooling Slope Casting Process Parameters for Production of Semi-Solid A356 Alloy and A356-5TiB2 in situ Composite Feedstock,” Procedia Materials Science, 5, pp 232–241.
  • Mandal, A., Murty, B. S., and Chakraborty, M. (2009), “Sliding Wear Behaviour of T6 Treated A356-TiB2 in situ Composites,” Wear, 266, pp 865–872.
  • Sivaprasad, K., Kumaresh Babu, S. P., Natarajan, S., Narayanasamy, R., Anil Kumar, B., and Dinesh, G. (2008), “Study on Abrasive and Erosive Wear Behaviour of Al 6063/TiB2 in situ Composites,” Material Science and Engineering A, 498, pp 495–500.
  • Fang, Q., Sidky, P., and Hocking, M. G. (1997), “Erosive Wear Behavior of Aluminium Based Composites,” Materials and Design, 18(4), pp 389–393.
  • Sundararajan, G. and Roy, M. (1997), “Solid Particle Erosion Behavior of Metallic Materials at Room and Elevated Temperatures,” Tribology International, 30, pp 339–359.
  • Liuo, J. W., Chen, L. N., and Lui, T. (1998), “Erosion of Al-Si Alloys by Molding Silica Sand,” Materials Transactions, 39(4), pp 478–484.
  • Sahu, S. P., Satapathy, A., Mishra, D., Patnaik, A., and Sreekumar, K. P. (2010), “Tribo-Performance Analysis of Fly Ash–Aluminum Coatings Using Experimental Design and ANN,” Tribology Transactions, 53, pp 533–542.
  • Saravanan, R. A., Surappa, M. K., and Pramila Bai, B. N. (1997), “Erosion of A356 Al-SiCp Composites Due to Multiple Particle Impact,” Wear, 202, pp 154–164.
  • Mishra, S. C., Das, S., Satapathy, A., Ananthapadmanabhan, P. V., and Sreekumar, K. P. (2009), “Erosion Wear Analysis of Plasma Sprayed Ceramic Coating Using the Taguchi Technique,” Tribology Transactions, 52, pp 401–404.
  • Patnaik, A., Satapathy, A., and Mahapatra, S. S. (2009), “Study on Erosion Response of Hybrid Composites Using Taguchi Experimental Design,” Journal of Engineering Materials and Technology, 131, pp. 1–16.
  • Behera, A., Asit Behera, Mishra, S. C., Pani, S., and Parida, P. (2015), “Air Jet Erosion Test on Plasma Sprayed Surface by Varying Erodent Impingement Pressure and Impingement Angle,” Materials Science and Engineering, 75, pp. 1–8.
  • Kumar, S., Subramanya Sarma, V., and Murty, B. S. (2008), “A Statistical Analysis on Erosion Wear Behaviour of A356 Alloy Reinforced with in situ Formed TiB2 Particles,” Materials Science and Engineering A, 476, pp 333–340.
  • Biswas, S., and Satapathy, A. (2009), “Tribo-Performance Analysis of Red Mud Filled Glass–Epoxy Composites Using Taguchi Experimental Design,” Materials & Design, 30, pp 2841–2853.
  • Sahu, S. P., Satapathy, A., Patnaik, A., Sreekumar, K. P., and Ananthapadmanabhan, P. V. (2010), “Development, Characterization and Erosion Wear Response of Plasma Sprayed Fly Ash–Aluminum Coatings,” Materials & Design, 31, pp 1165–1173.
  • Taguchi, G., and Konishi, S. (1987), Taguchi Methods, Orthogonal Arrays and Linear Graphs: Tools for Quality Engineering, American Supplier Institute: Dearborn, MI.
  • Taguchi, G. (1990), Introduction to Quality Engineering, Asian Productivity Organization: Tokyo, Japan.
  • Ross, P. J. (1988), Taguchi Techniques for Quality Engineering—Loss Function, Orthogonal Experiments, Parameter and Tolerance Design, McGraw-Hill: New York.
  • Mantry, S., Mishra, S. K., Debidutta Debasish, Jha, B. B., and Mishra, B. K. (2013), “Erosive Wear Analysis of Plasma Sprayed Cermet Coatings Using Copper Slag-Al Composite Coatings,” Tribology Transactions, 56, pp 196–202.
  • Mantry, S., Jha, B. B., Mandal, A., Chakraborty, M., and Mishra, B. K. (2014), “Abrasive Wear Analysis of Plasma-Sprayed LaCeYSZ Nanocomposite Coatings Using Experimental Design and ANN,” Tribology Transactions, 57, pp 919–927.
  • Sahoo, A. K., Tiwari, M. K., and Mileham, A. R. (2008), “Six Sigma Based Approach to Optimize Radial Forging Operation Variables,” Journal of Materials Processing Technology, 202, pp 125–136.
  • Sahoo, R., Mantry, S., Sahoo, T. K., Mishra, S., and Jha, B. B. (2013), “Effect of Microstructural Variation on Erosion Wear Behaviour of Ti-6Al-4V Alloy,” Tribology Transactions, 56, pp 555–560.
  • Bagci, M. and Imrek, H. (2013), “Application of Taguchi Method on Optimization of Testing Parameters for Erosion of Glass Fiber Reinforced Epoxy Composite Materials,” Materials and Design, 46, pp 706–712.
  • Deepak Kumar, S., Mandal, A., and Chakraborty, M. (2015), “On the Age Hardening Behavior of Thixoformed A356-5TiB2 in situ Composite,” Materials Science and Engineering A, 636, pp 254–262.
  • Mantry, S., Sahoo, R., Jha, B. B., Mishra, B. K., and Chakraborty, M. (2014), “Tribo-Performance of Plasma-Sprayed Nanostructured Yttria-Stabilized Zirconia Coatings Using Taguchi's Experimental Design,” Journal of Engineering Tribology, 228(8), pp 872–880.
  • Das, S., Mondal, D. P., and Sawla, S. (2004), “Solid Particle Erosion of Al Alloy and Al-Alloy Composites: Effect of Heat Treatment and Angle of Impingement,” Metallurgical and Materials Transactions A, 35, pp 1369–1379.

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