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Studies on Properties of Epoxy Resin Base Piezoelectricity Damping Carbon Fiber Composite Materials

机译:环氧树脂基压电阻尼碳纤维复合材料性能研究

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Damping materials have been wildly used in aerospace, traffic, construction fields and so on. The piezo-damping materials have received much attention due to the novel energy loss mechanism. In this paper, piezo-damping composite materials were prepared from the epoxy resin (EP) as the resin matrix, nano lead titanate (nano-PT) ceramics as piezoelectric material and chopped carbon fibers (CF) as conductive materials. The mechanical and damping properties of the composites were analyzed by mechanics test, DMA and vibration beam method. The results showed that when the nano-PT content was 60% of EP and CF content was 0.25% of EP, the composite got the better mechanical properties. Form DMA, the loss factor (tan8) peak reached 0.58. Damping temperature range AT (tanS>0.3) was about 36.3°C. In comparison, damping loss factor measured by Vibration beam method was 0.82.
机译:阻尼材料在航空航天,交通,建筑领域等野蛮地使用。由于新的能量损失机制,压电阻尼材料受到了很多关注。本文从环氧树脂(EP)中作为树脂基质,纳米铅钛酸盐(纳米PT)陶瓷作为压电材料和切碎的碳纤维(CF)作为导电材料,制备压电抑制复合材料。通过力学试验,DMA和振动梁法分析复合材料的机械和阻尼性能。结果表明,当纳米Pt含量为EP的60%和CF含量为0.25%的EP时,复合材料具有更好的机械性能。 DMA,损耗因子(TAN8)峰达到0.58。 (坦率> 0.3)的阻尼温度范围约为36.3℃。相比之下,振动梁法测量的阻尼损耗因子为0.82。

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