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2017 | OriginalPaper | Buchkapitel

4. Active Screen Plasma Nitriding

verfasst von : Hossein Aghajani, Sahand Behrangi

Erschienen in: Plasma Nitriding of Steels

Verlag: Springer International Publishing

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Abstract

Conventional plasma nitriding has some limitations and disadvantages such as edge effect, hollow-cathode effect (The hollow-cathode effect usually seen in industry resulted by incorrect fixturing. This problem arises from insufficient distance between the parts to be nitrided. In this case, the glow discharge of near specimens are overlapped in cavities leads to the cascading of current densities and severe overheating of the parts.), distortion, and overheating of the specimen. Because of the above-mentioned problems, some new methods were presented to avoid the direct formation of plasma on the surface and consequent problems. One of the methods is active screen or cathodic cage plasma nitriding.

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Literatur
1.
Zurück zum Zitat Soltani Asadi Z, Mahboubi F (2012) Effect of component’s geometry on the plasma nitriding behavior of AISI 4340 steel. Mater Des 34:516–521 Soltani Asadi Z, Mahboubi F (2012) Effect of component’s geometry on the plasma nitriding behavior of AISI 4340 steel. Mater Des 34:516–521
2.
Zurück zum Zitat Yazdani A, Soltanieh M, Aghajani H, Rastegari S (2011) A new method for deposition of nano sized titanium nitride on steels. Vac 86:131–139 Yazdani A, Soltanieh M, Aghajani H, Rastegari S (2011) A new method for deposition of nano sized titanium nitride on steels. Vac 86:131–139
3.
Zurück zum Zitat Ribeiro K J B, de Sousa R R M, de Ara´ujo F O, de Brito R A, Barbosa J C P, Alves Jr C (2008) Industrial application of AISI 4340 steels treated in cathodic cage plasma nitriding technique. Mater Sci Eng A 479:142–147 Ribeiro K J B, de Sousa R R M, de Ara´ujo F O, de Brito R A, Barbosa J C P, Alves Jr C (2008) Industrial application of AISI 4340 steels treated in cathodic cage plasma nitriding technique. Mater Sci Eng A 479:142–147
4.
Zurück zum Zitat Kurelo B C E S, de Souza G B, Rutz da Silva S L, Daudt N de F, Alves Jr C, Torres R D, Serbena F C (2015) Tribo-mechanical features of nitride coatings and diffusion layers produced by cathodic cage technique on martensitic and supermartensitic stainless steels. Surf Coat Technol 275:41–50 Kurelo B C E S, de Souza G B, Rutz da Silva S L, Daudt N de F, Alves Jr C, Torres R D, Serbena F C (2015) Tribo-mechanical features of nitride coatings and diffusion layers produced by cathodic cage technique on martensitic and supermartensitic stainless steels. Surf Coat Technol 275:41–50
5.
Zurück zum Zitat Lin K, Li X, Su Y, Luo X, Dong H (2014) Active screen plasma nitriding of 316 stainless steel for the application of bipolar plates in proton exchange membrane fuel cells. Int J Hydrog Energy 39:21470–21479 Lin K, Li X, Su Y, Luo X, Dong H (2014) Active screen plasma nitriding of 316 stainless steel for the application of bipolar plates in proton exchange membrane fuel cells. Int J Hydrog Energy 39:21470–21479
6.
Zurück zum Zitat (1991) ASM Handbook Vol. 4, Heat Treating. ASM International, United States of America (1991) ASM Handbook Vol. 4, Heat Treating. ASM International, United States of America
7.
