Carrez Philippe, Goryaeva Alexandra M, Cordier Patrick
Univ. Lille, CNRS, INRA, ENSCL, UMR 8207 UMET - Unité Matériaux et Transformations, F-59000, Lille, France.
Sci Rep. 2017 Dec 15;7(1):17640. doi: 10.1038/s41598-017-18018-1.
The plastic properties of MgSiO post-perovskite are considered to be one of the key issues necessary for understanding the seismic anisotropy at the bottom of the mantle in the so-called D" layer. Although plastic slip in MgSiO post-perovskite has attracted considerable attention, the twinning mechanism has not been addressed, despite some experimental evidence from low-pressure analogues. On the basis of a numerical mechanical model, we present a twin nucleation model for post-perovskite involving the emission of 1/6 <110> partial dislocations. Relying on first-principles calculations with no adjustable parameters, we show that {110} twin wall formation resulting from the interaction of multiple twin dislocations occurs at a twinning stress comparable in magnitude to the most readily occurring slip system in post-perovskite. Because dislocation activities and twinning are competitive strain-producing mechanisms, twinning should be considered in future models of crystallographic preferred orientations in post-perovskite to better interpret seismic anisotropy in the lowermost lower mantle.
硅酸镁后钙钛矿的塑性特性被认为是理解所谓D"层下地幔底部地震各向异性所必需的关键问题之一。尽管硅酸镁后钙钛矿中的塑性滑移已引起了相当多的关注,但尽管有来自低压类似物的一些实验证据,孪生机制仍未得到解决。基于一个数值力学模型,我们提出了一个后钙钛矿的孪生形核模型,该模型涉及1/6<110>部分位错的发射。依靠无可调参数的第一性原理计算,我们表明,多个孪晶位错相互作用导致的{110}孪晶壁形成发生在与后钙钛矿中最容易出现的滑移系大小相当的孪生应力下。由于位错活动和孪生是产生应变的竞争机制,因此在未来的后钙钛矿晶体择优取向模型中应考虑孪生,以便更好地解释下地幔最底部的地震各向异性。