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Effect of Processing Parameters on Al-AlN Metal Matrix Composites

机译:加工参数对Al-Aln金属基复合材料的影响

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Processing of aluminum alloy metal matrix composites reinforced with A1N particles using a novel chemical in situ technique involving reactive gas injection is reported. Effect of processing variables such as gas injection time, flow rate of gas has been studied and optimized for developing an economical industrial technique. Current research involves injection of ammonia as precursor gas in to A356 alloy melt. Experiments were conducted in a Lindbergh furnace at 1473K to produce Al-alloy composite with nitride content varying from 5 to 60 wt percent. Composition of the products is analyzed using Optical Microscope, XRD, SEM, and EDS techniques. A linear increase in nitride content with an increase in bubbling time was observed. Vickers hardness number (HV) and Knoop hardness number (HK) measured for these composites showed an increasing trend with increasing A1N content.
机译:据报道,使用新化学技术涉及反应气体注射的铝合金金属基复合材料加强用A1N颗粒加固。研究了诸如气体喷射时间,气体流速的处理变量的影响,并优化了开发经济的工业技术。目前的研究涉及将氨作为前体气体注射到A356合金熔体中。在1473K的Lindbergh炉中在Lindbergh炉中进行实验,以生产氮化物含量的Al合金复合物,从5-60重量%变化。使用光学显微镜,XRD,SEM和EDS技术分析产品的组成。观察到氮化物含量随鼓泡时间增加的线性增加。对于这些复合材料测量的维氏硬度数(HV)和Knoop硬度数(HK)显示出增加趋势,随着A1N含量增加。

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