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Analysis of active cooling through nickel coated carbon fibers in the solidification processing of aluminum matrix composites

机译:铝基复合材料凝固过程中镀镍碳纤维主动冷却的分析

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摘要

Solidification processing is widely used for synthesizing fiber reinforced aluminum matrix composites. Some recent studies have used cooling through reinforcing carbon fibers to obtain better control over the solidification microstructure of cast metal-matrix composites. The present study is focused on understanding the effect of active cooling and the role of nickel coating on the structure of the composite. Mul-tiphysics analysis is conducted to simulate the composite system and obtain temperature distribution and stresses at various stages of cooling. The analysis is limited to cooling of the liquid melt and the solidification processes is not modeled. Results show that the direction of the heat flux along the fiber can reverse as the system is allowed to cool. The results show that the von-Mises stresses do not have a severe gradient in the nickel coating but the shear stress gradient is very steep. If the structure solidifies with steep heat flux gradient and high interfacial shear stresses then the nickel coating of the fibers can fail. The analysis shows that the failure of the nickel coating can occur under the effect of thermal stresses generated in the system as a result of temperature gradients.
机译:固化工艺被广泛用于合成纤维增强铝基复合材料。最近的一些研究已使用通过增强碳纤维进行冷却来更好地控制铸造金属基复合材料的凝固组织。本研究的重点是了解主动冷却的效果以及镍涂层对复合材料结构的作用。进行了多物理场分析,以模拟复合系统并获得冷却各个阶段的温度分布和应力。该分析仅限于液体熔体的冷却,并且未对凝固过程进行建模。结果表明,随着系统的冷却,沿着纤维的热通量方向可能会反转。结果表明,在镍镀层中,von-Mises应力没有很大的梯度,但剪切应力梯度非常陡。如果结构在陡峭的热通量梯度和高界面剪切应力下凝固,则纤维的镍涂层可能会失效。分析表明,由于温度梯度,镍涂层的失效可能在系统中产生的热应力的作用下发生。

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