首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Effects of Electromagnetic Frequency and SiC Nanoparticles on the Microstructure Refinement and Mechanical Properties of Al A357-1.5?wt% SiC Nanocomposites
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Effects of Electromagnetic Frequency and SiC Nanoparticles on the Microstructure Refinement and Mechanical Properties of Al A357-1.5?wt% SiC Nanocomposites

机译:电磁频率和SiC纳米粒子对AlA357-1.5α的微观结构细化和机械性能的影响。WT%SiC纳米复合材料

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摘要

In this research, the effects of electromagnetic stirring and 1.5?wt% SiC nanoparticles on the solidification microstructure and mechanical properties of alloy Al A357 were studied at three different frequencies (10, 35, and 60?Hz). The microstructural evolution was characterized by scanning electron and optical microscopy, and the mechanical properties were studied by hardness and room-temperature uniaxial tensile tests. The results showed that with an increase in frequency to 60?Hz in the presence of 1.5?wt% SiC nanoparticles, the dendrite size was reduced from 59.5?±?1.8 to 15.5?±?3.6?μm (%73.9). By the application of electromagnetic stirrer frequencies from 0 to 60?Hz in the presence of 1.5?wt% SiC nanoparticles, the hardness, yield stress, and ultimate tensile stress of the Al A357-1.5?wt% SiC nanocomposites were increased by 30.9, 57.7, and 57.9%, respectively, compared to as-cast specimen. Orowan strengthening, Hall–Petch mechanism, and the load bearing were determined as the effective mechanisms in improvement in mechanical properties.
机译:在该研究中,在三种不同的频率(10,35和60℃)中研究了电磁搅拌和1.5·wt%SiC纳米颗粒对合金Al A357的凝固微观结构和力学性能。通过扫描电子和光学显微镜的微观结构演化表征,通过硬度和室温单轴拉伸试验研究了机械性能。结果表明,在1.5〜wt%SiC纳米颗粒存在下,频率增加到60℃,树突尺寸从59.5°±1.8〜15.5?±3.6?μm(%73.9)。通过在1.5·wt%SiC纳米颗粒的存在下施加0至60℃的电磁搅拌器频率,硬度,屈服应力和Al A357-1.5αwt%SiC纳米复合材料的终极拉伸应力增加30.9,分别与铸造标本相比分别为57.7和57.9%。奥罗瓦加强,霍尔 - 铺设机构和承重件被确定为改善机械性能的有效机制。

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