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Fabrication of Al2O3-ZrO2-Ni composites with improved toughness using nano powders prepared by mechanical alloying

机译:使用机械合金化制备的纳米粉末制备Al2O3-ZrO2-Ni复合材料的制备

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摘要

It has been established that the production of structural ceramic/metal composites with improved toughness has a great of interest for industrial applications. Al2O3-10 wt % ZrO2 sintered composites reinforced with 0, 3, 6, 9 and 12 wt % of Ni were fabricated from nano powders prepared by mechanical milling method. The phase identification, crystal size, morphology and particle size of obtained powder were examined by XRD and TEM, respectively. The powder was compacted and sintered at various temperatures up to 1550 degrees C. Relative density and apparent porosity of fired composites were determined by water displacement method whileas their microstructure was investigated by SEM. Mechanical and electric properties of sintered specimens were also determined in details. The results revealed that nano powders were successfully prepared after milling for 20h. The particle and crystal sizes increased while lattice strain and dislocation density decreased with increasing Ni content. For the sintered composites, the microhardness, compressive strength and elastic moduli reduced when the Ni content increased while they improved with rising sintering temperature. The fracture toughness improved with increasing both Ni content and sintering temperature. For AZ12Ni composite sintered at 1550 degrees C, it exhibited the maximum fracture toughness (6.5 MPa m(0.5)). The electrical-resistivity reduced with rising both Ni quantity and firing temperature. While the dielectric constant and dielectric loss reduced with higher Ni content but they increased with rising firing temperature. The electrical resistivity, dielectric constant and dielectric loss of AZ12Ni composite sintered at 1550 degrees C were 8.94 x 10(9) Omega m, 7.47 and 2.8 x 10(-5), respectively.
机译:已经确定,具有改进的韧性的结构陶瓷/金属复合材料具有对工业应用的兴趣。通过机械研磨方法制备的纳米粉末制造加强0,3,6,9和12wt%的Ni的Al 2 O 3 -10wt%ZrO2烧结复合材料。通过XRD和TEM检查所得粉末的相位鉴定,晶体尺寸,形态和粒径。将粉末压实并在各种温度下烧结,在高达1550℃的各种温度下烧成烧制复合材料的相对密度和表观孔隙率通过水位置换法测定,而通过SEM研究了它们的微观结构。还详细测定了烧结样品的机械和电性能。结果表明,铣削后成功制备纳米粉末20小时。颗粒和晶体尺寸随着Ni含量的增加而增加而增加而晶格应变和位错密度。对于烧结复合材料,当Ni含量随着烧结温度上升时,当Ni含量增加时,微硬度,抗压强度和弹性模量降低。随着Ni含量和烧结温度的增加,断裂韧性改善。对于在1550℃下烧结的Az12Ni复合材料,它表现出最大的断裂韧性(6.5MPa m(0.5))。电阻率降低,随着Ni数量和烧制温度上升。虽然介电常数和介电损耗具有更高的Ni含量,但它们随着烧制温度的上升而增加。在1550℃下烧结的Az12Ni复合材料的电阻率,介电常数和介电损耗分别为8.94×10(9)ωM,7.47和2.8×10(-5)。

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