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Mechanical Performance Of Apatite/tio_2 Composite Coatings Formed On Ti And Niti Shape Memory Alloy

机译:Ti和Niti形状记忆合金上形成的磷灰石/ tio_2复合涂层的力学性能

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摘要

To make metals bioactive for orthopaedic applications, apatite/TiO_2 composite coatings were formed on Ti and NiTi shape memory alloy (SMA) using a H_2O_2-oxidation and hot water aging technique and the subsequent accelerated biomimetic process. In the current investigation, nanoindentation, scratch testing and frictional testing were employed to assess mechanical properties and the adhesion of apatite/ TiO_2 composite coatings formed on Ti and NiTi SMA. Nanoindentation testing conducted on cross-sections of composite coatings indicated that there was no significant difference in nanohardness and elastic modulus between apatite/TiO_2 composite coatings formed on Ti and NiTi SMA samples. The enhancement of the adhesion between the apatite layer and the metal substrates arose from the TiO_2 intermediate layer in the composite coating. The highest values of coating adhesion strength for Ti and NiTi SMA samples, as measured by scratch tests, were 22.58 N and 19.07 N, respectively. However, compared to corresponding Ti samples, NiTi SMA samples had better tribological properties.
机译:为了使金属具有骨科应用的生物活性,采用H_2O_2氧化和热水时效技术以及随后的加速仿生工艺,在Ti和NiTi形状记忆合金(SMA)上形成了磷灰石/ TiO_2复合涂层。在目前的研究中,采用纳米压痕,划痕测试和摩擦测试来评估在Ti和NiTi SMA上形成的磷灰石/ TiO_2复合涂层的机械性能和附着力。在复合涂层的横截面上进行的纳米压痕测试表明,在Ti和NiTi SMA样品上形成的磷灰石/ TiO_2复合涂层之间的纳米硬度和弹性模量没有显着差异。磷灰石层与金属基材之间的粘附力的增强源自复合涂层中的TiO_2中间层。通过刮擦测试测得的Ti和NiTi SMA样品的涂层附着强度的最高值分别为22.58 N和19.07N。但是,与相应的Ti样品相比,NiTi SMA样品具有更好的摩擦学性能。

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