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Influence of boron carbide content on the microstructure, tensile strength and fracture behavior of boron carbide reinforced aluminum metal matrix composites

机译:碳化硼含量对碳化硼增强铝金属基复合材料的组织,拉伸强度和断裂行为的影响

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In the present work, an indigenously developed low cost modified stir casting technique is developed for the processing of 6061 Al-B4C composites containing high-volume fraction of boron carbide particles (up to 20 vol. %). The influence of varying reinforcement content on the spatial distribution of boron carbide in the aluminum matrix is qualitatively characterized using scanning electron microscope. At a lower volume fraction of reinforcement, wide particle free zone and large interparticle spacing were observed in the matrix while the composite with high reinforcement content displayed relatively homogeneous and discrete particle distribution. X-ray diffraction analysis confirms the presence of only aluminum and boron carbide diffraction peaks, indicating that no significant reaction occurs during composite processing. The tensile behavior of composites revealed that strength and ductility are influenced by varying particulate content. The quantitative analysis of strengthening mechanism in the casted composites showed that higher volume fraction of boron carbide lead to larger values of thermal dislocation strengthening, grain size and strain gradient strengthening. The morphology of fracture surfaces reveals the presence of dimple network and the average size of dimples gradually decreases with the increase in particulate content, which indicates the co-existence of ductile and brittle fracture.
机译:在目前的工作中,开发了一种本地开发的低成本改进的搅拌铸造技术,用于处理包含大量碳化硼颗粒(最高20%(体积))的6061 Al-B4C复合材料。使用扫描电子显微镜定性地描述了变化的补强含量对铝基体中碳化硼空间分布的影响。在较低的增强体体积分数下,在基体中观察到宽的无颗粒区和较大的颗粒间间距,而具有高增强体含量的复合材料显示出相对均匀且离散的颗粒分布。 X射线衍射分析证实只有铝和碳化硼衍射峰的存在,表明在复合加工过程中没有发生明显的反应。复合材料的拉伸性能表明强度和延性受颗粒含量变化的影响。铸造复合材料中强化机理的定量分析表明,碳化硼体积分数越高,热位错强化,晶粒尺寸和应变梯度强化值越大。断裂表面的形态揭示了凹坑网络的存在,并且随着颗粒含量的增加,凹坑的平均尺寸逐渐减小,这表明韧性断裂和脆性断裂并存。

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