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The strain energy of a coherent ellipsoidal precipitate

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This article is published in Scripta Metallurgica.The article was published on 1974-12-01. It has received 85 citations till now.

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Nucleation in solids: The induction and steady state effects

TL;DR: In this article, the authors describe the process of nucleation, growth and coarsening, which combines to dictate the final particle density produced by a phase transformation, illustrated in Fig. 1, which depicts the number of particles vs. time.
Journal ArticleDOI

Elastically Induced Shape Bifurcations of Inclusions

TL;DR: In this article, shape change transitions of elastically misfitting inclusions were predicted to occur when the inclusions are softer than the matrix, and the shape is dictated by minimizing interfacial energy without regard to the elastic contribution.
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The kinetics of ferrite nucleation at austenite grain boundaries in Fe-C alloys

TL;DR: In this article, the SchwartzJSaltykov size distribution analysis was used to estimate the number of ferrite particles per unit unreacted grain boundary area and the time-dependent nucleation kinetics of grain boundary allotriomorphs as a function of temperature and carbon concentration.
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A diffuse interface model for microstructural evolution in elastically stressed solids

TL;DR: In this paper, a diffuse interface (DI) model is proposed to capture microstructure formed during the coarsening of a two dimensional, elastically stressed binary alloy, based on a generalized Cahn-Hilliard free energy; evolution occurs to lower the free energy.
Journal ArticleDOI

The elastic strain energy of coherent ellipsoidal precipitates in anisotropic crystalline solids

TL;DR: The elastic strain energy of coherent ellipsoidal precipitates (ellipsoids of revolution) in anisotropic crystalline solids has been calculated using the method of Eshelby as discussed by the authors.
References
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Über die berechnung der verzerrungsenergie bei keimbildung in kristallen

TL;DR: In this paper, a rechnung berucksichtigt die Anisotropie der Kristalle in vollem Umfang, innerhalb einer kubischen Phase wird die Verzerrungsenergie als Funktion der elastischen Konstanten and der Molvolumina beider Phasen, sowie der Keimform gegeben.