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Factors that influence elastomeric coating performance: the effect of coating thickness on basal plate morphology, growth and critical removal stress of the barnacle Balanus amphitrite

机译:影响弹性体涂层性能的因素:涂层厚度对藤壶Balanus amphitrite的基底板形态,生长和临界去除应力的影响

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摘要

Silicone coatings are currently the most effective non-toxic fouling release surfaces. Understanding the mechanisms that contribute to the performance of silicone coatings is necessary to further improve their design. The objective of this study was to examine the effect of coating thickness on basal plate morphology, growth, and critical removal stress of the barnacle Balanus amphitrite. Barnacles were grown on silicone coatings of three thicknesses (0.2, 0.5 and 2 mm). Atypical ("cupped") basal plate morphology was observed on all surfaces, although there was no relationship between coating thickness and ⅰ) the proportion of individuals with the atypical morphology, or ⅱ) the growth rate of individuals. Critical removal stress was inversely proportional to coating thickness. Furthermore, individuals with atypical basal plate morphology had a significantly lower critical removal stress than individuals with the typical ("flat") morphology. The data demonstrate that coating thickness is a fundamental factor governing removal of barnacles from silicone coatings.
机译:硅酮涂料是目前最有效的无毒结垢释放表面。了解有助于有机硅涂层性能的机理对于进一步改善其设计是必要的。这项研究的目的是研究涂层厚度对藤壶Balanus amphitrite的基底板形态,生长和临界去除应力的影响。藤壶在三种厚度(0.2、0.5和2毫米)的有机硅涂层上生长。在所有表面上都观察到非典型(“杯状”)基底板形态,尽管涂层厚度与ⅰ)具有非典型形态的个体比例或ⅱ)个体的生长速率之间没有关系。临界去除应力与涂层厚度成反比。此外,具有非典型基底板形态的个体比具有典型(“扁平”)形态的个体具有显着更低的临界去除应力。数据表明,涂层厚度是控制藤壶从有机硅涂层中去除的基本因素。

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