A ®nite Element Method for Stress-assisted Surface Reaction and Delayed Fracture
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چکیده
When a stressed solid is in contact with an environment (a vapor or a liquid solution), the solid may gain mass from, or lose mass to, the environment. The surface reaction is driven by the interfacial and elastic energy and by the chemical potential dierence between the solid and the environment. This paper presents a ®nite element method to simulate the stress-assisted surface reaction. The reduction of the total free energy associated with gaining unit volume of solid de®nes the driving force. A linear kinetic law is adopted, where the reaction rate is proportional to the driving force. The problem is described with a variational statement. The elastic ®eld in the solid is solved repeatedly as the solid changes its shape. The solid shape is updated with a mesh adaptation procedure and according to the kinetic law. Numerical examples include shape changes of a wavy surface, and crack nucleation at a grain boundary. Ó 2001 Elsevier Science Ltd. All rights reserved.
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تاریخ انتشار 2000