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Irregularities of crystallographic orientation and residual stresses in the crossed-lamellar shell as a natural functionally graded material

机译:天然功能梯度材料在交叉层壳中的晶体学取向和残余应力不规则

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摘要

The microstructures of different groups of molluscs are characterized by preferential orientations of crystallites (texture), leading to a significant anisotropy of the physical properties of the shells. A complementary characteristic, usually neglected, is the distribution of the residual stresses existing within the shell wall. By means of X-ray diffraction, we study the distribution of stresses with thickness in the shell wall of the gastropod Conus marmoreus, which has a microstructure of the crossed-lamellar type. The results revealed an extraordinary texture inhomogeneity and the existence of tensional residual stresses along the shell thickness, the origins of which are unknown. Some of the observed changes in textural parameters and stresses coincide with the transitions between shell layers, although other features are of unknown origin. Our results provide insight into the microstructural regularities that govern the mesoscale construction of shells, such as that of C. marmoreus.
机译:不同种类的软体动物的微观结构的特征在于微晶的优先取向(纹理),从而导致壳的物理特性具有明显的各向异性。通常被忽略的一个补充特征是存在于壳体壁内的残余应力的分布。通过X射线衍射,我们研究了腹足纲圆锥体的壳壁中应力的厚度分布,该壳具有交叉层状的微观结构。结果显示出异常的质地不均匀性以及沿壳厚度存在拉伸残余应力,其起源尚不清楚。观察到的一些纹理参数和应力变化与壳层之间的过渡相吻合,尽管其他特征来源不明。我们的结果提供了对控制壳的中尺度构造的微观结构规律的见解,例如马氏毛囊藻。

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