Engineering PapersโŒ• Search

NASA NTRS ยท 19900035821

Coarsening in binary solid-liquid mixtures

Abstract

A theory of Ostwald ripening has been developed for a solid-liquid mixture cosisting of a low volume fraction array of spherical solid particles in a liquid wherein the coarsening process proceeds via the transport of both heat and mass. It is found that the simultaneous transport of heat and mass during ripening does not alter the exponents of the temporal power laws governing the ripening process from their classical values but does alter the amplitudes of these power laws. The growth rate of the cube of the average particle radius, the rate constant, is found to depend both on the alloy solute concentration and the ratio of the thermal to solutal diffusivities. In most metallic systems, a large decrease in the rate constant can be expected with small additions of solute to a pure metal. Possible extensions of this theory to the analogous problem of ripening in isothermal ternary alloys are also discussed.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Voorhees, P. W.. 1990-01-01. Coarsening in binary solid-liquid mixtures. https://ntrs.nasa.gov/citations/19900035821

Cite the original work for its findings. Save a collection to share your selection of sources.