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Nonlinear influence of contraflexure migration on near-curtailment stresses in hyperstatic FRP-laminated steel members

机译:反弯曲迁移对FRP叠合钢构件中近限应力的非线性影响

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摘要

The flexural characteristics of hyperstatic steel members with adhesively bonded Fibre reinforced polymer (FRP) laminates are considered. It is shown that, during elasto-plastic activity, the migration of the points of contraflexure along such members has two nonlinear effects on the stresses in both the laminate and the adhesive. First, the lengths of laminate traversed by these migrating points undergo reversal of axial stress from tension to compression, which exposes the laminate to potential buckling. Second, the bond stresses in the adhesive near laminate curtailment increase dramatically, and so may initiate brittle failure near curtailment by separation of the laminate from the steel member. Nonlinear finite element (FE) analyses are used to illustrate both these effects. The FE model is verified by comparison with published data, and is then used to analyse an isostatic and a hyperstatic FRP-laminated steel member/The results show that the above nonlinear influences are pronounced in the hyperstatic member, but are absent from the isostatic member. Tapering of both the laminate and adhesive profiles near curtailment of the laminate is investigated as a potential means of reducing these effects in the hyperstatic member. Finally, the implications of the above effects for the performance of hyperstatic FRP-laminated steel members in practice, are discussed.
机译:考虑了具有粘合性的纤维增强聚合物(FRP)层压板的高强度钢构件的弯曲特性。结果表明,在弹塑性活动期间,弯曲点沿这种构件的迁移对层压板和粘合剂中的应力具有两个非线性影响。首先,被这些迁移点穿过的层压板的长度经历了轴向应力从拉伸到压缩的反转,这使层压板暴露于潜在的屈曲。其次,在层压板削壁附近的粘合剂中的粘结应力急剧增加,因此,通过将层压板与钢构件分离,可以在削壁附近引发脆性破坏。非线性有限元(FE)分析用于说明这两种影响。通过与公开数据进行比较来验证有限元模型,然后将其用于分析等静压和超静压FRP层压钢构件/结果表明,上述非线性影响在超静压构件中是明显的,但在等静压构件中却没有。 。研究了层压板的渐缩和接近层压板削薄的粘合剂轮廓,这是减少高静电构件中这些效应的潜在手段。最后,讨论了以上效果对实际中FRP叠层钢构件性能的影响。

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