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Actuation of a carbon/epoxy beam using shape memory alloy wires

机译:使用形状记忆合金线驱动碳/环氧束

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Shape memory effect of NiTi wires is utilized to design various smart composite structures. In these systems, smart wires can induce strains in the host structure by their inherent shape memory effect and phase transformation at elevated temperatures. This article presents an experimental and numerical study on the actuation capability of shape memory alloy wires embedded in the carbon/epoxy composite. In the experimental part, hybrid shape memory alloy/carbon/epoxy composite specimens are fabricated and examined to measure induced strains in the host structure by the phase transformation of the shape memory alloy wires. Hybrid composite specimens were clamped at one end, and the shape memory alloy wires were activated using electrical resistive heating. Numerical simulations were carried out using ABAQUS software to simulate the actual thermomechanical behavior of the hybrid composite specimens. A three-dimensional finite element model based on cohesive zone modeling is used to predict interfacial debonding in hybrid composite plates. The results of the parametric study suggest that by increasing Young’s modulus of the host composites, the amount of the induced strain decreases rapidly. However, for Young’s moduli more than 20 GPa, the induced strain will stay almost constant. Moreover, it was confirmed that increasing the shape memory alloy pre-strain without controlling the actuation temperature may result in the reduction of induced strain in the host composites.
机译:利用镍钛丝的形状记忆效应来设计各种智能复合结构。在这些系统中,智能线可通过其固有的形状记忆效应和在高温下的相变而在主体结构中引起应变。本文对碳/环氧复合材料中嵌入的形状记忆合金线的驱动能力进行了实验和数值研究。在实验部分,制造并检查了混合形状记忆合金/碳/环氧树脂复合材料样品,以通过形状记忆合金线的相变来测量主体结构中的诱发应变。将混合复合材料样品夹在一端,并使用电阻加热激活形状记忆合金线。使用ABAQUS软件进行了数值模拟,以模拟混合复合材料标本的实际热力学行为。基于内聚区建模的三维有限元模型用于预测混合复合板界面剥离。参数研究的结果表明,通过增加主体复合材料的杨氏模量,诱导应变的数量会迅速减少。但是,当杨氏模量超过20 GPa时,感应应变将保持几乎恒定。此外,已经证实,在不控制致动温度的情况下增加形状记忆合金的预应变可以导致主体复合材料中的诱发应变的减小。

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