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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Optimization of milling parameters, processing and characterization of nano-crystalline oxide dispersion strengthened ferritic steel
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Optimization of milling parameters, processing and characterization of nano-crystalline oxide dispersion strengthened ferritic steel

机译:纳米晶氧化物弥散强化铁素体钢的铣削参数优化,工艺与表征

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Ferritic steel powder was mechanically milled in a dual drive planetary ball mill, under different milling conditions to optimize the milling parameters. The resulted powder was characterized, using particle size analyzer, X-rays and electron microscope. X-ray peak broadenings were investigated to estimate crystallite size, lattice strain and deformation stress. Better Pearson's coefficient was observed for uniform stress deformation model (USDM) (0588) in comparison to uniform deformation model (UDM) (0.64) which shows better estimation of lattice parameter. An increase in fineness was observed with an increase in ball to powder ratio as well as for an increase in rotational speed. At the optimized condition, ferritic steel powder, together with Y2O3, was milled in the dual drive mill to produce oxide dispersion strengthened ferritic steel powder, suitable to be used in nuclear applications. Convoluted morphology, desired for better alloying, was confirmed using an electron microscope. A significant increase in per unit surface area was noticed due to milling using BET surface area analysis. Negligible contamination was observed due to milling atmosphere and mill container. The steel powder produced, was sintered using spark plasma sintering and its density and hardness were measured. High hardness and lower crystallite size were recorded using spark plasma sintering. Addition of Y2O3 shows decreases in the thermal expansion coefficient Effect of added titanium was studied and an adverse effect on oxide dispersion strengthened steel was noticed.
机译:铁素体钢粉在双驱动行星式球磨机中在不同的研磨条件下进行机械研磨,以优化研磨参数。使用粒度分析仪,X射线和电子显微镜对所得粉末进行表征。 X射线峰展宽进行了研究,以估计微晶尺寸,晶格应变和变形应力。与均匀变形模型(UDM)(0.64)相比,均匀应力变形模型(USDM)(0588)观察到更好的Pearson系数,后者显示出更好的晶格参数估计。随着球粉比的增加以及旋转速度的增加,观察到细度的增加。在最佳条件下,将铁素体钢粉与Y2O3一起在双驱动磨机中进行研磨,以生产适用于核应用的氧化物弥散强化的铁素体钢粉。使用电子显微镜确认了更好合金化所需的回旋形态。由于使用BET表面积分析进行研磨,发现单位表面积显着增加。由于研磨气氛和研磨容器,观察到的污染可忽略不计。使用火花等离子烧结法烧结制得的钢粉,并测量其密度和硬度。使用火花等离子体烧结记录了高硬度和较低的微晶尺寸。 Y 2 O 3的添加显示出热膨胀系数的降低,研究了添加钛的效果,并且发现了对氧化物分散强化钢的不利影响。

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