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Influence of residual stresses on the buckling behaviour of thin-walled, composite tubes with closed cross-section - Numerical and experimental investigations

机译:残余应力对具有闭合截面的薄壁复合管屈曲行为的影响-数值和实验研究

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The aim of this research is to investigate the influence of residual stresses on the behaviour of thin-walled laminates during compression until failure. We investigate the compression of a squared cross-section, GFRP columns with dimensions: (width x height x thickness): 80 x 80 x 2 mm. The length of the tubes is equal to 250 mm. The material used to manufacture the specimens was eight-layered pre-preg and we analysed six combinations of angular arrangements. The autoclaving technique was employed to produce the samples. In this paper, a new FE model of tubes' compression including residual stresses from the manufacturing process is presented. The FE model where residual stresses are not taken into account has been underestimated by the real structures' behaviour. Therefore, the first part of the study is devoted to preparing a simplified model of the curing process, while in the second the manufacturing and curing stresses are transferred to the model of compression. Backed by experimental data, the study shows that residual stresses have a significant influence on buckling performance, which finds confirmation in the experiments.
机译:这项研究的目的是研究残余应力对压缩至破裂之前薄壁层压板性能的影响。我们研究了方形横截面GFRP柱的压缩情况,其尺寸为:(宽x高x厚):80 x 80 x 2 mm。管的长度等于250毫米。用于制造样品的材料是八层预浸料,我们分析了六种角度排列组合。采用高压灭菌技术生产样品。本文提出了一种新的钢管压缩有限元模型,其中包括制造过程中的残余应力。实际结构的行为低估了未考虑残余应力的有限元模型。因此,研究的第一部分致力于准备固化过程的简化模型,而第二部分则将制造和固化应力转移到压缩模型中。在实验数据的支持下,研究表明残余应力对屈曲性能有重大影响,这在实验中得到了证实。

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