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Reduction of the stress concentration factor in a homogeneous panel with hole by using a functionally graded layer

机译:通过使用功能渐变层来降低带孔的均质面板中的应力集中系数

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摘要

This work aims at understanding the effect of a radially heterogeneous layer around the hole in a homogeneous plate on the stress concentration factor. The problem concerns a single hole in a plate under different far-field in-plane loading conditions. By assuming a radial power law variation of Young's modulus and constant value for Poisson's ratio, the governing differential equations for plane stress conditions, and general in-plane loading conditions are studied. The elastic solutions are obtained in closed form and, in order to describe localized interface damage between the ring and the plate, two different interface conditions (perfectly bonded and frictionless contact) are studied. The formulae for the stress concentration factors are explicitly given for uniaxial, biaxial and shear in-plane loading conditions and comparisons with interface hoop stress values are performed. The solutions are investigated to understand the role played by the geometric and graded constitutive parameters. The results are validated with numerical finite element simulations in which some simplified hypotheses assumed in the analytical model, are relaxed to explore the range of validity of the elastic solution presented. In this way the results obtained are useful in tailoring the parameters for specific applications.
机译:这项工作旨在了解均匀板中孔周围的径向异质层对应力集中系数的影响。该问题涉及在不同远场平面内载荷条件下板上的单个孔。通过假设杨氏模量和泊松比常数为常数的径向幂定律变化,研究了平面应力条件和一般平面载荷条件下的控制微分方程。弹性解以封闭形式获得,并且为了描述环和板之间的局部界面损伤,研究了两种不同的界面条件(完全粘合和无摩擦接触)。明确给出了单轴,双轴和剪切面载荷条件下的应力集中系数公式,并与界面环向应力值进行了比较。对解决方案进行了研究,以了解几何和渐变本构参数所起的作用。结果得到了数值有限元模拟的验证,其中简化了分析模型中假设的一些简化假设,以探讨所提出的弹性解的有效性范围。这样,获得的结果可用于为特定应用定制参数。

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