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Bridging the Gap: Corrosion Science For Heritage Contexts explores the decision-making processes for preserving heritage metals while also examining the collaborative, interdisciplinary relationships that underpin them. Through themed chapters, the book is designed to develop and strengthen collaboration between these three groups of professionals, creating a synergy that benefits research and practice for the preservation of heritage metals. It builds an overview of metals conservation across a broad range of heritage contexts, from indoor museum displays to fixed outdoor structures and moving objects.Researchers and practitioners provide critical insights into corrosion problems within heritage, current corrosion mitigation procedures, and the evidence supporting best practice guidance. The book will be a valuable reference resource for corrosion and corrosion protection scientists, heritage preservation scientists, conservation practitioners, and students studying preservation of cultural objects.
Corrosion Modelling with Cellular Automata bridges the gap between finer scales based on atomic physics and the larger-scale based on physico-chemical properties of materials and their environments. The book describes the simulation and modeling of corrosion phenomena by cellular automata and underlines the collaborative and interdisciplinary relationships that underpin them. It explores the major achievements that have been performed to date, covers basic knowledge on cellular automata and corrosion phenomena, and includes sections on CA modeling of generalized and uniform corrosion in 2D and 3D under various conditions, including aqueous environments and high temperature processes. Finals sections present examples on the use of cellular automata for modeling localized corrosion as well as recent developments on intergranular corrosion. There is also a review on the use of CA for modeling pitting corrosion.
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