On grain growth in the presence of mobile particles
β Scribed by V.Yu. Novikov
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 365 KB
- Volume
- 58
- Category
- Article
- ISSN
- 1359-6454
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β¦ Synopsis
The ability of second phase particles to migrate along with grain boundaries is shown to be determined not only by the particle mobility but also by the migration rate of the grain boundary where they locate. This leads to a duality in the mobile particle behaviour: they behave as either movable or immovable depending on the boundary migration rate. In the first case, they reduce the boundary mobility; in the second one they decrease the driving force for boundary migration. It is demonstrated by numerical modeling that mobile particles with low mobility can suppress grain growth even in nanocrystalline material, the limiting grains size being several times smaller than in the case of randomly distributed immobile particles. It is also shown that the Zener solution to the problem of the grain growth retardation by disperse particles is a specific case of the proposed approach.
π SIMILAR VOLUMES
Using the Hellman and Hillert model for the shape of a deformed boundary, the Zener drag originated by a spherical particle is analyzed. An expression for the pinning stress is obtained and it is compared with the original finding of Zener and with some recent results from the literature. Rbnm&-Nous
The present work consists of a critical evaluation of the theoretical approaches describing the grain growth inhibiting effect of second phase particles in a material. The combination of the most realistic relations giving the driving force for grain growth and the pinning force of the particles, re