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Shape memory alloy actuation for active tuning of composite beams

机译:形状记忆合金致动,用于主动调整复合梁

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This paper presents an experimental-analytical study on the active tuning of composite beams using shape memory alloy (SMA) wires, Two graphite-epoxy composite beams with embedded fused silica tubes (also called sleeves) with 'dummy' steel wires inserted in the sleeves were manufactured using an autoclave molding technique, After curing, the 'dummy' wires were replaced by pre-strained SMA wires, During testing of such a beam, the beam and SMA wire are independently clamped at both ends and the SMA wires are activated using electrical resistive heating, A large tensile recovery force develops in the wires due to a phase transformation and the mechanical constraints provided by the clamps, The influence of this recovery force on the vibration behavior of the composite beams was determined by vibration testing. Analytically, these beams with SMA wires inserted in embedded sleeves were examined as beams on an elastic foundation; the spring constant of the elastic foundation depended on the axial recovery force of the SMA wire, Good correlation between analysis and experiment was achieved, A numerical parametric study of natural frequencies of composite beams with activated SMA wires was conducted the parameters considered were the diameter and the number of SMA wires. The numerical study suggests that inserting 25 SMA wires of 20 mils diameter into a graphite-epoxy beam of 30 in length, 1 in width and 62 mils thickness increases its first frequency by 276%.
机译:本文提供了使用形状记忆合金(SMA)线对复合梁进行主动调谐的实验分析研究,两个带有嵌入式石英管(也称为套管)的石墨-环氧复合梁,套管中插入了“虚拟”钢丝用高压灭菌成型技术制造,固化后,将“虚拟”线替换为预应变的SMA线,在测试这种梁时,将梁和SMA线两端分别夹紧,并使用以下方法激活SMA线电阻加热,由于相变和夹具提供的机械约束,在导线中产生了很大的拉伸回复力。通过振动测试确定了该回复力对复合梁振动特性的影响。从分析上看,将这些带有SMA线插入嵌入式套管的梁作为弹性基础上的梁进行了检查;弹性地基的弹性常数取决于SMA钢丝的轴向回复力,在分析和实验之间取得了良好的相关性,对激活SMA钢丝的复合梁的固有频率进行了数值参数研究,其参数为直径和SMA线的数量。数值研究表明,将25根直径为20密耳的SMA导线插入长度为30英寸,宽度为1毫米,厚度为62密耳的石墨环氧梁中,其第一频率提高了276%。

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