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Hydrostatic Stress and Triaxiality Factors in a Lotus Root Cross Section

机译:莲藕横截面中的静液压应力和三轴性因子

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Engineers often use nature as an inspiration for generating designs. Plants have optimised their structures over millions of years of evolution. A lotus root, rhizome of Nelumbo Nucifera Gaertn having gas canals was studied in the paper. The lotus root cross section subjected to an external water pressure was analysed and compared with other cross sections including a circular hollow cross section. It was found that the lotus root cross section has more areas containing higher triaxiality factors due to the holes. The hydrostatic stress in the lotus root cross section varies from zero to several times that of the external water pressure. However, the hydrostatic stress in a circular hollow cross section has a constant ratio to the external pressure. The research results show that engineering components with designed multi-holes can affect its failure behaviour. The structure of lotus root may be adopted in the design of engineering materials and structures.
机译:工程师经常使用大自然作为产生设计的灵感。植物已经优化了它们在数百万年的演变中的结构。在纸上研究了具有气体运河的Nelumbo Nucifera Gaertn的根茎。对外部水压进行的莲藕横截面进行分析,与其他横截面进行比较,包括圆形中空横截面。发现莲藕横截面具有更多的区域,该区域由于孔而含有较高的三轴性因子。莲藕横截面中的静水压应力从零到几倍变化到外部水压的几倍。然而,圆形中空横截面中的静液压应力具有与外部压力的恒定比率。研究结果表明,设计的多孔的工程部件可能会影响其失效行为。莲藕的结构可以在工程材料和结构的设计中采用。

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