Zurück zum Zitat Griin R, Giinther H J, (1991) Plasma nitriding in industry-problems, new solutions and limits. Mater Sci Eng A 140:435–441 Griin R, Giinther H J, (1991) Plasma nitriding in industry-problems, new solutions and limits. Mater Sci Eng A 140:435–441
8.
Zurück zum Zitat Gallo S C, Dong H (2012) New insights into the mechanism of low-temperature active-screen plasma nitriding of austenitic stainless steel. Scr Mater 67:89–91 Gallo S C, Dong H (2012) New insights into the mechanism of low-temperature active-screen plasma nitriding of austenitic stainless steel. Scr Mater 67:89–91
9.
Zurück zum Zitat Hubbard P, Dowey S J, Doyle E D, McCulloch D G (2006) Influence of bias and in situ cleaning on through cage (TC) or active screen plasma nitrided (ASPN) steels. Surf Eng 22:243–247 Hubbard P, Dowey S J, Doyle E D, McCulloch D G (2006) Influence of bias and in situ cleaning on through cage (TC) or active screen plasma nitrided (ASPN) steels. Surf Eng 22:243–247
10.
Zurück zum Zitat Gallo S C, Dong H (2010) On the fundamental mechanisms of active screen plasma nitriding. Vac 84:321–325 Gallo S C, Dong H (2010) On the fundamental mechanisms of active screen plasma nitriding. Vac 84:321–325
11.
Zurück zum Zitat de Sousa R R M, de Arau´jo F O, da Costa J A P, Dumelow T, de Oliveira R S, Alves Jr C (2009) Nitriding in cathodic cage of stainless steel AISI 316: Influence of sample position. Vac 83:1402–1405 de Sousa R R M, de Arau´jo F O, da Costa J A P, Dumelow T, de Oliveira R S, Alves Jr C (2009) Nitriding in cathodic cage of stainless steel AISI 316: Influence of sample position. Vac 83:1402–1405
12.
Zurück zum Zitat Alves Jr C, de Araújo F O, Ribeiro K J B, da Costa J A P, Sousa R R M, de Sousa R S (2006) Use of cathodic cage in plasma nitriding. Surf Coat Technol 201:2450–2454 Alves Jr C, de Araújo F O, Ribeiro K J B, da Costa J A P, Sousa R R M, de Sousa R S (2006) Use of cathodic cage in plasma nitriding. Surf Coat Technol 201:2450–2454
13.
Zurück zum Zitat Li C X, Georges J, Li X Y (2002) Active screen plasma nitriding of austenitic stainless steel. Surf Eng 18:453–457 Li C X, Georges J, Li X Y (2002) Active screen plasma nitriding of austenitic stainless steel. Surf Eng 18:453–457
14.
Zurück zum Zitat de Sousa R R M, de Araújo F O, Gontijo L C, da Costa J A P, Alves Jr C (2012) Cathodic cage plasma nitriding (CCPN) of austenitic stainless steel (AISI 316): Influence of the different ratios of the (N2/H2) on the nitrided layers properties. Vac 86:2048–2053 de Sousa R R M, de Araújo F O, Gontijo L C, da Costa J A P, Alves Jr C (2012) Cathodic cage plasma nitriding (CCPN) of austenitic stainless steel (AISI 316): Influence of the different ratios of the (N2/H2) on the nitrided layers properties. Vac 86:2048–2053
15.
Zurück zum Zitat Li C X, Bell T (2004) Sliding wear properties of active screen plasma nitrided 316 austenitic stainless steel. Wear 256:1144–1152 Li C X, Bell T (2004) Sliding wear properties of active screen plasma nitrided 316 austenitic stainless steel. Wear 256:1144–1152
16.
Zurück zum Zitat Li C X, Bell T (2004) Corrosion properties of active screen plasma nitrided 316 austenitic stainless steel. Corros Sci 46:1527–1547 Li C X, Bell T (2004) Corrosion properties of active screen plasma nitrided 316 austenitic stainless steel. Corros Sci 46:1527–1547
17.
