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2017 | OriginalPaper | Buchkapitel

5. Radiofrequency (RF) Plasma Nitriding

verfasst von : Hossein Aghajani, Sahand Behrangi

Erschienen in: Plasma Nitriding of Steels

Verlag: Springer International Publishing

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Abstract

The usual plasma nitriding is done using glow discharge with the workpiece as cathode at pressures between 100 and 1000 Pa. This procedure leads to bombardment of the surface by energetic ions, therefore the temperature is high.

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Fußnoten
1
Plasma Immersion Ion Implantation.
 
Literatur
1.
Zurück zum Zitat Priest J M, Baldwin M J, Fewell M P, Haydon S C, Collins G A, Short K T, Tendys J (1999) Low pressure r.f. nitriding of austenitic stainless steel in an industrial-style heat-treatment furnace. Thin Solid Films 345:113-118 Priest J M, Baldwin M J, Fewell M P, Haydon S C, Collins G A, Short K T, Tendys J (1999) Low pressure r.f. nitriding of austenitic stainless steel in an industrial-style heat-treatment furnace. Thin Solid Films 345:113-118
2.
Zurück zum Zitat Liang W, Xiaolei X, Bin X, Zhiwei Y, Zukun H (2000) Low temperature nitriding and carburizing of AISI304 stainless steel by a low pressure plasma arc source. Surf Coat Technol 131:563-567 Liang W, Xiaolei X, Bin X, Zhiwei Y, Zukun H (2000) Low temperature nitriding and carburizing of AISI304 stainless steel by a low pressure plasma arc source. Surf Coat Technol 131:563-567
3.
Zurück zum Zitat Fewell M P, Priest J M, Baldwin M J, Collins G A, Short K T (2000) Nitriding at low temperature. Surf Coat Technol 131:284-290 Fewell M P, Priest J M, Baldwin M J, Collins G A, Short K T (2000) Nitriding at low temperature. Surf Coat Technol 131:284-290
4.
Zurück zum Zitat El-Hossary F M (2002) The influence of surface microcracks and temperature gradients on the rf plasma nitriding rate. Surf Coat Technol 150:277–281 El-Hossary F M (2002) The influence of surface microcracks and temperature gradients on the rf plasma nitriding rate. Surf Coat Technol 150:277–281
5.
Zurück zum Zitat Mohammadzadeh R, Akbari A, Drouet M (2014) Microstructure and wear properties of AISI M2 tool steel on RF plasma nitriding at different N2–H2 gas compositions. Surf Coat Technol 258:566-573 Mohammadzadeh R, Akbari A, Drouet M (2014) Microstructure and wear properties of AISI M2 tool steel on RF plasma nitriding at different N2–H2 gas compositions. Surf Coat Technol 258:566-573
6.
Zurück zum Zitat Baldwin M J, Fewell M P, Haydon S C, Kumar S, Collins G A, Short K T, Tendys J (1998) Rf-plasma nitriding of stainless steel. Surf Coat Technol 98:1187-1191 Baldwin M J, Fewell M P, Haydon S C, Kumar S, Collins G A, Short K T, Tendys J (1998) Rf-plasma nitriding of stainless steel. Surf Coat Technol 98:1187-1191
7.
Zurück zum Zitat Keddam M (2008) Characterization of the nitrided layers of XC38 carbon steel obtained by R.F. plasma nitriding. Appl Surf Sci 254:2276–2280 Keddam M (2008) Characterization of the nitrided layers of XC38 carbon steel obtained by R.F. plasma nitriding. Appl Surf Sci 254:2276–2280
8.
Zurück zum Zitat Ibrahim M M, EI-Hossary F M, Negm N Z, Abed M (1992) Effect of RF plasma nitriding time on microhardness and corrosion resistance of 304 stainless steel. Appl Surf Sci 59:253-260 Ibrahim M M, EI-Hossary F M, Negm N Z, Abed M (1992) Effect of RF plasma nitriding time on microhardness and corrosion resistance of 304 stainless steel. Appl Surf Sci 59:253-260
9.
Zurück zum Zitat Valencia-Alvarado R, de la Piedad-Beneitez A, de la Rosa-Va´zquez J, Lo´pez-Callejas R, Barocio S R, Godoy-Cabrera O G, Mercado-Cabrera A, Pen˜a-Eguiluz R, Mun˜oz-Castro A E (2008) Nitriding of AISI 304 stainless steel in a 85 % H2/15 % N2 mixture with an inductively coupled plasma source. Vac 82:1360–1363 Valencia-Alvarado R, de la Piedad-Beneitez A, de la Rosa-Va´zquez J, Lo´pez-Callejas R, Barocio S R, Godoy-Cabrera O G, Mercado-Cabrera A, Pen˜a-Eguiluz R, Mun˜oz-Castro A E (2008) Nitriding of AISI 304 stainless steel in a 85 % H2/15 % N2 mixture with an inductively coupled plasma source. Vac 82:1360–1363
10.
