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A flexible surface tooling for sheet-forming processes: conceptual studies and numerical simulation

机译:用于板材成型过程的灵活表面工具:概念研究和数值模拟

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All sheet-farming processes suffer from a limitation that tooling in the form of molds/dies is a precursor for realizing any simple or complex shape. In order to overcome this limitation, discrete surface tooling has been proposed in the past. This consists of a large number of closely spaced surface tool elements arranged in a matrix form whose heights can be adjusted to approximate the contour of desired surface shapes. Such a tooling has been successfully demonstrated experimentally. In this paper, a variation of discrete surface tooling, called as flexible surface tooling, has been proposed. The proposed tooling consists of discrete surface tool elements draped with flexible sheet of rubber-like material to provide a continuous surface required for tooling applications. Computational simulation of the proposed tooling is carried out for feasibility studies. Computational simulation involves the deformation analysis of rubber-like membranes in multiple contact by FEM. The results of the analysis indicate that the flexible surface tooling is an option for sheet-forming processes in general and for processes like composite layup in particular.
机译:所有的片材浇铸过程都有一个局限性,即模具/模具形式的工具是实现任何简单或复杂形状的先驱。为了克服该限制,过去已经提出了离散的表面工具。它由大量紧密间隔的表面工具元素组成,这些元素以矩阵形式排列,其高度可以调整为近似于所需表面形状的轮廓。这样的工具已经通过实验成功地证明了。在本文中,提出了一种离散曲面工具的变体,称为柔性曲面工具。所提出的工具由离散的表面工具元件组成,这些元件上覆盖有柔软的橡胶状材料片,以提供工具应用所需的连续表面。进行了拟议工具的计算仿真,以进行可行性研究。计算仿真涉及通过有限元法对多次接触的类橡胶膜进行变形分析。分析结果表明,一般来说,柔性表面工具是片材成型工艺的一种选择,特别是复合铺层等工艺的一种选择。

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