Interpretation of carbide precipitation and chromium concentration distribution of alloy 690

  • Jang, Kwang Soon
  • Park, Da Som
  • Yu, Yong Jae
  • Kim, Jeong Min
  • Noh, Hyun Seong
  • 외 1명
Citations

SCOPUS

3

초록

Inconel alloy 690 which contains high chromium concentration, has replaced Inconel alloy 600 because of its high resistance of stress corrosion cracking (SCC). Inconel alloy 690 is an austenite nickel-based alloy and it has intergranular chromium carbide (M23C6). Alloy should be maintained to be nearly free from fretting wear, corrosion, and hydrogen brittleness for a several decades. Main factors controlling deterioration are initial chromium carbide size and their distribution along austenite grain boundary and chromium concentration distribution inside of grain. The precipitated carbide along grain boundary are modeled by KJMA(Kolmogorov-Johnson-Mehl- Avrami) equation. The model is based on the classical nucleation theory, and Cr diffusion controlled growth followed by coarsening. The distribution of the chromium concentration near grain boundary with time is based on diffusion of chromium. The simulated results are compared with the experiments from literatures to confirm the validity of model.

키워드

Carbide precipitationChromium depleted zoneInconel 690ModelingAustenite grain boundariesCarbide precipitationChromium carbideChromium concentrationClassical nucleation theoryInconel 690Nickel based alloySimulated resultsAusteniteCarbidesCerium alloysComputer simulationDesignFracture mechanicsGrain boundariesMicrochannelsModelsPrecipitation (chemical)Stress corrosion crackingChromium
제목
Interpretation of carbide precipitation and chromium concentration distribution of alloy 690
저자
Jang, Kwang SoonPark, Da SomYu, Yong JaeKim, Jeong MinNoh, Hyun SeongLee, Kyung Jong
DOI
10.4028/www.scientific.net/AMM.372.84
발행일
2013-08
유형
Conference Paper
저널명
Applied Mechanics and Materials
372
페이지
84 ~ 87