Published 1991 | Version v1
Report

Stable carbides in transition metal alloys

Description

In the present work different techniques were employed for the identification of stable carbides in two sets of transition metal alloys of wide technological application: a set of three high alloy M2 type steels in which W and/or Mo were total or partially replaced by Nb, and a Zr-2.5 Nb alloy. The M2 steel is a high speed steel worldwide used and the Zr-2.5 Nb alloy is the base material for the pressure tubes in the CANDU type nuclear reactors. The stability of carbide was studied in the frame of Goldschmidt's theory of interstitial alloys. The identification of stable carbides in steels was performed by determining their metallic composition with an energy analyzer attached to the scanning electron microscope (SEM). By these means typical carbides of the M2 steel, MC and M6C, were found. Moreover, the spatial and size distribution of carbide particles were determined after different heat treatments, and both microstructure and microhardness were correlated with the appearance of the secondary hardening phenomenon. In the Zr-Nb alloy a study of the α and β phases present after different heat treatments was performed with optical and SEM metallographic techniques, with the guide of Abriata and Bolcich phase diagram. The α-β interphase boundaries were characterized as short circuits for diffusion with radiotracer techniques and applying Fisher-Bondy-Martin model. The precipitation of carbides was promoted by heat treatments that produced first the C diffusion into the samples at high temperatures (β phase), and then the precipitation of carbide particles at lower temperature (α phase or (α+β)) two phase field. The precipitated carbides were identified as (Zr, Nb)C1-x with SEM, electron microprobe and X-ray diffraction techniques. (Author)

Availability note (English)

Available from Comision Nacional de Energia Atomica, Buenos Aires (AR). Library.

Abstract (Spanish)

En el presente trabajo se identificaron con diferentes tecnicas los carburos estables en aleaciones de metales de transicion de gran interes tecnologico: un conjunto de tres aceros de alta aleacion tipo M2 de diferente composicion en los que el tungsteno y/o el molibdeno han sido total o parcialmente reemplazados por niobio, y una aleacion Zr-2,5 peso Nb. El acero M2 es un acero rapido para herramientas de uso universal y el Zr-2,5 peso Nb es el material base de los tubos de presion de las centrales nucleares tipo CANDU. La estabilidad de los carburos se estudio en el marco de la teoria de Goldschmidt de aleaciones intersticiales. En los aceros la identificacion de los carburos estables se hizo mediante la determinacion de la composicion metalica de los mismos con un analizador dispersivo en energia adosado al microscopio electronico de barrido. Se identificaron los carburos MC y M6C, tipicos del acero M2. Se estudio ademas la distribucion en tamano y la distribucion espacial de los carburos luego de distintos tratamientos termicos, y se hizo la correlacion de la microestructura con la dureza y la presencia o no del fenomeno de endurecimiento secundario. En Zr-Nb se hizo un estudio de las fases α y β presentes luego de distintos tratamientos termicos con tecnicas metalograficas de microscopia optica y electronica de barrido y con la guia del diagrama de equilibrio de Abriata y Bolcich. Las interfases α-β de Zr-2,5 Nb fueron caracterizadas como caminos rapidos de difusion, con tecnicas de difusion de radiotrazadores aplicando el modelo Fisher-Bondy-Martin. Se promovio la precipitacion de carburos mediante tratamientos termicos de difusion de carbono a alta temperatura y precipitacion a temperatura menor. Los carburos fueron posteriormente identificados como (Zr,Nb)C1-x con tecnicas de microscopia electronica de barrido, microsonda electronica y difraccion de rayos X. (Autor)

Additional details

Additional titles

Original title (Spanish)
Carburos estables en aleaciones de metales de transicion

Publishing Information

Imprint Pagination
188 p.
Report number
CNEA-NT--3/91

Optional Information

Secondary number(s)
CNEA-PMM-T--10/91.