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Stress Concentration and Damage Factor Due to Central Elliptical Hole in Functionally Graded Panels Subjected to Uniform Tensile Traction

机译:在经过均匀的拉伸牵引力的功能分级板中的中央椭圆孔引起的应力浓度和损伤因子

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摘要

Functionally graded material (FGM) can optimize the mechanical properties of composites by designing the spatial variation of material properties. In this paper, the stress distribution of functionally graded panel with a central elliptical hole under uniaxial tensile load is analyzed. Based on the inhomogeneity variation and three different gradient directions, the effects of the inhomogeneity on the stress concentration factor and damage factor are discussed. The study results show that when Young’s modulus increases with the distance from the hole, the stress concentration factor decreases compared with that of homogeneous material, and the optimal design of r-FGM is better than that of x-FGM and y-FGM when the tensile load. In addition, when the associated variation of ultimate stress is considered, the choice of scheme to reduce the failure index is related to the strength-modulus exponent ratio. When the strength-modulus exponent ratio is small, the failure index changes with the index of power-law, which means there is an optimal FGM design. But when the strength-modulus exponent ratio is large, the optimal design modulus design is to select a uniform material that maximizes the modulus at each point. These research results have a certain reference value for further in-depth understanding of the inhomogeneous design for FGM.
机译:功能梯度材料(FGM)可以通过设计材料特性的空间变化来优化复合材料的机械性能。本文分析了单轴拉伸荷载下具有中央椭圆孔的功能梯度面板的应力分布。讨论了基于不均匀性变化和三种不同的梯度方向,讨论了不均匀性对应力集中因子和损伤因子的影响。研究结果表明,当杨氏模量随孔的距离而增加时,与均匀材料相比,应力集中因子降低,并且R-FGM的最佳设计比X-FGM和Y-FGM的最佳设计更好拉伸载荷。另外,当考虑有限应力的相关变化时,选择减少故障指数的方案的选择与强度模量指数比率有关。当强度模量指数比例很小时,故障指数随动力法指数变化,这意味着有最佳的FGM设计。但是,当强度模量指数比例大时,最佳设计模量设计是选择均匀材料,以最大化每个点的模量。这些研究结果具有一定的参考值,以进一步深入了解FGM的不均匀设计。

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