首页> 外文会议>2nd International Conference on Advanced Materials Processing; Dec 2-4, 2002; Singapore >Development of an AZ91A/Cu Hybrid Composite with Improved Mechanical Properties Using the Novel Technique of Disintegrated Melt Deposition
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Development of an AZ91A/Cu Hybrid Composite with Improved Mechanical Properties Using the Novel Technique of Disintegrated Melt Deposition

机译:使用分解熔体沉积的新技术开发具有改善的机械性能的AZ91A / Cu杂化复合材料

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In this study, a hybrid composite based on AZ91A/Cu formulation was fabricated using an innovative disintegrated melt deposition technique followed by hot extrusion. Microstructural characterization studies of the extruded composite samples displayed uniform distribution of copper and intermetallic phases, good Cu-Mg interfacial integrity and absence of porosity. Results of mechanical properties characterization showed that the addition of copper led to an increase in elastic modulus, 0.2% YS while the UTS and ductility of the composite were adversely affected when compared to the peak aged monolithic AZ91A. The absolute values of elastic modulus, 0.2% YS, UTS and ductility in the case of AZ91A/Cu were, however, significantly higher than AZ91A/SiC formulations containing much higher volume percentage of SiC. Emphasis is placed on correlating the presence of copper in the AZ91A matrix with the microstructural and mechanical properties of the resultant composite.
机译:在这项研究中,基于AZ91A / Cu配方的杂化复合材料是使用创新的崩解熔体沉积技术随后进行热挤压制成的。挤压复合材料样品的微结构表征研究显示出铜和金属间相的均匀分布,良好的Cu-Mg界面完整性和无孔隙性。力学性能表征的结果表明,与峰值时效单块AZ91A相比,铜的添加导致弹性模量增加(YS为0.2%),而复合材料的UTS和延展性受到不利影响。然而,在AZ91A / Cu情况下,弹性模量,0.2%YS,UTS和延展性的绝对值明显高于包含更高SiC体积百分比的AZ91A / SiC配方。重点放在使AZ91A基质中铜的存在与所得复合材料的微观结构和力学性能相关联。

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