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Fracture Toughness Of Nanoscale Zirconia Coatings On Titanium Substrates

机译:钛基纳米氧化锆涂层的断裂韧性

摘要

In the biomedical field, the surface modification of titanium aims to inhibit wear, reduce corrosion and ion release, and promote biocompatibility. Sol-gel-derived ceramic nanoscale coatings show promise due to their relative ease of production, ability to form a physically and chemically uniform coating over complex geometric shapes, and their potential to deliver exceptional mechanical properties due to their nanocrystalline structure. In this study zirconia coatings on titanium were investigated for their fracture toughness.
机译:在生物医学领域,钛的表面改性旨在抑制磨损,减少腐蚀和离子释放并促进生物相容性。溶胶凝胶衍生的陶瓷纳米级涂料由于其相对易于生产,在复杂的几何形状上形成物理和化学均匀涂层的能力,以及由于其纳米晶体结构而具有出色的机械性能的潜力,因此显示出了希望。在这项研究中,研究了钛上的氧化锆涂层的断裂韧性。

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