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The Correlation of Microstructure and Mechanical Properties of In-Situ Al-Mg2Si Cast Composite Processed by Equal Channel Angular Pressing

机译:等通道转角挤压Al-Mg2Si铸造复合材料的组织与力学性能的相关性

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摘要

In this paper, the effect of equal channel angular pressing (ECAP) on microstructure and mechanical properties of hypereutectic Al-20%Mg2Si and Al-15%Mg2Si, as well as hypoeutectic Al-10%Mg2Si composites has been investigated. After fabricating the composites by in-situ casting, the composites were processed using the ECAP process up to two passes at room temperature. Microstructural studies have been carried out using a field emission scanning electron microscopy equipped with an energy dispersive X-ray spectrometer. Mechanical properties were also documented using Vickers microhardness and shear punch tests. In the hypereutectic composites, a decrease in the average size of pro-eutectic Mg2Si (Mg2Sip) particles, breakages in eutectic networks, and lengthening of the Al (α) phase in direction of shear bands were observed after the ECAP process. For instance, the average size of Mg2Sip Particles in Al-20%Mg2Si composite reduced from 40 to 17 μm after 2 passes of ECAP. Furthermore, a uniform distribution of Mg2Sip particles was developed in the matrix. In hypoeutectic composite, the ECAP process caused a uniform distribution of eutectic Mg2Si (Mg2SiE) in the matrix that considered a favorable microstructure. Microhardness measurements and shear punch results showed an ascending trend after each pass of ECAP for all specimens. For example, microhardness and shear strength of Al-20%Mg2Si increased from 88 HV and 109 MPa to 119 HV and 249 MPa after two passes indicating 35% and 34% increments, respectively. Density and porosity calculations by Archimedes principle revealed that the density of the composites increased after two passes of ECAP due to the reduction of porosity.
机译:本文研究了等通道角挤压(ECAP)对过共晶Al-20%Mg2Si和Al-15%Mg2Si以及亚共晶Al-10%Mg2Si复合材料的组织和力学性能的影响。通过原位铸造制造复合材料后,使用ECAP工艺在室温下将复合材料加工多达两次。使用配备有能量色散X射线光谱仪的场发射扫描电子显微镜进行了微结构研究。机械性能也用维氏显微硬度和剪切冲头测试记录。在过共晶复合物中,在ECAP处理后,观察到前共晶Mg2Si(Mg2Sip)颗粒的平均尺寸减小,共晶网络破裂以及Al(α)相在剪切带方向上的延长。例如,经过20次ECAP处理后,Al-20%Mg2Si复合材料中Mg2Sip颗粒的平均尺寸从40微米减小到17微米。此外,在基质中形成了Mg2Sip颗粒的均匀分布。在亚共晶复合材料中,ECAP工艺导致了共晶Mg2Si(Mg2SiE)在基体中的均匀分布,这被认为是有利的微观结构。每次通过ECAP后,所有样品的显微硬度测量和冲头结果均呈上升趋势。例如,经过两次通过后,Al-20%Mg2Si的显微硬度和剪切强度从88 HV和109 MPa增加到119 HV和249 MPa,分别表明增加了35%和34%。通过阿基米德原理进行的密度和孔隙率计算表明,由于孔隙率降低,ECAP两次通过后,复合材料的密度增加。

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