Cavitation and strain-induced transformation: the austenite phase behavior in a soft martensitic and an austenitic stainless steel *

被引:2
|
作者
Brunatto, Silvio Francisco [1 ]
Cardoso, Rodrigo Perito [2 ]
Santos, Leonardo Luis [3 ]
机构
[1] UFPR, Cavitat Div Plasma & Powder Technol Lab LTPP, Dept Mech Engn, Plasma Assisted Mfg Technol & Powder Met Grp, BR-81531990 Curitiba, Parana, Brazil
[2] Univ Fed Santa Catarina, Dept Mech Engn, BR-88040900 Florianopolis, SC, Brazil
[3] UFPR, Grad Program Mat Sci & Engn PIPE, BR-81531990 Curitiba, Parana, Brazil
关键词
Cavitation; ASTM CA-6NM soft martensitic stainless steel; AISI 304 austenitic stainless steel; Strain-induced phase transformation; Reversed austenite; thermally-stable austenite; alpha '(bcc)- / epsilon(hcp)- martensite; STACKING-FAULT ENERGY; EROSION RESISTANCE; GENERAL MECHANISM; NUCLEATION; IMPROVEMENT;
D O I
10.1088/2051-672X/ac8758
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In this work the behavior of the austenite phase at the surface of a low-carbon martensitic stainless steel and an austenitic stainless steel subjected to cavitation through ultrasonic vibration tests in liquid phase was studied. Emphasis was given to the behavior of two distinct types of austenite, in the case the reversed austenite of the as-tempered ASTM CA-6NM martensitic stainless steel, and the thermally-stable austenite of the solution-treated AISI 304 austenitic stainless steel. The evolution of phases fraction at the studied surfaces by XRD technique was characterized by two ways. Firstly, cavitation test intercalated with XRD measurements as a function of the test time was carried out. In the sequence, an indirect measurement technique comprising the use of Vickers indentation and controlled material removal by polishing, also intercalated with XRD characterization along the incubation period of both steels was used. This procedure was strong enough to determine the mechanism that precedes the erosive wear defining the incubation-acceleration stages transition and the cavitation-affected depth presenting gamma(austenite)->alpha '(martensite) strain-induced transformation in the material microstructure, measured from the surface of the tested region into the interior of the substrate bulk of each studied steel. Such mechanism covers deformation of the steel matrix and strain-induced transformation of the austenite phase at the surfaces subjected to cavitation, strongly influencing the beginning of the significant mass loss process for both low-carbon stainless steels studied here.
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页数:14
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