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Phase Transformation Induced Self-Healing Behavior of Al-Ag Alloy

机译:相变诱导Al-Ag合金的自愈行为

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摘要

Self-healing alloys are promising materials that can decrease the consequences of accidents. To detect crack formation in a material is simple task that can be performed by e.g., sonic or ultrasound detection, but it is not always possible to immediately replace the damaged parts. In this situation, it is very advantageous to have the chance to heal the crack during operation, which can be done e.g., by annealing. In this paper, self-healing behavior was proven by TEM (Transmission electron microscope) observation of crack healing after annealing. The crack was observed in the rapidly solidified Al-30Ag alloy with non-equilibrium phase composition formed by a minor amount of Ag2Al and a supersaturated solid solution of Ag in an fcc-Al matrix (fcc = face centered cubic). After annealing at 450 °C, equilibrium phase composition was obtained by forming a higher amount of Ag2Al. This phase transformation did not allow the crack to be healed. Subsequent annealing at 550 °C caused recrystallization to a supersaturated solid solution of Ag in fcc-Al, followed by a return to the mixture of fcc-Al and Ag2Al by cooling, and this process was accompanied by the closing of the crack. This observation proved the self-healing possibilities of the Ag2Al phase. Practical application of this self-healing behavior could be achieved through the dispersion of fine Ag2Al particles in a structural material, which will enrich the material with self-healing properties.
机译:自愈合金是可以减少事故后果的有前途的材料。检测材料中的裂纹形成是简单的任务,可以通过例如声音或超声波检测来执行,但是并不总是能够立即更换损坏的部件。在这种情况下,有机会在操作期间修复裂纹是非常有利的,这可以例如通过退火来完成。在本文中,通过TEM(透射电子显微镜)观察退火后的裂纹愈合证明了其自愈性能。在快速凝固的具有不平衡相组成的Al-30Ag合金中观察到了裂纹,该合金由少量的Ag2Al和过饱和的Ag固溶在fcc-Al基体中形成(fcc =面心立方)。在450°C退火后,通过形成更多量的Ag2Al获得平衡相组成。此相变无法修复裂缝。随后在550°C退火,导致重结晶为Ag在fcc-Al中的过饱和固溶体,然后通过冷却返回fcc-Al和Ag2Al的混合物,该过程伴随裂纹的闭合。该观察证明了Ag2Al相的自修复可能性。这种自我修复行为的实际应用可以通过将Ag2Al细颗粒分散在结构材料中来实现,这将使该材料具有自我修复特性。

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