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Microstructure-dictated resistance properties of some Indian dinosaur eggshells: finite element modeling

机译:某些印度恐龙蛋壳的微观结构决定的抗性:有限元建模

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摘要

Finite element modeling (FEM) has been used to evaluate microstructure-controlled stability of selected eggshells of Indian dinosaurs. Our study suggests that under static load the eggshell microstructure of Megaloolithus cylindricus displays a low magnitude of tensile stress over most of the spherolith. The magnitude of this tensile stress is lower than that displayed in M. jabalpurensis, M. baghensis, and Subtiliolithus kachchhensis. In M. cylindricus, a shell thickness matching the length of the spheroliths prevents the failure of eggshells, whereas in M. jabalpurensis and M. baghensis, which have thinner shells, the development of additional subspheroliths compensates for the relatively higher magnitude of tensile stresses. Extremely thin eggshell in S. kachchhensis shows a still higher magnitude of tensile stresses, thereby making it prone to cracking, but the propagation of cracks is apparently checked and stability reinforced by wider spacing of pore canals.
机译:有限元建模(FEM)已用于评估所选结构的印度恐龙蛋壳的微观结构控制的 稳定性。我们的研究 建议,在静载荷下,Megaloolithus cylindricus的蛋壳微结构 在大多数球体上显示出较低的拉伸应力。该拉伸应力的大小低于在贾巴尔布尔木(M. jabalpurensis),巴格斯山(M. baghensis)和枯草芽孢杆菌(Kachchhensis)中显示的值。在圆筒形支原体中, 与球体的长度相匹配的壳厚度可以防止 蛋壳的破坏,而在贾巴尔布尔木霉和M. baghensis中,它们具有更薄的外壳,另外的 亚球体的发展弥补了相对较高的拉伸应力 。卡氏链霉菌的非常薄的蛋壳 显示出更高的拉伸应力,因此 使其易于破裂,但是裂纹的传播是 显然,通过扩大孔的间距 可以增强稳定性。

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  • 来源
    《Paleobiology》 |2005年第2期|00000315-00000323|共9页
  • 作者单位

    Rahul Srivastava. Department of Geology, Nagaland University, Kohima-797002, India. rahulsrivastava71@rediffmail.com;

    Ashok Sahni. Centre of Advanced Studies in Geology, Panjab University, Chandigarh 160 014, India;

    Syed A. Jafar. 1-87, Dargah H. Shahwali, P.O. Golconda, Hyderabad-500 008, India;

    Sanjay Mishra. Department of Mechanical Engineering, Institute of Engineering and Technology, Lucknow-226021, India. sanjay_mishra@rediffmail.com;

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