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文石中富含镁的纳米沉淀物:Ophiocoma wendtii 增韧的原子机制。

Magnesium-rich nanoprecipitates in calcite: atomistic mechanisms responsible for toughening in Ophiocoma wendtii.

机构信息

Department of Physics and Astronomy, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Phys Chem Chem Phys. 2020 May 13;22(18):10056-10062. doi: 10.1039/d0cp00887g.

Abstract

The brittlestar Ophiocoma wendtii is theorised to employ a technique already used in metallurgy in order to optimise the mechanical properties of calcitic microlenses within their skeletons. These microlenses contain arrays of Mg-rich nanoprecipitates, which are proposed to inhibit crack propagation through the compression of the local host lattice. Here, we employ classical molecular dynamics in order to study the effects of Mg-rich nanoprecipitates on lattice strain, stress distributions and crack propagation in calcite. Our quantitative results on lattice strain and stress induced on the host matrix are compatible with empirical estimates. Simulations of crack propagation demonstrate that the inclusion of a Mg-rich region results in an increase in stress required to fracture the crystal, as well as higher residual stress in the fractured crystal. This is the result of an inhomogeneous stress distribution causing a more disordered fracture, as well as deflections of the crack away from the lowest energy (10.4) surface. The results agree with the proposal that the compression of the host lattice inhibits propagation, and offer insight into other mechanisms through which the nanoprecipitates affect crack propagation.

摘要

理论上,脆星鱼 Ophiocoma wendtii 采用了一种已经在冶金学中使用的技术,以优化其骨骼中碳酸钙微透镜的机械性能。这些微透镜包含一系列富含镁的纳米沉淀物,据推测,这些沉淀物通过压缩局部宿主晶格来抑制裂纹扩展。在这里,我们采用经典分子动力学来研究富含镁的纳米沉淀物对方解石中晶格应变、应力分布和裂纹扩展的影响。我们对宿主基质上诱导的晶格应变和应力的定量结果与经验估计相符。裂纹扩展的模拟表明,富含镁区域的存在会增加使晶体断裂所需的应力,以及断裂晶体中的残余应力更高。这是由于不均匀的应力分布导致更无序的断裂,以及裂纹偏离最低能量(10.4)表面的偏转而导致的。结果与宿主晶格压缩抑制传播的观点一致,并为纳米沉淀物影响裂纹扩展的其他机制提供了深入了解。

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