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Articles

Dynamic Properties of Sintered Steel

Pages 183-188 | Published online: 19 Jul 2013

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H. Drar. (2001) Stages of fatigue fracture in nickel alloyed powder metallurgy steel. Materials Science and Technology 17:10, pages 1259-1264.
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Articles from other publishers (14)

Kathhi Palaksha Reddy, Thanjavur Krishnamoorthi Kandavel & Selvaraj Nelson Raja. (2022) Workability and corrosion behavior studies on sintered iron‐based hybrid powder metallurgy alloys. Materials and Corrosion 73:11, pages 1854-1864.
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J.T. Vishnuraj, T.K. Kandavel, I. Sai Kishan & G. Akash. (2018) A study on Deformation and Densification characteristics of P/M Fe-C-Mn alloy Steels under cold upset. Materials Today: Proceedings 5:8, pages 16740-16747.
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G. Akash, T.K. Kandavel, I. Sai Kishan & J.T. Vishnuraj. (2018) Experimental investigations on Deformation, Densification and Mechanical properties of sintered Fe-C-Mn low alloy P/M steels under hot upsetting. Materials Today: Proceedings 5:8, pages 16073-16079.
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M.W. Wu, L.C. Tsao, G.J. Shu & B.H. Lin. (2012) The effects of alloying elements and microstructure on the impact toughness of powder metal steels. Materials Science and Engineering: A 538, pages 135-144.
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T.K. Kandavel, R. Chandramouli & D. Shanmugasundaram. (2009) Experimental study of the plastic deformation and densification behaviour of some sintered low alloy P/M steels. Materials & Design 30:5, pages 1768-1776.
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D. Shanmugasundaram, R. Chandramouli & T. K. Kandavel. (2008) Cold and hot deformation and densification studies on sintered Fe-C-Cr-Ni low alloy P/M steels. The International Journal of Advanced Manufacturing Technology 41:1-2, pages 8-15.
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R. Ivănuş & Liviu Brânduşan. (2007) Effect of Carbon Content and Post-Sintering Cooling Rate on Mechanical Properties of Fe-Ni-Cu-Mo-C High Density Sintered Steel. Advanced Materials Research 23, pages 79-82.
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H. Khorsand, S. M. Habibi, K. Janghorban, H. Yoozbashizade & S. M. S. Reihani. (2004) Fatigue of sintered steels (Fe-1.5 Mo-3 Mn-0.7 C). Materials and Structures 37:5, pages 335-341.
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S. M. Habibi, H. Khorsand, K. Janghorban, H. Yoozbashizadeh & H. Rahmani Seraji. Fatigue Behavior of a Low Alloy P/M Steel. Fatigue Behavior of a Low Alloy P/M Steel.
. (2002) Carbon, porosity and fatigue in sintered steel. Metal Powder Report 57:4, pages 32-36.
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Khw Seah, R. Thampuran & Sh. Teoh. (1998) Parametric studies of the mechanical behaviour of porous titanium. Metals and Materials 4:4, pages 672-675.
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H. Drar & A. Bergmark. (2008) INITIAL FRACTURE MECHANISMS IN NICKEL ALLOYED PM STEEL. Fatigue & Fracture of Engineering Materials & Structures 20:9, pages 1319-1330.
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H. Drar. (1996) Fracture mechanisms near threshold conditions of nickel alloyed PM steel. Engineering Fracture Mechanics 55:6, pages 901-917.
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. (1992) Mechanical properties of nickel-alloyed PM steels. Materials & Design 13:3, pages 155-165.
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