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Canadian Metallurgical Quarterly
The Canadian Journal of Metallurgy and Materials Science
Volume 53, 2014 - Issue 3
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Original Article

Development of TiC reinforced austenitic manganese steel

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Pages 317-325 | Received 02 Jan 2014, Accepted 04 Apr 2014, Published online: 11 Jun 2014

References

  • Tjong SC and Ma ZY: ‘Microstructural and mechanical characteristics of in situ metal matrix composites’, Mater. Sci. Eng. R Rep., 2000, R29, 49–113.
  • Anal A, Bandyopadhyay TK and Das K: ‘Synthesis and characterization of TiB2-reinforced iron-based composite’, J. Mater. Proc. Technot., 2006, 172, 70–76.
  • Avery HS: ‘Austenitic manganese steel metals handbook’, 8th edn, vol.1, 834–842; 1961, American Society for Metals, USA.
  • Curiel Reyna E, Contreras J, Rangel-Ortis T, Herrera A, Banos L, Real Adel and Rodriguez ME: ‘Effect of carbide precipitation on the structure and hardness in the heat-affected zone of hadfield steel after post-cooling treatments’, Mater. Man. Proc., 2008, 23, 14–20.
  • Srivastava AK and Das K: ‘Microstructural characterization of Hadfield austenitic manganese steel’, J. Mater. Sci. Lett., 2008, 43, 5654–5658.
  • Du XD, Sun GD, Wang YF, Yang JFWangamdHY: ‘Abrasion behavior of high manganese steel under low impact energy and corrosive conditions’, Adv. Tribol., 2009, 2009, 685648.
  • Du XD, Yang XJ, Wang YF and Wang L: ‘Impact corrosion wear properties and mechanism of lining board steels’, J. Eng. Tribol., 2009, 223, 729–733.
  • Wang Y, Qiu C, Lu CH and Zhang L: ‘Effect of conventional cold rolling on wear-resisting performance of high manganese steel’, Adv. Mater. Res., 2011, 284–286, 1493–1497.
  • Mendez J, Ghoreshy M, Mackay WBF, Smith TJN and Smit RW: ‘Weldability of austenitic manganese steel’, J. Mater. Proc. Technol., 2004, 153–154, 596–602.
  • Srivastava AK and Das K: ‘Microstructural and mechanical characterization of in situ TIC and (Ti, W) C-reinforced high manganese austenitic steel matrix composites’, Mater. Sci. Eng. A, 2009, A516, 1–6.
  • Srivastava AK and Das K: ‘The abrasive wear resistance of TIC and (Ti, W) C reinforced Fe-l7Mn austenitic steel matrix composites’, Tribol. Int., 2010, 43, 944–950.
  • Srivastava AK and Das K: ‘Microstructure and abrasive wear study of (Ti, W) C-reinforced high-manganese austenitic steel matrix composite’, Mater. Lett., 2008, 62, 3947–3950.
  • Ma YP, Wang X.-LCH and Lu L: ‘Microstructure and impact wear resistance of TiN reinforced high manganese steel matrix’, J. Iron Steel Res. Int., 2012, 19, (7), 60–65.
  • Moghaddama EG, Varahrama N and Davamia P: ‘On the comparison of microstructural characteristics and mechanical properties of high-vanadium austenitic manganese steels with the Hadfield steel’, Mater. Sci. Eng. A, 2012, A532, 260–266.
  • Zhang GS, Xing JD and Gao YM: ‘Impact wear resistance of WC/Hadfield steel composite and its interfacial characteristics’, Wear, 2006, 260, 728–734.
  • Gowtama DS, Ziyauddinb M, Mohapea M, Sontakkea SS, Deshmukha VP and Shaha AK: ‘In situ TiC-reinforced austenitic steel composite by self-propagating high temperature synthesis’, Int. J. Self-Propag. High Temp. Synth., 2007, 16, (2), 70–78.
  • Hu SW, Zhao YG, Wang Z, Li YG and Jiang QC: ‘Fabrication of in situ TiC locally reinforced manganese steel matrix composite via combustion synthesis during casting’, J. Mater. Des., 2013, 44, 340–345.
  • Weglewski W, Bochenek K, Basista M, Schubert T, Jehring U, Litniewski J and Mackiewicz S: ‘Comparative assessment of Young’s modulus measurements of metal–ceramic composites using mechanical and non-destructive tests and micro-CT based computational modeling’, Compos. Mater. Sci., 2013, 77, 19–30.
  • Majumdar P, Singh SB and Chakraborty M: ‘Elastic modulus of biomedical titanium alloys by nano-indentation and ultrasonic techniques—A comparative study’, Mater. Sci. Eng. A, 2008, A489, 419–425.
