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Combinative effects of Y2O3 and Ti on Al2O3 ceramics for optimizing mechanical and electrical properties

机译:Y2O3和Ti对优化机电性能的AL2O3陶瓷的组合作用

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摘要

This study aims to combine Y2O3 and Ti to improve the mechanical and electrical properties of Al2O3 ceramics. Al2O3-based composites containing 20 vol% of metallic Ti were chosen. Y2O3 was used as the effective additive to optimize the mechanical and electrical properties of Al2O3/Ti composites. The effects of Y2O3, ranging from 1 to 5 wt%, on mechanical and electrical properties of Al2O3/Ti composites were studied. Energy-dispersive X-ray spectroscopy indicated that the added yttrium was present at the grain boundaries. The formation of yttrium aluminum garnet (Al5Y3O12, YAG) resulting from the solid-state reaction between Y2O3 and Al2O3 was identified by X-ray diffraction (XRD). All Y2O3 doped Al2O3/Ti composites showed an increase in the density. The observation of microstructure revealed that the microstructure was refined and the grain size of Al2O3 decreased. Vickers hardness, Young's modulus, and fracture toughness of the c6mpoSite having Y2O3 content of 2 wt% reached their maximum values, which were 15.2 GPa, 355.2 GPa, and 4.5 MPa"mv2, respectively. Ductile fracture mode and transgranular fracture were visible in all the composites. The toughening mechanism, which arises due to the presence of YAG, was demonstrated. In addition, the electrical resistivity of composites increased monotonically with an increase in the Y2O3 content. Nevertheless, the increase was negligible and the composites could be regarded as a good electrical conductor having 5 wt% Y2O3 addition.
机译:本研究旨在将Y2O3和TI结合以改善Al2O3陶瓷的机电性能。选择含有20Vol%金属Ti的A​​l2O3基复合材料。 Y2O3用作有效添加剂,以优化Al2O3 / Ti复合材料的机械和电性能。研究了Y2O3,范围为1至5wt%,对Al2O3 / Ti复合材料的机械和电性能的影响。能量分散X射线光谱表明,添加的钇存在于晶界处。通过X射线衍射(XRD)鉴定由Y 2 O 3和Al 2 O 3之间的固态反应产生的钇铝石榴石(Al5Y3O12,YAG)的形成。所有Y2O3掺杂的Al2O3 / Ti复合材料显示出密度的增加。微观结构的观察显示,精制微观结构,Al2O3的晶粒尺寸降低。 Vickers硬度,杨氏模量和骨折的C6mp二含量为2wt%的C6mp二重性达到其最大值,分别为15.2GPa,355.2GPa和4.5MPa“MV2。所有复合材料。展示了由于yAG存在而产生的增韧机制。此外,复合材料的电阻率随着Y2O3含量的增加而单调地单调增加。然而,增加可以忽略不计,并且复合材料可以被视为具有5wt%Y2O3的良好电导体。

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