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Tytuł artykułu

Estimation of Mold Filling Ability and Volume Deficit Characteristics of Cast Al-Si Alloys

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Production of defect free castings requires good understanding of casting characteristics like mold filling ability and volume deficit characteristic. Pin test piece with cylindrical cores proposed by Engler and Ellerbrok was used to study the mold filling ability. Volume deficit characteristics experiments were conducted using the method designed by Engler. Alloy composition, Mold coat and Pouring temperature were considered as process parameters for the present study and experimental plan has been taken up through design of experiments. The alloy composition is most significant in influencing the mold filling ability, where as pouring temperature is for volume deficit. The Correlation Co-efficient value obtained is -0.98901 indicating strong a negative relation between mold filling ability and volume deficit characteristics. Negative values indicate a relationship between mold filling ability and volume deficit such that as values for mold filling ability increase, for volume deficit decrease.
Rocznik
Tom
Strony
55--65
Opis fizyczny
Bibliogr. 16 poz., fot., rys., tab.
Twórcy
autor
  • Mahatma Gandhi Institute of Technology, India
autor
  • Jawaharlal Nehru Technological University Hyderabad, India
  • National Institute of Technology, Trichy, India
Bibliografia
  • [1] Lewis, R.W., Usmani, A.S. & Cross, J.T. (1995). Efficient mold filling simulation in castings by an explicit finite element method. International Journal for Numerical Methods in Fluids. 20(6), 493-506.
  • [2] Capadona, J.A. & Albright, D.L. (1978). Review of fluidity testing as applied to lost polystyrene investment castings. Trans., AFS. 86, 43.
  • [3] Wood, A.R. & Gregg, J.F. (1952). The casting properties of some nickel base and nickel containing alloys. The British Foundryman. 60, 725.
  • [4] Sundarrajan, S. & Roshan, H.Md. (1989). Studies on mold filling ability characteristics of Mg-Al Alloys. Transactions of American Foundrymen Society. 607-616.
  • [5] Vinarcik, E.J. (2002). High Integrity Die Castings Process, John Wiley & Sons, Inc.
  • [6] Monroe, R. (2005). Porosity in Castings, American Foundry Society, Schaumburg, IL USA. AFS Transactions.1-28.
  • [7] Chvorinov, N. (1940). Theory of the Solidification of Castings. Geisserei. 27, 177-225.
  • [8] Campbell. J. & Oliff, I.D. (1971). Static and dynamic criteria for filling of thin section molds. AFS Cast Metals Research Journal. 7, 55, Jan 1971.
  • [9] Sundarrajan, S. Roshan, H.Md. & Ramachandran, E.G. (1984). Studies on shrinkage characteristics of binary Mg-Al alloys. Transactions of The Indian Institute of Metals. 37(4), August 1984.
  • [10] www.weibull.com/DOEWeb, Chapter 10, 2008.
  • [11] Design of experiments, Release 6, JMP, A Business Unit of SAS, SAS Campus Drive, Cary, NC 27513, 2010, www.jmp.com.
  • [12] Minitab 16, User Manual of MINITAB, 2008, www.minitab.com.
  • [13] ASM Metals Handbook Volume 15, Casting, ASM International, The Materials Information Company, 2004.
  • [14] Di Sabatino, M., Shankar, S. Apelian, D. & Arnberg, L. TMS 2005, Influence of temperature and alloying elements on fluidity of Al-Si alloys Shape Casting: The John Campbell Symposium, Ed. by M. Tiryakioglu and P.N. Crepeau, 2005, (pp.193-202).
  • [15] Sirrell, B. & Campbell, J. (1998). Mechanism of filtration in reduction of casting defects due to surface turbulence during mold filling, AFS Trans. 105 (USA), 645-654.
  • [16] Shepel, S.V. & Paolucci, S. (2002). Numerical simulation of filling and solidification of permanent mold castings. Applied Thermal Engineering. 22, 229-248.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-915393d8-89f2-45ea-83be-f72c5b75322e
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