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Design of a bio-inspired composite using probabilistic fracture mechanics

机译:使用概率骨折力学设计生物启发复合材料

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摘要

Artificial composites inspired from biological materials such as nacre and bone has a staggered structure of hard inclusions surrounded by a soft interface. These composites possess an excellent combination of strength, toughness and stiffness. These properties depends on a critical value of overlap ratio of inclusions, and hence is one of major parameters in the design of bio-inspired composites. Randomness in material and geometrical parameters could exist in such composites. In this work, the randomness in various parameters are considered, and using probabilistic methods, the critical overlap ratio is found out. This is done for two dimensional, and three dimensional inclusions. For the three dimensional case, due to unavailability of the analytical solution, high dimensional model representation technique in conjunction with finite element analysis is done to find out the critical overlap ratio. To determine the probability of failure for two dimensional as well as three dimensional cases, Monte Carlo Simulation is used. Finally, based on the study a factor of safety is proposed for the critical stress intensity factor which could be used in design to account for uncertainties in the various parameters.
机译:从露珠和骨等生物材料的人工复合材料引发了生物材料,具有围绕软界面包围的硬质夹杂物的交错结构。这些复合材料具有优异的强度,韧性和刚度的组合。这些性质取决于夹杂物的重叠比的临界值,因此是生物启发复合材料设计中的主要参数之一。这些复合材料中可以存在材料和几何参数中的随机性。在这项工作中,考虑各种参数中的随机性,并使用概率方法,发现临界重叠比。这是为二维和三维夹杂物完成的。对于三维壳体,由于分析解决方案的不可用,结合有限元分析的高尺寸模型表示技术来消除临界重叠比。为了确定二维以及三维情况的失败概率,使用蒙特卡罗模拟。最后,基于该研究,提出了一种安全性因素,用于临界应力强度因子,该临界应力强度因子可以用于设计以解释各种参数中的不确定性。

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