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A NEW SINGULARITY-FREE FORMULATION OF A THREE-DIMENSIONAL EULER-BERNOULLI BEAM USING EULER PARAMETERS

机译:使用EULER参数的三维EULER-BERNOULLI梁的新奇异-免费公式

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In this investigation, a new singularity-free formulation of a three-dimensional Euler-Bernoulli beam with large deformation and large rotation is developed. The position of the centroid line of the beam is integrated from its slope, which can be easily expressed by Euler parameters. The hyper-spherical interpolation function is used to guarantee that the normalization constraint equation of Euler parameters is always satisfied. Hence, each node of a beam element has only four nodal coordinates, which is significantly fewer than an absolute node coordinate formulation (ANCF) and the finite element method (FEM). Governing equations of the beam and constraint equations are derived using Lagrange's equations for systems with constraints, which are solved by an available differential algebraic equation solver. The current formulation can be used to calculate the static equilibrium and dynamics of an Euler-Bernoulli beam under arbitrary concentrated and distributed forces. While the mass matrix is more complex than that in an absolute nodal coordinate formulation, the stiffness matrix and generalized forces are simpler, which is amenable for calculating the equilibrium of the beam. Several numerical examples are presented to demonstrate the performance of the current formulation. It is shown that the current formulation can achieve the same accuracy as the FEM and ANCF with a fewer number of coordinates.
机译:在这项研究中,开发了一种具有大变形和大旋转的三维欧拉-Bernoulli光束的新的自由性配方。光束的质心线的位置从其斜率集成,可以通过欧拉参数容易地表达。超球面插值函数用于保证欧拉参数的归一化约束方程总是满足。因此,光束元件的每个节点仅具有四个节点坐标,其显着少于绝对节点坐标配方(ANCF)和有限元方法(FEM)。光束和约束方程的控制方程是使用Lagrange的方程来导出具有限制的系统的Lagrange方程,其由可用的差分代数求解器解决。目前的制剂可用于计算在任意浓缩和分布力下欧拉-Bernoulli光束的静态平衡和动力学。虽然质量基质比在绝对节点坐标配方中更复杂,但刚度矩阵和广义力更简单,这是为了计算梁的平衡而允许的。提出了几个数值例子以证明电流制剂的性能。结果表明,目前的制剂可以达到与FEM和ANCF相同的精度,具有较少的坐标。

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