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Friction Stir Processing (FSP) of Multiwall Carbon Nanotubes and Boron Carbide Reinforced Aluminum Alloy (Al 5083) Composites

机译:多壁碳纳米管和碳化硼增强铝合金(Al 5083)复合材料的摩擦搅拌加工(FSP)

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Friction Stir Processing (FSP) is a novel solid-state processing technique for fabrication of high strength surface composites. In present study, FSP was used to compare the cold formability of individually reinforced, hybrid and reference FSP samples of aluminum alloy A15083. A plate of alloy containing MultiWall Carbon NanoTubes (MWCNTs) and boron carbide particles (B_4C) was processed by FSP and characterized. FSP composite containing MWCNTs was found to fracture during the bend-ductility test, while boron carbide particles reinforced FSP composites had superior cold bending formability along with the reference FSP sample. Cracking was also observed in hybrid FSP composite samples in lesser extent as compared to individually reinforced MWCNTs FSP composite. Possible cause of failure was identified as clustering of MWCNTs and weak interfacial bonding with the aluminum alloy matrix. Detailed metallographic and mechanical testing investigations revealed that the distribution of reinforcement at nanoscale and single pass processing played a vital role in generating defects and sinking of reinforcement particles in A15083 matrix.
机译:摩擦搅拌处理(FSP)是用于高强度的复合材料表面的制造的新型固态处理技术。在本研究中,FSP被用于比较铝合金A15083的单独增强,混合和参考FSP样品的冷成形性。合金含有多壁碳纳米管(MWCNT)和碳化硼颗粒(B_4C)的板是由FSP处理并进行表征。含有多壁碳纳米管的复合FSP发现弯曲和延展性的测试期间断裂,而碳化硼颗粒增强复合材料FSP具有优异的冷与参考样品FSP沿弯曲成形性。裂纹也被混合FSP复合样品中观察到在较小程度上比单独增强碳纳米管FSP复合材料。故障的可能原因被确定为多壁碳纳米管,并用铝合金基质弱界面结合的聚类。详述金相和机械测试调查显示,增强件的纳米级和单次通过处理分布在产生缺陷和A15083基体增强颗粒的下沉起到了至关重要的作用。

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