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The concept of a novel hybrid smart composite reinforced with radially aligned zigzag carbon nanotubes on piezoelectric fibers

机译:压电纤维上径向排列的之字形碳纳米管增强的新型混合智能复合材料的概念

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A new hybrid piezoelectric composite (HPZC) reinforced with zigzag single-walled carbon nanotubes (CNTs) and piezoelectric fibers is proposed. The novel constructional feature of this composite is that the uniformly aligned CNTs are radially grown on the surface of piezoelectric fibers. A micromechanics model is derived to estimate the effective piezoelectric and elastic properties. It is found that the effective piezoelectric coefficient e _(31) of the proposed HPZC, which accounts for the in-plane actuation, is significantly higher than that of the existing 1-3 piezoelectric composite without reinforcement with carbon nanotubes and the previously reported hybrid piezoelectric composite (Ray and Batra 2009 ASME J. Appl. Mech.76034503).
机译:提出了一种由曲折单壁碳纳米管(CNTs)和压电纤维增强的新型混合压电复合材料(HPZC)。该复合材料的新颖构造特征是,均匀排列的CNT在压电纤维的表面上径向生长。推导了微力学模型来估计有效的压电和弹性性能。已发现,提出的HPZC的有效压电系数e _(31)解释了面内驱动,它显着高于现有的没有用碳纳米管增强的1-3压电复合材料以及先前报道的混合材料压电复合材料(Ray and Batra 2009 ASME J.Appl.Mech.76034503)。

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