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Fabrication of continuous nickel-coated carbon fiber reinforced aluminum matrix composites using low gas pressure infiltration method

机译:使用低气体压力渗透法的连续镍涂层碳纤维增强铝基复合材料的制备

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摘要

Based on the principle of vacuum counter-pressure casting, a low gas pressure infiltration technology was developed to fabricate the Ni-coated carbon fiber reinforced A357 alloy composites. The soundness and microstructure of the as-cast composites were investigated. The results show the relative density increases with the increase of melt temperature, while it firstly increases and then declines as the fiber temperature and infiltration pressure increased. The enhancement of melt and fiber temperature can eliminate the incomplete infiltration defects and improve the uniformity of fiber distribution. The insufficient infiltration pressure leads to some micro-pores in the matrix alloy. However, the over high fiber temperature and infiltration pressure may result in the separation of nickel coating and the fiber aggregation respectively, both of which are responsible for the partial un-infiltrated or insufficient filling defects. The appropriate infiltration parameters identified in this study could provide a reference for inhibition of the hazard interfacial reactions by optimizing the low gas pressure infiltration process.
机译:基于真空反压力铸造的原理,开发了低气体压力渗透技术,以制造Ni涂层碳纤维增强A357合金复合材料。研究了铸造复合材料的声音和微观结构。结果表明,随着熔体温度的增加,相对密度增加,而首先增加,然后随着纤维温度和渗透压力增加而下降。熔融和纤维温度的增强可消除不完全的渗透缺陷,提高纤维分布的均匀性。渗透压力不足导致基质合金中的一些微孔。然而,过度高纤维温度和渗透压力可以分别导致镍涂层和纤维聚集的分离,两者都是负责部分未渗透或填充缺陷的不充分缺陷。本研究中鉴定的适当渗透参数可以通过优化低气体压力渗透过程来提供抑制危害界面反应的参考。

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