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Stress-induced amorphization triggers deformation in the lithospheric mantle

机译:应激诱导的非晶化触发岩石罩中的变形

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摘要

The mechanical properties of olivine-rich rocks are key to determining the mechanical coupling between Earth's lithosphere and asthenosphere. In crystalline materials, the motion of crystal defects is fundamental to plastic flow(1-4.) However, because the main constituent of olivine-rich rocks does not have enough slip systems, additional deformation mechanisms are needed to satisfy strain conditions. Experimental studies have suggested a non-Newtonian, grain-size-sensitive mechanism in olivine involving grain-boundary sliding(5,6). However, very few microstructural investigations have been conducted on grain-boundary sliding, and there is no consensus on whether a single or multiple physical mechanisms are at play. Most importantly, there are no theoretical frameworks for incorporating the mechanics of grain boundaries in polycrystalline plasticity models. Here we identify a mechanism for deformation at grain boundaries in olivine-rich rocks. We show that, in forsterite, amorphization takes place at grain boundaries under stress and that the onset of ductility of olivine-rich rocks is due to the activation of grain-boundary mobility in these amorphous layers. This mechanism could trigger plastic processes in the deep Earth, where high-stress conditions are encountered (for example, at the brittle-plastic transition). Our proposed mechanism is especially relevant at the lithosphere-asthenosphere boundary, where olivine reaches the glass transition temperature, triggering a decrease in its viscosity and thus promoting grain-boundary sliding.
机译:富含橄榄石的岩石的机械性能是确定地球岩石圈和哮喘圈之间的机械耦合的关键。在晶体材料中,晶体缺陷的运动是塑性流动(1-4)的基础(1-4),因为富含橄榄石的岩石的主要成分没有足够的滑动系统,所以需要额外的变形机制来满足应变条件。实验研究表明,寡核苷酸中的非牛顿粒度敏感机制涉及谷物边界滑动(5,6)。然而,在谷物边界滑动中进行了很少的微观结构调查,并且没有关于单个或多种物理机制在游戏中的共识。最重要的是,没有理论框架,用于纳入多晶塑性模型中的晶界机械结构。在这里,我们识别富含橄榄石岩石中的晶界变形的机制。我们表明,在Forsterite中,在压力下的晶界发生,富含橄榄石的岩石的延展性发作是由于这些无定形层中的晶界移动性的激活。该机制可以触发深层的塑料过程,其中遇到高应力条件(例如,在脆性塑料过渡处)。我们所提出的机制在岩石圈的近距离界面特别相关,其中橄榄石达到玻璃化转变温度,触发其粘度的降低,从而促进晶界滑动。

著录项

  • 来源
    《Nature》 |2021年第7848期|82-86|共5页
  • 作者单位

    Univ Antwerp Elect Microscopy Mat Sci Antwerp Belgium;

    Univ Lille Unite Mat & Transformat Centrale Lille CNRS INRAE UMR 8207 UMET Lille France|Inst Univ France Paris France;

    Univ Montpellier CNRS Geosci Montpellier UMR Montpellier France;

    Univ Bayreuth Bayer Geoinst Bayreuth Germany|Univ Toulouse CNRS CNES UPS IRAP Toulouse France;

    Univ Montpellier CNRS Geosci Montpellier UMR Montpellier France|Ecole Normale Super CNRS Lab Geol UMR8538 Paris France;

    Univ Tokyo Earthquake Res Inst Tokyo Japan;

    Univ Lille Unite Mat & Transformat Centrale Lille CNRS INRAE UMR 8207 UMET Lille France;

    Univ Antwerp Elect Microscopy Mat Sci Antwerp Belgium;

    Univ Antwerp Elect Microscopy Mat Sci Antwerp Belgium|Catholic Univ Louvain Inst Mech Mat & Civil Engn Louvain La Neuve Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 23:28:50

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