Lentz M, Risse M, Schaefer N, Reimers W, Beyerlein I J
Technische Universität Berlin, Institut für Werkstoffwissenschaften und -technologien, Metallische Werkstoffe, Ernst-Reuter-Platz 1, Berlin 10587, Germany.
Helmholtz-Zentrum Berlin für Materialien und Energien GmbH, Institute Nano-architectures for Energy Conversion (EE-IN), Hahn-Meitner-Platz 1, Berlin 14109, Germany.
Nat Commun. 2016 Apr 4;7:11068. doi: 10.1038/ncomms11068.
Based on their high specific strength and stiffness, magnesium alloys are attractive for lightweight applications in aerospace and transportation, where weight saving is crucial for the reduction of carbon dioxide emissions. Unfortunately, the ductility of magnesium alloys is usually limited. It is thought that one reason for the lack of ductility is that the development of - double twins (DTW) cause premature failure of magnesium alloys. Here we show with a magnesium alloy containing 4 wt% lithium, that the same impressively large compression failure strains can be achieved with DTWs as without. The DTWs form stably across the microstructure and continuously throughout straining, forming three-dimensional intra-granular networks, a potential strengthening mechanism. We rationalize that relatively easier <c+a> slip characteristic of this alloy plastically relaxed the localized stress concentrations that DTWs can generate. This result may provide key insight and an alternative perspective towards designing formable and strong magnesium alloys.
基于其高比强度和刚度,镁合金在航空航天和交通运输领域的轻量化应用中具有吸引力,在这些领域减轻重量对于减少二氧化碳排放至关重要。不幸的是,镁合金的延展性通常有限。人们认为缺乏延展性的一个原因是孪晶(DTW)的形成会导致镁合金过早失效。在此,我们通过一种含4 wt%锂的镁合金表明,有孪晶时与无孪晶时能实现同样令人印象深刻的大压缩失效应变。孪晶在整个微观结构中稳定形成,并在整个应变过程中持续存在,形成三维晶内网络,这是一种潜在的强化机制。我们推断,这种合金相对更容易的<c+a>滑移特性使孪晶可能产生的局部应力集中得到了塑性松弛。这一结果可能为设计可成形且高强度的镁合金提供关键见解和另一种视角。