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Methods for adhesion/friction reduction of novel wire-shaped actuators,based on shape memory alloys,for use in adaptive fiber-reinforced plastic composites

机译:基于形状记忆合金的新型线形致动器的粘合/减摩方法,用于自适应纤维增强塑料复合材料

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摘要

For fiber-reinforced plastic composites, fiber-matrix adhesion is a significant aspect of composite properties. While conventional lightweight structures are always aiming for high fiber-matrix adhesion, innovative and unconventional functional constructions require different concepts. The research work treating adaptive fiber-reinforced plastic composites with shape memory alloy wires presented here uses the approach of actuators freely movable within the composite. This is supposed to prevent mechanical tensions in the interfaces of actuator and composite structure, which would otherwise cause damages of the composite. This work examines hybrid yarns based on friction spinning technology, with shape memory alloy wires as their core component as well as glass fibers, and partly polypropylene, as their sheath component. Additionally, the surface properties of the shape memory alloy wires being used are modified by sanding and coating. The results of a characterization by pull-out testing clearly show that a coating of the shape memory alloy wires with an abherent causes considerable decrease in adhesion and friction in the interface and leads to the mobility of the shape memory alloy wires in the later composite. An even greater effect is attained by sheathing the hybrid yarns in an additional layer of polypropylene, compacting the yarn cross-section. Thus, the pull-out force could be reduced to 35-40% of the reference structure.
机译:对于纤维增强的塑料复合材料,纤维基质的粘合是复合材料性能的重要方面。尽管常规的轻质结构始终旨在获得高的纤维基体粘合力,但创新和非常规的功能性结构却需要不同的概念。本文介绍的利用形状记忆合金丝处理自适应纤维增强塑料复合材料的研究工作采用了在复合材料内自由移动的执行器的方法。据认为这可以防止致动器和复合材料结构的界面处的机械张力,否则会导致复合材料的损坏。这项工作研究了基于摩擦纺丝技术的混合纱线,其中形状记忆合金丝为核心成分,玻璃纤维以及部分聚丙烯为皮成分。另外,所使用的形状记忆合金线的表面性质通过打磨和涂覆而改变。通过拉出试验进行表征的结果清楚地表明,形状记忆合金线的涂层具有附着力,会导致界面中的附着力和摩擦力显着降低,并导致形状记忆合金线在以后的复合物中的迁移率。通过在另一层聚丙烯中包覆杂化纱线,使纱线横截面紧密,可获得更大的效果。因此,拉出力可以减小到参考结构的35-40%。

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