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Research Paper

Design and evaluation of an enhanced constrained rod casting mould for experimental characterisation of hot tearing in aluminium casting alloys

Pages 201-216 | Received 30 Apr 2016, Accepted 18 Jan 2017, Published online: 17 Feb 2017

References

  • Cao G, Kou S. Hot cracking of binary Mg–Al alloy castings. Mater Sci Eng A. 2006;417:230–238.10.1016/j.msea.2005.10.050
  • Argo D, Pekguleryuz M, Labelle P, et al. Process parameters and die-casting of Noranda’s AJ52 high-temperature Mg–Al–Sr alloy. Min Met Mat Soc. 2002;87–93.
  • Zheng Z, Hort N, Huang Y, et al. Quantitative determination of hot tearing in Mg–Al binary alloys. Mater Sci. 2009;618–619:533–540.
  • Kamga HK, Larouche D, Bournane M, et al. Hot tearing of aluminum–copper B206 alloys with iron and silicon additions. Mater Sci Eng A. 2010;527:7413–7423.10.1016/j.msea.2010.08.025
  • Monroe C, Beckermann C. Development of a hot tear indicator for steel castings. Mater Sci Eng A. 2005;413–414:30–36.10.1016/j.msea.2005.09.047
  • Monroe C, Beckermann C. Prediction of hot tearing using a dimensionless Niyama criterion. JOM. 2014Jun;66(8):1439–1445.10.1007/s11837-014-0999-7
  • Sigworth GK. Fundamentals of solidification in aluminum castings. Int J Met cast. 2014;8(1):7–20.
  • Korojy B. Volume change effects during solidification of alloys [Doctoral thesis]; 2009 Jun.
  • Elger DF, Williams BC, Crowe CT. Engineering fluid mechanics. 10th ed. Hoboken (NJ): Wiley. p. 170–185.
  • Mitsubishi Engineering: Plastic Corporation. Mold designing. Hiratsuka.
  • MAGMA. Gießereitechnologie GmbH. Aachen. Kackertstraße 11. Aachen.
  • Dubey SN. Study of hot tearing evaluation methods and quantification of contraction forces in die casting alloys [dissertation]. Ohio State University; 2015.
  • Ometek Incorporated. 790 Cross. Pointe Rd. Columbus (OH).
  • SolidWorks. Waltham (MA): Dassault Systèmes: SolidWorks. Corporation175. Wyman St. Waltham (MA).
  • Futek: Advanced Sensor Technology. 10 Thomas. Irvine (CA).
  • Quartz Scientific. 819 East St, Fairport Harbor (OH).
  • Data acquisition: measurement computing. Commerce Way. Norton (MA).
  • Trialco Inc. 900 E Lincoln Hwy. Chicago Heights (IL).
  • Dubey, SN. Study of hot tearing evaluation methods and quantification of contraction forces in die casting alloys [dissertation] Columbus (OH): the Ohio State University; 2015.
  • ProCAST. 100--102. Avenue. de Suffren. 75015. Paris. France.
  • Bai QL, Li Y, Li HX, et al. Roles of alloy composition and grain refinement on hot tearing susceptibility of 7999 aluminum alloys. Metall Mater Trans A. 2016Aug;47A:4080–4091.10.1007/s11661-016-3588-2
  • D’Elia F, Ravindran C, Sediako D, et al. Hot tearing mechanisms of B206 aluminum–copper alloy. Mat Des. 2014;64:44–55.
  • Esfahani N, Niroumand B. Study of hot tearing of A206 aluminum alloy using instrumented constrained T-shaped casting method. Mat Charact. 2010;61:318–324.10.1016/j.matchar.2009.12.015
  • Li S, Sadayappan K, Apelian D. Effects of mold temperature and pouring temperature on the hot tearing of cast Al–Cu alloys. Met Mat Trans B. 2016Oct;47:2979–2990.10.1007/s11663-016-0739-1
  • Brian G, Thomas BG. Modeling of hot tearing and other defects in casting processes: fundamentals of modeling for metals processing. ASM Handb. 2009;22A: 362–374.

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