  • Ma FC, Lu WJ, Qin JN and Zhang D: ‘Effect of forging temperature on microstructure and mechanical properties of in situ (TiB+TiC)/Ti composites’, Mater. Trans., 2006, 47, (7), 1750–1754.
  • Wu Q, Sun Y, Yang C, Xue F and Song F: ‘Microstructure and mechanical properties of common straight carbon steels strengthened by TiC dispersion’, Mater. Trans., 2006, 47, (9), 2393–2398.
  • Thimmarayan R and Thanigaiyarasu G: ‘Effect of particle size, forging and ageing on the mechanical fatigue characteristics of Al6082/SiCp metal matrix composites’, Int. J. Adv. Manuf. Technol., 2010, 48, 625–632.
  • Rai RN, Prasada Rao AK, Dutta GL and Chakraborty M: ‘Forming behaviour of Al-TiC in-situ composites’, Mater. Sci. Forum., 2013, 765, 418–422.
  • de VL, Freitas A, de Albuquerque VHC, Silva EdeM, Silva AA and Tavares JMRS: ‘Nondestructive characterization of microstructures and determination of elastic properties in plain carbon steel using ultrasonic measurements’, Mater. Sci. Eng. A, 2010, A527, 4431–4437.
  • Kumar A, Jayakumar T, Raj B and Ray KK: ‘Correlation between ultrasonic shear wave velocity and Poisson’s ratio for isotropic solid materials’, Acta Mater., 2003, 51, 2417–2426.
  • Parveen N and Murthy GVS: ‘Determination of elastic modulus in nickel alloy from ultrasonic measurements’, Bull. Mater. Sci., 2011, 34, (2), 323–326.
  • Mussert KM, Vellinga WP, Bakker A and van der zwaag S: ‘A nano-indentation study on the mechanical behaviour of the matrix material in an AA6061-Al2O3 MMC’, J. Mater. Sci., 2002, 37, 789–794.
  • Leggoe JW: ‘Determination of the elastic modulus of microscale ceramic particles via nanoindentation’, J. Mater. Res., 2004, 19, (8), 2437–2447.
  • Shuman DJ, Costa ALM and Andrade MS: ‘Calculating the elastic modulus from nanoindentation and microindentation reload curves’, Mater. Charact., 2007, 58, 380–389.
  • Oliver WC and Pharr GM: ‘Measurement of hardness and elastic modulus by instrumented indentation: Advances in understanding and refinements to methodology’, J. Mater. Res., 2004, 19, (1), 3–20.
  • Bandyopadhyay TK, Chatterjee S and Das K: ‘Synthesis and characterization of TiC-reinforced iron-based composites, Part I On synthesis and microstructural characterization’, J. Mater. Sci., 2004, 39, 5735–5742.
  • Kattamis TZ and Suganuma T: ‘Solidification processing and tribological behavior of particulate TiC-ferrous matrix composites’, Mater. Sci. Eng. A, 1990, A128, 241–252.
  • Ozben T, Kilickap E and akir OC: ‘Investigation of mechanical and machinability properties of SiC particle reinforced Al-MMC’, J. Mater. Proc. Technol., 2008, 198, 220–225.
  • Singh D, Rao PN and Jayaganthan R: ‘Microstructures and impact toughness behavior of Al 5083 alloy processed by cryorolling and afterwards annealing’, Int. J. Miner., Metall. Mater., 2013, 20, (8), 759–756.
  • He ZM, Jiang QC, Fu SB and Xie JP: ‘Improved work-hardening ability and wear resistance of austenitic manganese steel under non-severe impact-loading conditions’, Wear, 1987, 120 , 305–319.
  • Mikihito H and Chu KY: ‘Strength of high manganese steel/carbon steel hybrid gider’, Trans. JWRI, 2009, 38, (1), 69–74.
  • Lee JC and Subramanian KN: ‘Young’s modulus of cold- and hot-rolled (Al2O3)p-Al composite’, J. Mater. Sci., 1994, 29, 4901–4905.
  • Asmani M, Kermel C, Leriche A and Ourak M: ‘Influence of porosity on Young’s modulus and Poisson’s ratio in alumina ceramics’, J. Eur. Ceram. Soc., 2001, 21, 1081–1086.
  • AL-Nesearaw MA.-N: ‘Using the ultrasonic waves for studying thermal and elastic Properties as a function of porosity in sintered ceramic’, J. Pure Appl. Sci., 2008, 21, (4), 45–55.
  • Parashivamurthy KI, Kumar RK, Seetharamu S and Chandrasekharaiah MN: ‘Review on TiC reinforced steel composites’, J. Mater. Sci., 2001, 36, 4519–4530.

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