Sintering Crystalline Solids. I. Intermediate and Final State Diffusion Models
- 1 May 1961
- journal article
- conference paper
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 32 (5) , 787-792
- https://doi.org/10.1063/1.1736107
Abstract
Photomicrographs of pore and grain boundary structures in sintered powder compacts are presented to provide the basis for qualitative description of the important phases of the course of densification. From this guide, appropriate grain shapes and pore shapes and locations are selected for the formulation of diffusion sintering models. The principle models presented are for bulk diffusion transport with the grain boundaries as vacancy sinks when the pore phase is continuous and coincident with three grain edges, and also when the pore phase is discontinuous and located at four-grain corners. These models predict that the rate of density change is constant when the diffusion coefficient and grain size are constant. The need for simultaneous isothermal densification and grain growth data is indicated. The explicit change in densification rate with discontinuous grain growth is predicted in terms of pore spacing and grain size.This publication has 8 references indexed in Scilit:
- Sintering Crystalline Solids. II. Experimental Test of Diffusion Models in Powder CompactsJournal of Applied Physics, 1961
- Initial Sintering of Alumina and HematiteJournal of the American Ceramic Society, 1958
- The mechanism of sintering of copperActa Metallurgica, 1957
- Role of Grain Boundaries in Sintering.Journal of the American Ceramic Society, 1957
- Study of the Initial Stages of Sintering Solids by Viscous Flow, Evaporation-Condensation, and Self-DiffusionJournal of Applied Physics, 1955
- A fundamental investigation of the mechanism of sinteringActa Metallurgica, 1954
- Experiments on the mechanism of sinteringJOM, 1950
- Measurement of Self-Diffusion of Silver without Radioactive TracersJournal of Applied Physics, 1950