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Elucidation of the role of rotation speed and stirring direction on AA 7075-B_4C surface composites formulated by friction stir processing

机译:阐明通过摩擦搅拌加工配制的AA 7075-B_4C表面复合材料的转速和搅拌方向的作用

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In the present research investigation, aluminum-boron carbide surface composites were fabricated using friction stir processing technique. Boron carbide powder particles were incorporated into AA 7075 substrate by the thermomechanical mixing generated through multiple passes of friction stir processing. A parametric investigation was conducted to encounter homogeneous boron carbide powder particles distribution in the substrate matrix by employing various parameter combination sets like tool rotational speed and alteration in tool travel direction. Microstructural characterizations were performed by means of optical microscopy, scanning electron microscopy and X-ray diffraction analysis to investigate on boron carbide powder particles distribution, phases present, and grain morphologies in the substrate matrix. Homogeneous distribution of boron carbide powder particles was observed for surface composites processed at lowest tool rotational speed. Uniform boron carbide powder particles distribution in the processed zone along with various strengthening mechanisms brought about two-fold increase in microhardness and wear resistance of the prepared composites.
机译:在本研究研究中,使用摩擦搅拌加工技术制造铝 - 硼表面复合材料。通过通过多次摩擦搅拌加工产生的热机械混合将碳化硼粉末颗粒掺入AA 7075基板中。通过采用像工具转速相同的工具转速和工具行进方向的改变,进行参数化研究以在基板基质中遇到均匀硼碳化物粉末颗粒。通过光学显微镜,扫描电子显微镜和X射线衍射分析进行微观结构表征,以研究碳化硼粉末颗粒分布,存在的相位和晶体基质中的晶粒形态。以最低刀具转速处理的表面复合材料观察到碳化硼粉末颗粒的均匀分布。均匀的碳化硼粉末颗粒分布在加工区内以及各种强化机构的微硬度增加,制备的复合材料的耐磨性增加了两倍。

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