Zurück zum Zitat Valencia-Alvarado R, de la Piedad-Beneitez A, de la Rosa-Va´zquez J, Lo´pez-Callejas R, Barocio S R, Godoy-Cabrera O G, Mercado-Cabrera A, Pen˜a-Eguiluz R, Mun˜oz-Castro A E (2007) γN-shift as a function of N2 content in AISI 304 nitriding. Vac 81:1434–1438 Valencia-Alvarado R, de la Piedad-Beneitez A, de la Rosa-Va´zquez J, Lo´pez-Callejas R, Barocio S R, Godoy-Cabrera O G, Mercado-Cabrera A, Pen˜a-Eguiluz R, Mun˜oz-Castro A E (2007) γN-shift as a function of N2 content in AISI 304 nitriding. Vac 81:1434–1438
11.
Zurück zum Zitat Negm N Z (2006) Effect of annealing temperature on properties of H2/N2 rf plasma-treated stainless steel. Surf Coat Technol 201:1763–1767 Negm N Z (2006) Effect of annealing temperature on properties of H2/N2 rf plasma-treated stainless steel. Surf Coat Technol 201:1763–1767
12.
Zurück zum Zitat Negm N Z (2006) A study on rf plasma nitriding at a constant power in different H2–N2 mixtures at different temperatures. Mater Sci Eng B 129:207–210 Negm N Z (2006) A study on rf plasma nitriding at a constant power in different H2–N2 mixtures at different temperatures. Mater Sci Eng B 129:207–210
13.
Zurück zum Zitat Kumar S, Baldwin M J, Fewell M P, Haydon S C, Short K T, Collins G A, Tendys J (2000) The effect of hydrogen on the growth of the nitrided layer in r.f.-plasma-nitrided austenitic stainless steel AISI 316. Surf Coat Technol 123:29–35 Kumar S, Baldwin M J, Fewell M P, Haydon S C, Short K T, Collins G A, Tendys J (2000) The effect of hydrogen on the growth of the nitrided layer in r.f.-plasma-nitrided austenitic stainless steel AISI 316. Surf Coat Technol 123:29–35
14.
Zurück zum Zitat de la Piedad-Beneitez A, Valencia-Alvarado R, López-Callejas R, Rojas-Olmedo I A, Peña-Eguiluz R, Mercado-Cabrera A, Barocio S R, Muñoz-Castro A E, Rodríguez-Méndez B G (2011) Optimized AISI 304 steel nitriding in inductive RF N2-H2 plasmas. Vac 85:1149-1151 de la Piedad-Beneitez A, Valencia-Alvarado R, López-Callejas R, Rojas-Olmedo I A, Peña-Eguiluz R, Mercado-Cabrera A, Barocio S R, Muñoz-Castro A E, Rodríguez-Méndez B G (2011) Optimized AISI 304 steel nitriding in inductive RF N2-H2 plasmas. Vac 85:1149-1151
15.
Zurück zum Zitat Kim S K, Yoo J S, Priest J M, Fewell M P (2003) Characteristics of martensitic stainless steel nitrided in a low-pressure RF plasma. Surf Coat Technol 163–164:380–385 Kim S K, Yoo J S, Priest J M, Fewell M P (2003) Characteristics of martensitic stainless steel nitrided in a low-pressure RF plasma. Surf Coat Technol 163–164:380–385
16.
Zurück zum Zitat Akbari A, Mohammadzadeh R, Templier C, Riviere J P (2010) Effect of the initial microstructure on the plasma nitriding behavior of AISI M2 high speed steel. Surf Coat Technol 204:4114–4120 Akbari A, Mohammadzadeh R, Templier C, Riviere J P (2010) Effect of the initial microstructure on the plasma nitriding behavior of AISI M2 high speed steel. Surf Coat Technol 204:4114–4120
17.
Zurück zum Zitat Egert P, Maliska A M, Silva H R T, Speller C V (1999) Decarburization during plasma nitriding. Surf Coat Technol 221:33–38 Egert P, Maliska A M, Silva H R T, Speller C V (1999) Decarburization during plasma nitriding. Surf Coat Technol 221:33–38
18.
Zurück zum Zitat Bouanis F Z, Bentiss F, Bellayer S, Vogt J B, Jama C (2011) Radiofrequency cold plasma nitrided carbon steel: Microstructural and micromechanical characterizations. Mater Chem Phys 127:329–334 Bouanis F Z, Bentiss F, Bellayer S, Vogt J B, Jama C (2011) Radiofrequency cold plasma nitrided carbon steel: Microstructural and micromechanical characterizations. Mater Chem Phys 127:329–334
19.
Zurück zum Zitat Bouanis F Z, Bentiss F, Traisnel M, Jama C (2009) Enhanced corrosion resistance properties of radiofrequency cold plasma nitrided carbon steel: Gravimetric and electrochemical results. Electrochem Acta 54:2371–2378 Bouanis F Z, Bentiss F, Traisnel M, Jama C (2009) Enhanced corrosion resistance properties of radiofrequency cold plasma nitrided carbon steel: Gravimetric and electrochemical results. Electrochem Acta 54:2371–2378
20.
Zurück zum Zitat Bouanis F Z, Jama C, Traisnel M, Bentiss F (2010) Study of corrosion resistance properties of nitrided carbon steel using radiofrequency N2/H2 cold plasma process. Corros Sci 52:3180–3190 Bouanis F Z, Jama C, Traisnel M, Bentiss F (2010) Study of corrosion resistance properties of nitrided carbon steel using radiofrequency N2/H2 cold plasma process. Corros Sci 52:3180–3190
Metadaten
Titel
Radiofrequency (RF) Plasma Nitriding
verfasst von
Hossein Aghajani
Sahand Behrangi
Copyright-Jahr
2017
DOI
https://doi.org/10.1007/978-3-319-43068-3_5

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