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SELF-HEALING IN AN ALUMINUM ALLOY REINFORCED WITH MICROTUBES

机译:用Microtubes加强铝合金的自我愈合

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For the last decade, many researchers have been working to develop self-healing materials, and have obtained good results in the field of polymers. The research described in this paper applies the concept of self healing to fabricate self healing metal matrix composites, with the aid of models developed by the authors for the manufacturing processes and self-healing behavior. The development of self-healing metals is a novel idea that has not been explored in great detail yet. The concept of self-healing described in this paper consists of controlling a low temperature melting alloy imbedded within a higher temperature alloy to create a self healing composite (SHC). When the SHC is damaged or cracked, heat may be applied to the affected area whereupon the low melting alloy will melt and flow into the crack healing the damage and sealing the crack. This study consists of theoretical analysis, metallurgical design, experimental synthesis and Computational Fluid Dynamics of a self-healing aluminum alloy designed by the authors. The aluminum alloy matrix is reinforced with microtubes of alumina (Al_2O_3) that are filled with a low melting point solder alloy. The objective of the study reported here was to find the influence and efficiency of the solder in healing an aluminum matrix. To check this effect a crack was created in the metal surface, piercing the microtube(s) filled with solder, and then the SHC was heated above the melting point of the solder alloy.
机译:在过去十年中,许多研究人员一直在努力开发自我修复材料,并在聚合物领域获得了良好的效果。本文描述的研究适用于自我愈合的概念来制造自我愈合金属基质复合材料,借助于作者开发的制造过程和自我愈合行为的辅助。自我治疗金属的发展是一种新颖的想法,尚未详细探讨。本文描述的自愈合的概念包括控制在较高温度合金中嵌入的低温熔融合金以产生自愈合复合材料(SHC)。当SHC损坏或破裂时,可以将热量施加到受影响的区域,随后将低熔点合金熔化并流入裂纹愈合损坏并密封裂缝。本研究包括由作者设计的自愈铝合金的理论分析,冶金设计,实验合成和计算流体动力学。铝合金基质用氧化铝(Al_2O_3)的微管填充有低熔点焊料合金的微管。本研究的目的在此报告的是发现焊料在愈合铝基中的影响和效率。为了检查这种效果,在金属表面中产生裂缝,刺穿填充有焊料的微管状,然后将SHC加热在焊料合金的熔点之上。

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