Zurück zum Zitat de Sousa R R M, de Ara´ujo F O, Barbosa J C P, Ribeiro K J B, da Costa J A P, Alves Jr C (2008) Nitriding using cathodic cage technique of austenitic stainless steel AISI 316 with addition of CH4. Mater Sci Eng A 487:124–127 de Sousa R R M, de Ara´ujo F O, Barbosa J C P, Ribeiro K J B, da Costa J A P, Alves Jr C (2008) Nitriding using cathodic cage technique of austenitic stainless steel AISI 316 with addition of CH4. Mater Sci Eng A 487:124–127
18.
Zurück zum Zitat Nishimoto A, Nagatsuka K, Narita R, Nii H, Akamatsu K (2010) Effect of the distance between screen and sample on active screen plasma nitriding properties. Surf Coat Technol 205:S365–S368 Nishimoto A, Nagatsuka K, Narita R, Nii H, Akamatsu K (2010) Effect of the distance between screen and sample on active screen plasma nitriding properties. Surf Coat Technol 205:S365–S368
19.
Zurück zum Zitat Ahangarani Sh, Sabour A R, Mahboubi F (2007) Surface modification of 30CrNiMo8 low-alloy steel by active screen setup and conventional plasma nitriding methods. Appl Surf Sci, 254:1427–1435 Ahangarani Sh, Sabour A R, Mahboubi F (2007) Surface modification of 30CrNiMo8 low-alloy steel by active screen setup and conventional plasma nitriding methods. Appl Surf Sci, 254:1427–1435
20.
Zurück zum Zitat Ahangarani Sh, Sabour A R, Mahboubi F, Shahrabi T (2009) The influence of active screen plasma nitriding parameters on corrosion behavior of a low-alloy steel. J Alloys Compd 484:222–229 Ahangarani Sh, Sabour A R, Mahboubi F, Shahrabi T (2009) The influence of active screen plasma nitriding parameters on corrosion behavior of a low-alloy steel. J Alloys Compd 484:222–229
21.
Zurück zum Zitat Ahangarani Sh, Mahboubi F, Sabour A R (2006) Effects of various nitriding parameters on active screen plasma nitriding behavior of a low-alloy steel. Vac 80:1032–1037 Ahangarani Sh, Mahboubi F, Sabour A R (2006) Effects of various nitriding parameters on active screen plasma nitriding behavior of a low-alloy steel. Vac 80:1032–1037
22.
Zurück zum Zitat de Sousa R R M, de Ara´ujo F O, Ribeiro K J B, Mendes M W D, da Costa J A P, Alves Jr C (2007) Cathodic cage nitriding of samples with different dimensions. Mater Sci Eng A 465:223–227 de Sousa R R M, de Ara´ujo F O, Ribeiro K J B, Mendes M W D, da Costa J A P, Alves Jr C (2007) Cathodic cage nitriding of samples with different dimensions. Mater Sci Eng A 465:223–227
23.
Zurück zum Zitat Li C X, Bell T, Dong H (2002) A study of active screen plasma nitriding. Surf Eng 18:174–181 Li C X, Bell T, Dong H (2002) A study of active screen plasma nitriding. Surf Eng 18:174–181
24.
Zurück zum Zitat Zhao C, Li C X, Dong H, Bell T (2006) Study on the active screen plasma nitriding and its nitriding mechanism. Surf Coat Technol 201:2320–2325 Zhao C, Li C X, Dong H, Bell T (2006) Study on the active screen plasma nitriding and its nitriding mechanism. Surf Coat Technol 201:2320–2325
25.
Zurück zum Zitat Li Y, Wang L, Zhang D, Shen L (2010) Influence of bias voltage on the formation and properties of iron-based nitrides produced by plasma nitriding. (2010) J Alloys Compd 497:285–289 Li Y, Wang L, Zhang D, Shen L (2010) Influence of bias voltage on the formation and properties of iron-based nitrides produced by plasma nitriding. (2010) J Alloys Compd 497:285–289
Metadaten
Titel
Active Screen Plasma Nitriding
verfasst von
Hossein Aghajani
Sahand Behrangi
Copyright-Jahr
2017
DOI
https://doi.org/10.1007/978-3-319-43068-3_4

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