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首页> 外文期刊>Journal of Composite Materials >Fabrication of glass/carbon fiber-reinforced Al-based composites through deformation bonding
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Fabrication of glass/carbon fiber-reinforced Al-based composites through deformation bonding

机译:通过变形粘合制造玻璃/碳纤维增强的铝复合材料

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The goal of the present study is to fabricate the short fiber-reinforced metal matrix composites by accumulative roll bonding. Various mixtures of fibers including 100 glass, 95 glass/5 carbon and 80 glass/20 carbon (all in wt.%) were used as the reinforcement. In order to investigate the bonding quality at layer interface, the composites with various fiber mixtures were produced by cold roll bonding. The bonding strength of the composites under different processing conditions including the fiber mixture, reduction in thickness and post-rolling annealing was measured by the peeling test. The 95 glass/5 carbon mixture was used to fabricate the fiber-reinforced composite through accumulative roll bonding. The fiber distribution, tensile properties and wear behavior of the composite were investigated at various numbers of accumulative roll bonding cycle. It was found that during accumulative roll bonding, the fiber clusters were broken and fragmented into smaller pieces. Results showed that the tensile strength and wear resistance of the composite enhanced with increasing the number of accumulative roll bonding cycles.
机译:本研究的目的是通过累积辊粘合来制造短纤维增强金属基质复合材料。使用各种纤维混合物,包括100种玻璃,95玻璃/ 5碳和80杯/ 20碳(全部加入Wt。%)作为增强液。为了研究层界面处的键合质量,通过冷轧键合产生具有各种纤维混合物的复合材料。通过剥离试验测量复合材料在包括纤维混合物的不同加工条件下的粘合强度和轧制后退火的粘合强度。使用95玻璃/ 5个碳混合物通过累积辊粘合来制造纤维增强的复合材料。在各种数量的累积辊键合循环中研究了复合材料的纤维分布,拉伸性能和磨损行为。发现在累积辊粘合期间,将纤维簇破裂并碎片成较小的块。结果表明,复合材料的拉伸强度和耐磨性增强了增加累积辊粘合循环的数量。

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