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Evaluation of strengthening mechanisms in calcite single crystals from mollusk shells

机译:软体动物壳方解石单晶的强化机理评价

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摘要

Biogenic single-crystal calcite is often reported to be harder and tougher than geologic calcite in the form of Iceland spar. However, the mechanistic origins of the superior mechanical properties of the biogenic materials are still debated. We investigate the hardness and modulus of biogenic calcite from the prismatic layer of the mollusk Atrina rigida compared with a pure geologic calcite, Iceland spar. On the {0 0 1} face, biogenic calcite is found to be 50-70% harder than geologic calcite. This range is due to the fact that changes in azimuthal angle of the indenter tip lead to a hardness variation of ??20% in A. rigida but only ??7% in Iceland spar. The higher hardness and increased anisotropy of biogenic calcite could be accounted for by hardening mechanisms based on hindered dislocation motion rather than crack deflection. ? 2012 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:据报道,生物单晶方解石比冰岛方晶石形式的地质方解石更坚硬。然而,生物起源材料的优异机械性能的机械起源仍在争论中。与纯地质方解石冰岛晶石相比,我们研究了软体动物Atrina硬质合金棱柱形层中生物方解石的硬度和模量。在{0 0 1}面,发现生物方解石比地质方解石硬50-70%。该范围是由于压头尖端的方位角的变化导致刚硬曲霉的硬度变化为±20%,而冰岛晶石的硬度变化仅为±7%。生物成方解石的较高硬度和各向异性的增加可以归因于基于位错运动而非裂纹偏斜的强化机制。 ? 2012年Acta Materialia Inc.由Elsevier Ltd.发行。保留所有权利。

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