超声搅拌铸造法制备7075碳化硼铝- 625铬镍铁合金复合材料及其力学性能研究

M. Thayumanavan, K. Kumar
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引用次数: 0

摘要

使用超声波搅拌铸造方法生产的铝金属基复合材料在航空航天和汽车应用中具有重要的优势。铝复合材料由于其高强度、良好的耐磨性和耐腐蚀性,近年来在所有工程领域的应用都有所增加。本研究的目的是分散碳化硼和铝7075增强的铬镍铁合金625。通过改变航空航天应用中碳化硼的重量百分比(2wt %、4wt %、6wt %和8wt %)和铬镍铁合金625 (2wt %、4wt %、6wt %和8wt %)。采用扫描电子显微镜对合成铝复合材料中增强颗粒的形貌和分布进行了研究。它实际上描绘了增强颗粒在基材基体(铝7075)中的均匀分布。为了确定复合材料的硬度,进行了布氏硬度试验。与7075铝基材料相比,增强率的增加提高了合成杂化复合材料的硬度。对不同成分的预制复合材料试样进行了力学性能测试。
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Fabrication and Mechanical Behaviour Investigation on Aluminium 7075 Boron Carbide and Inconel Alloy 625 Metal Matrix Composite Using Ultra Sonic Stir Casting Method
Aluminium metal matrix composites produced using the ultrasonic stir casting method offer important benefits in aerospace and automotive applications. Aluminium composite material utility has recently increased in all engineering sectors due to its high strength, good wear and corrosive resistance. This study was designed to disperse boron carbide and Inconel Alloy 625 reinforced with aluminium 7075. By varying the weight percentages of boron carbide (2wt percent,4wt percent,6wt percent, and 8wt percent) and Inconel alloy 625 (2wt percent,4wt percent,6wt percent, and 8wt percent) for aerospace applications. The scanning electron microscope was used to examine the morphology and distribution of reinforced particles in a synthetic aluminium composite material. It virtually depicts the uniform distribution of reinforcement particles in the base material matrix (Aluminium 7075). To determine the hardness of the hybrid composite material, a Brinell hardness test was performed. It has been discovered that increasing the reinforcement percentage increases the hardness of the synthesised hybrid composites when compared to the aluminium 7075 base matrix material. Mechanical property testing on fabricated composites specimens of various compositions has been carried out.
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