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Titlebook: Contamination Mitigating Polymeric Coatings for Extreme Environments; Christopher J. Wohl,Douglas H. Berry Book 2019 Springer Nature Switz

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https://doi.org/10.1007/978-3-662-61132-6ndidate coatings are identified, in an extensive test campaign performed under simulated icing and outdoor conditions prevailing in the real environment of the targeted application. Finally, a specific example of a test campaign in which the icephobic coatings are exposed to Arctic offshore conditions is presented.
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Aerospace and Marine Environments as Design Spaces for Contamination-Mitigating Polymeric Coatings,aximum ice adhesion strength to anti-contamination coatings allowing passive ice removal by wind or vibration. Modeling ice as a cantilever beam on a coating surface in a wind stream indicates that the benchmark value is dependent on the assumed shape of the ice that needs to be removed.
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Influence of Topography on Adhesion and Bioadhesiont the attachment abilities of bioadhesive systems are dramatically reduced below a critical roughness. Based on this and other principles borrowed from nature, strategies can be pursued to create anti-adhesive surfaces via manipulating the surface topography of the substrate.
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https://doi.org/10.1007/978-3-662-62157-8also adequate test methods. This chapter describes the development process and results of these activities, as well as proposals to improve efficiency further in the future development of icephobic materials.
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