Wear Behavior of Duplex Stainless Steels Sintered …
229
3. The optimum predicted value for forged DSS B under partial vacuum is
0.0133 mm
3 /mm, whereas the experimental value is 0.0140 mm
3 /mm.
References
1. Lo KH, Shek CH, Lai JKL (2009) Recent developments in stainless steels. Mater Sci Eng: R:
Rep 65(4–6):39–104
2. Munez CJ, Utrilla MV, Urena A (2008) Effect of temperature on sintered austeno-ferritic
stainless steel microstructure. J Alloy Compd 463(1–2):552–558
3. Smuk O (2004) Microstructures and properties of modern P/M duplex stainless steels, Doctoral
Thesis, Department of Mat. Science Engg., Royal Institute of Technology, Swedan, pp 1–5,
(2004)
4. Pohl M, Storz O, Glogowski T (2007) Effect of intermetallic precipitations on the properties
of duplex stainless steel. Mater Charact 58(1):65–71
5. Tan H, Jiang Y, Deng B, Sun T, Xu J, Li J (2009) Effect of annealing temperature on the pitting
corrosion resistance of super duplex stainless steel UNS S32750. Mater Charact 60(9):1049–
1054
6. Hwang H, Park Y (2009) Effects of heat treatment on the phase ratio and corrosion resistance
of duplex stainless steel. Mater Trans, 0905110767–0905110767
7. Kim HJ, Jeon SH, Kim ST, Lee IS, Park YS, Kim KT, Kim YS (2014) Investigation of the
sensitization and intergranular corrosion of tube-to-tube sheet welds of hyper duplex stainless
steel using an electrochemical reactivation method. Corros Sci 87:60–70
8. Jeon SH, Kim ST, Lee IS, Park JH, Kim KT, Kim JS, Park YS (2011) Effects of copper addition
on the formation of inclusions and the resistance to pitting corrosion of high performance duplex
stainless steels. Corros Sci 53(4):1408–1416
9. Lu XC, Li S, Jiang X (2001) Effects of σ phase in stainless steels on corrosive wear behavior
in sulfuric acid. Wear 251(1–12):1234–1238
10. Kazior J, Szewczyk-Nykiel A, Pieczonka T, Hebda M, Nykiel M (2013) Properties of precipitation hardening 17-4 PH stainless steel manufactured by powder metallurgy technology. Adv
Mater Res 811:87–92
11. Whitefield DJ, Van Bennekom A (1996) Abrasive wear properties of experimental metastable
duplex stainless steels. Wear 196(1–2):92–99
12. Straffelini G, Trabucco A (2002) Molinari, a sliding wear of austenitic and austenitic–ferritic
stainless steels. Metall Mater Trans 33A:613–623
13. Vignal V, Mary N, Ponthiaux P, Wenger F (2006) Influence of friction on the local mechanical
and electrochemical behaviour of duplex stainless steels. Wear 261(9):947–953
14. Udaya Prakash J, Ananth S, Sivakumar G, Moorthy TV (2018) Multi-objective optimization of
wear parameters for aluminium matrix composites (413/B4C) using grey relational analysis.
Mater Today: Proc 5(2):7207–7216
15. Chinnaraj R, Ramajayam M (2019) studies on mechanical properties of hot-forged duplex
stainless steels sintered in hydrogen atmosphere. J Inst Eng (India): Series D, pp 1–8
16. Sorrentino L, Simeoli G, Iannace S, Russo P (2015) Mechanical performance optimization
through interface strength gradation in PP/glass fibre reinforced composites. Compos B Eng
76:201–208
229
3. The optimum predicted value for forged DSS B under partial vacuum is
0.0133 mm
3 /mm, whereas the experimental value is 0.0140 mm
3 /mm.
References
1. Lo KH, Shek CH, Lai JKL (2009) Recent developments in stainless steels. Mater Sci Eng: R:
Rep 65(4–6):39–104
2. Munez CJ, Utrilla MV, Urena A (2008) Effect of temperature on sintered austeno-ferritic
stainless steel microstructure. J Alloy Compd 463(1–2):552–558
3. Smuk O (2004) Microstructures and properties of modern P/M duplex stainless steels, Doctoral
Thesis, Department of Mat. Science Engg., Royal Institute of Technology, Swedan, pp 1–5,
(2004)
4. Pohl M, Storz O, Glogowski T (2007) Effect of intermetallic precipitations on the properties
of duplex stainless steel. Mater Charact 58(1):65–71
5. Tan H, Jiang Y, Deng B, Sun T, Xu J, Li J (2009) Effect of annealing temperature on the pitting
corrosion resistance of super duplex stainless steel UNS S32750. Mater Charact 60(9):1049–
1054
6. Hwang H, Park Y (2009) Effects of heat treatment on the phase ratio and corrosion resistance
of duplex stainless steel. Mater Trans, 0905110767–0905110767
7. Kim HJ, Jeon SH, Kim ST, Lee IS, Park YS, Kim KT, Kim YS (2014) Investigation of the
sensitization and intergranular corrosion of tube-to-tube sheet welds of hyper duplex stainless
steel using an electrochemical reactivation method. Corros Sci 87:60–70
8. Jeon SH, Kim ST, Lee IS, Park JH, Kim KT, Kim JS, Park YS (2011) Effects of copper addition
on the formation of inclusions and the resistance to pitting corrosion of high performance duplex
stainless steels. Corros Sci 53(4):1408–1416
9. Lu XC, Li S, Jiang X (2001) Effects of σ phase in stainless steels on corrosive wear behavior
in sulfuric acid. Wear 251(1–12):1234–1238
10. Kazior J, Szewczyk-Nykiel A, Pieczonka T, Hebda M, Nykiel M (2013) Properties of precipitation hardening 17-4 PH stainless steel manufactured by powder metallurgy technology. Adv
Mater Res 811:87–92
11. Whitefield DJ, Van Bennekom A (1996) Abrasive wear properties of experimental metastable
duplex stainless steels. Wear 196(1–2):92–99
12. Straffelini G, Trabucco A (2002) Molinari, a sliding wear of austenitic and austenitic–ferritic
stainless steels. Metall Mater Trans 33A:613–623
13. Vignal V, Mary N, Ponthiaux P, Wenger F (2006) Influence of friction on the local mechanical
and electrochemical behaviour of duplex stainless steels. Wear 261(9):947–953
14. Udaya Prakash J, Ananth S, Sivakumar G, Moorthy TV (2018) Multi-objective optimization of
wear parameters for aluminium matrix composites (413/B4C) using grey relational analysis.
Mater Today: Proc 5(2):7207–7216
15. Chinnaraj R, Ramajayam M (2019) studies on mechanical properties of hot-forged duplex
stainless steels sintered in hydrogen atmosphere. J Inst Eng (India): Series D, pp 1–8
16. Sorrentino L, Simeoli G, Iannace S, Russo P (2015) Mechanical performance optimization
through interface strength gradation in PP/glass fibre reinforced composites. Compos B Eng
76:201–208
