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Structure optimisation of metallic load introduction elements embedded in CFRP

机译:CFRP中嵌入金属负荷引入元件的结构优化

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摘要

The combination of construction parts made of fibre-reinforced plastics (FRP) and metal holds great lightweight design potential but places high demands on the necessary joining technologies. Metallic load introduction elements that are embedded in the manufacturing process of FRP components are a promising joining technology. In order to fully exploit the potential of this technology, approaches to increase the load bearing capacity of inserts, particularly under pull-out loads, have been missing. The aim is therefore to derive a method for the simulative structural optimisation of embedded inserts. The load bearing capacity increases under pull-out loads through smoothing of failure-critical stress peaks using the optimisation of the thickness distribution of the insert’s base plate. The increase of the load bearing capacity of the optimised insert geometry is confirmed through experimental validation.
机译:由纤维增强塑料(FRP)和金属制成的施工部件的组合具有极薄的轻质设计潜力,但对必要的加入技术占据了高要求。 嵌入在FRP组件的制造过程中的金属负载引入元件是一个有前途的连接技术。 为了充分利用这项技术的潜力,缺少了增加插入件的承载能力的方法,特别是在拉出载荷下。 因此,目的是导出嵌入式插入件的模拟结构优化的方法。 通过使用插入件底板的厚度分布的优化,通过平滑故障 - 临界应力峰值平滑负荷在拉出负载下增加。 通过实验验证确认了优化插入物几何的承载能力的增加。

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