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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Study of tensile properties, fractography and morphology of aluminium (1xxx)/coconut shell micro particle composites
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Study of tensile properties, fractography and morphology of aluminium (1xxx)/coconut shell micro particle composites

机译:铝(1xxx)/椰子壳微粒复合材料的拉伸性能,形貌和形貌研究

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摘要

Aluminium (1xxx)/coconut shell micro particle (Al/CMP) composites have been developed using a compo cast technique. Coconut shells (CSs) were processed with the aid of mortar/pestle and disc grinder and then classified with a set of sieves vibrated with a sine shaker. The CMP additions increased from 2% to 10% at 2% interval. Microstructural/chemical composition analyses were carried out with the aid of scanning electron microscopes (ASPEX 3020) with attached energy dispersive X-ray spectroscopy. Phases were identified using an X-ray diffractometer (XRD). The tensile properties and mode of fracture were studied using Instron extensometer and Avery Denison Impact Testing Machine respectively. Results revealed 99.3% purity of aluminium matrix. The presence of new phases in the aluminium matrix is attributable to chemical interaction between Al and CMPs. The fine grained structure of Al/CMPs composites was confirmed by SEM and optical micrographs. The enhancement in the tensile properties is attributable to the presence of hard phases in the Al matrix and good interfacing bonding between Al matrix and CMP reinforcements. The cone and cup surface appearance with fibrous, dull, dimple and goose grain microstructure of the fracture surfaces of the composites is an indication of ductile fracture. Hence low cost metal matrix aluminium based composites have been developed.
机译:铝(1xxx)/椰子壳微粒(Al / CMP)复合材料是使用复合铸造技术开发的。椰子壳(CSs)借助研钵/研钵和圆盘磨机进行处理,然后用一组用正弦振动器振动的筛子进行分类。 CMP的添加间隔为2%,从2%增加到10%。显微结构/化学成分分析是借助带有附加能量色散X射线光谱仪的扫描电子显微镜(ASPEX 3020)进行的。使用X射线衍射仪(XRD)识别相。分别使用Instron引伸计和Avery Denison冲击试验机研究了拉伸性能和断裂方式。结果显示铝基质的纯度为99.3%。铝基质中新相的存在归因于Al和CMP之间的化学相互作用。通过SEM和光学显微照片证实了Al / CMPs复合材料的细晶粒结构。拉伸性能的提高归因于Al基体中存在硬相以及Al基体与CMP增强材料之间的良好界面结合。复合材料断裂表面的锥体和杯状表面具有纤维状,无光泽,凹痕和鹅纹的微观结构,是韧性断裂的指示。因此,已经开发了低成本的金属基铝基复合材料。

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