首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Effect of Heat Treatment on the Characterizations of Functionally Graded Al/Al2Cu Fabricated by Horizontal Centrifugal Casting
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Effect of Heat Treatment on the Characterizations of Functionally Graded Al/Al2Cu Fabricated by Horizontal Centrifugal Casting

机译:热处理对水平离心铸造制造功能梯度Al / Al2Cu的特征的影响

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摘要

In the present paper, in situ centrifugal casting as an advanced material processing method is proposed to fabricate Al-26 wt% Cu-7wt% Si FG pipe with the density of 3.5 g/cm(3)and with the wear resistance of 1.85064 x 10(-16) m(3)/mN. The casting mould is preheated to approximately 200 degrees C to avoid chilling effects, segregation, porosity and compensation of the shrinkage of the alloy during the casting. Variations of the Al2Cu-based content are investigated by the field emission scanning electron microscopy (FESEM) in conjunction with image analyser software (MATLAB code). The microstructure results show that the Al2Cu content smoothly decreases from the outer layer containing 44.4 vol% to inner layer containing 37.8 vol% due to the difference in density of constituent phases and elements. The graded properties such as Vickers hardness, coefficient of thermal expansion and mechanical properties of the present FG pipe are measured to show the significant dependence of the microstructure. It shows that Vickers hardness value gradually decreases from the outer with 331.3 HV to the inner with 141.0 HV. Furthermore, the heat treatment of the samples is conducted in boiling water (100 degrees C) for 4.5 h to promote the formations of new Al2Cu particles into the alpha-Al phase and consequently improve the hardness and CTE of the FG pipe.
机译:在本文中,原位离心铸造作为先进的材料加工方法,以制造al-26wt%Cu-7wt%Si FG管,密度为3.5g / cm(3),耐磨性为1.85064 x 10(-16)m(3)/ mn。将铸模预热至约200摄氏度,以避免在铸造过程中冷却效果,分离,孔隙率和合金收缩的补偿。通过与图像分析仪软件(MATLAB代码)结合使用现场发射扫描电子显微镜(FESEM)对基于AL2CU的含量的变化。微观结构结果表明,由于构成相和元素密度的差异,Al2Cu含量从含有44.4体积%的内层平滑地降低了含有37.8体积%的内层。测量诸如维氏硬度,热膨胀系数和本FG管的机械性能的分级性质以显示微结构的显着依赖性。它表明,维氏硬度值从外部逐渐减小到带有141.0HV的内部331.3HV。此外,样品的热处理在沸水(100℃)中进行4.5小时,以促进新的Al2Cu颗粒的形成进入α-Al相中,从而改善FG管的硬度和CTE。

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