首页> 外文会议>第五届先进材料与加工国际会议(Fifth International Conference on Advanced Materials and Processing ICAMP-5)论文集 >MICROSTRUCTURAL EVOLUTION DURING HIGH ENERGY MECHANICAL MILLING AND HEAT TREATMENT OF Cu-(5,10)vol.Al2O3 NANOCOMPOSITE POWDERS
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MICROSTRUCTURAL EVOLUTION DURING HIGH ENERGY MECHANICAL MILLING AND HEAT TREATMENT OF Cu-(5,10)vol.Al2O3 NANOCOMPOSITE POWDERS

机译:Cu-(5,10)vol。%Al2O3纳米复合粉的高能机械铣削和热处理过程中的微观结构演变

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Cu-(5-10)vol.%Al2O3 nanocomposite powders were produced from a mixture of Cu powder and Al2O3 nanopowder using a high energy mechanical milling (HEMM) route consisting of two stages. The microstructural evolution of the CU-Al2O3 nanocomposite powder particles (or granules) produced after first and the second stages of milling was studied using scanning electron microscopy (SEM), transmission electron microcopy (TEM), scanning transmission electron microscopy (STEM) and energy dispersive X-ray (EDX) mapping. The study confirmed that homogenous dispersion of Al2O3 nanoparticles in the Cu matrix was achieved after the first stage of milling and the relatively large Al2O3 particles were further broken into smaller nanoparticles after the second stage of milling. The milled nanocomposite powders were also heat treated at 150, 300, 400 and 500°C for 1 hour, respectively, to determine the microstructural changes of the powder particles as a function of annealing temperature. It was found that after heat treatment at 150°C, the Cu grain sizes decreased due to recrystallisation, and increasing the annealing temperature to 300°C causes slight coarsening of the Cu grains. Further increasing the annealing temperature to 500°C caused significant coarsening of the Cu grains and the Al2O3 nanoparticles. It also appeared that the coarsening of Cu grains in the composite powder particles after annealing at 500°C become less severe with increasing the volume fraction of Al2O3 particles.
机译:使用包括两个阶段的高能机械研磨(HEMM)路线,由Cu粉和Al2O3纳米粉的混合物生产Cu-(5-10)%(体积)Al2O3纳米复合粉。使用扫描电子显微镜(SEM),透射电子显微镜(TEM),扫描透射电子显微镜(STEM)和能量研究了研磨的第一阶段和第二阶段后产生的CU-Al2O3纳米复合粉末颗粒(或颗粒)的微观结构演变。色散X射线(EDX)映射。研究证实,在研磨的第一阶段之后,Al2O3纳米颗粒在铜基体中实现了均匀分散,并且在研磨的第二阶段之后,相对较大的Al2O3颗粒进一步破碎成较小的纳米颗粒。还将研磨后的纳米复合粉末分别在150、300、400和500°C热处理1小时,以确定粉末颗粒的微观结构随退火温度的变化。发现在150℃下进行热处理之后,Cu晶粒尺寸由于重结晶而减小,并且将退火温度升高至300℃导致Cu晶粒略微粗大化。将退火温度进一步提高到500°C会导致Cu晶粒和Al2O3纳米颗粒的明显变粗。还显示出随着Al 2 O 3颗粒的体积分数增加,在500℃下退火后复合粉末颗粒中的Cu晶粒的粗化变得不那么严重。

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