Published April 1978 | Version v1
Miscellaneous

Creep fracture in some low-alloy steels

Description

The processes involved in the high temperature creep deformation and fracture of low alloy steels have been extensively reviewed. The fracture behaviour of two series of alloy steels, 2 1/4Cr 1Mo and 1/2Cr 1/2Mo 1/4V, has been investigated over a range of temperature extending from the ambient to that experienced under typical power plant operating conditions. The effect of prior heat treatment, stress state and presence of tramp elements on the accumulation of creep damage has also been studied. In a heavily tempered condition, the 2 1/4Cr 1Mo alloy steels exhibited a high ductility and similar rupture mode over a wide temperature range. The sliding of adjacent prior austenite and bainite plate boundaries contributed to the overall creep strain. The presence of wide precipitate free zones suppressed the nucleation of grain boundary cavities and the dominant mechanism of damage accumulation involved decohesion, after large plastic strains, at the interface of coarse M23C6 particles and the matrix. Growth of such damage occurred by a viscous process that was inhibited by the introduction of a hydrostatic compressive component of stress. The simulated heat affected zone structure of the 1/2Cr 1/2Mo 1/4V alloy steel possessed extremely limited ductility at typical power plant operating temperatures. (author)

Availability note (English)

Available from British Library, Boston Spa, Wetherby, West Yorks. No. D34990/81.

Additional details

Publishing Information

Imprint Pagination
274 p.