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Tin-Copper-Lead Alloy Produced by Horizontal Centrifugal Casting

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Horizontal centrifugal casting is an effective method for the production of hollow metal with good mechanical properties, low defect, cast to size and relatively cheap. The ability of a metal to satisfy the above requirements highly depends on its microstructure. In this study, the relationship between microstructural parameters such as grain size and the amount of phases with bulk hardness of SnCu4Pb3 is concerned in three areas of the product. Consequently, to achieve the desired hardness of the product in a particular area, the interaction of two factors of the microstructure including, grain size and particles amount of the hard intermetallic compositions (Cu6Sn5) should be noted.
Rocznik
Strony
131--137
Opis fizyczny
Bibliogr. 15 poz., il., tab., wykr.
Twórcy
autor
  • Department of Engineering, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran
Bibliografia
  • [1] Jorstad, J.L. (2008). Centrifugal Casting. In: Marquard, E. Lampman, H. editors. ASM Handbook Volume 15: Casting. Ohio, USA: ASM International, Materials Park;. 665-84.
  • [2] Kapranos, P. Carney, C. Pola, A Jolly, M. (2014). 5.03 - Advanced Casting Methodologies: Investment Casting, Centrifugal Casting, Squeeze Casting, Metal Spinning, and Batch Casting. In: Hashmi, S. Batalha, GF. Tyne, CJV. Yilbas, B. editors. Comprehensive Materials Processing. Oxford: Elsevier; 39-67.
  • [3] Lin, X. Liu, C. Xiao, H. (2013). Fabrication of Al–Si–Mg functionally graded materials tube reinforced with in situ Si/Mg2Si particles by centrifugal casting. Composites Part B: Engineering. 45. 8-21.
  • [4] Luo, D. Wang, H-Y. Ou-Yang, Z-T. Chen, L. Wang, J-G. Jiang, Q-C. (2014). Microstructure and mechanical properties of Mg–5Sn alloy fabricated by a centrifugal casting method. Materials Letters 116. 108-11.
  • [5] Rahvard, M.M. Tamizifar, M. Boutorabi, S.M.A. Gholami Shiri, S. (2014). Characterization of the graded distribution of primary particles and wear behavior in the A390 alloy ring with various Mg contents fabricated by centrifugal casting. Materials & Design 56. 105-14.
  • [6] Vadayar, K.S. Rani, SD. (2014). Characterization of Sn-Bi and Sn-Bi-Zn alloys. Advanced Materials Manufacturing and Characterization 4 51-6.
  • [7] Cullity, B.D. (1978). Elements of X-ray Diffraction. Second ed. London, England: Addison-Wesley publishing company, Inc.
  • [8] Kong, L-X. Yang, B. Xu, B-Q. Li, Y-F. Li, L. Liu, D-C, et al. (2013). Application of molecular interaction volume model in separation of Pb–Sn–Sb ternary alloy by vacuum distillation. Transactions of Nonferrous Metals Society of China 23. 2408-15.
  • [9] Smith, J.F. (2007). Chapter one - Introduction to phase diagrams. In: Zhao, JC, editor. Methods for Phase Diagram Determination. Oxford: Elsevier Science Ltd;. 1-21.
  • [10] Massalski, T.B. (2001). Phase Diagrams. In: Buschow KHJ, Cahn RW, Flemings MC, Ilschner B, Kramer EJ, Mahajan S, et al., editors. Encyclopedia of Materials: Science and Technology (Second Edition). Oxford: Elsevier. 6842-51.
  • [11] A.S.T.M. E384-11, Standard Test Method for Knoop and Vickers Hardness of Materials. Ohio, USA: ASM International; 2011.
  • [12] A.S.T.M. E3-11, Standard Guide for Preparation of Metallographic Specimens. Ohio, USA: ASM International; 2011.
  • [13] A.S.T.M. E407-07, Standard Practice for Microetching Metals and Alloys. Ohio, USA: ASM International; 2007.
  • [14] A.S.T.M. E883-11, Standard Guide for Reflected–Light Photomicrography. Ohio, USA: ASM international; 2011.
  • [15] Dieter, GE. (2000). Mechanical Behavior under tensile and compressive loads. In: Kuhn, H. Medlin, D. editors. Mechanical Testing and Evaluation. Ohio: ASM International 5, 100-3.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-810e74dd-4f5c-44ef-8b3f-f39a44e14668
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