首页> 外文期刊>Intermetallics >Microstructure and mechanical properties of mechanically alloyed and spark plasma sintered amorphous-nanocrystalline Al_(65)Cu_(20)Ti_(15) intermetallic matrix composite reinforced with TiO_2 nanoparticles
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Microstructure and mechanical properties of mechanically alloyed and spark plasma sintered amorphous-nanocrystalline Al_(65)Cu_(20)Ti_(15) intermetallic matrix composite reinforced with TiO_2 nanoparticles

机译:机械合金化和火花等离子体烧结的非晶态纳米晶Al_(65)Cu_(20)Ti_(15)金属间化合物复合纳米颗粒TiO_2的组织和力学性能

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Multiphase Al_(65)Cu_(20)Ti_(15) intermetallic alloy matrix composite, dispersed with 10 wt. percent of TiO_2 nanoparticles, has been processed by mechanical alloying, followed by spark plasma sintering under pressure in the temperature range of 623-873 K. Differential scanning calorimetry and X-ray diffraction suggest that equilibrium crystalline phases evolve from the amorphous or intermediate crystalline phases. Transmission electron microscopy shows that the composite sintered at 873 K has partially amorphous microstructure, with dispersion of equilibrium, crystalline, intermetallic precipitates of Al_5CuTi_2, Al_3Ti, and Al_2Cu of 25-50 nm size, besides the TIO_2. The composite sintered at 873 K exhibits little porosity, hardness of 5.6 GPa, indentation fracture toughness in the range of 3.1-4.2 MPa m, and compressive strength of 1.1 GPa. Indentation crack deflection by TiO_2 particle aggregates causes increase in fracture resistance with crack length, and suggests R-curve type behaviour. The study provides guidelines for processing high strength amorphous-nanocrystalline intermetallic composites based on the Al-Cu-Ti ternary system.
机译:多相Al_(65)Cu_(20)Ti_(15)金属间合金基复合材料,分散有10 wt。机械合金化处理了百分之二的TiO_2纳米颗粒,然后在623-873 K的温度范围内在压力下进行了火花等离子体烧结。差示扫描量热法和X射线衍射表明,平衡结晶相由无定形或中间结晶相演化而来。 。透射电子显微镜显示,在873 K下烧结的复合材料具有部分非晶态的微观结构,除了TIO_2之外,还分散了25-50 nm尺寸的Al_5CuTi_2,Al_3Ti和Al_2Cu的平衡,结晶,金属间沉淀。在873 K下烧结的复合材料几乎没有孔隙,硬度为5.6 GPa,压痕断裂韧性为3.1-4.2 MPa m,抗压强度为1.1 GPa。 TiO_2颗粒聚集体产生的压痕裂纹偏斜会导致抗裂强度随裂纹长度的增加而增加,并提示R曲线类型的行为。该研究为基于Al-Cu-Ti三元体系的高强度非晶态-纳米晶金属间复合材料的加工提供了指导。

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