Improvement of the cavitation erosion resistance of UNS S31803 stainless steel by duplex treatment


Autoria(s): MESA, D. H.; Pinedo, Carlos Eduardo; Tschiptschin, Andre Paulo
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

18/10/2012

18/10/2012

2010

Resumo

A duplex surface treatment consisting of High Temperature Gas Nitriding (HTGN) followed by Low Temperature Plasma Nitriding (LTPN) was carried out in an UNS S31803 duplex stainless steel. The HTGN treatment was intended to produce a relatively thick and hard fully austenitic layer giving mechanical support to the thinner and much harder expanded austenite layer. HTGN was performed at 1200 degrees C for 3 h, in a 0.1 MPa N(2) atmosphere while LTPN, was carried out in a 75% N(2) + 25% H(2) atmosphere, at 400 degrees C for 12 h, under a 250 Pa pressure, and 450 V. An expanded austenite gamma(N) layer, 2.3 mu m thick, 1500 HVO.025 hard, was formed on top of a 100 mu m thick, 330 HV 0.1 hard, fully austenitic layer, containing 0.9 wt% N. For comparison purposes LTPN was carried out with UNS S30403 stainless steel specimens obtaining a 4.0 mu m thick, 1500 HV 0.025 hard, expanded austenite layer formed on top of a fully austenitic matrix having 190 HV 0.1. The nitrided specimens were tested in a 20 kHz vibratory cavitation-erosion testing equipment. Comparison between the duplex treated UNS S31803 steel and the low temperature plasma nitrided UNS S30403 steel, resulted in incubation times almost 9 times greater. The maximum cavitation wear rate of the LTPN UNS S30403 was 5.5 g/m(2)h, 180 times greater than the one measured for the duplex treated UNS S31803 steel. The greater cavitation wear resistance of the duplex treated UNS S31803 steel, compared to the LTPN treated UNS S30403 steel was explained by the greater mechanical support the fully austenitic, 330 HV 0.1 hard, 100 mu m layer gives to the expanded austenite layer formed on top of the specimen after LTPN. A strong crystallographic textured surface, inherited from the fully austenitic layer formed during HTGN, with the expanded austenite layer showing {101} crystallographic planes//surface contributed also to improve the cavitation resistance of the duplex treated steel. (C) 2010 Elsevier B.V. All rights reserved.

Identificador

SURFACE & COATINGS TECHNOLOGY, v.205, n.5, p.1552-1556, 2010

0257-8972

http://producao.usp.br/handle/BDPI/18405

10.1016/j.surfcoat.2010.10.014

http://dx.doi.org/10.1016/j.surfcoat.2010.10.014

Idioma(s)

eng

Publicador

ELSEVIER SCIENCE SA

Relação

Surface & Coatings Technology

Direitos

restrictedAccess

Copyright ELSEVIER SCIENCE SA

Palavras-Chave #Cavitation-erosion #Plasma nitriding #Gas nitriding #Grain boundary engineering #WATER #Materials Science, Coatings & Films #Physics, Applied
Tipo

article

proceedings paper

publishedVersion