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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Influence of Reinforcement Type on Microstructure, Hardness, and Tensile Properties of an Aluminum Alloy Metal Matrix Composite
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Influence of Reinforcement Type on Microstructure, Hardness, and Tensile Properties of an Aluminum Alloy Metal Matrix Composite

机译:增强类型对铝合金金属基复合材料组织,硬度和拉伸性能的影响

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This paper presents the results of the comparative study of as cast microstructures and mechanical properties viz yield strength, ultimate tensile strength, elastic modulus, percentage elongation, hardness, percentage porosity and fracture characteristic of 5 wt% SiC and Al2O3 particulate reinforced Al-4% Cu-2.5% Mg matrix composites. These composite materials were prepared through stir casting process. Quantitative metallographic techniques were utilized to determine the average grain size of particles. The microstructures and tensile fracture characteristic of the representative samples of the composites were examined using optical microscope (OM), scanning electron microscopy (SEM), energy dispersive X-ray analysis (EDX) and X-ray diffraction (XRD) techniques. The experimental results demonstrate a fairly uniform distribution of 50.8 μm Al2O3 and 49.2 μm SiC spherical particles with some clustering in few areas. At the interfaces of Al2O3 and the matrix, MgO and MgAl2O4 were observed. Similarly, Al4C3 was formed at the interfaces between SiC and the matrix. The mechanical property test results revealed that, for the same weight percentage of reinforcement, Al-4% Cu-2.5% Mg/5 wt% SiC composite exhibit a 15.8%, 16.4%, 4.97% and 10.8% higher yield strength, ultimate tensile strength, elastic modulus, and hardness, respectively. On the other hand, even if some porosity was observed in the Al2O3 reinforced composite, the percentage elongation (ductility) was 31% higher than that of SiC rein-forced composite. The tensile specimen of SiC reinforced composite failed in a brittle fashion without neck formation, whereas the Al2O3 reinforced composite failed in a ductile fashion with noticeable neck formation.
机译:本文介绍了5 wt%SiC和Al2O3颗粒增强Al-4的铸态组织和力学性能的对比研究结果,即屈服强度,极限抗拉强度,弹性模量,延伸率,硬度,孔隙率和断裂特性。 %Cu-2.5 %Mg基复合材料。这些复合材料是通过搅拌铸造法制备的。利用定量金相技术确定颗粒的平均晶粒尺寸。使用光学显微镜(OM),扫描电子显微镜(SEM),能量色散X射线分析(EDX)和X射线衍射(XRD)技术检查了复合材料代表性样品的微观结构和拉伸断裂特性。实验结果表明,50.8μm的Al2O3和49.2μm的SiC球形颗粒分布相当均匀,并在少数区域聚集。在Al2O3与基体的界面上,观察到MgO和MgAl2O4。类似地,在SiC与基体之间的界面处形成Al 4 C 3。力学性能测试结果表明,对于相同重量百分比的增强材料,Al-4 %Cu-2.5 %Mg / 5 wt %SiC复合材料表现出15.8%,16.4%,4.97%和10.8 屈服强度,极限抗拉强度,弹性模量和硬度分别提高5%。另一方面,即使在Al2O3增强复合材料中观察到一些孔隙,伸长率(延展性)也比SiC增强复合材料高31%。 SiC增强复合材料的拉伸试样以脆性破坏而没有形成颈,而Al2O3增强复合材料以韧性方式破坏而形成明显的颈。

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