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Elastic-Plastic Analysis of Functionally Graded Spherical Pressure Vessels Using Strain Gradient Plasticity

机译:使用应变梯度可塑性功能梯形球形压力的弹性分析

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In this paper, formulation of elastic-plastic analysis of functionally graded (FG) spherical pressure vessels under internal pressure based on strain gradient plasticity is presented. The material properties are assumed to vary in a power law manner in the radial direction. A linear hardening rule for the material behavior in the plastic region is assumed. After deriving the governing differential equations, a closed form solution is obtained. At the first step, the obtained results were validated against other available results in the literature. Then the effects of changing the inner radius from a few micro-meters to one meter, FG power index and strain gradient coefficient on stress and plastic region size are studied based on classical and strain gradient theories. Also, the effect of internal pressure on the size of plastic region is studied.
机译:本文介绍了基于应变梯度可塑性的内部压力下功能梯度(FG)球形压力容器的弹性塑性分析的配制。 假设材料特性在径向方向上以电力法方式变化。 假设塑料区域中材料行为的线性硬化规律。 在得出控制微分方程之后,获得封闭的形式溶液。 在第一步,获得了所获得的结果,验证了文献中的其他可用结果。 然后基于经典和应变梯度理论,研究了改变内半径从几微米到一米到一米,FG功率指数和应变梯度系数的影响。 而且,研究了内部压力对塑料区域尺寸的影响。

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