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Computational Modeling and Design of Adaptive Thin-Film Composite Coatings

机译:自适应薄膜复合涂层的计算建模与设计

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摘要

The tailoring of thin film coatings comprised of high strength constituents, such as diamond like carbon and partially stabilized zirconia and ductile constituents, such as gold and molybdenum is investigated by new microstructurally-based finite-element techniques for applications related to the wear, durability, and performance of these coatings over a broad range of temperatures and loading conditions. The effects of contact transfer films, grain-shape sizes and distributions, grain-boundary structure and sliding, texture, and strength are used to determine the optimal thin film coating compositions. Comparisons are made with experimental measurements and observations, and guidelines for optimal thin film composite coatings are proposed.
机译:通过新的微观结构的有限元技术研究了与耐磨,耐用性有关的应用,研究了由高强度成分(例如金刚石和部分稳定的氧化锆和延展性成分)所包含的诸如金刚石和部分稳定的氧化锆和延展性成分的薄膜涂层,例如金和钼。这些涂层的性能在各种温度和装载条件下进行。接触转移膜,晶状体尺寸和分布,晶界结构和滑动,质地和强度的影响用于确定最佳薄膜涂料组合物。使用实验测量和观察进行比较,提出了最佳薄膜复合涂层的指导。

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