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Research Progress Regarding Interfacial Characteristics and the Strengthening Mechanisms of Titanium Alloy/Hydroxyapatite Composites

机译:钛合金/羟基磷灰石复合材料的界面特性及强化机理研究进展

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摘要

Titanium alloy/Hydroxyapatite (HA) composites have become a hot research topic in biomedical materials, while there are some challenges concerning bioactivity and mechanical properties such as low interface adhesion at the interface between metal and ceramic, complex interfacial reactions, and so on. Nevertheless, composites with reinforced phases can reach special properties that meet the requirements of biomedical materials due to the strong interfacial interactions between reinforcing phases (nano-carbon, partial oxides, and so on) and Titanium alloys or HA. This review summarizes the interface properties and mechanisms of Titanium alloy/HA composites, including interfacial bonding methods, strengthening and toughening mechanisms, and performance evaluation. On this basis, the interface characteristics and mechanisms of the Titaniumalloy/HA composites with enhanced phase are prospected. The results show that the interfacial bonding methods in the Titanium alloy/HA composites include chemical reactions and mechanical effects. The strengthening and toughening mechanisms contain grain refinement strengthening, second phase strengthening, solution strengthening, cracks and pulling out mechanisms, etc. This review provides a guidline for the fabrication of biocomposites with both mechanical properties and bioactivity.
机译:钛合金/羟基磷灰石(HA)复合材料已成为生物医学材料的热门研究课题,同时还存在一些与生物活性和机械性能有关的挑战,例如金属与陶瓷之间的界面粘合力低,复杂的界面反应等。尽管如此,由于增强相(纳米碳,部分氧化物等)与钛合金或HA之间的强界面相互作用,具有增强相的复合材料仍可以达到满足生物医学材料要求的特殊性能。这篇综述总结了钛合金/ HA复合材料的界面特性和机理,包括界面结合方法,强化和增韧机理以及性能评估。在此基础上,展望了具有增强相的钛合金/ HA复合材料的界面特性和机理。结果表明,钛合金/ HA复合材料的界面结合方法包括化学反应和机械作用。强化和增韧机制包括晶粒细化强化,第二相强化,固溶强化,裂纹和拉出机制等。本综述为制备具有机械性能和生物活性的生物复合材料提供了指导。

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