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Ti Reactive Sintering of Electrically Conductive Al2O3–TiN Composite: Influence of Ti Particle Size and Morphology on Electrical and Mechanical Properties

机译:导电Al2O3-TiN复合材料的Ti反应烧结:Ti的粒径和形貌对电学和力学性能的影响

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摘要

In the current study, Al2O3–TiN composites were successfully fabricated with various particle sizes (10, 20, 30, and 50 μm) and concentrations (5, 10, 15, and 20 vol %) via a novel ball milling + Ti reactive sintering process. By applying the reactive sintering, Ti powders will transform into TiN particles, which act as mechanical reinforcements and electrical conductors in the Al2O3 matrix. The ball milling process alters the Ti powder morphology from a low-aspect-ratio sphere into a high-aspect-ratio disc, which reduces the electrical percolation threshold value from 29% to 15% in the current setup. However, such a threshold value is insensitive to the particle size. Meanwhile, the Ti particle size has a significant influence on the material’s mechanical properties. A small particle size results in less porosity and hence higher flexural strength of the composite.
机译:在当前的研究中,通过新型球磨+ Ti反应烧结成功地制造了各种粒径(10、20、30和50μm)和浓度(5、10、15和20 vol%)的Al2O3-TiN复合材料处理。通过进行反应性烧结,Ti粉将转变为TiN颗粒,该颗粒充当Al2O3基体中的机械增强材料和电导体。球磨工艺将Ti粉末形态从低纵横比球体变为高纵横比圆盘,这在当前设置中将电渗阈值从29%降低到15%。但是,这样的阈值对粒径不敏感。同时,Ti的粒径对材料的机械性能有重要影响。小颗粒尺寸导致较少的孔隙率,并因此提高复合材料的抗弯强度。

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