Micro-nanojauges design to monitor surface mechanical state during high temperature oxidation of metals with application to 17-4PH stainless steel

被引:0
|
作者
Hmima, Abdelhamid [1 ]
Din, Malak Kheir Al [2 ]
Gong, Claire [1 ]
Panicaud, Benoit [2 ]
Alhussein, Akram [3 ]
Geandier, Guillaume [4 ]
Lebel, Florimonde [4 ]
Grosseau-Poussard, Jean-Luc [5 ]
Djouda, Joseph Marae [6 ]
Maurer, Thomas [1 ]
Kadiri, Hind [1 ]
机构
[1] Univ Technol Troyes, Light Nanomat Nanotechnol L2n, EMR 7004, CNRS, 12 Rue Marie Curie, F-10000 Troyes, France
[2] Univ Technol Troyes, Life Assessment Struct Mat Mech & Integrated Syst, 12 Rue Marie Curie, F-10000 Troyes, France
[3] UTT, Life Assessment Struct Mat Mech & Integrated Syst, 26 Rue Lavoisier, F-52800 Nogent, France
[4] Univ Lorraine, Inst Jean Lamour, CNRS, IJL, F-54000 Nancy, France
[5] Univ La Rochelle, Lab Sci Ingenieur Environm LaSIE, CNRS UMR 7356, Ave Michel Crepeau 17042, F-1 La Rochelle, France
[6] EPF Ecole Ingenieurs, 3 Bis Rue Lakanal, F-92330 Sceaux, France
关键词
Short oxidation time; High-temperature oxidation; Electron beam lithography process; Nanogauges; Stress determination; Stainless steel; THERMAL-EXPANSION COEFFICIENT; NI-CR ALLOY; GROWTH STRAIN; WATER-VAPOR; CHROMIUM; SILICON; FABRICATION; PROTECTION; RESISTANCE; CONSTANTS;
D O I
10.1016/j.matdes.2024.113341
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Determination of mechanical state of thermal oxide growing during high temperature oxidation is a challenge. Fabrication of nanogauges for monitoring during high temperature oxidation was presently investigated up to 1000 degrees C. Several materials were tested in terms of mechanical behaviour and maximum working temperature for gauges used as markers during thermal loading under air. The experimental determination of the optimized gauges material for high temperature oxidation was validated. SiO2 2 offers particularly interesting features for gauges to determine the mechanical state of metal/oxide system. In this article, a special attention has also been paid to two nano-fabrication processes, as well as their limits. The standard electron beam lithography process is well suited to build gauges for oxidation applications, and can be improved by use of reactive ion etching process. The gauges can eventually reach several micrometers height such that the oxidation layer does not cover the gauges during thermal loading for relevant monitoring at short oxidation times. To illustrate, an application to a 17-4PH stainless steel oxidized at 480 degrees C is proposed and stress kinetics are deduced and related to an advanced thermomechano-chemical model, as well as identification of the numerical values of different thermomechano-chemical parameters associated to mechanisms of growth or relaxation.
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页数:23
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