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首页> 外文期刊>Metallography, Microstructure, and Analysis >Comparative Study on Microscopic, Physical and Mechanical Properties of Conventional and Spark Plasma Sintered Nano-TiO 2-Dispersed Zirconium-Based Alloys
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Comparative Study on Microscopic, Physical and Mechanical Properties of Conventional and Spark Plasma Sintered Nano-TiO 2-Dispersed Zirconium-Based Alloys

机译:常规和火花等离子体烧结纳米TiO <下标> 2 - 锆基合金的微观,物理和力学性能的比较研究

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AbstractIn this study, nano-TiO2(1.0–2.0 wt.%)-dispersed Zr-based alloys with nominal compositions: 45Zr–30Fe–20Ni–5Mo (alloy 1), 44Zr–30Fe–20Ni–5Mo–1TiO2(alloy 2) and 44Zr–30Fe–20Ni–4Mo–2TiO2(alloy 3) are synthesized by mechanical alloying in a dual-drive planetary ball mill followed by powder consolidation with conventional sintering at 1400?°C/spark plasma sintering at 900–1000?°C. For microstructural and phase analysis of mechanically alloyed powders and consolidated products, XRD, SEM/EDS and TEM studies were carried out. Density measurement and mechanical property (compressive strength, hardness and wear) characterization were also carried out. X-ray diffraction and TEM analysis reveal formation of different intermetallics of 10–30?nm size along with TiO2(10–20?nm) throughout the matrix of the consolidated samples. Alloys consolidated by spark plasma sintering displayed high levels of compressive strength (825–1240?MPa) and hardness (10.38–16.85 GPa) which was 1.5–2 times higher than that was obtained in conventional sintering. Addition of TiO2helps in enhancement of mechanical properties, and effect was more prominent with 2.0 wt.% TiO2.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>在本研究中,nano-tio <下标> 2 (1.0-2.0重量%) - 具有标称组合物的分散的Zr基合金:45zr-30Fe-20ni-5mo(合金1),44zr-30Fe-20ni-5mo-1tio <下标> 2 (合金2)和44ZR-30FE-20NI-4MO-2TIO <下标> 2 (合金3)通过机械合金化在双驱动行星球磨机中合成,然后用常规烧结在1400时与粉末固结合成? °C /火花等离子体烧结为900-1000?°C。对于机械合金粉末和固结产物的微观结构和相分析,进行了XRD,SEM / EDS和TEM研究。还进行了密度测量和机械性能(抗压强度,硬度和磨损)表征。 X射线衍射和TEM分析揭示了在整个综合样品的基质中形成了10-30μm尺寸的不同金属间金属间质的形成,以及TiO <下标> 2 (10-20?Nm)。通过火花等离子体烧结固结的合金显示出高水平的抗压强度(825-1240〜MPa)和硬度(10.38-16.85GPa),其比在常规烧结中获得的1.5-2倍。添加TIO <下标> 2 有助于提高机械性能,并且效果更突出,2.0重量%TIO <下标> 2 ]]>

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