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Effect of micro-alumina content on mechanical properties of Al2O3/3Y-TZP composites

机译:微氧化铝含量对Al2O3 / 3Y-TZP复合材料力学性能的影响

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3 mol% yttria-stabilized zirconia (3Y-TZP) ceramic composites containing 0 to 50 vol% of micro-alumina were prepared. The effect and mechanism of micro-alumina addition on their mechanical properties were investigated in this paper. The results show that with less than 20 vol% micro-alumina, hardness and relative density vary slightly and flexural strength increases dramatically. For micro-alumina content over 20 vol%, hardness and relative density reduce severely and flexural strength varies slightly. Compared with 3Y-TZP ceramic, the hardness and relative density of the composite with 50 vol% micro-alumina decrease by about 29.4% and 5.8%, respectively, but the flexural strength of the composite with 20 vol% micro-alumina increases by similar to 15.8%. With increasing micro-alumina content from 0 to 50 vol%, the fracture toughness of the composite increases by approximately 32.7%, and the fracture mode of the 3Y-TZP grains changes gradually from intergranular to transgranular. While the transgranular fracture of 3Y-TZP grains is mostly found around micro-alumina particles. The strengthening is mainly attributed to the dispersion strengthening effect of micro-alumina particles. The increase in fracture toughness should be due not only to the crack deflection by dispersed micro-alumina particles and the increase in transgranular fracture of the composites, but also by the phase transformation of t-ZrO2 accelerated by the residual stress from the coefficient of thermal expansion (CTE) mismatch between 3Y-TZP and alumina. For micro-alumina content over 10 vol%, the increase in fracture toughness is mainly attributed to the transformation toughening of t-ZrO2. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:制备含有0至50体积%的微氧化铝的3摩尔%的氧化钇稳定的氧化锆(3Y-TZP)陶瓷复合材料。研究了微氧化铝添加对其力学性能的影响及其机理。结果表明,当微氧化铝含量低于20%(体积)时,硬度和相对密度会略有变化,抗弯强度会急剧增加。当微氧化铝含量超过20%(体积)时,硬度和相对密度会大大降低,挠曲强度会略有变化。与3Y-TZP陶瓷相比,含50%(体积)微氧化铝的复合材料的硬度和相对密度分别降低了约29.4%和5.8%,但含20%(体积)微氧化铝的复合材料的抗弯强度却有所提高。至15.8%。随着微氧化铝含量从0到50 vol%的增加,复合材料的断裂韧性提高了约32.7%,并且3Y-TZP晶粒的断裂模式从晶间逐渐变为晶间。 3Y-TZP晶粒的跨晶断裂主要在微氧化铝颗粒周围发现。强化主要归因于微氧化铝颗粒的分散强化作用。断裂韧性的提高不仅应归因于分散的微氧化铝颗粒的裂纹变形和复合材料的沿晶断裂的增加,而且还应归因于残余系数从热系数加速的t-ZrO2的相变。 3Y-TZP与氧化铝之间的膨胀(CTE)不匹配。当微氧化铝含量超过10 vol%时,断裂韧性的提高主要归因于t-ZrO2的相变增韧。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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