This work is concerned with the mathematical analysis of a system of partial differential equations modeling the effect of phase separation driven by mechanical actions in binary alloys like tin/lead solders. The system combines the (quasistationary) balance of linear momentum with a fourth order evolution equation of Cahn-Hilliard type for the phase separation, and it is highly nonlinearly coupled. Existence and uniqueness results are shown.

On a model for phase separation in binary alloys driven by mechanical effects

BONETTI, ELENA;COLLI, PIERLUIGI;GILARDI, GIANNI MARIA;SCHIMPERNA, GIULIO FERNANDO;
2002-01-01

Abstract

This work is concerned with the mathematical analysis of a system of partial differential equations modeling the effect of phase separation driven by mechanical actions in binary alloys like tin/lead solders. The system combines the (quasistationary) balance of linear momentum with a fourth order evolution equation of Cahn-Hilliard type for the phase separation, and it is highly nonlinearly coupled. Existence and uniqueness results are shown.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/136113
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