基于Herrmann变分原理的三维粘弹性增量有限元法及其应用

INCREMENTAL VISCOELASTIC THREE-DIMENSIONAL FEM BASED ON HERRMANN VARIATIONAL PRINCIPLE AND ITS APPLICATION

  • 摘要: 发展了一种不可压和近似不可压粘弹性增量有限元法,并对固体火箭发动机药柱进行了三维分析。首先从Herrmann泛函出发并结合对应原理导出了适用于不可压和近似不可压粘弹性材料的本构关系,然后根据虚功原理建立了三维粘弹性增量有限元列式,最后对弹性约束的圆柱形中孔药柱进行了不可压和近似不可压分析。结果表明该方法可用于泊松比接近甚至等于0.5的粘弹性问题计算,尤其适用于固体推进剂药柱的结构分析。

     

    Abstract: Incremental FEM is developed for incompressible and nearly incompressible viscoelastic problems and the three-dimensional analysis of SRM grain is presented. Firstly the constitutive relation of incompressible and nearly incompressible viscoelastic material is derived based on the Herrmann functional and correspondence principle. Afterwards three-dimensional finite element formulations are obtained using the principle of virtual work. Finally incompressible and nearly incompressible analysis of a hollow cylindrical grain with elastic restraint is presented. The results illustrate that the proposed method is valid for viscoelastic problems whose Poisson’s ratio is close or equal to 0.5, especially suitable for the structural analysis of solid propellant grain.

     

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