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Double diaphragm forming simulation for complex composite structures

机译:复杂复合结构的双膜片成形模拟

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摘要

A finite element (FE) model has been developed to simulate the double diaphragm forming (DDF) process, to identify potential defects when forming complex 3D preforms from 2D biaxial non-crimp fabric plies. Three different metrics have been introduced to predict and characterise defects, which include local shear angles to determine ply wrinkling induced by over-shear, compressive strains in the primary fibre directions to determine bundle wrinkling, and tensile stresses in the primary fibre directions to determine fabric bridging. The FE simulation is in good agreement with experiments performed on a demonstrator component. Results indicate that fabric bridging occurs in large-curvature regions, which is the dominant defect in DDF, as wrinkling is generally lower than in matched-tool forming due to relatively low forming pressures (up to 1 bar). The axial tensile stress in fibres has been used as a measure to identify suitable positions and orientations for darts, to alleviate fabric bridging and improve surface conformity, whilst minimising the effect on the mechanical performance of the component.
机译:已经开发了有限元(FE)模型来模拟双膜片成型(DDF)过程,以识别从2D双轴非卷曲织物层形成复杂的3D预成型坯时的潜在缺陷。引入了三种不同的度量标准来预测和表征缺陷,包括局部剪切角(用于确定由过度剪切引起的层褶皱),在主纤维方向上的压缩应变(确定束皱)以及在主纤维方向上的拉伸应力(用于确定织物)桥接。 FE仿真与在演示器组件上进行的实验非常吻合。结果表明,织物桥接出现在大曲率区域,这是DDF中的主要缺陷,因为相对较低的成型压力(最高1 bar),起皱通常比匹配工具成型低。纤维中的轴向拉伸应力已被用作一种方法,用于确定飞镖的合适位置和方向,从而减轻织物的桥接并改善表面贴合性,同时将对组件机械性能的影响降至最低。

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