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首页> 外文期刊>Journal of Materials Engineering and Performance >Simulated and Experimental Damping Properties of a SMA/Fiber Glass Laminated Composite
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Simulated and Experimental Damping Properties of a SMA/Fiber Glass Laminated Composite

机译:SMA /玻璃纤维层压复合材料的模拟和实验阻尼特性

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In this article, an advanced laminated composite is developed, combining the high damping properties of shape memory alloy (SMA) with mechanical properties and light weight of a glass-fiber reinforced polymer. The composite is formed by stacking a glass-fiber reinforced epoxy core between two thin patterned strips of SMA alloy, and two further layers of fiber-glass reinforced epoxy. The bars of the laminated composite were assembled and cured in autoclave. The patterning was designed to enhance the interface adhesion between matrix and SMA inserts and optimally exploit the damping capacity of the SMA thin ribbons. The patterned ribbons of the SMA alloy were cut by means of a pulsed fiber laser source. Damping properties at different amplitudes on full scale samples were investigated at room temperature with a universal testing machine through dynamic tension tests, while temperature dependence was investigated by dynamic mechanical analyses (DMA) on smaller samples. Experimental results were used in conjunction with FEM analysis to optimize the geometry of the inserts. Experimental decay tests on the laminated composite have been carried out to identify the adimensional damping value related to their first flexural mode.
机译:本文开发了一种先进的层压复合材料,将形状记忆合金(SMA)的高阻尼性能与玻璃纤维增​​强聚合物的机械性能和重量轻结合在一起。通过将玻璃纤维增​​强的环氧树脂芯堆叠在SMA合金的两个薄图案条带与另外两层玻璃纤维增​​强的环氧树脂之间,形成复合材料。将层压的复合材料的棒组装并在高压釜中固化。设计图案的目的是增强基质和SMA嵌件之间的界面粘合力,并最佳利用SMA薄带的阻尼能力。借助于脉冲光纤激光源切割SMA合金的带状图样。在室温下,使用万能试验机通过动态张力测试研究了满量程样品在不同振幅下的阻尼特性,而对较小样品通过动态力学分析(DMA)研究了温度依赖性。实验结果与FEM分析结合使用以优化刀片的几何形状。已经对层压复合材料进行了实验衰减测试,以确定与它们的第一弯曲模式有关的三维阻尼值。

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