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首页> 外文期刊>International journal of structural stability and dynamics >QUASI-STATIC INFLATION SIMULATIONS BASED ON CO-ROTATIONAL TRIANGULAR SPACE MEMBRANE ELEMENTS
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QUASI-STATIC INFLATION SIMULATIONS BASED ON CO-ROTATIONAL TRIANGULAR SPACE MEMBRANE ELEMENTS

机译:基于同向三角形空间膜元件的准静态充气模拟

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摘要

Co-rotational triangular space membrane elements are developed for the quasi-static analysis of very thin structures subjected to pressure loadings from compressible media, aiming primarily at simulations of inflation processes. By separating rigid body motion and deformational displacement, the major part of geometric nonlinearity is treated by a co-rotational filter. With the formulation, hyper-elastic and linear elastic material models are used in the local plane element expressions. Numerical experiments show that either material model can be used in the present context, but that the linearly elastic model demands an optimal reference system. The hyperelastic form is useful also for very large expansions, but the neo-Hookean expression chosen has some limitations for large strains. Simulations are parameterized by internal over-pressure, but an amount of injected gas can be calculated from pressure and enclosed volume. The uniqueness and stability in the response of the structures must be seen as a function of either pressure or amount of gas, dependent on the precise mechanism for inflation.
机译:开发了同向旋转三角空间膜元件,用于对承受来自可压缩介质的压力的超薄结构进行准静态分析,其主要目的是模拟膨胀过程。通过分离刚体运动和变形位移,几何非线性的主要部分由同向旋转滤波器处理。通过该公式,在局部平面元素表达式中使用了超弹性和线性弹性材料模型。数值实验表明,两种材料模型都可以在当前环境下使用,但是线性弹性模型需要最佳的参考系统。超弹性形式对于非常大的扩展也是有用的,但是选择的新霍克式表达对于大应变有一些限制。通过内部超压对模拟进行参数设置,但是可以根据压力和封闭体积计算注入的气体量。结构响应的唯一性和稳定性必须视压力或气体量而定,这取决于充气的精确机理。

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