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Effect of yttria-titanium shell-core structured powder on strength and ageing of zirconia/titanium composites

机译:氧化钛-钛壳结构粉末对氧化锆/钛复合材料强度和时效的影响

摘要

Commercially pure titanium powder was modified by a two-step procedure involving attrition milling and subsequent coating with yttria by sol–gel. Lamellar titanium particles with a high aspect ratio were obtained by mechanical grinding. The existence of an yttria layer covering the milled titanium particles (shell–core structure) was corroborated by X-ray photoelectron spectroscopy. Zirconia/titanium (25 vol% titanium) compact specimens were processed by a wet route using the modified titanium powder, spark plasma sintered, and then characterized in terms of mechanical strength and ageing. A reinforcement mechanism arises from the special shape and disposition of the metallic particles. The stable Y2O3 barrier prevents excessive formation of side products at the metal–ceramic interface. Hence, our innovative procedure allows to develop a new ceramic–matrix composite in the interesting zirconia/titanium system with improved mechanical properties and controlled ageing compared to the composites made with commercially pure titanium.
机译:商业纯钛粉是通过两步程序进行改性的,包括磨损研磨和随后通过溶胶-凝胶法涂覆氧化钇。通过机械研磨获得具有高纵横比的层状钛颗粒。 X射线光电子能谱证实了覆盖研磨的钛颗粒(壳核结构)的氧化钇层的存在。使用改性钛粉通过湿法处理氧化锆/钛(钛含量为25%(体积))的致密样品,进行火花等离子体烧结,然后根据机械强度和时效进行表征。增强机制源自金属颗粒的特殊形状和布置。稳定的Y2O3阻挡层可防止在金属-陶瓷界面上过多形成副产物。因此,与使用市售纯钛制成的复合材料相比,我们的创新工艺可以开发出一种有趣的氧化锆/钛体系中的新型陶瓷基复合材料,该复合材料具有改善的机械性能和受控的时效。

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