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Void Growth and Interaction in a Structural Aluminum Alloy: Experiments and Theory

机译:结构铝合金的空隙生长和相互作用:实验与理论

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The problem of void growth and interaction is of importance to understanding the mechanics of failure in metals exhibiting ductility. In this work, the growth and interaction of voids in 6061-T6 aluminum were studied experimentally. Specifically, holes of varying numbers and relative placement were investigated for their normalized area growth with applied displacement. Flat dog-bone specimens were carefully drilled in their gauge area with no (zero) holes, one hole, and two holes (arranged vertically or horizontally) for experimentation after polishing. The growth of holes, captured by video recordings, exhibited exponential behavior and was influenced greatly by the number and arrangement of holes with the horizontal voids growing the fastest and the vertical ones growing the slowest. Also, the ensuring deformation of the sample was studied using load-displacement curves, pictography and videography, SEM imaging and Atomic Force Microscopy (AFM). The methods revealed that although the major part failure is due to large crack formation, it was preceded by intense dislocation slip activity and the formation of micro cavities. Also, the AFM quantified the three-dimensional nature of crystal or grain deformation and how it is greatly influenced by distance and location from the hole. Lastly, theoretical understanding of hole growth was offered.
机译:无效的生长和相互作用的问题对于了解表现出延展性的金属失效的机制是重要的。在这项工作中,通过实验研究了6061-T6铝中空隙的生长和相互作用。具体地,研究了各种数量和相对放置的孔,以通过施加的位移来研究其归一化区域生长。在抛光后,在没有(零)孔,一个孔和两个孔(垂直或水平布置)的测量区域中小心地钻出平狗骨标本,以进行抛光后进行实验。视频录制捕获的孔的生长表现出指数行为,并受到孔的数量和排列的影响,水平空隙生长最快,垂直于生长最慢的孔。此外,使用负载 - 位移曲线,典范和摄像,SEM成像和原子力显微镜(AFM)研究了样品的确保变形。该方法显示,尽管主要部分失效是由于大裂缝形成,但它是强烈的位错滑移活性和微腔的形成。此外,AFM量化了晶体或晶粒变形的三维性质,以及如何受到距离的距离和位置的大大影响。最后,提供了对孔增长的理论理解。

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