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Finite-element analysis of simulated ammonoid septa (extinct Cephalopoda): septal and sutural complexities do not reduce strength

机译:模拟氨膜隔片(绝灭的头足纲动物)的有限元分析:隔片和缝合的复杂性不会降低强度

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摘要

Finite-element analysis of circular septum models indicates that (1) anticlastic fluting weakened the last septa of the same radius of curvature by a factor of about 2.5 relative to the tensile stresses in a sphere of nacre, (2) septa with ammonitic sutures were stronger than those with goniatitic sutures of the same thickness, and (3) septa with more "complex" ammonitic sutures were stronger at the edge between lobes and saddles than "simple" ones. These results contradict recent claims that ammonoid septa became weaker as sutural complexity increased from goniatitic through ammonitic, so that the most complex sutures were limited to the shallowest habitats. The smaller marginal flutes of complex septa were relatively strong, allowing them to be thinner than the central septum and still act as elastic wall supports. Many Mesozoic ammonoids with highly sinuous sutures occurred in deep epeiric and open-ocean habitats, whereas it is those with secondarily reduced, ceratitic sutures that were typically associated with restricted shallow basins.
机译:圆形隔片模型的有限元分析表明 :(1)防弹槽使 相同曲率半径的最后一个隔片相对于减小了约2.5倍珠光层中的拉应力;(2)羊膜缝合线 的隔垫要强于 厚度相同的角膜缝合线;(3)带有更多“复杂”氨水 缝线的隔垫比“简单”缝线在凸角和鞍形 之间的边缘更牢固。这些结果与最近的说法相反,即随着缝合复杂性从吞咽到氨水的增加, 氨膜隔变得更弱,因此最复杂的 缝线仅限于最浅的栖息地。复杂隔垫的较小的 边缘凹槽相对较强,允许 使其比中央隔垫薄,并且仍充当 弹性壁支撑。 缝线高度弯曲的许多中生铵盐发生在深层的上层和开阔海生境中,而 则是具有第二次还原的陶粒缝合线的 通常与受限制的浅盆地有关。

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  • 来源
    《Paleobiology》 |2002年第1期|113-126|共14页
  • 作者单位

    M. A. Hassan and M. A. Dokainish. Department of Mechanical Engineering, McMaster University, Hamilton, Ontario L8S 4M1, Canada|Present address: Department of Mechanical Engineering, University of New Brunswick, Fredericton, New Brunswick E3B 5A3, Canada;

    G. E. G. Westermann. School of Geography and Geology, McMaster University, Hamilton, Ontario L8S 4M1, Canada;

    R. A. Hewitt. 12 Fairfield Road, Eastwood, Leigh-on-Sea, Essex SS9 5SB, United Kingdom;

    M. A. Hassan and M. A. Dokainish. Department of Mechanical Engineering, McMaster University, Hamilton, Ontario L8S 4M1, Canada|Present address: Department of Mechanical Engineering, University of New Brunswick, Fredericton, New Brunswick E3B 5A3, Canada;

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